trace.h 112 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. /*
  3. * Portions of this file
  4. * Copyright(c) 2016-2017 Intel Deutschland GmbH
  5. * Copyright (C) 2018, 2020-2024 Intel Corporation
  6. */
  7. #undef TRACE_SYSTEM
  8. #define TRACE_SYSTEM cfg80211
  9. #if !defined(__RDEV_OPS_TRACE) || defined(TRACE_HEADER_MULTI_READ)
  10. #define __RDEV_OPS_TRACE
  11. #include <linux/tracepoint.h>
  12. #include <linux/rtnetlink.h>
  13. #include <linux/etherdevice.h>
  14. #include <net/cfg80211.h>
  15. #include "core.h"
  16. #define MAC_ENTRY(entry_mac) __array(u8, entry_mac, ETH_ALEN)
  17. #define MAC_ASSIGN(entry_mac, given_mac) do { \
  18. if (given_mac) \
  19. memcpy(__entry->entry_mac, given_mac, ETH_ALEN); \
  20. else \
  21. eth_zero_addr(__entry->entry_mac); \
  22. } while (0)
  23. #define MAXNAME 32
  24. #define WIPHY_ENTRY __array(char, wiphy_name, 32)
  25. #define WIPHY_ASSIGN strscpy(__entry->wiphy_name, wiphy_name(wiphy), MAXNAME)
  26. #define WIPHY_PR_FMT "%s"
  27. #define WIPHY_PR_ARG __entry->wiphy_name
  28. #define WDEV_ENTRY __field(u32, id)
  29. #define WDEV_ASSIGN (__entry->id) = (!IS_ERR_OR_NULL(wdev) \
  30. ? wdev->identifier : 0)
  31. #define WDEV_PR_FMT "wdev(%u)"
  32. #define WDEV_PR_ARG (__entry->id)
  33. #define NETDEV_ENTRY __array(char, name, IFNAMSIZ) \
  34. __field(int, ifindex)
  35. #define NETDEV_ASSIGN \
  36. do { \
  37. memcpy(__entry->name, netdev->name, IFNAMSIZ); \
  38. (__entry->ifindex) = (netdev->ifindex); \
  39. } while (0)
  40. #define NETDEV_PR_FMT "netdev:%s(%d)"
  41. #define NETDEV_PR_ARG __entry->name, __entry->ifindex
  42. #define MESH_CFG_ENTRY __field(u16, dot11MeshRetryTimeout) \
  43. __field(u16, dot11MeshConfirmTimeout) \
  44. __field(u16, dot11MeshHoldingTimeout) \
  45. __field(u16, dot11MeshMaxPeerLinks) \
  46. __field(u8, dot11MeshMaxRetries) \
  47. __field(u8, dot11MeshTTL) \
  48. __field(u8, element_ttl) \
  49. __field(bool, auto_open_plinks) \
  50. __field(u32, dot11MeshNbrOffsetMaxNeighbor) \
  51. __field(u8, dot11MeshHWMPmaxPREQretries) \
  52. __field(u32, path_refresh_time) \
  53. __field(u32, dot11MeshHWMPactivePathTimeout) \
  54. __field(u16, min_discovery_timeout) \
  55. __field(u16, dot11MeshHWMPpreqMinInterval) \
  56. __field(u16, dot11MeshHWMPperrMinInterval) \
  57. __field(u16, dot11MeshHWMPnetDiameterTraversalTime) \
  58. __field(u8, dot11MeshHWMPRootMode) \
  59. __field(u16, dot11MeshHWMPRannInterval) \
  60. __field(bool, dot11MeshGateAnnouncementProtocol) \
  61. __field(bool, dot11MeshForwarding) \
  62. __field(s32, rssi_threshold) \
  63. __field(u16, ht_opmode) \
  64. __field(u32, dot11MeshHWMPactivePathToRootTimeout) \
  65. __field(u16, dot11MeshHWMProotInterval) \
  66. __field(u16, dot11MeshHWMPconfirmationInterval) \
  67. __field(bool, dot11MeshNolearn)
  68. #define MESH_CFG_ASSIGN \
  69. do { \
  70. __entry->dot11MeshRetryTimeout = conf->dot11MeshRetryTimeout; \
  71. __entry->dot11MeshConfirmTimeout = \
  72. conf->dot11MeshConfirmTimeout; \
