nl80211.c 321 KB

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  1. /*
  2. * This is the new netlink-based wireless configuration interface.
  3. *
  4. * Copyright 2006-2010 Johannes Berg <johannes@sipsolutions.net>
  5. * Copyright 2013-2014 Intel Mobile Communications GmbH
  6. */
  7. #include <linux/if.h>
  8. #include <linux/module.h>
  9. #include <linux/err.h>
  10. #include <linux/slab.h>
  11. #include <linux/list.h>
  12. #include <linux/if_ether.h>
  13. #include <linux/ieee80211.h>
  14. #include <linux/nl80211.h>
  15. #include <linux/rtnetlink.h>
  16. #include <linux/netlink.h>
  17. #include <linux/etherdevice.h>
  18. #include <net/net_namespace.h>
  19. #include <net/genetlink.h>
  20. #include <net/cfg80211.h>
  21. #include <net/sock.h>
  22. #include <net/inet_connection_sock.h>
  23. #include "core.h"
  24. #include "nl80211.h"
  25. #include "reg.h"
  26. #include "rdev-ops.h"
  27. static int nl80211_crypto_settings(struct cfg80211_registered_device *rdev,
  28. struct genl_info *info,
  29. struct cfg80211_crypto_settings *settings,
  30. int cipher_limit);
  31. static int nl80211_pre_doit(const struct genl_ops *ops, struct sk_buff *skb,
  32. struct genl_info *info);
  33. static void nl80211_post_doit(const struct genl_ops *ops, struct sk_buff *skb,
  34. struct genl_info *info);
  35. /* the netlink family */
  36. static struct genl_family nl80211_fam = {
  37. .id = GENL_ID_GENERATE, /* don't bother with a hardcoded ID */
  38. .name = NL80211_GENL_NAME, /* have users key off the name instead */
  39. .hdrsize = 0, /* no private header */
  40. .version = 1, /* no particular meaning now */
  41. .maxattr = NL80211_ATTR_MAX,
  42. .netnsok = true,
  43. .pre_doit = nl80211_pre_doit,
  44. .post_doit = nl80211_post_doit,
  45. };
  46. /* multicast groups */
  47. enum nl80211_multicast_groups {
  48. NL80211_MCGRP_CONFIG,
  49. NL80211_MCGRP_SCAN,
  50. NL80211_MCGRP_REGULATORY,
  51. NL80211_MCGRP_MLME,
  52. NL80211_MCGRP_VENDOR,
  53. NL80211_MCGRP_TESTMODE /* keep last - ifdef! */
  54. };
  55. static const struct genl_multicast_group nl80211_mcgrps[] = {
  56. [NL80211_MCGRP_CONFIG] = { .name = "config", },
  57. [NL80211_MCGRP_SCAN] = { .name = "scan", },
  58. [NL80211_MCGRP_REGULATORY] = { .name = "regulatory", },
  59. [NL80211_MCGRP_MLME] = { .name = "mlme", },
  60. [NL80211_MCGRP_VENDOR] = { .name = "vendor", },
  61. #ifdef CONFIG_NL80211_TESTMODE
  62. [NL80211_MCGRP_TESTMODE] = { .name = "testmode", }
  63. #endif
  64. };
  65. /* returns ERR_PTR values */
  66. static struct wireless_dev *
  67. __cfg80211_wdev_from_attrs(struct net *netns, struct nlattr **attrs)
  68. {
  69. struct cfg80211_registered_device *rdev;
  70. struct wireless_dev *result = NULL;
  71. bool have_ifidx = attrs[NL80211_ATTR_IFINDEX];
  72. bool have_wdev_id = attrs[NL80211_ATTR_WDEV];
  73. u64 wdev_id;
  74. int wiphy_idx = -1;
  75. int ifidx = -1;
  76. ASSERT_RTNL();
  77. if (!have_ifidx && !have_wdev_id)
  78. return ERR_PTR(-EINVAL);
  79. if (have_ifidx)
  80. ifidx = nla_get_u32(attrs[NL80211_ATTR_IFINDEX]);
  81. if (have_wdev_id) {
  82. wdev_id = nla_get_u64(attrs[NL80211_ATTR_WDEV]);
  83. wiphy_idx = wdev_id >> 32;
  84. }
  85. list_for_each_entry(rdev, &cfg80211_rdev_list, list) {
  86. struct wireless_dev *wdev;
  87. if (wiphy_net(&rdev->wiphy) != netns)
  88. continue;
  89. if (have_wdev_id && rdev->wiphy_idx != wiphy_idx)
  90. continue;
  91. list_for_each_entry(wdev, &rdev->wdev_list, list) {
  92. if (have_ifidx && wdev->netdev &&
  93. wdev->netdev->ifindex == ifidx) {
  94. result = wdev;
  95. break;
  96. }
  97. if (have_wdev_id && wdev->identifier == (u32)wdev_id) {
  98. result = wdev;
  99. break;
  100. }
  101. }
  102. if (result)
  103. break;
  104. }
  105. if (result)
  106. return result;
  107. return ERR_PTR(-ENODEV);
  108. }
  109. static struct cfg80211_registered_device *
  110. __cfg80211_rdev_from_attrs(struct net *netns, struct nlattr **attrs)
  111. {
  112. struct cfg80211_registered_device *rdev = NULL, *tmp;
  113. struct net_device *netdev;
  114. ASSERT_RTNL();
  115. if (!attrs[NL80211_ATTR_WIPHY] &&
  116. !attrs[NL80211_ATTR_IFINDEX] &&
  117. !attrs[NL80211_ATTR_WDEV])
  118. return ERR_PTR(-EINVAL);
  119. if (attrs[NL80211_ATTR_WIPHY])
  120. rdev = cfg80211_rdev_by_wiphy_idx(
  121. nla_get_u32(attrs[NL80211_ATTR_WIPHY]));
  122. if (attrs[NL80211_ATTR_WDEV]) {
  123. u64 wdev_id = nla_get_u64(attrs[NL80211_ATTR_WDEV]);
  124. struct wireless_dev *wdev;
  125. bool found = false;
  126. tmp = cfg80211_rdev_by_wiphy_idx(wdev_id >> 32);
  127. if (tmp) {
  128. /* make sure wdev exists */
  129. list_for_each_entry(wdev, &tmp->wdev_list, list) {
  130. if (wdev->identifier != (u32)wdev_id)
  131. continue;
  132. found = true;
  133. break;
  134. }
  135. if (!found)
  136. tmp = NULL;
  137. if (rdev && tmp != rdev)
  138. return ERR_PTR(-EINVAL);
  139. rdev = tmp;
  140. }
  141. }
  142. if (attrs[NL80211_ATTR_IFINDEX]) {
  143. int ifindex = nla_get_u32(attrs[NL80211_ATTR_IFINDEX]);
  144. netdev = __dev_get_by_index(netns, ifindex);
  145. if (netdev) {
  146. if (netdev->ieee80211_ptr)
  147. tmp = wiphy_to_rdev(
  148. netdev->ieee80211_ptr->wiphy);
  149. else
  150. tmp = NULL;
  151. /* not wireless device -- return error */
  152. if (!tmp)
  153. return ERR_PTR(-EINVAL);
  154. /* mismatch -- return error */
  155. if (rdev && tmp != rdev)
  156. return ERR_PTR(-EINVAL);
  157. rdev = tmp;
  158. }
  159. }
  160. if (!rdev)
  161. return ERR_PTR(-ENODEV);
  162. if (netns != wiphy_net(&rdev->wiphy))
  163. return ERR_PTR(-ENODEV);
  164. return rdev;
  165. }
  166. /*
  167. * This function returns a pointer to the driver
  168. * that the genl_info item that is passed refers to.
  169. *
  170. * The result of this can be a PTR_ERR and hence must
  171. * be checked with IS_ERR() for errors.
  172. */
  173. static struct cfg80211_registered_device *
  174. cfg80211_get_dev_from_info(struct net *netns, struct genl_info *info)
  175. {
  176. return __cfg80211_rdev_from_attrs(netns, info->attrs);
  177. }
  178. /* policy for the attributes */
  179. static const struct nla_policy nl80211_policy[NL80211_ATTR_MAX+1] = {
  180. [NL80211_ATTR_WIPHY] = { .type = NLA_U32 },
  181. [NL80211_ATTR_WIPHY_NAME] = { .type = NLA_NUL_STRING,
  182. .len = 20-1 },
  183. [NL80211_ATTR_WIPHY_TXQ_PARAMS] = { .type = NLA_NESTED },
  184. [NL80211_ATTR_WIPHY_FREQ] = { .type = NLA_U32 },
  185. [NL80211_ATTR_WIPHY_CHANNEL_TYPE] = { .type = NLA_U32 },
  186. [NL80211_ATTR_CHANNEL_WIDTH] = { .type = NLA_U32 },
  187. [NL80211_ATTR_CENTER_FREQ1] = { .type = NLA_U32 },
  188. [NL80211_ATTR_CENTER_FREQ2] = { .type = NLA_U32 },
  189. [NL80211_ATTR_WIPHY_RETRY_SHORT] = { .type = NLA_U8 },
  190. [NL80211_ATTR_WIPHY_RETRY_LONG] = { .type = NLA_U8 },
  191. [NL80211_ATTR_WIPHY_FRAG_THRESHOLD] = { .type = NLA_U32 },
  192. [NL80211_ATTR_WIPHY_RTS_THRESHOLD] = { .type = NLA_U32 },
  193. [NL80211_ATTR_WIPHY_COVERAGE_CLASS] = { .type = NLA_U8 },
  194. [NL80211_ATTR_WIPHY_DYN_ACK] = { .type = NLA_FLAG },
  195. [NL80211_ATTR_IFTYPE] = { .type = NLA_U32 },
  196. [NL80211_ATTR_IFINDEX] = { .type = NLA_U32 },
  197. [NL80211_ATTR_IFNAME] = { .type = NLA_NUL_STRING, .len = IFNAMSIZ-1 },
  198. [NL80211_ATTR_MAC] = { .len = ETH_ALEN },
  199. [NL80211_ATTR_PREV_BSSID] = { .len = ETH_ALEN },
  200. [NL80211_ATTR_KEY] = { .type = NLA_NESTED, },
  201. [NL80211_ATTR_KEY_DATA] = { .type = NLA_BINARY,
  202. .len = WLAN_MAX_KEY_LEN },
  203. [NL80211_ATTR_KEY_IDX] = { .type = NLA_U8 },
  204. [NL80211_ATTR_KEY_CIPHER] = { .type = NLA_U32 },
  205. [NL80211_ATTR_KEY_DEFAULT] = { .type = NLA_FLAG },
  206. [NL80211_ATTR_KEY_SEQ] = { .type = NLA_BINARY, .len = 16 },
  207. [NL80211_ATTR_KEY_TYPE] = { .type = NLA_U32 },
  208. [NL80211_ATTR_BEACON_INTERVAL] = { .type = NLA_U32 },
  209. [NL80211_ATTR_DTIM_PERIOD] = { .type = NLA_U32 },
  210. [NL80211_ATTR_BEACON_HEAD] = { .type = NLA_BINARY,
  211. .len = IEEE80211_MAX_DATA_LEN },
  212. [NL80211_ATTR_BEACON_TAIL] = { .type = NLA_BINARY,
  213. .len = IEEE80211_MAX_DATA_LEN },
  214. [NL80211_ATTR_STA_AID] = { .type = NLA_U16 },
  215. [NL80211_ATTR_STA_FLAGS] = { .type = NLA_NESTED },
  216. [NL80211_ATTR_STA_LISTEN_INTERVAL] = { .type = NLA_U16 },
  217. [NL80211_ATTR_STA_SUPPORTED_RATES] = { .type = NLA_BINARY,
  218. .len = NL80211_MAX_SUPP_RATES },
  219. [NL80211_ATTR_STA_PLINK_ACTION] = { .type = NLA_U8 },
  220. [NL80211_ATTR_STA_VLAN] = { .type = NLA_U32 },
  221. [NL80211_ATTR_MNTR_FLAGS] = { /* NLA_NESTED can't be empty */ },
  222. [NL80211_ATTR_MESH_ID] = { .type = NLA_BINARY,
  223. .len = IEEE80211_MAX_MESH_ID_LEN },
  224. [NL80211_ATTR_MPATH_NEXT_HOP] = { .type = NLA_U32 },
  225. [NL80211_ATTR_REG_ALPHA2] = { .type = NLA_STRING, .len = 2 },
  226. [NL80211_ATTR_REG_RULES] = { .type = NLA_NESTED },
  227. [NL80211_ATTR_BSS_CTS_PROT] = { .type = NLA_U8 },
  228. [NL80211_ATTR_BSS_SHORT_PREAMBLE] = { .type = NLA_U8 },
  229. [NL80211_ATTR_BSS_SHORT_SLOT_TIME] = { .type = NLA_U8 },
  230. [NL80211_ATTR_BSS_BASIC_RATES] = { .type = NLA_BINARY,
  231. .len = NL80211_MAX_SUPP_RATES },
  232. [NL80211_ATTR_BSS_HT_OPMODE] = { .type = NLA_U16 },
  233. [NL80211_ATTR_MESH_CONFIG] = { .type = NLA_NESTED },
  234. [NL80211_ATTR_SUPPORT_MESH_AUTH] = { .type = NLA_FLAG },
  235. [NL80211_ATTR_HT_CAPABILITY] = { .len = NL80211_HT_CAPABILITY_LEN },
  236. [NL80211_ATTR_MGMT_SUBTYPE] = { .type = NLA_U8 },
  237. [NL80211_ATTR_IE] = { .type = NLA_BINARY,
  238. .len = IEEE80211_MAX_DATA_LEN },
  239. [NL80211_ATTR_SCAN_FREQUENCIES] = { .type = NLA_NESTED },
  240. [NL80211_ATTR_SCAN_SSIDS] = { .type = NLA_NESTED },
  241. [NL80211_ATTR_SSID] = { .type = NLA_BINARY,
  242. .len = IEEE80211_MAX_SSID_LEN },
  243. [NL80211_ATTR_AUTH_TYPE] = { .type = NLA_U32 },
  244. [NL80211_ATTR_REASON_CODE] = { .type = NLA_U16 },
  245. [NL80211_ATTR_FREQ_FIXED] = { .type = NLA_FLAG },
  246. [NL80211_ATTR_TIMED_OUT] = { .type = NLA_FLAG },
  247. [NL80211_ATTR_USE_MFP] = { .type = NLA_U32 },
  248. [NL80211_ATTR_STA_FLAGS2] = {
  249. .len = sizeof(struct nl80211_sta_flag_update),
  250. },
  251. [NL80211_ATTR_CONTROL_PORT] = { .type = NLA_FLAG },
  252. [NL80211_ATTR_CONTROL_PORT_ETHERTYPE] = { .type = NLA_U16 },
  253. [NL80211_ATTR_CONTROL_PORT_NO_ENCRYPT] = { .type = NLA_FLAG },
  254. [NL80211_ATTR_PRIVACY] = { .type = NLA_FLAG },
  255. [NL80211_ATTR_CIPHER_SUITE_GROUP] = { .type = NLA_U32 },
  256. [NL80211_ATTR_WPA_VERSIONS] = { .type = NLA_U32 },
  257. [NL80211_ATTR_PID] = { .type = NLA_U32 },
  258. [NL80211_ATTR_4ADDR] = { .type = NLA_U8 },
  259. [NL80211_ATTR_PMKID] = { .type = NLA_BINARY,
  260. .len = WLAN_PMKID_LEN },
  261. [NL80211_ATTR_DURATION] = { .type = NLA_U32 },
  262. [NL80211_ATTR_COOKIE] = { .type = NLA_U64 },
  263. [NL80211_ATTR_TX_RATES] = { .type = NLA_NESTED },
  264. [NL80211_ATTR_FRAME] = { .type = NLA_BINARY,
  265. .len = IEEE80211_MAX_DATA_LEN },
  266. [NL80211_ATTR_FRAME_MATCH] = { .type = NLA_BINARY, },
  267. [NL80211_ATTR_PS_STATE] = { .type = NLA_U32 },
  268. [NL80211_ATTR_CQM] = { .type = NLA_NESTED, },
  269. [NL80211_ATTR_LOCAL_STATE_CHANGE] = { .type = NLA_FLAG },
  270. [NL80211_ATTR_AP_ISOLATE] = { .type = NLA_U8 },
  271. [NL80211_ATTR_WIPHY_TX_POWER_SETTING] = { .type = NLA_U32 },
  272. [NL80211_ATTR_WIPHY_TX_POWER_LEVEL] = { .type = NLA_U32 },
  273. [NL80211_ATTR_FRAME_TYPE] = { .type = NLA_U16 },
  274. [NL80211_ATTR_WIPHY_ANTENNA_TX] = { .type = NLA_U32 },
  275. [NL80211_ATTR_WIPHY_ANTENNA_RX] = { .type = NLA_U32 },
  276. [NL80211_ATTR_MCAST_RATE] = { .type = NLA_U32 },
  277. [NL80211_ATTR_OFFCHANNEL_TX_OK] = { .type = NLA_FLAG },
  278. [NL80211_ATTR_KEY_DEFAULT_TYPES] = { .type = NLA_NESTED },
  279. [NL80211_ATTR_WOWLAN_TRIGGERS] = { .type = NLA_NESTED },
  280. [NL80211_ATTR_STA_PLINK_STATE] = { .type = NLA_U8 },
  281. [NL80211_ATTR_SCHED_SCAN_INTERVAL] = { .type = NLA_U32 },
  282. [NL80211_ATTR_REKEY_DATA] = { .type = NLA_NESTED },
  283. [NL80211_ATTR_SCAN_SUPP_RATES] = { .type = NLA_NESTED },
  284. [NL80211_ATTR_HIDDEN_SSID] = { .type = NLA_U32 },
  285. [NL80211_ATTR_IE_PROBE_RESP] = { .type = NLA_BINARY,
  286. .len = IEEE80211_MAX_DATA_LEN },
  287. [NL80211_ATTR_IE_ASSOC_RESP] = { .type = NLA_BINARY,
  288. .len = IEEE80211_MAX_DATA_LEN },
  289. [NL80211_ATTR_ROAM_SUPPORT] = { .type = NLA_FLAG },
  290. [NL80211_ATTR_SCHED_SCAN_MATCH] = { .type = NLA_NESTED },
  291. [NL80211_ATTR_TX_NO_CCK_RATE] = { .type = NLA_FLAG },
  292. [NL80211_ATTR_TDLS_ACTION] = { .type = NLA_U8 },
  293. [NL80211_ATTR_TDLS_DIALOG_TOKEN] = { .type = NLA_U8 },
  294. [NL80211_ATTR_TDLS_OPERATION] = { .type = NLA_U8 },
  295. [NL80211_ATTR_TDLS_SUPPORT] = { .type = NLA_FLAG },
  296. [NL80211_ATTR_TDLS_EXTERNAL_SETUP] = { .type = NLA_FLAG },
  297. [NL80211_ATTR_TDLS_INITIATOR] = { .type = NLA_FLAG },
  298. [NL80211_ATTR_DONT_WAIT_FOR_ACK] = { .type = NLA_FLAG },
  299. [NL80211_ATTR_PROBE_RESP] = { .type = NLA_BINARY,
  300. .len = IEEE80211_MAX_DATA_LEN },
  301. [NL80211_ATTR_DFS_REGION] = { .type = NLA_U8 },
  302. [NL80211_ATTR_DISABLE_HT] = { .type = NLA_FLAG },
  303. [NL80211_ATTR_HT_CAPABILITY_MASK] = {
  304. .len = NL80211_HT_CAPABILITY_LEN
  305. },
  306. [NL80211_ATTR_NOACK_MAP] = { .type = NLA_U16 },
  307. [NL80211_ATTR_INACTIVITY_TIMEOUT] = { .type = NLA_U16 },
  308. [NL80211_ATTR_BG_SCAN_PERIOD] = { .type = NLA_U16 },
  309. [NL80211_ATTR_WDEV] = { .type = NLA_U64 },
  310. [NL80211_ATTR_USER_REG_HINT_TYPE] = { .type = NLA_U32 },
  311. [NL80211_ATTR_SAE_DATA] = { .type = NLA_BINARY, },
  312. [NL80211_ATTR_VHT_CAPABILITY] = { .len = NL80211_VHT_CAPABILITY_LEN },
  313. [NL80211_ATTR_SCAN_FLAGS] = { .type = NLA_U32 },
  314. [NL80211_ATTR_P2P_CTWINDOW] = { .type = NLA_U8 },
  315. [NL80211_ATTR_P2P_OPPPS] = { .type = NLA_U8 },
  316. [NL80211_ATTR_ACL_POLICY] = {. type = NLA_U32 },
  317. [NL80211_ATTR_MAC_ADDRS] = { .type = NLA_NESTED },
  318. [NL80211_ATTR_STA_CAPABILITY] = { .type = NLA_U16 },
  319. [NL80211_ATTR_STA_EXT_CAPABILITY] = { .type = NLA_BINARY, },
  320. [NL80211_ATTR_SPLIT_WIPHY_DUMP] = { .type = NLA_FLAG, },
  321. [NL80211_ATTR_DISABLE_VHT] = { .type = NLA_FLAG },
  322. [NL80211_ATTR_VHT_CAPABILITY_MASK] = {
  323. .len = NL80211_VHT_CAPABILITY_LEN,
  324. },
  325. [NL80211_ATTR_MDID] = { .type = NLA_U16 },
  326. [NL80211_ATTR_IE_RIC] = { .type = NLA_BINARY,
  327. .len = IEEE80211_MAX_DATA_LEN },
  328. [NL80211_ATTR_PEER_AID] = { .type = NLA_U16 },
  329. [NL80211_ATTR_CH_SWITCH_COUNT] = { .type = NLA_U32 },
  330. [NL80211_ATTR_CH_SWITCH_BLOCK_TX] = { .type = NLA_FLAG },
  331. [NL80211_ATTR_CSA_IES] = { .type = NLA_NESTED },
  332. [NL80211_ATTR_CSA_C_OFF_BEACON] = { .type = NLA_BINARY },
  333. [NL80211_ATTR_CSA_C_OFF_PRESP] = { .type = NLA_BINARY },
  334. [NL80211_ATTR_STA_SUPPORTED_CHANNELS] = { .type = NLA_BINARY },
  335. [NL80211_ATTR_STA_SUPPORTED_OPER_CLASSES] = { .type = NLA_BINARY },
  336. [NL80211_ATTR_HANDLE_DFS] = { .type = NLA_FLAG },
  337. [NL80211_ATTR_OPMODE_NOTIF] = { .type = NLA_U8 },
  338. [NL80211_ATTR_VENDOR_ID] = { .type = NLA_U32 },
  339. [NL80211_ATTR_VENDOR_SUBCMD] = { .type = NLA_U32 },
  340. [NL80211_ATTR_VENDOR_DATA] = { .type = NLA_BINARY },
  341. [NL80211_ATTR_QOS_MAP] = { .type = NLA_BINARY,
  342. .len = IEEE80211_QOS_MAP_LEN_MAX },
  343. [NL80211_ATTR_MAC_HINT] = { .len = ETH_ALEN },
  344. [NL80211_ATTR_WIPHY_FREQ_HINT] = { .type = NLA_U32 },
  345. [NL80211_ATTR_TDLS_PEER_CAPABILITY] = { .type = NLA_U32 },
  346. [NL80211_ATTR_IFACE_SOCKET_OWNER] = { .type = NLA_FLAG },
  347. [NL80211_ATTR_CSA_C_OFFSETS_TX] = { .type = NLA_BINARY },
  348. [NL80211_ATTR_USE_RRM] = { .type = NLA_FLAG },
  349. [NL80211_ATTR_TSID] = { .type = NLA_U8 },
  350. [NL80211_ATTR_USER_PRIO] = { .type = NLA_U8 },
  351. [NL80211_ATTR_ADMITTED_TIME] = { .type = NLA_U16 },
  352. [NL80211_ATTR_SMPS_MODE] = { .type = NLA_U8 },
  353. };
  354. /* policy for the key attributes */
  355. static const struct nla_policy nl80211_key_policy[NL80211_KEY_MAX + 1] = {
  356. [NL80211_KEY_DATA] = { .type = NLA_BINARY, .len = WLAN_MAX_KEY_LEN },
  357. [NL80211_KEY_IDX] = { .type = NLA_U8 },
  358. [NL80211_KEY_CIPHER] = { .type = NLA_U32 },
  359. [NL80211_KEY_SEQ] = { .type = NLA_BINARY, .len = 16 },
  360. [NL80211_KEY_DEFAULT] = { .type = NLA_FLAG },
  361. [NL80211_KEY_DEFAULT_MGMT] = { .type = NLA_FLAG },
  362. [NL80211_KEY_TYPE] = { .type = NLA_U32 },
  363. [NL80211_KEY_DEFAULT_TYPES] = { .type = NLA_NESTED },
  364. };
  365. /* policy for the key default flags */
  366. static const struct nla_policy
  367. nl80211_key_default_policy[NUM_NL80211_KEY_DEFAULT_TYPES] = {
  368. [NL80211_KEY_DEFAULT_TYPE_UNICAST] = { .type = NLA_FLAG },
  369. [NL80211_KEY_DEFAULT_TYPE_MULTICAST] = { .type = NLA_FLAG },
  370. };
  371. /* policy for WoWLAN attributes */
  372. static const struct nla_policy
  373. nl80211_wowlan_policy[NUM_NL80211_WOWLAN_TRIG] = {
  374. [NL80211_WOWLAN_TRIG_ANY] = { .type = NLA_FLAG },
  375. [NL80211_WOWLAN_TRIG_DISCONNECT] = { .type = NLA_FLAG },
  376. [NL80211_WOWLAN_TRIG_MAGIC_PKT] = { .type = NLA_FLAG },
  377. [NL80211_WOWLAN_TRIG_PKT_PATTERN] = { .type = NLA_NESTED },
  378. [NL80211_WOWLAN_TRIG_GTK_REKEY_FAILURE] = { .type = NLA_FLAG },
  379. [NL80211_WOWLAN_TRIG_EAP_IDENT_REQUEST] = { .type = NLA_FLAG },
  380. [NL80211_WOWLAN_TRIG_4WAY_HANDSHAKE] = { .type = NLA_FLAG },
  381. [NL80211_WOWLAN_TRIG_RFKILL_RELEASE] = { .type = NLA_FLAG },
  382. [NL80211_WOWLAN_TRIG_TCP_CONNECTION] = { .type = NLA_NESTED },
  383. };
  384. static const struct nla_policy
  385. nl80211_wowlan_tcp_policy[NUM_NL80211_WOWLAN_TCP] = {
  386. [NL80211_WOWLAN_TCP_SRC_IPV4] = { .type = NLA_U32 },
  387. [NL80211_WOWLAN_TCP_DST_IPV4] = { .type = NLA_U32 },
  388. [NL80211_WOWLAN_TCP_DST_MAC] = { .len = ETH_ALEN },
  389. [NL80211_WOWLAN_TCP_SRC_PORT] = { .type = NLA_U16 },
  390. [NL80211_WOWLAN_TCP_DST_PORT] = { .type = NLA_U16 },
  391. [NL80211_WOWLAN_TCP_DATA_PAYLOAD] = { .len = 1 },
  392. [NL80211_WOWLAN_TCP_DATA_PAYLOAD_SEQ] = {
  393. .len = sizeof(struct nl80211_wowlan_tcp_data_seq)
  394. },
  395. [NL80211_WOWLAN_TCP_DATA_PAYLOAD_TOKEN] = {
  396. .len = sizeof(struct nl80211_wowlan_tcp_data_token)
  397. },
  398. [NL80211_WOWLAN_TCP_DATA_INTERVAL] = { .type = NLA_U32 },
  399. [NL80211_WOWLAN_TCP_WAKE_PAYLOAD] = { .len = 1 },
  400. [NL80211_WOWLAN_TCP_WAKE_MASK] = { .len = 1 },
  401. };
  402. /* policy for coalesce rule attributes */
  403. static const struct nla_policy
  404. nl80211_coalesce_policy[NUM_NL80211_ATTR_COALESCE_RULE] = {
  405. [NL80211_ATTR_COALESCE_RULE_DELAY] = { .type = NLA_U32 },
  406. [NL80211_ATTR_COALESCE_RULE_CONDITION] = { .type = NLA_U32 },
  407. [NL80211_ATTR_COALESCE_RULE_PKT_PATTERN] = { .type = NLA_NESTED },
  408. };
  409. /* policy for GTK rekey offload attributes */
  410. static const struct nla_policy
  411. nl80211_rekey_policy[NUM_NL80211_REKEY_DATA] = {
  412. [NL80211_REKEY_DATA_KEK] = { .len = NL80211_KEK_LEN },
  413. [NL80211_REKEY_DATA_KCK] = { .len = NL80211_KCK_LEN },
  414. [NL80211_REKEY_DATA_REPLAY_CTR] = { .len = NL80211_REPLAY_CTR_LEN },
  415. };
  416. static const struct nla_policy
  417. nl80211_match_policy[NL80211_SCHED_SCAN_MATCH_ATTR_MAX + 1] = {
  418. [NL80211_SCHED_SCAN_MATCH_ATTR_SSID] = { .type = NLA_BINARY,
  419. .len = IEEE80211_MAX_SSID_LEN },
  420. [NL80211_SCHED_SCAN_MATCH_ATTR_RSSI] = { .type = NLA_U32 },
  421. };
  422. static int nl80211_prepare_wdev_dump(struct sk_buff *skb,
  423. struct netlink_callback *cb,
  424. struct cfg80211_registered_device **rdev,
  425. struct wireless_dev **wdev)
  426. {
  427. int err;
  428. rtnl_lock();
  429. if (!cb->args[0]) {
  430. err = nlmsg_parse(cb->nlh, GENL_HDRLEN + nl80211_fam.hdrsize,
  431. nl80211_fam.attrbuf, nl80211_fam.maxattr,
  432. nl80211_policy);
  433. if (err)
  434. goto out_unlock;
  435. *wdev = __cfg80211_wdev_from_attrs(sock_net(skb->sk),
  436. nl80211_fam.attrbuf);
  437. if (IS_ERR(*wdev)) {
  438. err = PTR_ERR(*wdev);
  439. goto out_unlock;
  440. }
  441. *rdev = wiphy_to_rdev((*wdev)->wiphy);
  442. /* 0 is the first index - add 1 to parse only once */
  443. cb->args[0] = (*rdev)->wiphy_idx + 1;
  444. cb->args[1] = (*wdev)->identifier;
  445. } else {
  446. /* subtract the 1 again here */
  447. struct wiphy *wiphy = wiphy_idx_to_wiphy(cb->args[0] - 1);
  448. struct wireless_dev *tmp;
  449. if (!wiphy) {
  450. err = -ENODEV;
  451. goto out_unlock;
  452. }
  453. *rdev = wiphy_to_rdev(wiphy);
  454. *wdev = NULL;
  455. list_for_each_entry(tmp, &(*rdev)->wdev_list, list) {
  456. if (tmp->identifier == cb->args[1]) {
  457. *wdev = tmp;
  458. break;
  459. }
  460. }
  461. if (!*wdev) {
  462. err = -ENODEV;
  463. goto out_unlock;
  464. }
  465. }
  466. return 0;
  467. out_unlock:
  468. rtnl_unlock();
  469. return err;
  470. }
  471. static void nl80211_finish_wdev_dump(struct cfg80211_registered_device *rdev)
  472. {
  473. rtnl_unlock();
  474. }
  475. /* IE validation */
  476. static bool is_valid_ie_attr(const struct nlattr *attr)
  477. {
  478. const u8 *pos;
  479. int len;
  480. if (!attr)
  481. return true;
  482. pos = nla_data(attr);
  483. len = nla_len(attr);
  484. while (len) {
  485. u8 elemlen;
  486. if (len < 2)
  487. return false;
  488. len -= 2;
  489. elemlen = pos[1];
  490. if (elemlen > len)
  491. return false;
  492. len -= elemlen;
  493. pos += 2 + elemlen;
  494. }
  495. return true;
  496. }
  497. /* message building helper */
  498. static inline void *nl80211hdr_put(struct sk_buff *skb, u32 portid, u32 seq,
  499. int flags, u8 cmd)
  500. {
  501. /* since there is no private header just add the generic one */
  502. return genlmsg_put(skb, portid, seq, &nl80211_fam, flags, cmd);
  503. }
  504. static int nl80211_msg_put_channel(struct sk_buff *msg,
  505. struct ieee80211_channel *chan,
  506. bool large)
  507. {
  508. /* Some channels must be completely excluded from the
  509. * list to protect old user-space tools from breaking
  510. */
  511. if (!large && chan->flags &
  512. (IEEE80211_CHAN_NO_10MHZ | IEEE80211_CHAN_NO_20MHZ))
  513. return 0;
  514. if (nla_put_u32(msg, NL80211_FREQUENCY_ATTR_FREQ,
  515. chan->center_freq))
  516. goto nla_put_failure;
  517. if ((chan->flags & IEEE80211_CHAN_DISABLED) &&
  518. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_DISABLED))
  519. goto nla_put_failure;
  520. if (chan->flags & IEEE80211_CHAN_NO_IR) {
  521. if (nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_IR))
  522. goto nla_put_failure;
  523. if (nla_put_flag(msg, __NL80211_FREQUENCY_ATTR_NO_IBSS))
  524. goto nla_put_failure;
  525. }
  526. if (chan->flags & IEEE80211_CHAN_RADAR) {
  527. if (nla_put_flag(msg, NL80211_FREQUENCY_ATTR_RADAR))
  528. goto nla_put_failure;
  529. if (large) {
  530. u32 time;
  531. time = elapsed_jiffies_msecs(chan->dfs_state_entered);
  532. if (nla_put_u32(msg, NL80211_FREQUENCY_ATTR_DFS_STATE,
  533. chan->dfs_state))
  534. goto nla_put_failure;
  535. if (nla_put_u32(msg, NL80211_FREQUENCY_ATTR_DFS_TIME,
  536. time))
  537. goto nla_put_failure;
  538. if (nla_put_u32(msg,
  539. NL80211_FREQUENCY_ATTR_DFS_CAC_TIME,
  540. chan->dfs_cac_ms))
  541. goto nla_put_failure;
  542. }
  543. }
  544. if (large) {
  545. if ((chan->flags & IEEE80211_CHAN_NO_HT40MINUS) &&
  546. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_HT40_MINUS))
  547. goto nla_put_failure;
  548. if ((chan->flags & IEEE80211_CHAN_NO_HT40PLUS) &&
  549. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_HT40_PLUS))
  550. goto nla_put_failure;
  551. if ((chan->flags & IEEE80211_CHAN_NO_80MHZ) &&
  552. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_80MHZ))
  553. goto nla_put_failure;
  554. if ((chan->flags & IEEE80211_CHAN_NO_160MHZ) &&
  555. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_160MHZ))
  556. goto nla_put_failure;
  557. if ((chan->flags & IEEE80211_CHAN_INDOOR_ONLY) &&
  558. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_INDOOR_ONLY))
  559. goto nla_put_failure;
  560. if ((chan->flags & IEEE80211_CHAN_GO_CONCURRENT) &&
  561. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_GO_CONCURRENT))
  562. goto nla_put_failure;
  563. if ((chan->flags & IEEE80211_CHAN_NO_20MHZ) &&
  564. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_20MHZ))
  565. goto nla_put_failure;
  566. if ((chan->flags & IEEE80211_CHAN_NO_10MHZ) &&
  567. nla_put_flag(msg, NL80211_FREQUENCY_ATTR_NO_10MHZ))
  568. goto nla_put_failure;
  569. }
  570. if (nla_put_u32(msg, NL80211_FREQUENCY_ATTR_MAX_TX_POWER,
  571. DBM_TO_MBM(chan->max_power)))
  572. goto nla_put_failure;
  573. return 0;
  574. nla_put_failure:
  575. return -ENOBUFS;
  576. }
  577. /* netlink command implementations */
  578. struct key_parse {
  579. struct key_params p;
  580. int idx;
  581. int type;
  582. bool def, defmgmt;
  583. bool def_uni, def_multi;
  584. };
  585. static int nl80211_parse_key_new(struct nlattr *key, struct key_parse *k)
  586. {
  587. struct nlattr *tb[NL80211_KEY_MAX + 1];
  588. int err = nla_parse_nested(tb, NL80211_KEY_MAX, key,
  589. nl80211_key_policy);
  590. if (err)
  591. return err;
  592. k->def = !!tb[NL80211_KEY_DEFAULT];
  593. k->defmgmt = !!tb[NL80211_KEY_DEFAULT_MGMT];
  594. if (k->def) {
  595. k->def_uni = true;
  596. k->def_multi = true;
  597. }
  598. if (k->defmgmt)
  599. k->def_multi = true;
  600. if (tb[NL80211_KEY_IDX])
  601. k->idx = nla_get_u8(tb[NL80211_KEY_IDX]);
  602. if (tb[NL80211_KEY_DATA]) {
  603. k->p.key = nla_data(tb[NL80211_KEY_DATA]);
  604. k->p.key_len = nla_len(tb[NL80211_KEY_DATA]);
  605. }
  606. if (tb[NL80211_KEY_SEQ]) {
  607. k->p.seq = nla_data(tb[NL80211_KEY_SEQ]);
  608. k->p.seq_len = nla_len(tb[NL80211_KEY_SEQ]);
  609. }
  610. if (tb[NL80211_KEY_CIPHER])
  611. k->p.cipher = nla_get_u32(tb[NL80211_KEY_CIPHER]);
  612. if (tb[NL80211_KEY_TYPE]) {
  613. k->type = nla_get_u32(tb[NL80211_KEY_TYPE]);
  614. if (k->type < 0 || k->type >= NUM_NL80211_KEYTYPES)
  615. return -EINVAL;
  616. }
  617. if (tb[NL80211_KEY_DEFAULT_TYPES]) {
  618. struct nlattr *kdt[NUM_NL80211_KEY_DEFAULT_TYPES];
  619. err = nla_parse_nested(kdt, NUM_NL80211_KEY_DEFAULT_TYPES - 1,
  620. tb[NL80211_KEY_DEFAULT_TYPES],
  621. nl80211_key_default_policy);
  622. if (err)
  623. return err;
  624. k->def_uni = kdt[NL80211_KEY_DEFAULT_TYPE_UNICAST];
  625. k->def_multi = kdt[NL80211_KEY_DEFAULT_TYPE_MULTICAST];
  626. }
  627. return 0;
  628. }
  629. static int nl80211_parse_key_old(struct genl_info *info, struct key_parse *k)
  630. {
  631. if (info->attrs[NL80211_ATTR_KEY_DATA]) {
  632. k->p.key = nla_data(info->attrs[NL80211_ATTR_KEY_DATA]);
  633. k->p.key_len = nla_len(info->attrs[NL80211_ATTR_KEY_DATA]);
  634. }
  635. if (info->attrs[NL80211_ATTR_KEY_SEQ]) {
  636. k->p.seq = nla_data(info->attrs[NL80211_ATTR_KEY_SEQ]);
  637. k->p.seq_len = nla_len(info->attrs[NL80211_ATTR_KEY_SEQ]);
  638. }
  639. if (info->attrs[NL80211_ATTR_KEY_IDX])
  640. k->idx = nla_get_u8(info->attrs[NL80211_ATTR_KEY_IDX]);
  641. if (info->attrs[NL80211_ATTR_KEY_CIPHER])
  642. k->p.cipher = nla_get_u32(info->attrs[NL80211_ATTR_KEY_CIPHER]);
  643. k->def = !!info->attrs[NL80211_ATTR_KEY_DEFAULT];
  644. k->defmgmt = !!info->attrs[NL80211_ATTR_KEY_DEFAULT_MGMT];
  645. if (k->def) {
  646. k->def_uni = true;
  647. k->def_multi = true;
  648. }
  649. if (k->defmgmt)
  650. k->def_multi = true;
  651. if (info->attrs[NL80211_ATTR_KEY_TYPE]) {
  652. k->type = nla_get_u32(info->attrs[NL80211_ATTR_KEY_TYPE]);
  653. if (k->type < 0 || k->type >= NUM_NL80211_KEYTYPES)
  654. return -EINVAL;
  655. }
  656. if (info->attrs[NL80211_ATTR_KEY_DEFAULT_TYPES]) {
  657. struct nlattr *kdt[NUM_NL80211_KEY_DEFAULT_TYPES];
  658. int err = nla_parse_nested(
  659. kdt, NUM_NL80211_KEY_DEFAULT_TYPES - 1,
  660. info->attrs[NL80211_ATTR_KEY_DEFAULT_TYPES],
  661. nl80211_key_default_policy);
  662. if (err)
  663. return err;
  664. k->def_uni = kdt[NL80211_KEY_DEFAULT_TYPE_UNICAST];
  665. k->def_multi = kdt[NL80211_KEY_DEFAULT_TYPE_MULTICAST];
  666. }
  667. return 0;
  668. }
  669. static int nl80211_parse_key(struct genl_info *info, struct key_parse *k)
  670. {
  671. int err;
  672. memset(k, 0, sizeof(*k));
  673. k->idx = -1;
  674. k->type = -1;
  675. if (info->attrs[NL80211_ATTR_KEY])
  676. err = nl80211_parse_key_new(info->attrs[NL80211_ATTR_KEY], k);
  677. else
  678. err = nl80211_parse_key_old(info, k);
  679. if (err)
  680. return err;
  681. if (k->def && k->defmgmt)
  682. return -EINVAL;
  683. if (k->defmgmt) {
  684. if (k->def_uni || !k->def_multi)
  685. return -EINVAL;
  686. }
  687. if (k->idx != -1) {
  688. if (k->defmgmt) {
  689. if (k->idx < 4 || k->idx > 5)
  690. return -EINVAL;
  691. } else if (k->def) {
  692. if (k->idx < 0 || k->idx > 3)
  693. return -EINVAL;
  694. } else {
  695. if (k->idx < 0 || k->idx > 5)
  696. return -EINVAL;
  697. }
  698. }
  699. return 0;
  700. }
  701. static struct cfg80211_cached_keys *
  702. nl80211_parse_connkeys(struct cfg80211_registered_device *rdev,
  703. struct nlattr *keys, bool *no_ht)
  704. {
  705. struct key_parse parse;
  706. struct nlattr *key;
  707. struct cfg80211_cached_keys *result;
  708. int rem, err, def = 0;
  709. result = kzalloc(sizeof(*result), GFP_KERNEL);
  710. if (!result)
  711. return ERR_PTR(-ENOMEM);
  712. result->def = -1;
  713. result->defmgmt = -1;
  714. nla_for_each_nested(key, keys, rem) {
  715. memset(&parse, 0, sizeof(parse));
  716. parse.idx = -1;
  717. err = nl80211_parse_key_new(key, &parse);
  718. if (err)
  719. goto error;
  720. err = -EINVAL;
  721. if (!parse.p.key)
  722. goto error;
  723. if (parse.idx < 0 || parse.idx > 4)
  724. goto error;
  725. if (parse.def) {
  726. if (def)
  727. goto error;
  728. def = 1;
  729. result->def = parse.idx;
  730. if (!parse.def_uni || !parse.def_multi)
  731. goto error;
  732. } else if (parse.defmgmt)
  733. goto error;
  734. err = cfg80211_validate_key_settings(rdev, &parse.p,
  735. parse.idx, false, NULL);
  736. if (err)
  737. goto error;
  738. result->params[parse.idx].cipher = parse.p.cipher;
  739. result->params[parse.idx].key_len = parse.p.key_len;
  740. result->params[parse.idx].key = result->data[parse.idx];
  741. memcpy(result->data[parse.idx], parse.p.key, parse.p.key_len);
  742. if (parse.p.cipher == WLAN_CIPHER_SUITE_WEP40 ||
  743. parse.p.cipher == WLAN_CIPHER_SUITE_WEP104) {
  744. if (no_ht)
  745. *no_ht = true;
  746. }
  747. }
  748. return result;
  749. error:
  750. kfree(result);
  751. return ERR_PTR(err);
  752. }
  753. static int nl80211_key_allowed(struct wireless_dev *wdev)
  754. {
  755. ASSERT_WDEV_LOCK(wdev);
  756. switch (wdev->iftype) {
  757. case NL80211_IFTYPE_AP:
  758. case NL80211_IFTYPE_AP_VLAN:
  759. case NL80211_IFTYPE_P2P_GO:
  760. case NL80211_IFTYPE_MESH_POINT:
  761. break;
  762. case NL80211_IFTYPE_ADHOC:
  763. case NL80211_IFTYPE_STATION:
  764. case NL80211_IFTYPE_P2P_CLIENT:
  765. if (!wdev->current_bss)
  766. return -ENOLINK;
  767. break;
  768. default:
  769. return -EINVAL;
  770. }
  771. return 0;
  772. }
  773. static struct ieee80211_channel *nl80211_get_valid_chan(struct wiphy *wiphy,
  774. struct nlattr *tb)
  775. {
  776. struct ieee80211_channel *chan;
  777. if (tb == NULL)
  778. return NULL;
  779. chan = ieee80211_get_channel(wiphy, nla_get_u32(tb));
  780. if (!chan || chan->flags & IEEE80211_CHAN_DISABLED)
  781. return NULL;
  782. return chan;
  783. }
  784. static int nl80211_put_iftypes(struct sk_buff *msg, u32 attr, u16 ifmodes)
  785. {
  786. struct nlattr *nl_modes = nla_nest_start(msg, attr);
  787. int i;
  788. if (!nl_modes)
  789. goto nla_put_failure;
  790. i = 0;
  791. while (ifmodes) {
  792. if ((ifmodes & 1) && nla_put_flag(msg, i))
  793. goto nla_put_failure;
  794. ifmodes >>= 1;
  795. i++;
  796. }
  797. nla_nest_end(msg, nl_modes);
  798. return 0;
  799. nla_put_failure:
  800. return -ENOBUFS;
  801. }
  802. static int nl80211_put_iface_combinations(struct wiphy *wiphy,
  803. struct sk_buff *msg,
  804. bool large)
  805. {
  806. struct nlattr *nl_combis;
  807. int i, j;
  808. nl_combis = nla_nest_start(msg,
  809. NL80211_ATTR_INTERFACE_COMBINATIONS);
  810. if (!nl_combis)
  811. goto nla_put_failure;
  812. for (i = 0; i < wiphy->n_iface_combinations; i++) {
  813. const struct ieee80211_iface_combination *c;
  814. struct nlattr *nl_combi, *nl_limits;
  815. c = &wiphy->iface_combinations[i];
  816. nl_combi = nla_nest_start(msg, i + 1);
  817. if (!nl_combi)
  818. goto nla_put_failure;
  819. nl_limits = nla_nest_start(msg, NL80211_IFACE_COMB_LIMITS);
  820. if (!nl_limits)
  821. goto nla_put_failure;
  822. for (j = 0; j < c->n_limits; j++) {
  823. struct nlattr *nl_limit;
  824. nl_limit = nla_nest_start(msg, j + 1);
  825. if (!nl_limit)
  826. goto nla_put_failure;
  827. if (nla_put_u32(msg, NL80211_IFACE_LIMIT_MAX,
  828. c->limits[j].max))
  829. goto nla_put_failure;
  830. if (nl80211_put_iftypes(msg, NL80211_IFACE_LIMIT_TYPES,
  831. c->limits[j].types))
  832. goto nla_put_failure;
  833. nla_nest_end(msg, nl_limit);
  834. }
  835. nla_nest_end(msg, nl_limits);
  836. if (c->beacon_int_infra_match &&
  837. nla_put_flag(msg, NL80211_IFACE_COMB_STA_AP_BI_MATCH))
  838. goto nla_put_failure;
  839. if (nla_put_u32(msg, NL80211_IFACE_COMB_NUM_CHANNELS,
  840. c->num_different_channels) ||
  841. nla_put_u32(msg, NL80211_IFACE_COMB_MAXNUM,
  842. c->max_interfaces))
  843. goto nla_put_failure;
  844. if (large &&
  845. (nla_put_u32(msg, NL80211_IFACE_COMB_RADAR_DETECT_WIDTHS,
  846. c->radar_detect_widths) ||
  847. nla_put_u32(msg, NL80211_IFACE_COMB_RADAR_DETECT_REGIONS,
  848. c->radar_detect_regions)))
  849. goto nla_put_failure;
  850. nla_nest_end(msg, nl_combi);
  851. }
  852. nla_nest_end(msg, nl_combis);
  853. return 0;
  854. nla_put_failure:
  855. return -ENOBUFS;
  856. }
  857. #ifdef CONFIG_PM
  858. static int nl80211_send_wowlan_tcp_caps(struct cfg80211_registered_device *rdev,
  859. struct sk_buff *msg)
  860. {
  861. const struct wiphy_wowlan_tcp_support *tcp = rdev->wiphy.wowlan->tcp;
  862. struct nlattr *nl_tcp;
  863. if (!tcp)
  864. return 0;
  865. nl_tcp = nla_nest_start(msg, NL80211_WOWLAN_TRIG_TCP_CONNECTION);
  866. if (!nl_tcp)
  867. return -ENOBUFS;
  868. if (nla_put_u32(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD,
  869. tcp->data_payload_max))
  870. return -ENOBUFS;
  871. if (nla_put_u32(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD,
  872. tcp->data_payload_max))
  873. return -ENOBUFS;
  874. if (tcp->seq && nla_put_flag(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD_SEQ))
  875. return -ENOBUFS;
  876. if (tcp->tok && nla_put(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD_TOKEN,
  877. sizeof(*tcp->tok), tcp->tok))
  878. return -ENOBUFS;
  879. if (nla_put_u32(msg, NL80211_WOWLAN_TCP_DATA_INTERVAL,
  880. tcp->data_interval_max))
  881. return -ENOBUFS;
  882. if (nla_put_u32(msg, NL80211_WOWLAN_TCP_WAKE_PAYLOAD,
  883. tcp->wake_payload_max))
  884. return -ENOBUFS;
  885. nla_nest_end(msg, nl_tcp);
  886. return 0;
  887. }
  888. static int nl80211_send_wowlan(struct sk_buff *msg,
  889. struct cfg80211_registered_device *rdev,
  890. bool large)
  891. {
  892. struct nlattr *nl_wowlan;
  893. if (!rdev->wiphy.wowlan)
  894. return 0;
  895. nl_wowlan = nla_nest_start(msg, NL80211_ATTR_WOWLAN_TRIGGERS_SUPPORTED);
  896. if (!nl_wowlan)
  897. return -ENOBUFS;
  898. if (((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_ANY) &&
  899. nla_put_flag(msg, NL80211_WOWLAN_TRIG_ANY)) ||
  900. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_DISCONNECT) &&
  901. nla_put_flag(msg, NL80211_WOWLAN_TRIG_DISCONNECT)) ||
  902. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_MAGIC_PKT) &&
  903. nla_put_flag(msg, NL80211_WOWLAN_TRIG_MAGIC_PKT)) ||
  904. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_SUPPORTS_GTK_REKEY) &&
  905. nla_put_flag(msg, NL80211_WOWLAN_TRIG_GTK_REKEY_SUPPORTED)) ||
  906. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_GTK_REKEY_FAILURE) &&
  907. nla_put_flag(msg, NL80211_WOWLAN_TRIG_GTK_REKEY_FAILURE)) ||
  908. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_EAP_IDENTITY_REQ) &&
  909. nla_put_flag(msg, NL80211_WOWLAN_TRIG_EAP_IDENT_REQUEST)) ||
  910. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_4WAY_HANDSHAKE) &&
  911. nla_put_flag(msg, NL80211_WOWLAN_TRIG_4WAY_HANDSHAKE)) ||
  912. ((rdev->wiphy.wowlan->flags & WIPHY_WOWLAN_RFKILL_RELEASE) &&
  913. nla_put_flag(msg, NL80211_WOWLAN_TRIG_RFKILL_RELEASE)))
  914. return -ENOBUFS;
  915. if (rdev->wiphy.wowlan->n_patterns) {
  916. struct nl80211_pattern_support pat = {
  917. .max_patterns = rdev->wiphy.wowlan->n_patterns,
  918. .min_pattern_len = rdev->wiphy.wowlan->pattern_min_len,
  919. .max_pattern_len = rdev->wiphy.wowlan->pattern_max_len,
  920. .max_pkt_offset = rdev->wiphy.wowlan->max_pkt_offset,
  921. };
  922. if (nla_put(msg, NL80211_WOWLAN_TRIG_PKT_PATTERN,
  923. sizeof(pat), &pat))
  924. return -ENOBUFS;
  925. }
  926. if (large && nl80211_send_wowlan_tcp_caps(rdev, msg))
  927. return -ENOBUFS;
  928. nla_nest_end(msg, nl_wowlan);
  929. return 0;
  930. }
  931. #endif
  932. static int nl80211_send_coalesce(struct sk_buff *msg,
  933. struct cfg80211_registered_device *rdev)
  934. {
  935. struct nl80211_coalesce_rule_support rule;
  936. if (!rdev->wiphy.coalesce)
  937. return 0;
  938. rule.max_rules = rdev->wiphy.coalesce->n_rules;
  939. rule.max_delay = rdev->wiphy.coalesce->max_delay;
  940. rule.pat.max_patterns = rdev->wiphy.coalesce->n_patterns;
  941. rule.pat.min_pattern_len = rdev->wiphy.coalesce->pattern_min_len;
  942. rule.pat.max_pattern_len = rdev->wiphy.coalesce->pattern_max_len;
  943. rule.pat.max_pkt_offset = rdev->wiphy.coalesce->max_pkt_offset;
  944. if (nla_put(msg, NL80211_ATTR_COALESCE_RULE, sizeof(rule), &rule))
  945. return -ENOBUFS;
  946. return 0;
  947. }
  948. static int nl80211_send_band_rateinfo(struct sk_buff *msg,
  949. struct ieee80211_supported_band *sband)
  950. {
  951. struct nlattr *nl_rates, *nl_rate;
  952. struct ieee80211_rate *rate;
  953. int i;
  954. /* add HT info */
  955. if (sband->ht_cap.ht_supported &&
  956. (nla_put(msg, NL80211_BAND_ATTR_HT_MCS_SET,
  957. sizeof(sband->ht_cap.mcs),
  958. &sband->ht_cap.mcs) ||
  959. nla_put_u16(msg, NL80211_BAND_ATTR_HT_CAPA,
  960. sband->ht_cap.cap) ||
  961. nla_put_u8(msg, NL80211_BAND_ATTR_HT_AMPDU_FACTOR,
  962. sband->ht_cap.ampdu_factor) ||
  963. nla_put_u8(msg, NL80211_BAND_ATTR_HT_AMPDU_DENSITY,
  964. sband->ht_cap.ampdu_density)))
  965. return -ENOBUFS;
  966. /* add VHT info */
  967. if (sband->vht_cap.vht_supported &&
  968. (nla_put(msg, NL80211_BAND_ATTR_VHT_MCS_SET,
  969. sizeof(sband->vht_cap.vht_mcs),
  970. &sband->vht_cap.vht_mcs) ||
  971. nla_put_u32(msg, NL80211_BAND_ATTR_VHT_CAPA,
  972. sband->vht_cap.cap)))
  973. return -ENOBUFS;
  974. /* add bitrates */
  975. nl_rates = nla_nest_start(msg, NL80211_BAND_ATTR_RATES);
  976. if (!nl_rates)
  977. return -ENOBUFS;
  978. for (i = 0; i < sband->n_bitrates; i++) {
  979. nl_rate = nla_nest_start(msg, i);
  980. if (!nl_rate)
  981. return -ENOBUFS;
  982. rate = &sband->bitrates[i];
  983. if (nla_put_u32(msg, NL80211_BITRATE_ATTR_RATE,
  984. rate->bitrate))
  985. return -ENOBUFS;
  986. if ((rate->flags & IEEE80211_RATE_SHORT_PREAMBLE) &&
  987. nla_put_flag(msg,
  988. NL80211_BITRATE_ATTR_2GHZ_SHORTPREAMBLE))
  989. return -ENOBUFS;
  990. nla_nest_end(msg, nl_rate);
  991. }
  992. nla_nest_end(msg, nl_rates);
  993. return 0;
  994. }
  995. static int
  996. nl80211_send_mgmt_stypes(struct sk_buff *msg,
  997. const struct ieee80211_txrx_stypes *mgmt_stypes)
  998. {
  999. u16 stypes;
  1000. struct nlattr *nl_ftypes, *nl_ifs;
  1001. enum nl80211_iftype ift;
  1002. int i;
  1003. if (!mgmt_stypes)
  1004. return 0;
  1005. nl_ifs = nla_nest_start(msg, NL80211_ATTR_TX_FRAME_TYPES);
  1006. if (!nl_ifs)
  1007. return -ENOBUFS;
  1008. for (ift = 0; ift < NUM_NL80211_IFTYPES; ift++) {
  1009. nl_ftypes = nla_nest_start(msg, ift);
  1010. if (!nl_ftypes)
  1011. return -ENOBUFS;
  1012. i = 0;
  1013. stypes = mgmt_stypes[ift].tx;
  1014. while (stypes) {
  1015. if ((stypes & 1) &&
  1016. nla_put_u16(msg, NL80211_ATTR_FRAME_TYPE,
  1017. (i << 4) | IEEE80211_FTYPE_MGMT))
  1018. return -ENOBUFS;
  1019. stypes >>= 1;
  1020. i++;
  1021. }
  1022. nla_nest_end(msg, nl_ftypes);
  1023. }
  1024. nla_nest_end(msg, nl_ifs);
  1025. nl_ifs = nla_nest_start(msg, NL80211_ATTR_RX_FRAME_TYPES);
  1026. if (!nl_ifs)
  1027. return -ENOBUFS;
  1028. for (ift = 0; ift < NUM_NL80211_IFTYPES; ift++) {
  1029. nl_ftypes = nla_nest_start(msg, ift);
  1030. if (!nl_ftypes)
  1031. return -ENOBUFS;
  1032. i = 0;
  1033. stypes = mgmt_stypes[ift].rx;
  1034. while (stypes) {
  1035. if ((stypes & 1) &&
  1036. nla_put_u16(msg, NL80211_ATTR_FRAME_TYPE,
  1037. (i << 4) | IEEE80211_FTYPE_MGMT))
  1038. return -ENOBUFS;
  1039. stypes >>= 1;
  1040. i++;
  1041. }
  1042. nla_nest_end(msg, nl_ftypes);
  1043. }
  1044. nla_nest_end(msg, nl_ifs);
  1045. return 0;
  1046. }
  1047. struct nl80211_dump_wiphy_state {
  1048. s64 filter_wiphy;
  1049. long start;
  1050. long split_start, band_start, chan_start;
  1051. bool split;
  1052. };
  1053. static int nl80211_send_wiphy(struct cfg80211_registered_device *rdev,
  1054. enum nl80211_commands cmd,
  1055. struct sk_buff *msg, u32 portid, u32 seq,
  1056. int flags, struct nl80211_dump_wiphy_state *state)
  1057. {
  1058. void *hdr;
  1059. struct nlattr *nl_bands, *nl_band;
  1060. struct nlattr *nl_freqs, *nl_freq;
  1061. struct nlattr *nl_cmds;
  1062. enum ieee80211_band band;
  1063. struct ieee80211_channel *chan;
  1064. int i;
  1065. const struct ieee80211_txrx_stypes *mgmt_stypes =
  1066. rdev->wiphy.mgmt_stypes;
  1067. u32 features;
  1068. hdr = nl80211hdr_put(msg, portid, seq, flags, cmd);
  1069. if (!hdr)
  1070. return -ENOBUFS;
  1071. if (WARN_ON(!state))
  1072. return -EINVAL;
  1073. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  1074. nla_put_string(msg, NL80211_ATTR_WIPHY_NAME,
  1075. wiphy_name(&rdev->wiphy)) ||
  1076. nla_put_u32(msg, NL80211_ATTR_GENERATION,
  1077. cfg80211_rdev_list_generation))
  1078. goto nla_put_failure;
  1079. if (cmd != NL80211_CMD_NEW_WIPHY)
  1080. goto finish;
  1081. switch (state->split_start) {
  1082. case 0:
  1083. if (nla_put_u8(msg, NL80211_ATTR_WIPHY_RETRY_SHORT,
  1084. rdev->wiphy.retry_short) ||
  1085. nla_put_u8(msg, NL80211_ATTR_WIPHY_RETRY_LONG,
  1086. rdev->wiphy.retry_long) ||
  1087. nla_put_u32(msg, NL80211_ATTR_WIPHY_FRAG_THRESHOLD,
  1088. rdev->wiphy.frag_threshold) ||
  1089. nla_put_u32(msg, NL80211_ATTR_WIPHY_RTS_THRESHOLD,
  1090. rdev->wiphy.rts_threshold) ||
  1091. nla_put_u8(msg, NL80211_ATTR_WIPHY_COVERAGE_CLASS,
  1092. rdev->wiphy.coverage_class) ||
  1093. nla_put_u8(msg, NL80211_ATTR_MAX_NUM_SCAN_SSIDS,
  1094. rdev->wiphy.max_scan_ssids) ||
  1095. nla_put_u8(msg, NL80211_ATTR_MAX_NUM_SCHED_SCAN_SSIDS,
  1096. rdev->wiphy.max_sched_scan_ssids) ||
  1097. nla_put_u16(msg, NL80211_ATTR_MAX_SCAN_IE_LEN,
  1098. rdev->wiphy.max_scan_ie_len) ||
  1099. nla_put_u16(msg, NL80211_ATTR_MAX_SCHED_SCAN_IE_LEN,
  1100. rdev->wiphy.max_sched_scan_ie_len) ||
  1101. nla_put_u8(msg, NL80211_ATTR_MAX_MATCH_SETS,
  1102. rdev->wiphy.max_match_sets))
  1103. goto nla_put_failure;
  1104. if ((rdev->wiphy.flags & WIPHY_FLAG_IBSS_RSN) &&
  1105. nla_put_flag(msg, NL80211_ATTR_SUPPORT_IBSS_RSN))
  1106. goto nla_put_failure;
  1107. if ((rdev->wiphy.flags & WIPHY_FLAG_MESH_AUTH) &&
  1108. nla_put_flag(msg, NL80211_ATTR_SUPPORT_MESH_AUTH))
  1109. goto nla_put_failure;
  1110. if ((rdev->wiphy.flags & WIPHY_FLAG_AP_UAPSD) &&
  1111. nla_put_flag(msg, NL80211_ATTR_SUPPORT_AP_UAPSD))
  1112. goto nla_put_failure;
  1113. if ((rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_FW_ROAM) &&
  1114. nla_put_flag(msg, NL80211_ATTR_ROAM_SUPPORT))
  1115. goto nla_put_failure;
  1116. if ((rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_TDLS) &&
  1117. nla_put_flag(msg, NL80211_ATTR_TDLS_SUPPORT))
  1118. goto nla_put_failure;
  1119. if ((rdev->wiphy.flags & WIPHY_FLAG_TDLS_EXTERNAL_SETUP) &&
  1120. nla_put_flag(msg, NL80211_ATTR_TDLS_EXTERNAL_SETUP))
  1121. goto nla_put_failure;
  1122. state->split_start++;
  1123. if (state->split)
  1124. break;
  1125. case 1:
  1126. if (nla_put(msg, NL80211_ATTR_CIPHER_SUITES,
  1127. sizeof(u32) * rdev->wiphy.n_cipher_suites,
  1128. rdev->wiphy.cipher_suites))
  1129. goto nla_put_failure;
  1130. if (nla_put_u8(msg, NL80211_ATTR_MAX_NUM_PMKIDS,
  1131. rdev->wiphy.max_num_pmkids))
  1132. goto nla_put_failure;
  1133. if ((rdev->wiphy.flags & WIPHY_FLAG_CONTROL_PORT_PROTOCOL) &&
  1134. nla_put_flag(msg, NL80211_ATTR_CONTROL_PORT_ETHERTYPE))
  1135. goto nla_put_failure;
  1136. if (nla_put_u32(msg, NL80211_ATTR_WIPHY_ANTENNA_AVAIL_TX,
  1137. rdev->wiphy.available_antennas_tx) ||
  1138. nla_put_u32(msg, NL80211_ATTR_WIPHY_ANTENNA_AVAIL_RX,
  1139. rdev->wiphy.available_antennas_rx))
  1140. goto nla_put_failure;
  1141. if ((rdev->wiphy.flags & WIPHY_FLAG_AP_PROBE_RESP_OFFLOAD) &&
  1142. nla_put_u32(msg, NL80211_ATTR_PROBE_RESP_OFFLOAD,
  1143. rdev->wiphy.probe_resp_offload))
  1144. goto nla_put_failure;
  1145. if ((rdev->wiphy.available_antennas_tx ||
  1146. rdev->wiphy.available_antennas_rx) &&
  1147. rdev->ops->get_antenna) {
  1148. u32 tx_ant = 0, rx_ant = 0;
  1149. int res;
  1150. res = rdev_get_antenna(rdev, &tx_ant, &rx_ant);
  1151. if (!res) {
  1152. if (nla_put_u32(msg,
  1153. NL80211_ATTR_WIPHY_ANTENNA_TX,
  1154. tx_ant) ||
  1155. nla_put_u32(msg,
  1156. NL80211_ATTR_WIPHY_ANTENNA_RX,
  1157. rx_ant))
  1158. goto nla_put_failure;
  1159. }
  1160. }
  1161. state->split_start++;
  1162. if (state->split)
  1163. break;
  1164. case 2:
  1165. if (nl80211_put_iftypes(msg, NL80211_ATTR_SUPPORTED_IFTYPES,
  1166. rdev->wiphy.interface_modes))
  1167. goto nla_put_failure;
  1168. state->split_start++;
  1169. if (state->split)
  1170. break;
  1171. case 3:
  1172. nl_bands = nla_nest_start(msg, NL80211_ATTR_WIPHY_BANDS);
  1173. if (!nl_bands)
  1174. goto nla_put_failure;
  1175. for (band = state->band_start;
  1176. band < IEEE80211_NUM_BANDS; band++) {
  1177. struct ieee80211_supported_band *sband;
  1178. sband = rdev->wiphy.bands[band];
  1179. if (!sband)
  1180. continue;
  1181. nl_band = nla_nest_start(msg, band);
  1182. if (!nl_band)
  1183. goto nla_put_failure;
  1184. switch (state->chan_start) {
  1185. case 0:
  1186. if (nl80211_send_band_rateinfo(msg, sband))
  1187. goto nla_put_failure;
  1188. state->chan_start++;
  1189. if (state->split)
  1190. break;
  1191. default:
  1192. /* add frequencies */
  1193. nl_freqs = nla_nest_start(
  1194. msg, NL80211_BAND_ATTR_FREQS);
  1195. if (!nl_freqs)
  1196. goto nla_put_failure;
  1197. for (i = state->chan_start - 1;
  1198. i < sband->n_channels;
  1199. i++) {
  1200. nl_freq = nla_nest_start(msg, i);
  1201. if (!nl_freq)
  1202. goto nla_put_failure;
  1203. chan = &sband->channels[i];
  1204. if (nl80211_msg_put_channel(
  1205. msg, chan,
  1206. state->split))
  1207. goto nla_put_failure;
  1208. nla_nest_end(msg, nl_freq);
  1209. if (state->split)
  1210. break;
  1211. }
  1212. if (i < sband->n_channels)
  1213. state->chan_start = i + 2;
  1214. else
  1215. state->chan_start = 0;
  1216. nla_nest_end(msg, nl_freqs);
  1217. }
  1218. nla_nest_end(msg, nl_band);
  1219. if (state->split) {
  1220. /* start again here */
  1221. if (state->chan_start)
  1222. band--;
  1223. break;
  1224. }
  1225. }
  1226. nla_nest_end(msg, nl_bands);
  1227. if (band < IEEE80211_NUM_BANDS)
  1228. state->band_start = band + 1;
  1229. else
  1230. state->band_start = 0;
  1231. /* if bands & channels are done, continue outside */
  1232. if (state->band_start == 0 && state->chan_start == 0)
  1233. state->split_start++;
  1234. if (state->split)
  1235. break;
  1236. case 4:
  1237. nl_cmds = nla_nest_start(msg, NL80211_ATTR_SUPPORTED_COMMANDS);
  1238. if (!nl_cmds)
  1239. goto nla_put_failure;
  1240. i = 0;
  1241. #define CMD(op, n) \
  1242. do { \
  1243. if (rdev->ops->op) { \
  1244. i++; \
  1245. if (nla_put_u32(msg, i, NL80211_CMD_ ## n)) \
  1246. goto nla_put_failure; \
  1247. } \
  1248. } while (0)
  1249. CMD(add_virtual_intf, NEW_INTERFACE);
  1250. CMD(change_virtual_intf, SET_INTERFACE);
  1251. CMD(add_key, NEW_KEY);
  1252. CMD(start_ap, START_AP);
  1253. CMD(add_station, NEW_STATION);
  1254. CMD(add_mpath, NEW_MPATH);
  1255. CMD(update_mesh_config, SET_MESH_CONFIG);
  1256. CMD(change_bss, SET_BSS);
  1257. CMD(auth, AUTHENTICATE);
  1258. CMD(assoc, ASSOCIATE);
  1259. CMD(deauth, DEAUTHENTICATE);
  1260. CMD(disassoc, DISASSOCIATE);
  1261. CMD(join_ibss, JOIN_IBSS);
  1262. CMD(join_mesh, JOIN_MESH);
  1263. CMD(set_pmksa, SET_PMKSA);
  1264. CMD(del_pmksa, DEL_PMKSA);
  1265. CMD(flush_pmksa, FLUSH_PMKSA);
  1266. if (rdev->wiphy.flags & WIPHY_FLAG_HAS_REMAIN_ON_CHANNEL)
  1267. CMD(remain_on_channel, REMAIN_ON_CHANNEL);
  1268. CMD(set_bitrate_mask, SET_TX_BITRATE_MASK);
  1269. CMD(mgmt_tx, FRAME);
  1270. CMD(mgmt_tx_cancel_wait, FRAME_WAIT_CANCEL);
  1271. if (rdev->wiphy.flags & WIPHY_FLAG_NETNS_OK) {
  1272. i++;
  1273. if (nla_put_u32(msg, i, NL80211_CMD_SET_WIPHY_NETNS))
  1274. goto nla_put_failure;
  1275. }
  1276. if (rdev->ops->set_monitor_channel || rdev->ops->start_ap ||
  1277. rdev->ops->join_mesh) {
  1278. i++;
  1279. if (nla_put_u32(msg, i, NL80211_CMD_SET_CHANNEL))
  1280. goto nla_put_failure;
  1281. }
  1282. CMD(set_wds_peer, SET_WDS_PEER);
  1283. if (rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_TDLS) {
  1284. CMD(tdls_mgmt, TDLS_MGMT);
  1285. CMD(tdls_oper, TDLS_OPER);
  1286. }
  1287. if (rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_SCHED_SCAN)
  1288. CMD(sched_scan_start, START_SCHED_SCAN);
  1289. CMD(probe_client, PROBE_CLIENT);
  1290. CMD(set_noack_map, SET_NOACK_MAP);
  1291. if (rdev->wiphy.flags & WIPHY_FLAG_REPORTS_OBSS) {
  1292. i++;
  1293. if (nla_put_u32(msg, i, NL80211_CMD_REGISTER_BEACONS))
  1294. goto nla_put_failure;
  1295. }
  1296. CMD(start_p2p_device, START_P2P_DEVICE);
  1297. CMD(set_mcast_rate, SET_MCAST_RATE);
  1298. #ifdef CONFIG_NL80211_TESTMODE
  1299. CMD(testmode_cmd, TESTMODE);
  1300. #endif
  1301. if (state->split) {
  1302. CMD(crit_proto_start, CRIT_PROTOCOL_START);
  1303. CMD(crit_proto_stop, CRIT_PROTOCOL_STOP);
  1304. if (rdev->wiphy.flags & WIPHY_FLAG_HAS_CHANNEL_SWITCH)
  1305. CMD(channel_switch, CHANNEL_SWITCH);
  1306. CMD(set_qos_map, SET_QOS_MAP);
  1307. if (rdev->wiphy.flags &
  1308. WIPHY_FLAG_SUPPORTS_WMM_ADMISSION)
  1309. CMD(add_tx_ts, ADD_TX_TS);
  1310. }
  1311. /* add into the if now */
  1312. #undef CMD
  1313. if (rdev->ops->connect || rdev->ops->auth) {
  1314. i++;
  1315. if (nla_put_u32(msg, i, NL80211_CMD_CONNECT))
  1316. goto nla_put_failure;
  1317. }
  1318. if (rdev->ops->disconnect || rdev->ops->deauth) {
  1319. i++;
  1320. if (nla_put_u32(msg, i, NL80211_CMD_DISCONNECT))
  1321. goto nla_put_failure;
  1322. }
  1323. nla_nest_end(msg, nl_cmds);
  1324. state->split_start++;
  1325. if (state->split)
  1326. break;
  1327. case 5:
  1328. if (rdev->ops->remain_on_channel &&
  1329. (rdev->wiphy.flags & WIPHY_FLAG_HAS_REMAIN_ON_CHANNEL) &&
  1330. nla_put_u32(msg,
  1331. NL80211_ATTR_MAX_REMAIN_ON_CHANNEL_DURATION,
  1332. rdev->wiphy.max_remain_on_channel_duration))
  1333. goto nla_put_failure;
  1334. if ((rdev->wiphy.flags & WIPHY_FLAG_OFFCHAN_TX) &&
  1335. nla_put_flag(msg, NL80211_ATTR_OFFCHANNEL_TX_OK))
  1336. goto nla_put_failure;
  1337. if (nl80211_send_mgmt_stypes(msg, mgmt_stypes))
  1338. goto nla_put_failure;
  1339. state->split_start++;
  1340. if (state->split)
  1341. break;
  1342. case 6:
  1343. #ifdef CONFIG_PM
  1344. if (nl80211_send_wowlan(msg, rdev, state->split))
  1345. goto nla_put_failure;
  1346. state->split_start++;
  1347. if (state->split)
  1348. break;
  1349. #else
  1350. state->split_start++;
  1351. #endif
  1352. case 7:
  1353. if (nl80211_put_iftypes(msg, NL80211_ATTR_SOFTWARE_IFTYPES,
  1354. rdev->wiphy.software_iftypes))
  1355. goto nla_put_failure;
  1356. if (nl80211_put_iface_combinations(&rdev->wiphy, msg,
  1357. state->split))
  1358. goto nla_put_failure;
  1359. state->split_start++;
  1360. if (state->split)
  1361. break;
  1362. case 8:
  1363. if ((rdev->wiphy.flags & WIPHY_FLAG_HAVE_AP_SME) &&
  1364. nla_put_u32(msg, NL80211_ATTR_DEVICE_AP_SME,
  1365. rdev->wiphy.ap_sme_capa))
  1366. goto nla_put_failure;
  1367. features = rdev->wiphy.features;
  1368. /*
  1369. * We can only add the per-channel limit information if the
  1370. * dump is split, otherwise it makes it too big. Therefore
  1371. * only advertise it in that case.