  73. __entry->dot11MeshHoldingTimeout = \
  74. conf->dot11MeshHoldingTimeout; \
  75. __entry->dot11MeshMaxPeerLinks = conf->dot11MeshMaxPeerLinks; \
  76. __entry->dot11MeshMaxRetries = conf->dot11MeshMaxRetries; \
  77. __entry->dot11MeshTTL = conf->dot11MeshTTL; \
  78. __entry->element_ttl = conf->element_ttl; \
  79. __entry->auto_open_plinks = conf->auto_open_plinks; \
  80. __entry->dot11MeshNbrOffsetMaxNeighbor = \
  81. conf->dot11MeshNbrOffsetMaxNeighbor; \
  82. __entry->dot11MeshHWMPmaxPREQretries = \
  83. conf->dot11MeshHWMPmaxPREQretries; \
  84. __entry->path_refresh_time = conf->path_refresh_time; \
  85. __entry->dot11MeshHWMPactivePathTimeout = \
  86. conf->dot11MeshHWMPactivePathTimeout; \
  87. __entry->min_discovery_timeout = conf->min_discovery_timeout; \
  88. __entry->dot11MeshHWMPpreqMinInterval = \
  89. conf->dot11MeshHWMPpreqMinInterval; \
  90. __entry->dot11MeshHWMPperrMinInterval = \
  91. conf->dot11MeshHWMPperrMinInterval; \
  92. __entry->dot11MeshHWMPnetDiameterTraversalTime = \
  93. conf->dot11MeshHWMPnetDiameterTraversalTime; \
  94. __entry->dot11MeshHWMPRootMode = conf->dot11MeshHWMPRootMode; \
  95. __entry->dot11MeshHWMPRannInterval = \
  96. conf->dot11MeshHWMPRannInterval; \
  97. __entry->dot11MeshGateAnnouncementProtocol = \
  98. conf->dot11MeshGateAnnouncementProtocol; \
  99. __entry->dot11MeshForwarding = conf->dot11MeshForwarding; \
  100. __entry->rssi_threshold = conf->rssi_threshold; \
  101. __entry->ht_opmode = conf->ht_opmode; \
  102. __entry->dot11MeshHWMPactivePathToRootTimeout = \
  103. conf->dot11MeshHWMPactivePathToRootTimeout; \
  104. __entry->dot11MeshHWMProotInterval = \
  105. conf->dot11MeshHWMProotInterval; \
  106. __entry->dot11MeshHWMPconfirmationInterval = \
  107. conf->dot11MeshHWMPconfirmationInterval; \
  108. __entry->dot11MeshNolearn = conf->dot11MeshNolearn; \
  109. } while (0)
  110. #define CHAN_ENTRY __field(enum nl80211_band, band) \
  111. __field(u32, center_freq) \
  112. __field(u16, freq_offset)
  113. #define CHAN_ASSIGN(chan) \
  114. do { \
  115. if (chan) { \
  116. __entry->band = chan->band; \
  117. __entry->center_freq = chan->center_freq; \
  118. __entry->freq_offset = chan->freq_offset; \
  119. } else { \
  120. __entry->band = 0; \
  121. __entry->center_freq = 0; \
  122. __entry->freq_offset = 0; \
  123. } \
  124. } while (0)
  125. #define CHAN_PR_FMT "band: %d, freq: %u.%03u"
  126. #define CHAN_PR_ARG __entry->band, __entry->center_freq, __entry->freq_offset
  127. #define CHAN_DEF_ENTRY __field(enum nl80211_band, band) \
  128. __field(u32, control_freq) \
  129. __field(u32, freq_offset) \
  130. __field(u32, width) \
  131. __field(u32, center_freq1) \
  132. __field(u32, freq1_offset) \
  133. __field(u32, center_freq2) \
  134. __field(u16, punctured)
  135. #define CHAN_DEF_ASSIGN(chandef) \
  136. do { \
  137. if ((chandef) && (chandef)->chan) { \
  138. __entry->band = (chandef)->chan->band; \
  139. __entry->control_freq = \
  140. (chandef)->chan->center_freq; \
  141. __entry->freq_offset = \