  1372. */
  1373. if (state->split)
  1374. features |= NL80211_FEATURE_ADVERTISE_CHAN_LIMITS;
  1375. if (nla_put_u32(msg, NL80211_ATTR_FEATURE_FLAGS, features))
  1376. goto nla_put_failure;
  1377. if (rdev->wiphy.ht_capa_mod_mask &&
  1378. nla_put(msg, NL80211_ATTR_HT_CAPABILITY_MASK,
  1379. sizeof(*rdev->wiphy.ht_capa_mod_mask),
  1380. rdev->wiphy.ht_capa_mod_mask))
  1381. goto nla_put_failure;
  1382. if (rdev->wiphy.flags & WIPHY_FLAG_HAVE_AP_SME &&
  1383. rdev->wiphy.max_acl_mac_addrs &&
  1384. nla_put_u32(msg, NL80211_ATTR_MAC_ACL_MAX,
  1385. rdev->wiphy.max_acl_mac_addrs))
  1386. goto nla_put_failure;
  1387. /*
  1388. * Any information below this point is only available to
  1389. * applications that can deal with it being split. This
  1390. * helps ensure that newly added capabilities don't break
  1391. * older tools by overrunning their buffers.
  1392. *
  1393. * We still increment split_start so that in the split
  1394. * case we'll continue with more data in the next round,
  1395. * but break unconditionally so unsplit data stops here.
  1396. */
  1397. state->split_start++;
  1398. break;
  1399. case 9:
  1400. if (rdev->wiphy.extended_capabilities &&
  1401. (nla_put(msg, NL80211_ATTR_EXT_CAPA,
  1402. rdev->wiphy.extended_capabilities_len,
  1403. rdev->wiphy.extended_capabilities) ||
  1404. nla_put(msg, NL80211_ATTR_EXT_CAPA_MASK,
  1405. rdev->wiphy.extended_capabilities_len,
  1406. rdev->wiphy.extended_capabilities_mask)))
  1407. goto nla_put_failure;
  1408. if (rdev->wiphy.vht_capa_mod_mask &&
  1409. nla_put(msg, NL80211_ATTR_VHT_CAPABILITY_MASK,
  1410. sizeof(*rdev->wiphy.vht_capa_mod_mask),
  1411. rdev->wiphy.vht_capa_mod_mask))
  1412. goto nla_put_failure;
  1413. state->split_start++;
  1414. break;
  1415. case 10:
  1416. if (nl80211_send_coalesce(msg, rdev))
  1417. goto nla_put_failure;
  1418. if ((rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_5_10_MHZ) &&
  1419. (nla_put_flag(msg, NL80211_ATTR_SUPPORT_5_MHZ) ||
  1420. nla_put_flag(msg, NL80211_ATTR_SUPPORT_10_MHZ)))
  1421. goto nla_put_failure;
  1422. if (rdev->wiphy.max_ap_assoc_sta &&
  1423. nla_put_u32(msg, NL80211_ATTR_MAX_AP_ASSOC_STA,
  1424. rdev->wiphy.max_ap_assoc_sta))
  1425. goto nla_put_failure;
  1426. state->split_start++;
  1427. break;
  1428. case 11:
  1429. if (rdev->wiphy.n_vendor_commands) {
  1430. const struct nl80211_vendor_cmd_info *info;
  1431. struct nlattr *nested;
  1432. nested = nla_nest_start(msg, NL80211_ATTR_VENDOR_DATA);
  1433. if (!nested)
  1434. goto nla_put_failure;
  1435. for (i = 0; i < rdev->wiphy.n_vendor_commands; i++) {
  1436. info = &rdev->wiphy.vendor_commands[i].info;
  1437. if (nla_put(msg, i + 1, sizeof(*info), info))
  1438. goto nla_put_failure;
  1439. }
  1440. nla_nest_end(msg, nested);
  1441. }
  1442. if (rdev->wiphy.n_vendor_events) {
  1443. const struct nl80211_vendor_cmd_info *info;
  1444. struct nlattr *nested;
  1445. nested = nla_nest_start(msg,
  1446. NL80211_ATTR_VENDOR_EVENTS);
  1447. if (!nested)
  1448. goto nla_put_failure;
  1449. for (i = 0; i < rdev->wiphy.n_vendor_events; i++) {
  1450. info = &rdev->wiphy.vendor_events[i];
  1451. if (nla_put(msg, i + 1, sizeof(*info), info))
  1452. goto nla_put_failure;
  1453. }
  1454. nla_nest_end(msg, nested);
  1455. }
  1456. state->split_start++;
  1457. break;
  1458. case 12:
  1459. if (rdev->wiphy.flags & WIPHY_FLAG_HAS_CHANNEL_SWITCH &&
  1460. nla_put_u8(msg, NL80211_ATTR_MAX_CSA_COUNTERS,
  1461. rdev->wiphy.max_num_csa_counters))
  1462. goto nla_put_failure;
  1463. /* done */
  1464. state->split_start = 0;
  1465. break;
  1466. }
  1467. finish:
  1468. return genlmsg_end(msg, hdr);
  1469. nla_put_failure:
  1470. genlmsg_cancel(msg, hdr);
  1471. return -EMSGSIZE;
  1472. }
  1473. static int nl80211_dump_wiphy_parse(struct sk_buff *skb,
  1474. struct netlink_callback *cb,
  1475. struct nl80211_dump_wiphy_state *state)
  1476. {
  1477. struct nlattr **tb = nl80211_fam.attrbuf;
  1478. int ret = nlmsg_parse(cb->nlh, GENL_HDRLEN + nl80211_fam.hdrsize,
  1479. tb, nl80211_fam.maxattr, nl80211_policy);
  1480. /* ignore parse errors for backward compatibility */
  1481. if (ret)
  1482. return 0;
  1483. state->split = tb[NL80211_ATTR_SPLIT_WIPHY_DUMP];
  1484. if (tb[NL80211_ATTR_WIPHY])
  1485. state->filter_wiphy = nla_get_u32(tb[NL80211_ATTR_WIPHY]);
  1486. if (tb[NL80211_ATTR_WDEV])
  1487. state->filter_wiphy = nla_get_u64(tb[NL80211_ATTR_WDEV]) >> 32;
  1488. if (tb[NL80211_ATTR_IFINDEX]) {
  1489. struct net_device *netdev;
  1490. struct cfg80211_registered_device *rdev;
  1491. int ifidx = nla_get_u32(tb[NL80211_ATTR_IFINDEX]);
  1492. netdev = __dev_get_by_index(sock_net(skb->sk), ifidx);
  1493. if (!netdev)
  1494. return -ENODEV;
  1495. if (netdev->ieee80211_ptr) {
  1496. rdev = wiphy_to_rdev(
  1497. netdev->ieee80211_ptr->wiphy);
  1498. state->filter_wiphy = rdev->wiphy_idx;
  1499. }
  1500. }
  1501. return 0;
  1502. }
  1503. static int nl80211_dump_wiphy(struct sk_buff *skb, struct netlink_callback *cb)
  1504. {
  1505. int idx = 0, ret;
  1506. struct nl80211_dump_wiphy_state *state = (void *)cb->args[0];
  1507. struct cfg80211_registered_device *rdev;
  1508. rtnl_lock();
  1509. if (!state) {
  1510. state = kzalloc(sizeof(*state), GFP_KERNEL);
  1511. if (!state) {
  1512. rtnl_unlock();
  1513. return -ENOMEM;
  1514. }
  1515. state->filter_wiphy = -1;
  1516. ret = nl80211_dump_wiphy_parse(skb, cb, state);
  1517. if (ret) {
  1518. kfree(state);
  1519. rtnl_unlock();
  1520. return ret;
  1521. }
  1522. cb->args[0] = (long)state;
  1523. }
  1524. list_for_each_entry(rdev, &cfg80211_rdev_list, list) {
  1525. if (!net_eq(wiphy_net(&rdev->wiphy), sock_net(skb->sk)))
  1526. continue;
  1527. if (++idx <= state->start)
  1528. continue;
  1529. if (state->filter_wiphy != -1 &&
  1530. state->filter_wiphy != rdev->wiphy_idx)
  1531. continue;
  1532. /* attempt to fit multiple wiphy data chunks into the skb */
  1533. do {
  1534. ret = nl80211_send_wiphy(rdev, NL80211_CMD_NEW_WIPHY,
  1535. skb,
  1536. NETLINK_CB(cb->skb).portid,
  1537. cb->nlh->nlmsg_seq,
  1538. NLM_F_MULTI, state);
  1539. if (ret < 0) {
  1540. /*
  1541. * If sending the wiphy data didn't fit (ENOBUFS
  1542. * or EMSGSIZE returned), this SKB is still
  1543. * empty (so it's not too big because another
  1544. * wiphy dataset is already in the skb) and
  1545. * we've not tried to adjust the dump allocation
  1546. * yet ... then adjust the alloc size to be
  1547. * bigger, and return 1 but with the empty skb.
  1548. * This results in an empty message being RX'ed
  1549. * in userspace, but that is ignored.
  1550. *
  1551. * We can then retry with the larger buffer.
  1552. */
  1553. if ((ret == -ENOBUFS || ret == -EMSGSIZE) &&
  1554. !skb->len && !state->split &&
  1555. cb->min_dump_alloc < 4096) {
  1556. cb->min_dump_alloc = 4096;
  1557. state->split_start = 0;
  1558. rtnl_unlock();
  1559. return 1;
  1560. }
  1561. idx--;
  1562. break;
  1563. }
  1564. } while (state->split_start > 0);
  1565. break;
  1566. }
  1567. rtnl_unlock();
  1568. state->start = idx;
  1569. return skb->len;
  1570. }
  1571. static int nl80211_dump_wiphy_done(struct netlink_callback *cb)
  1572. {
  1573. kfree((void *)cb->args[0]);
  1574. return 0;
  1575. }
  1576. static int nl80211_get_wiphy(struct sk_buff *skb, struct genl_info *info)
  1577. {
  1578. struct sk_buff *msg;
  1579. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  1580. struct nl80211_dump_wiphy_state state = {};
  1581. msg = nlmsg_new(4096, GFP_KERNEL);
  1582. if (!msg)
  1583. return -ENOMEM;
  1584. if (nl80211_send_wiphy(rdev, NL80211_CMD_NEW_WIPHY, msg,
  1585. info->snd_portid, info->snd_seq, 0,
  1586. &state) < 0) {
  1587. nlmsg_free(msg);
  1588. return -ENOBUFS;
  1589. }
  1590. return genlmsg_reply(msg, info);
  1591. }
  1592. static const struct nla_policy txq_params_policy[NL80211_TXQ_ATTR_MAX + 1] = {
  1593. [NL80211_TXQ_ATTR_QUEUE] = { .type = NLA_U8 },
  1594. [NL80211_TXQ_ATTR_TXOP] = { .type = NLA_U16 },
  1595. [NL80211_TXQ_ATTR_CWMIN] = { .type = NLA_U16 },
  1596. [NL80211_TXQ_ATTR_CWMAX] = { .type = NLA_U16 },
  1597. [NL80211_TXQ_ATTR_AIFS] = { .type = NLA_U8 },
  1598. };
  1599. static int parse_txq_params(struct nlattr *tb[],
  1600. struct ieee80211_txq_params *txq_params)
  1601. {
  1602. if (!tb[NL80211_TXQ_ATTR_AC] || !tb[NL80211_TXQ_ATTR_TXOP] ||
  1603. !tb[NL80211_TXQ_ATTR_CWMIN] || !tb[NL80211_TXQ_ATTR_CWMAX] ||
  1604. !tb[NL80211_TXQ_ATTR_AIFS])
  1605. return -EINVAL;
  1606. txq_params->ac = nla_get_u8(tb[NL80211_TXQ_ATTR_AC]);
  1607. txq_params->txop = nla_get_u16(tb[NL80211_TXQ_ATTR_TXOP]);
  1608. txq_params->cwmin = nla_get_u16(tb[NL80211_TXQ_ATTR_CWMIN]);
  1609. txq_params->cwmax = nla_get_u16(tb[NL80211_TXQ_ATTR_CWMAX]);
  1610. txq_params->aifs = nla_get_u8(tb[NL80211_TXQ_ATTR_AIFS]);
  1611. if (txq_params->ac >= NL80211_NUM_ACS)
  1612. return -EINVAL;
  1613. return 0;
  1614. }
  1615. static bool nl80211_can_set_dev_channel(struct wireless_dev *wdev)
  1616. {
  1617. /*
  1618. * You can only set the channel explicitly for WDS interfaces,
  1619. * all others have their channel managed via their respective
  1620. * "establish a connection" command (connect, join, ...)
  1621. *
  1622. * For AP/GO and mesh mode, the channel can be set with the
  1623. * channel userspace API, but is only stored and passed to the
  1624. * low-level driver when the AP starts or the mesh is joined.
  1625. * This is for backward compatibility, userspace can also give
  1626. * the channel in the start-ap or join-mesh commands instead.
  1627. *
  1628. * Monitors are special as they are normally slaved to
  1629. * whatever else is going on, so they have their own special
  1630. * operation to set the monitor channel if possible.
  1631. */
  1632. return !wdev ||
  1633. wdev->iftype == NL80211_IFTYPE_AP ||
  1634. wdev->iftype == NL80211_IFTYPE_MESH_POINT ||
  1635. wdev->iftype == NL80211_IFTYPE_MONITOR ||
  1636. wdev->iftype == NL80211_IFTYPE_P2P_GO;
  1637. }
  1638. static int nl80211_parse_chandef(struct cfg80211_registered_device *rdev,
  1639. struct genl_info *info,
  1640. struct cfg80211_chan_def *chandef)
  1641. {
  1642. u32 control_freq;
  1643. if (!info->attrs[NL80211_ATTR_WIPHY_FREQ])
  1644. return -EINVAL;
  1645. control_freq = nla_get_u32(info->attrs[NL80211_ATTR_WIPHY_FREQ]);
  1646. chandef->chan = ieee80211_get_channel(&rdev->wiphy, control_freq);
  1647. chandef->width = NL80211_CHAN_WIDTH_20_NOHT;
  1648. chandef->center_freq1 = control_freq;
  1649. chandef->center_freq2 = 0;
  1650. /* Primary channel not allowed */
  1651. if (!chandef->chan || chandef->chan->flags & IEEE80211_CHAN_DISABLED)
  1652. return -EINVAL;
  1653. if (info->attrs[NL80211_ATTR_WIPHY_CHANNEL_TYPE]) {
  1654. enum nl80211_channel_type chantype;
  1655. chantype = nla_get_u32(
  1656. info->attrs[NL80211_ATTR_WIPHY_CHANNEL_TYPE]);
  1657. switch (chantype) {
  1658. case NL80211_CHAN_NO_HT:
  1659. case NL80211_CHAN_HT20:
  1660. case NL80211_CHAN_HT40PLUS:
  1661. case NL80211_CHAN_HT40MINUS:
  1662. cfg80211_chandef_create(chandef, chandef->chan,
  1663. chantype);
  1664. break;
  1665. default:
  1666. return -EINVAL;
  1667. }
  1668. } else if (info->attrs[NL80211_ATTR_CHANNEL_WIDTH]) {
  1669. chandef->width =
  1670. nla_get_u32(info->attrs[NL80211_ATTR_CHANNEL_WIDTH]);
  1671. if (info->attrs[NL80211_ATTR_CENTER_FREQ1])
  1672. chandef->center_freq1 =
  1673. nla_get_u32(
  1674. info->attrs[NL80211_ATTR_CENTER_FREQ1]);
  1675. if (info->attrs[NL80211_ATTR_CENTER_FREQ2])
  1676. chandef->center_freq2 =
  1677. nla_get_u32(
  1678. info->attrs[NL80211_ATTR_CENTER_FREQ2]);
  1679. }
  1680. if (!cfg80211_chandef_valid(chandef))
  1681. return -EINVAL;
  1682. if (!cfg80211_chandef_usable(&rdev->wiphy, chandef,
  1683. IEEE80211_CHAN_DISABLED))
  1684. return -EINVAL;
  1685. if ((chandef->width == NL80211_CHAN_WIDTH_5 ||
  1686. chandef->width == NL80211_CHAN_WIDTH_10) &&
  1687. !(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_5_10_MHZ))
  1688. return -EINVAL;
  1689. return 0;
  1690. }
  1691. static int __nl80211_set_channel(struct cfg80211_registered_device *rdev,
  1692. struct net_device *dev,
  1693. struct genl_info *info)
  1694. {
  1695. struct cfg80211_chan_def chandef;
  1696. int result;
  1697. enum nl80211_iftype iftype = NL80211_IFTYPE_MONITOR;
  1698. struct wireless_dev *wdev = NULL;
  1699. if (dev)
  1700. wdev = dev->ieee80211_ptr;
  1701. if (!nl80211_can_set_dev_channel(wdev))
  1702. return -EOPNOTSUPP;
  1703. if (wdev)
  1704. iftype = wdev->iftype;
  1705. result = nl80211_parse_chandef(rdev, info, &chandef);
  1706. if (result)
  1707. return result;
  1708. switch (iftype) {
  1709. case NL80211_IFTYPE_AP:
  1710. case NL80211_IFTYPE_P2P_GO:
  1711. if (!cfg80211_reg_can_beacon(&rdev->wiphy, &chandef, iftype)) {
  1712. result = -EINVAL;
  1713. break;
  1714. }
  1715. if (wdev->beacon_interval) {
  1716. if (!dev || !rdev->ops->set_ap_chanwidth ||
  1717. !(rdev->wiphy.features &
  1718. NL80211_FEATURE_AP_MODE_CHAN_WIDTH_CHANGE)) {
  1719. result = -EBUSY;
  1720. break;
  1721. }
  1722. /* Only allow dynamic channel width changes */
  1723. if (chandef.chan != wdev->preset_chandef.chan) {
  1724. result = -EBUSY;
  1725. break;
  1726. }
  1727. result = rdev_set_ap_chanwidth(rdev, dev, &chandef);
  1728. if (result)
  1729. break;
  1730. }
  1731. wdev->preset_chandef = chandef;
  1732. result = 0;
  1733. break;
  1734. case NL80211_IFTYPE_MESH_POINT:
  1735. result = cfg80211_set_mesh_channel(rdev, wdev, &chandef);
  1736. break;
  1737. case NL80211_IFTYPE_MONITOR:
  1738. result = cfg80211_set_monitor_channel(rdev, &chandef);
  1739. break;
  1740. default:
  1741. result = -EINVAL;
  1742. }
  1743. return result;
  1744. }
  1745. static int nl80211_set_channel(struct sk_buff *skb, struct genl_info *info)
  1746. {
  1747. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  1748. struct net_device *netdev = info->user_ptr[1];
  1749. return __nl80211_set_channel(rdev, netdev, info);
  1750. }
  1751. static int nl80211_set_wds_peer(struct sk_buff *skb, struct genl_info *info)
  1752. {
  1753. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  1754. struct net_device *dev = info->user_ptr[1];
  1755. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1756. const u8 *bssid;
  1757. if (!info->attrs[NL80211_ATTR_MAC])
  1758. return -EINVAL;
  1759. if (netif_running(dev))
  1760. return -EBUSY;
  1761. if (!rdev->ops->set_wds_peer)
  1762. return -EOPNOTSUPP;
  1763. if (wdev->iftype != NL80211_IFTYPE_WDS)
  1764. return -EOPNOTSUPP;
  1765. bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  1766. return rdev_set_wds_peer(rdev, dev, bssid);
  1767. }
  1768. static int nl80211_set_wiphy(struct sk_buff *skb, struct genl_info *info)
  1769. {
  1770. struct cfg80211_registered_device *rdev;
  1771. struct net_device *netdev = NULL;
  1772. struct wireless_dev *wdev;
  1773. int result = 0, rem_txq_params = 0;
  1774. struct nlattr *nl_txq_params;
  1775. u32 changed;
  1776. u8 retry_short = 0, retry_long = 0;
  1777. u32 frag_threshold = 0, rts_threshold = 0;
  1778. u8 coverage_class = 0;
  1779. ASSERT_RTNL();
  1780. /*
  1781. * Try to find the wiphy and netdev. Normally this
  1782. * function shouldn't need the netdev, but this is
  1783. * done for backward compatibility -- previously
  1784. * setting the channel was done per wiphy, but now
  1785. * it is per netdev. Previous userland like hostapd
  1786. * also passed a netdev to set_wiphy, so that it is
  1787. * possible to let that go to the right netdev!
  1788. */
  1789. if (info->attrs[NL80211_ATTR_IFINDEX]) {
  1790. int ifindex = nla_get_u32(info->attrs[NL80211_ATTR_IFINDEX]);
  1791. netdev = __dev_get_by_index(genl_info_net(info), ifindex);
  1792. if (netdev && netdev->ieee80211_ptr)
  1793. rdev = wiphy_to_rdev(netdev->ieee80211_ptr->wiphy);
  1794. else
  1795. netdev = NULL;
  1796. }
  1797. if (!netdev) {
  1798. rdev = __cfg80211_rdev_from_attrs(genl_info_net(info),
  1799. info->attrs);
  1800. if (IS_ERR(rdev))
  1801. return PTR_ERR(rdev);
  1802. wdev = NULL;
  1803. netdev = NULL;
  1804. result = 0;
  1805. } else
  1806. wdev = netdev->ieee80211_ptr;
  1807. /*
  1808. * end workaround code, by now the rdev is available
  1809. * and locked, and wdev may or may not be NULL.
  1810. */
  1811. if (info->attrs[NL80211_ATTR_WIPHY_NAME])
  1812. result = cfg80211_dev_rename(
  1813. rdev, nla_data(info->attrs[NL80211_ATTR_WIPHY_NAME]));
  1814. if (result)
  1815. return result;
  1816. if (info->attrs[NL80211_ATTR_WIPHY_TXQ_PARAMS]) {
  1817. struct ieee80211_txq_params txq_params;
  1818. struct nlattr *tb[NL80211_TXQ_ATTR_MAX + 1];
  1819. if (!rdev->ops->set_txq_params)
  1820. return -EOPNOTSUPP;
  1821. if (!netdev)
  1822. return -EINVAL;
  1823. if (netdev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  1824. netdev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  1825. return -EINVAL;
  1826. if (!netif_running(netdev))
  1827. return -ENETDOWN;
  1828. nla_for_each_nested(nl_txq_params,
  1829. info->attrs[NL80211_ATTR_WIPHY_TXQ_PARAMS],
  1830. rem_txq_params) {
  1831. result = nla_parse(tb, NL80211_TXQ_ATTR_MAX,
  1832. nla_data(nl_txq_params),
  1833. nla_len(nl_txq_params),
  1834. txq_params_policy);
  1835. if (result)
  1836. return result;
  1837. result = parse_txq_params(tb, &txq_params);
  1838. if (result)
  1839. return result;
  1840. result = rdev_set_txq_params(rdev, netdev,
  1841. &txq_params);
  1842. if (result)
  1843. return result;
  1844. }
  1845. }
  1846. if (info->attrs[NL80211_ATTR_WIPHY_FREQ]) {
  1847. result = __nl80211_set_channel(
  1848. rdev,
  1849. nl80211_can_set_dev_channel(wdev) ? netdev : NULL,
  1850. info);
  1851. if (result)
  1852. return result;
  1853. }
  1854. if (info->attrs[NL80211_ATTR_WIPHY_TX_POWER_SETTING]) {
  1855. struct wireless_dev *txp_wdev = wdev;
  1856. enum nl80211_tx_power_setting type;
  1857. int idx, mbm = 0;
  1858. if (!(rdev->wiphy.features & NL80211_FEATURE_VIF_TXPOWER))
  1859. txp_wdev = NULL;
  1860. if (!rdev->ops->set_tx_power)
  1861. return -EOPNOTSUPP;
  1862. idx = NL80211_ATTR_WIPHY_TX_POWER_SETTING;
  1863. type = nla_get_u32(info->attrs[idx]);
  1864. if (!info->attrs[NL80211_ATTR_WIPHY_TX_POWER_LEVEL] &&
  1865. (type != NL80211_TX_POWER_AUTOMATIC))
  1866. return -EINVAL;
  1867. if (type != NL80211_TX_POWER_AUTOMATIC) {
  1868. idx = NL80211_ATTR_WIPHY_TX_POWER_LEVEL;
  1869. mbm = nla_get_u32(info->attrs[idx]);
  1870. }
  1871. result = rdev_set_tx_power(rdev, txp_wdev, type, mbm);
  1872. if (result)
  1873. return result;
  1874. }
  1875. if (info->attrs[NL80211_ATTR_WIPHY_ANTENNA_TX] &&
  1876. info->attrs[NL80211_ATTR_WIPHY_ANTENNA_RX]) {
  1877. u32 tx_ant, rx_ant;
  1878. if ((!rdev->wiphy.available_antennas_tx &&
  1879. !rdev->wiphy.available_antennas_rx) ||
  1880. !rdev->ops->set_antenna)
  1881. return -EOPNOTSUPP;
  1882. tx_ant = nla_get_u32(info->attrs[NL80211_ATTR_WIPHY_ANTENNA_TX]);
  1883. rx_ant = nla_get_u32(info->attrs[NL80211_ATTR_WIPHY_ANTENNA_RX]);
  1884. /* reject antenna configurations which don't match the
  1885. * available antenna masks, except for the "all" mask */
  1886. if ((~tx_ant && (tx_ant & ~rdev->wiphy.available_antennas_tx)) ||
  1887. (~rx_ant && (rx_ant & ~rdev->wiphy.available_antennas_rx)))
  1888. return -EINVAL;
  1889. tx_ant = tx_ant & rdev->wiphy.available_antennas_tx;
  1890. rx_ant = rx_ant & rdev->wiphy.available_antennas_rx;
  1891. result = rdev_set_antenna(rdev, tx_ant, rx_ant);
  1892. if (result)
  1893. return result;
  1894. }
  1895. changed = 0;
  1896. if (info->attrs[NL80211_ATTR_WIPHY_RETRY_SHORT]) {
  1897. retry_short = nla_get_u8(
  1898. info->attrs[NL80211_ATTR_WIPHY_RETRY_SHORT]);
  1899. if (retry_short == 0)
  1900. return -EINVAL;
  1901. changed |= WIPHY_PARAM_RETRY_SHORT;
  1902. }
  1903. if (info->attrs[NL80211_ATTR_WIPHY_RETRY_LONG]) {
  1904. retry_long = nla_get_u8(
  1905. info->attrs[NL80211_ATTR_WIPHY_RETRY_LONG]);
  1906. if (retry_long == 0)
  1907. return -EINVAL;
  1908. changed |= WIPHY_PARAM_RETRY_LONG;
  1909. }
  1910. if (info->attrs[NL80211_ATTR_WIPHY_FRAG_THRESHOLD]) {
  1911. frag_threshold = nla_get_u32(
  1912. info->attrs[NL80211_ATTR_WIPHY_FRAG_THRESHOLD]);
  1913. if (frag_threshold < 256)
  1914. return -EINVAL;
  1915. if (frag_threshold != (u32) -1) {
  1916. /*
  1917. * Fragments (apart from the last one) are required to
  1918. * have even length. Make the fragmentation code
  1919. * simpler by stripping LSB should someone try to use
  1920. * odd threshold value.
  1921. */
  1922. frag_threshold &= ~0x1;
  1923. }
  1924. changed |= WIPHY_PARAM_FRAG_THRESHOLD;
  1925. }
  1926. if (info->attrs[NL80211_ATTR_WIPHY_RTS_THRESHOLD]) {
  1927. rts_threshold = nla_get_u32(
  1928. info->attrs[NL80211_ATTR_WIPHY_RTS_THRESHOLD]);
  1929. changed |= WIPHY_PARAM_RTS_THRESHOLD;
  1930. }
  1931. if (info->attrs[NL80211_ATTR_WIPHY_COVERAGE_CLASS]) {
  1932. if (info->attrs[NL80211_ATTR_WIPHY_DYN_ACK])
  1933. return -EINVAL;
  1934. coverage_class = nla_get_u8(
  1935. info->attrs[NL80211_ATTR_WIPHY_COVERAGE_CLASS]);
  1936. changed |= WIPHY_PARAM_COVERAGE_CLASS;
  1937. }
  1938. if (info->attrs[NL80211_ATTR_WIPHY_DYN_ACK]) {
  1939. if (!(rdev->wiphy.features & NL80211_FEATURE_ACKTO_ESTIMATION))
  1940. return -EOPNOTSUPP;
  1941. changed |= WIPHY_PARAM_DYN_ACK;
  1942. }
  1943. if (changed) {
  1944. u8 old_retry_short, old_retry_long;
  1945. u32 old_frag_threshold, old_rts_threshold;
  1946. u8 old_coverage_class;
  1947. if (!rdev->ops->set_wiphy_params)
  1948. return -EOPNOTSUPP;
  1949. old_retry_short = rdev->wiphy.retry_short;
  1950. old_retry_long = rdev->wiphy.retry_long;
  1951. old_frag_threshold = rdev->wiphy.frag_threshold;
  1952. old_rts_threshold = rdev->wiphy.rts_threshold;
  1953. old_coverage_class = rdev->wiphy.coverage_class;
  1954. if (changed & WIPHY_PARAM_RETRY_SHORT)
  1955. rdev->wiphy.retry_short = retry_short;
  1956. if (changed & WIPHY_PARAM_RETRY_LONG)
  1957. rdev->wiphy.retry_long = retry_long;
  1958. if (changed & WIPHY_PARAM_FRAG_THRESHOLD)
  1959. rdev->wiphy.frag_threshold = frag_threshold;
  1960. if (changed & WIPHY_PARAM_RTS_THRESHOLD)
  1961. rdev->wiphy.rts_threshold = rts_threshold;
  1962. if (changed & WIPHY_PARAM_COVERAGE_CLASS)
  1963. rdev->wiphy.coverage_class = coverage_class;
  1964. result = rdev_set_wiphy_params(rdev, changed);
  1965. if (result) {
  1966. rdev->wiphy.retry_short = old_retry_short;
  1967. rdev->wiphy.retry_long = old_retry_long;
  1968. rdev->wiphy.frag_threshold = old_frag_threshold;
  1969. rdev->wiphy.rts_threshold = old_rts_threshold;
  1970. rdev->wiphy.coverage_class = old_coverage_class;
  1971. }
  1972. }
  1973. return 0;
  1974. }
  1975. static inline u64 wdev_id(struct wireless_dev *wdev)
  1976. {
  1977. return (u64)wdev->identifier |
  1978. ((u64)wiphy_to_rdev(wdev->wiphy)->wiphy_idx << 32);
  1979. }
  1980. static int nl80211_send_chandef(struct sk_buff *msg,
  1981. const struct cfg80211_chan_def *chandef)
  1982. {
  1983. WARN_ON(!cfg80211_chandef_valid(chandef));
  1984. if (nla_put_u32(msg, NL80211_ATTR_WIPHY_FREQ,
  1985. chandef->chan->center_freq))
  1986. return -ENOBUFS;
  1987. switch (chandef->width) {
  1988. case NL80211_CHAN_WIDTH_20_NOHT:
  1989. case NL80211_CHAN_WIDTH_20:
  1990. case NL80211_CHAN_WIDTH_40:
  1991. if (nla_put_u32(msg, NL80211_ATTR_WIPHY_CHANNEL_TYPE,
  1992. cfg80211_get_chandef_type(chandef)))
  1993. return -ENOBUFS;
  1994. break;
  1995. default:
  1996. break;
  1997. }
  1998. if (nla_put_u32(msg, NL80211_ATTR_CHANNEL_WIDTH, chandef->width))
  1999. return -ENOBUFS;
  2000. if (nla_put_u32(msg, NL80211_ATTR_CENTER_FREQ1, chandef->center_freq1))
  2001. return -ENOBUFS;
  2002. if (chandef->center_freq2 &&
  2003. nla_put_u32(msg, NL80211_ATTR_CENTER_FREQ2, chandef->center_freq2))
  2004. return -ENOBUFS;
  2005. return 0;
  2006. }
  2007. static int nl80211_send_iface(struct sk_buff *msg, u32 portid, u32 seq, int flags,
  2008. struct cfg80211_registered_device *rdev,
  2009. struct wireless_dev *wdev)
  2010. {
  2011. struct net_device *dev = wdev->netdev;
  2012. void *hdr;
  2013. hdr = nl80211hdr_put(msg, portid, seq, flags, NL80211_CMD_NEW_INTERFACE);
  2014. if (!hdr)
  2015. return -1;
  2016. if (dev &&
  2017. (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  2018. nla_put_string(msg, NL80211_ATTR_IFNAME, dev->name)))
  2019. goto nla_put_failure;
  2020. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  2021. nla_put_u32(msg, NL80211_ATTR_IFTYPE, wdev->iftype) ||
  2022. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)) ||
  2023. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, wdev_address(wdev)) ||
  2024. nla_put_u32(msg, NL80211_ATTR_GENERATION,
  2025. rdev->devlist_generation ^
  2026. (cfg80211_rdev_list_generation << 2)))
  2027. goto nla_put_failure;
  2028. if (rdev->ops->get_channel) {
  2029. int ret;
  2030. struct cfg80211_chan_def chandef;
  2031. ret = rdev_get_channel(rdev, wdev, &chandef);
  2032. if (ret == 0) {
  2033. if (nl80211_send_chandef(msg, &chandef))
  2034. goto nla_put_failure;
  2035. }
  2036. }
  2037. if (wdev->ssid_len) {
  2038. if (nla_put(msg, NL80211_ATTR_SSID, wdev->ssid_len, wdev->ssid))
  2039. goto nla_put_failure;
  2040. }
  2041. return genlmsg_end(msg, hdr);
  2042. nla_put_failure:
  2043. genlmsg_cancel(msg, hdr);
  2044. return -EMSGSIZE;
  2045. }
  2046. static int nl80211_dump_interface(struct sk_buff *skb, struct netlink_callback *cb)
  2047. {
  2048. int wp_idx = 0;
  2049. int if_idx = 0;
  2050. int wp_start = cb->args[0];
  2051. int if_start = cb->args[1];
  2052. struct cfg80211_registered_device *rdev;
  2053. struct wireless_dev *wdev;
  2054. rtnl_lock();
  2055. list_for_each_entry(rdev, &cfg80211_rdev_list, list) {
  2056. if (!net_eq(wiphy_net(&rdev->wiphy), sock_net(skb->sk)))
  2057. continue;
  2058. if (wp_idx < wp_start) {
  2059. wp_idx++;
  2060. continue;
  2061. }
  2062. if_idx = 0;
  2063. list_for_each_entry(wdev, &rdev->wdev_list, list) {
  2064. if (if_idx < if_start) {
  2065. if_idx++;
  2066. continue;
  2067. }
  2068. if (nl80211_send_iface(skb, NETLINK_CB(cb->skb).portid,
  2069. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  2070. rdev, wdev) < 0) {
  2071. goto out;
  2072. }
  2073. if_idx++;
  2074. }
  2075. wp_idx++;
  2076. }
  2077. out:
  2078. rtnl_unlock();
  2079. cb->args[0] = wp_idx;
  2080. cb->args[1] = if_idx;
  2081. return skb->len;
  2082. }
  2083. static int nl80211_get_interface(struct sk_buff *skb, struct genl_info *info)
  2084. {
  2085. struct sk_buff *msg;
  2086. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2087. struct wireless_dev *wdev = info->user_ptr[1];
  2088. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  2089. if (!msg)
  2090. return -ENOMEM;
  2091. if (nl80211_send_iface(msg, info->snd_portid, info->snd_seq, 0,
  2092. rdev, wdev) < 0) {
  2093. nlmsg_free(msg);
  2094. return -ENOBUFS;
  2095. }
  2096. return genlmsg_reply(msg, info);
  2097. }
  2098. static const struct nla_policy mntr_flags_policy[NL80211_MNTR_FLAG_MAX + 1] = {
  2099. [NL80211_MNTR_FLAG_FCSFAIL] = { .type = NLA_FLAG },
  2100. [NL80211_MNTR_FLAG_PLCPFAIL] = { .type = NLA_FLAG },
  2101. [NL80211_MNTR_FLAG_CONTROL] = { .type = NLA_FLAG },
  2102. [NL80211_MNTR_FLAG_OTHER_BSS] = { .type = NLA_FLAG },
  2103. [NL80211_MNTR_FLAG_COOK_FRAMES] = { .type = NLA_FLAG },
  2104. [NL80211_MNTR_FLAG_ACTIVE] = { .type = NLA_FLAG },
  2105. };
  2106. static int parse_monitor_flags(struct nlattr *nla, u32 *mntrflags)
  2107. {
  2108. struct nlattr *flags[NL80211_MNTR_FLAG_MAX + 1];
  2109. int flag;
  2110. *mntrflags = 0;
  2111. if (!nla)
  2112. return -EINVAL;
  2113. if (nla_parse_nested(flags, NL80211_MNTR_FLAG_MAX,
  2114. nla, mntr_flags_policy))
  2115. return -EINVAL;
  2116. for (flag = 1; flag <= NL80211_MNTR_FLAG_MAX; flag++)
  2117. if (flags[flag])
  2118. *mntrflags |= (1<<flag);
  2119. return 0;
  2120. }
  2121. static int nl80211_valid_4addr(struct cfg80211_registered_device *rdev,
  2122. struct net_device *netdev, u8 use_4addr,
  2123. enum nl80211_iftype iftype)
  2124. {
  2125. if (!use_4addr) {
  2126. if (netdev && (netdev->priv_flags & IFF_BRIDGE_PORT))
  2127. return -EBUSY;
  2128. return 0;
  2129. }
  2130. switch (iftype) {
  2131. case NL80211_IFTYPE_AP_VLAN:
  2132. if (rdev->wiphy.flags & WIPHY_FLAG_4ADDR_AP)
  2133. return 0;
  2134. break;
  2135. case NL80211_IFTYPE_STATION:
  2136. if (rdev->wiphy.flags & WIPHY_FLAG_4ADDR_STATION)
  2137. return 0;
  2138. break;
  2139. default:
  2140. break;
  2141. }
  2142. return -EOPNOTSUPP;
  2143. }
  2144. static int nl80211_set_interface(struct sk_buff *skb, struct genl_info *info)
  2145. {
  2146. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2147. struct vif_params params;
  2148. int err;
  2149. enum nl80211_iftype otype, ntype;
  2150. struct net_device *dev = info->user_ptr[1];
  2151. u32 _flags, *flags = NULL;
  2152. bool change = false;
  2153. memset(&params, 0, sizeof(params));
  2154. otype = ntype = dev->ieee80211_ptr->iftype;
  2155. if (info->attrs[NL80211_ATTR_IFTYPE]) {
  2156. ntype = nla_get_u32(info->attrs[NL80211_ATTR_IFTYPE]);
  2157. if (otype != ntype)
  2158. change = true;
  2159. if (ntype > NL80211_IFTYPE_MAX)
  2160. return -EINVAL;
  2161. }
  2162. if (info->attrs[NL80211_ATTR_MESH_ID]) {
  2163. struct wireless_dev *wdev = dev->ieee80211_ptr;
  2164. if (ntype != NL80211_IFTYPE_MESH_POINT)
  2165. return -EINVAL;
  2166. if (netif_running(dev))
  2167. return -EBUSY;
  2168. wdev_lock(wdev);
  2169. BUILD_BUG_ON(IEEE80211_MAX_SSID_LEN !=
  2170. IEEE80211_MAX_MESH_ID_LEN);
  2171. wdev->mesh_id_up_len =
  2172. nla_len(info->attrs[NL80211_ATTR_MESH_ID]);
  2173. memcpy(wdev->ssid, nla_data(info->attrs[NL80211_ATTR_MESH_ID]),
  2174. wdev->mesh_id_up_len);
  2175. wdev_unlock(wdev);
  2176. }
  2177. if (info->attrs[NL80211_ATTR_4ADDR]) {
  2178. params.use_4addr = !!nla_get_u8(info->attrs[NL80211_ATTR_4ADDR]);
  2179. change = true;
  2180. err = nl80211_valid_4addr(rdev, dev, params.use_4addr, ntype);
  2181. if (err)
  2182. return err;
  2183. } else {
  2184. params.use_4addr = -1;
  2185. }
  2186. if (info->attrs[NL80211_ATTR_MNTR_FLAGS]) {
  2187. if (ntype != NL80211_IFTYPE_MONITOR)
  2188. return -EINVAL;
  2189. err = parse_monitor_flags(info->attrs[NL80211_ATTR_MNTR_FLAGS],
  2190. &_flags);
  2191. if (err)
  2192. return err;
  2193. flags = &_flags;
  2194. change = true;
  2195. }
  2196. if (flags && (*flags & MONITOR_FLAG_ACTIVE) &&
  2197. !(rdev->wiphy.features & NL80211_FEATURE_ACTIVE_MONITOR))
  2198. return -EOPNOTSUPP;
  2199. if (change)
  2200. err = cfg80211_change_iface(rdev, dev, ntype, flags, &params);
  2201. else
  2202. err = 0;
  2203. if (!err && params.use_4addr != -1)
  2204. dev->ieee80211_ptr->use_4addr = params.use_4addr;
  2205. return err;
  2206. }
  2207. static int nl80211_new_interface(struct sk_buff *skb, struct genl_info *info)
  2208. {
  2209. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2210. struct vif_params params;
  2211. struct wireless_dev *wdev;
  2212. struct sk_buff *msg;
  2213. int err;
  2214. enum nl80211_iftype type = NL80211_IFTYPE_UNSPECIFIED;
  2215. u32 flags;
  2216. /* to avoid failing a new interface creation due to pending removal */
  2217. cfg80211_destroy_ifaces(rdev);
  2218. memset(&params, 0, sizeof(params));
  2219. if (!info->attrs[NL80211_ATTR_IFNAME])
  2220. return -EINVAL;
  2221. if (info->attrs[NL80211_ATTR_IFTYPE]) {
  2222. type = nla_get_u32(info->attrs[NL80211_ATTR_IFTYPE]);
  2223. if (type > NL80211_IFTYPE_MAX)
  2224. return -EINVAL;
  2225. }
  2226. if (!rdev->ops->add_virtual_intf ||
  2227. !(rdev->wiphy.interface_modes & (1 << type)))
  2228. return -EOPNOTSUPP;
  2229. if (type == NL80211_IFTYPE_P2P_DEVICE && info->attrs[NL80211_ATTR_MAC]) {
  2230. nla_memcpy(params.macaddr, info->attrs[NL80211_ATTR_MAC],
  2231. ETH_ALEN);
  2232. if (!is_valid_ether_addr(params.macaddr))
  2233. return -EADDRNOTAVAIL;
  2234. }
  2235. if (info->attrs[NL80211_ATTR_4ADDR]) {
  2236. params.use_4addr = !!nla_get_u8(info->attrs[NL80211_ATTR_4ADDR]);
  2237. err = nl80211_valid_4addr(rdev, NULL, params.use_4addr, type);
  2238. if (err)
  2239. return err;
  2240. }
  2241. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  2242. if (!msg)
  2243. return -ENOMEM;
  2244. err = parse_monitor_flags(type == NL80211_IFTYPE_MONITOR ?
  2245. info->attrs[NL80211_ATTR_MNTR_FLAGS] : NULL,
  2246. &flags);
  2247. if (!err && (flags & MONITOR_FLAG_ACTIVE) &&
  2248. !(rdev->wiphy.features & NL80211_FEATURE_ACTIVE_MONITOR))
  2249. return -EOPNOTSUPP;
  2250. wdev = rdev_add_virtual_intf(rdev,
  2251. nla_data(info->attrs[NL80211_ATTR_IFNAME]),
  2252. type, err ? NULL : &flags, &params);
  2253. if (IS_ERR(wdev)) {
  2254. nlmsg_free(msg);
  2255. return PTR_ERR(wdev);
  2256. }
  2257. if (info->attrs[NL80211_ATTR_IFACE_SOCKET_OWNER])
  2258. wdev->owner_nlportid = info->snd_portid;
  2259. switch (type) {
  2260. case NL80211_IFTYPE_MESH_POINT:
  2261. if (!info->attrs[NL80211_ATTR_MESH_ID])
  2262. break;
  2263. wdev_lock(wdev);
  2264. BUILD_BUG_ON(IEEE80211_MAX_SSID_LEN !=
  2265. IEEE80211_MAX_MESH_ID_LEN);
  2266. wdev->mesh_id_up_len =
  2267. nla_len(info->attrs[NL80211_ATTR_MESH_ID]);
  2268. memcpy(wdev->ssid, nla_data(info->attrs[NL80211_ATTR_MESH_ID]),
  2269. wdev->mesh_id_up_len);
  2270. wdev_unlock(wdev);
  2271. break;
  2272. case NL80211_IFTYPE_P2P_DEVICE:
  2273. /*
  2274. * P2P Device doesn't have a netdev, so doesn't go
  2275. * through the netdev notifier and must be added here
  2276. */
  2277. mutex_init(&wdev->mtx);
  2278. INIT_LIST_HEAD(&wdev->event_list);
  2279. spin_lock_init(&wdev->event_lock);
  2280. INIT_LIST_HEAD(&wdev->mgmt_registrations);
  2281. spin_lock_init(&wdev->mgmt_registrations_lock);
  2282. wdev->identifier = ++rdev->wdev_id;
  2283. list_add_rcu(&wdev->list, &rdev->wdev_list);
  2284. rdev->devlist_generation++;
  2285. break;
  2286. default:
  2287. break;
  2288. }
  2289. if (nl80211_send_iface(msg, info->snd_portid, info->snd_seq, 0,
  2290. rdev, wdev) < 0) {
  2291. nlmsg_free(msg);
  2292. return -ENOBUFS;
  2293. }
  2294. return genlmsg_reply(msg, info);
  2295. }
  2296. static int nl80211_del_interface(struct sk_buff *skb, struct genl_info *info)
  2297. {
  2298. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2299. struct wireless_dev *wdev = info->user_ptr[1];
  2300. if (!rdev->ops->del_virtual_intf)
  2301. return -EOPNOTSUPP;
  2302. /*
  2303. * If we remove a wireless device without a netdev then clear
  2304. * user_ptr[1] so that nl80211_post_doit won't dereference it
  2305. * to check if it needs to do dev_put(). Otherwise it crashes
  2306. * since the wdev has been freed, unlike with a netdev where
  2307. * we need the dev_put() for the netdev to really be freed.
  2308. */
  2309. if (!wdev->netdev)
  2310. info->user_ptr[1] = NULL;
  2311. return rdev_del_virtual_intf(rdev, wdev);
  2312. }
  2313. static int nl80211_set_noack_map(struct sk_buff *skb, struct genl_info *info)
  2314. {
  2315. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2316. struct net_device *dev = info->user_ptr[1];
  2317. u16 noack_map;
  2318. if (!info->attrs[NL80211_ATTR_NOACK_MAP])
  2319. return -EINVAL;
  2320. if (!rdev->ops->set_noack_map)
  2321. return -EOPNOTSUPP;
  2322. noack_map = nla_get_u16(info->attrs[NL80211_ATTR_NOACK_MAP]);
  2323. return rdev_set_noack_map(rdev, dev, noack_map);
  2324. }
  2325. struct get_key_cookie {
  2326. struct sk_buff *msg;
  2327. int error;
  2328. int idx;
  2329. };
  2330. static void get_key_callback(void *c, struct key_params *params)
  2331. {
  2332. struct nlattr *key;
  2333. struct get_key_cookie *cookie = c;
  2334. if ((params->key &&
  2335. nla_put(cookie->msg, NL80211_ATTR_KEY_DATA,
  2336. params->key_len, params->key)) ||
  2337. (params->seq &&
  2338. nla_put(cookie->msg, NL80211_ATTR_KEY_SEQ,
  2339. params->seq_len, params->seq)) ||
  2340. (params->cipher &&
  2341. nla_put_u32(cookie->msg, NL80211_ATTR_KEY_CIPHER,
  2342. params->cipher)))
  2343. goto nla_put_failure;
  2344. key = nla_nest_start(cookie->msg, NL80211_ATTR_KEY);
  2345. if (!key)
  2346. goto nla_put_failure;
  2347. if ((params->key &&
  2348. nla_put(cookie->msg, NL80211_KEY_DATA,
  2349. params->key_len, params->key)) ||
  2350. (params->seq &&
  2351. nla_put(cookie->msg, NL80211_KEY_SEQ,
  2352. params->seq_len, params->seq)) ||
  2353. (params->cipher &&
  2354. nla_put_u32(cookie->msg, NL80211_KEY_CIPHER,
  2355. params->cipher)))
  2356. goto nla_put_failure;
  2357. if (nla_put_u8(cookie->msg, NL80211_ATTR_KEY_IDX, cookie->idx))
  2358. goto nla_put_failure;
  2359. nla_nest_end(cookie->msg, key);
  2360. return;
  2361. nla_put_failure:
  2362. cookie->error = 1;
  2363. }
  2364. static int nl80211_get_key(struct sk_buff *skb, struct genl_info *info)
  2365. {
  2366. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2367. int err;
  2368. struct net_device *dev = info->user_ptr[1];
  2369. u8 key_idx = 0;
  2370. const u8 *mac_addr = NULL;
  2371. bool pairwise;
  2372. struct get_key_cookie cookie = {
  2373. .error = 0,
  2374. };
  2375. void *hdr;
  2376. struct sk_buff *msg;
  2377. if (info->attrs[NL80211_ATTR_KEY_IDX])
  2378. key_idx = nla_get_u8(info->attrs[NL80211_ATTR_KEY_IDX]);
  2379. if (key_idx > 5)
  2380. return -EINVAL;
  2381. if (info->attrs[NL80211_ATTR_MAC])
  2382. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  2383. pairwise = !!mac_addr;
  2384. if (info->attrs[NL80211_ATTR_KEY_TYPE]) {
  2385. u32 kt = nla_get_u32(info->attrs[NL80211_ATTR_KEY_TYPE]);
  2386. if (kt >= NUM_NL80211_KEYTYPES)
  2387. return -EINVAL;
  2388. if (kt != NL80211_KEYTYPE_GROUP &&
  2389. kt != NL80211_KEYTYPE_PAIRWISE)
  2390. return -EINVAL;
  2391. pairwise = kt == NL80211_KEYTYPE_PAIRWISE;
  2392. }
  2393. if (!rdev->ops->get_key)
  2394. return -EOPNOTSUPP;
  2395. if (!pairwise && mac_addr && !(rdev->wiphy.flags & WIPHY_FLAG_IBSS_RSN))
  2396. return -ENOENT;
  2397. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  2398. if (!msg)
  2399. return -ENOMEM;
  2400. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  2401. NL80211_CMD_NEW_KEY);
  2402. if (!hdr)
  2403. goto nla_put_failure;
  2404. cookie.msg = msg;
  2405. cookie.idx = key_idx;
  2406. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  2407. nla_put_u8(msg, NL80211_ATTR_KEY_IDX, key_idx))
  2408. goto nla_put_failure;
  2409. if (mac_addr &&
  2410. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, mac_addr))
  2411. goto nla_put_failure;
  2412. err = rdev_get_key(rdev, dev, key_idx, pairwise, mac_addr, &cookie,
  2413. get_key_callback);
  2414. if (err)
  2415. goto free_msg;
  2416. if (cookie.error)
  2417. goto nla_put_failure;
  2418. genlmsg_end(msg, hdr);
  2419. return genlmsg_reply(msg, info);
  2420. nla_put_failure:
  2421. err = -ENOBUFS;
  2422. free_msg:
  2423. nlmsg_free(msg);
  2424. return err;
  2425. }
  2426. static int nl80211_set_key(struct sk_buff *skb, struct genl_info *info)
  2427. {
  2428. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2429. struct key_parse key;
  2430. int err;
  2431. struct net_device *dev = info->user_ptr[1];
  2432. err = nl80211_parse_key(info, &key);
  2433. if (err)
  2434. return err;
  2435. if (key.idx < 0)
  2436. return -EINVAL;
  2437. /* only support setting default key */
  2438. if (!key.def && !key.defmgmt)
  2439. return -EINVAL;
  2440. wdev_lock(dev->ieee80211_ptr);
  2441. if (key.def) {
  2442. if (!rdev->ops->set_default_key) {
  2443. err = -EOPNOTSUPP;
  2444. goto out;
  2445. }
  2446. err = nl80211_key_allowed(dev->ieee80211_ptr);
  2447. if (err)
  2448. goto out;
  2449. err = rdev_set_default_key(rdev, dev, key.idx,
  2450. key.def_uni, key.def_multi);
  2451. if (err)
  2452. goto out;
  2453. #ifdef CONFIG_CFG80211_WEXT
  2454. dev->ieee80211_ptr->wext.default_key = key.idx;
  2455. #endif
  2456. } else {
  2457. if (key.def_uni || !key.def_multi) {
  2458. err = -EINVAL;
  2459. goto out;
  2460. }
  2461. if (!rdev->ops->set_default_mgmt_key) {
  2462. err = -EOPNOTSUPP;
  2463. goto out;
  2464. }
  2465. err = nl80211_key_allowed(dev->ieee80211_ptr);
  2466. if (err)
  2467. goto out;
  2468. err = rdev_set_default_mgmt_key(rdev, dev, key.idx);
  2469. if (err)
  2470. goto out;
  2471. #ifdef CONFIG_CFG80211_WEXT
  2472. dev->ieee80211_ptr->wext.default_mgmt_key = key.idx;
  2473. #endif
  2474. }
  2475. out:
  2476. wdev_unlock(dev->ieee80211_ptr);
  2477. return err;
  2478. }
  2479. static int nl80211_new_key(struct sk_buff *skb, struct genl_info *info)
  2480. {
  2481. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2482. int err;
  2483. struct net_device *dev = info->user_ptr[1];
  2484. struct key_parse key;
  2485. const u8 *mac_addr = NULL;
  2486. err = nl80211_parse_key(info, &key);
  2487. if (err)
  2488. return err;
  2489. if (!key.p.key)
  2490. return -EINVAL;
  2491. if (info->attrs[NL80211_ATTR_MAC])
  2492. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  2493. if (key.type == -1) {
  2494. if (mac_addr)
  2495. key.type = NL80211_KEYTYPE_PAIRWISE;
  2496. else
  2497. key.type = NL80211_KEYTYPE_GROUP;
  2498. }
  2499. /* for now */
  2500. if (key.type != NL80211_KEYTYPE_PAIRWISE &&
  2501. key.type != NL80211_KEYTYPE_GROUP)
  2502. return -EINVAL;
  2503. if (!rdev->ops->add_key)
  2504. return -EOPNOTSUPP;
  2505. if (cfg80211_validate_key_settings(rdev, &key.p, key.idx,
  2506. key.type == NL80211_KEYTYPE_PAIRWISE,
  2507. mac_addr))
  2508. return -EINVAL;
  2509. wdev_lock(dev->ieee80211_ptr);
  2510. err = nl80211_key_allowed(dev->ieee80211_ptr);
  2511. if (!err)
  2512. err = rdev_add_key(rdev, dev, key.idx,
  2513. key.type == NL80211_KEYTYPE_PAIRWISE,
  2514. mac_addr, &key.p);
  2515. wdev_unlock(dev->ieee80211_ptr);
  2516. return err;
  2517. }
  2518. static int nl80211_del_key(struct sk_buff *skb, struct genl_info *info)
  2519. {
  2520. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2521. int err;
  2522. struct net_device *dev = info->user_ptr[1];
  2523. u8 *mac_addr = NULL;
  2524. struct key_parse key;
  2525. err = nl80211_parse_key(info, &key);
  2526. if (err)
  2527. return err;
  2528. if (info->attrs[NL80211_ATTR_MAC])
  2529. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  2530. if (key.type == -1) {
  2531. if (mac_addr)
  2532. key.type = NL80211_KEYTYPE_PAIRWISE;
  2533. else
  2534. key.type = NL80211_KEYTYPE_GROUP;
  2535. }
  2536. /* for now */
  2537. if (key.type != NL80211_KEYTYPE_PAIRWISE &&
  2538. key.type != NL80211_KEYTYPE_GROUP)
  2539. return -EINVAL;
  2540. if (!rdev->ops->del_key)
  2541. return -EOPNOTSUPP;
  2542. wdev_lock(dev->ieee80211_ptr);
  2543. err = nl80211_key_allowed(dev->ieee80211_ptr);
  2544. if (key.type == NL80211_KEYTYPE_GROUP && mac_addr &&
  2545. !(rdev->wiphy.flags & WIPHY_FLAG_IBSS_RSN))
  2546. err = -ENOENT;
  2547. if (!err)
  2548. err = rdev_del_key(rdev, dev, key.idx,
  2549. key.type == NL80211_KEYTYPE_PAIRWISE,
  2550. mac_addr);
  2551. #ifdef CONFIG_CFG80211_WEXT
  2552. if (!err) {
  2553. if (key.idx == dev->ieee80211_ptr->wext.default_key)
  2554. dev->ieee80211_ptr->wext.default_key = -1;
  2555. else if (key.idx == dev->ieee80211_ptr->wext.default_mgmt_key)
  2556. dev->ieee80211_ptr->wext.default_mgmt_key = -1;
  2557. }
  2558. #endif
  2559. wdev_unlock(dev->ieee80211_ptr);
  2560. return err;
  2561. }
  2562. /* This function returns an error or the number of nested attributes */
  2563. static int validate_acl_mac_addrs(struct nlattr *nl_attr)
  2564. {
  2565. struct nlattr *attr;
  2566. int n_entries = 0, tmp;
  2567. nla_for_each_nested(attr, nl_attr, tmp) {
  2568. if (nla_len(attr) != ETH_ALEN)
  2569. return -EINVAL;
  2570. n_entries++;
  2571. }
  2572. return n_entries;
  2573. }
  2574. /*
  2575. * This function parses ACL information and allocates memory for ACL data.
  2576. * On successful return, the calling function is responsible to free the
  2577. * ACL buffer returned by this function.
  2578. */
  2579. static struct cfg80211_acl_data *parse_acl_data(struct wiphy *wiphy,
  2580. struct genl_info *info)
  2581. {
  2582. enum nl80211_acl_policy acl_policy;
  2583. struct nlattr *attr;
  2584. struct cfg80211_acl_data *acl;
  2585. int i = 0, n_entries, tmp;
  2586. if (!wiphy->max_acl_mac_addrs)
  2587. return ERR_PTR(-EOPNOTSUPP);
  2588. if (!info->attrs[NL80211_ATTR_ACL_POLICY])
  2589. return ERR_PTR(-EINVAL);
  2590. acl_policy = nla_get_u32(info->attrs[NL80211_ATTR_ACL_POLICY]);
  2591. if (acl_policy != NL80211_ACL_POLICY_ACCEPT_UNLESS_LISTED &&
  2592. acl_policy != NL80211_ACL_POLICY_DENY_UNLESS_LISTED)
  2593. return ERR_PTR(-EINVAL);
  2594. if (!info->attrs[NL80211_ATTR_MAC_ADDRS])
  2595. return ERR_PTR(-EINVAL);
  2596. n_entries = validate_acl_mac_addrs(info->attrs[NL80211_ATTR_MAC_ADDRS]);
  2597. if (n_entries < 0)
  2598. return ERR_PTR(n_entries);
  2599. if (n_entries > wiphy->max_acl_mac_addrs)
  2600. return ERR_PTR(-ENOTSUPP);
  2601. acl = kzalloc(sizeof(*acl) + (sizeof(struct mac_address) * n_entries),
  2602. GFP_KERNEL);
  2603. if (!acl)
  2604. return ERR_PTR(-ENOMEM);
  2605. nla_for_each_nested(attr, info->attrs[NL80211_ATTR_MAC_ADDRS], tmp) {
  2606. memcpy(acl->mac_addrs[i].addr, nla_data(attr), ETH_ALEN);
  2607. i++;
  2608. }
  2609. acl->n_acl_entries = n_entries;
  2610. acl->acl_policy = acl_policy;
  2611. return acl;
  2612. }
  2613. static int nl80211_set_mac_acl(struct sk_buff *skb, struct genl_info *info)
  2614. {
  2615. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2616. struct net_device *dev = info->user_ptr[1];
  2617. struct cfg80211_acl_data *acl;
  2618. int err;
  2619. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  2620. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  2621. return -EOPNOTSUPP;
  2622. if (!dev->ieee80211_ptr->beacon_interval)
  2623. return -EINVAL;
  2624. acl = parse_acl_data(&rdev->wiphy, info);
  2625. if (IS_ERR(acl))
  2626. return PTR_ERR(acl);
  2627. err = rdev_set_mac_acl(rdev, dev, acl);
  2628. kfree(acl);
  2629. return err;
  2630. }
  2631. static int nl80211_parse_beacon(struct nlattr *attrs[],
  2632. struct cfg80211_beacon_data *bcn)
  2633. {
  2634. bool haveinfo = false;
  2635. if (!is_valid_ie_attr(attrs[NL80211_ATTR_BEACON_TAIL]) ||
  2636. !is_valid_ie_attr(attrs[NL80211_ATTR_IE]) ||
  2637. !is_valid_ie_attr(attrs[NL80211_ATTR_IE_PROBE_RESP]) ||
  2638. !is_valid_ie_attr(attrs[NL80211_ATTR_IE_ASSOC_RESP]))
  2639. return -EINVAL;
  2640. memset(bcn, 0, sizeof(*bcn));
  2641. if (attrs[NL80211_ATTR_BEACON_HEAD]) {
  2642. bcn->head = nla_data(attrs[NL80211_ATTR_BEACON_HEAD]);
  2643. bcn->head_len = nla_len(attrs[NL80211_ATTR_BEACON_HEAD]);
  2644. if (!bcn->head_len)
  2645. return -EINVAL;
  2646. haveinfo = true;
  2647. }
  2648. if (attrs[NL80211_ATTR_BEACON_TAIL]) {
  2649. bcn->tail = nla_data(attrs[NL80211_ATTR_BEACON_TAIL]);
  2650. bcn->tail_len = nla_len(attrs[NL80211_ATTR_BEACON_TAIL]);
  2651. haveinfo = true;
  2652. }
  2653. if (!haveinfo)
  2654. return -EINVAL;
  2655. if (attrs[NL80211_ATTR_IE]) {
  2656. bcn->beacon_ies = nla_data(attrs[NL80211_ATTR_IE]);
  2657. bcn->beacon_ies_len = nla_len(attrs[NL80211_ATTR_IE]);
  2658. }
  2659. if (attrs[NL80211_ATTR_IE_PROBE_RESP]) {
  2660. bcn->proberesp_ies =
  2661. nla_data(attrs[NL80211_ATTR_IE_PROBE_RESP]);
  2662. bcn->proberesp_ies_len =
  2663. nla_len(attrs[NL80211_ATTR_IE_PROBE_RESP]);
  2664. }
  2665. if (attrs[NL80211_ATTR_IE_ASSOC_RESP]) {
  2666. bcn->assocresp_ies =
  2667. nla_data(attrs[NL80211_ATTR_IE_ASSOC_RESP]);
  2668. bcn->assocresp_ies_len =
  2669. nla_len(attrs[NL80211_ATTR_IE_ASSOC_RESP]);
  2670. }
  2671. if (attrs[NL80211_ATTR_PROBE_RESP]) {
  2672. bcn->probe_resp = nla_data(attrs[NL80211_ATTR_PROBE_RESP]);
  2673. bcn->probe_resp_len = nla_len(attrs[NL80211_ATTR_PROBE_RESP]);
  2674. }
  2675. return 0;
  2676. }
  2677. static bool nl80211_get_ap_channel(struct cfg80211_registered_device *rdev,
  2678. struct cfg80211_ap_settings *params)
  2679. {
  2680. struct wireless_dev *wdev;
  2681. bool ret = false;
  2682. list_for_each_entry(wdev, &rdev->wdev_list, list) {
  2683. if (wdev->iftype != NL80211_IFTYPE_AP &&
  2684. wdev->iftype != NL80211_IFTYPE_P2P_GO)
  2685. continue;
  2686. if (!wdev->preset_chandef.chan)
  2687. continue;
  2688. params->chandef = wdev->preset_chandef;
  2689. ret = true;
  2690. break;
  2691. }
  2692. return ret;
  2693. }
  2694. static bool nl80211_valid_auth_type(struct cfg80211_registered_device *rdev,
  2695. enum nl80211_auth_type auth_type,
  2696. enum nl80211_commands cmd)
  2697. {
  2698. if (auth_type > NL80211_AUTHTYPE_MAX)
  2699. return false;
  2700. switch (cmd) {
  2701. case NL80211_CMD_AUTHENTICATE:
  2702. if (!(rdev->wiphy.features & NL80211_FEATURE_SAE) &&
  2703. auth_type == NL80211_AUTHTYPE_SAE)
  2704. return false;
  2705. return true;
  2706. case NL80211_CMD_CONNECT:
  2707. case NL80211_CMD_START_AP:
  2708. /* SAE not supported yet */
  2709. if (auth_type == NL80211_AUTHTYPE_SAE)
  2710. return false;
  2711. return true;
  2712. default:
  2713. return false;
  2714. }
  2715. }
  2716. static int nl80211_start_ap(struct sk_buff *skb, struct genl_info *info)
  2717. {
  2718. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2719. struct net_device *dev = info->user_ptr[1];
  2720. struct wireless_dev *wdev = dev->ieee80211_ptr;
  2721. struct cfg80211_ap_settings params;
  2722. int err;
  2723. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  2724. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  2725. return -EOPNOTSUPP;
  2726. if (!rdev->ops->start_ap)
  2727. return -EOPNOTSUPP;
  2728. if (wdev->beacon_interval)
  2729. return -EALREADY;
  2730. memset(&params, 0, sizeof(params));
  2731. /* these are required for START_AP */
  2732. if (!info->attrs[NL80211_ATTR_BEACON_INTERVAL] ||
  2733. !info->attrs[NL80211_ATTR_DTIM_PERIOD] ||
  2734. !info->attrs[NL80211_ATTR_BEACON_HEAD])
  2735. return -EINVAL;
  2736. err = nl80211_parse_beacon(info->attrs, &params.beacon);
  2737. if (err)
  2738. return err;
  2739. params.beacon_interval =
  2740. nla_get_u32(info->attrs[NL80211_ATTR_BEACON_INTERVAL]);
  2741. params.dtim_period =
  2742. nla_get_u32(info->attrs[NL80211_ATTR_DTIM_PERIOD]);
  2743. err = cfg80211_validate_beacon_int(rdev, params.beacon_interval);
  2744. if (err)
  2745. return err;
  2746. /*
  2747. * In theory, some of these attributes should be required here
  2748. * but since they were not used when the command was originally
  2749. * added, keep them optional for old user space programs to let
  2750. * them continue to work with drivers that do not need the
  2751. * additional information -- drivers must check!
  2752. */
  2753. if (info->attrs[NL80211_ATTR_SSID]) {
  2754. params.ssid = nla_data(info->attrs[NL80211_ATTR_SSID]);
  2755. params.ssid_len =
  2756. nla_len(info->attrs[NL80211_ATTR_SSID]);
  2757. if (params.ssid_len == 0 ||
  2758. params.ssid_len > IEEE80211_MAX_SSID_LEN)
  2759. return -EINVAL;
  2760. }
  2761. if (info->attrs[NL80211_ATTR_HIDDEN_SSID]) {
  2762. params.hidden_ssid = nla_get_u32(
  2763. info->attrs[NL80211_ATTR_HIDDEN_SSID]);
  2764. if (params.hidden_ssid != NL80211_HIDDEN_SSID_NOT_IN_USE &&
  2765. params.hidden_ssid != NL80211_HIDDEN_SSID_ZERO_LEN &&
  2766. params.hidden_ssid != NL80211_HIDDEN_SSID_ZERO_CONTENTS)
  2767. return -EINVAL;
  2768. }
  2769. params.privacy = !!info->attrs[NL80211_ATTR_PRIVACY];
  2770. if (info->attrs[NL80211_ATTR_AUTH_TYPE]) {
  2771. params.auth_type = nla_get_u32(
  2772. info->attrs[NL80211_ATTR_AUTH_TYPE]);
  2773. if (!nl80211_valid_auth_type(rdev, params.auth_type,
  2774. NL80211_CMD_START_AP))
  2775. return -EINVAL;
  2776. } else
  2777. params.auth_type = NL80211_AUTHTYPE_AUTOMATIC;
  2778. err = nl80211_crypto_settings(rdev, info, &params.crypto,
  2779. NL80211_MAX_NR_CIPHER_SUITES);
  2780. if (err)
  2781. return err;
  2782. if (info->attrs[NL80211_ATTR_INACTIVITY_TIMEOUT]) {
  2783. if (!(rdev->wiphy.features & NL80211_FEATURE_INACTIVITY_TIMER))
  2784. return -EOPNOTSUPP;
  2785. params.inactivity_timeout = nla_get_u16(
  2786. info->attrs[NL80211_ATTR_INACTIVITY_TIMEOUT]);
  2787. }
  2788. if (info->attrs[NL80211_ATTR_P2P_CTWINDOW]) {
  2789. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  2790. return -EINVAL;
  2791. params.p2p_ctwindow =
  2792. nla_get_u8(info->attrs[NL80211_ATTR_P2P_CTWINDOW]);
  2793. if (params.p2p_ctwindow > 127)
  2794. return -EINVAL;
  2795. if (params.p2p_ctwindow != 0 &&
  2796. !(rdev->wiphy.features & NL80211_FEATURE_P2P_GO_CTWIN))
  2797. return -EINVAL;
  2798. }
  2799. if (info->attrs[NL80211_ATTR_P2P_OPPPS]) {
  2800. u8 tmp;
  2801. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  2802. return -EINVAL;
  2803. tmp = nla_get_u8(info->attrs[NL80211_ATTR_P2P_OPPPS]);
  2804. if (tmp > 1)
  2805. return -EINVAL;
  2806. params.p2p_opp_ps = tmp;
  2807. if (params.p2p_opp_ps != 0 &&
  2808. !(rdev->wiphy.features & NL80211_FEATURE_P2P_GO_OPPPS))
  2809. return -EINVAL;
  2810. }
  2811. if (info->attrs[NL80211_ATTR_WIPHY_FREQ]) {
  2812. err = nl80211_parse_chandef(rdev, info, &params.chandef);
  2813. if (err)
  2814. return err;
  2815. } else if (wdev->preset_chandef.chan) {
  2816. params.chandef = wdev->preset_chandef;
  2817. } else if (!nl80211_get_ap_channel(rdev, &params))
  2818. return -EINVAL;
  2819. if (!cfg80211_reg_can_beacon(&rdev->wiphy, &params.chandef,
  2820. wdev->iftype))
  2821. return -EINVAL;
  2822. if (info->attrs[NL80211_ATTR_ACL_POLICY]) {
  2823. params.acl = parse_acl_data(&rdev->wiphy, info);
  2824. if (IS_ERR(params.acl))
  2825. return PTR_ERR(params.acl);
  2826. }
  2827. if (info->attrs[NL80211_ATTR_SMPS_MODE]) {
  2828. params.smps_mode =
  2829. nla_get_u8(info->attrs[NL80211_ATTR_SMPS_MODE]);
  2830. switch (params.smps_mode) {
  2831. case NL80211_SMPS_OFF:
  2832. break;
  2833. case NL80211_SMPS_STATIC:
  2834. if (!(rdev->wiphy.features &
  2835. NL80211_FEATURE_STATIC_SMPS))
  2836. return -EINVAL;
  2837. break;
  2838. case NL80211_SMPS_DYNAMIC:
  2839. if (!(rdev->wiphy.features &
  2840. NL80211_FEATURE_DYNAMIC_SMPS))
  2841. return -EINVAL;
  2842. break;
  2843. default:
  2844. return -EINVAL;
  2845. }
  2846. } else {
  2847. params.smps_mode = NL80211_SMPS_OFF;
  2848. }
  2849. wdev_lock(wdev);
  2850. err = rdev_start_ap(rdev, dev, &params);
  2851. if (!err) {
  2852. wdev->preset_chandef = params.chandef;
  2853. wdev->beacon_interval = params.beacon_interval;
  2854. wdev->chandef = params.chandef;
  2855. wdev->ssid_len = params.ssid_len;
  2856. memcpy(wdev->ssid, params.ssid, wdev->ssid_len);
  2857. }
  2858. wdev_unlock(wdev);
  2859. kfree(params.acl);
  2860. return err;
  2861. }
  2862. static int nl80211_set_beacon(struct sk_buff *skb, struct genl_info *info)
  2863. {
  2864. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2865. struct net_device *dev = info->user_ptr[1];
  2866. struct wireless_dev *wdev = dev->ieee80211_ptr;
  2867. struct cfg80211_beacon_data params;
  2868. int err;
  2869. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  2870. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  2871. return -EOPNOTSUPP;
  2872. if (!rdev->ops->change_beacon)
  2873. return -EOPNOTSUPP;
  2874. if (!wdev->beacon_interval)
  2875. return -EINVAL;
  2876. err = nl80211_parse_beacon(info->attrs, &params);
  2877. if (err)
  2878. return err;
  2879. wdev_lock(wdev);
  2880. err = rdev_change_beacon(rdev, dev, &params);
  2881. wdev_unlock(wdev);
  2882. return err;
  2883. }
  2884. static int nl80211_stop_ap(struct sk_buff *skb, struct genl_info *info)
  2885. {
  2886. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  2887. struct net_device *dev = info->user_ptr[1];
  2888. return cfg80211_stop_ap(rdev, dev, false);
  2889. }
  2890. static const struct nla_policy sta_flags_policy[NL80211_STA_FLAG_MAX + 1] = {
  2891. [NL80211_STA_FLAG_AUTHORIZED] = { .type = NLA_FLAG },
  2892. [NL80211_STA_FLAG_SHORT_PREAMBLE] = { .type = NLA_FLAG },
  2893. [NL80211_STA_FLAG_WME] = { .type = NLA_FLAG },
  2894. [NL80211_STA_FLAG_MFP] = { .type = NLA_FLAG },
  2895. [NL80211_STA_FLAG_AUTHENTICATED] = { .type = NLA_FLAG },
  2896. [NL80211_STA_FLAG_TDLS_PEER] = { .type = NLA_FLAG },
  2897. };
  2898. static int parse_station_flags(struct genl_info *info,
  2899. enum nl80211_iftype iftype,
  2900. struct station_parameters *params)
  2901. {
  2902. struct nlattr *flags[NL80211_STA_FLAG_MAX + 1];
  2903. struct nlattr *nla;
  2904. int flag;
  2905. /*
  2906. * Try parsing the new attribute first so userspace
  2907. * can specify both for older kernels.
  2908. */
  2909. nla = info->attrs[NL80211_ATTR_STA_FLAGS2];
  2910. if (nla) {
  2911. struct nl80211_sta_flag_update *sta_flags;
  2912. sta_flags = nla_data(nla);
  2913. params->sta_flags_mask = sta_flags->mask;
  2914. params->sta_flags_set = sta_flags->set;
  2915. params->sta_flags_set &= params->sta_flags_mask;
  2916. if ((params->sta_flags_mask |
  2917. params->sta_flags_set) & BIT(__NL80211_STA_FLAG_INVALID))
  2918. return -EINVAL;
  2919. return 0;
  2920. }
  2921. /* if present, parse the old attribute */
  2922. nla = info->attrs[NL80211_ATTR_STA_FLAGS];
  2923. if (!nla)
  2924. return 0;
  2925. if (nla_parse_nested(flags, NL80211_STA_FLAG_MAX,
  2926. nla, sta_flags_policy))
  2927. return -EINVAL;
  2928. /*
  2929. * Only allow certain flags for interface types so that
  2930. * other attributes are silently ignored. Remember that
  2931. * this is backward compatibility code with old userspace
  2932. * and shouldn't be hit in other cases anyway.
  2933. */
  2934. switch (iftype) {
  2935. case NL80211_IFTYPE_AP:
  2936. case NL80211_IFTYPE_AP_VLAN:
  2937. case NL80211_IFTYPE_P2P_GO:
  2938. params->sta_flags_mask = BIT(NL80211_STA_FLAG_AUTHORIZED) |
  2939. BIT(NL80211_STA_FLAG_SHORT_PREAMBLE) |
  2940. BIT(NL80211_STA_FLAG_WME) |
  2941. BIT(NL80211_STA_FLAG_MFP);
  2942. break;
  2943. case NL80211_IFTYPE_P2P_CLIENT:
  2944. case NL80211_IFTYPE_STATION:
  2945. params->sta_flags_mask = BIT(NL80211_STA_FLAG_AUTHORIZED) |
  2946. BIT(NL80211_STA_FLAG_TDLS_PEER);
  2947. break;
  2948. case NL80211_IFTYPE_MESH_POINT:
  2949. params->sta_flags_mask = BIT(NL80211_STA_FLAG_AUTHENTICATED) |
  2950. BIT(NL80211_STA_FLAG_MFP) |
  2951. BIT(NL80211_STA_FLAG_AUTHORIZED);
  2952. default:
  2953. return -EINVAL;
  2954. }
  2955. for (flag = 1; flag <= NL80211_STA_FLAG_MAX; flag++) {
  2956. if (flags[flag]) {
  2957. params->sta_flags_set |= (1<<flag);
  2958. /* no longer support new API additions in old API */
  2959. if (flag > NL80211_STA_FLAG_MAX_OLD_API)
  2960. return -EINVAL;
  2961. }
  2962. }
  2963. return 0;
  2964. }
  2965. static bool nl80211_put_sta_rate(struct sk_buff *msg, struct rate_info *info,
  2966. int attr)
  2967. {
  2968. struct nlattr *rate;
  2969. u32 bitrate;
  2970. u16 bitrate_compat;
  2971. rate = nla_nest_start(msg, attr);
  2972. if (!rate)
  2973. return false;
  2974. /* cfg80211_calculate_bitrate will return 0 for mcs >= 32 */
  2975. bitrate = cfg80211_calculate_bitrate(info);
  2976. /* report 16-bit bitrate only if we can */
  2977. bitrate_compat = bitrate < (1UL << 16) ? bitrate : 0;
  2978. if (bitrate > 0 &&
  2979. nla_put_u32(msg, NL80211_RATE_INFO_BITRATE32, bitrate))
  2980. return false;
  2981. if (bitrate_compat > 0 &&
  2982. nla_put_u16(msg, NL80211_RATE_INFO_BITRATE, bitrate_compat))
  2983. return false;
  2984. if (info->flags & RATE_INFO_FLAGS_MCS) {
  2985. if (nla_put_u8(msg, NL80211_RATE_INFO_MCS, info->mcs))
  2986. return false;
  2987. if (info->flags & RATE_INFO_FLAGS_40_MHZ_WIDTH &&
  2988. nla_put_flag(msg, NL80211_RATE_INFO_40_MHZ_WIDTH))
  2989. return false;
  2990. if (info->flags & RATE_INFO_FLAGS_SHORT_GI &&
  2991. nla_put_flag(msg, NL80211_RATE_INFO_SHORT_GI))
  2992. return false;
  2993. } else if (info->flags & RATE_INFO_FLAGS_VHT_MCS) {
  2994. if (nla_put_u8(msg, NL80211_RATE_INFO_VHT_MCS, info->mcs))
  2995. return false;
  2996. if (nla_put_u8(msg, NL80211_RATE_INFO_VHT_NSS, info->nss))
  2997. return false;
  2998. if (info->flags & RATE_INFO_FLAGS_40_MHZ_WIDTH &&
  2999. nla_put_flag(msg, NL80211_RATE_INFO_40_MHZ_WIDTH))
  3000. return false;
  3001. if (info->flags & RATE_INFO_FLAGS_80_MHZ_WIDTH &&
  3002. nla_put_flag(msg, NL80211_RATE_INFO_80_MHZ_WIDTH))
  3003. return false;
  3004. if (info->flags & RATE_INFO_FLAGS_80P80_MHZ_WIDTH &&
  3005. nla_put_flag(msg, NL80211_RATE_INFO_80P80_MHZ_WIDTH))
  3006. return false;
  3007. if (info->flags & RATE_INFO_FLAGS_160_MHZ_WIDTH &&
  3008. nla_put_flag(msg, NL80211_RATE_INFO_160_MHZ_WIDTH))
  3009. return false;
  3010. if (info->flags & RATE_INFO_FLAGS_SHORT_GI &&
  3011. nla_put_flag(msg, NL80211_RATE_INFO_SHORT_GI))
  3012. return false;
  3013. }
  3014. nla_nest_end(msg, rate);
  3015. return true;
  3016. }
  3017. static bool nl80211_put_signal(struct sk_buff *msg, u8 mask, s8 *signal,
  3018. int id)
  3019. {
  3020. void *attr;
  3021. int i = 0;
  3022. if (!mask)
  3023. return true;
  3024. attr = nla_nest_start(msg, id);
  3025. if (!attr)
  3026. return false;
  3027. for (i = 0; i < IEEE80211_MAX_CHAINS; i++) {
  3028. if (!(mask & BIT(i)))
  3029. continue;
  3030. if (nla_put_u8(msg, i, signal[i]))
  3031. return false;
  3032. }
  3033. nla_nest_end(msg, attr);
  3034. return true;
  3035. }
  3036. static int nl80211_send_station(struct sk_buff *msg, u32 portid, u32 seq,
  3037. int flags,
  3038. struct cfg80211_registered_device *rdev,
  3039. struct net_device *dev,
  3040. const u8 *mac_addr, struct station_info *sinfo)
  3041. {
  3042. void *hdr;
  3043. struct nlattr *sinfoattr, *bss_param;
  3044. hdr = nl80211hdr_put(msg, portid, seq, flags, NL80211_CMD_NEW_STATION);
  3045. if (!hdr)
  3046. return -1;
  3047. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  3048. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, mac_addr) ||
  3049. nla_put_u32(msg, NL80211_ATTR_GENERATION, sinfo->generation))
  3050. goto nla_put_failure;
  3051. sinfoattr = nla_nest_start(msg, NL80211_ATTR_STA_INFO);
  3052. if (!sinfoattr)
  3053. goto nla_put_failure;
  3054. if ((sinfo->filled & STATION_INFO_CONNECTED_TIME) &&
  3055. nla_put_u32(msg, NL80211_STA_INFO_CONNECTED_TIME,
  3056. sinfo->connected_time))
  3057. goto nla_put_failure;
  3058. if ((sinfo->filled & STATION_INFO_INACTIVE_TIME) &&
  3059. nla_put_u32(msg, NL80211_STA_INFO_INACTIVE_TIME,
  3060. sinfo->inactive_time))
  3061. goto nla_put_failure;
  3062. if ((sinfo->filled & (STATION_INFO_RX_BYTES |
  3063. STATION_INFO_RX_BYTES64)) &&
  3064. nla_put_u32(msg, NL80211_STA_INFO_RX_BYTES,
  3065. (u32)sinfo->rx_bytes))
  3066. goto nla_put_failure;
  3067. if ((sinfo->filled & (STATION_INFO_TX_BYTES |
  3068. STATION_INFO_TX_BYTES64)) &&
  3069. nla_put_u32(msg, NL80211_STA_INFO_TX_BYTES,
  3070. (u32)sinfo->tx_bytes))
  3071. goto nla_put_failure;
  3072. if ((sinfo->filled & STATION_INFO_RX_BYTES64) &&
  3073. nla_put_u64(msg, NL80211_STA_INFO_RX_BYTES64,
  3074. sinfo->rx_bytes))
  3075. goto nla_put_failure;
  3076. if ((sinfo->filled & STATION_INFO_TX_BYTES64) &&
  3077. nla_put_u64(msg, NL80211_STA_INFO_TX_BYTES64,
  3078. sinfo->tx_bytes))
  3079. goto nla_put_failure;
  3080. if ((sinfo->filled & STATION_INFO_LLID) &&
  3081. nla_put_u16(msg, NL80211_STA_INFO_LLID, sinfo->llid))
  3082. goto nla_put_failure;
  3083. if ((sinfo->filled & STATION_INFO_PLID) &&
  3084. nla_put_u16(msg, NL80211_STA_INFO_PLID, sinfo->plid))
  3085. goto nla_put_failure;
  3086. if ((sinfo->filled & STATION_INFO_PLINK_STATE) &&
  3087. nla_put_u8(msg, NL80211_STA_INFO_PLINK_STATE,
  3088. sinfo->plink_state))
  3089. goto nla_put_failure;
  3090. switch (rdev->wiphy.signal_type) {
  3091. case CFG80211_SIGNAL_TYPE_MBM:
  3092. if ((sinfo->filled & STATION_INFO_SIGNAL) &&
  3093. nla_put_u8(msg, NL80211_STA_INFO_SIGNAL,
  3094. sinfo->signal))
  3095. goto nla_put_failure;
  3096. if ((sinfo->filled & STATION_INFO_SIGNAL_AVG) &&
  3097. nla_put_u8(msg, NL80211_STA_INFO_SIGNAL_AVG,
  3098. sinfo->signal_avg))
  3099. goto nla_put_failure;
  3100. break;
  3101. default:
  3102. break;
  3103. }
  3104. if (sinfo->filled & STATION_INFO_CHAIN_SIGNAL) {
  3105. if (!nl80211_put_signal(msg, sinfo->chains,
  3106. sinfo->chain_signal,
  3107. NL80211_STA_INFO_CHAIN_SIGNAL))
  3108. goto nla_put_failure;
  3109. }
  3110. if (sinfo->filled & STATION_INFO_CHAIN_SIGNAL_AVG) {
  3111. if (!nl80211_put_signal(msg, sinfo->chains,
  3112. sinfo->chain_signal_avg,
  3113. NL80211_STA_INFO_CHAIN_SIGNAL_AVG))
  3114. goto nla_put_failure;
  3115. }
  3116. if (sinfo->filled & STATION_INFO_TX_BITRATE) {
  3117. if (!nl80211_put_sta_rate(msg, &sinfo->txrate,
  3118. NL80211_STA_INFO_TX_BITRATE))
  3119. goto nla_put_failure;
  3120. }
  3121. if (sinfo->filled & STATION_INFO_RX_BITRATE) {
  3122. if (!nl80211_put_sta_rate(msg, &sinfo->rxrate,
  3123. NL80211_STA_INFO_RX_BITRATE))
  3124. goto nla_put_failure;
  3125. }
  3126. if ((sinfo->filled & STATION_INFO_RX_PACKETS) &&
  3127. nla_put_u32(msg, NL80211_STA_INFO_RX_PACKETS,
  3128. sinfo->rx_packets))
  3129. goto nla_put_failure;
  3130. if ((sinfo->filled & STATION_INFO_TX_PACKETS) &&
  3131. nla_put_u32(msg, NL80211_STA_INFO_TX_PACKETS,
  3132. sinfo->tx_packets))
  3133. goto nla_put_failure;
  3134. if ((sinfo->filled & STATION_INFO_TX_RETRIES) &&
  3135. nla_put_u32(msg, NL80211_STA_INFO_TX_RETRIES,
  3136. sinfo->tx_retries))
  3137. goto nla_put_failure;
  3138. if ((sinfo->filled & STATION_INFO_TX_FAILED) &&
  3139. nla_put_u32(msg, NL80211_STA_INFO_TX_FAILED,
  3140. sinfo->tx_failed))
  3141. goto nla_put_failure;
  3142. if ((sinfo->filled & STATION_INFO_EXPECTED_THROUGHPUT) &&
  3143. nla_put_u32(msg, NL80211_STA_INFO_EXPECTED_THROUGHPUT,
  3144. sinfo->expected_throughput))
  3145. goto nla_put_failure;
  3146. if ((sinfo->filled & STATION_INFO_BEACON_LOSS_COUNT) &&
  3147. nla_put_u32(msg, NL80211_STA_INFO_BEACON_LOSS,
  3148. sinfo->beacon_loss_count))
  3149. goto nla_put_failure;
  3150. if ((sinfo->filled & STATION_INFO_LOCAL_PM) &&
  3151. nla_put_u32(msg, NL80211_STA_INFO_LOCAL_PM,
  3152. sinfo->local_pm))
  3153. goto nla_put_failure;
  3154. if ((sinfo->filled & STATION_INFO_PEER_PM) &&
  3155. nla_put_u32(msg, NL80211_STA_INFO_PEER_PM,
  3156. sinfo->peer_pm))
  3157. goto nla_put_failure;
  3158. if ((sinfo->filled & STATION_INFO_NONPEER_PM) &&
  3159. nla_put_u32(msg, NL80211_STA_INFO_NONPEER_PM,
  3160. sinfo->nonpeer_pm))
  3161. goto nla_put_failure;
  3162. if (sinfo->filled & STATION_INFO_BSS_PARAM) {
  3163. bss_param = nla_nest_start(msg, NL80211_STA_INFO_BSS_PARAM);
  3164. if (!bss_param)
  3165. goto nla_put_failure;
  3166. if (((sinfo->bss_param.flags & BSS_PARAM_FLAGS_CTS_PROT) &&
  3167. nla_put_flag(msg, NL80211_STA_BSS_PARAM_CTS_PROT)) ||
  3168. ((sinfo->bss_param.flags & BSS_PARAM_FLAGS_SHORT_PREAMBLE) &&
  3169. nla_put_flag(msg, NL80211_STA_BSS_PARAM_SHORT_PREAMBLE)) ||
  3170. ((sinfo->bss_param.flags & BSS_PARAM_FLAGS_SHORT_SLOT_TIME) &&
  3171. nla_put_flag(msg, NL80211_STA_BSS_PARAM_SHORT_SLOT_TIME)) ||
  3172. nla_put_u8(msg, NL80211_STA_BSS_PARAM_DTIM_PERIOD,
  3173. sinfo->bss_param.dtim_period) ||
  3174. nla_put_u16(msg, NL80211_STA_BSS_PARAM_BEACON_INTERVAL,
  3175. sinfo->bss_param.beacon_interval))
  3176. goto nla_put_failure;
  3177. nla_nest_end(msg, bss_param);
  3178. }
  3179. if ((sinfo->filled & STATION_INFO_STA_FLAGS) &&
  3180. nla_put(msg, NL80211_STA_INFO_STA_FLAGS,
  3181. sizeof(struct nl80211_sta_flag_update),
  3182. &sinfo->sta_flags))
  3183. goto nla_put_failure;
  3184. if ((sinfo->filled & STATION_INFO_T_OFFSET) &&
  3185. nla_put_u64(msg, NL80211_STA_INFO_T_OFFSET,
  3186. sinfo->t_offset))
  3187. goto nla_put_failure;
  3188. nla_nest_end(msg, sinfoattr);
  3189. if ((sinfo->filled & STATION_INFO_ASSOC_REQ_IES) &&
  3190. nla_put(msg, NL80211_ATTR_IE, sinfo->assoc_req_ies_len,
  3191. sinfo->assoc_req_ies))
  3192. goto nla_put_failure;
  3193. return genlmsg_end(msg, hdr);
  3194. nla_put_failure:
  3195. genlmsg_cancel(msg, hdr);
  3196. return -EMSGSIZE;
  3197. }
  3198. static int nl80211_dump_station(struct sk_buff *skb,
  3199. struct netlink_callback *cb)
  3200. {
  3201. struct station_info sinfo;
  3202. struct cfg80211_registered_device *rdev;
  3203. struct wireless_dev *wdev;
  3204. u8 mac_addr[ETH_ALEN];
  3205. int sta_idx = cb->args[2];
  3206. int err;
  3207. err = nl80211_prepare_wdev_dump(skb, cb, &rdev, &wdev);
  3208. if (err)
  3209. return err;
  3210. if (!wdev->netdev) {
  3211. err = -EINVAL;
  3212. goto out_err;
  3213. }
  3214. if (!rdev->ops->dump_station) {
  3215. err = -EOPNOTSUPP;
  3216. goto out_err;
  3217. }
  3218. while (1) {
  3219. memset(&sinfo, 0, sizeof(sinfo));
  3220. err = rdev_dump_station(rdev, wdev->netdev, sta_idx,
  3221. mac_addr, &sinfo);
  3222. if (err == -ENOENT)
  3223. break;
  3224. if (err)
  3225. goto out_err;
  3226. if (nl80211_send_station(skb,
  3227. NETLINK_CB(cb->skb).portid,
  3228. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  3229. rdev, wdev->netdev, mac_addr,
  3230. &sinfo) < 0)
  3231. goto out;
  3232. sta_idx++;
  3233. }
  3234. out:
  3235. cb->args[2] = sta_idx;
  3236. err = skb->len;
  3237. out_err:
  3238. nl80211_finish_wdev_dump(rdev);
  3239. return err;
  3240. }
  3241. static int nl80211_get_station(struct sk_buff *skb, struct genl_info *info)
  3242. {
  3243. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3244. struct net_device *dev = info->user_ptr[1];
  3245. struct station_info sinfo;
  3246. struct sk_buff *msg;
  3247. u8 *mac_addr = NULL;
  3248. int err;
  3249. memset(&sinfo, 0, sizeof(sinfo));
  3250. if (!info->attrs[NL80211_ATTR_MAC])
  3251. return -EINVAL;
  3252. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3253. if (!rdev->ops->get_station)
  3254. return -EOPNOTSUPP;
  3255. err = rdev_get_station(rdev, dev, mac_addr, &sinfo);
  3256. if (err)
  3257. return err;
  3258. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  3259. if (!msg)
  3260. return -ENOMEM;
  3261. if (nl80211_send_station(msg, info->snd_portid, info->snd_seq, 0,
  3262. rdev, dev, mac_addr, &sinfo) < 0) {
  3263. nlmsg_free(msg);
  3264. return -ENOBUFS;
  3265. }
  3266. return genlmsg_reply(msg, info);
  3267. }
  3268. int cfg80211_check_station_change(struct wiphy *wiphy,
  3269. struct station_parameters *params,
  3270. enum cfg80211_station_type statype)
  3271. {
  3272. if (params->listen_interval != -1)
  3273. return -EINVAL;
  3274. if (params->aid &&
  3275. !(params->sta_flags_set & BIT(NL80211_STA_FLAG_TDLS_PEER)))
  3276. return -EINVAL;
  3277. /* When you run into this, adjust the code below for the new flag */
  3278. BUILD_BUG_ON(NL80211_STA_FLAG_MAX != 7);
  3279. switch (statype) {
  3280. case CFG80211_STA_MESH_PEER_KERNEL:
  3281. case CFG80211_STA_MESH_PEER_USER:
  3282. /*
  3283. * No ignoring the TDLS flag here -- the userspace mesh
  3284. * code doesn't have the bug of including TDLS in the
  3285. * mask everywhere.
  3286. */
  3287. if (params->sta_flags_mask &
  3288. ~(BIT(NL80211_STA_FLAG_AUTHENTICATED) |
  3289. BIT(NL80211_STA_FLAG_MFP) |
  3290. BIT(NL80211_STA_FLAG_AUTHORIZED)))
  3291. return -EINVAL;
  3292. break;
  3293. case CFG80211_STA_TDLS_PEER_SETUP:
  3294. case CFG80211_STA_TDLS_PEER_ACTIVE:
  3295. if (!(params->sta_flags_set & BIT(NL80211_STA_FLAG_TDLS_PEER)))
  3296. return -EINVAL;
  3297. /* ignore since it can't change */
  3298. params->sta_flags_mask &= ~BIT(NL80211_STA_FLAG_TDLS_PEER);
  3299. break;
  3300. default:
  3301. /* disallow mesh-specific things */
  3302. if (params->plink_action != NL80211_PLINK_ACTION_NO_ACTION)
  3303. return -EINVAL;
  3304. if (params->local_pm)
  3305. return -EINVAL;
  3306. if (params->sta_modify_mask & STATION_PARAM_APPLY_PLINK_STATE)
  3307. return -EINVAL;
  3308. }
  3309. if (statype != CFG80211_STA_TDLS_PEER_SETUP &&
  3310. statype != CFG80211_STA_TDLS_PEER_ACTIVE) {
  3311. /* TDLS can't be set, ... */
  3312. if (params->sta_flags_set & BIT(NL80211_STA_FLAG_TDLS_PEER))
  3313. return -EINVAL;
  3314. /*
  3315. * ... but don't bother the driver with it. This works around
  3316. * a hostapd/wpa_supplicant issue -- it always includes the
  3317. * TLDS_PEER flag in the mask even for AP mode.
  3318. */
  3319. params->sta_flags_mask &= ~BIT(NL80211_STA_FLAG_TDLS_PEER);
  3320. }
  3321. if (statype != CFG80211_STA_TDLS_PEER_SETUP) {
  3322. /* reject other things that can't change */
  3323. if (params->sta_modify_mask & STATION_PARAM_APPLY_UAPSD)
  3324. return -EINVAL;
  3325. if (params->sta_modify_mask & STATION_PARAM_APPLY_CAPABILITY)
  3326. return -EINVAL;
  3327. if (params->supported_rates)
  3328. return -EINVAL;
  3329. if (params->ext_capab || params->ht_capa || params->vht_capa)
  3330. return -EINVAL;
  3331. }
  3332. if (statype != CFG80211_STA_AP_CLIENT) {
  3333. if (params->vlan)
  3334. return -EINVAL;
  3335. }
  3336. switch (statype) {
  3337. case CFG80211_STA_AP_MLME_CLIENT:
  3338. /* Use this only for authorizing/unauthorizing a station */
  3339. if (!(params->sta_flags_mask & BIT(NL80211_STA_FLAG_AUTHORIZED)))
  3340. return -EOPNOTSUPP;
  3341. break;
  3342. case CFG80211_STA_AP_CLIENT:
  3343. /* accept only the listed bits */
  3344. if (params->sta_flags_mask &
  3345. ~(BIT(NL80211_STA_FLAG_AUTHORIZED) |
  3346. BIT(NL80211_STA_FLAG_AUTHENTICATED) |
  3347. BIT(NL80211_STA_FLAG_ASSOCIATED) |
  3348. BIT(NL80211_STA_FLAG_SHORT_PREAMBLE) |
  3349. BIT(NL80211_STA_FLAG_WME) |
  3350. BIT(NL80211_STA_FLAG_MFP)))
  3351. return -EINVAL;
  3352. /* but authenticated/associated only if driver handles it */
  3353. if (!(wiphy->features & NL80211_FEATURE_FULL_AP_CLIENT_STATE) &&
  3354. params->sta_flags_mask &
  3355. (BIT(NL80211_STA_FLAG_AUTHENTICATED) |
  3356. BIT(NL80211_STA_FLAG_ASSOCIATED)))
  3357. return -EINVAL;
  3358. break;
  3359. case CFG80211_STA_IBSS:
  3360. case CFG80211_STA_AP_STA:
  3361. /* reject any changes other than AUTHORIZED */
  3362. if (params->sta_flags_mask & ~BIT(NL80211_STA_FLAG_AUTHORIZED))
  3363. return -EINVAL;
  3364. break;
  3365. case CFG80211_STA_TDLS_PEER_SETUP:
  3366. /* reject any changes other than AUTHORIZED or WME */
  3367. if (params->sta_flags_mask & ~(BIT(NL80211_STA_FLAG_AUTHORIZED) |
  3368. BIT(NL80211_STA_FLAG_WME)))
  3369. return -EINVAL;
  3370. /* force (at least) rates when authorizing */
  3371. if (params->sta_flags_set & BIT(NL80211_STA_FLAG_AUTHORIZED) &&
  3372. !params->supported_rates)
  3373. return -EINVAL;
  3374. break;
  3375. case CFG80211_STA_TDLS_PEER_ACTIVE:
  3376. /* reject any changes */
  3377. return -EINVAL;
  3378. case CFG80211_STA_MESH_PEER_KERNEL:
  3379. if (params->sta_modify_mask & STATION_PARAM_APPLY_PLINK_STATE)
  3380. return -EINVAL;
  3381. break;
  3382. case CFG80211_STA_MESH_PEER_USER:
  3383. if (params->plink_action != NL80211_PLINK_ACTION_NO_ACTION)
  3384. return -EINVAL;
  3385. break;
  3386. }
  3387. return 0;
  3388. }
  3389. EXPORT_SYMBOL(cfg80211_check_station_change);
  3390. /*
  3391. * Get vlan interface making sure it is running and on the right wiphy.
  3392. */
  3393. static struct net_device *get_vlan(struct genl_info *info,
  3394. struct cfg80211_registered_device *rdev)
  3395. {
  3396. struct nlattr *vlanattr = info->attrs[NL80211_ATTR_STA_VLAN];
  3397. struct net_device *v;
  3398. int ret;
  3399. if (!vlanattr)
  3400. return NULL;
  3401. v = dev_get_by_index(genl_info_net(info), nla_get_u32(vlanattr));
  3402. if (!v)
  3403. return ERR_PTR(-ENODEV);
  3404. if (!v->ieee80211_ptr || v->ieee80211_ptr->wiphy != &rdev->wiphy) {
  3405. ret = -EINVAL;
  3406. goto error;
  3407. }
  3408. if (v->ieee80211_ptr->iftype != NL80211_IFTYPE_AP_VLAN &&
  3409. v->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  3410. v->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO) {
  3411. ret = -EINVAL;
  3412. goto error;
  3413. }
  3414. if (!netif_running(v)) {
  3415. ret = -ENETDOWN;
  3416. goto error;
  3417. }
  3418. return v;
  3419. error:
  3420. dev_put(v);
  3421. return ERR_PTR(ret);
  3422. }
  3423. static const struct nla_policy
  3424. nl80211_sta_wme_policy[NL80211_STA_WME_MAX + 1] = {
  3425. [NL80211_STA_WME_UAPSD_QUEUES] = { .type = NLA_U8 },
  3426. [NL80211_STA_WME_MAX_SP] = { .type = NLA_U8 },
  3427. };
  3428. static int nl80211_parse_sta_wme(struct genl_info *info,
  3429. struct station_parameters *params)
  3430. {
  3431. struct nlattr *tb[NL80211_STA_WME_MAX + 1];
  3432. struct nlattr *nla;
  3433. int err;
  3434. /* parse WME attributes if present */
  3435. if (!info->attrs[NL80211_ATTR_STA_WME])
  3436. return 0;
  3437. nla = info->attrs[NL80211_ATTR_STA_WME];
  3438. err = nla_parse_nested(tb, NL80211_STA_WME_MAX, nla,
  3439. nl80211_sta_wme_policy);
  3440. if (err)
  3441. return err;
  3442. if (tb[NL80211_STA_WME_UAPSD_QUEUES])
  3443. params->uapsd_queues = nla_get_u8(
  3444. tb[NL80211_STA_WME_UAPSD_QUEUES]);
  3445. if (params->uapsd_queues & ~IEEE80211_WMM_IE_STA_QOSINFO_AC_MASK)
  3446. return -EINVAL;
  3447. if (tb[NL80211_STA_WME_MAX_SP])
  3448. params->max_sp = nla_get_u8(tb[NL80211_STA_WME_MAX_SP]);
  3449. if (params->max_sp & ~IEEE80211_WMM_IE_STA_QOSINFO_SP_MASK)
  3450. return -EINVAL;
  3451. params->sta_modify_mask |= STATION_PARAM_APPLY_UAPSD;
  3452. return 0;
  3453. }
  3454. static int nl80211_parse_sta_channel_info(struct genl_info *info,
  3455. struct station_parameters *params)
  3456. {
  3457. if (info->attrs[NL80211_ATTR_STA_SUPPORTED_CHANNELS]) {
  3458. params->supported_channels =
  3459. nla_data(info->attrs[NL80211_ATTR_STA_SUPPORTED_CHANNELS]);
  3460. params->supported_channels_len =
  3461. nla_len(info->attrs[NL80211_ATTR_STA_SUPPORTED_CHANNELS]);
  3462. /*
  3463. * Need to include at least one (first channel, number of
  3464. * channels) tuple for each subband, and must have proper
  3465. * tuples for the rest of the data as well.
  3466. */
  3467. if (params->supported_channels_len < 2)
  3468. return -EINVAL;
  3469. if (params->supported_channels_len % 2)
  3470. return -EINVAL;
  3471. }
  3472. if (info->attrs[NL80211_ATTR_STA_SUPPORTED_OPER_CLASSES]) {
  3473. params->supported_oper_classes =
  3474. nla_data(info->attrs[NL80211_ATTR_STA_SUPPORTED_OPER_CLASSES]);
  3475. params->supported_oper_classes_len =
  3476. nla_len(info->attrs[NL80211_ATTR_STA_SUPPORTED_OPER_CLASSES]);
  3477. /*
  3478. * The value of the Length field of the Supported Operating
  3479. * Classes element is between 2 and 253.
  3480. */
  3481. if (params->supported_oper_classes_len < 2 ||
  3482. params->supported_oper_classes_len > 253)
  3483. return -EINVAL;
  3484. }
  3485. return 0;
  3486. }
  3487. static int nl80211_set_station_tdls(struct genl_info *info,
  3488. struct station_parameters *params)
  3489. {
  3490. int err;
  3491. /* Dummy STA entry gets updated once the peer capabilities are known */
  3492. if (info->attrs[NL80211_ATTR_PEER_AID])
  3493. params->aid = nla_get_u16(info->attrs[NL80211_ATTR_PEER_AID]);
  3494. if (info->attrs[NL80211_ATTR_HT_CAPABILITY])
  3495. params->ht_capa =
  3496. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY]);
  3497. if (info->attrs[NL80211_ATTR_VHT_CAPABILITY])
  3498. params->vht_capa =
  3499. nla_data(info->attrs[NL80211_ATTR_VHT_CAPABILITY]);
  3500. err = nl80211_parse_sta_channel_info(info, params);
  3501. if (err)
  3502. return err;
  3503. return nl80211_parse_sta_wme(info, params);
  3504. }
  3505. static int nl80211_set_station(struct sk_buff *skb, struct genl_info *info)
  3506. {
  3507. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3508. struct net_device *dev = info->user_ptr[1];
  3509. struct station_parameters params;
  3510. u8 *mac_addr;
  3511. int err;
  3512. memset(&params, 0, sizeof(params));
  3513. params.listen_interval = -1;
  3514. if (!rdev->ops->change_station)
  3515. return -EOPNOTSUPP;
  3516. if (info->attrs[NL80211_ATTR_STA_AID])
  3517. return -EINVAL;
  3518. if (!info->attrs[NL80211_ATTR_MAC])
  3519. return -EINVAL;
  3520. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3521. if (info->attrs[NL80211_ATTR_STA_SUPPORTED_RATES]) {
  3522. params.supported_rates =
  3523. nla_data(info->attrs[NL80211_ATTR_STA_SUPPORTED_RATES]);
  3524. params.supported_rates_len =
  3525. nla_len(info->attrs[NL80211_ATTR_STA_SUPPORTED_RATES]);
  3526. }
  3527. if (info->attrs[NL80211_ATTR_STA_CAPABILITY]) {
  3528. params.capability =
  3529. nla_get_u16(info->attrs[NL80211_ATTR_STA_CAPABILITY]);
  3530. params.sta_modify_mask |= STATION_PARAM_APPLY_CAPABILITY;
  3531. }
  3532. if (info->attrs[NL80211_ATTR_STA_EXT_CAPABILITY]) {
  3533. params.ext_capab =
  3534. nla_data(info->attrs[NL80211_ATTR_STA_EXT_CAPABILITY]);
  3535. params.ext_capab_len =
  3536. nla_len(info->attrs[NL80211_ATTR_STA_EXT_CAPABILITY]);
  3537. }
  3538. if (info->attrs[NL80211_ATTR_STA_LISTEN_INTERVAL])
  3539. return -EINVAL;
  3540. if (parse_station_flags(info, dev->ieee80211_ptr->iftype, &params))
  3541. return -EINVAL;
  3542. if (info->attrs[NL80211_ATTR_STA_PLINK_ACTION]) {
  3543. params.plink_action =
  3544. nla_get_u8(info->attrs[NL80211_ATTR_STA_PLINK_ACTION]);
  3545. if (params.plink_action >= NUM_NL80211_PLINK_ACTIONS)
  3546. return -EINVAL;
  3547. }
  3548. if (info->attrs[NL80211_ATTR_STA_PLINK_STATE]) {
  3549. params.plink_state =
  3550. nla_get_u8(info->attrs[NL80211_ATTR_STA_PLINK_STATE]);
  3551. if (params.plink_state >= NUM_NL80211_PLINK_STATES)
  3552. return -EINVAL;
  3553. params.sta_modify_mask |= STATION_PARAM_APPLY_PLINK_STATE;
  3554. }
  3555. if (info->attrs[NL80211_ATTR_LOCAL_MESH_POWER_MODE]) {
  3556. enum nl80211_mesh_power_mode pm = nla_get_u32(
  3557. info->attrs[NL80211_ATTR_LOCAL_MESH_POWER_MODE]);
  3558. if (pm <= NL80211_MESH_POWER_UNKNOWN ||
  3559. pm > NL80211_MESH_POWER_MAX)
  3560. return -EINVAL;
  3561. params.local_pm = pm;
  3562. }
  3563. /* Include parameters for TDLS peer (will check later) */
  3564. err = nl80211_set_station_tdls(info, &params);
  3565. if (err)
  3566. return err;
  3567. params.vlan = get_vlan(info, rdev);
  3568. if (IS_ERR(params.vlan))
  3569. return PTR_ERR(params.vlan);
  3570. switch (dev->ieee80211_ptr->iftype) {
  3571. case NL80211_IFTYPE_AP:
  3572. case NL80211_IFTYPE_AP_VLAN:
  3573. case NL80211_IFTYPE_P2P_GO:
  3574. case NL80211_IFTYPE_P2P_CLIENT:
  3575. case NL80211_IFTYPE_STATION:
  3576. case NL80211_IFTYPE_ADHOC:
  3577. case NL80211_IFTYPE_MESH_POINT:
  3578. break;
  3579. default:
  3580. err = -EOPNOTSUPP;
  3581. goto out_put_vlan;
  3582. }
  3583. /* driver will call cfg80211_check_station_change() */
  3584. err = rdev_change_station(rdev, dev, mac_addr, &params);
  3585. out_put_vlan:
  3586. if (params.vlan)
  3587. dev_put(params.vlan);
  3588. return err;
  3589. }
  3590. static int nl80211_new_station(struct sk_buff *skb, struct genl_info *info)
  3591. {
  3592. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3593. int err;
  3594. struct net_device *dev = info->user_ptr[1];
  3595. struct station_parameters params;
  3596. u8 *mac_addr = NULL;
  3597. memset(&params, 0, sizeof(params));
  3598. if (!rdev->ops->add_station)
  3599. return -EOPNOTSUPP;
  3600. if (!info->attrs[NL80211_ATTR_MAC])
  3601. return -EINVAL;
  3602. if (!info->attrs[NL80211_ATTR_STA_LISTEN_INTERVAL])
  3603. return -EINVAL;
  3604. if (!info->attrs[NL80211_ATTR_STA_SUPPORTED_RATES])
  3605. return -EINVAL;
  3606. if (!info->attrs[NL80211_ATTR_STA_AID] &&
  3607. !info->attrs[NL80211_ATTR_PEER_AID])
  3608. return -EINVAL;
  3609. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3610. params.supported_rates =
  3611. nla_data(info->attrs[NL80211_ATTR_STA_SUPPORTED_RATES]);
  3612. params.supported_rates_len =
  3613. nla_len(info->attrs[NL80211_ATTR_STA_SUPPORTED_RATES]);
  3614. params.listen_interval =
  3615. nla_get_u16(info->attrs[NL80211_ATTR_STA_LISTEN_INTERVAL]);
  3616. if (info->attrs[NL80211_ATTR_PEER_AID])
  3617. params.aid = nla_get_u16(info->attrs[NL80211_ATTR_PEER_AID]);
  3618. else
  3619. params.aid = nla_get_u16(info->attrs[NL80211_ATTR_STA_AID]);
  3620. if (!params.aid || params.aid > IEEE80211_MAX_AID)
  3621. return -EINVAL;
  3622. if (info->attrs[NL80211_ATTR_STA_CAPABILITY]) {
  3623. params.capability =
  3624. nla_get_u16(info->attrs[NL80211_ATTR_STA_CAPABILITY]);
  3625. params.sta_modify_mask |= STATION_PARAM_APPLY_CAPABILITY;
  3626. }
  3627. if (info->attrs[NL80211_ATTR_STA_EXT_CAPABILITY]) {
  3628. params.ext_capab =
  3629. nla_data(info->attrs[NL80211_ATTR_STA_EXT_CAPABILITY]);
  3630. params.ext_capab_len =
  3631. nla_len(info->attrs[NL80211_ATTR_STA_EXT_CAPABILITY]);
  3632. }
  3633. if (info->attrs[NL80211_ATTR_HT_CAPABILITY])
  3634. params.ht_capa =
  3635. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY]);
  3636. if (info->attrs[NL80211_ATTR_VHT_CAPABILITY])
  3637. params.vht_capa =
  3638. nla_data(info->attrs[NL80211_ATTR_VHT_CAPABILITY]);
  3639. if (info->attrs[NL80211_ATTR_OPMODE_NOTIF]) {
  3640. params.opmode_notif_used = true;
  3641. params.opmode_notif =
  3642. nla_get_u8(info->attrs[NL80211_ATTR_OPMODE_NOTIF]);
  3643. }
  3644. if (info->attrs[NL80211_ATTR_STA_PLINK_ACTION]) {
  3645. params.plink_action =
  3646. nla_get_u8(info->attrs[NL80211_ATTR_STA_PLINK_ACTION]);
  3647. if (params.plink_action >= NUM_NL80211_PLINK_ACTIONS)
  3648. return -EINVAL;
  3649. }
  3650. err = nl80211_parse_sta_channel_info(info, &params);
  3651. if (err)
  3652. return err;
  3653. err = nl80211_parse_sta_wme(info, &params);
  3654. if (err)
  3655. return err;
  3656. if (parse_station_flags(info, dev->ieee80211_ptr->iftype, &params))
  3657. return -EINVAL;
  3658. /* HT/VHT requires QoS, but if we don't have that just ignore HT/VHT
  3659. * as userspace might just pass through the capabilities from the IEs
  3660. * directly, rather than enforcing this restriction and returning an
  3661. * error in this case.