  142. (chandef)->chan->freq_offset; \
  143. __entry->width = (chandef)->width; \
  144. __entry->center_freq1 = (chandef)->center_freq1;\
  145. __entry->freq1_offset = (chandef)->freq1_offset;\
  146. __entry->center_freq2 = (chandef)->center_freq2;\
  147. __entry->punctured = (chandef)->punctured; \
  148. } else { \
  149. __entry->band = 0; \
  150. __entry->control_freq = 0; \
  151. __entry->freq_offset = 0; \
  152. __entry->width = 0; \
  153. __entry->center_freq1 = 0; \
  154. __entry->freq1_offset = 0; \
  155. __entry->center_freq2 = 0; \
  156. __entry->punctured = 0; \
  157. } \
  158. } while (0)
  159. #define CHAN_DEF_PR_FMT \
  160. "band: %d, control freq: %u.%03u, width: %d, cf1: %u.%03u, cf2: %u, punct: 0x%x"
  161. #define CHAN_DEF_PR_ARG __entry->band, __entry->control_freq, \
  162. __entry->freq_offset, __entry->width, \
  163. __entry->center_freq1, __entry->freq1_offset, \
  164. __entry->center_freq2, __entry->punctured
  165. #define FILS_AAD_ASSIGN(fa) \
  166. do { \
  167. if (fa) { \
  168. ether_addr_copy(__entry->macaddr, fa->macaddr); \
  169. __entry->kek_len = fa->kek_len; \
  170. } else { \
  171. eth_zero_addr(__entry->macaddr); \
  172. __entry->kek_len = 0; \
  173. } \
  174. } while (0)
  175. #define FILS_AAD_PR_FMT \
  176. "macaddr: %pM, kek_len: %d"
  177. #define SINFO_ENTRY __field(int, generation) \
  178. __field(u32, connected_time) \
  179. __field(u32, inactive_time) \
  180. __field(u32, rx_bytes) \
  181. __field(u32, tx_bytes) \
  182. __field(u32, rx_packets) \
  183. __field(u32, tx_packets) \
  184. __field(u32, tx_retries) \
  185. __field(u32, tx_failed) \
  186. __field(u32, rx_dropped_misc) \
  187. __field(u32, beacon_loss_count) \
  188. __field(u16, llid) \
  189. __field(u16, plid) \
  190. __field(u8, plink_state)
  191. #define SINFO_ASSIGN \
  192. do { \
  193. __entry->generation = sinfo->generation; \
  194. __entry->connected_time = sinfo->connected_time; \
  195. __entry->inactive_time = sinfo->inactive_time; \
  196. __entry->rx_bytes = sinfo->rx_bytes; \
  197. __entry->tx_bytes = sinfo->tx_bytes; \
  198. __entry->rx_packets = sinfo->rx_packets; \
  199. __entry->tx_packets = sinfo->tx_packets; \
  200. __entry->tx_retries = sinfo->tx_retries; \
  201. __entry->tx_failed = sinfo->tx_failed; \
  202. __entry->rx_dropped_misc = sinfo->rx_dropped_misc; \
  203. __entry->beacon_loss_count = sinfo->beacon_loss_count; \
  204. __entry->llid = sinfo->llid; \
  205. __entry->plid = sinfo->plid; \
  206. __entry->plink_state = sinfo->plink_state; \
  207. } while (0)
  208. #define BOOL_TO_STR(bo) (bo) ? "true" : "false"
  209. #define QOS_MAP_ENTRY __field(u8, num_des) \
  210. __array(u8, dscp_exception, \
  211. 2 * IEEE80211_QOS_MAP_MAX_EX) \
  212. __array(u8, up, IEEE80211_QOS_MAP_LEN_MIN)
  213. #define QOS_MAP_ASSIGN(qos_map) \
  214. do { \
  215. if ((qos_map)) { \
  216. __entry->num_des = (qos_map)->num_des; \
  217. memcpy(__entry->dscp_exception, \
  218. &(qos_map)->dscp_exception, \