  3662. */
  3663. if (!(params.sta_flags_set & BIT(NL80211_STA_FLAG_WME))) {
  3664. params.ht_capa = NULL;
  3665. params.vht_capa = NULL;
  3666. }
  3667. /* When you run into this, adjust the code below for the new flag */
  3668. BUILD_BUG_ON(NL80211_STA_FLAG_MAX != 7);
  3669. switch (dev->ieee80211_ptr->iftype) {
  3670. case NL80211_IFTYPE_AP:
  3671. case NL80211_IFTYPE_AP_VLAN:
  3672. case NL80211_IFTYPE_P2P_GO:
  3673. /* ignore WME attributes if iface/sta is not capable */
  3674. if (!(rdev->wiphy.flags & WIPHY_FLAG_AP_UAPSD) ||
  3675. !(params.sta_flags_set & BIT(NL80211_STA_FLAG_WME)))
  3676. params.sta_modify_mask &= ~STATION_PARAM_APPLY_UAPSD;
  3677. /* TDLS peers cannot be added */
  3678. if ((params.sta_flags_set & BIT(NL80211_STA_FLAG_TDLS_PEER)) ||
  3679. info->attrs[NL80211_ATTR_PEER_AID])
  3680. return -EINVAL;
  3681. /* but don't bother the driver with it */
  3682. params.sta_flags_mask &= ~BIT(NL80211_STA_FLAG_TDLS_PEER);
  3683. /* allow authenticated/associated only if driver handles it */
  3684. if (!(rdev->wiphy.features &
  3685. NL80211_FEATURE_FULL_AP_CLIENT_STATE) &&
  3686. params.sta_flags_mask &
  3687. (BIT(NL80211_STA_FLAG_AUTHENTICATED) |
  3688. BIT(NL80211_STA_FLAG_ASSOCIATED)))
  3689. return -EINVAL;
  3690. /* must be last in here for error handling */
  3691. params.vlan = get_vlan(info, rdev);
  3692. if (IS_ERR(params.vlan))
  3693. return PTR_ERR(params.vlan);
  3694. break;
  3695. case NL80211_IFTYPE_MESH_POINT:
  3696. /* ignore uAPSD data */
  3697. params.sta_modify_mask &= ~STATION_PARAM_APPLY_UAPSD;
  3698. /* associated is disallowed */
  3699. if (params.sta_flags_mask & BIT(NL80211_STA_FLAG_ASSOCIATED))
  3700. return -EINVAL;
  3701. /* TDLS peers cannot be added */
  3702. if ((params.sta_flags_set & BIT(NL80211_STA_FLAG_TDLS_PEER)) ||
  3703. info->attrs[NL80211_ATTR_PEER_AID])
  3704. return -EINVAL;
  3705. break;
  3706. case NL80211_IFTYPE_STATION:
  3707. case NL80211_IFTYPE_P2P_CLIENT:
  3708. /* ignore uAPSD data */
  3709. params.sta_modify_mask &= ~STATION_PARAM_APPLY_UAPSD;
  3710. /* these are disallowed */
  3711. if (params.sta_flags_mask &
  3712. (BIT(NL80211_STA_FLAG_ASSOCIATED) |
  3713. BIT(NL80211_STA_FLAG_AUTHENTICATED)))
  3714. return -EINVAL;
  3715. /* Only TDLS peers can be added */
  3716. if (!(params.sta_flags_set & BIT(NL80211_STA_FLAG_TDLS_PEER)))
  3717. return -EINVAL;
  3718. /* Can only add if TDLS ... */
  3719. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_TDLS))
  3720. return -EOPNOTSUPP;
  3721. /* ... with external setup is supported */
  3722. if (!(rdev->wiphy.flags & WIPHY_FLAG_TDLS_EXTERNAL_SETUP))
  3723. return -EOPNOTSUPP;
  3724. /*
  3725. * Older wpa_supplicant versions always mark the TDLS peer
  3726. * as authorized, but it shouldn't yet be.
  3727. */
  3728. params.sta_flags_mask &= ~BIT(NL80211_STA_FLAG_AUTHORIZED);
  3729. break;
  3730. default:
  3731. return -EOPNOTSUPP;
  3732. }
  3733. /* be aware of params.vlan when changing code here */
  3734. err = rdev_add_station(rdev, dev, mac_addr, &params);
  3735. if (params.vlan)
  3736. dev_put(params.vlan);
  3737. return err;
  3738. }
  3739. static int nl80211_del_station(struct sk_buff *skb, struct genl_info *info)
  3740. {
  3741. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3742. struct net_device *dev = info->user_ptr[1];
  3743. u8 *mac_addr = NULL;
  3744. if (info->attrs[NL80211_ATTR_MAC])
  3745. mac_addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3746. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  3747. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP_VLAN &&
  3748. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_MESH_POINT &&
  3749. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  3750. return -EINVAL;
  3751. if (!rdev->ops->del_station)
  3752. return -EOPNOTSUPP;
  3753. return rdev_del_station(rdev, dev, mac_addr);
  3754. }
  3755. static int nl80211_send_mpath(struct sk_buff *msg, u32 portid, u32 seq,
  3756. int flags, struct net_device *dev,
  3757. u8 *dst, u8 *next_hop,
  3758. struct mpath_info *pinfo)
  3759. {
  3760. void *hdr;
  3761. struct nlattr *pinfoattr;
  3762. hdr = nl80211hdr_put(msg, portid, seq, flags, NL80211_CMD_NEW_STATION);
  3763. if (!hdr)
  3764. return -1;
  3765. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  3766. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, dst) ||
  3767. nla_put(msg, NL80211_ATTR_MPATH_NEXT_HOP, ETH_ALEN, next_hop) ||
  3768. nla_put_u32(msg, NL80211_ATTR_GENERATION, pinfo->generation))
  3769. goto nla_put_failure;
  3770. pinfoattr = nla_nest_start(msg, NL80211_ATTR_MPATH_INFO);
  3771. if (!pinfoattr)
  3772. goto nla_put_failure;
  3773. if ((pinfo->filled & MPATH_INFO_FRAME_QLEN) &&
  3774. nla_put_u32(msg, NL80211_MPATH_INFO_FRAME_QLEN,
  3775. pinfo->frame_qlen))
  3776. goto nla_put_failure;
  3777. if (((pinfo->filled & MPATH_INFO_SN) &&
  3778. nla_put_u32(msg, NL80211_MPATH_INFO_SN, pinfo->sn)) ||
  3779. ((pinfo->filled & MPATH_INFO_METRIC) &&
  3780. nla_put_u32(msg, NL80211_MPATH_INFO_METRIC,
  3781. pinfo->metric)) ||
  3782. ((pinfo->filled & MPATH_INFO_EXPTIME) &&
  3783. nla_put_u32(msg, NL80211_MPATH_INFO_EXPTIME,
  3784. pinfo->exptime)) ||
  3785. ((pinfo->filled & MPATH_INFO_FLAGS) &&
  3786. nla_put_u8(msg, NL80211_MPATH_INFO_FLAGS,
  3787. pinfo->flags)) ||
  3788. ((pinfo->filled & MPATH_INFO_DISCOVERY_TIMEOUT) &&
  3789. nla_put_u32(msg, NL80211_MPATH_INFO_DISCOVERY_TIMEOUT,
  3790. pinfo->discovery_timeout)) ||
  3791. ((pinfo->filled & MPATH_INFO_DISCOVERY_RETRIES) &&
  3792. nla_put_u8(msg, NL80211_MPATH_INFO_DISCOVERY_RETRIES,
  3793. pinfo->discovery_retries)))
  3794. goto nla_put_failure;
  3795. nla_nest_end(msg, pinfoattr);
  3796. return genlmsg_end(msg, hdr);
  3797. nla_put_failure:
  3798. genlmsg_cancel(msg, hdr);
  3799. return -EMSGSIZE;
  3800. }
  3801. static int nl80211_dump_mpath(struct sk_buff *skb,
  3802. struct netlink_callback *cb)
  3803. {
  3804. struct mpath_info pinfo;
  3805. struct cfg80211_registered_device *rdev;
  3806. struct wireless_dev *wdev;
  3807. u8 dst[ETH_ALEN];
  3808. u8 next_hop[ETH_ALEN];
  3809. int path_idx = cb->args[2];
  3810. int err;
  3811. err = nl80211_prepare_wdev_dump(skb, cb, &rdev, &wdev);
  3812. if (err)
  3813. return err;
  3814. if (!rdev->ops->dump_mpath) {
  3815. err = -EOPNOTSUPP;
  3816. goto out_err;
  3817. }
  3818. if (wdev->iftype != NL80211_IFTYPE_MESH_POINT) {
  3819. err = -EOPNOTSUPP;
  3820. goto out_err;
  3821. }
  3822. while (1) {
  3823. err = rdev_dump_mpath(rdev, wdev->netdev, path_idx, dst,
  3824. next_hop, &pinfo);
  3825. if (err == -ENOENT)
  3826. break;
  3827. if (err)
  3828. goto out_err;
  3829. if (nl80211_send_mpath(skb, NETLINK_CB(cb->skb).portid,
  3830. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  3831. wdev->netdev, dst, next_hop,
  3832. &pinfo) < 0)
  3833. goto out;
  3834. path_idx++;
  3835. }
  3836. out:
  3837. cb->args[2] = path_idx;
  3838. err = skb->len;
  3839. out_err:
  3840. nl80211_finish_wdev_dump(rdev);
  3841. return err;
  3842. }
  3843. static int nl80211_get_mpath(struct sk_buff *skb, struct genl_info *info)
  3844. {
  3845. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3846. int err;
  3847. struct net_device *dev = info->user_ptr[1];
  3848. struct mpath_info pinfo;
  3849. struct sk_buff *msg;
  3850. u8 *dst = NULL;
  3851. u8 next_hop[ETH_ALEN];
  3852. memset(&pinfo, 0, sizeof(pinfo));
  3853. if (!info->attrs[NL80211_ATTR_MAC])
  3854. return -EINVAL;
  3855. dst = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3856. if (!rdev->ops->get_mpath)
  3857. return -EOPNOTSUPP;
  3858. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_MESH_POINT)
  3859. return -EOPNOTSUPP;
  3860. err = rdev_get_mpath(rdev, dev, dst, next_hop, &pinfo);
  3861. if (err)
  3862. return err;
  3863. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  3864. if (!msg)
  3865. return -ENOMEM;
  3866. if (nl80211_send_mpath(msg, info->snd_portid, info->snd_seq, 0,
  3867. dev, dst, next_hop, &pinfo) < 0) {
  3868. nlmsg_free(msg);
  3869. return -ENOBUFS;
  3870. }
  3871. return genlmsg_reply(msg, info);
  3872. }
  3873. static int nl80211_set_mpath(struct sk_buff *skb, struct genl_info *info)
  3874. {
  3875. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3876. struct net_device *dev = info->user_ptr[1];
  3877. u8 *dst = NULL;
  3878. u8 *next_hop = NULL;
  3879. if (!info->attrs[NL80211_ATTR_MAC])
  3880. return -EINVAL;
  3881. if (!info->attrs[NL80211_ATTR_MPATH_NEXT_HOP])
  3882. return -EINVAL;
  3883. dst = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3884. next_hop = nla_data(info->attrs[NL80211_ATTR_MPATH_NEXT_HOP]);
  3885. if (!rdev->ops->change_mpath)
  3886. return -EOPNOTSUPP;
  3887. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_MESH_POINT)
  3888. return -EOPNOTSUPP;
  3889. return rdev_change_mpath(rdev, dev, dst, next_hop);
  3890. }
  3891. static int nl80211_new_mpath(struct sk_buff *skb, struct genl_info *info)
  3892. {
  3893. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3894. struct net_device *dev = info->user_ptr[1];
  3895. u8 *dst = NULL;
  3896. u8 *next_hop = NULL;
  3897. if (!info->attrs[NL80211_ATTR_MAC])
  3898. return -EINVAL;
  3899. if (!info->attrs[NL80211_ATTR_MPATH_NEXT_HOP])
  3900. return -EINVAL;
  3901. dst = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3902. next_hop = nla_data(info->attrs[NL80211_ATTR_MPATH_NEXT_HOP]);
  3903. if (!rdev->ops->add_mpath)
  3904. return -EOPNOTSUPP;
  3905. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_MESH_POINT)
  3906. return -EOPNOTSUPP;
  3907. return rdev_add_mpath(rdev, dev, dst, next_hop);
  3908. }
  3909. static int nl80211_del_mpath(struct sk_buff *skb, struct genl_info *info)
  3910. {
  3911. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3912. struct net_device *dev = info->user_ptr[1];
  3913. u8 *dst = NULL;
  3914. if (info->attrs[NL80211_ATTR_MAC])
  3915. dst = nla_data(info->attrs[NL80211_ATTR_MAC]);
  3916. if (!rdev->ops->del_mpath)
  3917. return -EOPNOTSUPP;
  3918. return rdev_del_mpath(rdev, dev, dst);
  3919. }
  3920. static int nl80211_set_bss(struct sk_buff *skb, struct genl_info *info)
  3921. {
  3922. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  3923. struct net_device *dev = info->user_ptr[1];
  3924. struct wireless_dev *wdev = dev->ieee80211_ptr;
  3925. struct bss_parameters params;
  3926. int err;
  3927. memset(&params, 0, sizeof(params));
  3928. /* default to not changing parameters */
  3929. params.use_cts_prot = -1;
  3930. params.use_short_preamble = -1;
  3931. params.use_short_slot_time = -1;
  3932. params.ap_isolate = -1;
  3933. params.ht_opmode = -1;
  3934. params.p2p_ctwindow = -1;
  3935. params.p2p_opp_ps = -1;
  3936. if (info->attrs[NL80211_ATTR_BSS_CTS_PROT])
  3937. params.use_cts_prot =
  3938. nla_get_u8(info->attrs[NL80211_ATTR_BSS_CTS_PROT]);
  3939. if (info->attrs[NL80211_ATTR_BSS_SHORT_PREAMBLE])
  3940. params.use_short_preamble =
  3941. nla_get_u8(info->attrs[NL80211_ATTR_BSS_SHORT_PREAMBLE]);
  3942. if (info->attrs[NL80211_ATTR_BSS_SHORT_SLOT_TIME])
  3943. params.use_short_slot_time =
  3944. nla_get_u8(info->attrs[NL80211_ATTR_BSS_SHORT_SLOT_TIME]);
  3945. if (info->attrs[NL80211_ATTR_BSS_BASIC_RATES]) {
  3946. params.basic_rates =
  3947. nla_data(info->attrs[NL80211_ATTR_BSS_BASIC_RATES]);
  3948. params.basic_rates_len =
  3949. nla_len(info->attrs[NL80211_ATTR_BSS_BASIC_RATES]);
  3950. }
  3951. if (info->attrs[NL80211_ATTR_AP_ISOLATE])
  3952. params.ap_isolate = !!nla_get_u8(info->attrs[NL80211_ATTR_AP_ISOLATE]);
  3953. if (info->attrs[NL80211_ATTR_BSS_HT_OPMODE])
  3954. params.ht_opmode =
  3955. nla_get_u16(info->attrs[NL80211_ATTR_BSS_HT_OPMODE]);
  3956. if (info->attrs[NL80211_ATTR_P2P_CTWINDOW]) {
  3957. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  3958. return -EINVAL;
  3959. params.p2p_ctwindow =
  3960. nla_get_s8(info->attrs[NL80211_ATTR_P2P_CTWINDOW]);
  3961. if (params.p2p_ctwindow < 0)
  3962. return -EINVAL;
  3963. if (params.p2p_ctwindow != 0 &&
  3964. !(rdev->wiphy.features & NL80211_FEATURE_P2P_GO_CTWIN))
  3965. return -EINVAL;
  3966. }
  3967. if (info->attrs[NL80211_ATTR_P2P_OPPPS]) {
  3968. u8 tmp;
  3969. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  3970. return -EINVAL;
  3971. tmp = nla_get_u8(info->attrs[NL80211_ATTR_P2P_OPPPS]);
  3972. if (tmp > 1)
  3973. return -EINVAL;
  3974. params.p2p_opp_ps = tmp;
  3975. if (params.p2p_opp_ps &&
  3976. !(rdev->wiphy.features & NL80211_FEATURE_P2P_GO_OPPPS))
  3977. return -EINVAL;
  3978. }
  3979. if (!rdev->ops->change_bss)
  3980. return -EOPNOTSUPP;
  3981. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_AP &&
  3982. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_GO)
  3983. return -EOPNOTSUPP;
  3984. wdev_lock(wdev);
  3985. err = rdev_change_bss(rdev, dev, &params);
  3986. wdev_unlock(wdev);
  3987. return err;
  3988. }
  3989. static const struct nla_policy reg_rule_policy[NL80211_REG_RULE_ATTR_MAX + 1] = {
  3990. [NL80211_ATTR_REG_RULE_FLAGS] = { .type = NLA_U32 },
  3991. [NL80211_ATTR_FREQ_RANGE_START] = { .type = NLA_U32 },
  3992. [NL80211_ATTR_FREQ_RANGE_END] = { .type = NLA_U32 },
  3993. [NL80211_ATTR_FREQ_RANGE_MAX_BW] = { .type = NLA_U32 },
  3994. [NL80211_ATTR_POWER_RULE_MAX_ANT_GAIN] = { .type = NLA_U32 },
  3995. [NL80211_ATTR_POWER_RULE_MAX_EIRP] = { .type = NLA_U32 },
  3996. [NL80211_ATTR_DFS_CAC_TIME] = { .type = NLA_U32 },
  3997. };
  3998. static int parse_reg_rule(struct nlattr *tb[],
  3999. struct ieee80211_reg_rule *reg_rule)
  4000. {
  4001. struct ieee80211_freq_range *freq_range = &reg_rule->freq_range;
  4002. struct ieee80211_power_rule *power_rule = &reg_rule->power_rule;
  4003. if (!tb[NL80211_ATTR_REG_RULE_FLAGS])
  4004. return -EINVAL;
  4005. if (!tb[NL80211_ATTR_FREQ_RANGE_START])
  4006. return -EINVAL;
  4007. if (!tb[NL80211_ATTR_FREQ_RANGE_END])
  4008. return -EINVAL;
  4009. if (!tb[NL80211_ATTR_FREQ_RANGE_MAX_BW])
  4010. return -EINVAL;
  4011. if (!tb[NL80211_ATTR_POWER_RULE_MAX_EIRP])
  4012. return -EINVAL;
  4013. reg_rule->flags = nla_get_u32(tb[NL80211_ATTR_REG_RULE_FLAGS]);
  4014. freq_range->start_freq_khz =
  4015. nla_get_u32(tb[NL80211_ATTR_FREQ_RANGE_START]);
  4016. freq_range->end_freq_khz =
  4017. nla_get_u32(tb[NL80211_ATTR_FREQ_RANGE_END]);
  4018. freq_range->max_bandwidth_khz =
  4019. nla_get_u32(tb[NL80211_ATTR_FREQ_RANGE_MAX_BW]);
  4020. power_rule->max_eirp =
  4021. nla_get_u32(tb[NL80211_ATTR_POWER_RULE_MAX_EIRP]);
  4022. if (tb[NL80211_ATTR_POWER_RULE_MAX_ANT_GAIN])
  4023. power_rule->max_antenna_gain =
  4024. nla_get_u32(tb[NL80211_ATTR_POWER_RULE_MAX_ANT_GAIN]);
  4025. if (tb[NL80211_ATTR_DFS_CAC_TIME])
  4026. reg_rule->dfs_cac_ms =
  4027. nla_get_u32(tb[NL80211_ATTR_DFS_CAC_TIME]);
  4028. return 0;
  4029. }
  4030. static int nl80211_req_set_reg(struct sk_buff *skb, struct genl_info *info)
  4031. {
  4032. char *data = NULL;
  4033. enum nl80211_user_reg_hint_type user_reg_hint_type;
  4034. /*
  4035. * You should only get this when cfg80211 hasn't yet initialized
  4036. * completely when built-in to the kernel right between the time
  4037. * window between nl80211_init() and regulatory_init(), if that is
  4038. * even possible.
  4039. */
  4040. if (unlikely(!rcu_access_pointer(cfg80211_regdomain)))
  4041. return -EINPROGRESS;
  4042. if (info->attrs[NL80211_ATTR_USER_REG_HINT_TYPE])
  4043. user_reg_hint_type =
  4044. nla_get_u32(info->attrs[NL80211_ATTR_USER_REG_HINT_TYPE]);
  4045. else
  4046. user_reg_hint_type = NL80211_USER_REG_HINT_USER;
  4047. switch (user_reg_hint_type) {
  4048. case NL80211_USER_REG_HINT_USER:
  4049. case NL80211_USER_REG_HINT_CELL_BASE:
  4050. if (!info->attrs[NL80211_ATTR_REG_ALPHA2])
  4051. return -EINVAL;
  4052. data = nla_data(info->attrs[NL80211_ATTR_REG_ALPHA2]);
  4053. return regulatory_hint_user(data, user_reg_hint_type);
  4054. case NL80211_USER_REG_HINT_INDOOR:
  4055. return regulatory_hint_indoor_user();
  4056. default:
  4057. return -EINVAL;
  4058. }
  4059. }
  4060. static int nl80211_get_mesh_config(struct sk_buff *skb,
  4061. struct genl_info *info)
  4062. {
  4063. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4064. struct net_device *dev = info->user_ptr[1];
  4065. struct wireless_dev *wdev = dev->ieee80211_ptr;
  4066. struct mesh_config cur_params;
  4067. int err = 0;
  4068. void *hdr;
  4069. struct nlattr *pinfoattr;
  4070. struct sk_buff *msg;
  4071. if (wdev->iftype != NL80211_IFTYPE_MESH_POINT)
  4072. return -EOPNOTSUPP;
  4073. if (!rdev->ops->get_mesh_config)
  4074. return -EOPNOTSUPP;
  4075. wdev_lock(wdev);
  4076. /* If not connected, get default parameters */
  4077. if (!wdev->mesh_id_len)
  4078. memcpy(&cur_params, &default_mesh_config, sizeof(cur_params));
  4079. else
  4080. err = rdev_get_mesh_config(rdev, dev, &cur_params);
  4081. wdev_unlock(wdev);
  4082. if (err)
  4083. return err;
  4084. /* Draw up a netlink message to send back */
  4085. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  4086. if (!msg)
  4087. return -ENOMEM;
  4088. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  4089. NL80211_CMD_GET_MESH_CONFIG);
  4090. if (!hdr)
  4091. goto out;
  4092. pinfoattr = nla_nest_start(msg, NL80211_ATTR_MESH_CONFIG);
  4093. if (!pinfoattr)
  4094. goto nla_put_failure;
  4095. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  4096. nla_put_u16(msg, NL80211_MESHCONF_RETRY_TIMEOUT,
  4097. cur_params.dot11MeshRetryTimeout) ||
  4098. nla_put_u16(msg, NL80211_MESHCONF_CONFIRM_TIMEOUT,
  4099. cur_params.dot11MeshConfirmTimeout) ||
  4100. nla_put_u16(msg, NL80211_MESHCONF_HOLDING_TIMEOUT,
  4101. cur_params.dot11MeshHoldingTimeout) ||
  4102. nla_put_u16(msg, NL80211_MESHCONF_MAX_PEER_LINKS,
  4103. cur_params.dot11MeshMaxPeerLinks) ||
  4104. nla_put_u8(msg, NL80211_MESHCONF_MAX_RETRIES,
  4105. cur_params.dot11MeshMaxRetries) ||
  4106. nla_put_u8(msg, NL80211_MESHCONF_TTL,
  4107. cur_params.dot11MeshTTL) ||
  4108. nla_put_u8(msg, NL80211_MESHCONF_ELEMENT_TTL,
  4109. cur_params.element_ttl) ||
  4110. nla_put_u8(msg, NL80211_MESHCONF_AUTO_OPEN_PLINKS,
  4111. cur_params.auto_open_plinks) ||
  4112. nla_put_u32(msg, NL80211_MESHCONF_SYNC_OFFSET_MAX_NEIGHBOR,
  4113. cur_params.dot11MeshNbrOffsetMaxNeighbor) ||
  4114. nla_put_u8(msg, NL80211_MESHCONF_HWMP_MAX_PREQ_RETRIES,
  4115. cur_params.dot11MeshHWMPmaxPREQretries) ||
  4116. nla_put_u32(msg, NL80211_MESHCONF_PATH_REFRESH_TIME,
  4117. cur_params.path_refresh_time) ||
  4118. nla_put_u16(msg, NL80211_MESHCONF_MIN_DISCOVERY_TIMEOUT,
  4119. cur_params.min_discovery_timeout) ||
  4120. nla_put_u32(msg, NL80211_MESHCONF_HWMP_ACTIVE_PATH_TIMEOUT,
  4121. cur_params.dot11MeshHWMPactivePathTimeout) ||
  4122. nla_put_u16(msg, NL80211_MESHCONF_HWMP_PREQ_MIN_INTERVAL,
  4123. cur_params.dot11MeshHWMPpreqMinInterval) ||
  4124. nla_put_u16(msg, NL80211_MESHCONF_HWMP_PERR_MIN_INTERVAL,
  4125. cur_params.dot11MeshHWMPperrMinInterval) ||
  4126. nla_put_u16(msg, NL80211_MESHCONF_HWMP_NET_DIAM_TRVS_TIME,
  4127. cur_params.dot11MeshHWMPnetDiameterTraversalTime) ||
  4128. nla_put_u8(msg, NL80211_MESHCONF_HWMP_ROOTMODE,
  4129. cur_params.dot11MeshHWMPRootMode) ||
  4130. nla_put_u16(msg, NL80211_MESHCONF_HWMP_RANN_INTERVAL,
  4131. cur_params.dot11MeshHWMPRannInterval) ||
  4132. nla_put_u8(msg, NL80211_MESHCONF_GATE_ANNOUNCEMENTS,
  4133. cur_params.dot11MeshGateAnnouncementProtocol) ||
  4134. nla_put_u8(msg, NL80211_MESHCONF_FORWARDING,
  4135. cur_params.dot11MeshForwarding) ||
  4136. nla_put_u32(msg, NL80211_MESHCONF_RSSI_THRESHOLD,
  4137. cur_params.rssi_threshold) ||
  4138. nla_put_u32(msg, NL80211_MESHCONF_HT_OPMODE,
  4139. cur_params.ht_opmode) ||
  4140. nla_put_u32(msg, NL80211_MESHCONF_HWMP_PATH_TO_ROOT_TIMEOUT,
  4141. cur_params.dot11MeshHWMPactivePathToRootTimeout) ||
  4142. nla_put_u16(msg, NL80211_MESHCONF_HWMP_ROOT_INTERVAL,
  4143. cur_params.dot11MeshHWMProotInterval) ||
  4144. nla_put_u16(msg, NL80211_MESHCONF_HWMP_CONFIRMATION_INTERVAL,
  4145. cur_params.dot11MeshHWMPconfirmationInterval) ||
  4146. nla_put_u32(msg, NL80211_MESHCONF_POWER_MODE,
  4147. cur_params.power_mode) ||
  4148. nla_put_u16(msg, NL80211_MESHCONF_AWAKE_WINDOW,
  4149. cur_params.dot11MeshAwakeWindowDuration) ||
  4150. nla_put_u32(msg, NL80211_MESHCONF_PLINK_TIMEOUT,
  4151. cur_params.plink_timeout))
  4152. goto nla_put_failure;
  4153. nla_nest_end(msg, pinfoattr);
  4154. genlmsg_end(msg, hdr);
  4155. return genlmsg_reply(msg, info);
  4156. nla_put_failure:
  4157. genlmsg_cancel(msg, hdr);
  4158. out:
  4159. nlmsg_free(msg);
  4160. return -ENOBUFS;
  4161. }
  4162. static const struct nla_policy nl80211_meshconf_params_policy[NL80211_MESHCONF_ATTR_MAX+1] = {
  4163. [NL80211_MESHCONF_RETRY_TIMEOUT] = { .type = NLA_U16 },
  4164. [NL80211_MESHCONF_CONFIRM_TIMEOUT] = { .type = NLA_U16 },
  4165. [NL80211_MESHCONF_HOLDING_TIMEOUT] = { .type = NLA_U16 },
  4166. [NL80211_MESHCONF_MAX_PEER_LINKS] = { .type = NLA_U16 },
  4167. [NL80211_MESHCONF_MAX_RETRIES] = { .type = NLA_U8 },
  4168. [NL80211_MESHCONF_TTL] = { .type = NLA_U8 },
  4169. [NL80211_MESHCONF_ELEMENT_TTL] = { .type = NLA_U8 },
  4170. [NL80211_MESHCONF_AUTO_OPEN_PLINKS] = { .type = NLA_U8 },
  4171. [NL80211_MESHCONF_SYNC_OFFSET_MAX_NEIGHBOR] = { .type = NLA_U32 },
  4172. [NL80211_MESHCONF_HWMP_MAX_PREQ_RETRIES] = { .type = NLA_U8 },
  4173. [NL80211_MESHCONF_PATH_REFRESH_TIME] = { .type = NLA_U32 },
  4174. [NL80211_MESHCONF_MIN_DISCOVERY_TIMEOUT] = { .type = NLA_U16 },
  4175. [NL80211_MESHCONF_HWMP_ACTIVE_PATH_TIMEOUT] = { .type = NLA_U32 },
  4176. [NL80211_MESHCONF_HWMP_PREQ_MIN_INTERVAL] = { .type = NLA_U16 },
  4177. [NL80211_MESHCONF_HWMP_PERR_MIN_INTERVAL] = { .type = NLA_U16 },
  4178. [NL80211_MESHCONF_HWMP_NET_DIAM_TRVS_TIME] = { .type = NLA_U16 },
  4179. [NL80211_MESHCONF_HWMP_ROOTMODE] = { .type = NLA_U8 },
  4180. [NL80211_MESHCONF_HWMP_RANN_INTERVAL] = { .type = NLA_U16 },
  4181. [NL80211_MESHCONF_GATE_ANNOUNCEMENTS] = { .type = NLA_U8 },
  4182. [NL80211_MESHCONF_FORWARDING] = { .type = NLA_U8 },
  4183. [NL80211_MESHCONF_RSSI_THRESHOLD] = { .type = NLA_U32 },
  4184. [NL80211_MESHCONF_HT_OPMODE] = { .type = NLA_U16 },
  4185. [NL80211_MESHCONF_HWMP_PATH_TO_ROOT_TIMEOUT] = { .type = NLA_U32 },
  4186. [NL80211_MESHCONF_HWMP_ROOT_INTERVAL] = { .type = NLA_U16 },
  4187. [NL80211_MESHCONF_HWMP_CONFIRMATION_INTERVAL] = { .type = NLA_U16 },
  4188. [NL80211_MESHCONF_POWER_MODE] = { .type = NLA_U32 },
  4189. [NL80211_MESHCONF_AWAKE_WINDOW] = { .type = NLA_U16 },
  4190. [NL80211_MESHCONF_PLINK_TIMEOUT] = { .type = NLA_U32 },
  4191. };
  4192. static const struct nla_policy
  4193. nl80211_mesh_setup_params_policy[NL80211_MESH_SETUP_ATTR_MAX+1] = {
  4194. [NL80211_MESH_SETUP_ENABLE_VENDOR_SYNC] = { .type = NLA_U8 },
  4195. [NL80211_MESH_SETUP_ENABLE_VENDOR_PATH_SEL] = { .type = NLA_U8 },
  4196. [NL80211_MESH_SETUP_ENABLE_VENDOR_METRIC] = { .type = NLA_U8 },
  4197. [NL80211_MESH_SETUP_USERSPACE_AUTH] = { .type = NLA_FLAG },
  4198. [NL80211_MESH_SETUP_AUTH_PROTOCOL] = { .type = NLA_U8 },
  4199. [NL80211_MESH_SETUP_USERSPACE_MPM] = { .type = NLA_FLAG },
  4200. [NL80211_MESH_SETUP_IE] = { .type = NLA_BINARY,
  4201. .len = IEEE80211_MAX_DATA_LEN },
  4202. [NL80211_MESH_SETUP_USERSPACE_AMPE] = { .type = NLA_FLAG },
  4203. };
  4204. static int nl80211_parse_mesh_config(struct genl_info *info,
  4205. struct mesh_config *cfg,
  4206. u32 *mask_out)
  4207. {
  4208. struct nlattr *tb[NL80211_MESHCONF_ATTR_MAX + 1];
  4209. u32 mask = 0;
  4210. #define FILL_IN_MESH_PARAM_IF_SET(tb, cfg, param, min, max, mask, attr, fn) \
  4211. do { \
  4212. if (tb[attr]) { \
  4213. if (fn(tb[attr]) < min || fn(tb[attr]) > max) \
  4214. return -EINVAL; \
  4215. cfg->param = fn(tb[attr]); \
  4216. mask |= (1 << (attr - 1)); \
  4217. } \
  4218. } while (0)
  4219. if (!info->attrs[NL80211_ATTR_MESH_CONFIG])
  4220. return -EINVAL;
  4221. if (nla_parse_nested(tb, NL80211_MESHCONF_ATTR_MAX,
  4222. info->attrs[NL80211_ATTR_MESH_CONFIG],
  4223. nl80211_meshconf_params_policy))
  4224. return -EINVAL;
  4225. /* This makes sure that there aren't more than 32 mesh config
  4226. * parameters (otherwise our bitfield scheme would not work.) */
  4227. BUILD_BUG_ON(NL80211_MESHCONF_ATTR_MAX > 32);
  4228. /* Fill in the params struct */
  4229. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshRetryTimeout, 1, 255,
  4230. mask, NL80211_MESHCONF_RETRY_TIMEOUT,
  4231. nla_get_u16);
  4232. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshConfirmTimeout, 1, 255,
  4233. mask, NL80211_MESHCONF_CONFIRM_TIMEOUT,
  4234. nla_get_u16);
  4235. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHoldingTimeout, 1, 255,
  4236. mask, NL80211_MESHCONF_HOLDING_TIMEOUT,
  4237. nla_get_u16);
  4238. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshMaxPeerLinks, 0, 255,
  4239. mask, NL80211_MESHCONF_MAX_PEER_LINKS,
  4240. nla_get_u16);
  4241. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshMaxRetries, 0, 16,
  4242. mask, NL80211_MESHCONF_MAX_RETRIES,
  4243. nla_get_u8);
  4244. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshTTL, 1, 255,
  4245. mask, NL80211_MESHCONF_TTL, nla_get_u8);
  4246. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, element_ttl, 1, 255,
  4247. mask, NL80211_MESHCONF_ELEMENT_TTL,
  4248. nla_get_u8);
  4249. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, auto_open_plinks, 0, 1,
  4250. mask, NL80211_MESHCONF_AUTO_OPEN_PLINKS,
  4251. nla_get_u8);
  4252. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshNbrOffsetMaxNeighbor,
  4253. 1, 255, mask,
  4254. NL80211_MESHCONF_SYNC_OFFSET_MAX_NEIGHBOR,
  4255. nla_get_u32);
  4256. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPmaxPREQretries, 0, 255,
  4257. mask, NL80211_MESHCONF_HWMP_MAX_PREQ_RETRIES,
  4258. nla_get_u8);
  4259. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, path_refresh_time, 1, 65535,
  4260. mask, NL80211_MESHCONF_PATH_REFRESH_TIME,
  4261. nla_get_u32);
  4262. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, min_discovery_timeout, 1, 65535,
  4263. mask, NL80211_MESHCONF_MIN_DISCOVERY_TIMEOUT,
  4264. nla_get_u16);
  4265. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPactivePathTimeout,
  4266. 1, 65535, mask,
  4267. NL80211_MESHCONF_HWMP_ACTIVE_PATH_TIMEOUT,
  4268. nla_get_u32);
  4269. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPpreqMinInterval,
  4270. 1, 65535, mask,
  4271. NL80211_MESHCONF_HWMP_PREQ_MIN_INTERVAL,
  4272. nla_get_u16);
  4273. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPperrMinInterval,
  4274. 1, 65535, mask,
  4275. NL80211_MESHCONF_HWMP_PERR_MIN_INTERVAL,
  4276. nla_get_u16);
  4277. FILL_IN_MESH_PARAM_IF_SET(tb, cfg,
  4278. dot11MeshHWMPnetDiameterTraversalTime,
  4279. 1, 65535, mask,
  4280. NL80211_MESHCONF_HWMP_NET_DIAM_TRVS_TIME,
  4281. nla_get_u16);
  4282. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPRootMode, 0, 4,
  4283. mask, NL80211_MESHCONF_HWMP_ROOTMODE,
  4284. nla_get_u8);
  4285. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPRannInterval, 1, 65535,
  4286. mask, NL80211_MESHCONF_HWMP_RANN_INTERVAL,
  4287. nla_get_u16);
  4288. FILL_IN_MESH_PARAM_IF_SET(tb, cfg,
  4289. dot11MeshGateAnnouncementProtocol, 0, 1,
  4290. mask, NL80211_MESHCONF_GATE_ANNOUNCEMENTS,
  4291. nla_get_u8);
  4292. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshForwarding, 0, 1,
  4293. mask, NL80211_MESHCONF_FORWARDING,
  4294. nla_get_u8);
  4295. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, rssi_threshold, -255, 0,
  4296. mask, NL80211_MESHCONF_RSSI_THRESHOLD,
  4297. nla_get_s32);
  4298. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, ht_opmode, 0, 16,
  4299. mask, NL80211_MESHCONF_HT_OPMODE,
  4300. nla_get_u16);
  4301. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMPactivePathToRootTimeout,
  4302. 1, 65535, mask,
  4303. NL80211_MESHCONF_HWMP_PATH_TO_ROOT_TIMEOUT,
  4304. nla_get_u32);
  4305. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshHWMProotInterval, 1, 65535,
  4306. mask, NL80211_MESHCONF_HWMP_ROOT_INTERVAL,
  4307. nla_get_u16);
  4308. FILL_IN_MESH_PARAM_IF_SET(tb, cfg,
  4309. dot11MeshHWMPconfirmationInterval,
  4310. 1, 65535, mask,
  4311. NL80211_MESHCONF_HWMP_CONFIRMATION_INTERVAL,
  4312. nla_get_u16);
  4313. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, power_mode,
  4314. NL80211_MESH_POWER_ACTIVE,
  4315. NL80211_MESH_POWER_MAX,
  4316. mask, NL80211_MESHCONF_POWER_MODE,
  4317. nla_get_u32);
  4318. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, dot11MeshAwakeWindowDuration,
  4319. 0, 65535, mask,
  4320. NL80211_MESHCONF_AWAKE_WINDOW, nla_get_u16);
  4321. FILL_IN_MESH_PARAM_IF_SET(tb, cfg, plink_timeout, 1, 0xffffffff,
  4322. mask, NL80211_MESHCONF_PLINK_TIMEOUT,
  4323. nla_get_u32);
  4324. if (mask_out)
  4325. *mask_out = mask;
  4326. return 0;
  4327. #undef FILL_IN_MESH_PARAM_IF_SET
  4328. }
  4329. static int nl80211_parse_mesh_setup(struct genl_info *info,
  4330. struct mesh_setup *setup)
  4331. {
  4332. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4333. struct nlattr *tb[NL80211_MESH_SETUP_ATTR_MAX + 1];
  4334. if (!info->attrs[NL80211_ATTR_MESH_SETUP])
  4335. return -EINVAL;
  4336. if (nla_parse_nested(tb, NL80211_MESH_SETUP_ATTR_MAX,
  4337. info->attrs[NL80211_ATTR_MESH_SETUP],
  4338. nl80211_mesh_setup_params_policy))
  4339. return -EINVAL;
  4340. if (tb[NL80211_MESH_SETUP_ENABLE_VENDOR_SYNC])
  4341. setup->sync_method =
  4342. (nla_get_u8(tb[NL80211_MESH_SETUP_ENABLE_VENDOR_SYNC])) ?
  4343. IEEE80211_SYNC_METHOD_VENDOR :
  4344. IEEE80211_SYNC_METHOD_NEIGHBOR_OFFSET;
  4345. if (tb[NL80211_MESH_SETUP_ENABLE_VENDOR_PATH_SEL])
  4346. setup->path_sel_proto =
  4347. (nla_get_u8(tb[NL80211_MESH_SETUP_ENABLE_VENDOR_PATH_SEL])) ?
  4348. IEEE80211_PATH_PROTOCOL_VENDOR :
  4349. IEEE80211_PATH_PROTOCOL_HWMP;
  4350. if (tb[NL80211_MESH_SETUP_ENABLE_VENDOR_METRIC])
  4351. setup->path_metric =
  4352. (nla_get_u8(tb[NL80211_MESH_SETUP_ENABLE_VENDOR_METRIC])) ?
  4353. IEEE80211_PATH_METRIC_VENDOR :
  4354. IEEE80211_PATH_METRIC_AIRTIME;
  4355. if (tb[NL80211_MESH_SETUP_IE]) {
  4356. struct nlattr *ieattr =
  4357. tb[NL80211_MESH_SETUP_IE];
  4358. if (!is_valid_ie_attr(ieattr))
  4359. return -EINVAL;
  4360. setup->ie = nla_data(ieattr);
  4361. setup->ie_len = nla_len(ieattr);
  4362. }
  4363. if (tb[NL80211_MESH_SETUP_USERSPACE_MPM] &&
  4364. !(rdev->wiphy.features & NL80211_FEATURE_USERSPACE_MPM))
  4365. return -EINVAL;
  4366. setup->user_mpm = nla_get_flag(tb[NL80211_MESH_SETUP_USERSPACE_MPM]);
  4367. setup->is_authenticated = nla_get_flag(tb[NL80211_MESH_SETUP_USERSPACE_AUTH]);
  4368. setup->is_secure = nla_get_flag(tb[NL80211_MESH_SETUP_USERSPACE_AMPE]);
  4369. if (setup->is_secure)
  4370. setup->user_mpm = true;
  4371. if (tb[NL80211_MESH_SETUP_AUTH_PROTOCOL]) {
  4372. if (!setup->user_mpm)
  4373. return -EINVAL;
  4374. setup->auth_id =
  4375. nla_get_u8(tb[NL80211_MESH_SETUP_AUTH_PROTOCOL]);
  4376. }
  4377. return 0;
  4378. }
  4379. static int nl80211_update_mesh_config(struct sk_buff *skb,
  4380. struct genl_info *info)
  4381. {
  4382. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4383. struct net_device *dev = info->user_ptr[1];
  4384. struct wireless_dev *wdev = dev->ieee80211_ptr;
  4385. struct mesh_config cfg;
  4386. u32 mask;
  4387. int err;
  4388. if (wdev->iftype != NL80211_IFTYPE_MESH_POINT)
  4389. return -EOPNOTSUPP;
  4390. if (!rdev->ops->update_mesh_config)
  4391. return -EOPNOTSUPP;
  4392. err = nl80211_parse_mesh_config(info, &cfg, &mask);
  4393. if (err)
  4394. return err;
  4395. wdev_lock(wdev);
  4396. if (!wdev->mesh_id_len)
  4397. err = -ENOLINK;
  4398. if (!err)
  4399. err = rdev_update_mesh_config(rdev, dev, mask, &cfg);
  4400. wdev_unlock(wdev);
  4401. return err;
  4402. }
  4403. static int nl80211_get_reg(struct sk_buff *skb, struct genl_info *info)
  4404. {
  4405. const struct ieee80211_regdomain *regdom;
  4406. struct sk_buff *msg;
  4407. void *hdr = NULL;
  4408. struct nlattr *nl_reg_rules;
  4409. unsigned int i;
  4410. if (!cfg80211_regdomain)
  4411. return -EINVAL;
  4412. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  4413. if (!msg)
  4414. return -ENOBUFS;
  4415. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  4416. NL80211_CMD_GET_REG);
  4417. if (!hdr)
  4418. goto put_failure;
  4419. if (reg_last_request_cell_base() &&
  4420. nla_put_u32(msg, NL80211_ATTR_USER_REG_HINT_TYPE,
  4421. NL80211_USER_REG_HINT_CELL_BASE))
  4422. goto nla_put_failure;
  4423. rcu_read_lock();
  4424. regdom = rcu_dereference(cfg80211_regdomain);
  4425. if (nla_put_string(msg, NL80211_ATTR_REG_ALPHA2, regdom->alpha2) ||
  4426. (regdom->dfs_region &&
  4427. nla_put_u8(msg, NL80211_ATTR_DFS_REGION, regdom->dfs_region)))
  4428. goto nla_put_failure_rcu;
  4429. nl_reg_rules = nla_nest_start(msg, NL80211_ATTR_REG_RULES);
  4430. if (!nl_reg_rules)
  4431. goto nla_put_failure_rcu;
  4432. for (i = 0; i < regdom->n_reg_rules; i++) {
  4433. struct nlattr *nl_reg_rule;
  4434. const struct ieee80211_reg_rule *reg_rule;
  4435. const struct ieee80211_freq_range *freq_range;
  4436. const struct ieee80211_power_rule *power_rule;
  4437. unsigned int max_bandwidth_khz;
  4438. reg_rule = &regdom->reg_rules[i];
  4439. freq_range = &reg_rule->freq_range;
  4440. power_rule = &reg_rule->power_rule;
  4441. nl_reg_rule = nla_nest_start(msg, i);
  4442. if (!nl_reg_rule)
  4443. goto nla_put_failure_rcu;
  4444. max_bandwidth_khz = freq_range->max_bandwidth_khz;
  4445. if (!max_bandwidth_khz)
  4446. max_bandwidth_khz = reg_get_max_bandwidth(regdom,
  4447. reg_rule);
  4448. if (nla_put_u32(msg, NL80211_ATTR_REG_RULE_FLAGS,
  4449. reg_rule->flags) ||
  4450. nla_put_u32(msg, NL80211_ATTR_FREQ_RANGE_START,
  4451. freq_range->start_freq_khz) ||
  4452. nla_put_u32(msg, NL80211_ATTR_FREQ_RANGE_END,
  4453. freq_range->end_freq_khz) ||
  4454. nla_put_u32(msg, NL80211_ATTR_FREQ_RANGE_MAX_BW,
  4455. max_bandwidth_khz) ||
  4456. nla_put_u32(msg, NL80211_ATTR_POWER_RULE_MAX_ANT_GAIN,
  4457. power_rule->max_antenna_gain) ||
  4458. nla_put_u32(msg, NL80211_ATTR_POWER_RULE_MAX_EIRP,
  4459. power_rule->max_eirp) ||
  4460. nla_put_u32(msg, NL80211_ATTR_DFS_CAC_TIME,
  4461. reg_rule->dfs_cac_ms))
  4462. goto nla_put_failure_rcu;
  4463. nla_nest_end(msg, nl_reg_rule);
  4464. }
  4465. rcu_read_unlock();
  4466. nla_nest_end(msg, nl_reg_rules);
  4467. genlmsg_end(msg, hdr);
  4468. return genlmsg_reply(msg, info);
  4469. nla_put_failure_rcu:
  4470. rcu_read_unlock();
  4471. nla_put_failure:
  4472. genlmsg_cancel(msg, hdr);
  4473. put_failure:
  4474. nlmsg_free(msg);
  4475. return -EMSGSIZE;
  4476. }
  4477. static int nl80211_set_reg(struct sk_buff *skb, struct genl_info *info)
  4478. {
  4479. struct nlattr *tb[NL80211_REG_RULE_ATTR_MAX + 1];
  4480. struct nlattr *nl_reg_rule;
  4481. char *alpha2 = NULL;
  4482. int rem_reg_rules = 0, r = 0;
  4483. u32 num_rules = 0, rule_idx = 0, size_of_regd;
  4484. enum nl80211_dfs_regions dfs_region = NL80211_DFS_UNSET;
  4485. struct ieee80211_regdomain *rd = NULL;
  4486. if (!info->attrs[NL80211_ATTR_REG_ALPHA2])
  4487. return -EINVAL;
  4488. if (!info->attrs[NL80211_ATTR_REG_RULES])
  4489. return -EINVAL;
  4490. alpha2 = nla_data(info->attrs[NL80211_ATTR_REG_ALPHA2]);
  4491. if (info->attrs[NL80211_ATTR_DFS_REGION])
  4492. dfs_region = nla_get_u8(info->attrs[NL80211_ATTR_DFS_REGION]);
  4493. nla_for_each_nested(nl_reg_rule, info->attrs[NL80211_ATTR_REG_RULES],
  4494. rem_reg_rules) {
  4495. num_rules++;
  4496. if (num_rules > NL80211_MAX_SUPP_REG_RULES)
  4497. return -EINVAL;
  4498. }
  4499. if (!reg_is_valid_request(alpha2))
  4500. return -EINVAL;
  4501. size_of_regd = sizeof(struct ieee80211_regdomain) +
  4502. num_rules * sizeof(struct ieee80211_reg_rule);
  4503. rd = kzalloc(size_of_regd, GFP_KERNEL);
  4504. if (!rd)
  4505. return -ENOMEM;
  4506. rd->n_reg_rules = num_rules;
  4507. rd->alpha2[0] = alpha2[0];
  4508. rd->alpha2[1] = alpha2[1];
  4509. /*
  4510. * Disable DFS master mode if the DFS region was
  4511. * not supported or known on this kernel.
  4512. */
  4513. if (reg_supported_dfs_region(dfs_region))
  4514. rd->dfs_region = dfs_region;
  4515. nla_for_each_nested(nl_reg_rule, info->attrs[NL80211_ATTR_REG_RULES],
  4516. rem_reg_rules) {
  4517. r = nla_parse(tb, NL80211_REG_RULE_ATTR_MAX,
  4518. nla_data(nl_reg_rule), nla_len(nl_reg_rule),
  4519. reg_rule_policy);
  4520. if (r)
  4521. goto bad_reg;
  4522. r = parse_reg_rule(tb, &rd->reg_rules[rule_idx]);
  4523. if (r)
  4524. goto bad_reg;
  4525. rule_idx++;
  4526. if (rule_idx > NL80211_MAX_SUPP_REG_RULES) {
  4527. r = -EINVAL;
  4528. goto bad_reg;
  4529. }
  4530. }
  4531. r = set_regdom(rd);
  4532. /* set_regdom took ownership */
  4533. rd = NULL;
  4534. bad_reg:
  4535. kfree(rd);
  4536. return r;
  4537. }
  4538. static int validate_scan_freqs(struct nlattr *freqs)
  4539. {
  4540. struct nlattr *attr1, *attr2;
  4541. int n_channels = 0, tmp1, tmp2;
  4542. nla_for_each_nested(attr1, freqs, tmp1) {
  4543. n_channels++;
  4544. /*
  4545. * Some hardware has a limited channel list for
  4546. * scanning, and it is pretty much nonsensical
  4547. * to scan for a channel twice, so disallow that
  4548. * and don't require drivers to check that the
  4549. * channel list they get isn't longer than what
  4550. * they can scan, as long as they can scan all
  4551. * the channels they registered at once.
  4552. */
  4553. nla_for_each_nested(attr2, freqs, tmp2)
  4554. if (attr1 != attr2 &&
  4555. nla_get_u32(attr1) == nla_get_u32(attr2))
  4556. return 0;
  4557. }
  4558. return n_channels;
  4559. }
  4560. static int nl80211_trigger_scan(struct sk_buff *skb, struct genl_info *info)
  4561. {
  4562. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4563. struct wireless_dev *wdev = info->user_ptr[1];
  4564. struct cfg80211_scan_request *request;
  4565. struct nlattr *attr;
  4566. struct wiphy *wiphy;
  4567. int err, tmp, n_ssids = 0, n_channels, i;
  4568. size_t ie_len;
  4569. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  4570. return -EINVAL;
  4571. wiphy = &rdev->wiphy;
  4572. if (!rdev->ops->scan)
  4573. return -EOPNOTSUPP;
  4574. if (rdev->scan_req || rdev->scan_msg) {
  4575. err = -EBUSY;
  4576. goto unlock;
  4577. }
  4578. if (info->attrs[NL80211_ATTR_SCAN_FREQUENCIES]) {
  4579. n_channels = validate_scan_freqs(
  4580. info->attrs[NL80211_ATTR_SCAN_FREQUENCIES]);
  4581. if (!n_channels) {
  4582. err = -EINVAL;
  4583. goto unlock;
  4584. }
  4585. } else {
  4586. n_channels = ieee80211_get_num_supported_channels(wiphy);
  4587. }
  4588. if (info->attrs[NL80211_ATTR_SCAN_SSIDS])
  4589. nla_for_each_nested(attr, info->attrs[NL80211_ATTR_SCAN_SSIDS], tmp)
  4590. n_ssids++;
  4591. if (n_ssids > wiphy->max_scan_ssids) {
  4592. err = -EINVAL;
  4593. goto unlock;
  4594. }
  4595. if (info->attrs[NL80211_ATTR_IE])
  4596. ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  4597. else
  4598. ie_len = 0;
  4599. if (ie_len > wiphy->max_scan_ie_len) {
  4600. err = -EINVAL;
  4601. goto unlock;
  4602. }
  4603. request = kzalloc(sizeof(*request)
  4604. + sizeof(*request->ssids) * n_ssids
  4605. + sizeof(*request->channels) * n_channels
  4606. + ie_len, GFP_KERNEL);
  4607. if (!request) {
  4608. err = -ENOMEM;
  4609. goto unlock;
  4610. }
  4611. if (n_ssids)
  4612. request->ssids = (void *)&request->channels[n_channels];
  4613. request->n_ssids = n_ssids;
  4614. if (ie_len) {
  4615. if (request->ssids)
  4616. request->ie = (void *)(request->ssids + n_ssids);
  4617. else
  4618. request->ie = (void *)(request->channels + n_channels);
  4619. }
  4620. i = 0;
  4621. if (info->attrs[NL80211_ATTR_SCAN_FREQUENCIES]) {
  4622. /* user specified, bail out if channel not found */
  4623. nla_for_each_nested(attr, info->attrs[NL80211_ATTR_SCAN_FREQUENCIES], tmp) {
  4624. struct ieee80211_channel *chan;
  4625. chan = ieee80211_get_channel(wiphy, nla_get_u32(attr));
  4626. if (!chan) {
  4627. err = -EINVAL;
  4628. goto out_free;
  4629. }
  4630. /* ignore disabled channels */
  4631. if (chan->flags & IEEE80211_CHAN_DISABLED)
  4632. continue;
  4633. request->channels[i] = chan;
  4634. i++;
  4635. }
  4636. } else {
  4637. enum ieee80211_band band;
  4638. /* all channels */
  4639. for (band = 0; band < IEEE80211_NUM_BANDS; band++) {
  4640. int j;
  4641. if (!wiphy->bands[band])
  4642. continue;
  4643. for (j = 0; j < wiphy->bands[band]->n_channels; j++) {
  4644. struct ieee80211_channel *chan;
  4645. chan = &wiphy->bands[band]->channels[j];
  4646. if (chan->flags & IEEE80211_CHAN_DISABLED)
  4647. continue;
  4648. request->channels[i] = chan;
  4649. i++;
  4650. }
  4651. }
  4652. }
  4653. if (!i) {
  4654. err = -EINVAL;
  4655. goto out_free;
  4656. }
  4657. request->n_channels = i;
  4658. i = 0;
  4659. if (info->attrs[NL80211_ATTR_SCAN_SSIDS]) {
  4660. nla_for_each_nested(attr, info->attrs[NL80211_ATTR_SCAN_SSIDS], tmp) {
  4661. if (nla_len(attr) > IEEE80211_MAX_SSID_LEN) {
  4662. err = -EINVAL;
  4663. goto out_free;
  4664. }
  4665. request->ssids[i].ssid_len = nla_len(attr);
  4666. memcpy(request->ssids[i].ssid, nla_data(attr), nla_len(attr));
  4667. i++;
  4668. }
  4669. }
  4670. if (info->attrs[NL80211_ATTR_IE]) {
  4671. request->ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  4672. memcpy((void *)request->ie,
  4673. nla_data(info->attrs[NL80211_ATTR_IE]),
  4674. request->ie_len);
  4675. }
  4676. for (i = 0; i < IEEE80211_NUM_BANDS; i++)
  4677. if (wiphy->bands[i])
  4678. request->rates[i] =
  4679. (1 << wiphy->bands[i]->n_bitrates) - 1;
  4680. if (info->attrs[NL80211_ATTR_SCAN_SUPP_RATES]) {
  4681. nla_for_each_nested(attr,
  4682. info->attrs[NL80211_ATTR_SCAN_SUPP_RATES],
  4683. tmp) {
  4684. enum ieee80211_band band = nla_type(attr);
  4685. if (band < 0 || band >= IEEE80211_NUM_BANDS) {
  4686. err = -EINVAL;
  4687. goto out_free;
  4688. }
  4689. if (!wiphy->bands[band])
  4690. continue;
  4691. err = ieee80211_get_ratemask(wiphy->bands[band],
  4692. nla_data(attr),
  4693. nla_len(attr),
  4694. &request->rates[band]);
  4695. if (err)
  4696. goto out_free;
  4697. }
  4698. }
  4699. if (info->attrs[NL80211_ATTR_SCAN_FLAGS]) {
  4700. request->flags = nla_get_u32(
  4701. info->attrs[NL80211_ATTR_SCAN_FLAGS]);
  4702. if ((request->flags & NL80211_SCAN_FLAG_LOW_PRIORITY) &&
  4703. !(wiphy->features & NL80211_FEATURE_LOW_PRIORITY_SCAN)) {
  4704. err = -EOPNOTSUPP;
  4705. goto out_free;
  4706. }
  4707. }
  4708. request->no_cck =
  4709. nla_get_flag(info->attrs[NL80211_ATTR_TX_NO_CCK_RATE]);
  4710. request->wdev = wdev;
  4711. request->wiphy = &rdev->wiphy;
  4712. request->scan_start = jiffies;
  4713. rdev->scan_req = request;
  4714. err = rdev_scan(rdev, request);
  4715. if (!err) {
  4716. nl80211_send_scan_start(rdev, wdev);
  4717. if (wdev->netdev)
  4718. dev_hold(wdev->netdev);
  4719. } else {
  4720. out_free:
  4721. rdev->scan_req = NULL;
  4722. kfree(request);
  4723. }
  4724. unlock:
  4725. return err;
  4726. }
  4727. static int nl80211_start_sched_scan(struct sk_buff *skb,
  4728. struct genl_info *info)
  4729. {
  4730. struct cfg80211_sched_scan_request *request;
  4731. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4732. struct net_device *dev = info->user_ptr[1];
  4733. struct nlattr *attr;
  4734. struct wiphy *wiphy;
  4735. int err, tmp, n_ssids = 0, n_match_sets = 0, n_channels, i;
  4736. u32 interval;
  4737. enum ieee80211_band band;
  4738. size_t ie_len;
  4739. struct nlattr *tb[NL80211_SCHED_SCAN_MATCH_ATTR_MAX + 1];
  4740. s32 default_match_rssi = NL80211_SCAN_RSSI_THOLD_OFF;
  4741. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_SCHED_SCAN) ||
  4742. !rdev->ops->sched_scan_start)
  4743. return -EOPNOTSUPP;
  4744. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  4745. return -EINVAL;
  4746. if (!info->attrs[NL80211_ATTR_SCHED_SCAN_INTERVAL])
  4747. return -EINVAL;
  4748. interval = nla_get_u32(info->attrs[NL80211_ATTR_SCHED_SCAN_INTERVAL]);
  4749. if (interval == 0)
  4750. return -EINVAL;
  4751. wiphy = &rdev->wiphy;
  4752. if (info->attrs[NL80211_ATTR_SCAN_FREQUENCIES]) {
  4753. n_channels = validate_scan_freqs(
  4754. info->attrs[NL80211_ATTR_SCAN_FREQUENCIES]);
  4755. if (!n_channels)
  4756. return -EINVAL;
  4757. } else {
  4758. n_channels = ieee80211_get_num_supported_channels(wiphy);
  4759. }
  4760. if (info->attrs[NL80211_ATTR_SCAN_SSIDS])
  4761. nla_for_each_nested(attr, info->attrs[NL80211_ATTR_SCAN_SSIDS],
  4762. tmp)
  4763. n_ssids++;
  4764. if (n_ssids > wiphy->max_sched_scan_ssids)
  4765. return -EINVAL;
  4766. /*
  4767. * First, count the number of 'real' matchsets. Due to an issue with
  4768. * the old implementation, matchsets containing only the RSSI attribute
  4769. * (NL80211_SCHED_SCAN_MATCH_ATTR_RSSI) are considered as the 'default'
  4770. * RSSI for all matchsets, rather than their own matchset for reporting
  4771. * all APs with a strong RSSI. This is needed to be compatible with
  4772. * older userspace that treated a matchset with only the RSSI as the
  4773. * global RSSI for all other matchsets - if there are other matchsets.
  4774. */
  4775. if (info->attrs[NL80211_ATTR_SCHED_SCAN_MATCH]) {
  4776. nla_for_each_nested(attr,
  4777. info->attrs[NL80211_ATTR_SCHED_SCAN_MATCH],
  4778. tmp) {
  4779. struct nlattr *rssi;
  4780. err = nla_parse(tb, NL80211_SCHED_SCAN_MATCH_ATTR_MAX,
  4781. nla_data(attr), nla_len(attr),
  4782. nl80211_match_policy);
  4783. if (err)
  4784. return err;
  4785. /* add other standalone attributes here */
  4786. if (tb[NL80211_SCHED_SCAN_MATCH_ATTR_SSID]) {
  4787. n_match_sets++;
  4788. continue;
  4789. }
  4790. rssi = tb[NL80211_SCHED_SCAN_MATCH_ATTR_RSSI];
  4791. if (rssi)
  4792. default_match_rssi = nla_get_s32(rssi);
  4793. }
  4794. }
  4795. /* However, if there's no other matchset, add the RSSI one */
  4796. if (!n_match_sets && default_match_rssi != NL80211_SCAN_RSSI_THOLD_OFF)
  4797. n_match_sets = 1;
  4798. if (n_match_sets > wiphy->max_match_sets)
  4799. return -EINVAL;
  4800. if (info->attrs[NL80211_ATTR_IE])
  4801. ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  4802. else
  4803. ie_len = 0;
  4804. if (ie_len > wiphy->max_sched_scan_ie_len)
  4805. return -EINVAL;
  4806. if (rdev->sched_scan_req) {
  4807. err = -EINPROGRESS;
  4808. goto out;
  4809. }
  4810. request = kzalloc(sizeof(*request)
  4811. + sizeof(*request->ssids) * n_ssids
  4812. + sizeof(*request->match_sets) * n_match_sets
  4813. + sizeof(*request->channels) * n_channels
  4814. + ie_len, GFP_KERNEL);
  4815. if (!request) {
  4816. err = -ENOMEM;
  4817. goto out;
  4818. }
  4819. if (n_ssids)
  4820. request->ssids = (void *)&request->channels[n_channels];
  4821. request->n_ssids = n_ssids;
  4822. if (ie_len) {
  4823. if (request->ssids)
  4824. request->ie = (void *)(request->ssids + n_ssids);
  4825. else
  4826. request->ie = (void *)(request->channels + n_channels);
  4827. }
  4828. if (n_match_sets) {
  4829. if (request->ie)
  4830. request->match_sets = (void *)(request->ie + ie_len);
  4831. else if (request->ssids)
  4832. request->match_sets =
  4833. (void *)(request->ssids + n_ssids);
  4834. else
  4835. request->match_sets =
  4836. (void *)(request->channels + n_channels);
  4837. }
  4838. request->n_match_sets = n_match_sets;
  4839. i = 0;
  4840. if (info->attrs[NL80211_ATTR_SCAN_FREQUENCIES]) {
  4841. /* user specified, bail out if channel not found */
  4842. nla_for_each_nested(attr,
  4843. info->attrs[NL80211_ATTR_SCAN_FREQUENCIES],
  4844. tmp) {
  4845. struct ieee80211_channel *chan;
  4846. chan = ieee80211_get_channel(wiphy, nla_get_u32(attr));
  4847. if (!chan) {
  4848. err = -EINVAL;
  4849. goto out_free;
  4850. }
  4851. /* ignore disabled channels */
  4852. if (chan->flags & IEEE80211_CHAN_DISABLED)
  4853. continue;
  4854. request->channels[i] = chan;
  4855. i++;
  4856. }
  4857. } else {
  4858. /* all channels */
  4859. for (band = 0; band < IEEE80211_NUM_BANDS; band++) {
  4860. int j;
  4861. if (!wiphy->bands[band])
  4862. continue;
  4863. for (j = 0; j < wiphy->bands[band]->n_channels; j++) {
  4864. struct ieee80211_channel *chan;
  4865. chan = &wiphy->bands[band]->channels[j];
  4866. if (chan->flags & IEEE80211_CHAN_DISABLED)
  4867. continue;
  4868. request->channels[i] = chan;
  4869. i++;
  4870. }
  4871. }
  4872. }
  4873. if (!i) {
  4874. err = -EINVAL;
  4875. goto out_free;
  4876. }
  4877. request->n_channels = i;
  4878. i = 0;
  4879. if (info->attrs[NL80211_ATTR_SCAN_SSIDS]) {
  4880. nla_for_each_nested(attr, info->attrs[NL80211_ATTR_SCAN_SSIDS],
  4881. tmp) {
  4882. if (nla_len(attr) > IEEE80211_MAX_SSID_LEN) {
  4883. err = -EINVAL;
  4884. goto out_free;
  4885. }
  4886. request->ssids[i].ssid_len = nla_len(attr);
  4887. memcpy(request->ssids[i].ssid, nla_data(attr),
  4888. nla_len(attr));
  4889. i++;
  4890. }
  4891. }
  4892. i = 0;
  4893. if (info->attrs[NL80211_ATTR_SCHED_SCAN_MATCH]) {
  4894. nla_for_each_nested(attr,
  4895. info->attrs[NL80211_ATTR_SCHED_SCAN_MATCH],
  4896. tmp) {
  4897. struct nlattr *ssid, *rssi;
  4898. err = nla_parse(tb, NL80211_SCHED_SCAN_MATCH_ATTR_MAX,
  4899. nla_data(attr), nla_len(attr),
  4900. nl80211_match_policy);
  4901. if (err)
  4902. goto out_free;
  4903. ssid = tb[NL80211_SCHED_SCAN_MATCH_ATTR_SSID];
  4904. if (ssid) {
  4905. if (WARN_ON(i >= n_match_sets)) {
  4906. /* this indicates a programming error,
  4907. * the loop above should have verified
  4908. * things properly
  4909. */
  4910. err = -EINVAL;
  4911. goto out_free;
  4912. }
  4913. if (nla_len(ssid) > IEEE80211_MAX_SSID_LEN) {
  4914. err = -EINVAL;
  4915. goto out_free;
  4916. }
  4917. memcpy(request->match_sets[i].ssid.ssid,
  4918. nla_data(ssid), nla_len(ssid));
  4919. request->match_sets[i].ssid.ssid_len =
  4920. nla_len(ssid);
  4921. /* special attribute - old implemenation w/a */
  4922. request->match_sets[i].rssi_thold =
  4923. default_match_rssi;
  4924. rssi = tb[NL80211_SCHED_SCAN_MATCH_ATTR_RSSI];
  4925. if (rssi)
  4926. request->match_sets[i].rssi_thold =
  4927. nla_get_s32(rssi);
  4928. }
  4929. i++;
  4930. }
  4931. /* there was no other matchset, so the RSSI one is alone */
  4932. if (i == 0 && n_match_sets)
  4933. request->match_sets[0].rssi_thold = default_match_rssi;
  4934. request->min_rssi_thold = INT_MAX;
  4935. for (i = 0; i < n_match_sets; i++)
  4936. request->min_rssi_thold =
  4937. min(request->match_sets[i].rssi_thold,
  4938. request->min_rssi_thold);
  4939. } else {
  4940. request->min_rssi_thold = NL80211_SCAN_RSSI_THOLD_OFF;
  4941. }
  4942. if (ie_len) {
  4943. request->ie_len = ie_len;
  4944. memcpy((void *)request->ie,
  4945. nla_data(info->attrs[NL80211_ATTR_IE]),
  4946. request->ie_len);
  4947. }
  4948. if (info->attrs[NL80211_ATTR_SCAN_FLAGS]) {
  4949. request->flags = nla_get_u32(
  4950. info->attrs[NL80211_ATTR_SCAN_FLAGS]);
  4951. if ((request->flags & NL80211_SCAN_FLAG_LOW_PRIORITY) &&
  4952. !(wiphy->features & NL80211_FEATURE_LOW_PRIORITY_SCAN)) {
  4953. err = -EOPNOTSUPP;
  4954. goto out_free;
  4955. }
  4956. }
  4957. request->dev = dev;
  4958. request->wiphy = &rdev->wiphy;
  4959. request->interval = interval;
  4960. request->scan_start = jiffies;
  4961. err = rdev_sched_scan_start(rdev, dev, request);
  4962. if (!err) {
  4963. rdev->sched_scan_req = request;
  4964. nl80211_send_sched_scan(rdev, dev,
  4965. NL80211_CMD_START_SCHED_SCAN);
  4966. goto out;
  4967. }
  4968. out_free:
  4969. kfree(request);
  4970. out:
  4971. return err;
  4972. }
  4973. static int nl80211_stop_sched_scan(struct sk_buff *skb,
  4974. struct genl_info *info)
  4975. {
  4976. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4977. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_SCHED_SCAN) ||
  4978. !rdev->ops->sched_scan_stop)
  4979. return -EOPNOTSUPP;
  4980. return __cfg80211_stop_sched_scan(rdev, false);
  4981. }
  4982. static int nl80211_start_radar_detection(struct sk_buff *skb,
  4983. struct genl_info *info)
  4984. {
  4985. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  4986. struct net_device *dev = info->user_ptr[1];
  4987. struct wireless_dev *wdev = dev->ieee80211_ptr;
  4988. struct cfg80211_chan_def chandef;
  4989. enum nl80211_dfs_regions dfs_region;
  4990. unsigned int cac_time_ms;
  4991. int err;
  4992. dfs_region = reg_get_dfs_region(wdev->wiphy);
  4993. if (dfs_region == NL80211_DFS_UNSET)
  4994. return -EINVAL;
  4995. err = nl80211_parse_chandef(rdev, info, &chandef);
  4996. if (err)
  4997. return err;
  4998. if (netif_carrier_ok(dev))
  4999. return -EBUSY;
  5000. if (wdev->cac_started)
  5001. return -EBUSY;
  5002. err = cfg80211_chandef_dfs_required(wdev->wiphy, &chandef,
  5003. wdev->iftype);
  5004. if (err < 0)
  5005. return err;
  5006. if (err == 0)
  5007. return -EINVAL;
  5008. if (!cfg80211_chandef_dfs_usable(wdev->wiphy, &chandef))
  5009. return -EINVAL;
  5010. if (!rdev->ops->start_radar_detection)
  5011. return -EOPNOTSUPP;
  5012. cac_time_ms = cfg80211_chandef_dfs_cac_time(&rdev->wiphy, &chandef);
  5013. if (WARN_ON(!cac_time_ms))
  5014. cac_time_ms = IEEE80211_DFS_MIN_CAC_TIME_MS;
  5015. err = rdev->ops->start_radar_detection(&rdev->wiphy, dev, &chandef,
  5016. cac_time_ms);
  5017. if (!err) {
  5018. wdev->chandef = chandef;
  5019. wdev->cac_started = true;
  5020. wdev->cac_start_time = jiffies;
  5021. wdev->cac_time_ms = cac_time_ms;
  5022. }
  5023. return err;
  5024. }
  5025. static int nl80211_channel_switch(struct sk_buff *skb, struct genl_info *info)
  5026. {
  5027. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5028. struct net_device *dev = info->user_ptr[1];
  5029. struct wireless_dev *wdev = dev->ieee80211_ptr;
  5030. struct cfg80211_csa_settings params;
  5031. /* csa_attrs is defined static to avoid waste of stack size - this
  5032. * function is called under RTNL lock, so this should not be a problem.
  5033. */
  5034. static struct nlattr *csa_attrs[NL80211_ATTR_MAX+1];
  5035. u8 radar_detect_width = 0;
  5036. int err;
  5037. bool need_new_beacon = false;
  5038. int len, i;
  5039. u32 cs_count;
  5040. if (!rdev->ops->channel_switch ||
  5041. !(rdev->wiphy.flags & WIPHY_FLAG_HAS_CHANNEL_SWITCH))
  5042. return -EOPNOTSUPP;
  5043. switch (dev->ieee80211_ptr->iftype) {
  5044. case NL80211_IFTYPE_AP:
  5045. case NL80211_IFTYPE_P2P_GO:
  5046. need_new_beacon = true;
  5047. /* useless if AP is not running */
  5048. if (!wdev->beacon_interval)
  5049. return -ENOTCONN;
  5050. break;
  5051. case NL80211_IFTYPE_ADHOC:
  5052. if (!wdev->ssid_len)
  5053. return -ENOTCONN;
  5054. break;
  5055. case NL80211_IFTYPE_MESH_POINT:
  5056. if (!wdev->mesh_id_len)
  5057. return -ENOTCONN;
  5058. break;
  5059. default:
  5060. return -EOPNOTSUPP;
  5061. }
  5062. memset(&params, 0, sizeof(params));
  5063. if (!info->attrs[NL80211_ATTR_WIPHY_FREQ] ||
  5064. !info->attrs[NL80211_ATTR_CH_SWITCH_COUNT])
  5065. return -EINVAL;
  5066. /* only important for AP, IBSS and mesh create IEs internally */
  5067. if (need_new_beacon && !info->attrs[NL80211_ATTR_CSA_IES])
  5068. return -EINVAL;
  5069. /* Even though the attribute is u32, the specification says
  5070. * u8, so let's make sure we don't overflow.
  5071. */
  5072. cs_count = nla_get_u32(info->attrs[NL80211_ATTR_CH_SWITCH_COUNT]);
  5073. if (cs_count > 255)
  5074. return -EINVAL;
  5075. params.count = cs_count;
  5076. if (!need_new_beacon)
  5077. goto skip_beacons;
  5078. err = nl80211_parse_beacon(info->attrs, &params.beacon_after);
  5079. if (err)
  5080. return err;
  5081. err = nla_parse_nested(csa_attrs, NL80211_ATTR_MAX,
  5082. info->attrs[NL80211_ATTR_CSA_IES],
  5083. nl80211_policy);
  5084. if (err)
  5085. return err;
  5086. err = nl80211_parse_beacon(csa_attrs, &params.beacon_csa);
  5087. if (err)
  5088. return err;
  5089. if (!csa_attrs[NL80211_ATTR_CSA_C_OFF_BEACON])
  5090. return -EINVAL;
  5091. len = nla_len(csa_attrs[NL80211_ATTR_CSA_C_OFF_BEACON]);
  5092. if (!len || (len % sizeof(u16)))
  5093. return -EINVAL;
  5094. params.n_counter_offsets_beacon = len / sizeof(u16);
  5095. if (rdev->wiphy.max_num_csa_counters &&
  5096. (params.n_counter_offsets_beacon >
  5097. rdev->wiphy.max_num_csa_counters))
  5098. return -EINVAL;
  5099. params.counter_offsets_beacon =
  5100. nla_data(csa_attrs[NL80211_ATTR_CSA_C_OFF_BEACON]);
  5101. /* sanity checks - counters should fit and be the same */
  5102. for (i = 0; i < params.n_counter_offsets_beacon; i++) {
  5103. u16 offset = params.counter_offsets_beacon[i];
  5104. if (offset >= params.beacon_csa.tail_len)
  5105. return -EINVAL;
  5106. if (params.beacon_csa.tail[offset] != params.count)
  5107. return -EINVAL;
  5108. }
  5109. if (csa_attrs[NL80211_ATTR_CSA_C_OFF_PRESP]) {
  5110. len = nla_len(csa_attrs[NL80211_ATTR_CSA_C_OFF_PRESP]);
  5111. if (!len || (len % sizeof(u16)))
  5112. return -EINVAL;
  5113. params.n_counter_offsets_presp = len / sizeof(u16);
  5114. if (rdev->wiphy.max_num_csa_counters &&
  5115. (params.n_counter_offsets_beacon >
  5116. rdev->wiphy.max_num_csa_counters))
  5117. return -EINVAL;
  5118. params.counter_offsets_presp =
  5119. nla_data(csa_attrs[NL80211_ATTR_CSA_C_OFF_PRESP]);
  5120. /* sanity checks - counters should fit and be the same */
  5121. for (i = 0; i < params.n_counter_offsets_presp; i++) {
  5122. u16 offset = params.counter_offsets_presp[i];
  5123. if (offset >= params.beacon_csa.probe_resp_len)
  5124. return -EINVAL;
  5125. if (params.beacon_csa.probe_resp[offset] !=
  5126. params.count)
  5127. return -EINVAL;
  5128. }
  5129. }
  5130. skip_beacons:
  5131. err = nl80211_parse_chandef(rdev, info, &params.chandef);
  5132. if (err)
  5133. return err;
  5134. if (!cfg80211_reg_can_beacon(&rdev->wiphy, &params.chandef,
  5135. wdev->iftype))
  5136. return -EINVAL;
  5137. err = cfg80211_chandef_dfs_required(wdev->wiphy,
  5138. &params.chandef,
  5139. wdev->iftype);
  5140. if (err < 0)
  5141. return err;
  5142. if (err > 0) {
  5143. radar_detect_width = BIT(params.chandef.width);
  5144. params.radar_required = true;
  5145. }
  5146. if (info->attrs[NL80211_ATTR_CH_SWITCH_BLOCK_TX])
  5147. params.block_tx = true;
  5148. wdev_lock(wdev);
  5149. err = rdev_channel_switch(rdev, dev, &params);
  5150. wdev_unlock(wdev);
  5151. return err;
  5152. }
  5153. static int nl80211_send_bss(struct sk_buff *msg, struct netlink_callback *cb,
  5154. u32 seq, int flags,
  5155. struct cfg80211_registered_device *rdev,
  5156. struct wireless_dev *wdev,
  5157. struct cfg80211_internal_bss *intbss)
  5158. {
  5159. struct cfg80211_bss *res = &intbss->pub;
  5160. const struct cfg80211_bss_ies *ies;
  5161. void *hdr;
  5162. struct nlattr *bss;
  5163. ASSERT_WDEV_LOCK(wdev);
  5164. hdr = nl80211hdr_put(msg, NETLINK_CB(cb->skb).portid, seq, flags,
  5165. NL80211_CMD_NEW_SCAN_RESULTS);
  5166. if (!hdr)
  5167. return -1;
  5168. genl_dump_check_consistent(cb, hdr, &nl80211_fam);
  5169. if (nla_put_u32(msg, NL80211_ATTR_GENERATION, rdev->bss_generation))
  5170. goto nla_put_failure;
  5171. if (wdev->netdev &&
  5172. nla_put_u32(msg, NL80211_ATTR_IFINDEX, wdev->netdev->ifindex))
  5173. goto nla_put_failure;
  5174. if (nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)))
  5175. goto nla_put_failure;
  5176. bss = nla_nest_start(msg, NL80211_ATTR_BSS);
  5177. if (!bss)
  5178. goto nla_put_failure;
  5179. if ((!is_zero_ether_addr(res->bssid) &&
  5180. nla_put(msg, NL80211_BSS_BSSID, ETH_ALEN, res->bssid)))
  5181. goto nla_put_failure;
  5182. rcu_read_lock();
  5183. /* indicate whether we have probe response data or not */
  5184. if (rcu_access_pointer(res->proberesp_ies) &&
  5185. nla_put_flag(msg, NL80211_BSS_PRESP_DATA))
  5186. goto fail_unlock_rcu;
  5187. /* this pointer prefers to be pointed to probe response data
  5188. * but is always valid
  5189. */
  5190. ies = rcu_dereference(res->ies);
  5191. if (ies) {
  5192. if (nla_put_u64(msg, NL80211_BSS_TSF, ies->tsf))
  5193. goto fail_unlock_rcu;
  5194. if (ies->len && nla_put(msg, NL80211_BSS_INFORMATION_ELEMENTS,
  5195. ies->len, ies->data))
  5196. goto fail_unlock_rcu;
  5197. }
  5198. /* and this pointer is always (unless driver didn't know) beacon data */
  5199. ies = rcu_dereference(res->beacon_ies);
  5200. if (ies && ies->from_beacon) {
  5201. if (nla_put_u64(msg, NL80211_BSS_BEACON_TSF, ies->tsf))
  5202. goto fail_unlock_rcu;
  5203. if (ies->len && nla_put(msg, NL80211_BSS_BEACON_IES,
  5204. ies->len, ies->data))
  5205. goto fail_unlock_rcu;
  5206. }
  5207. rcu_read_unlock();
  5208. if (res->beacon_interval &&
  5209. nla_put_u16(msg, NL80211_BSS_BEACON_INTERVAL, res->beacon_interval))
  5210. goto nla_put_failure;
  5211. if (nla_put_u16(msg, NL80211_BSS_CAPABILITY, res->capability) ||
  5212. nla_put_u32(msg, NL80211_BSS_FREQUENCY, res->channel->center_freq) ||
  5213. nla_put_u32(msg, NL80211_BSS_CHAN_WIDTH, res->scan_width) ||
  5214. nla_put_u32(msg, NL80211_BSS_SEEN_MS_AGO,
  5215. jiffies_to_msecs(jiffies - intbss->ts)))
  5216. goto nla_put_failure;
  5217. switch (rdev->wiphy.signal_type) {
  5218. case CFG80211_SIGNAL_TYPE_MBM:
  5219. if (nla_put_u32(msg, NL80211_BSS_SIGNAL_MBM, res->signal))
  5220. goto nla_put_failure;
  5221. break;
  5222. case CFG80211_SIGNAL_TYPE_UNSPEC:
  5223. if (nla_put_u8(msg, NL80211_BSS_SIGNAL_UNSPEC, res->signal))
  5224. goto nla_put_failure;
  5225. break;
  5226. default:
  5227. break;
  5228. }
  5229. switch (wdev->iftype) {
  5230. case NL80211_IFTYPE_P2P_CLIENT:
  5231. case NL80211_IFTYPE_STATION:
  5232. if (intbss == wdev->current_bss &&
  5233. nla_put_u32(msg, NL80211_BSS_STATUS,
  5234. NL80211_BSS_STATUS_ASSOCIATED))
  5235. goto nla_put_failure;
  5236. break;
  5237. case NL80211_IFTYPE_ADHOC:
  5238. if (intbss == wdev->current_bss &&
  5239. nla_put_u32(msg, NL80211_BSS_STATUS,
  5240. NL80211_BSS_STATUS_IBSS_JOINED))
  5241. goto nla_put_failure;
  5242. break;
  5243. default:
  5244. break;
  5245. }
  5246. nla_nest_end(msg, bss);
  5247. return genlmsg_end(msg, hdr);
  5248. fail_unlock_rcu:
  5249. rcu_read_unlock();
  5250. nla_put_failure:
  5251. genlmsg_cancel(msg, hdr);
  5252. return -EMSGSIZE;
  5253. }
  5254. static int nl80211_dump_scan(struct sk_buff *skb, struct netlink_callback *cb)
  5255. {
  5256. struct cfg80211_registered_device *rdev;
  5257. struct cfg80211_internal_bss *scan;
  5258. struct wireless_dev *wdev;
  5259. int start = cb->args[2], idx = 0;
  5260. int err;
  5261. err = nl80211_prepare_wdev_dump(skb, cb, &rdev, &wdev);
  5262. if (err)
  5263. return err;
  5264. wdev_lock(wdev);
  5265. spin_lock_bh(&rdev->bss_lock);
  5266. cfg80211_bss_expire(rdev);
  5267. cb->seq = rdev->bss_generation;
  5268. list_for_each_entry(scan, &rdev->bss_list, list) {
  5269. if (++idx <= start)
  5270. continue;
  5271. if (nl80211_send_bss(skb, cb,
  5272. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  5273. rdev, wdev, scan) < 0) {
  5274. idx--;
  5275. break;
  5276. }
  5277. }
  5278. spin_unlock_bh(&rdev->bss_lock);
  5279. wdev_unlock(wdev);
  5280. cb->args[2] = idx;
  5281. nl80211_finish_wdev_dump(rdev);
  5282. return skb->len;
  5283. }
  5284. static int nl80211_send_survey(struct sk_buff *msg, u32 portid, u32 seq,
  5285. int flags, struct net_device *dev,
  5286. struct survey_info *survey)
  5287. {
  5288. void *hdr;
  5289. struct nlattr *infoattr;
  5290. hdr = nl80211hdr_put(msg, portid, seq, flags,
  5291. NL80211_CMD_NEW_SURVEY_RESULTS);
  5292. if (!hdr)
  5293. return -ENOMEM;
  5294. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex))
  5295. goto nla_put_failure;
  5296. infoattr = nla_nest_start(msg, NL80211_ATTR_SURVEY_INFO);
  5297. if (!infoattr)
  5298. goto nla_put_failure;
  5299. if (nla_put_u32(msg, NL80211_SURVEY_INFO_FREQUENCY,
  5300. survey->channel->center_freq))
  5301. goto nla_put_failure;
  5302. if ((survey->filled & SURVEY_INFO_NOISE_DBM) &&
  5303. nla_put_u8(msg, NL80211_SURVEY_INFO_NOISE, survey->noise))
  5304. goto nla_put_failure;
  5305. if ((survey->filled & SURVEY_INFO_IN_USE) &&
  5306. nla_put_flag(msg, NL80211_SURVEY_INFO_IN_USE))
  5307. goto nla_put_failure;
  5308. if ((survey->filled & SURVEY_INFO_CHANNEL_TIME) &&
  5309. nla_put_u64(msg, NL80211_SURVEY_INFO_CHANNEL_TIME,
  5310. survey->channel_time))
  5311. goto nla_put_failure;
  5312. if ((survey->filled & SURVEY_INFO_CHANNEL_TIME_BUSY) &&
  5313. nla_put_u64(msg, NL80211_SURVEY_INFO_CHANNEL_TIME_BUSY,
  5314. survey->channel_time_busy))
  5315. goto nla_put_failure;
  5316. if ((survey->filled & SURVEY_INFO_CHANNEL_TIME_EXT_BUSY) &&
  5317. nla_put_u64(msg, NL80211_SURVEY_INFO_CHANNEL_TIME_EXT_BUSY,
  5318. survey->channel_time_ext_busy))
  5319. goto nla_put_failure;
  5320. if ((survey->filled & SURVEY_INFO_CHANNEL_TIME_RX) &&
  5321. nla_put_u64(msg, NL80211_SURVEY_INFO_CHANNEL_TIME_RX,
  5322. survey->channel_time_rx))
  5323. goto nla_put_failure;
  5324. if ((survey->filled & SURVEY_INFO_CHANNEL_TIME_TX) &&
  5325. nla_put_u64(msg, NL80211_SURVEY_INFO_CHANNEL_TIME_TX,
  5326. survey->channel_time_tx))
  5327. goto nla_put_failure;
  5328. nla_nest_end(msg, infoattr);
  5329. return genlmsg_end(msg, hdr);
  5330. nla_put_failure:
  5331. genlmsg_cancel(msg, hdr);
  5332. return -EMSGSIZE;
  5333. }
  5334. static int nl80211_dump_survey(struct sk_buff *skb,
  5335. struct netlink_callback *cb)
  5336. {
  5337. struct survey_info survey;
  5338. struct cfg80211_registered_device *rdev;
  5339. struct wireless_dev *wdev;
  5340. int survey_idx = cb->args[2];
  5341. int res;
  5342. res = nl80211_prepare_wdev_dump(skb, cb, &rdev, &wdev);
  5343. if (res)
  5344. return res;
  5345. if (!wdev->netdev) {
  5346. res = -EINVAL;
  5347. goto out_err;
  5348. }
  5349. if (!rdev->ops->dump_survey) {
  5350. res = -EOPNOTSUPP;
  5351. goto out_err;
  5352. }
  5353. while (1) {
  5354. struct ieee80211_channel *chan;
  5355. res = rdev_dump_survey(rdev, wdev->netdev, survey_idx, &survey);
  5356. if (res == -ENOENT)
  5357. break;
  5358. if (res)
  5359. goto out_err;
  5360. /* Survey without a channel doesn't make sense */
  5361. if (!survey.channel) {
  5362. res = -EINVAL;
  5363. goto out;
  5364. }
  5365. chan = ieee80211_get_channel(&rdev->wiphy,
  5366. survey.channel->center_freq);
  5367. if (!chan || chan->flags & IEEE80211_CHAN_DISABLED) {
  5368. survey_idx++;
  5369. continue;
  5370. }
  5371. if (nl80211_send_survey(skb,
  5372. NETLINK_CB(cb->skb).portid,
  5373. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  5374. wdev->netdev, &survey) < 0)
  5375. goto out;
  5376. survey_idx++;
  5377. }
  5378. out:
  5379. cb->args[2] = survey_idx;
  5380. res = skb->len;
  5381. out_err:
  5382. nl80211_finish_wdev_dump(rdev);
  5383. return res;
  5384. }
  5385. static bool nl80211_valid_wpa_versions(u32 wpa_versions)
  5386. {
  5387. return !(wpa_versions & ~(NL80211_WPA_VERSION_1 |
  5388. NL80211_WPA_VERSION_2));
  5389. }
  5390. static int nl80211_authenticate(struct sk_buff *skb, struct genl_info *info)
  5391. {
  5392. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5393. struct net_device *dev = info->user_ptr[1];
  5394. struct ieee80211_channel *chan;
  5395. const u8 *bssid, *ssid, *ie = NULL, *sae_data = NULL;
  5396. int err, ssid_len, ie_len = 0, sae_data_len = 0;
  5397. enum nl80211_auth_type auth_type;
  5398. struct key_parse key;
  5399. bool local_state_change;
  5400. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  5401. return -EINVAL;
  5402. if (!info->attrs[NL80211_ATTR_MAC])
  5403. return -EINVAL;
  5404. if (!info->attrs[NL80211_ATTR_AUTH_TYPE])
  5405. return -EINVAL;
  5406. if (!info->attrs[NL80211_ATTR_SSID])
  5407. return -EINVAL;
  5408. if (!info->attrs[NL80211_ATTR_WIPHY_FREQ])
  5409. return -EINVAL;
  5410. err = nl80211_parse_key(info, &key);
  5411. if (err)
  5412. return err;
  5413. if (key.idx >= 0) {
  5414. if (key.type != -1 && key.type != NL80211_KEYTYPE_GROUP)
  5415. return -EINVAL;
  5416. if (!key.p.key || !key.p.key_len)
  5417. return -EINVAL;
  5418. if ((key.p.cipher != WLAN_CIPHER_SUITE_WEP40 ||
  5419. key.p.key_len != WLAN_KEY_LEN_WEP40) &&
  5420. (key.p.cipher != WLAN_CIPHER_SUITE_WEP104 ||
  5421. key.p.key_len != WLAN_KEY_LEN_WEP104))
  5422. return -EINVAL;
  5423. if (key.idx > 4)
  5424. return -EINVAL;
  5425. } else {
  5426. key.p.key_len = 0;
  5427. key.p.key = NULL;
  5428. }
  5429. if (key.idx >= 0) {
  5430. int i;
  5431. bool ok = false;
  5432. for (i = 0; i < rdev->wiphy.n_cipher_suites; i++) {
  5433. if (key.p.cipher == rdev->wiphy.cipher_suites[i]) {
  5434. ok = true;
  5435. break;
  5436. }
  5437. }
  5438. if (!ok)
  5439. return -EINVAL;
  5440. }
  5441. if (!rdev->ops->auth)
  5442. return -EOPNOTSUPP;
  5443. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  5444. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  5445. return -EOPNOTSUPP;
  5446. bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  5447. chan = nl80211_get_valid_chan(&rdev->wiphy,
  5448. info->attrs[NL80211_ATTR_WIPHY_FREQ]);
  5449. if (!chan)
  5450. return -EINVAL;
  5451. ssid = nla_data(info->attrs[NL80211_ATTR_SSID]);
  5452. ssid_len = nla_len(info->attrs[NL80211_ATTR_SSID]);
  5453. if (info->attrs[NL80211_ATTR_IE]) {
  5454. ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  5455. ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  5456. }
  5457. auth_type = nla_get_u32(info->attrs[NL80211_ATTR_AUTH_TYPE]);
  5458. if (!nl80211_valid_auth_type(rdev, auth_type, NL80211_CMD_AUTHENTICATE))
  5459. return -EINVAL;
  5460. if (auth_type == NL80211_AUTHTYPE_SAE &&
  5461. !info->attrs[NL80211_ATTR_SAE_DATA])
  5462. return -EINVAL;
  5463. if (info->attrs[NL80211_ATTR_SAE_DATA]) {
  5464. if (auth_type != NL80211_AUTHTYPE_SAE)
  5465. return -EINVAL;
  5466. sae_data = nla_data(info->attrs[NL80211_ATTR_SAE_DATA]);
  5467. sae_data_len = nla_len(info->attrs[NL80211_ATTR_SAE_DATA]);
  5468. /* need to include at least Auth Transaction and Status Code */
  5469. if (sae_data_len < 4)
  5470. return -EINVAL;
  5471. }
  5472. local_state_change = !!info->attrs[NL80211_ATTR_LOCAL_STATE_CHANGE];
  5473. /*
  5474. * Since we no longer track auth state, ignore
  5475. * requests to only change local state.
  5476. */
  5477. if (local_state_change)
  5478. return 0;
  5479. wdev_lock(dev->ieee80211_ptr);
  5480. err = cfg80211_mlme_auth(rdev, dev, chan, auth_type, bssid,
  5481. ssid, ssid_len, ie, ie_len,
  5482. key.p.key, key.p.key_len, key.idx,
  5483. sae_data, sae_data_len);
  5484. wdev_unlock(dev->ieee80211_ptr);
  5485. return err;
  5486. }
  5487. static int nl80211_crypto_settings(struct cfg80211_registered_device *rdev,
  5488. struct genl_info *info,
  5489. struct cfg80211_crypto_settings *settings,
  5490. int cipher_limit)
  5491. {
  5492. memset(settings, 0, sizeof(*settings));
  5493. settings->control_port = info->attrs[NL80211_ATTR_CONTROL_PORT];
  5494. if (info->attrs[NL80211_ATTR_CONTROL_PORT_ETHERTYPE]) {
  5495. u16 proto;
  5496. proto = nla_get_u16(
  5497. info->attrs[NL80211_ATTR_CONTROL_PORT_ETHERTYPE]);
  5498. settings->control_port_ethertype = cpu_to_be16(proto);
  5499. if (!(rdev->wiphy.flags & WIPHY_FLAG_CONTROL_PORT_PROTOCOL) &&
  5500. proto != ETH_P_PAE)
  5501. return -EINVAL;
  5502. if (info->attrs[NL80211_ATTR_CONTROL_PORT_NO_ENCRYPT])
  5503. settings->control_port_no_encrypt = true;
  5504. } else
  5505. settings->control_port_ethertype = cpu_to_be16(ETH_P_PAE);
  5506. if (info->attrs[NL80211_ATTR_CIPHER_SUITES_PAIRWISE]) {
  5507. void *data;
  5508. int len, i;
  5509. data = nla_data(info->attrs[NL80211_ATTR_CIPHER_SUITES_PAIRWISE]);
  5510. len = nla_len(info->attrs[NL80211_ATTR_CIPHER_SUITES_PAIRWISE]);
  5511. settings->n_ciphers_pairwise = len / sizeof(u32);
  5512. if (len % sizeof(u32))
  5513. return -EINVAL;
  5514. if (settings->n_ciphers_pairwise > cipher_limit)
  5515. return -EINVAL;
  5516. memcpy(settings->ciphers_pairwise, data, len);
  5517. for (i = 0; i < settings->n_ciphers_pairwise; i++)
  5518. if (!cfg80211_supported_cipher_suite(
  5519. &rdev->wiphy,
  5520. settings->ciphers_pairwise[i]))
  5521. return -EINVAL;
  5522. }
  5523. if (info->attrs[NL80211_ATTR_CIPHER_SUITE_GROUP]) {
  5524. settings->cipher_group =
  5525. nla_get_u32(info->attrs[NL80211_ATTR_CIPHER_SUITE_GROUP]);
  5526. if (!cfg80211_supported_cipher_suite(&rdev->wiphy,
  5527. settings->cipher_group))
  5528. return -EINVAL;
  5529. }
  5530. if (info->attrs[NL80211_ATTR_WPA_VERSIONS]) {
  5531. settings->wpa_versions =
  5532. nla_get_u32(info->attrs[NL80211_ATTR_WPA_VERSIONS]);
  5533. if (!nl80211_valid_wpa_versions(settings->wpa_versions))
  5534. return -EINVAL;
  5535. }
  5536. if (info->attrs[NL80211_ATTR_AKM_SUITES]) {
  5537. void *data;
  5538. int len;
  5539. data = nla_data(info->attrs[NL80211_ATTR_AKM_SUITES]);
  5540. len = nla_len(info->attrs[NL80211_ATTR_AKM_SUITES]);
  5541. settings->n_akm_suites = len / sizeof(u32);
  5542. if (len % sizeof(u32))
  5543. return -EINVAL;
  5544. if (settings->n_akm_suites > NL80211_MAX_NR_AKM_SUITES)
  5545. return -EINVAL;
  5546. memcpy(settings->akm_suites, data, len);
  5547. }
  5548. return 0;
  5549. }
  5550. static int nl80211_associate(struct sk_buff *skb, struct genl_info *info)
  5551. {
  5552. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5553. struct net_device *dev = info->user_ptr[1];
  5554. struct ieee80211_channel *chan;
  5555. struct cfg80211_assoc_request req = {};
  5556. const u8 *bssid, *ssid;
  5557. int err, ssid_len = 0;
  5558. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  5559. return -EINVAL;
  5560. if (!info->attrs[NL80211_ATTR_MAC] ||
  5561. !info->attrs[NL80211_ATTR_SSID] ||
  5562. !info->attrs[NL80211_ATTR_WIPHY_FREQ])
  5563. return -EINVAL;
  5564. if (!rdev->ops->assoc)
  5565. return -EOPNOTSUPP;
  5566. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  5567. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  5568. return -EOPNOTSUPP;
  5569. bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  5570. chan = nl80211_get_valid_chan(&rdev->wiphy,
  5571. info->attrs[NL80211_ATTR_WIPHY_FREQ]);
  5572. if (!chan)
  5573. return -EINVAL;
  5574. ssid = nla_data(info->attrs[NL80211_ATTR_SSID]);
  5575. ssid_len = nla_len(info->attrs[NL80211_ATTR_SSID]);
  5576. if (info->attrs[NL80211_ATTR_IE]) {
  5577. req.ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  5578. req.ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  5579. }
  5580. if (info->attrs[NL80211_ATTR_USE_MFP]) {
  5581. enum nl80211_mfp mfp =
  5582. nla_get_u32(info->attrs[NL80211_ATTR_USE_MFP]);
  5583. if (mfp == NL80211_MFP_REQUIRED)
  5584. req.use_mfp = true;
  5585. else if (mfp != NL80211_MFP_NO)
  5586. return -EINVAL;
  5587. }
  5588. if (info->attrs[NL80211_ATTR_PREV_BSSID])
  5589. req.prev_bssid = nla_data(info->attrs[NL80211_ATTR_PREV_BSSID]);
  5590. if (nla_get_flag(info->attrs[NL80211_ATTR_DISABLE_HT]))
  5591. req.flags |= ASSOC_REQ_DISABLE_HT;
  5592. if (info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK])
  5593. memcpy(&req.ht_capa_mask,
  5594. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK]),
  5595. sizeof(req.ht_capa_mask));
  5596. if (info->attrs[NL80211_ATTR_HT_CAPABILITY]) {
  5597. if (!info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK])
  5598. return -EINVAL;
  5599. memcpy(&req.ht_capa,
  5600. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY]),
  5601. sizeof(req.ht_capa));
  5602. }
  5603. if (nla_get_flag(info->attrs[NL80211_ATTR_DISABLE_VHT]))
  5604. req.flags |= ASSOC_REQ_DISABLE_VHT;
  5605. if (info->attrs[NL80211_ATTR_VHT_CAPABILITY_MASK])
  5606. memcpy(&req.vht_capa_mask,
  5607. nla_data(info->attrs[NL80211_ATTR_VHT_CAPABILITY_MASK]),
  5608. sizeof(req.vht_capa_mask));
  5609. if (info->attrs[NL80211_ATTR_VHT_CAPABILITY]) {
  5610. if (!info->attrs[NL80211_ATTR_VHT_CAPABILITY_MASK])
  5611. return -EINVAL;
  5612. memcpy(&req.vht_capa,
  5613. nla_data(info->attrs[NL80211_ATTR_VHT_CAPABILITY]),
  5614. sizeof(req.vht_capa));
  5615. }
  5616. if (nla_get_flag(info->attrs[NL80211_ATTR_USE_RRM])) {
  5617. if (!(rdev->wiphy.features &
  5618. NL80211_FEATURE_DS_PARAM_SET_IE_IN_PROBES) ||
  5619. !(rdev->wiphy.features & NL80211_FEATURE_QUIET))
  5620. return -EINVAL;
  5621. req.flags |= ASSOC_REQ_USE_RRM;
  5622. }
  5623. err = nl80211_crypto_settings(rdev, info, &req.crypto, 1);
  5624. if (!err) {
  5625. wdev_lock(dev->ieee80211_ptr);
  5626. err = cfg80211_mlme_assoc(rdev, dev, chan, bssid,
  5627. ssid, ssid_len, &req);
  5628. wdev_unlock(dev->ieee80211_ptr);
  5629. }
  5630. return err;
  5631. }
  5632. static int nl80211_deauthenticate(struct sk_buff *skb, struct genl_info *info)
  5633. {
  5634. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5635. struct net_device *dev = info->user_ptr[1];
  5636. const u8 *ie = NULL, *bssid;
  5637. int ie_len = 0, err;
  5638. u16 reason_code;
  5639. bool local_state_change;
  5640. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  5641. return -EINVAL;
  5642. if (!info->attrs[NL80211_ATTR_MAC])
  5643. return -EINVAL;
  5644. if (!info->attrs[NL80211_ATTR_REASON_CODE])
  5645. return -EINVAL;
  5646. if (!rdev->ops->deauth)
  5647. return -EOPNOTSUPP;
  5648. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  5649. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  5650. return -EOPNOTSUPP;
  5651. bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  5652. reason_code = nla_get_u16(info->attrs[NL80211_ATTR_REASON_CODE]);
  5653. if (reason_code == 0) {
  5654. /* Reason Code 0 is reserved */
  5655. return -EINVAL;
  5656. }
  5657. if (info->attrs[NL80211_ATTR_IE]) {
  5658. ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  5659. ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  5660. }
  5661. local_state_change = !!info->attrs[NL80211_ATTR_LOCAL_STATE_CHANGE];
  5662. wdev_lock(dev->ieee80211_ptr);
  5663. err = cfg80211_mlme_deauth(rdev, dev, bssid, ie, ie_len, reason_code,
  5664. local_state_change);
  5665. wdev_unlock(dev->ieee80211_ptr);
  5666. return err;
  5667. }
  5668. static int nl80211_disassociate(struct sk_buff *skb, struct genl_info *info)
  5669. {
  5670. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5671. struct net_device *dev = info->user_ptr[1];
  5672. const u8 *ie = NULL, *bssid;
  5673. int ie_len = 0, err;
  5674. u16 reason_code;
  5675. bool local_state_change;
  5676. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  5677. return -EINVAL;
  5678. if (!info->attrs[NL80211_ATTR_MAC])
  5679. return -EINVAL;
  5680. if (!info->attrs[NL80211_ATTR_REASON_CODE])
  5681. return -EINVAL;
  5682. if (!rdev->ops->disassoc)
  5683. return -EOPNOTSUPP;
  5684. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  5685. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  5686. return -EOPNOTSUPP;
  5687. bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  5688. reason_code = nla_get_u16(info->attrs[NL80211_ATTR_REASON_CODE]);
  5689. if (reason_code == 0) {
  5690. /* Reason Code 0 is reserved */
  5691. return -EINVAL;
  5692. }
  5693. if (info->attrs[NL80211_ATTR_IE]) {
  5694. ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  5695. ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  5696. }
  5697. local_state_change = !!info->attrs[NL80211_ATTR_LOCAL_STATE_CHANGE];
  5698. wdev_lock(dev->ieee80211_ptr);
  5699. err = cfg80211_mlme_disassoc(rdev, dev, bssid, ie, ie_len, reason_code,
  5700. local_state_change);
  5701. wdev_unlock(dev->ieee80211_ptr);
  5702. return err;
  5703. }
  5704. static bool
  5705. nl80211_parse_mcast_rate(struct cfg80211_registered_device *rdev,
  5706. int mcast_rate[IEEE80211_NUM_BANDS],
  5707. int rateval)
  5708. {
  5709. struct wiphy *wiphy = &rdev->wiphy;
  5710. bool found = false;
  5711. int band, i;
  5712. for (band = 0; band < IEEE80211_NUM_BANDS; band++) {
  5713. struct ieee80211_supported_band *sband;
  5714. sband = wiphy->bands[band];
  5715. if (!sband)
  5716. continue;
  5717. for (i = 0; i < sband->n_bitrates; i++) {
  5718. if (sband->bitrates[i].bitrate == rateval) {
  5719. mcast_rate[band] = i + 1;
  5720. found = true;
  5721. break;
  5722. }
  5723. }
  5724. }
  5725. return found;
  5726. }
  5727. static int nl80211_join_ibss(struct sk_buff *skb, struct genl_info *info)
  5728. {
  5729. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5730. struct net_device *dev = info->user_ptr[1];
  5731. struct cfg80211_ibss_params ibss;
  5732. struct wiphy *wiphy;
  5733. struct cfg80211_cached_keys *connkeys = NULL;
  5734. int err;
  5735. memset(&ibss, 0, sizeof(ibss));
  5736. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  5737. return -EINVAL;
  5738. if (!info->attrs[NL80211_ATTR_SSID] ||
  5739. !nla_len(info->attrs[NL80211_ATTR_SSID]))
  5740. return -EINVAL;
  5741. ibss.beacon_interval = 100;
  5742. if (info->attrs[NL80211_ATTR_BEACON_INTERVAL]) {
  5743. ibss.beacon_interval =
  5744. nla_get_u32(info->attrs[NL80211_ATTR_BEACON_INTERVAL]);
  5745. if (ibss.beacon_interval < 1 || ibss.beacon_interval > 10000)
  5746. return -EINVAL;
  5747. }
  5748. if (!rdev->ops->join_ibss)
  5749. return -EOPNOTSUPP;
  5750. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_ADHOC)
  5751. return -EOPNOTSUPP;
  5752. wiphy = &rdev->wiphy;
  5753. if (info->attrs[NL80211_ATTR_MAC]) {
  5754. ibss.bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  5755. if (!is_valid_ether_addr(ibss.bssid))
  5756. return -EINVAL;
  5757. }
  5758. ibss.ssid = nla_data(info->attrs[NL80211_ATTR_SSID]);
  5759. ibss.ssid_len = nla_len(info->attrs[NL80211_ATTR_SSID]);
  5760. if (info->attrs[NL80211_ATTR_IE]) {
  5761. ibss.ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  5762. ibss.ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  5763. }
  5764. err = nl80211_parse_chandef(rdev, info, &ibss.chandef);
  5765. if (err)
  5766. return err;
  5767. if (!cfg80211_reg_can_beacon(&rdev->wiphy, &ibss.chandef,
  5768. NL80211_IFTYPE_ADHOC))
  5769. return -EINVAL;
  5770. switch (ibss.chandef.width) {
  5771. case NL80211_CHAN_WIDTH_5:
  5772. case NL80211_CHAN_WIDTH_10:
  5773. case NL80211_CHAN_WIDTH_20_NOHT:
  5774. break;
  5775. case NL80211_CHAN_WIDTH_20:
  5776. case NL80211_CHAN_WIDTH_40:
  5777. if (rdev->wiphy.features & NL80211_FEATURE_HT_IBSS)
  5778. break;
  5779. default:
  5780. return -EINVAL;
  5781. }
  5782. ibss.channel_fixed = !!info->attrs[NL80211_ATTR_FREQ_FIXED];
  5783. ibss.privacy = !!info->attrs[NL80211_ATTR_PRIVACY];
  5784. if (info->attrs[NL80211_ATTR_BSS_BASIC_RATES]) {
  5785. u8 *rates =
  5786. nla_data(info->attrs[NL80211_ATTR_BSS_BASIC_RATES]);
  5787. int n_rates =
  5788. nla_len(info->attrs[NL80211_ATTR_BSS_BASIC_RATES]);
  5789. struct ieee80211_supported_band *sband =
  5790. wiphy->bands[ibss.chandef.chan->band];
  5791. err = ieee80211_get_ratemask(sband, rates, n_rates,
  5792. &ibss.basic_rates);
  5793. if (err)
  5794. return err;
  5795. }
  5796. if (info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK])
  5797. memcpy(&ibss.ht_capa_mask,
  5798. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK]),
  5799. sizeof(ibss.ht_capa_mask));
  5800. if (info->attrs[NL80211_ATTR_HT_CAPABILITY]) {
  5801. if (!info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK])
  5802. return -EINVAL;
  5803. memcpy(&ibss.ht_capa,
  5804. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY]),
  5805. sizeof(ibss.ht_capa));
  5806. }
  5807. if (info->attrs[NL80211_ATTR_MCAST_RATE] &&
  5808. !nl80211_parse_mcast_rate(rdev, ibss.mcast_rate,
  5809. nla_get_u32(info->attrs[NL80211_ATTR_MCAST_RATE])))
  5810. return -EINVAL;
  5811. if (ibss.privacy && info->attrs[NL80211_ATTR_KEYS]) {
  5812. bool no_ht = false;
  5813. connkeys = nl80211_parse_connkeys(rdev,
  5814. info->attrs[NL80211_ATTR_KEYS],
  5815. &no_ht);
  5816. if (IS_ERR(connkeys))
  5817. return PTR_ERR(connkeys);
  5818. if ((ibss.chandef.width != NL80211_CHAN_WIDTH_20_NOHT) &&
  5819. no_ht) {
  5820. kfree(connkeys);
  5821. return -EINVAL;
  5822. }
  5823. }
  5824. ibss.control_port =
  5825. nla_get_flag(info->attrs[NL80211_ATTR_CONTROL_PORT]);
  5826. ibss.userspace_handles_dfs =
  5827. nla_get_flag(info->attrs[NL80211_ATTR_HANDLE_DFS]);
  5828. err = cfg80211_join_ibss(rdev, dev, &ibss, connkeys);
  5829. if (err)
  5830. kzfree(connkeys);
  5831. return err;
  5832. }
  5833. static int nl80211_leave_ibss(struct sk_buff *skb, struct genl_info *info)
  5834. {
  5835. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5836. struct net_device *dev = info->user_ptr[1];
  5837. if (!rdev->ops->leave_ibss)
  5838. return -EOPNOTSUPP;
  5839. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_ADHOC)
  5840. return -EOPNOTSUPP;
  5841. return cfg80211_leave_ibss(rdev, dev, false);
  5842. }
  5843. static int nl80211_set_mcast_rate(struct sk_buff *skb, struct genl_info *info)
  5844. {
  5845. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5846. struct net_device *dev = info->user_ptr[1];
  5847. int mcast_rate[IEEE80211_NUM_BANDS];
  5848. u32 nla_rate;
  5849. int err;
  5850. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_ADHOC &&
  5851. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_MESH_POINT)
  5852. return -EOPNOTSUPP;
  5853. if (!rdev->ops->set_mcast_rate)
  5854. return -EOPNOTSUPP;
  5855. memset(mcast_rate, 0, sizeof(mcast_rate));
  5856. if (!info->attrs[NL80211_ATTR_MCAST_RATE])
  5857. return -EINVAL;
  5858. nla_rate = nla_get_u32(info->attrs[NL80211_ATTR_MCAST_RATE]);
  5859. if (!nl80211_parse_mcast_rate(rdev, mcast_rate, nla_rate))
  5860. return -EINVAL;
  5861. err = rdev->ops->set_mcast_rate(&rdev->wiphy, dev, mcast_rate);
  5862. return err;
  5863. }
  5864. static struct sk_buff *
  5865. __cfg80211_alloc_vendor_skb(struct cfg80211_registered_device *rdev,
  5866. int approxlen, u32 portid, u32 seq,
  5867. enum nl80211_commands cmd,
  5868. enum nl80211_attrs attr,
  5869. const struct nl80211_vendor_cmd_info *info,
  5870. gfp_t gfp)
  5871. {
  5872. struct sk_buff *skb;
  5873. void *hdr;
  5874. struct nlattr *data;
  5875. skb = nlmsg_new(approxlen + 100, gfp);
  5876. if (!skb)
  5877. return NULL;
  5878. hdr = nl80211hdr_put(skb, portid, seq, 0, cmd);
  5879. if (!hdr) {
  5880. kfree_skb(skb);
  5881. return NULL;
  5882. }
  5883. if (nla_put_u32(skb, NL80211_ATTR_WIPHY, rdev->wiphy_idx))
  5884. goto nla_put_failure;
  5885. if (info) {
  5886. if (nla_put_u32(skb, NL80211_ATTR_VENDOR_ID,
  5887. info->vendor_id))
  5888. goto nla_put_failure;
  5889. if (nla_put_u32(skb, NL80211_ATTR_VENDOR_SUBCMD,
  5890. info->subcmd))
  5891. goto nla_put_failure;
  5892. }
  5893. data = nla_nest_start(skb, attr);
  5894. ((void **)skb->cb)[0] = rdev;
  5895. ((void **)skb->cb)[1] = hdr;
  5896. ((void **)skb->cb)[2] = data;
  5897. return skb;
  5898. nla_put_failure:
  5899. kfree_skb(skb);
  5900. return NULL;
  5901. }
  5902. struct sk_buff *__cfg80211_alloc_event_skb(struct wiphy *wiphy,
  5903. enum nl80211_commands cmd,
  5904. enum nl80211_attrs attr,
  5905. int vendor_event_idx,
  5906. int approxlen, gfp_t gfp)
  5907. {
  5908. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  5909. const struct nl80211_vendor_cmd_info *info;
  5910. switch (cmd) {
  5911. case NL80211_CMD_TESTMODE:
  5912. if (WARN_ON(vendor_event_idx != -1))
  5913. return NULL;
  5914. info = NULL;
  5915. break;
  5916. case NL80211_CMD_VENDOR:
  5917. if (WARN_ON(vendor_event_idx < 0 ||
  5918. vendor_event_idx >= wiphy->n_vendor_events))
  5919. return NULL;
  5920. info = &wiphy->vendor_events[vendor_event_idx];
  5921. break;
  5922. default:
  5923. WARN_ON(1);
  5924. return NULL;
  5925. }
  5926. return __cfg80211_alloc_vendor_skb(rdev, approxlen, 0, 0,
  5927. cmd, attr, info, gfp);
  5928. }
  5929. EXPORT_SYMBOL(__cfg80211_alloc_event_skb);
  5930. void __cfg80211_send_event_skb(struct sk_buff *skb, gfp_t gfp)
  5931. {
  5932. struct cfg80211_registered_device *rdev = ((void **)skb->cb)[0];
  5933. void *hdr = ((void **)skb->cb)[1];
  5934. struct nlattr *data = ((void **)skb->cb)[2];
  5935. enum nl80211_multicast_groups mcgrp = NL80211_MCGRP_TESTMODE;
  5936. /* clear CB data for netlink core to own from now on */
  5937. memset(skb->cb, 0, sizeof(skb->cb));
  5938. nla_nest_end(skb, data);
  5939. genlmsg_end(skb, hdr);
  5940. if (data->nla_type == NL80211_ATTR_VENDOR_DATA)
  5941. mcgrp = NL80211_MCGRP_VENDOR;
  5942. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), skb, 0,
  5943. mcgrp, gfp);
  5944. }
  5945. EXPORT_SYMBOL(__cfg80211_send_event_skb);
  5946. #ifdef CONFIG_NL80211_TESTMODE
  5947. static int nl80211_testmode_do(struct sk_buff *skb, struct genl_info *info)
  5948. {
  5949. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  5950. struct wireless_dev *wdev =
  5951. __cfg80211_wdev_from_attrs(genl_info_net(info), info->attrs);
  5952. int err;
  5953. if (!rdev->ops->testmode_cmd)
  5954. return -EOPNOTSUPP;
  5955. if (IS_ERR(wdev)) {
  5956. err = PTR_ERR(wdev);
  5957. if (err != -EINVAL)
  5958. return err;
  5959. wdev = NULL;
  5960. } else if (wdev->wiphy != &rdev->wiphy) {
  5961. return -EINVAL;
  5962. }
  5963. if (!info->attrs[NL80211_ATTR_TESTDATA])
  5964. return -EINVAL;
  5965. rdev->cur_cmd_info = info;
  5966. err = rdev_testmode_cmd(rdev, wdev,
  5967. nla_data(info->attrs[NL80211_ATTR_TESTDATA]),
  5968. nla_len(info->attrs[NL80211_ATTR_TESTDATA]));
  5969. rdev->cur_cmd_info = NULL;
  5970. return err;
  5971. }
  5972. static int nl80211_testmode_dump(struct sk_buff *skb,
  5973. struct netlink_callback *cb)
  5974. {
  5975. struct cfg80211_registered_device *rdev;
  5976. int err;
  5977. long phy_idx;
  5978. void *data = NULL;
  5979. int data_len = 0;
  5980. rtnl_lock();
  5981. if (cb->args[0]) {
  5982. /*
  5983. * 0 is a valid index, but not valid for args[0],
  5984. * so we need to offset by 1.