  219. 2 * IEEE80211_QOS_MAP_MAX_EX); \
  220. memcpy(__entry->up, &(qos_map)->up, \
  221. IEEE80211_QOS_MAP_LEN_MIN); \
  222. } else { \
  223. __entry->num_des = 0; \
  224. memset(__entry->dscp_exception, 0, \
  225. 2 * IEEE80211_QOS_MAP_MAX_EX); \
  226. memset(__entry->up, 0, \
  227. IEEE80211_QOS_MAP_LEN_MIN); \
  228. } \
  229. } while (0)
  230. /*************************************************************
  231. * wiphy work traces *
  232. *************************************************************/
  233. DECLARE_EVENT_CLASS(wiphy_work_event,
  234. TP_PROTO(struct wiphy *wiphy, struct wiphy_work *work),
  235. TP_ARGS(wiphy, work),
  236. TP_STRUCT__entry(
  237. WIPHY_ENTRY
  238. __field(void *, instance)
  239. __field(void *, func)
  240. ),
  241. TP_fast_assign(
  242. WIPHY_ASSIGN;
  243. __entry->instance = work;
  244. __entry->func = work ? work->func : NULL;
  245. ),
  246. TP_printk(WIPHY_PR_FMT " instance=%p func=%pS",
  247. WIPHY_PR_ARG, __entry->instance, __entry->func)
  248. );
  249. DEFINE_EVENT(wiphy_work_event, wiphy_work_queue,
  250. TP_PROTO(struct wiphy *wiphy, struct wiphy_work *work),
  251. TP_ARGS(wiphy, work)
  252. );
  253. DEFINE_EVENT(wiphy_work_event, wiphy_work_run,
  254. TP_PROTO(struct wiphy *wiphy, struct wiphy_work *work),
  255. TP_ARGS(wiphy, work)
  256. );
  257. DEFINE_EVENT(wiphy_work_event, wiphy_work_cancel,
  258. TP_PROTO(struct wiphy *wiphy, struct wiphy_work *work),
  259. TP_ARGS(wiphy, work)
  260. );
  261. DEFINE_EVENT(wiphy_work_event, wiphy_work_flush,
  262. TP_PROTO(struct wiphy *wiphy, struct wiphy_work *work),
  263. TP_ARGS(wiphy, work)
  264. );
  265. TRACE_EVENT(wiphy_delayed_work_queue,
  266. TP_PROTO(struct wiphy *wiphy, struct wiphy_work *work,
  267. unsigned long delay),
  268. TP_ARGS(wiphy, work, delay),
  269. TP_STRUCT__entry(
  270. WIPHY_ENTRY
  271. __field(void *, instance)
  272. __field(void *, func)
  273. __field(unsigned long, delay)
  274. ),
  275. TP_fast_assign(
  276. WIPHY_ASSIGN;
  277. __entry->instance = work;
  278. __entry->func = work->func;
  279. __entry->delay = delay;
  280. ),
  281. TP_printk(WIPHY_PR_FMT " instance=%p func=%pS delay=%ld",
  282. WIPHY_PR_ARG, __entry->instance, __entry->func,
  283. __entry->delay)
  284. );
  285. TRACE_EVENT(wiphy_work_worker_start,
  286. TP_PROTO(struct wiphy *wiphy),
  287. TP_ARGS(wiphy),
  288. TP_STRUCT__entry(
  289. WIPHY_ENTRY
  290. ),
  291. TP_fast_assign(
  292. WIPHY_ASSIGN;
  293. ),
  294. TP_printk(WIPHY_PR_FMT, WIPHY_PR_ARG)
  295. );
  296. /*************************************************************
  297. * rdev->ops traces *
  298. *************************************************************/
  299. TRACE_EVENT(rdev_suspend,
  300. TP_PROTO(struct wiphy *wiphy, struct cfg80211_wowlan *wow),
  301. TP_ARGS(wiphy, wow),
  302. TP_STRUCT__entry(
  303. WIPHY_ENTRY
  304. __field(bool, any)
  305. __field(bool, disconnect)
  306. __field(bool, magic_pkt)
  307. __field(bool, gtk_rekey_failure)
  308. __field(bool, eap_identity_req)