  5985. */
  5986. phy_idx = cb->args[0] - 1;
  5987. } else {
  5988. err = nlmsg_parse(cb->nlh, GENL_HDRLEN + nl80211_fam.hdrsize,
  5989. nl80211_fam.attrbuf, nl80211_fam.maxattr,
  5990. nl80211_policy);
  5991. if (err)
  5992. goto out_err;
  5993. rdev = __cfg80211_rdev_from_attrs(sock_net(skb->sk),
  5994. nl80211_fam.attrbuf);
  5995. if (IS_ERR(rdev)) {
  5996. err = PTR_ERR(rdev);
  5997. goto out_err;
  5998. }
  5999. phy_idx = rdev->wiphy_idx;
  6000. rdev = NULL;
  6001. if (nl80211_fam.attrbuf[NL80211_ATTR_TESTDATA])
  6002. cb->args[1] =
  6003. (long)nl80211_fam.attrbuf[NL80211_ATTR_TESTDATA];
  6004. }
  6005. if (cb->args[1]) {
  6006. data = nla_data((void *)cb->args[1]);
  6007. data_len = nla_len((void *)cb->args[1]);
  6008. }
  6009. rdev = cfg80211_rdev_by_wiphy_idx(phy_idx);
  6010. if (!rdev) {
  6011. err = -ENOENT;
  6012. goto out_err;
  6013. }
  6014. if (!rdev->ops->testmode_dump) {
  6015. err = -EOPNOTSUPP;
  6016. goto out_err;
  6017. }
  6018. while (1) {
  6019. void *hdr = nl80211hdr_put(skb, NETLINK_CB(cb->skb).portid,
  6020. cb->nlh->nlmsg_seq, NLM_F_MULTI,
  6021. NL80211_CMD_TESTMODE);
  6022. struct nlattr *tmdata;
  6023. if (!hdr)
  6024. break;
  6025. if (nla_put_u32(skb, NL80211_ATTR_WIPHY, phy_idx)) {
  6026. genlmsg_cancel(skb, hdr);
  6027. break;
  6028. }
  6029. tmdata = nla_nest_start(skb, NL80211_ATTR_TESTDATA);
  6030. if (!tmdata) {
  6031. genlmsg_cancel(skb, hdr);
  6032. break;
  6033. }
  6034. err = rdev_testmode_dump(rdev, skb, cb, data, data_len);
  6035. nla_nest_end(skb, tmdata);
  6036. if (err == -ENOBUFS || err == -ENOENT) {
  6037. genlmsg_cancel(skb, hdr);
  6038. break;
  6039. } else if (err) {
  6040. genlmsg_cancel(skb, hdr);
  6041. goto out_err;
  6042. }
  6043. genlmsg_end(skb, hdr);
  6044. }
  6045. err = skb->len;
  6046. /* see above */
  6047. cb->args[0] = phy_idx + 1;
  6048. out_err:
  6049. rtnl_unlock();
  6050. return err;
  6051. }
  6052. #endif
  6053. static int nl80211_connect(struct sk_buff *skb, struct genl_info *info)
  6054. {
  6055. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6056. struct net_device *dev = info->user_ptr[1];
  6057. struct cfg80211_connect_params connect;
  6058. struct wiphy *wiphy;
  6059. struct cfg80211_cached_keys *connkeys = NULL;
  6060. int err;
  6061. memset(&connect, 0, sizeof(connect));
  6062. if (!is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  6063. return -EINVAL;
  6064. if (!info->attrs[NL80211_ATTR_SSID] ||
  6065. !nla_len(info->attrs[NL80211_ATTR_SSID]))
  6066. return -EINVAL;
  6067. if (info->attrs[NL80211_ATTR_AUTH_TYPE]) {
  6068. connect.auth_type =
  6069. nla_get_u32(info->attrs[NL80211_ATTR_AUTH_TYPE]);
  6070. if (!nl80211_valid_auth_type(rdev, connect.auth_type,
  6071. NL80211_CMD_CONNECT))
  6072. return -EINVAL;
  6073. } else
  6074. connect.auth_type = NL80211_AUTHTYPE_AUTOMATIC;
  6075. connect.privacy = info->attrs[NL80211_ATTR_PRIVACY];
  6076. err = nl80211_crypto_settings(rdev, info, &connect.crypto,
  6077. NL80211_MAX_NR_CIPHER_SUITES);
  6078. if (err)
  6079. return err;
  6080. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  6081. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  6082. return -EOPNOTSUPP;
  6083. wiphy = &rdev->wiphy;
  6084. connect.bg_scan_period = -1;
  6085. if (info->attrs[NL80211_ATTR_BG_SCAN_PERIOD] &&
  6086. (wiphy->flags & WIPHY_FLAG_SUPPORTS_FW_ROAM)) {
  6087. connect.bg_scan_period =
  6088. nla_get_u16(info->attrs[NL80211_ATTR_BG_SCAN_PERIOD]);
  6089. }
  6090. if (info->attrs[NL80211_ATTR_MAC])
  6091. connect.bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  6092. else if (info->attrs[NL80211_ATTR_MAC_HINT])
  6093. connect.bssid_hint =
  6094. nla_data(info->attrs[NL80211_ATTR_MAC_HINT]);
  6095. connect.ssid = nla_data(info->attrs[NL80211_ATTR_SSID]);
  6096. connect.ssid_len = nla_len(info->attrs[NL80211_ATTR_SSID]);
  6097. if (info->attrs[NL80211_ATTR_IE]) {
  6098. connect.ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  6099. connect.ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  6100. }
  6101. if (info->attrs[NL80211_ATTR_USE_MFP]) {
  6102. connect.mfp = nla_get_u32(info->attrs[NL80211_ATTR_USE_MFP]);
  6103. if (connect.mfp != NL80211_MFP_REQUIRED &&
  6104. connect.mfp != NL80211_MFP_NO)
  6105. return -EINVAL;
  6106. } else {
  6107. connect.mfp = NL80211_MFP_NO;
  6108. }
  6109. if (info->attrs[NL80211_ATTR_WIPHY_FREQ]) {
  6110. connect.channel = nl80211_get_valid_chan(
  6111. wiphy, info->attrs[NL80211_ATTR_WIPHY_FREQ]);
  6112. if (!connect.channel)
  6113. return -EINVAL;
  6114. } else if (info->attrs[NL80211_ATTR_WIPHY_FREQ_HINT]) {
  6115. connect.channel_hint = nl80211_get_valid_chan(
  6116. wiphy, info->attrs[NL80211_ATTR_WIPHY_FREQ_HINT]);
  6117. if (!connect.channel_hint)
  6118. return -EINVAL;
  6119. }
  6120. if (connect.privacy && info->attrs[NL80211_ATTR_KEYS]) {
  6121. connkeys = nl80211_parse_connkeys(rdev,
  6122. info->attrs[NL80211_ATTR_KEYS], NULL);
  6123. if (IS_ERR(connkeys))
  6124. return PTR_ERR(connkeys);
  6125. }
  6126. if (nla_get_flag(info->attrs[NL80211_ATTR_DISABLE_HT]))
  6127. connect.flags |= ASSOC_REQ_DISABLE_HT;
  6128. if (info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK])
  6129. memcpy(&connect.ht_capa_mask,
  6130. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK]),
  6131. sizeof(connect.ht_capa_mask));
  6132. if (info->attrs[NL80211_ATTR_HT_CAPABILITY]) {
  6133. if (!info->attrs[NL80211_ATTR_HT_CAPABILITY_MASK]) {
  6134. kzfree(connkeys);
  6135. return -EINVAL;
  6136. }
  6137. memcpy(&connect.ht_capa,
  6138. nla_data(info->attrs[NL80211_ATTR_HT_CAPABILITY]),
  6139. sizeof(connect.ht_capa));
  6140. }
  6141. if (nla_get_flag(info->attrs[NL80211_ATTR_DISABLE_VHT]))
  6142. connect.flags |= ASSOC_REQ_DISABLE_VHT;
  6143. if (info->attrs[NL80211_ATTR_VHT_CAPABILITY_MASK])
  6144. memcpy(&connect.vht_capa_mask,
  6145. nla_data(info->attrs[NL80211_ATTR_VHT_CAPABILITY_MASK]),
  6146. sizeof(connect.vht_capa_mask));
  6147. if (info->attrs[NL80211_ATTR_VHT_CAPABILITY]) {
  6148. if (!info->attrs[NL80211_ATTR_VHT_CAPABILITY_MASK]) {
  6149. kzfree(connkeys);
  6150. return -EINVAL;
  6151. }
  6152. memcpy(&connect.vht_capa,
  6153. nla_data(info->attrs[NL80211_ATTR_VHT_CAPABILITY]),
  6154. sizeof(connect.vht_capa));
  6155. }
  6156. if (nla_get_flag(info->attrs[NL80211_ATTR_USE_RRM])) {
  6157. if (!(rdev->wiphy.features &
  6158. NL80211_FEATURE_DS_PARAM_SET_IE_IN_PROBES) ||
  6159. !(rdev->wiphy.features & NL80211_FEATURE_QUIET))
  6160. return -EINVAL;
  6161. connect.flags |= ASSOC_REQ_USE_RRM;
  6162. }
  6163. wdev_lock(dev->ieee80211_ptr);
  6164. err = cfg80211_connect(rdev, dev, &connect, connkeys, NULL);
  6165. wdev_unlock(dev->ieee80211_ptr);
  6166. if (err)
  6167. kzfree(connkeys);
  6168. return err;
  6169. }
  6170. static int nl80211_disconnect(struct sk_buff *skb, struct genl_info *info)
  6171. {
  6172. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6173. struct net_device *dev = info->user_ptr[1];
  6174. u16 reason;
  6175. int ret;
  6176. if (!info->attrs[NL80211_ATTR_REASON_CODE])
  6177. reason = WLAN_REASON_DEAUTH_LEAVING;
  6178. else
  6179. reason = nla_get_u16(info->attrs[NL80211_ATTR_REASON_CODE]);
  6180. if (reason == 0)
  6181. return -EINVAL;
  6182. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  6183. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  6184. return -EOPNOTSUPP;
  6185. wdev_lock(dev->ieee80211_ptr);
  6186. ret = cfg80211_disconnect(rdev, dev, reason, true);
  6187. wdev_unlock(dev->ieee80211_ptr);
  6188. return ret;
  6189. }
  6190. static int nl80211_wiphy_netns(struct sk_buff *skb, struct genl_info *info)
  6191. {
  6192. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6193. struct net *net;
  6194. int err;
  6195. u32 pid;
  6196. if (!info->attrs[NL80211_ATTR_PID])
  6197. return -EINVAL;
  6198. pid = nla_get_u32(info->attrs[NL80211_ATTR_PID]);
  6199. net = get_net_ns_by_pid(pid);
  6200. if (IS_ERR(net))
  6201. return PTR_ERR(net);
  6202. err = 0;
  6203. /* check if anything to do */
  6204. if (!net_eq(wiphy_net(&rdev->wiphy), net))
  6205. err = cfg80211_switch_netns(rdev, net);
  6206. put_net(net);
  6207. return err;
  6208. }
  6209. static int nl80211_setdel_pmksa(struct sk_buff *skb, struct genl_info *info)
  6210. {
  6211. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6212. int (*rdev_ops)(struct wiphy *wiphy, struct net_device *dev,
  6213. struct cfg80211_pmksa *pmksa) = NULL;
  6214. struct net_device *dev = info->user_ptr[1];
  6215. struct cfg80211_pmksa pmksa;
  6216. memset(&pmksa, 0, sizeof(struct cfg80211_pmksa));
  6217. if (!info->attrs[NL80211_ATTR_MAC])
  6218. return -EINVAL;
  6219. if (!info->attrs[NL80211_ATTR_PMKID])
  6220. return -EINVAL;
  6221. pmksa.pmkid = nla_data(info->attrs[NL80211_ATTR_PMKID]);
  6222. pmksa.bssid = nla_data(info->attrs[NL80211_ATTR_MAC]);
  6223. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  6224. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  6225. return -EOPNOTSUPP;
  6226. switch (info->genlhdr->cmd) {
  6227. case NL80211_CMD_SET_PMKSA:
  6228. rdev_ops = rdev->ops->set_pmksa;
  6229. break;
  6230. case NL80211_CMD_DEL_PMKSA:
  6231. rdev_ops = rdev->ops->del_pmksa;
  6232. break;
  6233. default:
  6234. WARN_ON(1);
  6235. break;
  6236. }
  6237. if (!rdev_ops)
  6238. return -EOPNOTSUPP;
  6239. return rdev_ops(&rdev->wiphy, dev, &pmksa);
  6240. }
  6241. static int nl80211_flush_pmksa(struct sk_buff *skb, struct genl_info *info)
  6242. {
  6243. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6244. struct net_device *dev = info->user_ptr[1];
  6245. if (dev->ieee80211_ptr->iftype != NL80211_IFTYPE_STATION &&
  6246. dev->ieee80211_ptr->iftype != NL80211_IFTYPE_P2P_CLIENT)
  6247. return -EOPNOTSUPP;
  6248. if (!rdev->ops->flush_pmksa)
  6249. return -EOPNOTSUPP;
  6250. return rdev_flush_pmksa(rdev, dev);
  6251. }
  6252. static int nl80211_tdls_mgmt(struct sk_buff *skb, struct genl_info *info)
  6253. {
  6254. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6255. struct net_device *dev = info->user_ptr[1];
  6256. u8 action_code, dialog_token;
  6257. u32 peer_capability = 0;
  6258. u16 status_code;
  6259. u8 *peer;
  6260. bool initiator;
  6261. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_TDLS) ||
  6262. !rdev->ops->tdls_mgmt)
  6263. return -EOPNOTSUPP;
  6264. if (!info->attrs[NL80211_ATTR_TDLS_ACTION] ||
  6265. !info->attrs[NL80211_ATTR_STATUS_CODE] ||
  6266. !info->attrs[NL80211_ATTR_TDLS_DIALOG_TOKEN] ||
  6267. !info->attrs[NL80211_ATTR_IE] ||
  6268. !info->attrs[NL80211_ATTR_MAC])
  6269. return -EINVAL;
  6270. peer = nla_data(info->attrs[NL80211_ATTR_MAC]);
  6271. action_code = nla_get_u8(info->attrs[NL80211_ATTR_TDLS_ACTION]);
  6272. status_code = nla_get_u16(info->attrs[NL80211_ATTR_STATUS_CODE]);
  6273. dialog_token = nla_get_u8(info->attrs[NL80211_ATTR_TDLS_DIALOG_TOKEN]);
  6274. initiator = nla_get_flag(info->attrs[NL80211_ATTR_TDLS_INITIATOR]);
  6275. if (info->attrs[NL80211_ATTR_TDLS_PEER_CAPABILITY])
  6276. peer_capability =
  6277. nla_get_u32(info->attrs[NL80211_ATTR_TDLS_PEER_CAPABILITY]);
  6278. return rdev_tdls_mgmt(rdev, dev, peer, action_code,
  6279. dialog_token, status_code, peer_capability,
  6280. initiator,
  6281. nla_data(info->attrs[NL80211_ATTR_IE]),
  6282. nla_len(info->attrs[NL80211_ATTR_IE]));
  6283. }
  6284. static int nl80211_tdls_oper(struct sk_buff *skb, struct genl_info *info)
  6285. {
  6286. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6287. struct net_device *dev = info->user_ptr[1];
  6288. enum nl80211_tdls_operation operation;
  6289. u8 *peer;
  6290. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_TDLS) ||
  6291. !rdev->ops->tdls_oper)
  6292. return -EOPNOTSUPP;
  6293. if (!info->attrs[NL80211_ATTR_TDLS_OPERATION] ||
  6294. !info->attrs[NL80211_ATTR_MAC])
  6295. return -EINVAL;
  6296. operation = nla_get_u8(info->attrs[NL80211_ATTR_TDLS_OPERATION]);
  6297. peer = nla_data(info->attrs[NL80211_ATTR_MAC]);
  6298. return rdev_tdls_oper(rdev, dev, peer, operation);
  6299. }
  6300. static int nl80211_remain_on_channel(struct sk_buff *skb,
  6301. struct genl_info *info)
  6302. {
  6303. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6304. struct wireless_dev *wdev = info->user_ptr[1];
  6305. struct cfg80211_chan_def chandef;
  6306. struct sk_buff *msg;
  6307. void *hdr;
  6308. u64 cookie;
  6309. u32 duration;
  6310. int err;
  6311. if (!info->attrs[NL80211_ATTR_WIPHY_FREQ] ||
  6312. !info->attrs[NL80211_ATTR_DURATION])
  6313. return -EINVAL;
  6314. duration = nla_get_u32(info->attrs[NL80211_ATTR_DURATION]);
  6315. if (!rdev->ops->remain_on_channel ||
  6316. !(rdev->wiphy.flags & WIPHY_FLAG_HAS_REMAIN_ON_CHANNEL))
  6317. return -EOPNOTSUPP;
  6318. /*
  6319. * We should be on that channel for at least a minimum amount of
  6320. * time (10ms) but no longer than the driver supports.
  6321. */
  6322. if (duration < NL80211_MIN_REMAIN_ON_CHANNEL_TIME ||
  6323. duration > rdev->wiphy.max_remain_on_channel_duration)
  6324. return -EINVAL;
  6325. err = nl80211_parse_chandef(rdev, info, &chandef);
  6326. if (err)
  6327. return err;
  6328. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  6329. if (!msg)
  6330. return -ENOMEM;
  6331. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  6332. NL80211_CMD_REMAIN_ON_CHANNEL);
  6333. if (!hdr) {
  6334. err = -ENOBUFS;
  6335. goto free_msg;
  6336. }
  6337. err = rdev_remain_on_channel(rdev, wdev, chandef.chan,
  6338. duration, &cookie);
  6339. if (err)
  6340. goto free_msg;
  6341. if (nla_put_u64(msg, NL80211_ATTR_COOKIE, cookie))
  6342. goto nla_put_failure;
  6343. genlmsg_end(msg, hdr);
  6344. return genlmsg_reply(msg, info);
  6345. nla_put_failure:
  6346. err = -ENOBUFS;
  6347. free_msg:
  6348. nlmsg_free(msg);
  6349. return err;
  6350. }
  6351. static int nl80211_cancel_remain_on_channel(struct sk_buff *skb,
  6352. struct genl_info *info)
  6353. {
  6354. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6355. struct wireless_dev *wdev = info->user_ptr[1];
  6356. u64 cookie;
  6357. if (!info->attrs[NL80211_ATTR_COOKIE])
  6358. return -EINVAL;
  6359. if (!rdev->ops->cancel_remain_on_channel)
  6360. return -EOPNOTSUPP;
  6361. cookie = nla_get_u64(info->attrs[NL80211_ATTR_COOKIE]);
  6362. return rdev_cancel_remain_on_channel(rdev, wdev, cookie);
  6363. }
  6364. static u32 rateset_to_mask(struct ieee80211_supported_band *sband,
  6365. u8 *rates, u8 rates_len)
  6366. {
  6367. u8 i;
  6368. u32 mask = 0;
  6369. for (i = 0; i < rates_len; i++) {
  6370. int rate = (rates[i] & 0x7f) * 5;
  6371. int ridx;
  6372. for (ridx = 0; ridx < sband->n_bitrates; ridx++) {
  6373. struct ieee80211_rate *srate =
  6374. &sband->bitrates[ridx];
  6375. if (rate == srate->bitrate) {
  6376. mask |= 1 << ridx;
  6377. break;
  6378. }
  6379. }
  6380. if (ridx == sband->n_bitrates)
  6381. return 0; /* rate not found */
  6382. }
  6383. return mask;
  6384. }
  6385. static bool ht_rateset_to_mask(struct ieee80211_supported_band *sband,
  6386. u8 *rates, u8 rates_len,
  6387. u8 mcs[IEEE80211_HT_MCS_MASK_LEN])
  6388. {
  6389. u8 i;
  6390. memset(mcs, 0, IEEE80211_HT_MCS_MASK_LEN);
  6391. for (i = 0; i < rates_len; i++) {
  6392. int ridx, rbit;
  6393. ridx = rates[i] / 8;
  6394. rbit = BIT(rates[i] % 8);
  6395. /* check validity */
  6396. if ((ridx < 0) || (ridx >= IEEE80211_HT_MCS_MASK_LEN))
  6397. return false;
  6398. /* check availability */
  6399. if (sband->ht_cap.mcs.rx_mask[ridx] & rbit)
  6400. mcs[ridx] |= rbit;
  6401. else
  6402. return false;
  6403. }
  6404. return true;
  6405. }
  6406. static u16 vht_mcs_map_to_mcs_mask(u8 vht_mcs_map)
  6407. {
  6408. u16 mcs_mask = 0;
  6409. switch (vht_mcs_map) {
  6410. case IEEE80211_VHT_MCS_NOT_SUPPORTED:
  6411. break;
  6412. case IEEE80211_VHT_MCS_SUPPORT_0_7:
  6413. mcs_mask = 0x00FF;
  6414. break;
  6415. case IEEE80211_VHT_MCS_SUPPORT_0_8:
  6416. mcs_mask = 0x01FF;
  6417. break;
  6418. case IEEE80211_VHT_MCS_SUPPORT_0_9:
  6419. mcs_mask = 0x03FF;
  6420. break;
  6421. default:
  6422. break;
  6423. }
  6424. return mcs_mask;
  6425. }
  6426. static void vht_build_mcs_mask(u16 vht_mcs_map,
  6427. u16 vht_mcs_mask[NL80211_VHT_NSS_MAX])
  6428. {
  6429. u8 nss;
  6430. for (nss = 0; nss < NL80211_VHT_NSS_MAX; nss++) {
  6431. vht_mcs_mask[nss] = vht_mcs_map_to_mcs_mask(vht_mcs_map & 0x03);
  6432. vht_mcs_map >>= 2;
  6433. }
  6434. }
  6435. static bool vht_set_mcs_mask(struct ieee80211_supported_band *sband,
  6436. struct nl80211_txrate_vht *txrate,
  6437. u16 mcs[NL80211_VHT_NSS_MAX])
  6438. {
  6439. u16 tx_mcs_map = le16_to_cpu(sband->vht_cap.vht_mcs.tx_mcs_map);
  6440. u16 tx_mcs_mask[NL80211_VHT_NSS_MAX] = {};
  6441. u8 i;
  6442. if (!sband->vht_cap.vht_supported)
  6443. return false;
  6444. memset(mcs, 0, sizeof(u16) * NL80211_VHT_NSS_MAX);
  6445. /* Build vht_mcs_mask from VHT capabilities */
  6446. vht_build_mcs_mask(tx_mcs_map, tx_mcs_mask);
  6447. for (i = 0; i < NL80211_VHT_NSS_MAX; i++) {
  6448. if ((tx_mcs_mask[i] & txrate->mcs[i]) == txrate->mcs[i])
  6449. mcs[i] = txrate->mcs[i];
  6450. else
  6451. return false;
  6452. }
  6453. return true;
  6454. }
  6455. static const struct nla_policy nl80211_txattr_policy[NL80211_TXRATE_MAX + 1] = {
  6456. [NL80211_TXRATE_LEGACY] = { .type = NLA_BINARY,
  6457. .len = NL80211_MAX_SUPP_RATES },
  6458. [NL80211_TXRATE_HT] = { .type = NLA_BINARY,
  6459. .len = NL80211_MAX_SUPP_HT_RATES },
  6460. [NL80211_TXRATE_VHT] = { .len = sizeof(struct nl80211_txrate_vht)},
  6461. [NL80211_TXRATE_GI] = { .type = NLA_U8 },
  6462. };
  6463. static int nl80211_set_tx_bitrate_mask(struct sk_buff *skb,
  6464. struct genl_info *info)
  6465. {
  6466. struct nlattr *tb[NL80211_TXRATE_MAX + 1];
  6467. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6468. struct cfg80211_bitrate_mask mask;
  6469. int rem, i;
  6470. struct net_device *dev = info->user_ptr[1];
  6471. struct nlattr *tx_rates;
  6472. struct ieee80211_supported_band *sband;
  6473. u16 vht_tx_mcs_map;
  6474. if (!rdev->ops->set_bitrate_mask)
  6475. return -EOPNOTSUPP;
  6476. memset(&mask, 0, sizeof(mask));
  6477. /* Default to all rates enabled */
  6478. for (i = 0; i < IEEE80211_NUM_BANDS; i++) {
  6479. sband = rdev->wiphy.bands[i];
  6480. if (!sband)
  6481. continue;
  6482. mask.control[i].legacy = (1 << sband->n_bitrates) - 1;
  6483. memcpy(mask.control[i].ht_mcs,
  6484. sband->ht_cap.mcs.rx_mask,
  6485. sizeof(mask.control[i].ht_mcs));
  6486. if (!sband->vht_cap.vht_supported)
  6487. continue;
  6488. vht_tx_mcs_map = le16_to_cpu(sband->vht_cap.vht_mcs.tx_mcs_map);
  6489. vht_build_mcs_mask(vht_tx_mcs_map, mask.control[i].vht_mcs);
  6490. }
  6491. /* if no rates are given set it back to the defaults */
  6492. if (!info->attrs[NL80211_ATTR_TX_RATES])
  6493. goto out;
  6494. /*
  6495. * The nested attribute uses enum nl80211_band as the index. This maps
  6496. * directly to the enum ieee80211_band values used in cfg80211.
  6497. */
  6498. BUILD_BUG_ON(NL80211_MAX_SUPP_HT_RATES > IEEE80211_HT_MCS_MASK_LEN * 8);
  6499. nla_for_each_nested(tx_rates, info->attrs[NL80211_ATTR_TX_RATES], rem) {
  6500. enum ieee80211_band band = nla_type(tx_rates);
  6501. int err;
  6502. if (band < 0 || band >= IEEE80211_NUM_BANDS)
  6503. return -EINVAL;
  6504. sband = rdev->wiphy.bands[band];
  6505. if (sband == NULL)
  6506. return -EINVAL;
  6507. err = nla_parse(tb, NL80211_TXRATE_MAX, nla_data(tx_rates),
  6508. nla_len(tx_rates), nl80211_txattr_policy);
  6509. if (err)
  6510. return err;
  6511. if (tb[NL80211_TXRATE_LEGACY]) {
  6512. mask.control[band].legacy = rateset_to_mask(
  6513. sband,
  6514. nla_data(tb[NL80211_TXRATE_LEGACY]),
  6515. nla_len(tb[NL80211_TXRATE_LEGACY]));
  6516. if ((mask.control[band].legacy == 0) &&
  6517. nla_len(tb[NL80211_TXRATE_LEGACY]))
  6518. return -EINVAL;
  6519. }
  6520. if (tb[NL80211_TXRATE_HT]) {
  6521. if (!ht_rateset_to_mask(
  6522. sband,
  6523. nla_data(tb[NL80211_TXRATE_HT]),
  6524. nla_len(tb[NL80211_TXRATE_HT]),
  6525. mask.control[band].ht_mcs))
  6526. return -EINVAL;
  6527. }
  6528. if (tb[NL80211_TXRATE_VHT]) {
  6529. if (!vht_set_mcs_mask(
  6530. sband,
  6531. nla_data(tb[NL80211_TXRATE_VHT]),
  6532. mask.control[band].vht_mcs))
  6533. return -EINVAL;
  6534. }
  6535. if (tb[NL80211_TXRATE_GI]) {
  6536. mask.control[band].gi =
  6537. nla_get_u8(tb[NL80211_TXRATE_GI]);
  6538. if (mask.control[band].gi > NL80211_TXRATE_FORCE_LGI)
  6539. return -EINVAL;
  6540. }
  6541. if (mask.control[band].legacy == 0) {
  6542. /* don't allow empty legacy rates if HT or VHT
  6543. * are not even supported.
  6544. */
  6545. if (!(rdev->wiphy.bands[band]->ht_cap.ht_supported ||
  6546. rdev->wiphy.bands[band]->vht_cap.vht_supported))
  6547. return -EINVAL;
  6548. for (i = 0; i < IEEE80211_HT_MCS_MASK_LEN; i++)
  6549. if (mask.control[band].ht_mcs[i])
  6550. goto out;
  6551. for (i = 0; i < NL80211_VHT_NSS_MAX; i++)
  6552. if (mask.control[band].vht_mcs[i])
  6553. goto out;
  6554. /* legacy and mcs rates may not be both empty */
  6555. return -EINVAL;
  6556. }
  6557. }
  6558. out:
  6559. return rdev_set_bitrate_mask(rdev, dev, NULL, &mask);
  6560. }
  6561. static int nl80211_register_mgmt(struct sk_buff *skb, struct genl_info *info)
  6562. {
  6563. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6564. struct wireless_dev *wdev = info->user_ptr[1];
  6565. u16 frame_type = IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_ACTION;
  6566. if (!info->attrs[NL80211_ATTR_FRAME_MATCH])
  6567. return -EINVAL;
  6568. if (info->attrs[NL80211_ATTR_FRAME_TYPE])
  6569. frame_type = nla_get_u16(info->attrs[NL80211_ATTR_FRAME_TYPE]);
  6570. switch (wdev->iftype) {
  6571. case NL80211_IFTYPE_STATION:
  6572. case NL80211_IFTYPE_ADHOC:
  6573. case NL80211_IFTYPE_P2P_CLIENT:
  6574. case NL80211_IFTYPE_AP:
  6575. case NL80211_IFTYPE_AP_VLAN:
  6576. case NL80211_IFTYPE_MESH_POINT:
  6577. case NL80211_IFTYPE_P2P_GO:
  6578. case NL80211_IFTYPE_P2P_DEVICE:
  6579. break;
  6580. default:
  6581. return -EOPNOTSUPP;
  6582. }
  6583. /* not much point in registering if we can't reply */
  6584. if (!rdev->ops->mgmt_tx)
  6585. return -EOPNOTSUPP;
  6586. return cfg80211_mlme_register_mgmt(wdev, info->snd_portid, frame_type,
  6587. nla_data(info->attrs[NL80211_ATTR_FRAME_MATCH]),
  6588. nla_len(info->attrs[NL80211_ATTR_FRAME_MATCH]));
  6589. }
  6590. static int nl80211_tx_mgmt(struct sk_buff *skb, struct genl_info *info)
  6591. {
  6592. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6593. struct wireless_dev *wdev = info->user_ptr[1];
  6594. struct cfg80211_chan_def chandef;
  6595. int err;
  6596. void *hdr = NULL;
  6597. u64 cookie;
  6598. struct sk_buff *msg = NULL;
  6599. struct cfg80211_mgmt_tx_params params = {
  6600. .dont_wait_for_ack =
  6601. info->attrs[NL80211_ATTR_DONT_WAIT_FOR_ACK],
  6602. };
  6603. if (!info->attrs[NL80211_ATTR_FRAME])
  6604. return -EINVAL;
  6605. if (!rdev->ops->mgmt_tx)
  6606. return -EOPNOTSUPP;
  6607. switch (wdev->iftype) {
  6608. case NL80211_IFTYPE_P2P_DEVICE:
  6609. if (!info->attrs[NL80211_ATTR_WIPHY_FREQ])
  6610. return -EINVAL;
  6611. case NL80211_IFTYPE_STATION:
  6612. case NL80211_IFTYPE_ADHOC:
  6613. case NL80211_IFTYPE_P2P_CLIENT:
  6614. case NL80211_IFTYPE_AP:
  6615. case NL80211_IFTYPE_AP_VLAN:
  6616. case NL80211_IFTYPE_MESH_POINT:
  6617. case NL80211_IFTYPE_P2P_GO:
  6618. break;
  6619. default:
  6620. return -EOPNOTSUPP;
  6621. }
  6622. if (info->attrs[NL80211_ATTR_DURATION]) {
  6623. /* Here comment out the following code: bcz we has let supplicant pass the wait
  6624. * but our driver is still not support WIPHY_FLAG_OFFCHAN_TX
  6625. * if (!(rdev->wiphy.flags & WIPHY_FLAG_OFFCHAN_TX))
  6626. * return -EINVAL;
  6627. */
  6628. params.wait = nla_get_u32(info->attrs[NL80211_ATTR_DURATION]);
  6629. /*
  6630. * We should wait on the channel for at least a minimum amount
  6631. * of time (10ms) but no longer than the driver supports.
  6632. */
  6633. if (params.wait < NL80211_MIN_REMAIN_ON_CHANNEL_TIME ||
  6634. params.wait > rdev->wiphy.max_remain_on_channel_duration)
  6635. return -EINVAL;
  6636. }
  6637. params.offchan = info->attrs[NL80211_ATTR_OFFCHANNEL_TX_OK];
  6638. if (params.offchan && !(rdev->wiphy.flags & WIPHY_FLAG_OFFCHAN_TX))
  6639. return -EINVAL;
  6640. params.no_cck = nla_get_flag(info->attrs[NL80211_ATTR_TX_NO_CCK_RATE]);
  6641. /* get the channel if any has been specified, otherwise pass NULL to
  6642. * the driver. The latter will use the current one
  6643. */
  6644. chandef.chan = NULL;
  6645. if (info->attrs[NL80211_ATTR_WIPHY_FREQ]) {
  6646. err = nl80211_parse_chandef(rdev, info, &chandef);
  6647. if (err)
  6648. return err;
  6649. }
  6650. if (!chandef.chan && params.offchan)
  6651. return -EINVAL;
  6652. params.buf = nla_data(info->attrs[NL80211_ATTR_FRAME]);
  6653. params.len = nla_len(info->attrs[NL80211_ATTR_FRAME]);
  6654. if (info->attrs[NL80211_ATTR_CSA_C_OFFSETS_TX]) {
  6655. int len = nla_len(info->attrs[NL80211_ATTR_CSA_C_OFFSETS_TX]);
  6656. int i;
  6657. if (len % sizeof(u16))
  6658. return -EINVAL;
  6659. params.n_csa_offsets = len / sizeof(u16);
  6660. params.csa_offsets =
  6661. nla_data(info->attrs[NL80211_ATTR_CSA_C_OFFSETS_TX]);
  6662. /* check that all the offsets fit the frame */
  6663. for (i = 0; i < params.n_csa_offsets; i++) {
  6664. if (params.csa_offsets[i] >= params.len)
  6665. return -EINVAL;
  6666. }
  6667. }
  6668. if (!params.dont_wait_for_ack) {
  6669. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  6670. if (!msg)
  6671. return -ENOMEM;
  6672. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  6673. NL80211_CMD_FRAME);
  6674. if (!hdr) {
  6675. err = -ENOBUFS;
  6676. goto free_msg;
  6677. }
  6678. }
  6679. params.chan = chandef.chan;
  6680. err = cfg80211_mlme_mgmt_tx(rdev, wdev, &params, &cookie);
  6681. if (err)
  6682. goto free_msg;
  6683. if (msg) {
  6684. if (nla_put_u64(msg, NL80211_ATTR_COOKIE, cookie))
  6685. goto nla_put_failure;
  6686. genlmsg_end(msg, hdr);
  6687. return genlmsg_reply(msg, info);
  6688. }
  6689. return 0;
  6690. nla_put_failure:
  6691. err = -ENOBUFS;
  6692. free_msg:
  6693. nlmsg_free(msg);
  6694. return err;
  6695. }
  6696. static int nl80211_tx_mgmt_cancel_wait(struct sk_buff *skb, struct genl_info *info)
  6697. {
  6698. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6699. struct wireless_dev *wdev = info->user_ptr[1];
  6700. u64 cookie;
  6701. if (!info->attrs[NL80211_ATTR_COOKIE])
  6702. return -EINVAL;
  6703. if (!rdev->ops->mgmt_tx_cancel_wait)
  6704. return -EOPNOTSUPP;
  6705. switch (wdev->iftype) {
  6706. case NL80211_IFTYPE_STATION:
  6707. case NL80211_IFTYPE_ADHOC:
  6708. case NL80211_IFTYPE_P2P_CLIENT:
  6709. case NL80211_IFTYPE_AP:
  6710. case NL80211_IFTYPE_AP_VLAN:
  6711. case NL80211_IFTYPE_P2P_GO:
  6712. case NL80211_IFTYPE_P2P_DEVICE:
  6713. break;
  6714. default:
  6715. return -EOPNOTSUPP;
  6716. }
  6717. cookie = nla_get_u64(info->attrs[NL80211_ATTR_COOKIE]);
  6718. return rdev_mgmt_tx_cancel_wait(rdev, wdev, cookie);
  6719. }
  6720. static int nl80211_set_power_save(struct sk_buff *skb, struct genl_info *info)
  6721. {
  6722. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6723. struct wireless_dev *wdev;
  6724. struct net_device *dev = info->user_ptr[1];
  6725. u8 ps_state;
  6726. bool state;
  6727. int err;
  6728. if (!info->attrs[NL80211_ATTR_PS_STATE])
  6729. return -EINVAL;
  6730. ps_state = nla_get_u32(info->attrs[NL80211_ATTR_PS_STATE]);
  6731. if (ps_state != NL80211_PS_DISABLED && ps_state != NL80211_PS_ENABLED)
  6732. return -EINVAL;
  6733. wdev = dev->ieee80211_ptr;
  6734. if (!rdev->ops->set_power_mgmt)
  6735. return -EOPNOTSUPP;
  6736. state = (ps_state == NL80211_PS_ENABLED) ? true : false;
  6737. if (state == wdev->ps)
  6738. return 0;
  6739. err = rdev_set_power_mgmt(rdev, dev, state, wdev->ps_timeout);
  6740. if (!err)
  6741. wdev->ps = state;
  6742. return err;
  6743. }
  6744. static int nl80211_get_power_save(struct sk_buff *skb, struct genl_info *info)
  6745. {
  6746. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6747. enum nl80211_ps_state ps_state;
  6748. struct wireless_dev *wdev;
  6749. struct net_device *dev = info->user_ptr[1];
  6750. struct sk_buff *msg;
  6751. void *hdr;
  6752. int err;
  6753. wdev = dev->ieee80211_ptr;
  6754. if (!rdev->ops->set_power_mgmt)
  6755. return -EOPNOTSUPP;
  6756. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  6757. if (!msg)
  6758. return -ENOMEM;
  6759. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  6760. NL80211_CMD_GET_POWER_SAVE);
  6761. if (!hdr) {
  6762. err = -ENOBUFS;
  6763. goto free_msg;
  6764. }
  6765. if (wdev->ps)
  6766. ps_state = NL80211_PS_ENABLED;
  6767. else
  6768. ps_state = NL80211_PS_DISABLED;
  6769. if (nla_put_u32(msg, NL80211_ATTR_PS_STATE, ps_state))
  6770. goto nla_put_failure;
  6771. genlmsg_end(msg, hdr);
  6772. return genlmsg_reply(msg, info);
  6773. nla_put_failure:
  6774. err = -ENOBUFS;
  6775. free_msg:
  6776. nlmsg_free(msg);
  6777. return err;
  6778. }
  6779. static const struct nla_policy
  6780. nl80211_attr_cqm_policy[NL80211_ATTR_CQM_MAX + 1] = {
  6781. [NL80211_ATTR_CQM_RSSI_THOLD] = { .type = NLA_U32 },
  6782. [NL80211_ATTR_CQM_RSSI_HYST] = { .type = NLA_U32 },
  6783. [NL80211_ATTR_CQM_RSSI_THRESHOLD_EVENT] = { .type = NLA_U32 },
  6784. [NL80211_ATTR_CQM_TXE_RATE] = { .type = NLA_U32 },
  6785. [NL80211_ATTR_CQM_TXE_PKTS] = { .type = NLA_U32 },
  6786. [NL80211_ATTR_CQM_TXE_INTVL] = { .type = NLA_U32 },
  6787. };
  6788. static int nl80211_set_cqm_txe(struct genl_info *info,
  6789. u32 rate, u32 pkts, u32 intvl)
  6790. {
  6791. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6792. struct net_device *dev = info->user_ptr[1];
  6793. struct wireless_dev *wdev = dev->ieee80211_ptr;
  6794. if (rate > 100 || intvl > NL80211_CQM_TXE_MAX_INTVL)
  6795. return -EINVAL;
  6796. if (!rdev->ops->set_cqm_txe_config)
  6797. return -EOPNOTSUPP;
  6798. if (wdev->iftype != NL80211_IFTYPE_STATION &&
  6799. wdev->iftype != NL80211_IFTYPE_P2P_CLIENT)
  6800. return -EOPNOTSUPP;
  6801. return rdev_set_cqm_txe_config(rdev, dev, rate, pkts, intvl);
  6802. }
  6803. static int nl80211_set_cqm_rssi(struct genl_info *info,
  6804. s32 threshold, u32 hysteresis)
  6805. {
  6806. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6807. struct net_device *dev = info->user_ptr[1];
  6808. struct wireless_dev *wdev = dev->ieee80211_ptr;
  6809. if (threshold > 0)
  6810. return -EINVAL;
  6811. /* disabling - hysteresis should also be zero then */
  6812. if (threshold == 0)
  6813. hysteresis = 0;
  6814. if (!rdev->ops->set_cqm_rssi_config)
  6815. return -EOPNOTSUPP;
  6816. if (wdev->iftype != NL80211_IFTYPE_STATION &&
  6817. wdev->iftype != NL80211_IFTYPE_P2P_CLIENT)
  6818. return -EOPNOTSUPP;
  6819. return rdev_set_cqm_rssi_config(rdev, dev, threshold, hysteresis);
  6820. }
  6821. static int nl80211_set_cqm(struct sk_buff *skb, struct genl_info *info)
  6822. {
  6823. struct nlattr *attrs[NL80211_ATTR_CQM_MAX + 1];
  6824. struct nlattr *cqm;
  6825. int err;
  6826. cqm = info->attrs[NL80211_ATTR_CQM];
  6827. if (!cqm)
  6828. return -EINVAL;
  6829. err = nla_parse_nested(attrs, NL80211_ATTR_CQM_MAX, cqm,
  6830. nl80211_attr_cqm_policy);
  6831. if (err)
  6832. return err;
  6833. if (attrs[NL80211_ATTR_CQM_RSSI_THOLD] &&
  6834. attrs[NL80211_ATTR_CQM_RSSI_HYST]) {
  6835. s32 threshold = nla_get_s32(attrs[NL80211_ATTR_CQM_RSSI_THOLD]);
  6836. u32 hysteresis = nla_get_u32(attrs[NL80211_ATTR_CQM_RSSI_HYST]);
  6837. return nl80211_set_cqm_rssi(info, threshold, hysteresis);
  6838. }
  6839. if (attrs[NL80211_ATTR_CQM_TXE_RATE] &&
  6840. attrs[NL80211_ATTR_CQM_TXE_PKTS] &&
  6841. attrs[NL80211_ATTR_CQM_TXE_INTVL]) {
  6842. u32 rate = nla_get_u32(attrs[NL80211_ATTR_CQM_TXE_RATE]);
  6843. u32 pkts = nla_get_u32(attrs[NL80211_ATTR_CQM_TXE_PKTS]);
  6844. u32 intvl = nla_get_u32(attrs[NL80211_ATTR_CQM_TXE_INTVL]);
  6845. return nl80211_set_cqm_txe(info, rate, pkts, intvl);
  6846. }
  6847. return -EINVAL;
  6848. }
  6849. static int nl80211_join_mesh(struct sk_buff *skb, struct genl_info *info)
  6850. {
  6851. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6852. struct net_device *dev = info->user_ptr[1];
  6853. struct mesh_config cfg;
  6854. struct mesh_setup setup;
  6855. int err;
  6856. /* start with default */
  6857. memcpy(&cfg, &default_mesh_config, sizeof(cfg));
  6858. memcpy(&setup, &default_mesh_setup, sizeof(setup));
  6859. if (info->attrs[NL80211_ATTR_MESH_CONFIG]) {
  6860. /* and parse parameters if given */
  6861. err = nl80211_parse_mesh_config(info, &cfg, NULL);
  6862. if (err)
  6863. return err;
  6864. }
  6865. if (!info->attrs[NL80211_ATTR_MESH_ID] ||
  6866. !nla_len(info->attrs[NL80211_ATTR_MESH_ID]))
  6867. return -EINVAL;
  6868. setup.mesh_id = nla_data(info->attrs[NL80211_ATTR_MESH_ID]);
  6869. setup.mesh_id_len = nla_len(info->attrs[NL80211_ATTR_MESH_ID]);
  6870. if (info->attrs[NL80211_ATTR_MCAST_RATE] &&
  6871. !nl80211_parse_mcast_rate(rdev, setup.mcast_rate,
  6872. nla_get_u32(info->attrs[NL80211_ATTR_MCAST_RATE])))
  6873. return -EINVAL;
  6874. if (info->attrs[NL80211_ATTR_BEACON_INTERVAL]) {
  6875. setup.beacon_interval =
  6876. nla_get_u32(info->attrs[NL80211_ATTR_BEACON_INTERVAL]);
  6877. if (setup.beacon_interval < 10 ||
  6878. setup.beacon_interval > 10000)
  6879. return -EINVAL;
  6880. }
  6881. if (info->attrs[NL80211_ATTR_DTIM_PERIOD]) {
  6882. setup.dtim_period =
  6883. nla_get_u32(info->attrs[NL80211_ATTR_DTIM_PERIOD]);
  6884. if (setup.dtim_period < 1 || setup.dtim_period > 100)
  6885. return -EINVAL;
  6886. }
  6887. if (info->attrs[NL80211_ATTR_MESH_SETUP]) {
  6888. /* parse additional setup parameters if given */
  6889. err = nl80211_parse_mesh_setup(info, &setup);
  6890. if (err)
  6891. return err;
  6892. }
  6893. if (setup.user_mpm)
  6894. cfg.auto_open_plinks = false;
  6895. if (info->attrs[NL80211_ATTR_WIPHY_FREQ]) {
  6896. err = nl80211_parse_chandef(rdev, info, &setup.chandef);
  6897. if (err)
  6898. return err;
  6899. } else {
  6900. /* cfg80211_join_mesh() will sort it out */
  6901. setup.chandef.chan = NULL;
  6902. }
  6903. if (info->attrs[NL80211_ATTR_BSS_BASIC_RATES]) {
  6904. u8 *rates = nla_data(info->attrs[NL80211_ATTR_BSS_BASIC_RATES]);
  6905. int n_rates =
  6906. nla_len(info->attrs[NL80211_ATTR_BSS_BASIC_RATES]);
  6907. struct ieee80211_supported_band *sband;
  6908. if (!setup.chandef.chan)
  6909. return -EINVAL;
  6910. sband = rdev->wiphy.bands[setup.chandef.chan->band];
  6911. err = ieee80211_get_ratemask(sband, rates, n_rates,
  6912. &setup.basic_rates);
  6913. if (err)
  6914. return err;
  6915. }
  6916. return cfg80211_join_mesh(rdev, dev, &setup, &cfg);
  6917. }
  6918. static int nl80211_leave_mesh(struct sk_buff *skb, struct genl_info *info)
  6919. {
  6920. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6921. struct net_device *dev = info->user_ptr[1];
  6922. return cfg80211_leave_mesh(rdev, dev);
  6923. }
  6924. #ifdef CONFIG_PM
  6925. static int nl80211_send_wowlan_patterns(struct sk_buff *msg,
  6926. struct cfg80211_registered_device *rdev)
  6927. {
  6928. struct cfg80211_wowlan *wowlan = rdev->wiphy.wowlan_config;
  6929. struct nlattr *nl_pats, *nl_pat;
  6930. int i, pat_len;
  6931. if (!wowlan->n_patterns)
  6932. return 0;
  6933. nl_pats = nla_nest_start(msg, NL80211_WOWLAN_TRIG_PKT_PATTERN);
  6934. if (!nl_pats)
  6935. return -ENOBUFS;
  6936. for (i = 0; i < wowlan->n_patterns; i++) {
  6937. nl_pat = nla_nest_start(msg, i + 1);
  6938. if (!nl_pat)
  6939. return -ENOBUFS;
  6940. pat_len = wowlan->patterns[i].pattern_len;
  6941. if (nla_put(msg, NL80211_PKTPAT_MASK, DIV_ROUND_UP(pat_len, 8),
  6942. wowlan->patterns[i].mask) ||
  6943. nla_put(msg, NL80211_PKTPAT_PATTERN, pat_len,
  6944. wowlan->patterns[i].pattern) ||
  6945. nla_put_u32(msg, NL80211_PKTPAT_OFFSET,
  6946. wowlan->patterns[i].pkt_offset))
  6947. return -ENOBUFS;
  6948. nla_nest_end(msg, nl_pat);
  6949. }
  6950. nla_nest_end(msg, nl_pats);
  6951. return 0;
  6952. }
  6953. static int nl80211_send_wowlan_tcp(struct sk_buff *msg,
  6954. struct cfg80211_wowlan_tcp *tcp)
  6955. {
  6956. struct nlattr *nl_tcp;
  6957. if (!tcp)
  6958. return 0;
  6959. nl_tcp = nla_nest_start(msg, NL80211_WOWLAN_TRIG_TCP_CONNECTION);
  6960. if (!nl_tcp)
  6961. return -ENOBUFS;
  6962. if (nla_put_be32(msg, NL80211_WOWLAN_TCP_SRC_IPV4, tcp->src) ||
  6963. nla_put_be32(msg, NL80211_WOWLAN_TCP_DST_IPV4, tcp->dst) ||
  6964. nla_put(msg, NL80211_WOWLAN_TCP_DST_MAC, ETH_ALEN, tcp->dst_mac) ||
  6965. nla_put_u16(msg, NL80211_WOWLAN_TCP_SRC_PORT, tcp->src_port) ||
  6966. nla_put_u16(msg, NL80211_WOWLAN_TCP_DST_PORT, tcp->dst_port) ||
  6967. nla_put(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD,
  6968. tcp->payload_len, tcp->payload) ||
  6969. nla_put_u32(msg, NL80211_WOWLAN_TCP_DATA_INTERVAL,
  6970. tcp->data_interval) ||
  6971. nla_put(msg, NL80211_WOWLAN_TCP_WAKE_PAYLOAD,
  6972. tcp->wake_len, tcp->wake_data) ||
  6973. nla_put(msg, NL80211_WOWLAN_TCP_WAKE_MASK,
  6974. DIV_ROUND_UP(tcp->wake_len, 8), tcp->wake_mask))
  6975. return -ENOBUFS;
  6976. if (tcp->payload_seq.len &&
  6977. nla_put(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD_SEQ,
  6978. sizeof(tcp->payload_seq), &tcp->payload_seq))
  6979. return -ENOBUFS;
  6980. if (tcp->payload_tok.len &&
  6981. nla_put(msg, NL80211_WOWLAN_TCP_DATA_PAYLOAD_TOKEN,
  6982. sizeof(tcp->payload_tok) + tcp->tokens_size,
  6983. &tcp->payload_tok))
  6984. return -ENOBUFS;
  6985. nla_nest_end(msg, nl_tcp);
  6986. return 0;
  6987. }
  6988. static int nl80211_get_wowlan(struct sk_buff *skb, struct genl_info *info)
  6989. {
  6990. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  6991. struct sk_buff *msg;
  6992. void *hdr;
  6993. u32 size = NLMSG_DEFAULT_SIZE;
  6994. if (!rdev->wiphy.wowlan)
  6995. return -EOPNOTSUPP;
  6996. if (rdev->wiphy.wowlan_config && rdev->wiphy.wowlan_config->tcp) {
  6997. /* adjust size to have room for all the data */
  6998. size += rdev->wiphy.wowlan_config->tcp->tokens_size +
  6999. rdev->wiphy.wowlan_config->tcp->payload_len +
  7000. rdev->wiphy.wowlan_config->tcp->wake_len +
  7001. rdev->wiphy.wowlan_config->tcp->wake_len / 8;
  7002. }
  7003. msg = nlmsg_new(size, GFP_KERNEL);
  7004. if (!msg)
  7005. return -ENOMEM;
  7006. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  7007. NL80211_CMD_GET_WOWLAN);
  7008. if (!hdr)
  7009. goto nla_put_failure;
  7010. if (rdev->wiphy.wowlan_config) {
  7011. struct nlattr *nl_wowlan;
  7012. nl_wowlan = nla_nest_start(msg, NL80211_ATTR_WOWLAN_TRIGGERS);
  7013. if (!nl_wowlan)
  7014. goto nla_put_failure;
  7015. if ((rdev->wiphy.wowlan_config->any &&
  7016. nla_put_flag(msg, NL80211_WOWLAN_TRIG_ANY)) ||
  7017. (rdev->wiphy.wowlan_config->disconnect &&
  7018. nla_put_flag(msg, NL80211_WOWLAN_TRIG_DISCONNECT)) ||
  7019. (rdev->wiphy.wowlan_config->magic_pkt &&
  7020. nla_put_flag(msg, NL80211_WOWLAN_TRIG_MAGIC_PKT)) ||
  7021. (rdev->wiphy.wowlan_config->gtk_rekey_failure &&
  7022. nla_put_flag(msg, NL80211_WOWLAN_TRIG_GTK_REKEY_FAILURE)) ||
  7023. (rdev->wiphy.wowlan_config->eap_identity_req &&
  7024. nla_put_flag(msg, NL80211_WOWLAN_TRIG_EAP_IDENT_REQUEST)) ||
  7025. (rdev->wiphy.wowlan_config->four_way_handshake &&
  7026. nla_put_flag(msg, NL80211_WOWLAN_TRIG_4WAY_HANDSHAKE)) ||
  7027. (rdev->wiphy.wowlan_config->rfkill_release &&
  7028. nla_put_flag(msg, NL80211_WOWLAN_TRIG_RFKILL_RELEASE)))
  7029. goto nla_put_failure;
  7030. if (nl80211_send_wowlan_patterns(msg, rdev))
  7031. goto nla_put_failure;
  7032. if (nl80211_send_wowlan_tcp(msg,
  7033. rdev->wiphy.wowlan_config->tcp))
  7034. goto nla_put_failure;
  7035. nla_nest_end(msg, nl_wowlan);
  7036. }
  7037. genlmsg_end(msg, hdr);
  7038. return genlmsg_reply(msg, info);
  7039. nla_put_failure:
  7040. nlmsg_free(msg);
  7041. return -ENOBUFS;
  7042. }
  7043. static int nl80211_parse_wowlan_tcp(struct cfg80211_registered_device *rdev,
  7044. struct nlattr *attr,
  7045. struct cfg80211_wowlan *trig)
  7046. {
  7047. struct nlattr *tb[NUM_NL80211_WOWLAN_TCP];
  7048. struct cfg80211_wowlan_tcp *cfg;
  7049. struct nl80211_wowlan_tcp_data_token *tok = NULL;
  7050. struct nl80211_wowlan_tcp_data_seq *seq = NULL;
  7051. u32 size;
  7052. u32 data_size, wake_size, tokens_size = 0, wake_mask_size;
  7053. int err, port;
  7054. if (!rdev->wiphy.wowlan->tcp)
  7055. return -EINVAL;
  7056. err = nla_parse(tb, MAX_NL80211_WOWLAN_TCP,
  7057. nla_data(attr), nla_len(attr),
  7058. nl80211_wowlan_tcp_policy);
  7059. if (err)
  7060. return err;
  7061. if (!tb[NL80211_WOWLAN_TCP_SRC_IPV4] ||
  7062. !tb[NL80211_WOWLAN_TCP_DST_IPV4] ||
  7063. !tb[NL80211_WOWLAN_TCP_DST_MAC] ||
  7064. !tb[NL80211_WOWLAN_TCP_DST_PORT] ||
  7065. !tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD] ||
  7066. !tb[NL80211_WOWLAN_TCP_DATA_INTERVAL] ||
  7067. !tb[NL80211_WOWLAN_TCP_WAKE_PAYLOAD] ||
  7068. !tb[NL80211_WOWLAN_TCP_WAKE_MASK])
  7069. return -EINVAL;
  7070. data_size = nla_len(tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD]);
  7071. if (data_size > rdev->wiphy.wowlan->tcp->data_payload_max)
  7072. return -EINVAL;
  7073. if (nla_get_u32(tb[NL80211_WOWLAN_TCP_DATA_INTERVAL]) >
  7074. rdev->wiphy.wowlan->tcp->data_interval_max ||
  7075. nla_get_u32(tb[NL80211_WOWLAN_TCP_DATA_INTERVAL]) == 0)
  7076. return -EINVAL;
  7077. wake_size = nla_len(tb[NL80211_WOWLAN_TCP_WAKE_PAYLOAD]);
  7078. if (wake_size > rdev->wiphy.wowlan->tcp->wake_payload_max)
  7079. return -EINVAL;
  7080. wake_mask_size = nla_len(tb[NL80211_WOWLAN_TCP_WAKE_MASK]);
  7081. if (wake_mask_size != DIV_ROUND_UP(wake_size, 8))
  7082. return -EINVAL;
  7083. if (tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD_TOKEN]) {
  7084. u32 tokln = nla_len(tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD_TOKEN]);
  7085. tok = nla_data(tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD_TOKEN]);
  7086. tokens_size = tokln - sizeof(*tok);
  7087. if (!tok->len || tokens_size % tok->len)
  7088. return -EINVAL;
  7089. if (!rdev->wiphy.wowlan->tcp->tok)
  7090. return -EINVAL;
  7091. if (tok->len > rdev->wiphy.wowlan->tcp->tok->max_len)
  7092. return -EINVAL;
  7093. if (tok->len < rdev->wiphy.wowlan->tcp->tok->min_len)
  7094. return -EINVAL;
  7095. if (tokens_size > rdev->wiphy.wowlan->tcp->tok->bufsize)
  7096. return -EINVAL;
  7097. if (tok->offset + tok->len > data_size)
  7098. return -EINVAL;
  7099. }
  7100. if (tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD_SEQ]) {
  7101. seq = nla_data(tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD_SEQ]);
  7102. if (!rdev->wiphy.wowlan->tcp->seq)
  7103. return -EINVAL;
  7104. if (seq->len == 0 || seq->len > 4)
  7105. return -EINVAL;
  7106. if (seq->len + seq->offset > data_size)
  7107. return -EINVAL;
  7108. }
  7109. size = sizeof(*cfg);
  7110. size += data_size;
  7111. size += wake_size + wake_mask_size;
  7112. size += tokens_size;
  7113. cfg = kzalloc(size, GFP_KERNEL);
  7114. if (!cfg)
  7115. return -ENOMEM;
  7116. cfg->src = nla_get_be32(tb[NL80211_WOWLAN_TCP_SRC_IPV4]);
  7117. cfg->dst = nla_get_be32(tb[NL80211_WOWLAN_TCP_DST_IPV4]);
  7118. memcpy(cfg->dst_mac, nla_data(tb[NL80211_WOWLAN_TCP_DST_MAC]),
  7119. ETH_ALEN);
  7120. if (tb[NL80211_WOWLAN_TCP_SRC_PORT])
  7121. port = nla_get_u16(tb[NL80211_WOWLAN_TCP_SRC_PORT]);
  7122. else
  7123. port = 0;
  7124. #ifdef CONFIG_INET
  7125. /* allocate a socket and port for it and use it */
  7126. err = __sock_create(wiphy_net(&rdev->wiphy), PF_INET, SOCK_STREAM,
  7127. IPPROTO_TCP, &cfg->sock, 1);
  7128. if (err) {
  7129. kfree(cfg);
  7130. return err;
  7131. }
  7132. if (inet_csk_get_port(cfg->sock->sk, port)) {
  7133. sock_release(cfg->sock);
  7134. kfree(cfg);
  7135. return -EADDRINUSE;
  7136. }
  7137. cfg->src_port = inet_sk(cfg->sock->sk)->inet_num;
  7138. #else
  7139. if (!port) {
  7140. kfree(cfg);
  7141. return -EINVAL;
  7142. }
  7143. cfg->src_port = port;
  7144. #endif
  7145. cfg->dst_port = nla_get_u16(tb[NL80211_WOWLAN_TCP_DST_PORT]);
  7146. cfg->payload_len = data_size;
  7147. cfg->payload = (u8 *)cfg + sizeof(*cfg) + tokens_size;
  7148. memcpy((void *)cfg->payload,
  7149. nla_data(tb[NL80211_WOWLAN_TCP_DATA_PAYLOAD]),
  7150. data_size);
  7151. if (seq)
  7152. cfg->payload_seq = *seq;
  7153. cfg->data_interval = nla_get_u32(tb[NL80211_WOWLAN_TCP_DATA_INTERVAL]);
  7154. cfg->wake_len = wake_size;
  7155. cfg->wake_data = (u8 *)cfg + sizeof(*cfg) + tokens_size + data_size;
  7156. memcpy((void *)cfg->wake_data,
  7157. nla_data(tb[NL80211_WOWLAN_TCP_WAKE_PAYLOAD]),
  7158. wake_size);
  7159. cfg->wake_mask = (u8 *)cfg + sizeof(*cfg) + tokens_size +
  7160. data_size + wake_size;
  7161. memcpy((void *)cfg->wake_mask,
  7162. nla_data(tb[NL80211_WOWLAN_TCP_WAKE_MASK]),
  7163. wake_mask_size);
  7164. if (tok) {
  7165. cfg->tokens_size = tokens_size;
  7166. memcpy(&cfg->payload_tok, tok, sizeof(*tok) + tokens_size);
  7167. }
  7168. trig->tcp = cfg;
  7169. return 0;
  7170. }
  7171. static int nl80211_set_wowlan(struct sk_buff *skb, struct genl_info *info)
  7172. {
  7173. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7174. struct nlattr *tb[NUM_NL80211_WOWLAN_TRIG];
  7175. struct cfg80211_wowlan new_triggers = {};
  7176. struct cfg80211_wowlan *ntrig;
  7177. const struct wiphy_wowlan_support *wowlan = rdev->wiphy.wowlan;
  7178. int err, i;
  7179. bool prev_enabled = rdev->wiphy.wowlan_config;
  7180. if (!wowlan)
  7181. return -EOPNOTSUPP;
  7182. if (!info->attrs[NL80211_ATTR_WOWLAN_TRIGGERS]) {
  7183. cfg80211_rdev_free_wowlan(rdev);
  7184. rdev->wiphy.wowlan_config = NULL;
  7185. goto set_wakeup;
  7186. }
  7187. err = nla_parse(tb, MAX_NL80211_WOWLAN_TRIG,
  7188. nla_data(info->attrs[NL80211_ATTR_WOWLAN_TRIGGERS]),
  7189. nla_len(info->attrs[NL80211_ATTR_WOWLAN_TRIGGERS]),
  7190. nl80211_wowlan_policy);
  7191. if (err)
  7192. return err;
  7193. if (tb[NL80211_WOWLAN_TRIG_ANY]) {
  7194. if (!(wowlan->flags & WIPHY_WOWLAN_ANY))
  7195. return -EINVAL;
  7196. new_triggers.any = true;
  7197. }
  7198. if (tb[NL80211_WOWLAN_TRIG_DISCONNECT]) {
  7199. if (!(wowlan->flags & WIPHY_WOWLAN_DISCONNECT))
  7200. return -EINVAL;
  7201. new_triggers.disconnect = true;
  7202. }
  7203. if (tb[NL80211_WOWLAN_TRIG_MAGIC_PKT]) {
  7204. if (!(wowlan->flags & WIPHY_WOWLAN_MAGIC_PKT))
  7205. return -EINVAL;
  7206. new_triggers.magic_pkt = true;
  7207. }
  7208. if (tb[NL80211_WOWLAN_TRIG_GTK_REKEY_SUPPORTED])
  7209. return -EINVAL;
  7210. if (tb[NL80211_WOWLAN_TRIG_GTK_REKEY_FAILURE]) {
  7211. if (!(wowlan->flags & WIPHY_WOWLAN_GTK_REKEY_FAILURE))
  7212. return -EINVAL;
  7213. new_triggers.gtk_rekey_failure = true;
  7214. }
  7215. if (tb[NL80211_WOWLAN_TRIG_EAP_IDENT_REQUEST]) {
  7216. if (!(wowlan->flags & WIPHY_WOWLAN_EAP_IDENTITY_REQ))
  7217. return -EINVAL;
  7218. new_triggers.eap_identity_req = true;
  7219. }
  7220. if (tb[NL80211_WOWLAN_TRIG_4WAY_HANDSHAKE]) {
  7221. if (!(wowlan->flags & WIPHY_WOWLAN_4WAY_HANDSHAKE))
  7222. return -EINVAL;
  7223. new_triggers.four_way_handshake = true;
  7224. }
  7225. if (tb[NL80211_WOWLAN_TRIG_RFKILL_RELEASE]) {
  7226. if (!(wowlan->flags & WIPHY_WOWLAN_RFKILL_RELEASE))
  7227. return -EINVAL;
  7228. new_triggers.rfkill_release = true;
  7229. }
  7230. if (tb[NL80211_WOWLAN_TRIG_PKT_PATTERN]) {
  7231. struct nlattr *pat;
  7232. int n_patterns = 0;
  7233. int rem, pat_len, mask_len, pkt_offset;
  7234. struct nlattr *pat_tb[NUM_NL80211_PKTPAT];
  7235. nla_for_each_nested(pat, tb[NL80211_WOWLAN_TRIG_PKT_PATTERN],
  7236. rem)
  7237. n_patterns++;
  7238. if (n_patterns > wowlan->n_patterns)
  7239. return -EINVAL;
  7240. new_triggers.patterns = kcalloc(n_patterns,
  7241. sizeof(new_triggers.patterns[0]),
  7242. GFP_KERNEL);
  7243. if (!new_triggers.patterns)
  7244. return -ENOMEM;
  7245. new_triggers.n_patterns = n_patterns;
  7246. i = 0;
  7247. nla_for_each_nested(pat, tb[NL80211_WOWLAN_TRIG_PKT_PATTERN],
  7248. rem) {
  7249. u8 *mask_pat;
  7250. nla_parse(pat_tb, MAX_NL80211_PKTPAT, nla_data(pat),
  7251. nla_len(pat), NULL);
  7252. err = -EINVAL;
  7253. if (!pat_tb[NL80211_PKTPAT_MASK] ||
  7254. !pat_tb[NL80211_PKTPAT_PATTERN])
  7255. goto error;
  7256. pat_len = nla_len(pat_tb[NL80211_PKTPAT_PATTERN]);
  7257. mask_len = DIV_ROUND_UP(pat_len, 8);
  7258. if (nla_len(pat_tb[NL80211_PKTPAT_MASK]) != mask_len)
  7259. goto error;
  7260. if (pat_len > wowlan->pattern_max_len ||
  7261. pat_len < wowlan->pattern_min_len)
  7262. goto error;
  7263. if (!pat_tb[NL80211_PKTPAT_OFFSET])
  7264. pkt_offset = 0;
  7265. else
  7266. pkt_offset = nla_get_u32(
  7267. pat_tb[NL80211_PKTPAT_OFFSET]);
  7268. if (pkt_offset > wowlan->max_pkt_offset)
  7269. goto error;
  7270. new_triggers.patterns[i].pkt_offset = pkt_offset;
  7271. mask_pat = kmalloc(mask_len + pat_len, GFP_KERNEL);
  7272. if (!mask_pat) {
  7273. err = -ENOMEM;
  7274. goto error;
  7275. }
  7276. new_triggers.patterns[i].mask = mask_pat;
  7277. memcpy(mask_pat, nla_data(pat_tb[NL80211_PKTPAT_MASK]),
  7278. mask_len);
  7279. mask_pat += mask_len;
  7280. new_triggers.patterns[i].pattern = mask_pat;
  7281. new_triggers.patterns[i].pattern_len = pat_len;
  7282. memcpy(mask_pat,
  7283. nla_data(pat_tb[NL80211_PKTPAT_PATTERN]),
  7284. pat_len);
  7285. i++;
  7286. }
  7287. }
  7288. if (tb[NL80211_WOWLAN_TRIG_TCP_CONNECTION]) {
  7289. err = nl80211_parse_wowlan_tcp(
  7290. rdev, tb[NL80211_WOWLAN_TRIG_TCP_CONNECTION],
  7291. &new_triggers);
  7292. if (err)
  7293. goto error;
  7294. }
  7295. ntrig = kmemdup(&new_triggers, sizeof(new_triggers), GFP_KERNEL);
  7296. if (!ntrig) {
  7297. err = -ENOMEM;
  7298. goto error;
  7299. }
  7300. cfg80211_rdev_free_wowlan(rdev);
  7301. rdev->wiphy.wowlan_config = ntrig;
  7302. set_wakeup:
  7303. if (rdev->ops->set_wakeup &&
  7304. prev_enabled != !!rdev->wiphy.wowlan_config)
  7305. rdev_set_wakeup(rdev, rdev->wiphy.wowlan_config);
  7306. return 0;
  7307. error:
  7308. for (i = 0; i < new_triggers.n_patterns; i++)
  7309. kfree(new_triggers.patterns[i].mask);
  7310. kfree(new_triggers.patterns);
  7311. if (new_triggers.tcp && new_triggers.tcp->sock)
  7312. sock_release(new_triggers.tcp->sock);
  7313. kfree(new_triggers.tcp);
  7314. return err;
  7315. }
  7316. #endif
  7317. static int nl80211_send_coalesce_rules(struct sk_buff *msg,
  7318. struct cfg80211_registered_device *rdev)
  7319. {
  7320. struct nlattr *nl_pats, *nl_pat, *nl_rule, *nl_rules;
  7321. int i, j, pat_len;
  7322. struct cfg80211_coalesce_rules *rule;
  7323. if (!rdev->coalesce->n_rules)
  7324. return 0;
  7325. nl_rules = nla_nest_start(msg, NL80211_ATTR_COALESCE_RULE);
  7326. if (!nl_rules)
  7327. return -ENOBUFS;
  7328. for (i = 0; i < rdev->coalesce->n_rules; i++) {
  7329. nl_rule = nla_nest_start(msg, i + 1);
  7330. if (!nl_rule)
  7331. return -ENOBUFS;
  7332. rule = &rdev->coalesce->rules[i];
  7333. if (nla_put_u32(msg, NL80211_ATTR_COALESCE_RULE_DELAY,
  7334. rule->delay))
  7335. return -ENOBUFS;
  7336. if (nla_put_u32(msg, NL80211_ATTR_COALESCE_RULE_CONDITION,
  7337. rule->condition))
  7338. return -ENOBUFS;
  7339. nl_pats = nla_nest_start(msg,
  7340. NL80211_ATTR_COALESCE_RULE_PKT_PATTERN);
  7341. if (!nl_pats)
  7342. return -ENOBUFS;
  7343. for (j = 0; j < rule->n_patterns; j++) {
  7344. nl_pat = nla_nest_start(msg, j + 1);
  7345. if (!nl_pat)
  7346. return -ENOBUFS;
  7347. pat_len = rule->patterns[j].pattern_len;
  7348. if (nla_put(msg, NL80211_PKTPAT_MASK,
  7349. DIV_ROUND_UP(pat_len, 8),
  7350. rule->patterns[j].mask) ||
  7351. nla_put(msg, NL80211_PKTPAT_PATTERN, pat_len,
  7352. rule->patterns[j].pattern) ||
  7353. nla_put_u32(msg, NL80211_PKTPAT_OFFSET,
  7354. rule->patterns[j].pkt_offset))
  7355. return -ENOBUFS;
  7356. nla_nest_end(msg, nl_pat);
  7357. }
  7358. nla_nest_end(msg, nl_pats);
  7359. nla_nest_end(msg, nl_rule);
  7360. }
  7361. nla_nest_end(msg, nl_rules);
  7362. return 0;
  7363. }
  7364. static int nl80211_get_coalesce(struct sk_buff *skb, struct genl_info *info)