  309. __field(bool, four_way_handshake)
  310. __field(bool, rfkill_release)
  311. __field(bool, valid_wow)
  312. ),
  313. TP_fast_assign(
  314. WIPHY_ASSIGN;
  315. if (wow) {
  316. __entry->any = wow->any;
  317. __entry->disconnect = wow->disconnect;
  318. __entry->magic_pkt = wow->magic_pkt;
  319. __entry->gtk_rekey_failure = wow->gtk_rekey_failure;
  320. __entry->eap_identity_req = wow->eap_identity_req;
  321. __entry->four_way_handshake = wow->four_way_handshake;
  322. __entry->rfkill_release = wow->rfkill_release;
  323. __entry->valid_wow = true;
  324. } else {
  325. __entry->valid_wow = false;
  326. }
  327. ),
  328. TP_printk(WIPHY_PR_FMT ", wow%s - any: %d, disconnect: %d, "
  329. "magic pkt: %d, gtk rekey failure: %d, eap identify req: %d, "
  330. "four way handshake: %d, rfkill release: %d.",
  331. WIPHY_PR_ARG, __entry->valid_wow ? "" : "(Not configured!)",
  332. __entry->any, __entry->disconnect, __entry->magic_pkt,
  333. __entry->gtk_rekey_failure, __entry->eap_identity_req,
  334. __entry->four_way_handshake, __entry->rfkill_release)
  335. );
  336. TRACE_EVENT(rdev_return_int,
  337. TP_PROTO(struct wiphy *wiphy, int ret),
  338. TP_ARGS(wiphy, ret),
  339. TP_STRUCT__entry(
  340. WIPHY_ENTRY
  341. __field(int, ret)
  342. ),
  343. TP_fast_assign(
  344. WIPHY_ASSIGN;
  345. __entry->ret = ret;
  346. ),
  347. TP_printk(WIPHY_PR_FMT ", returned: %d", WIPHY_PR_ARG, __entry->ret)
  348. );
  349. TRACE_EVENT(rdev_scan,
  350. TP_PROTO(struct wiphy *wiphy, struct cfg80211_scan_request *request),
  351. TP_ARGS(wiphy, request),
  352. TP_STRUCT__entry(
  353. WIPHY_ENTRY
  354. ),
  355. TP_fast_assign(
  356. WIPHY_ASSIGN;
  357. ),
  358. TP_printk(WIPHY_PR_FMT, WIPHY_PR_ARG)
  359. );
  360. DECLARE_EVENT_CLASS(wiphy_only_evt,
  361. TP_PROTO(struct wiphy *wiphy),
  362. TP_ARGS(wiphy),
  363. TP_STRUCT__entry(
  364. WIPHY_ENTRY
  365. ),
  366. TP_fast_assign(
  367. WIPHY_ASSIGN;
  368. ),
  369. TP_printk(WIPHY_PR_FMT, WIPHY_PR_ARG)
  370. );
  371. DEFINE_EVENT(wiphy_only_evt, rdev_resume,
  372. TP_PROTO(struct wiphy *wiphy),
  373. TP_ARGS(wiphy)
  374. );
  375. DEFINE_EVENT(wiphy_only_evt, rdev_return_void,
  376. TP_PROTO(struct wiphy *wiphy),
  377. TP_ARGS(wiphy)
  378. );
  379. DEFINE_EVENT(wiphy_only_evt, rdev_get_antenna,
  380. TP_PROTO(struct wiphy *wiphy),
  381. TP_ARGS(wiphy)
  382. );
  383. DEFINE_EVENT(wiphy_only_evt, rdev_rfkill_poll,
  384. TP_PROTO(struct wiphy *wiphy),
  385. TP_ARGS(wiphy)
  386. );
  387. DECLARE_EVENT_CLASS(wiphy_enabled_evt,
  388. TP_PROTO(struct wiphy *wiphy, bool enabled),
  389. TP_ARGS(wiphy, enabled),
  390. TP_STRUCT__entry(
  391. WIPHY_ENTRY
  392. __field(bool, enabled)
  393. ),
  394. TP_fast_assign(
  395. WIPHY_ASSIGN;
  396. __entry->enabled = enabled;
  397. ),
  398. TP_printk(WIPHY_PR_FMT ", %senabled ",
  399. WIPHY_PR_ARG, __entry->enabled ? "" : "not ")
  400. );
  401. DEFINE_EVENT(wiphy_enabled_evt, rdev_set_wakeup,
  402. TP_PROTO(struct wiphy *wiphy, bool enabled),
  403. TP_ARGS(wiphy, enabled)
  404. );
  405. TRACE_EVENT(rdev_add_virtual_intf,
  406. TP_PROTO(struct wiphy *wiphy, char *name, enum nl80211_iftype type),
  407. TP_ARGS(wiphy, name, type),
  408. TP_STRUCT__entry(
  409. WIPHY_ENTRY
  410. __string(vir_intf_name, name ? name : "<noname>")
  411. __field(enum nl80211_iftype, type)
  412. ),
  413. TP_fast_assign(
  414. WIPHY_ASSIGN;
  415. __assign_str(vir_intf_name);
  416. __entry->type = type;
  417. ),
  418. TP_printk(WIPHY_PR_FMT ", virtual intf name: %s, type: %d",
  419. WIPHY_PR_ARG, __get_str(vir_intf_name), __entry->type)
  420. );
  421. DECLARE_EVENT_CLASS(wiphy_wdev_evt,
  422. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  423. TP_ARGS(wiphy, wdev),
  424. TP_STRUCT__entry(
  425. WIPHY_ENTRY
  426. WDEV_ENTRY
  427. ),
  428. TP_fast_assign(
  429. WIPHY_ASSIGN;
  430. WDEV_ASSIGN;
  431. ),
  432. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT, WIPHY_PR_ARG, WDEV_PR_ARG)
  433. );
  434. DECLARE_EVENT_CLASS(wiphy_wdev_cookie_evt,
  435. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev, u64 cookie),
  436. TP_ARGS(wiphy, wdev, cookie),
  437. TP_STRUCT__entry(
  438. WIPHY_ENTRY
  439. WDEV_ENTRY
  440. __field(u64, cookie)
  441. ),
  442. TP_fast_assign(
  443. WIPHY_ASSIGN;
  444. WDEV_ASSIGN;
  445. __entry->cookie = cookie;
  446. ),
  447. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", cookie: %lld",
  448. WIPHY_PR_ARG, WDEV_PR_ARG,
  449. (unsigned long long)__entry->cookie)
  450. );
  451. DEFINE_EVENT(wiphy_wdev_evt, rdev_return_wdev,
  452. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  453. TP_ARGS(wiphy, wdev)
  454. );
  455. DEFINE_EVENT(wiphy_wdev_evt, rdev_del_virtual_intf,
  456. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  457. TP_ARGS(wiphy, wdev)
  458. );
  459. TRACE_EVENT(rdev_change_virtual_intf,
  460. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  461. enum nl80211_iftype type),
  462. TP_ARGS(wiphy, netdev, type),
  463. TP_STRUCT__entry(
  464. WIPHY_ENTRY
  465. NETDEV_ENTRY
  466. __field(enum nl80211_iftype, type)
  467. ),
  468. TP_fast_assign(
  469. WIPHY_ASSIGN;
  470. NETDEV_ASSIGN;
  471. __entry->type = type;
  472. ),
  473. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", type: %d",
  474. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->type)
  475. );
  476. DECLARE_EVENT_CLASS(key_handle,
  477. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  478. u8 key_index, bool pairwise, const u8 *mac_addr),
  479. TP_ARGS(wiphy, netdev, link_id, key_index, pairwise, mac_addr),
  480. TP_STRUCT__entry(
  481. WIPHY_ENTRY
  482. NETDEV_ENTRY
  483. MAC_ENTRY(mac_addr)
  484. __field(int, link_id)
  485. __field(u8, key_index)
  486. __field(bool, pairwise)
  487. ),
  488. TP_fast_assign(
  489. WIPHY_ASSIGN;
  490. NETDEV_ASSIGN;
  491. MAC_ASSIGN(mac_addr, mac_addr);
  492. __entry->link_id = link_id;
  493. __entry->key_index = key_index;
  494. __entry->pairwise = pairwise;
  495. ),
  496. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d, "