  7365. {
  7366. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7367. struct sk_buff *msg;
  7368. void *hdr;
  7369. if (!rdev->wiphy.coalesce)
  7370. return -EOPNOTSUPP;
  7371. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  7372. if (!msg)
  7373. return -ENOMEM;
  7374. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  7375. NL80211_CMD_GET_COALESCE);
  7376. if (!hdr)
  7377. goto nla_put_failure;
  7378. if (rdev->coalesce && nl80211_send_coalesce_rules(msg, rdev))
  7379. goto nla_put_failure;
  7380. genlmsg_end(msg, hdr);
  7381. return genlmsg_reply(msg, info);
  7382. nla_put_failure:
  7383. nlmsg_free(msg);
  7384. return -ENOBUFS;
  7385. }
  7386. void cfg80211_rdev_free_coalesce(struct cfg80211_registered_device *rdev)
  7387. {
  7388. struct cfg80211_coalesce *coalesce = rdev->coalesce;
  7389. int i, j;
  7390. struct cfg80211_coalesce_rules *rule;
  7391. if (!coalesce)
  7392. return;
  7393. for (i = 0; i < coalesce->n_rules; i++) {
  7394. rule = &coalesce->rules[i];
  7395. for (j = 0; j < rule->n_patterns; j++)
  7396. kfree(rule->patterns[j].mask);
  7397. kfree(rule->patterns);
  7398. }
  7399. kfree(coalesce->rules);
  7400. kfree(coalesce);
  7401. rdev->coalesce = NULL;
  7402. }
  7403. static int nl80211_parse_coalesce_rule(struct cfg80211_registered_device *rdev,
  7404. struct nlattr *rule,
  7405. struct cfg80211_coalesce_rules *new_rule)
  7406. {
  7407. int err, i;
  7408. const struct wiphy_coalesce_support *coalesce = rdev->wiphy.coalesce;
  7409. struct nlattr *tb[NUM_NL80211_ATTR_COALESCE_RULE], *pat;
  7410. int rem, pat_len, mask_len, pkt_offset, n_patterns = 0;
  7411. struct nlattr *pat_tb[NUM_NL80211_PKTPAT];
  7412. err = nla_parse(tb, NL80211_ATTR_COALESCE_RULE_MAX, nla_data(rule),
  7413. nla_len(rule), nl80211_coalesce_policy);
  7414. if (err)
  7415. return err;
  7416. if (tb[NL80211_ATTR_COALESCE_RULE_DELAY])
  7417. new_rule->delay =
  7418. nla_get_u32(tb[NL80211_ATTR_COALESCE_RULE_DELAY]);
  7419. if (new_rule->delay > coalesce->max_delay)
  7420. return -EINVAL;
  7421. if (tb[NL80211_ATTR_COALESCE_RULE_CONDITION])
  7422. new_rule->condition =
  7423. nla_get_u32(tb[NL80211_ATTR_COALESCE_RULE_CONDITION]);
  7424. if (new_rule->condition != NL80211_COALESCE_CONDITION_MATCH &&
  7425. new_rule->condition != NL80211_COALESCE_CONDITION_NO_MATCH)
  7426. return -EINVAL;
  7427. if (!tb[NL80211_ATTR_COALESCE_RULE_PKT_PATTERN])
  7428. return -EINVAL;
  7429. nla_for_each_nested(pat, tb[NL80211_ATTR_COALESCE_RULE_PKT_PATTERN],
  7430. rem)
  7431. n_patterns++;
  7432. if (n_patterns > coalesce->n_patterns)
  7433. return -EINVAL;
  7434. new_rule->patterns = kcalloc(n_patterns, sizeof(new_rule->patterns[0]),
  7435. GFP_KERNEL);
  7436. if (!new_rule->patterns)
  7437. return -ENOMEM;
  7438. new_rule->n_patterns = n_patterns;
  7439. i = 0;
  7440. nla_for_each_nested(pat, tb[NL80211_ATTR_COALESCE_RULE_PKT_PATTERN],
  7441. rem) {
  7442. u8 *mask_pat;
  7443. nla_parse(pat_tb, MAX_NL80211_PKTPAT, nla_data(pat),
  7444. nla_len(pat), NULL);
  7445. if (!pat_tb[NL80211_PKTPAT_MASK] ||
  7446. !pat_tb[NL80211_PKTPAT_PATTERN])
  7447. return -EINVAL;
  7448. pat_len = nla_len(pat_tb[NL80211_PKTPAT_PATTERN]);
  7449. mask_len = DIV_ROUND_UP(pat_len, 8);
  7450. if (nla_len(pat_tb[NL80211_PKTPAT_MASK]) != mask_len)
  7451. return -EINVAL;
  7452. if (pat_len > coalesce->pattern_max_len ||
  7453. pat_len < coalesce->pattern_min_len)
  7454. return -EINVAL;
  7455. if (!pat_tb[NL80211_PKTPAT_OFFSET])
  7456. pkt_offset = 0;
  7457. else
  7458. pkt_offset = nla_get_u32(pat_tb[NL80211_PKTPAT_OFFSET]);
  7459. if (pkt_offset > coalesce->max_pkt_offset)
  7460. return -EINVAL;
  7461. new_rule->patterns[i].pkt_offset = pkt_offset;
  7462. mask_pat = kmalloc(mask_len + pat_len, GFP_KERNEL);
  7463. if (!mask_pat)
  7464. return -ENOMEM;
  7465. new_rule->patterns[i].mask = mask_pat;
  7466. memcpy(mask_pat, nla_data(pat_tb[NL80211_PKTPAT_MASK]),
  7467. mask_len);
  7468. mask_pat += mask_len;
  7469. new_rule->patterns[i].pattern = mask_pat;
  7470. new_rule->patterns[i].pattern_len = pat_len;
  7471. memcpy(mask_pat, nla_data(pat_tb[NL80211_PKTPAT_PATTERN]),
  7472. pat_len);
  7473. i++;
  7474. }
  7475. return 0;
  7476. }
  7477. static int nl80211_set_coalesce(struct sk_buff *skb, struct genl_info *info)
  7478. {
  7479. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7480. const struct wiphy_coalesce_support *coalesce = rdev->wiphy.coalesce;
  7481. struct cfg80211_coalesce new_coalesce = {};
  7482. struct cfg80211_coalesce *n_coalesce;
  7483. int err, rem_rule, n_rules = 0, i, j;
  7484. struct nlattr *rule;
  7485. struct cfg80211_coalesce_rules *tmp_rule;
  7486. if (!rdev->wiphy.coalesce || !rdev->ops->set_coalesce)
  7487. return -EOPNOTSUPP;
  7488. if (!info->attrs[NL80211_ATTR_COALESCE_RULE]) {
  7489. cfg80211_rdev_free_coalesce(rdev);
  7490. rdev->ops->set_coalesce(&rdev->wiphy, NULL);
  7491. return 0;
  7492. }
  7493. nla_for_each_nested(rule, info->attrs[NL80211_ATTR_COALESCE_RULE],
  7494. rem_rule)
  7495. n_rules++;
  7496. if (n_rules > coalesce->n_rules)
  7497. return -EINVAL;
  7498. new_coalesce.rules = kcalloc(n_rules, sizeof(new_coalesce.rules[0]),
  7499. GFP_KERNEL);
  7500. if (!new_coalesce.rules)
  7501. return -ENOMEM;
  7502. new_coalesce.n_rules = n_rules;
  7503. i = 0;
  7504. nla_for_each_nested(rule, info->attrs[NL80211_ATTR_COALESCE_RULE],
  7505. rem_rule) {
  7506. err = nl80211_parse_coalesce_rule(rdev, rule,
  7507. &new_coalesce.rules[i]);
  7508. if (err)
  7509. goto error;
  7510. i++;
  7511. }
  7512. err = rdev->ops->set_coalesce(&rdev->wiphy, &new_coalesce);
  7513. if (err)
  7514. goto error;
  7515. n_coalesce = kmemdup(&new_coalesce, sizeof(new_coalesce), GFP_KERNEL);
  7516. if (!n_coalesce) {
  7517. err = -ENOMEM;
  7518. goto error;
  7519. }
  7520. cfg80211_rdev_free_coalesce(rdev);
  7521. rdev->coalesce = n_coalesce;
  7522. return 0;
  7523. error:
  7524. for (i = 0; i < new_coalesce.n_rules; i++) {
  7525. tmp_rule = &new_coalesce.rules[i];
  7526. for (j = 0; j < tmp_rule->n_patterns; j++)
  7527. kfree(tmp_rule->patterns[j].mask);
  7528. kfree(tmp_rule->patterns);
  7529. }
  7530. kfree(new_coalesce.rules);
  7531. return err;
  7532. }
  7533. static int nl80211_set_rekey_data(struct sk_buff *skb, struct genl_info *info)
  7534. {
  7535. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7536. struct net_device *dev = info->user_ptr[1];
  7537. struct wireless_dev *wdev = dev->ieee80211_ptr;
  7538. struct nlattr *tb[NUM_NL80211_REKEY_DATA];
  7539. struct cfg80211_gtk_rekey_data rekey_data;
  7540. int err;
  7541. if (!info->attrs[NL80211_ATTR_REKEY_DATA])
  7542. return -EINVAL;
  7543. err = nla_parse(tb, MAX_NL80211_REKEY_DATA,
  7544. nla_data(info->attrs[NL80211_ATTR_REKEY_DATA]),
  7545. nla_len(info->attrs[NL80211_ATTR_REKEY_DATA]),
  7546. nl80211_rekey_policy);
  7547. if (err)
  7548. return err;
  7549. if (nla_len(tb[NL80211_REKEY_DATA_REPLAY_CTR]) != NL80211_REPLAY_CTR_LEN)
  7550. return -ERANGE;
  7551. if (nla_len(tb[NL80211_REKEY_DATA_KEK]) != NL80211_KEK_LEN)
  7552. return -ERANGE;
  7553. if (nla_len(tb[NL80211_REKEY_DATA_KCK]) != NL80211_KCK_LEN)
  7554. return -ERANGE;
  7555. rekey_data.kek = nla_data(tb[NL80211_REKEY_DATA_KEK]);
  7556. rekey_data.kck = nla_data(tb[NL80211_REKEY_DATA_KCK]);
  7557. rekey_data.replay_ctr = nla_data(tb[NL80211_REKEY_DATA_REPLAY_CTR]);
  7558. wdev_lock(wdev);
  7559. if (!wdev->current_bss) {
  7560. err = -ENOTCONN;
  7561. goto out;
  7562. }
  7563. if (!rdev->ops->set_rekey_data) {
  7564. err = -EOPNOTSUPP;
  7565. goto out;
  7566. }
  7567. err = rdev_set_rekey_data(rdev, dev, &rekey_data);
  7568. out:
  7569. wdev_unlock(wdev);
  7570. return err;
  7571. }
  7572. static int nl80211_register_unexpected_frame(struct sk_buff *skb,
  7573. struct genl_info *info)
  7574. {
  7575. struct net_device *dev = info->user_ptr[1];
  7576. struct wireless_dev *wdev = dev->ieee80211_ptr;
  7577. if (wdev->iftype != NL80211_IFTYPE_AP &&
  7578. wdev->iftype != NL80211_IFTYPE_P2P_GO)
  7579. return -EINVAL;
  7580. if (wdev->ap_unexpected_nlportid)
  7581. return -EBUSY;
  7582. wdev->ap_unexpected_nlportid = info->snd_portid;
  7583. return 0;
  7584. }
  7585. static int nl80211_probe_client(struct sk_buff *skb,
  7586. struct genl_info *info)
  7587. {
  7588. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7589. struct net_device *dev = info->user_ptr[1];
  7590. struct wireless_dev *wdev = dev->ieee80211_ptr;
  7591. struct sk_buff *msg;
  7592. void *hdr;
  7593. const u8 *addr;
  7594. u64 cookie;
  7595. int err;
  7596. if (wdev->iftype != NL80211_IFTYPE_AP &&
  7597. wdev->iftype != NL80211_IFTYPE_P2P_GO)
  7598. return -EOPNOTSUPP;
  7599. if (!info->attrs[NL80211_ATTR_MAC])
  7600. return -EINVAL;
  7601. if (!rdev->ops->probe_client)
  7602. return -EOPNOTSUPP;
  7603. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  7604. if (!msg)
  7605. return -ENOMEM;
  7606. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  7607. NL80211_CMD_PROBE_CLIENT);
  7608. if (!hdr) {
  7609. err = -ENOBUFS;
  7610. goto free_msg;
  7611. }
  7612. addr = nla_data(info->attrs[NL80211_ATTR_MAC]);
  7613. err = rdev_probe_client(rdev, dev, addr, &cookie);
  7614. if (err)
  7615. goto free_msg;
  7616. if (nla_put_u64(msg, NL80211_ATTR_COOKIE, cookie))
  7617. goto nla_put_failure;
  7618. genlmsg_end(msg, hdr);
  7619. return genlmsg_reply(msg, info);
  7620. nla_put_failure:
  7621. err = -ENOBUFS;
  7622. free_msg:
  7623. nlmsg_free(msg);
  7624. return err;
  7625. }
  7626. static int nl80211_register_beacons(struct sk_buff *skb, struct genl_info *info)
  7627. {
  7628. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7629. struct cfg80211_beacon_registration *reg, *nreg;
  7630. int rv;
  7631. if (!(rdev->wiphy.flags & WIPHY_FLAG_REPORTS_OBSS))
  7632. return -EOPNOTSUPP;
  7633. nreg = kzalloc(sizeof(*nreg), GFP_KERNEL);
  7634. if (!nreg)
  7635. return -ENOMEM;
  7636. /* First, check if already registered. */
  7637. spin_lock_bh(&rdev->beacon_registrations_lock);
  7638. list_for_each_entry(reg, &rdev->beacon_registrations, list) {
  7639. if (reg->nlportid == info->snd_portid) {
  7640. rv = -EALREADY;
  7641. goto out_err;
  7642. }
  7643. }
  7644. /* Add it to the list */
  7645. nreg->nlportid = info->snd_portid;
  7646. list_add(&nreg->list, &rdev->beacon_registrations);
  7647. spin_unlock_bh(&rdev->beacon_registrations_lock);
  7648. return 0;
  7649. out_err:
  7650. spin_unlock_bh(&rdev->beacon_registrations_lock);
  7651. kfree(nreg);
  7652. return rv;
  7653. }
  7654. static int nl80211_start_p2p_device(struct sk_buff *skb, struct genl_info *info)
  7655. {
  7656. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7657. struct wireless_dev *wdev = info->user_ptr[1];
  7658. int err;
  7659. if (!rdev->ops->start_p2p_device)
  7660. return -EOPNOTSUPP;
  7661. if (wdev->iftype != NL80211_IFTYPE_P2P_DEVICE)
  7662. return -EOPNOTSUPP;
  7663. if (wdev->p2p_started)
  7664. return 0;
  7665. if (rfkill_blocked(rdev->rfkill))
  7666. return -ERFKILL;
  7667. err = rdev_start_p2p_device(rdev, wdev);
  7668. if (err)
  7669. return err;
  7670. wdev->p2p_started = true;
  7671. rdev->opencount++;
  7672. return 0;
  7673. }
  7674. static int nl80211_stop_p2p_device(struct sk_buff *skb, struct genl_info *info)
  7675. {
  7676. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7677. struct wireless_dev *wdev = info->user_ptr[1];
  7678. if (wdev->iftype != NL80211_IFTYPE_P2P_DEVICE)
  7679. return -EOPNOTSUPP;
  7680. if (!rdev->ops->stop_p2p_device)
  7681. return -EOPNOTSUPP;
  7682. cfg80211_stop_p2p_device(rdev, wdev);
  7683. return 0;
  7684. }
  7685. static int nl80211_get_protocol_features(struct sk_buff *skb,
  7686. struct genl_info *info)
  7687. {
  7688. void *hdr;
  7689. struct sk_buff *msg;
  7690. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  7691. if (!msg)
  7692. return -ENOMEM;
  7693. hdr = nl80211hdr_put(msg, info->snd_portid, info->snd_seq, 0,
  7694. NL80211_CMD_GET_PROTOCOL_FEATURES);
  7695. if (!hdr)
  7696. goto nla_put_failure;
  7697. if (nla_put_u32(msg, NL80211_ATTR_PROTOCOL_FEATURES,
  7698. NL80211_PROTOCOL_FEATURE_SPLIT_WIPHY_DUMP))
  7699. goto nla_put_failure;
  7700. genlmsg_end(msg, hdr);
  7701. return genlmsg_reply(msg, info);
  7702. nla_put_failure:
  7703. kfree_skb(msg);
  7704. return -ENOBUFS;
  7705. }
  7706. static int nl80211_update_ft_ies(struct sk_buff *skb, struct genl_info *info)
  7707. {
  7708. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7709. struct cfg80211_update_ft_ies_params ft_params;
  7710. struct net_device *dev = info->user_ptr[1];
  7711. if (!rdev->ops->update_ft_ies)
  7712. return -EOPNOTSUPP;
  7713. if (!info->attrs[NL80211_ATTR_MDID] ||
  7714. !is_valid_ie_attr(info->attrs[NL80211_ATTR_IE]))
  7715. return -EINVAL;
  7716. memset(&ft_params, 0, sizeof(ft_params));
  7717. ft_params.md = nla_get_u16(info->attrs[NL80211_ATTR_MDID]);
  7718. ft_params.ie = nla_data(info->attrs[NL80211_ATTR_IE]);
  7719. ft_params.ie_len = nla_len(info->attrs[NL80211_ATTR_IE]);
  7720. return rdev_update_ft_ies(rdev, dev, &ft_params);
  7721. }
  7722. static int nl80211_crit_protocol_start(struct sk_buff *skb,
  7723. struct genl_info *info)
  7724. {
  7725. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7726. struct wireless_dev *wdev = info->user_ptr[1];
  7727. enum nl80211_crit_proto_id proto = NL80211_CRIT_PROTO_UNSPEC;
  7728. u16 duration;
  7729. int ret;
  7730. if (!rdev->ops->crit_proto_start)
  7731. return -EOPNOTSUPP;
  7732. if (WARN_ON(!rdev->ops->crit_proto_stop))
  7733. return -EINVAL;
  7734. if (rdev->crit_proto_nlportid)
  7735. return -EBUSY;
  7736. /* determine protocol if provided */
  7737. if (info->attrs[NL80211_ATTR_CRIT_PROT_ID])
  7738. proto = nla_get_u16(info->attrs[NL80211_ATTR_CRIT_PROT_ID]);
  7739. if (proto >= NUM_NL80211_CRIT_PROTO)
  7740. return -EINVAL;
  7741. /* timeout must be provided */
  7742. if (!info->attrs[NL80211_ATTR_MAX_CRIT_PROT_DURATION])
  7743. return -EINVAL;
  7744. duration =
  7745. nla_get_u16(info->attrs[NL80211_ATTR_MAX_CRIT_PROT_DURATION]);
  7746. if (duration > NL80211_CRIT_PROTO_MAX_DURATION)
  7747. return -ERANGE;
  7748. ret = rdev_crit_proto_start(rdev, wdev, proto, duration);
  7749. if (!ret)
  7750. rdev->crit_proto_nlportid = info->snd_portid;
  7751. return ret;
  7752. }
  7753. static int nl80211_crit_protocol_stop(struct sk_buff *skb,
  7754. struct genl_info *info)
  7755. {
  7756. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7757. struct wireless_dev *wdev = info->user_ptr[1];
  7758. if (!rdev->ops->crit_proto_stop)
  7759. return -EOPNOTSUPP;
  7760. if (rdev->crit_proto_nlportid) {
  7761. rdev->crit_proto_nlportid = 0;
  7762. rdev_crit_proto_stop(rdev, wdev);
  7763. }
  7764. return 0;
  7765. }
  7766. static int nl80211_vendor_cmd(struct sk_buff *skb, struct genl_info *info)
  7767. {
  7768. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7769. struct wireless_dev *wdev =
  7770. __cfg80211_wdev_from_attrs(genl_info_net(info), info->attrs);
  7771. int i, err;
  7772. u32 vid, subcmd;
  7773. if (!rdev->wiphy.vendor_commands)
  7774. return -EOPNOTSUPP;
  7775. if (IS_ERR(wdev)) {
  7776. err = PTR_ERR(wdev);
  7777. if (err != -EINVAL)
  7778. return err;
  7779. wdev = NULL;
  7780. } else if (wdev->wiphy != &rdev->wiphy) {
  7781. return -EINVAL;
  7782. }
  7783. if (!info->attrs[NL80211_ATTR_VENDOR_ID] ||
  7784. !info->attrs[NL80211_ATTR_VENDOR_SUBCMD])
  7785. return -EINVAL;
  7786. vid = nla_get_u32(info->attrs[NL80211_ATTR_VENDOR_ID]);
  7787. subcmd = nla_get_u32(info->attrs[NL80211_ATTR_VENDOR_SUBCMD]);
  7788. for (i = 0; i < rdev->wiphy.n_vendor_commands; i++) {
  7789. const struct wiphy_vendor_command *vcmd;
  7790. void *data = NULL;
  7791. int len = 0;
  7792. vcmd = &rdev->wiphy.vendor_commands[i];
  7793. if (vcmd->info.vendor_id != vid || vcmd->info.subcmd != subcmd)
  7794. continue;
  7795. if (vcmd->flags & (WIPHY_VENDOR_CMD_NEED_WDEV |
  7796. WIPHY_VENDOR_CMD_NEED_NETDEV)) {
  7797. if (!wdev)
  7798. return -EINVAL;
  7799. if (vcmd->flags & WIPHY_VENDOR_CMD_NEED_NETDEV &&
  7800. !wdev->netdev)
  7801. return -EINVAL;
  7802. if (vcmd->flags & WIPHY_VENDOR_CMD_NEED_RUNNING) {
  7803. if (wdev->netdev &&
  7804. !netif_running(wdev->netdev))
  7805. return -ENETDOWN;
  7806. if (!wdev->netdev && !wdev->p2p_started)
  7807. return -ENETDOWN;
  7808. }
  7809. } else {
  7810. wdev = NULL;
  7811. }
  7812. if (info->attrs[NL80211_ATTR_VENDOR_DATA]) {
  7813. data = nla_data(info->attrs[NL80211_ATTR_VENDOR_DATA]);
  7814. len = nla_len(info->attrs[NL80211_ATTR_VENDOR_DATA]);
  7815. }
  7816. rdev->cur_cmd_info = info;
  7817. err = rdev->wiphy.vendor_commands[i].doit(&rdev->wiphy, wdev,
  7818. data, len);
  7819. rdev->cur_cmd_info = NULL;
  7820. return err;
  7821. }
  7822. return -EOPNOTSUPP;
  7823. }
  7824. struct sk_buff *__cfg80211_alloc_reply_skb(struct wiphy *wiphy,
  7825. enum nl80211_commands cmd,
  7826. enum nl80211_attrs attr,
  7827. int approxlen)
  7828. {
  7829. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  7830. if (WARN_ON(!rdev->cur_cmd_info))
  7831. return NULL;
  7832. return __cfg80211_alloc_vendor_skb(rdev, approxlen,
  7833. rdev->cur_cmd_info->snd_portid,
  7834. rdev->cur_cmd_info->snd_seq,
  7835. cmd, attr, NULL, GFP_KERNEL);
  7836. }
  7837. EXPORT_SYMBOL(__cfg80211_alloc_reply_skb);
  7838. int cfg80211_vendor_cmd_reply(struct sk_buff *skb)
  7839. {
  7840. struct cfg80211_registered_device *rdev = ((void **)skb->cb)[0];
  7841. void *hdr = ((void **)skb->cb)[1];
  7842. struct nlattr *data = ((void **)skb->cb)[2];
  7843. /* clear CB data for netlink core to own from now on */
  7844. memset(skb->cb, 0, sizeof(skb->cb));
  7845. if (WARN_ON(!rdev->cur_cmd_info)) {
  7846. kfree_skb(skb);
  7847. return -EINVAL;
  7848. }
  7849. nla_nest_end(skb, data);
  7850. genlmsg_end(skb, hdr);
  7851. return genlmsg_reply(skb, rdev->cur_cmd_info);
  7852. }
  7853. EXPORT_SYMBOL_GPL(cfg80211_vendor_cmd_reply);
  7854. static int nl80211_set_qos_map(struct sk_buff *skb,
  7855. struct genl_info *info)
  7856. {
  7857. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7858. struct cfg80211_qos_map *qos_map = NULL;
  7859. struct net_device *dev = info->user_ptr[1];
  7860. u8 *pos, len, num_des, des_len, des;
  7861. int ret;
  7862. if (!rdev->ops->set_qos_map)
  7863. return -EOPNOTSUPP;
  7864. if (info->attrs[NL80211_ATTR_QOS_MAP]) {
  7865. pos = nla_data(info->attrs[NL80211_ATTR_QOS_MAP]);
  7866. len = nla_len(info->attrs[NL80211_ATTR_QOS_MAP]);
  7867. if (len % 2 || len < IEEE80211_QOS_MAP_LEN_MIN ||
  7868. len > IEEE80211_QOS_MAP_LEN_MAX)
  7869. return -EINVAL;
  7870. qos_map = kzalloc(sizeof(struct cfg80211_qos_map), GFP_KERNEL);
  7871. if (!qos_map)
  7872. return -ENOMEM;
  7873. num_des = (len - IEEE80211_QOS_MAP_LEN_MIN) >> 1;
  7874. if (num_des) {
  7875. des_len = num_des *
  7876. sizeof(struct cfg80211_dscp_exception);
  7877. memcpy(qos_map->dscp_exception, pos, des_len);
  7878. qos_map->num_des = num_des;
  7879. for (des = 0; des < num_des; des++) {
  7880. if (qos_map->dscp_exception[des].up > 7) {
  7881. kfree(qos_map);
  7882. return -EINVAL;
  7883. }
  7884. }
  7885. pos += des_len;
  7886. }
  7887. memcpy(qos_map->up, pos, IEEE80211_QOS_MAP_LEN_MIN);
  7888. }
  7889. wdev_lock(dev->ieee80211_ptr);
  7890. ret = nl80211_key_allowed(dev->ieee80211_ptr);
  7891. if (!ret)
  7892. ret = rdev_set_qos_map(rdev, dev, qos_map);
  7893. wdev_unlock(dev->ieee80211_ptr);
  7894. kfree(qos_map);
  7895. return ret;
  7896. }
  7897. static int nl80211_add_tx_ts(struct sk_buff *skb, struct genl_info *info)
  7898. {
  7899. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7900. struct net_device *dev = info->user_ptr[1];
  7901. struct wireless_dev *wdev = dev->ieee80211_ptr;
  7902. const u8 *peer;
  7903. u8 tsid, up;
  7904. u16 admitted_time = 0;
  7905. int err;
  7906. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_WMM_ADMISSION))
  7907. return -EOPNOTSUPP;
  7908. if (!info->attrs[NL80211_ATTR_TSID] || !info->attrs[NL80211_ATTR_MAC] ||
  7909. !info->attrs[NL80211_ATTR_USER_PRIO])
  7910. return -EINVAL;
  7911. tsid = nla_get_u8(info->attrs[NL80211_ATTR_TSID]);
  7912. if (tsid >= IEEE80211_NUM_TIDS)
  7913. return -EINVAL;
  7914. up = nla_get_u8(info->attrs[NL80211_ATTR_USER_PRIO]);
  7915. if (up >= IEEE80211_NUM_UPS)
  7916. return -EINVAL;
  7917. /* WMM uses TIDs 0-7 even for TSPEC */
  7918. if (tsid < IEEE80211_FIRST_TSPEC_TSID) {
  7919. if (!(rdev->wiphy.flags & WIPHY_FLAG_SUPPORTS_WMM_ADMISSION))
  7920. return -EINVAL;
  7921. } else {
  7922. /* TODO: handle 802.11 TSPEC/admission control
  7923. * need more attributes for that (e.g. BA session requirement)
  7924. */
  7925. return -EINVAL;
  7926. }
  7927. peer = nla_data(info->attrs[NL80211_ATTR_MAC]);
  7928. if (info->attrs[NL80211_ATTR_ADMITTED_TIME]) {
  7929. admitted_time =
  7930. nla_get_u16(info->attrs[NL80211_ATTR_ADMITTED_TIME]);
  7931. if (!admitted_time)
  7932. return -EINVAL;
  7933. }
  7934. wdev_lock(wdev);
  7935. switch (wdev->iftype) {
  7936. case NL80211_IFTYPE_STATION:
  7937. case NL80211_IFTYPE_P2P_CLIENT:
  7938. if (wdev->current_bss)
  7939. break;
  7940. err = -ENOTCONN;
  7941. goto out;
  7942. default:
  7943. err = -EOPNOTSUPP;
  7944. goto out;
  7945. }
  7946. err = rdev_add_tx_ts(rdev, dev, tsid, peer, up, admitted_time);
  7947. out:
  7948. wdev_unlock(wdev);
  7949. return err;
  7950. }
  7951. static int nl80211_del_tx_ts(struct sk_buff *skb, struct genl_info *info)
  7952. {
  7953. struct cfg80211_registered_device *rdev = info->user_ptr[0];
  7954. struct net_device *dev = info->user_ptr[1];
  7955. struct wireless_dev *wdev = dev->ieee80211_ptr;
  7956. const u8 *peer;
  7957. u8 tsid;
  7958. int err;
  7959. if (!info->attrs[NL80211_ATTR_TSID] || !info->attrs[NL80211_ATTR_MAC])
  7960. return -EINVAL;
  7961. tsid = nla_get_u8(info->attrs[NL80211_ATTR_TSID]);
  7962. peer = nla_data(info->attrs[NL80211_ATTR_MAC]);
  7963. wdev_lock(wdev);
  7964. err = rdev_del_tx_ts(rdev, dev, tsid, peer);
  7965. wdev_unlock(wdev);
  7966. return err;
  7967. }
  7968. #define NL80211_FLAG_NEED_WIPHY 0x01
  7969. #define NL80211_FLAG_NEED_NETDEV 0x02
  7970. #define NL80211_FLAG_NEED_RTNL 0x04
  7971. #define NL80211_FLAG_CHECK_NETDEV_UP 0x08
  7972. #define NL80211_FLAG_NEED_NETDEV_UP (NL80211_FLAG_NEED_NETDEV |\
  7973. NL80211_FLAG_CHECK_NETDEV_UP)
  7974. #define NL80211_FLAG_NEED_WDEV 0x10
  7975. /* If a netdev is associated, it must be UP, P2P must be started */
  7976. #define NL80211_FLAG_NEED_WDEV_UP (NL80211_FLAG_NEED_WDEV |\
  7977. NL80211_FLAG_CHECK_NETDEV_UP)
  7978. #define NL80211_FLAG_CLEAR_SKB 0x20
  7979. static int nl80211_pre_doit(const struct genl_ops *ops, struct sk_buff *skb,
  7980. struct genl_info *info)
  7981. {
  7982. struct cfg80211_registered_device *rdev;
  7983. struct wireless_dev *wdev;
  7984. struct net_device *dev;
  7985. bool rtnl = ops->internal_flags & NL80211_FLAG_NEED_RTNL;
  7986. if (rtnl)
  7987. rtnl_lock();
  7988. if (ops->internal_flags & NL80211_FLAG_NEED_WIPHY) {
  7989. rdev = cfg80211_get_dev_from_info(genl_info_net(info), info);
  7990. if (IS_ERR(rdev)) {
  7991. if (rtnl)
  7992. rtnl_unlock();
  7993. return PTR_ERR(rdev);
  7994. }
  7995. info->user_ptr[0] = rdev;
  7996. } else if (ops->internal_flags & NL80211_FLAG_NEED_NETDEV ||
  7997. ops->internal_flags & NL80211_FLAG_NEED_WDEV) {
  7998. ASSERT_RTNL();
  7999. wdev = __cfg80211_wdev_from_attrs(genl_info_net(info),
  8000. info->attrs);
  8001. if (IS_ERR(wdev)) {
  8002. if (rtnl)
  8003. rtnl_unlock();
  8004. return PTR_ERR(wdev);
  8005. }
  8006. dev = wdev->netdev;
  8007. rdev = wiphy_to_rdev(wdev->wiphy);
  8008. if (ops->internal_flags & NL80211_FLAG_NEED_NETDEV) {
  8009. if (!dev) {
  8010. if (rtnl)
  8011. rtnl_unlock();
  8012. return -EINVAL;
  8013. }
  8014. info->user_ptr[1] = dev;
  8015. } else {
  8016. info->user_ptr[1] = wdev;
  8017. }
  8018. if (dev) {
  8019. if (ops->internal_flags & NL80211_FLAG_CHECK_NETDEV_UP &&
  8020. !netif_running(dev)) {
  8021. if (rtnl)
  8022. rtnl_unlock();
  8023. return -ENETDOWN;
  8024. }
  8025. dev_hold(dev);
  8026. } else if (ops->internal_flags & NL80211_FLAG_CHECK_NETDEV_UP) {
  8027. if (!wdev->p2p_started) {
  8028. if (rtnl)
  8029. rtnl_unlock();
  8030. return -ENETDOWN;
  8031. }
  8032. }
  8033. info->user_ptr[0] = rdev;
  8034. }
  8035. return 0;
  8036. }
  8037. static void nl80211_post_doit(const struct genl_ops *ops, struct sk_buff *skb,
  8038. struct genl_info *info)
  8039. {
  8040. if (info->user_ptr[1]) {
  8041. if (ops->internal_flags & NL80211_FLAG_NEED_WDEV) {
  8042. struct wireless_dev *wdev = info->user_ptr[1];
  8043. if (wdev->netdev)
  8044. dev_put(wdev->netdev);
  8045. } else {
  8046. dev_put(info->user_ptr[1]);
  8047. }
  8048. }
  8049. if (ops->internal_flags & NL80211_FLAG_NEED_RTNL)
  8050. rtnl_unlock();
  8051. /* If needed, clear the netlink message payload from the SKB
  8052. * as it might contain key data that shouldn't stick around on
  8053. * the heap after the SKB is freed. The netlink message header
  8054. * is still needed for further processing, so leave it intact.
  8055. */
  8056. if (ops->internal_flags & NL80211_FLAG_CLEAR_SKB) {
  8057. struct nlmsghdr *nlh = nlmsg_hdr(skb);
  8058. memset(nlmsg_data(nlh), 0, nlmsg_len(nlh));
  8059. }
  8060. }
  8061. static const struct genl_ops nl80211_ops[] = {
  8062. {
  8063. .cmd = NL80211_CMD_GET_WIPHY,
  8064. .doit = nl80211_get_wiphy,
  8065. .dumpit = nl80211_dump_wiphy,
  8066. .done = nl80211_dump_wiphy_done,
  8067. .policy = nl80211_policy,
  8068. /* can be retrieved by unprivileged users */
  8069. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8070. NL80211_FLAG_NEED_RTNL,
  8071. },
  8072. {
  8073. .cmd = NL80211_CMD_SET_WIPHY,
  8074. .doit = nl80211_set_wiphy,
  8075. .policy = nl80211_policy,
  8076. .flags = GENL_ADMIN_PERM,
  8077. .internal_flags = NL80211_FLAG_NEED_RTNL,
  8078. },
  8079. {
  8080. .cmd = NL80211_CMD_GET_INTERFACE,
  8081. .doit = nl80211_get_interface,
  8082. .dumpit = nl80211_dump_interface,
  8083. .policy = nl80211_policy,
  8084. /* can be retrieved by unprivileged users */
  8085. .internal_flags = NL80211_FLAG_NEED_WDEV |
  8086. NL80211_FLAG_NEED_RTNL,
  8087. },
  8088. {
  8089. .cmd = NL80211_CMD_SET_INTERFACE,
  8090. .doit = nl80211_set_interface,
  8091. .policy = nl80211_policy,
  8092. .flags = GENL_ADMIN_PERM,
  8093. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8094. NL80211_FLAG_NEED_RTNL,
  8095. },
  8096. {
  8097. .cmd = NL80211_CMD_NEW_INTERFACE,
  8098. .doit = nl80211_new_interface,
  8099. .policy = nl80211_policy,
  8100. .flags = GENL_ADMIN_PERM,
  8101. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8102. NL80211_FLAG_NEED_RTNL,
  8103. },
  8104. {
  8105. .cmd = NL80211_CMD_DEL_INTERFACE,
  8106. .doit = nl80211_del_interface,
  8107. .policy = nl80211_policy,
  8108. .flags = GENL_ADMIN_PERM,
  8109. .internal_flags = NL80211_FLAG_NEED_WDEV |
  8110. NL80211_FLAG_NEED_RTNL,
  8111. },
  8112. {
  8113. .cmd = NL80211_CMD_GET_KEY,
  8114. .doit = nl80211_get_key,
  8115. .policy = nl80211_policy,
  8116. .flags = GENL_ADMIN_PERM,
  8117. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8118. NL80211_FLAG_NEED_RTNL,
  8119. },
  8120. {
  8121. .cmd = NL80211_CMD_SET_KEY,
  8122. .doit = nl80211_set_key,
  8123. .policy = nl80211_policy,
  8124. .flags = GENL_ADMIN_PERM,
  8125. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8126. NL80211_FLAG_NEED_RTNL |
  8127. NL80211_FLAG_CLEAR_SKB,
  8128. },
  8129. {
  8130. .cmd = NL80211_CMD_NEW_KEY,
  8131. .doit = nl80211_new_key,
  8132. .policy = nl80211_policy,
  8133. .flags = GENL_ADMIN_PERM,
  8134. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8135. NL80211_FLAG_NEED_RTNL |
  8136. NL80211_FLAG_CLEAR_SKB,
  8137. },
  8138. {
  8139. .cmd = NL80211_CMD_DEL_KEY,
  8140. .doit = nl80211_del_key,
  8141. .policy = nl80211_policy,
  8142. .flags = GENL_ADMIN_PERM,
  8143. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8144. NL80211_FLAG_NEED_RTNL,
  8145. },
  8146. {
  8147. .cmd = NL80211_CMD_SET_BEACON,
  8148. .policy = nl80211_policy,
  8149. .flags = GENL_ADMIN_PERM,
  8150. .doit = nl80211_set_beacon,
  8151. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8152. NL80211_FLAG_NEED_RTNL,
  8153. },
  8154. {
  8155. .cmd = NL80211_CMD_START_AP,
  8156. .policy = nl80211_policy,
  8157. .flags = GENL_ADMIN_PERM,
  8158. .doit = nl80211_start_ap,
  8159. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8160. NL80211_FLAG_NEED_RTNL,
  8161. },
  8162. {
  8163. .cmd = NL80211_CMD_STOP_AP,
  8164. .policy = nl80211_policy,
  8165. .flags = GENL_ADMIN_PERM,
  8166. .doit = nl80211_stop_ap,
  8167. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8168. NL80211_FLAG_NEED_RTNL,
  8169. },
  8170. {
  8171. .cmd = NL80211_CMD_GET_STATION,
  8172. .doit = nl80211_get_station,
  8173. .dumpit = nl80211_dump_station,
  8174. .policy = nl80211_policy,
  8175. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8176. NL80211_FLAG_NEED_RTNL,
  8177. },
  8178. {
  8179. .cmd = NL80211_CMD_SET_STATION,
  8180. .doit = nl80211_set_station,
  8181. .policy = nl80211_policy,
  8182. .flags = GENL_ADMIN_PERM,
  8183. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8184. NL80211_FLAG_NEED_RTNL,
  8185. },
  8186. {
  8187. .cmd = NL80211_CMD_NEW_STATION,
  8188. .doit = nl80211_new_station,
  8189. .policy = nl80211_policy,
  8190. .flags = GENL_ADMIN_PERM,
  8191. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8192. NL80211_FLAG_NEED_RTNL,
  8193. },
  8194. {
  8195. .cmd = NL80211_CMD_DEL_STATION,
  8196. .doit = nl80211_del_station,
  8197. .policy = nl80211_policy,
  8198. .flags = GENL_ADMIN_PERM,
  8199. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8200. NL80211_FLAG_NEED_RTNL,
  8201. },
  8202. {
  8203. .cmd = NL80211_CMD_GET_MPATH,
  8204. .doit = nl80211_get_mpath,
  8205. .dumpit = nl80211_dump_mpath,
  8206. .policy = nl80211_policy,
  8207. .flags = GENL_ADMIN_PERM,
  8208. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8209. NL80211_FLAG_NEED_RTNL,
  8210. },
  8211. {
  8212. .cmd = NL80211_CMD_SET_MPATH,
  8213. .doit = nl80211_set_mpath,
  8214. .policy = nl80211_policy,
  8215. .flags = GENL_ADMIN_PERM,
  8216. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8217. NL80211_FLAG_NEED_RTNL,
  8218. },
  8219. {
  8220. .cmd = NL80211_CMD_NEW_MPATH,
  8221. .doit = nl80211_new_mpath,
  8222. .policy = nl80211_policy,
  8223. .flags = GENL_ADMIN_PERM,
  8224. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8225. NL80211_FLAG_NEED_RTNL,
  8226. },
  8227. {
  8228. .cmd = NL80211_CMD_DEL_MPATH,
  8229. .doit = nl80211_del_mpath,
  8230. .policy = nl80211_policy,
  8231. .flags = GENL_ADMIN_PERM,
  8232. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8233. NL80211_FLAG_NEED_RTNL,
  8234. },
  8235. {
  8236. .cmd = NL80211_CMD_SET_BSS,
  8237. .doit = nl80211_set_bss,
  8238. .policy = nl80211_policy,
  8239. .flags = GENL_ADMIN_PERM,
  8240. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8241. NL80211_FLAG_NEED_RTNL,
  8242. },
  8243. {
  8244. .cmd = NL80211_CMD_GET_REG,
  8245. .doit = nl80211_get_reg,
  8246. .policy = nl80211_policy,
  8247. .internal_flags = NL80211_FLAG_NEED_RTNL,
  8248. /* can be retrieved by unprivileged users */
  8249. },
  8250. {
  8251. .cmd = NL80211_CMD_SET_REG,
  8252. .doit = nl80211_set_reg,
  8253. .policy = nl80211_policy,
  8254. .flags = GENL_ADMIN_PERM,
  8255. .internal_flags = NL80211_FLAG_NEED_RTNL,
  8256. },
  8257. {
  8258. .cmd = NL80211_CMD_REQ_SET_REG,
  8259. .doit = nl80211_req_set_reg,
  8260. .policy = nl80211_policy,
  8261. .flags = GENL_ADMIN_PERM,
  8262. },
  8263. {
  8264. .cmd = NL80211_CMD_GET_MESH_CONFIG,
  8265. .doit = nl80211_get_mesh_config,
  8266. .policy = nl80211_policy,
  8267. /* can be retrieved by unprivileged users */
  8268. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8269. NL80211_FLAG_NEED_RTNL,
  8270. },
  8271. {
  8272. .cmd = NL80211_CMD_SET_MESH_CONFIG,
  8273. .doit = nl80211_update_mesh_config,
  8274. .policy = nl80211_policy,
  8275. .flags = GENL_ADMIN_PERM,
  8276. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8277. NL80211_FLAG_NEED_RTNL,
  8278. },
  8279. {
  8280. .cmd = NL80211_CMD_TRIGGER_SCAN,
  8281. .doit = nl80211_trigger_scan,
  8282. .policy = nl80211_policy,
  8283. .flags = GENL_ADMIN_PERM,
  8284. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8285. NL80211_FLAG_NEED_RTNL,
  8286. },
  8287. {
  8288. .cmd = NL80211_CMD_GET_SCAN,
  8289. .policy = nl80211_policy,
  8290. .dumpit = nl80211_dump_scan,
  8291. },
  8292. {
  8293. .cmd = NL80211_CMD_START_SCHED_SCAN,
  8294. .doit = nl80211_start_sched_scan,
  8295. .policy = nl80211_policy,
  8296. .flags = GENL_ADMIN_PERM,
  8297. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8298. NL80211_FLAG_NEED_RTNL,
  8299. },
  8300. {
  8301. .cmd = NL80211_CMD_STOP_SCHED_SCAN,
  8302. .doit = nl80211_stop_sched_scan,
  8303. .policy = nl80211_policy,
  8304. .flags = GENL_ADMIN_PERM,
  8305. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8306. NL80211_FLAG_NEED_RTNL,
  8307. },
  8308. {
  8309. .cmd = NL80211_CMD_AUTHENTICATE,
  8310. .doit = nl80211_authenticate,
  8311. .policy = nl80211_policy,
  8312. .flags = GENL_ADMIN_PERM,
  8313. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8314. NL80211_FLAG_NEED_RTNL |
  8315. NL80211_FLAG_CLEAR_SKB,
  8316. },
  8317. {
  8318. .cmd = NL80211_CMD_ASSOCIATE,
  8319. .doit = nl80211_associate,
  8320. .policy = nl80211_policy,
  8321. .flags = GENL_ADMIN_PERM,
  8322. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8323. NL80211_FLAG_NEED_RTNL,
  8324. },
  8325. {
  8326. .cmd = NL80211_CMD_DEAUTHENTICATE,
  8327. .doit = nl80211_deauthenticate,
  8328. .policy = nl80211_policy,
  8329. .flags = GENL_ADMIN_PERM,
  8330. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8331. NL80211_FLAG_NEED_RTNL,
  8332. },
  8333. {
  8334. .cmd = NL80211_CMD_DISASSOCIATE,
  8335. .doit = nl80211_disassociate,
  8336. .policy = nl80211_policy,
  8337. .flags = GENL_ADMIN_PERM,
  8338. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8339. NL80211_FLAG_NEED_RTNL,
  8340. },
  8341. {
  8342. .cmd = NL80211_CMD_JOIN_IBSS,
  8343. .doit = nl80211_join_ibss,
  8344. .policy = nl80211_policy,
  8345. .flags = GENL_ADMIN_PERM,
  8346. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8347. NL80211_FLAG_NEED_RTNL,
  8348. },
  8349. {
  8350. .cmd = NL80211_CMD_LEAVE_IBSS,
  8351. .doit = nl80211_leave_ibss,
  8352. .policy = nl80211_policy,
  8353. .flags = GENL_ADMIN_PERM,
  8354. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8355. NL80211_FLAG_NEED_RTNL,
  8356. },
  8357. #ifdef CONFIG_NL80211_TESTMODE
  8358. {
  8359. .cmd = NL80211_CMD_TESTMODE,
  8360. .doit = nl80211_testmode_do,
  8361. .dumpit = nl80211_testmode_dump,
  8362. .policy = nl80211_policy,
  8363. .flags = GENL_ADMIN_PERM,
  8364. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8365. NL80211_FLAG_NEED_RTNL,
  8366. },
  8367. #endif
  8368. {
  8369. .cmd = NL80211_CMD_CONNECT,
  8370. .doit = nl80211_connect,
  8371. .policy = nl80211_policy,
  8372. .flags = GENL_ADMIN_PERM,
  8373. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8374. NL80211_FLAG_NEED_RTNL,
  8375. },
  8376. {
  8377. .cmd = NL80211_CMD_DISCONNECT,
  8378. .doit = nl80211_disconnect,
  8379. .policy = nl80211_policy,
  8380. .flags = GENL_ADMIN_PERM,
  8381. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8382. NL80211_FLAG_NEED_RTNL,
  8383. },
  8384. {
  8385. .cmd = NL80211_CMD_SET_WIPHY_NETNS,
  8386. .doit = nl80211_wiphy_netns,
  8387. .policy = nl80211_policy,
  8388. .flags = GENL_ADMIN_PERM,
  8389. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8390. NL80211_FLAG_NEED_RTNL,
  8391. },
  8392. {
  8393. .cmd = NL80211_CMD_GET_SURVEY,
  8394. .policy = nl80211_policy,
  8395. .dumpit = nl80211_dump_survey,
  8396. },
  8397. {
  8398. .cmd = NL80211_CMD_SET_PMKSA,
  8399. .doit = nl80211_setdel_pmksa,
  8400. .policy = nl80211_policy,
  8401. .flags = GENL_ADMIN_PERM,
  8402. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8403. NL80211_FLAG_NEED_RTNL,
  8404. },
  8405. {
  8406. .cmd = NL80211_CMD_DEL_PMKSA,
  8407. .doit = nl80211_setdel_pmksa,
  8408. .policy = nl80211_policy,
  8409. .flags = GENL_ADMIN_PERM,
  8410. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8411. NL80211_FLAG_NEED_RTNL,
  8412. },
  8413. {
  8414. .cmd = NL80211_CMD_FLUSH_PMKSA,
  8415. .doit = nl80211_flush_pmksa,
  8416. .policy = nl80211_policy,
  8417. .flags = GENL_ADMIN_PERM,
  8418. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8419. NL80211_FLAG_NEED_RTNL,
  8420. },
  8421. {
  8422. .cmd = NL80211_CMD_REMAIN_ON_CHANNEL,
  8423. .doit = nl80211_remain_on_channel,
  8424. .policy = nl80211_policy,
  8425. .flags = GENL_ADMIN_PERM,
  8426. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8427. NL80211_FLAG_NEED_RTNL,
  8428. },
  8429. {
  8430. .cmd = NL80211_CMD_CANCEL_REMAIN_ON_CHANNEL,
  8431. .doit = nl80211_cancel_remain_on_channel,
  8432. .policy = nl80211_policy,
  8433. .flags = GENL_ADMIN_PERM,
  8434. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8435. NL80211_FLAG_NEED_RTNL,
  8436. },
  8437. {
  8438. .cmd = NL80211_CMD_SET_TX_BITRATE_MASK,
  8439. .doit = nl80211_set_tx_bitrate_mask,
  8440. .policy = nl80211_policy,
  8441. .flags = GENL_ADMIN_PERM,
  8442. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8443. NL80211_FLAG_NEED_RTNL,
  8444. },
  8445. {
  8446. .cmd = NL80211_CMD_REGISTER_FRAME,
  8447. .doit = nl80211_register_mgmt,
  8448. .policy = nl80211_policy,
  8449. .flags = GENL_ADMIN_PERM,
  8450. .internal_flags = NL80211_FLAG_NEED_WDEV |
  8451. NL80211_FLAG_NEED_RTNL,
  8452. },
  8453. {
  8454. .cmd = NL80211_CMD_FRAME,
  8455. .doit = nl80211_tx_mgmt,
  8456. .policy = nl80211_policy,
  8457. .flags = GENL_ADMIN_PERM,
  8458. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8459. NL80211_FLAG_NEED_RTNL,
  8460. },
  8461. {
  8462. .cmd = NL80211_CMD_FRAME_WAIT_CANCEL,
  8463. .doit = nl80211_tx_mgmt_cancel_wait,
  8464. .policy = nl80211_policy,
  8465. .flags = GENL_ADMIN_PERM,
  8466. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8467. NL80211_FLAG_NEED_RTNL,
  8468. },
  8469. {
  8470. .cmd = NL80211_CMD_SET_POWER_SAVE,
  8471. .doit = nl80211_set_power_save,
  8472. .policy = nl80211_policy,
  8473. .flags = GENL_ADMIN_PERM,
  8474. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8475. NL80211_FLAG_NEED_RTNL,
  8476. },
  8477. {
  8478. .cmd = NL80211_CMD_GET_POWER_SAVE,
  8479. .doit = nl80211_get_power_save,
  8480. .policy = nl80211_policy,
  8481. /* can be retrieved by unprivileged users */
  8482. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8483. NL80211_FLAG_NEED_RTNL,
  8484. },
  8485. {
  8486. .cmd = NL80211_CMD_SET_CQM,
  8487. .doit = nl80211_set_cqm,
  8488. .policy = nl80211_policy,
  8489. .flags = GENL_ADMIN_PERM,
  8490. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8491. NL80211_FLAG_NEED_RTNL,
  8492. },
  8493. {
  8494. .cmd = NL80211_CMD_SET_CHANNEL,
  8495. .doit = nl80211_set_channel,
  8496. .policy = nl80211_policy,
  8497. .flags = GENL_ADMIN_PERM,
  8498. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8499. NL80211_FLAG_NEED_RTNL,
  8500. },
  8501. {
  8502. .cmd = NL80211_CMD_SET_WDS_PEER,
  8503. .doit = nl80211_set_wds_peer,
  8504. .policy = nl80211_policy,
  8505. .flags = GENL_ADMIN_PERM,
  8506. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8507. NL80211_FLAG_NEED_RTNL,
  8508. },
  8509. {
  8510. .cmd = NL80211_CMD_JOIN_MESH,
  8511. .doit = nl80211_join_mesh,
  8512. .policy = nl80211_policy,
  8513. .flags = GENL_ADMIN_PERM,
  8514. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8515. NL80211_FLAG_NEED_RTNL,
  8516. },
  8517. {
  8518. .cmd = NL80211_CMD_LEAVE_MESH,
  8519. .doit = nl80211_leave_mesh,
  8520. .policy = nl80211_policy,
  8521. .flags = GENL_ADMIN_PERM,
  8522. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8523. NL80211_FLAG_NEED_RTNL,
  8524. },
  8525. #ifdef CONFIG_PM
  8526. {
  8527. .cmd = NL80211_CMD_GET_WOWLAN,
  8528. .doit = nl80211_get_wowlan,
  8529. .policy = nl80211_policy,
  8530. /* can be retrieved by unprivileged users */
  8531. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8532. NL80211_FLAG_NEED_RTNL,
  8533. },
  8534. {
  8535. .cmd = NL80211_CMD_SET_WOWLAN,
  8536. .doit = nl80211_set_wowlan,
  8537. .policy = nl80211_policy,
  8538. .flags = GENL_ADMIN_PERM,
  8539. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8540. NL80211_FLAG_NEED_RTNL,
  8541. },
  8542. #endif
  8543. {
  8544. .cmd = NL80211_CMD_SET_REKEY_OFFLOAD,
  8545. .doit = nl80211_set_rekey_data,
  8546. .policy = nl80211_policy,
  8547. .flags = GENL_ADMIN_PERM,
  8548. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8549. NL80211_FLAG_NEED_RTNL |
  8550. NL80211_FLAG_CLEAR_SKB,
  8551. },
  8552. {
  8553. .cmd = NL80211_CMD_TDLS_MGMT,
  8554. .doit = nl80211_tdls_mgmt,
  8555. .policy = nl80211_policy,
  8556. .flags = GENL_ADMIN_PERM,
  8557. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8558. NL80211_FLAG_NEED_RTNL,
  8559. },
  8560. {
  8561. .cmd = NL80211_CMD_TDLS_OPER,
  8562. .doit = nl80211_tdls_oper,
  8563. .policy = nl80211_policy,
  8564. .flags = GENL_ADMIN_PERM,
  8565. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8566. NL80211_FLAG_NEED_RTNL,
  8567. },
  8568. {
  8569. .cmd = NL80211_CMD_UNEXPECTED_FRAME,
  8570. .doit = nl80211_register_unexpected_frame,
  8571. .policy = nl80211_policy,
  8572. .flags = GENL_ADMIN_PERM,
  8573. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8574. NL80211_FLAG_NEED_RTNL,
  8575. },
  8576. {
  8577. .cmd = NL80211_CMD_PROBE_CLIENT,
  8578. .doit = nl80211_probe_client,
  8579. .policy = nl80211_policy,
  8580. .flags = GENL_ADMIN_PERM,
  8581. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8582. NL80211_FLAG_NEED_RTNL,
  8583. },
  8584. {
  8585. .cmd = NL80211_CMD_REGISTER_BEACONS,
  8586. .doit = nl80211_register_beacons,
  8587. .policy = nl80211_policy,
  8588. .flags = GENL_ADMIN_PERM,
  8589. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8590. NL80211_FLAG_NEED_RTNL,
  8591. },
  8592. {
  8593. .cmd = NL80211_CMD_SET_NOACK_MAP,
  8594. .doit = nl80211_set_noack_map,
  8595. .policy = nl80211_policy,
  8596. .flags = GENL_ADMIN_PERM,
  8597. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8598. NL80211_FLAG_NEED_RTNL,
  8599. },
  8600. {
  8601. .cmd = NL80211_CMD_START_P2P_DEVICE,
  8602. .doit = nl80211_start_p2p_device,
  8603. .policy = nl80211_policy,
  8604. .flags = GENL_ADMIN_PERM,
  8605. .internal_flags = NL80211_FLAG_NEED_WDEV |
  8606. NL80211_FLAG_NEED_RTNL,
  8607. },
  8608. {
  8609. .cmd = NL80211_CMD_STOP_P2P_DEVICE,
  8610. .doit = nl80211_stop_p2p_device,
  8611. .policy = nl80211_policy,
  8612. .flags = GENL_ADMIN_PERM,
  8613. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8614. NL80211_FLAG_NEED_RTNL,
  8615. },
  8616. {
  8617. .cmd = NL80211_CMD_SET_MCAST_RATE,
  8618. .doit = nl80211_set_mcast_rate,
  8619. .policy = nl80211_policy,
  8620. .flags = GENL_ADMIN_PERM,
  8621. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8622. NL80211_FLAG_NEED_RTNL,
  8623. },
  8624. {
  8625. .cmd = NL80211_CMD_SET_MAC_ACL,
  8626. .doit = nl80211_set_mac_acl,
  8627. .policy = nl80211_policy,
  8628. .flags = GENL_ADMIN_PERM,
  8629. .internal_flags = NL80211_FLAG_NEED_NETDEV |
  8630. NL80211_FLAG_NEED_RTNL,
  8631. },
  8632. {
  8633. .cmd = NL80211_CMD_RADAR_DETECT,
  8634. .doit = nl80211_start_radar_detection,
  8635. .policy = nl80211_policy,
  8636. .flags = GENL_ADMIN_PERM,
  8637. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8638. NL80211_FLAG_NEED_RTNL,
  8639. },
  8640. {
  8641. .cmd = NL80211_CMD_GET_PROTOCOL_FEATURES,
  8642. .doit = nl80211_get_protocol_features,
  8643. .policy = nl80211_policy,
  8644. },
  8645. {
  8646. .cmd = NL80211_CMD_UPDATE_FT_IES,
  8647. .doit = nl80211_update_ft_ies,
  8648. .policy = nl80211_policy,
  8649. .flags = GENL_ADMIN_PERM,
  8650. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8651. NL80211_FLAG_NEED_RTNL,
  8652. },
  8653. {
  8654. .cmd = NL80211_CMD_CRIT_PROTOCOL_START,
  8655. .doit = nl80211_crit_protocol_start,
  8656. .policy = nl80211_policy,
  8657. .flags = GENL_ADMIN_PERM,
  8658. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8659. NL80211_FLAG_NEED_RTNL,
  8660. },
  8661. {
  8662. .cmd = NL80211_CMD_CRIT_PROTOCOL_STOP,
  8663. .doit = nl80211_crit_protocol_stop,
  8664. .policy = nl80211_policy,
  8665. .flags = GENL_ADMIN_PERM,
  8666. .internal_flags = NL80211_FLAG_NEED_WDEV_UP |
  8667. NL80211_FLAG_NEED_RTNL,
  8668. },
  8669. {
  8670. .cmd = NL80211_CMD_GET_COALESCE,
  8671. .doit = nl80211_get_coalesce,
  8672. .policy = nl80211_policy,
  8673. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8674. NL80211_FLAG_NEED_RTNL,
  8675. },
  8676. {
  8677. .cmd = NL80211_CMD_SET_COALESCE,
  8678. .doit = nl80211_set_coalesce,
  8679. .policy = nl80211_policy,
  8680. .flags = GENL_ADMIN_PERM,
  8681. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8682. NL80211_FLAG_NEED_RTNL,
  8683. },
  8684. {
  8685. .cmd = NL80211_CMD_CHANNEL_SWITCH,
  8686. .doit = nl80211_channel_switch,
  8687. .policy = nl80211_policy,
  8688. .flags = GENL_ADMIN_PERM,
  8689. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8690. NL80211_FLAG_NEED_RTNL,
  8691. },
  8692. {
  8693. .cmd = NL80211_CMD_VENDOR,
  8694. .doit = nl80211_vendor_cmd,
  8695. .policy = nl80211_policy,
  8696. .flags = GENL_ADMIN_PERM,
  8697. .internal_flags = NL80211_FLAG_NEED_WIPHY |
  8698. NL80211_FLAG_NEED_RTNL,
  8699. },
  8700. {
  8701. .cmd = NL80211_CMD_SET_QOS_MAP,
  8702. .doit = nl80211_set_qos_map,
  8703. .policy = nl80211_policy,
  8704. .flags = GENL_ADMIN_PERM,
  8705. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8706. NL80211_FLAG_NEED_RTNL,
  8707. },
  8708. {
  8709. .cmd = NL80211_CMD_ADD_TX_TS,
  8710. .doit = nl80211_add_tx_ts,
  8711. .policy = nl80211_policy,
  8712. .flags = GENL_ADMIN_PERM,
  8713. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8714. NL80211_FLAG_NEED_RTNL,
  8715. },
  8716. {
  8717. .cmd = NL80211_CMD_DEL_TX_TS,
  8718. .doit = nl80211_del_tx_ts,
  8719. .policy = nl80211_policy,
  8720. .flags = GENL_ADMIN_PERM,
  8721. .internal_flags = NL80211_FLAG_NEED_NETDEV_UP |
  8722. NL80211_FLAG_NEED_RTNL,
  8723. },
  8724. };
  8725. /* notification functions */
  8726. void nl80211_notify_wiphy(struct cfg80211_registered_device *rdev,
  8727. enum nl80211_commands cmd)
  8728. {
  8729. struct sk_buff *msg;
  8730. struct nl80211_dump_wiphy_state state = {};
  8731. WARN_ON(cmd != NL80211_CMD_NEW_WIPHY &&
  8732. cmd != NL80211_CMD_DEL_WIPHY);
  8733. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  8734. if (!msg)
  8735. return;
  8736. if (nl80211_send_wiphy(rdev, cmd, msg, 0, 0, 0, &state) < 0) {
  8737. nlmsg_free(msg);
  8738. return;
  8739. }
  8740. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  8741. NL80211_MCGRP_CONFIG, GFP_KERNEL);
  8742. }
  8743. static int nl80211_add_scan_req(struct sk_buff *msg,
  8744. struct cfg80211_registered_device *rdev)
  8745. {
  8746. struct cfg80211_scan_request *req = rdev->scan_req;
  8747. struct nlattr *nest;
  8748. int i;
  8749. if (WARN_ON(!req))
  8750. return 0;
  8751. nest = nla_nest_start(msg, NL80211_ATTR_SCAN_SSIDS);
  8752. if (!nest)
  8753. goto nla_put_failure;
  8754. for (i = 0; i < req->n_ssids; i++) {
  8755. if (nla_put(msg, i, req->ssids[i].ssid_len, req->ssids[i].ssid))
  8756. goto nla_put_failure;
  8757. }
  8758. nla_nest_end(msg, nest);
  8759. nest = nla_nest_start(msg, NL80211_ATTR_SCAN_FREQUENCIES);
  8760. if (!nest)
  8761. goto nla_put_failure;
  8762. for (i = 0; i < req->n_channels; i++) {
  8763. if (nla_put_u32(msg, i, req->channels[i]->center_freq))
  8764. goto nla_put_failure;
  8765. }
  8766. nla_nest_end(msg, nest);
  8767. if (req->ie &&
  8768. nla_put(msg, NL80211_ATTR_IE, req->ie_len, req->ie))
  8769. goto nla_put_failure;
  8770. if (req->flags &&
  8771. nla_put_u32(msg, NL80211_ATTR_SCAN_FLAGS, req->flags))
  8772. goto nla_put_failure;
  8773. return 0;
  8774. nla_put_failure:
  8775. return -ENOBUFS;
  8776. }
  8777. static int nl80211_send_scan_msg(struct sk_buff *msg,
  8778. struct cfg80211_registered_device *rdev,
  8779. struct wireless_dev *wdev,
  8780. u32 portid, u32 seq, int flags,
  8781. u32 cmd)
  8782. {
  8783. void *hdr;
  8784. hdr = nl80211hdr_put(msg, portid, seq, flags, cmd);
  8785. if (!hdr)
  8786. return -1;
  8787. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  8788. (wdev->netdev && nla_put_u32(msg, NL80211_ATTR_IFINDEX,
  8789. wdev->netdev->ifindex)) ||
  8790. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)))
  8791. goto nla_put_failure;
  8792. /* ignore errors and send incomplete event anyway */
  8793. nl80211_add_scan_req(msg, rdev);
  8794. return genlmsg_end(msg, hdr);
  8795. nla_put_failure:
  8796. genlmsg_cancel(msg, hdr);
  8797. return -EMSGSIZE;
  8798. }
  8799. static int
  8800. nl80211_send_sched_scan_msg(struct sk_buff *msg,
  8801. struct cfg80211_registered_device *rdev,
  8802. struct net_device *netdev,
  8803. u32 portid, u32 seq, int flags, u32 cmd)
  8804. {
  8805. void *hdr;
  8806. hdr = nl80211hdr_put(msg, portid, seq, flags, cmd);
  8807. if (!hdr)
  8808. return -1;
  8809. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  8810. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex))
  8811. goto nla_put_failure;
  8812. return genlmsg_end(msg, hdr);
  8813. nla_put_failure:
  8814. genlmsg_cancel(msg, hdr);
  8815. return -EMSGSIZE;
  8816. }
  8817. void nl80211_send_scan_start(struct cfg80211_registered_device *rdev,
  8818. struct wireless_dev *wdev)
  8819. {
  8820. struct sk_buff *msg;
  8821. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  8822. if (!msg)
  8823. return;
  8824. if (nl80211_send_scan_msg(msg, rdev, wdev, 0, 0, 0,
  8825. NL80211_CMD_TRIGGER_SCAN) < 0) {
  8826. nlmsg_free(msg);
  8827. return;
  8828. }
  8829. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  8830. NL80211_MCGRP_SCAN, GFP_KERNEL);
  8831. }
  8832. struct sk_buff *nl80211_build_scan_msg(struct cfg80211_registered_device *rdev,
  8833. struct wireless_dev *wdev, bool aborted)
  8834. {
  8835. struct sk_buff *msg;
  8836. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  8837. if (!msg)
  8838. return NULL;
  8839. if (nl80211_send_scan_msg(msg, rdev, wdev, 0, 0, 0,
  8840. aborted ? NL80211_CMD_SCAN_ABORTED :
  8841. NL80211_CMD_NEW_SCAN_RESULTS) < 0) {
  8842. nlmsg_free(msg);
  8843. return NULL;
  8844. }
  8845. return msg;
  8846. }
  8847. void nl80211_send_scan_result(struct cfg80211_registered_device *rdev,
  8848. struct sk_buff *msg)
  8849. {
  8850. if (!msg)
  8851. return;
  8852. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  8853. NL80211_MCGRP_SCAN, GFP_KERNEL);
  8854. }
  8855. void nl80211_send_sched_scan_results(struct cfg80211_registered_device *rdev,
  8856. struct net_device *netdev)
  8857. {
  8858. struct sk_buff *msg;
  8859. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  8860. if (!msg)
  8861. return;
  8862. if (nl80211_send_sched_scan_msg(msg, rdev, netdev, 0, 0, 0,
  8863. NL80211_CMD_SCHED_SCAN_RESULTS) < 0) {
  8864. nlmsg_free(msg);
  8865. return;
  8866. }
  8867. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  8868. NL80211_MCGRP_SCAN, GFP_KERNEL);
  8869. }
  8870. void nl80211_send_sched_scan(struct cfg80211_registered_device *rdev,
  8871. struct net_device *netdev, u32 cmd)
  8872. {
  8873. struct sk_buff *msg;
  8874. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  8875. if (!msg)
  8876. return;
  8877. if (nl80211_send_sched_scan_msg(msg, rdev, netdev, 0, 0, 0, cmd) < 0) {
  8878. nlmsg_free(msg);
  8879. return;
  8880. }
  8881. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  8882. NL80211_MCGRP_SCAN, GFP_KERNEL);
  8883. }
  8884. /*
  8885. * This can happen on global regulatory changes or device specific settings
  8886. * based on custom world regulatory domains.
  8887. */
  8888. void nl80211_send_reg_change_event(struct regulatory_request *request)
  8889. {
  8890. struct sk_buff *msg;
  8891. void *hdr;
  8892. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  8893. if (!msg)
  8894. return;
  8895. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_REG_CHANGE);
  8896. if (!hdr) {
  8897. nlmsg_free(msg);
  8898. return;
  8899. }
  8900. /* Userspace can always count this one always being set */
  8901. if (nla_put_u8(msg, NL80211_ATTR_REG_INITIATOR, request->initiator))
  8902. goto nla_put_failure;
  8903. if (request->alpha2[0] == '0' && request->alpha2[1] == '0') {
  8904. if (nla_put_u8(msg, NL80211_ATTR_REG_TYPE,
  8905. NL80211_REGDOM_TYPE_WORLD))
  8906. goto nla_put_failure;
  8907. } else if (request->alpha2[0] == '9' && request->alpha2[1] == '9') {
  8908. if (nla_put_u8(msg, NL80211_ATTR_REG_TYPE,
  8909. NL80211_REGDOM_TYPE_CUSTOM_WORLD))
  8910. goto nla_put_failure;
  8911. } else if ((request->alpha2[0] == '9' && request->alpha2[1] == '8') ||
  8912. request->intersect) {
  8913. if (nla_put_u8(msg, NL80211_ATTR_REG_TYPE,
  8914. NL80211_REGDOM_TYPE_INTERSECTION))
  8915. goto nla_put_failure;
  8916. } else {
  8917. if (nla_put_u8(msg, NL80211_ATTR_REG_TYPE,
  8918. NL80211_REGDOM_TYPE_COUNTRY) ||
  8919. nla_put_string(msg, NL80211_ATTR_REG_ALPHA2,
  8920. request->alpha2))
  8921. goto nla_put_failure;
  8922. }
  8923. if (request->wiphy_idx != WIPHY_IDX_INVALID &&
  8924. nla_put_u32(msg, NL80211_ATTR_WIPHY, request->wiphy_idx))
  8925. goto nla_put_failure;
  8926. genlmsg_end(msg, hdr);
  8927. rcu_read_lock();
  8928. genlmsg_multicast_allns(&nl80211_fam, msg, 0,
  8929. NL80211_MCGRP_REGULATORY, GFP_ATOMIC);
  8930. rcu_read_unlock();
  8931. return;
  8932. nla_put_failure:
  8933. genlmsg_cancel(msg, hdr);
  8934. nlmsg_free(msg);
  8935. }
  8936. static void nl80211_send_mlme_event(struct cfg80211_registered_device *rdev,
  8937. struct net_device *netdev,
  8938. const u8 *buf, size_t len,
  8939. enum nl80211_commands cmd, gfp_t gfp,
  8940. int uapsd_queues)
  8941. {
  8942. struct sk_buff *msg;
  8943. void *hdr;
  8944. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  8945. if (!msg)
  8946. return;
  8947. hdr = nl80211hdr_put(msg, 0, 0, 0, cmd);
  8948. if (!hdr) {
  8949. nlmsg_free(msg);
  8950. return;
  8951. }
  8952. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  8953. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  8954. nla_put(msg, NL80211_ATTR_FRAME, len, buf))
  8955. goto nla_put_failure;
  8956. if (uapsd_queues >= 0) {
  8957. struct nlattr *nla_wmm =
  8958. nla_nest_start(msg, NL80211_ATTR_STA_WME);
  8959. if (!nla_wmm)
  8960. goto nla_put_failure;
  8961. if (nla_put_u8(msg, NL80211_STA_WME_UAPSD_QUEUES,
  8962. uapsd_queues))
  8963. goto nla_put_failure;
  8964. nla_nest_end(msg, nla_wmm);
  8965. }
  8966. genlmsg_end(msg, hdr);
  8967. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  8968. NL80211_MCGRP_MLME, gfp);
  8969. return;
  8970. nla_put_failure:
  8971. genlmsg_cancel(msg, hdr);
  8972. nlmsg_free(msg);
  8973. }
  8974. void nl80211_send_rx_auth(struct cfg80211_registered_device *rdev,
  8975. struct net_device *netdev, const u8 *buf,
  8976. size_t len, gfp_t gfp)
  8977. {
  8978. nl80211_send_mlme_event(rdev, netdev, buf, len,
  8979. NL80211_CMD_AUTHENTICATE, gfp, -1);
  8980. }
  8981. void nl80211_send_rx_assoc(struct cfg80211_registered_device *rdev,
  8982. struct net_device *netdev, const u8 *buf,
  8983. size_t len, gfp_t gfp, int uapsd_queues)
  8984. {
  8985. nl80211_send_mlme_event(rdev, netdev, buf, len,
  8986. NL80211_CMD_ASSOCIATE, gfp, uapsd_queues);
  8987. }
  8988. void nl80211_send_deauth(struct cfg80211_registered_device *rdev,
  8989. struct net_device *netdev, const u8 *buf,
  8990. size_t len, gfp_t gfp)
  8991. {
  8992. nl80211_send_mlme_event(rdev, netdev, buf, len,
  8993. NL80211_CMD_DEAUTHENTICATE, gfp, -1);
  8994. }
  8995. void nl80211_send_disassoc(struct cfg80211_registered_device *rdev,
  8996. struct net_device *netdev, const u8 *buf,
  8997. size_t len, gfp_t gfp)
  8998. {
  8999. nl80211_send_mlme_event(rdev, netdev, buf, len,
  9000. NL80211_CMD_DISASSOCIATE, gfp, -1);
  9001. }
  9002. void cfg80211_rx_unprot_mlme_mgmt(struct net_device *dev, const u8 *buf,
  9003. size_t len)
  9004. {
  9005. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9006. struct wiphy *wiphy = wdev->wiphy;
  9007. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9008. const struct ieee80211_mgmt *mgmt = (void *)buf;
  9009. u32 cmd;
  9010. if (WARN_ON(len < 2))
  9011. return;
  9012. if (ieee80211_is_deauth(mgmt->frame_control))
  9013. cmd = NL80211_CMD_UNPROT_DEAUTHENTICATE;
  9014. else
  9015. cmd = NL80211_CMD_UNPROT_DISASSOCIATE;
  9016. trace_cfg80211_rx_unprot_mlme_mgmt(dev, buf, len);
  9017. nl80211_send_mlme_event(rdev, dev, buf, len, cmd, GFP_ATOMIC, -1);
  9018. }
  9019. EXPORT_SYMBOL(cfg80211_rx_unprot_mlme_mgmt);
  9020. static void nl80211_send_mlme_timeout(struct cfg80211_registered_device *rdev,
  9021. struct net_device *netdev, int cmd,
  9022. const u8 *addr, gfp_t gfp)
  9023. {
  9024. struct sk_buff *msg;
  9025. void *hdr;
  9026. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9027. if (!msg)
  9028. return;
  9029. hdr = nl80211hdr_put(msg, 0, 0, 0, cmd);
  9030. if (!hdr) {
  9031. nlmsg_free(msg);
  9032. return;
  9033. }
  9034. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9035. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9036. nla_put_flag(msg, NL80211_ATTR_TIMED_OUT) ||
  9037. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, addr))
  9038. goto nla_put_failure;
  9039. genlmsg_end(msg, hdr);
  9040. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9041. NL80211_MCGRP_MLME, gfp);
  9042. return;
  9043. nla_put_failure:
  9044. genlmsg_cancel(msg, hdr);
  9045. nlmsg_free(msg);
  9046. }
  9047. void nl80211_send_auth_timeout(struct cfg80211_registered_device *rdev,
  9048. struct net_device *netdev, const u8 *addr,
  9049. gfp_t gfp)
  9050. {
  9051. nl80211_send_mlme_timeout(rdev, netdev, NL80211_CMD_AUTHENTICATE,
  9052. addr, gfp);
  9053. }
  9054. void nl80211_send_assoc_timeout(struct cfg80211_registered_device *rdev,
  9055. struct net_device *netdev, const u8 *addr,
  9056. gfp_t gfp)
  9057. {
  9058. nl80211_send_mlme_timeout(rdev, netdev, NL80211_CMD_ASSOCIATE,
  9059. addr, gfp);
  9060. }
  9061. void nl80211_send_connect_result(struct cfg80211_registered_device *rdev,
  9062. struct net_device *netdev, const u8 *bssid,
  9063. const u8 *req_ie, size_t req_ie_len,
  9064. const u8 *resp_ie, size_t resp_ie_len,
  9065. u16 status, gfp_t gfp)
  9066. {
  9067. struct sk_buff *msg;
  9068. void *hdr;
  9069. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9070. if (!msg)
  9071. return;
  9072. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_CONNECT);
  9073. if (!hdr) {
  9074. nlmsg_free(msg);
  9075. return;
  9076. }
  9077. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9078. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9079. (bssid && nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, bssid)) ||
  9080. nla_put_u16(msg, NL80211_ATTR_STATUS_CODE, status) ||
  9081. (req_ie &&
  9082. nla_put(msg, NL80211_ATTR_REQ_IE, req_ie_len, req_ie)) ||
  9083. (resp_ie &&
  9084. nla_put(msg, NL80211_ATTR_RESP_IE, resp_ie_len, resp_ie)))
  9085. goto nla_put_failure;
  9086. genlmsg_end(msg, hdr);
  9087. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9088. NL80211_MCGRP_MLME, gfp);
  9089. return;
  9090. nla_put_failure:
  9091. genlmsg_cancel(msg, hdr);
  9092. nlmsg_free(msg);
  9093. }
  9094. void nl80211_send_roamed(struct cfg80211_registered_device *rdev,
  9095. struct net_device *netdev, const u8 *bssid,
  9096. const u8 *req_ie, size_t req_ie_len,
  9097. const u8 *resp_ie, size_t resp_ie_len, gfp_t gfp)
  9098. {
  9099. struct sk_buff *msg;
  9100. void *hdr;
  9101. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9102. if (!msg)
  9103. return;
  9104. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_ROAM);
  9105. if (!hdr) {
  9106. nlmsg_free(msg);
  9107. return;
  9108. }
  9109. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9110. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9111. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, bssid) ||
  9112. (req_ie &&
  9113. nla_put(msg, NL80211_ATTR_REQ_IE, req_ie_len, req_ie)) ||
  9114. (resp_ie &&
  9115. nla_put(msg, NL80211_ATTR_RESP_IE, resp_ie_len, resp_ie)))
  9116. goto nla_put_failure;
  9117. genlmsg_end(msg, hdr);
  9118. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9119. NL80211_MCGRP_MLME, gfp);
  9120. return;
  9121. nla_put_failure:
  9122. genlmsg_cancel(msg, hdr);
  9123. nlmsg_free(msg);
  9124. }
  9125. void nl80211_send_disconnected(struct cfg80211_registered_device *rdev,
  9126. struct net_device *netdev, u16 reason,
  9127. const u8 *ie, size_t ie_len, bool from_ap)
  9128. {
  9129. struct sk_buff *msg;
  9130. void *hdr;
  9131. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  9132. if (!msg)
  9133. return;
  9134. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_DISCONNECT);
  9135. if (!hdr) {
  9136. nlmsg_free(msg);
  9137. return;
  9138. }
  9139. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9140. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9141. (from_ap && reason &&
  9142. nla_put_u16(msg, NL80211_ATTR_REASON_CODE, reason)) ||
  9143. (from_ap &&
  9144. nla_put_flag(msg, NL80211_ATTR_DISCONNECTED_BY_AP)) ||
  9145. (ie && nla_put(msg, NL80211_ATTR_IE, ie_len, ie)))
  9146. goto nla_put_failure;
  9147. genlmsg_end(msg, hdr);
  9148. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9149. NL80211_MCGRP_MLME, GFP_KERNEL);
  9150. return;
  9151. nla_put_failure:
  9152. genlmsg_cancel(msg, hdr);
  9153. nlmsg_free(msg);
  9154. }
  9155. void nl80211_send_ibss_bssid(struct cfg80211_registered_device *rdev,
  9156. struct net_device *netdev, const u8 *bssid,
  9157. gfp_t gfp)
  9158. {
  9159. struct sk_buff *msg;
  9160. void *hdr;
  9161. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9162. if (!msg)
  9163. return;
  9164. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_JOIN_IBSS);
  9165. if (!hdr) {
  9166. nlmsg_free(msg);
  9167. return;
  9168. }
  9169. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9170. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9171. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, bssid))
  9172. goto nla_put_failure;
  9173. genlmsg_end(msg, hdr);
  9174. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9175. NL80211_MCGRP_MLME, gfp);
  9176. return;
  9177. nla_put_failure:
  9178. genlmsg_cancel(msg, hdr);
  9179. nlmsg_free(msg);
  9180. }
  9181. void cfg80211_notify_new_peer_candidate(struct net_device *dev, const u8 *addr,
  9182. const u8* ie, u8 ie_len, gfp_t gfp)
  9183. {
  9184. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9185. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  9186. struct sk_buff *msg;
  9187. void *hdr;
  9188. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_MESH_POINT))
  9189. return;
  9190. trace_cfg80211_notify_new_peer_candidate(dev, addr);
  9191. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9192. if (!msg)
  9193. return;
  9194. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_NEW_PEER_CANDIDATE);
  9195. if (!hdr) {
  9196. nlmsg_free(msg);
  9197. return;
  9198. }
  9199. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9200. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9201. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, addr) ||
  9202. (ie_len && ie &&
  9203. nla_put(msg, NL80211_ATTR_IE, ie_len , ie)))
  9204. goto nla_put_failure;
  9205. genlmsg_end(msg, hdr);
  9206. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9207. NL80211_MCGRP_MLME, gfp);
  9208. return;
  9209. nla_put_failure:
  9210. genlmsg_cancel(msg, hdr);
  9211. nlmsg_free(msg);
  9212. }
  9213. EXPORT_SYMBOL(cfg80211_notify_new_peer_candidate);
  9214. void nl80211_michael_mic_failure(struct cfg80211_registered_device *rdev,
  9215. struct net_device *netdev, const u8 *addr,
  9216. enum nl80211_key_type key_type, int key_id,
  9217. const u8 *tsc, gfp_t gfp)
  9218. {
  9219. struct sk_buff *msg;
  9220. void *hdr;
  9221. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9222. if (!msg)
  9223. return;
  9224. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_MICHAEL_MIC_FAILURE);
  9225. if (!hdr) {
  9226. nlmsg_free(msg);
  9227. return;
  9228. }
  9229. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9230. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9231. (addr && nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, addr)) ||
  9232. nla_put_u32(msg, NL80211_ATTR_KEY_TYPE, key_type) ||
  9233. (key_id != -1 &&
  9234. nla_put_u8(msg, NL80211_ATTR_KEY_IDX, key_id)) ||
  9235. (tsc && nla_put(msg, NL80211_ATTR_KEY_SEQ, 6, tsc)))
  9236. goto nla_put_failure;
  9237. genlmsg_end(msg, hdr);
  9238. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9239. NL80211_MCGRP_MLME, gfp);
  9240. return;
  9241. nla_put_failure:
  9242. genlmsg_cancel(msg, hdr);
  9243. nlmsg_free(msg);
  9244. }
  9245. void nl80211_send_beacon_hint_event(struct wiphy *wiphy,
  9246. struct ieee80211_channel *channel_before,
  9247. struct ieee80211_channel *channel_after)
  9248. {
  9249. struct sk_buff *msg;
  9250. void *hdr;
  9251. struct nlattr *nl_freq;
  9252. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_ATOMIC);
  9253. if (!msg)
  9254. return;
  9255. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_REG_BEACON_HINT);
  9256. if (!hdr) {
  9257. nlmsg_free(msg);
  9258. return;
  9259. }
  9260. /*
  9261. * Since we are applying the beacon hint to a wiphy we know its
  9262. * wiphy_idx is valid
  9263. */
  9264. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, get_wiphy_idx(wiphy)))
  9265. goto nla_put_failure;
  9266. /* Before */
  9267. nl_freq = nla_nest_start(msg, NL80211_ATTR_FREQ_BEFORE);
  9268. if (!nl_freq)
  9269. goto nla_put_failure;
  9270. if (nl80211_msg_put_channel(msg, channel_before, false))
  9271. goto nla_put_failure;
  9272. nla_nest_end(msg, nl_freq);
  9273. /* After */
  9274. nl_freq = nla_nest_start(msg, NL80211_ATTR_FREQ_AFTER);
  9275. if (!nl_freq)
  9276. goto nla_put_failure;
  9277. if (nl80211_msg_put_channel(msg, channel_after, false))
  9278. goto nla_put_failure;
  9279. nla_nest_end(msg, nl_freq);
  9280. genlmsg_end(msg, hdr);
  9281. rcu_read_lock();
  9282. genlmsg_multicast_allns(&nl80211_fam, msg, 0,
  9283. NL80211_MCGRP_REGULATORY, GFP_ATOMIC);
  9284. rcu_read_unlock();
  9285. return;
  9286. nla_put_failure:
  9287. genlmsg_cancel(msg, hdr);
  9288. nlmsg_free(msg);
  9289. }
  9290. static void nl80211_send_remain_on_chan_event(
  9291. int cmd, struct cfg80211_registered_device *rdev,
  9292. struct wireless_dev *wdev, u64 cookie,
  9293. struct ieee80211_channel *chan,
  9294. unsigned int duration, gfp_t gfp)
  9295. {
  9296. struct sk_buff *msg;
  9297. void *hdr;
  9298. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9299. if (!msg)
  9300. return;
  9301. hdr = nl80211hdr_put(msg, 0, 0, 0, cmd);
  9302. if (!hdr) {
  9303. nlmsg_free(msg);
  9304. return;
  9305. }
  9306. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9307. (wdev->netdev && nla_put_u32(msg, NL80211_ATTR_IFINDEX,
  9308. wdev->netdev->ifindex)) ||
  9309. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)) ||
  9310. nla_put_u32(msg, NL80211_ATTR_WIPHY_FREQ, chan->center_freq) ||
  9311. nla_put_u32(msg, NL80211_ATTR_WIPHY_CHANNEL_TYPE,
  9312. NL80211_CHAN_NO_HT) ||
  9313. nla_put_u64(msg, NL80211_ATTR_COOKIE, cookie))
  9314. goto nla_put_failure;
  9315. if (cmd == NL80211_CMD_REMAIN_ON_CHANNEL &&
  9316. nla_put_u32(msg, NL80211_ATTR_DURATION, duration))
  9317. goto nla_put_failure;
  9318. genlmsg_end(msg, hdr);
  9319. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9320. NL80211_MCGRP_MLME, gfp);
  9321. return;
  9322. nla_put_failure:
  9323. genlmsg_cancel(msg, hdr);
  9324. nlmsg_free(msg);
  9325. }
  9326. void cfg80211_ready_on_channel(struct wireless_dev *wdev, u64 cookie,
  9327. struct ieee80211_channel *chan,
  9328. unsigned int duration, gfp_t gfp)
  9329. {
  9330. struct wiphy *wiphy = wdev->wiphy;
  9331. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9332. trace_cfg80211_ready_on_channel(wdev, cookie, chan, duration);
  9333. nl80211_send_remain_on_chan_event(NL80211_CMD_REMAIN_ON_CHANNEL,
  9334. rdev, wdev, cookie, chan,
  9335. duration, gfp);
  9336. }
  9337. EXPORT_SYMBOL(cfg80211_ready_on_channel);
  9338. void cfg80211_remain_on_channel_expired(struct wireless_dev *wdev, u64 cookie,
  9339. struct ieee80211_channel *chan,
  9340. gfp_t gfp)
  9341. {
  9342. struct wiphy *wiphy = wdev->wiphy;
  9343. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9344. trace_cfg80211_ready_on_channel_expired(wdev, cookie, chan);
  9345. nl80211_send_remain_on_chan_event(NL80211_CMD_CANCEL_REMAIN_ON_CHANNEL,
  9346. rdev, wdev, cookie, chan, 0, gfp);
  9347. }
  9348. EXPORT_SYMBOL(cfg80211_remain_on_channel_expired);
  9349. void cfg80211_new_sta(struct net_device *dev, const u8 *mac_addr,
  9350. struct station_info *sinfo, gfp_t gfp)
  9351. {
  9352. struct wiphy *wiphy = dev->ieee80211_ptr->wiphy;
  9353. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9354. struct sk_buff *msg;
  9355. trace_cfg80211_new_sta(dev, mac_addr, sinfo);
  9356. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9357. if (!msg)
  9358. return;
  9359. if (nl80211_send_station(msg, 0, 0, 0,
  9360. rdev, dev, mac_addr, sinfo) < 0) {
  9361. nlmsg_free(msg);
  9362. return;
  9363. }
  9364. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9365. NL80211_MCGRP_MLME, gfp);
  9366. }
  9367. EXPORT_SYMBOL(cfg80211_new_sta);
  9368. void cfg80211_del_sta(struct net_device *dev, const u8 *mac_addr, gfp_t gfp)
  9369. {
  9370. struct wiphy *wiphy = dev->ieee80211_ptr->wiphy;
  9371. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9372. struct sk_buff *msg;
  9373. void *hdr;
  9374. trace_cfg80211_del_sta(dev, mac_addr);
  9375. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9376. if (!msg)
  9377. return;
  9378. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_DEL_STATION);
  9379. if (!hdr) {
  9380. nlmsg_free(msg);
  9381. return;
  9382. }
  9383. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9384. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, mac_addr))
  9385. goto nla_put_failure;
  9386. genlmsg_end(msg, hdr);
  9387. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9388. NL80211_MCGRP_MLME, gfp);
  9389. return;
  9390. nla_put_failure:
  9391. genlmsg_cancel(msg, hdr);
  9392. nlmsg_free(msg);
  9393. }
  9394. EXPORT_SYMBOL(cfg80211_del_sta);
  9395. void cfg80211_conn_failed(struct net_device *dev, const u8 *mac_addr,
  9396. enum nl80211_connect_failed_reason reason,
  9397. gfp_t gfp)
  9398. {
  9399. struct wiphy *wiphy = dev->ieee80211_ptr->wiphy;
  9400. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9401. struct sk_buff *msg;
  9402. void *hdr;
  9403. msg = nlmsg_new(NLMSG_GOODSIZE, gfp);
  9404. if (!msg)
  9405. return;
  9406. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_CONN_FAILED);
  9407. if (!hdr) {
  9408. nlmsg_free(msg);
  9409. return;
  9410. }
  9411. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9412. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, mac_addr) ||
  9413. nla_put_u32(msg, NL80211_ATTR_CONN_FAILED_REASON, reason))
  9414. goto nla_put_failure;
  9415. genlmsg_end(msg, hdr);
  9416. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9417. NL80211_MCGRP_MLME, gfp);
  9418. return;
  9419. nla_put_failure:
  9420. genlmsg_cancel(msg, hdr);
  9421. nlmsg_free(msg);
  9422. }
  9423. EXPORT_SYMBOL(cfg80211_conn_failed);
  9424. static bool __nl80211_unexpected_frame(struct net_device *dev, u8 cmd,
  9425. const u8 *addr, gfp_t gfp)
  9426. {
  9427. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9428. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  9429. struct sk_buff *msg;
  9430. void *hdr;
  9431. u32 nlportid = ACCESS_ONCE(wdev->ap_unexpected_nlportid);
  9432. if (!nlportid)
  9433. return false;
  9434. msg = nlmsg_new(100, gfp);
  9435. if (!msg)
  9436. return true;
  9437. hdr = nl80211hdr_put(msg, 0, 0, 0, cmd);
  9438. if (!hdr) {
  9439. nlmsg_free(msg);
  9440. return true;
  9441. }
  9442. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9443. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9444. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, addr))
  9445. goto nla_put_failure;
  9446. genlmsg_end(msg, hdr);
  9447. genlmsg_unicast(wiphy_net(&rdev->wiphy), msg, nlportid);
  9448. return true;
  9449. nla_put_failure:
  9450. genlmsg_cancel(msg, hdr);
  9451. nlmsg_free(msg);
  9452. return true;
  9453. }
  9454. bool cfg80211_rx_spurious_frame(struct net_device *dev,
  9455. const u8 *addr, gfp_t gfp)
  9456. {
  9457. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9458. bool ret;
  9459. trace_cfg80211_rx_spurious_frame(dev, addr);
  9460. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_AP &&
  9461. wdev->iftype != NL80211_IFTYPE_P2P_GO)) {
  9462. trace_cfg80211_return_bool(false);
  9463. return false;
  9464. }
  9465. ret = __nl80211_unexpected_frame(dev, NL80211_CMD_UNEXPECTED_FRAME,
  9466. addr, gfp);
  9467. trace_cfg80211_return_bool(ret);
  9468. return ret;
  9469. }
  9470. EXPORT_SYMBOL(cfg80211_rx_spurious_frame);
  9471. bool cfg80211_rx_unexpected_4addr_frame(struct net_device *dev,
  9472. const u8 *addr, gfp_t gfp)
  9473. {
  9474. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9475. bool ret;
  9476. trace_cfg80211_rx_unexpected_4addr_frame(dev, addr);
  9477. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_AP &&
  9478. wdev->iftype != NL80211_IFTYPE_P2P_GO &&
  9479. wdev->iftype != NL80211_IFTYPE_AP_VLAN)) {
  9480. trace_cfg80211_return_bool(false);
  9481. return false;
  9482. }
  9483. ret = __nl80211_unexpected_frame(dev,
  9484. NL80211_CMD_UNEXPECTED_4ADDR_FRAME,
  9485. addr, gfp);
  9486. trace_cfg80211_return_bool(ret);
  9487. return ret;
  9488. }
  9489. EXPORT_SYMBOL(cfg80211_rx_unexpected_4addr_frame);
  9490. int nl80211_send_mgmt(struct cfg80211_registered_device *rdev,
  9491. struct wireless_dev *wdev, u32 nlportid,
  9492. int freq, int sig_dbm,
  9493. const u8 *buf, size_t len, u32 flags, gfp_t gfp)
  9494. {
  9495. struct net_device *netdev = wdev->netdev;
  9496. struct sk_buff *msg;
  9497. void *hdr;
  9498. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9499. if (!msg)
  9500. return -ENOMEM;
  9501. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_FRAME);
  9502. if (!hdr) {
  9503. nlmsg_free(msg);
  9504. return -ENOMEM;
  9505. }
  9506. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9507. (netdev && nla_put_u32(msg, NL80211_ATTR_IFINDEX,
  9508. netdev->ifindex)) ||
  9509. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)) ||
  9510. nla_put_u32(msg, NL80211_ATTR_WIPHY_FREQ, freq) ||
  9511. (sig_dbm &&
  9512. nla_put_u32(msg, NL80211_ATTR_RX_SIGNAL_DBM, sig_dbm)) ||
  9513. nla_put(msg, NL80211_ATTR_FRAME, len, buf) ||
  9514. (flags &&
  9515. nla_put_u32(msg, NL80211_ATTR_RXMGMT_FLAGS, flags)))
  9516. goto nla_put_failure;
  9517. genlmsg_end(msg, hdr);
  9518. return genlmsg_unicast(wiphy_net(&rdev->wiphy), msg, nlportid);
  9519. nla_put_failure:
  9520. genlmsg_cancel(msg, hdr);
  9521. nlmsg_free(msg);
  9522. return -ENOBUFS;
  9523. }
  9524. void cfg80211_mgmt_tx_status(struct wireless_dev *wdev, u64 cookie,
  9525. const u8 *buf, size_t len, bool ack, gfp_t gfp)
  9526. {
  9527. struct wiphy *wiphy = wdev->wiphy;
  9528. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9529. struct net_device *netdev = wdev->netdev;
  9530. struct sk_buff *msg;
  9531. void *hdr;
  9532. trace_cfg80211_mgmt_tx_status(wdev, cookie, ack);
  9533. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9534. if (!msg)
  9535. return;
  9536. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_FRAME_TX_STATUS);
  9537. if (!hdr) {
  9538. nlmsg_free(msg);
  9539. return;
  9540. }
  9541. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9542. (netdev && nla_put_u32(msg, NL80211_ATTR_IFINDEX,
  9543. netdev->ifindex)) ||
  9544. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)) ||
  9545. nla_put(msg, NL80211_ATTR_FRAME, len, buf) ||
  9546. nla_put_u64(msg, NL80211_ATTR_COOKIE, cookie) ||
  9547. (ack && nla_put_flag(msg, NL80211_ATTR_ACK)))
  9548. goto nla_put_failure;
  9549. genlmsg_end(msg, hdr);
  9550. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9551. NL80211_MCGRP_MLME, gfp);
  9552. return;
  9553. nla_put_failure:
  9554. genlmsg_cancel(msg, hdr);
  9555. nlmsg_free(msg);
  9556. }
  9557. EXPORT_SYMBOL(cfg80211_mgmt_tx_status);
  9558. void cfg80211_cqm_rssi_notify(struct net_device *dev,
  9559. enum nl80211_cqm_rssi_threshold_event rssi_event,
  9560. gfp_t gfp)
  9561. {
  9562. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9563. struct wiphy *wiphy = wdev->wiphy;
  9564. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9565. struct sk_buff *msg;
  9566. struct nlattr *pinfoattr;
  9567. void *hdr;
  9568. trace_cfg80211_cqm_rssi_notify(dev, rssi_event);
  9569. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9570. if (!msg)
  9571. return;
  9572. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_NOTIFY_CQM);
  9573. if (!hdr) {
  9574. nlmsg_free(msg);
  9575. return;
  9576. }
  9577. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9578. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex))
  9579. goto nla_put_failure;
  9580. pinfoattr = nla_nest_start(msg, NL80211_ATTR_CQM);
  9581. if (!pinfoattr)
  9582. goto nla_put_failure;
  9583. if (nla_put_u32(msg, NL80211_ATTR_CQM_RSSI_THRESHOLD_EVENT,
  9584. rssi_event))
  9585. goto nla_put_failure;
  9586. nla_nest_end(msg, pinfoattr);
  9587. genlmsg_end(msg, hdr);
  9588. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9589. NL80211_MCGRP_MLME, gfp);
  9590. return;
  9591. nla_put_failure:
  9592. genlmsg_cancel(msg, hdr);
  9593. nlmsg_free(msg);
  9594. }
  9595. EXPORT_SYMBOL(cfg80211_cqm_rssi_notify);
  9596. static void nl80211_gtk_rekey_notify(struct cfg80211_registered_device *rdev,
  9597. struct net_device *netdev, const u8 *bssid,
  9598. const u8 *replay_ctr, gfp_t gfp)
  9599. {
  9600. struct sk_buff *msg;
  9601. struct nlattr *rekey_attr;
  9602. void *hdr;
  9603. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9604. if (!msg)
  9605. return;
  9606. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_SET_REKEY_OFFLOAD);
  9607. if (!hdr) {
  9608. nlmsg_free(msg);
  9609. return;
  9610. }
  9611. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9612. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9613. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, bssid))
  9614. goto nla_put_failure;
  9615. rekey_attr = nla_nest_start(msg, NL80211_ATTR_REKEY_DATA);
  9616. if (!rekey_attr)
  9617. goto nla_put_failure;
  9618. if (nla_put(msg, NL80211_REKEY_DATA_REPLAY_CTR,
  9619. NL80211_REPLAY_CTR_LEN, replay_ctr))
  9620. goto nla_put_failure;
  9621. nla_nest_end(msg, rekey_attr);
  9622. genlmsg_end(msg, hdr);
  9623. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9624. NL80211_MCGRP_MLME, gfp);
  9625. return;
  9626. nla_put_failure:
  9627. genlmsg_cancel(msg, hdr);
  9628. nlmsg_free(msg);
  9629. }
  9630. void cfg80211_gtk_rekey_notify(struct net_device *dev, const u8 *bssid,
  9631. const u8 *replay_ctr, gfp_t gfp)
  9632. {
  9633. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9634. struct wiphy *wiphy = wdev->wiphy;
  9635. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9636. trace_cfg80211_gtk_rekey_notify(dev, bssid);
  9637. nl80211_gtk_rekey_notify(rdev, dev, bssid, replay_ctr, gfp);
  9638. }
  9639. EXPORT_SYMBOL(cfg80211_gtk_rekey_notify);
  9640. static void
  9641. nl80211_pmksa_candidate_notify(struct cfg80211_registered_device *rdev,
  9642. struct net_device *netdev, int index,
  9643. const u8 *bssid, bool preauth, gfp_t gfp)
  9644. {
  9645. struct sk_buff *msg;
  9646. struct nlattr *attr;
  9647. void *hdr;
  9648. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9649. if (!msg)
  9650. return;
  9651. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_PMKSA_CANDIDATE);
  9652. if (!hdr) {
  9653. nlmsg_free(msg);
  9654. return;
  9655. }
  9656. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9657. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex))
  9658. goto nla_put_failure;
  9659. attr = nla_nest_start(msg, NL80211_ATTR_PMKSA_CANDIDATE);
  9660. if (!attr)
  9661. goto nla_put_failure;
  9662. if (nla_put_u32(msg, NL80211_PMKSA_CANDIDATE_INDEX, index) ||
  9663. nla_put(msg, NL80211_PMKSA_CANDIDATE_BSSID, ETH_ALEN, bssid) ||
  9664. (preauth &&
  9665. nla_put_flag(msg, NL80211_PMKSA_CANDIDATE_PREAUTH)))
  9666. goto nla_put_failure;
  9667. nla_nest_end(msg, attr);
  9668. genlmsg_end(msg, hdr);
  9669. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9670. NL80211_MCGRP_MLME, gfp);
  9671. return;
  9672. nla_put_failure:
  9673. genlmsg_cancel(msg, hdr);
  9674. nlmsg_free(msg);
  9675. }
  9676. void cfg80211_pmksa_candidate_notify(struct net_device *dev, int index,
  9677. const u8 *bssid, bool preauth, gfp_t gfp)
  9678. {
  9679. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9680. struct wiphy *wiphy = wdev->wiphy;
  9681. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9682. trace_cfg80211_pmksa_candidate_notify(dev, index, bssid, preauth);
  9683. nl80211_pmksa_candidate_notify(rdev, dev, index, bssid, preauth, gfp);
  9684. }
  9685. EXPORT_SYMBOL(cfg80211_pmksa_candidate_notify);
  9686. static void nl80211_ch_switch_notify(struct cfg80211_registered_device *rdev,
  9687. struct net_device *netdev,
  9688. struct cfg80211_chan_def *chandef,
  9689. gfp_t gfp)
  9690. {
  9691. struct sk_buff *msg;
  9692. void *hdr;
  9693. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9694. if (!msg)
  9695. return;
  9696. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_CH_SWITCH_NOTIFY);
  9697. if (!hdr) {
  9698. nlmsg_free(msg);
  9699. return;
  9700. }
  9701. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex))
  9702. goto nla_put_failure;
  9703. if (nl80211_send_chandef(msg, chandef))
  9704. goto nla_put_failure;
  9705. genlmsg_end(msg, hdr);
  9706. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9707. NL80211_MCGRP_MLME, gfp);
  9708. return;
  9709. nla_put_failure:
  9710. genlmsg_cancel(msg, hdr);
  9711. nlmsg_free(msg);
  9712. }
  9713. void cfg80211_ch_switch_notify(struct net_device *dev,
  9714. struct cfg80211_chan_def *chandef)
  9715. {
  9716. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9717. struct wiphy *wiphy = wdev->wiphy;
  9718. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9719. ASSERT_WDEV_LOCK(wdev);
  9720. trace_cfg80211_ch_switch_notify(dev, chandef);
  9721. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_AP &&
  9722. wdev->iftype != NL80211_IFTYPE_P2P_GO &&
  9723. wdev->iftype != NL80211_IFTYPE_ADHOC &&
  9724. wdev->iftype != NL80211_IFTYPE_MESH_POINT))
  9725. return;
  9726. wdev->chandef = *chandef;
  9727. wdev->preset_chandef = *chandef;
  9728. nl80211_ch_switch_notify(rdev, dev, chandef, GFP_KERNEL);
  9729. }
  9730. EXPORT_SYMBOL(cfg80211_ch_switch_notify);
  9731. void cfg80211_cqm_txe_notify(struct net_device *dev,
  9732. const u8 *peer, u32 num_packets,
  9733. u32 rate, u32 intvl, gfp_t gfp)
  9734. {
  9735. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9736. struct wiphy *wiphy = wdev->wiphy;
  9737. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9738. struct sk_buff *msg;
  9739. struct nlattr *pinfoattr;
  9740. void *hdr;
  9741. msg = nlmsg_new(NLMSG_GOODSIZE, gfp);
  9742. if (!msg)
  9743. return;
  9744. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_NOTIFY_CQM);
  9745. if (!hdr) {
  9746. nlmsg_free(msg);
  9747. return;
  9748. }
  9749. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9750. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9751. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, peer))
  9752. goto nla_put_failure;
  9753. pinfoattr = nla_nest_start(msg, NL80211_ATTR_CQM);
  9754. if (!pinfoattr)
  9755. goto nla_put_failure;
  9756. if (nla_put_u32(msg, NL80211_ATTR_CQM_TXE_PKTS, num_packets))
  9757. goto nla_put_failure;
  9758. if (nla_put_u32(msg, NL80211_ATTR_CQM_TXE_RATE, rate))
  9759. goto nla_put_failure;
  9760. if (nla_put_u32(msg, NL80211_ATTR_CQM_TXE_INTVL, intvl))
  9761. goto nla_put_failure;
  9762. nla_nest_end(msg, pinfoattr);
  9763. genlmsg_end(msg, hdr);
  9764. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9765. NL80211_MCGRP_MLME, gfp);
  9766. return;
  9767. nla_put_failure:
  9768. genlmsg_cancel(msg, hdr);
  9769. nlmsg_free(msg);
  9770. }
  9771. EXPORT_SYMBOL(cfg80211_cqm_txe_notify);
  9772. void
  9773. nl80211_radar_notify(struct cfg80211_registered_device *rdev,
  9774. const struct cfg80211_chan_def *chandef,
  9775. enum nl80211_radar_event event,
  9776. struct net_device *netdev, gfp_t gfp)
  9777. {
  9778. struct sk_buff *msg;
  9779. void *hdr;
  9780. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9781. if (!msg)
  9782. return;
  9783. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_RADAR_DETECT);
  9784. if (!hdr) {
  9785. nlmsg_free(msg);
  9786. return;
  9787. }
  9788. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx))
  9789. goto nla_put_failure;
  9790. /* NOP and radar events don't need a netdev parameter */
  9791. if (netdev) {
  9792. struct wireless_dev *wdev = netdev->ieee80211_ptr;
  9793. if (nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  9794. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)))
  9795. goto nla_put_failure;
  9796. }
  9797. if (nla_put_u32(msg, NL80211_ATTR_RADAR_EVENT, event))
  9798. goto nla_put_failure;
  9799. if (nl80211_send_chandef(msg, chandef))
  9800. goto nla_put_failure;
  9801. genlmsg_end(msg, hdr);
  9802. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9803. NL80211_MCGRP_MLME, gfp);
  9804. return;
  9805. nla_put_failure:
  9806. genlmsg_cancel(msg, hdr);
  9807. nlmsg_free(msg);
  9808. }
  9809. void cfg80211_cqm_pktloss_notify(struct net_device *dev,
  9810. const u8 *peer, u32 num_packets, gfp_t gfp)
  9811. {
  9812. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9813. struct wiphy *wiphy = wdev->wiphy;
  9814. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9815. struct sk_buff *msg;
  9816. struct nlattr *pinfoattr;
  9817. void *hdr;
  9818. trace_cfg80211_cqm_pktloss_notify(dev, peer, num_packets);
  9819. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9820. if (!msg)
  9821. return;
  9822. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_NOTIFY_CQM);
  9823. if (!hdr) {
  9824. nlmsg_free(msg);
  9825. return;
  9826. }
  9827. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9828. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9829. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, peer))
  9830. goto nla_put_failure;
  9831. pinfoattr = nla_nest_start(msg, NL80211_ATTR_CQM);
  9832. if (!pinfoattr)
  9833. goto nla_put_failure;
  9834. if (nla_put_u32(msg, NL80211_ATTR_CQM_PKT_LOSS_EVENT, num_packets))
  9835. goto nla_put_failure;
  9836. nla_nest_end(msg, pinfoattr);
  9837. genlmsg_end(msg, hdr);
  9838. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9839. NL80211_MCGRP_MLME, gfp);
  9840. return;
  9841. nla_put_failure:
  9842. genlmsg_cancel(msg, hdr);
  9843. nlmsg_free(msg);
  9844. }
  9845. EXPORT_SYMBOL(cfg80211_cqm_pktloss_notify);
  9846. void cfg80211_probe_status(struct net_device *dev, const u8 *addr,
  9847. u64 cookie, bool acked, gfp_t gfp)
  9848. {
  9849. struct wireless_dev *wdev = dev->ieee80211_ptr;
  9850. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  9851. struct sk_buff *msg;
  9852. void *hdr;
  9853. trace_cfg80211_probe_status(dev, addr, cookie, acked);
  9854. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  9855. if (!msg)
  9856. return;
  9857. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_PROBE_CLIENT);
  9858. if (!hdr) {
  9859. nlmsg_free(msg);
  9860. return;
  9861. }
  9862. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9863. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  9864. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, addr) ||
  9865. nla_put_u64(msg, NL80211_ATTR_COOKIE, cookie) ||
  9866. (acked && nla_put_flag(msg, NL80211_ATTR_ACK)))
  9867. goto nla_put_failure;
  9868. genlmsg_end(msg, hdr);
  9869. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9870. NL80211_MCGRP_MLME, gfp);
  9871. return;
  9872. nla_put_failure:
  9873. genlmsg_cancel(msg, hdr);
  9874. nlmsg_free(msg);
  9875. }
  9876. EXPORT_SYMBOL(cfg80211_probe_status);
  9877. void cfg80211_report_obss_beacon(struct wiphy *wiphy,
  9878. const u8 *frame, size_t len,
  9879. int freq, int sig_dbm)
  9880. {
  9881. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  9882. struct sk_buff *msg;
  9883. void *hdr;
  9884. struct cfg80211_beacon_registration *reg;
  9885. trace_cfg80211_report_obss_beacon(wiphy, frame, len, freq, sig_dbm);
  9886. spin_lock_bh(&rdev->beacon_registrations_lock);
  9887. list_for_each_entry(reg, &rdev->beacon_registrations, list) {
  9888. msg = nlmsg_new(len + 100, GFP_ATOMIC);
  9889. if (!msg) {
  9890. spin_unlock_bh(&rdev->beacon_registrations_lock);
  9891. return;
  9892. }
  9893. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_FRAME);
  9894. if (!hdr)
  9895. goto nla_put_failure;
  9896. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9897. (freq &&
  9898. nla_put_u32(msg, NL80211_ATTR_WIPHY_FREQ, freq)) ||
  9899. (sig_dbm &&
  9900. nla_put_u32(msg, NL80211_ATTR_RX_SIGNAL_DBM, sig_dbm)) ||
  9901. nla_put(msg, NL80211_ATTR_FRAME, len, frame))
  9902. goto nla_put_failure;
  9903. genlmsg_end(msg, hdr);
  9904. genlmsg_unicast(wiphy_net(&rdev->wiphy), msg, reg->nlportid);
  9905. }
  9906. spin_unlock_bh(&rdev->beacon_registrations_lock);
  9907. return;
  9908. nla_put_failure:
  9909. spin_unlock_bh(&rdev->beacon_registrations_lock);
  9910. if (hdr)
  9911. genlmsg_cancel(msg, hdr);
  9912. nlmsg_free(msg);
  9913. }
  9914. EXPORT_SYMBOL(cfg80211_report_obss_beacon);
  9915. #ifdef CONFIG_PM
  9916. void cfg80211_report_wowlan_wakeup(struct wireless_dev *wdev,
  9917. struct cfg80211_wowlan_wakeup *wakeup,
  9918. gfp_t gfp)
  9919. {
  9920. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  9921. struct sk_buff *msg;
  9922. void *hdr;
  9923. int size = 200;
  9924. trace_cfg80211_report_wowlan_wakeup(wdev->wiphy, wdev, wakeup);
  9925. if (wakeup)
  9926. size += wakeup->packet_present_len;
  9927. msg = nlmsg_new(size, gfp);
  9928. if (!msg)
  9929. return;
  9930. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_SET_WOWLAN);
  9931. if (!hdr)
  9932. goto free_msg;
  9933. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  9934. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)))
  9935. goto free_msg;
  9936. if (wdev->netdev && nla_put_u32(msg, NL80211_ATTR_IFINDEX,
  9937. wdev->netdev->ifindex))
  9938. goto free_msg;
  9939. if (wakeup) {
  9940. struct nlattr *reasons;
  9941. reasons = nla_nest_start(msg, NL80211_ATTR_WOWLAN_TRIGGERS);
  9942. if (!reasons)
  9943. goto free_msg;
  9944. if (wakeup->disconnect &&
  9945. nla_put_flag(msg, NL80211_WOWLAN_TRIG_DISCONNECT))
  9946. goto free_msg;
  9947. if (wakeup->magic_pkt &&
  9948. nla_put_flag(msg, NL80211_WOWLAN_TRIG_MAGIC_PKT))
  9949. goto free_msg;
  9950. if (wakeup->gtk_rekey_failure &&
  9951. nla_put_flag(msg, NL80211_WOWLAN_TRIG_GTK_REKEY_FAILURE))
  9952. goto free_msg;
  9953. if (wakeup->eap_identity_req &&
  9954. nla_put_flag(msg, NL80211_WOWLAN_TRIG_EAP_IDENT_REQUEST))
  9955. goto free_msg;
  9956. if (wakeup->four_way_handshake &&
  9957. nla_put_flag(msg, NL80211_WOWLAN_TRIG_4WAY_HANDSHAKE))
  9958. goto free_msg;
  9959. if (wakeup->rfkill_release &&
  9960. nla_put_flag(msg, NL80211_WOWLAN_TRIG_RFKILL_RELEASE))
  9961. goto free_msg;
  9962. if (wakeup->pattern_idx >= 0 &&
  9963. nla_put_u32(msg, NL80211_WOWLAN_TRIG_PKT_PATTERN,
  9964. wakeup->pattern_idx))
  9965. goto free_msg;
  9966. if (wakeup->tcp_match &&
  9967. nla_put_flag(msg, NL80211_WOWLAN_TRIG_WAKEUP_TCP_MATCH))
  9968. goto free_msg;
  9969. if (wakeup->tcp_connlost &&
  9970. nla_put_flag(msg, NL80211_WOWLAN_TRIG_WAKEUP_TCP_CONNLOST))
  9971. goto free_msg;
  9972. if (wakeup->tcp_nomoretokens &&
  9973. nla_put_flag(msg,
  9974. NL80211_WOWLAN_TRIG_WAKEUP_TCP_NOMORETOKENS))
  9975. goto free_msg;
  9976. if (wakeup->packet) {
  9977. u32 pkt_attr = NL80211_WOWLAN_TRIG_WAKEUP_PKT_80211;
  9978. u32 len_attr = NL80211_WOWLAN_TRIG_WAKEUP_PKT_80211_LEN;
  9979. if (!wakeup->packet_80211) {
  9980. pkt_attr =
  9981. NL80211_WOWLAN_TRIG_WAKEUP_PKT_8023;
  9982. len_attr =
  9983. NL80211_WOWLAN_TRIG_WAKEUP_PKT_8023_LEN;
  9984. }
  9985. if (wakeup->packet_len &&
  9986. nla_put_u32(msg, len_attr, wakeup->packet_len))
  9987. goto free_msg;
  9988. if (nla_put(msg, pkt_attr, wakeup->packet_present_len,
  9989. wakeup->packet))
  9990. goto free_msg;
  9991. }
  9992. nla_nest_end(msg, reasons);
  9993. }
  9994. genlmsg_end(msg, hdr);
  9995. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  9996. NL80211_MCGRP_MLME, gfp);
  9997. return;
  9998. free_msg:
  9999. nlmsg_free(msg);
  10000. }
  10001. EXPORT_SYMBOL(cfg80211_report_wowlan_wakeup);
  10002. #endif
  10003. void cfg80211_tdls_oper_request(struct net_device *dev, const u8 *peer,
  10004. enum nl80211_tdls_operation oper,
  10005. u16 reason_code, gfp_t gfp)
  10006. {
  10007. struct wireless_dev *wdev = dev->ieee80211_ptr;
  10008. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  10009. struct sk_buff *msg;
  10010. void *hdr;
  10011. trace_cfg80211_tdls_oper_request(wdev->wiphy, dev, peer, oper,
  10012. reason_code);
  10013. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  10014. if (!msg)
  10015. return;
  10016. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_TDLS_OPER);
  10017. if (!hdr) {
  10018. nlmsg_free(msg);
  10019. return;
  10020. }
  10021. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  10022. nla_put_u32(msg, NL80211_ATTR_IFINDEX, dev->ifindex) ||
  10023. nla_put_u8(msg, NL80211_ATTR_TDLS_OPERATION, oper) ||
  10024. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, peer) ||
  10025. (reason_code > 0 &&
  10026. nla_put_u16(msg, NL80211_ATTR_REASON_CODE, reason_code)))
  10027. goto nla_put_failure;
  10028. genlmsg_end(msg, hdr);
  10029. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  10030. NL80211_MCGRP_MLME, gfp);
  10031. return;
  10032. nla_put_failure:
  10033. genlmsg_cancel(msg, hdr);
  10034. nlmsg_free(msg);
  10035. }
  10036. EXPORT_SYMBOL(cfg80211_tdls_oper_request);
  10037. static int nl80211_netlink_notify(struct notifier_block * nb,
  10038. unsigned long state,
  10039. void *_notify)
  10040. {
  10041. struct netlink_notify *notify = _notify;
  10042. struct cfg80211_registered_device *rdev;
  10043. struct wireless_dev *wdev;
  10044. struct cfg80211_beacon_registration *reg, *tmp;
  10045. if (state != NETLINK_URELEASE)
  10046. return NOTIFY_DONE;
  10047. rcu_read_lock();
  10048. list_for_each_entry_rcu(rdev, &cfg80211_rdev_list, list) {
  10049. bool schedule_destroy_work = false;
  10050. list_for_each_entry_rcu(wdev, &rdev->wdev_list, list) {
  10051. cfg80211_mlme_unregister_socket(wdev, notify->portid);
  10052. if (wdev->owner_nlportid == notify->portid)
  10053. schedule_destroy_work = true;
  10054. }
  10055. spin_lock_bh(&rdev->beacon_registrations_lock);
  10056. list_for_each_entry_safe(reg, tmp, &rdev->beacon_registrations,
  10057. list) {
  10058. if (reg->nlportid == notify->portid) {
  10059. list_del(&reg->list);
  10060. kfree(reg);
  10061. break;
  10062. }
  10063. }
  10064. spin_unlock_bh(&rdev->beacon_registrations_lock);
  10065. if (schedule_destroy_work) {
  10066. struct cfg80211_iface_destroy *destroy;
  10067. destroy = kzalloc(sizeof(*destroy), GFP_ATOMIC);
  10068. if (destroy) {
  10069. destroy->nlportid = notify->portid;
  10070. spin_lock(&rdev->destroy_list_lock);
  10071. list_add(&destroy->list, &rdev->destroy_list);
  10072. spin_unlock(&rdev->destroy_list_lock);
  10073. schedule_work(&rdev->destroy_work);
  10074. }
  10075. }
  10076. }
  10077. rcu_read_unlock();
  10078. return NOTIFY_OK;
  10079. }
  10080. static struct notifier_block nl80211_netlink_notifier = {
  10081. .notifier_call = nl80211_netlink_notify,
  10082. };
  10083. void cfg80211_ft_event(struct net_device *netdev,
  10084. struct cfg80211_ft_event_params *ft_event)
  10085. {
  10086. struct wiphy *wiphy = netdev->ieee80211_ptr->wiphy;
  10087. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  10088. struct sk_buff *msg;
  10089. void *hdr;
  10090. trace_cfg80211_ft_event(wiphy, netdev, ft_event);
  10091. if (!ft_event->target_ap)
  10092. return;
  10093. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  10094. if (!msg)
  10095. return;
  10096. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_FT_EVENT);
  10097. if (!hdr)
  10098. goto out;
  10099. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  10100. nla_put_u32(msg, NL80211_ATTR_IFINDEX, netdev->ifindex) ||
  10101. nla_put(msg, NL80211_ATTR_MAC, ETH_ALEN, ft_event->target_ap))
  10102. goto out;
  10103. if (ft_event->ies &&
  10104. nla_put(msg, NL80211_ATTR_IE, ft_event->ies_len, ft_event->ies))
  10105. goto out;
  10106. if (ft_event->ric_ies &&
  10107. nla_put(msg, NL80211_ATTR_IE_RIC, ft_event->ric_ies_len,
  10108. ft_event->ric_ies))
  10109. goto out;
  10110. genlmsg_end(msg, hdr);
  10111. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(&rdev->wiphy), msg, 0,
  10112. NL80211_MCGRP_MLME, GFP_KERNEL);
  10113. return;
  10114. out:
  10115. nlmsg_free(msg);
  10116. }
  10117. EXPORT_SYMBOL(cfg80211_ft_event);
  10118. void cfg80211_crit_proto_stopped(struct wireless_dev *wdev, gfp_t gfp)
  10119. {
  10120. struct cfg80211_registered_device *rdev;
  10121. struct sk_buff *msg;
  10122. void *hdr;
  10123. u32 nlportid;
  10124. rdev = wiphy_to_rdev(wdev->wiphy);
  10125. if (!rdev->crit_proto_nlportid)
  10126. return;
  10127. nlportid = rdev->crit_proto_nlportid;
  10128. rdev->crit_proto_nlportid = 0;
  10129. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, gfp);
  10130. if (!msg)
  10131. return;
  10132. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_CRIT_PROTOCOL_STOP);
  10133. if (!hdr)
  10134. goto nla_put_failure;
  10135. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  10136. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)))
  10137. goto nla_put_failure;
  10138. genlmsg_end(msg, hdr);
  10139. genlmsg_unicast(wiphy_net(&rdev->wiphy), msg, nlportid);
  10140. return;
  10141. nla_put_failure:
  10142. if (hdr)
  10143. genlmsg_cancel(msg, hdr);
  10144. nlmsg_free(msg);
  10145. }
  10146. EXPORT_SYMBOL(cfg80211_crit_proto_stopped);
  10147. void nl80211_send_ap_stopped(struct wireless_dev *wdev)
  10148. {
  10149. struct wiphy *wiphy = wdev->wiphy;
  10150. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  10151. struct sk_buff *msg;
  10152. void *hdr;
  10153. msg = nlmsg_new(NLMSG_DEFAULT_SIZE, GFP_KERNEL);
  10154. if (!msg)
  10155. return;
  10156. hdr = nl80211hdr_put(msg, 0, 0, 0, NL80211_CMD_STOP_AP);
  10157. if (!hdr)
  10158. goto out;
  10159. if (nla_put_u32(msg, NL80211_ATTR_WIPHY, rdev->wiphy_idx) ||
  10160. nla_put_u32(msg, NL80211_ATTR_IFINDEX, wdev->netdev->ifindex) ||
  10161. nla_put_u64(msg, NL80211_ATTR_WDEV, wdev_id(wdev)))
  10162. goto out;
  10163. genlmsg_end(msg, hdr);
  10164. genlmsg_multicast_netns(&nl80211_fam, wiphy_net(wiphy), msg, 0,
  10165. NL80211_MCGRP_MLME, GFP_KERNEL);
  10166. return;
  10167. out:
  10168. nlmsg_free(msg);
  10169. }
  10170. /* initialisation/exit functions */
  10171. int nl80211_init(void)
  10172. {
  10173. int err;
  10174. err = genl_register_family_with_ops_groups(&nl80211_fam, nl80211_ops,
  10175. nl80211_mcgrps);
  10176. if (err)
  10177. return err;
  10178. err = netlink_register_notifier(&nl80211_netlink_notifier);
  10179. if (err)
  10180. goto err_out;
  10181. return 0;
  10182. err_out:
  10183. genl_unregister_family(&nl80211_fam);
  10184. return err;
  10185. }
  10186. void nl80211_exit(void)
  10187. {
  10188. netlink_unregister_notifier(&nl80211_netlink_notifier);
  10189. genl_unregister_family(&nl80211_fam);
  10190. }