  497. "key_index: %u, pairwise: %s, mac addr: %pM",
  498. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id,
  499. __entry->key_index, BOOL_TO_STR(__entry->pairwise),
  500. __entry->mac_addr)
  501. );
  502. DEFINE_EVENT(key_handle, rdev_get_key,
  503. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  504. u8 key_index, bool pairwise, const u8 *mac_addr),
  505. TP_ARGS(wiphy, netdev, link_id, key_index, pairwise, mac_addr)
  506. );
  507. DEFINE_EVENT(key_handle, rdev_del_key,
  508. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  509. u8 key_index, bool pairwise, const u8 *mac_addr),
  510. TP_ARGS(wiphy, netdev, link_id, key_index, pairwise, mac_addr)
  511. );
  512. TRACE_EVENT(rdev_add_key,
  513. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  514. u8 key_index, bool pairwise, const u8 *mac_addr, u8 mode),
  515. TP_ARGS(wiphy, netdev, link_id, key_index, pairwise, mac_addr, mode),
  516. TP_STRUCT__entry(
  517. WIPHY_ENTRY
  518. NETDEV_ENTRY
  519. MAC_ENTRY(mac_addr)
  520. __field(int, link_id)
  521. __field(u8, key_index)
  522. __field(bool, pairwise)
  523. __field(u8, mode)
  524. ),
  525. TP_fast_assign(
  526. WIPHY_ASSIGN;
  527. NETDEV_ASSIGN;
  528. MAC_ASSIGN(mac_addr, mac_addr);
  529. __entry->link_id = link_id;
  530. __entry->key_index = key_index;
  531. __entry->pairwise = pairwise;
  532. __entry->mode = mode;
  533. ),
  534. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d, "
  535. "key_index: %u, mode: %u, pairwise: %s, "
  536. "mac addr: %pM",
  537. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id,
  538. __entry->key_index, __entry->mode,
  539. BOOL_TO_STR(__entry->pairwise), __entry->mac_addr)
  540. );
  541. TRACE_EVENT(rdev_set_default_key,
  542. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  543. u8 key_index, bool unicast, bool multicast),
  544. TP_ARGS(wiphy, netdev, link_id, key_index, unicast, multicast),
  545. TP_STRUCT__entry(
  546. WIPHY_ENTRY
  547. NETDEV_ENTRY
  548. __field(int, link_id)
  549. __field(u8, key_index)
  550. __field(bool, unicast)
  551. __field(bool, multicast)
  552. ),
  553. TP_fast_assign(
  554. WIPHY_ASSIGN;
  555. NETDEV_ASSIGN;
  556. __entry->link_id = link_id;
  557. __entry->key_index = key_index;
  558. __entry->unicast = unicast;
  559. __entry->multicast = multicast;
  560. ),
  561. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d, "
  562. "key index: %u, unicast: %s, multicast: %s",
  563. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id,
  564. __entry->key_index, BOOL_TO_STR(__entry->unicast),
  565. BOOL_TO_STR(__entry->multicast))
  566. );
  567. TRACE_EVENT(rdev_set_default_mgmt_key,
  568. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  569. u8 key_index),
  570. TP_ARGS(wiphy, netdev, link_id, key_index),
  571. TP_STRUCT__entry(
  572. WIPHY_ENTRY
  573. NETDEV_ENTRY
  574. __field(int, link_id)
  575. __field(u8, key_index)
  576. ),
  577. TP_fast_assign(
  578. WIPHY_ASSIGN;
  579. NETDEV_ASSIGN;
  580. __entry->link_id = link_id;
  581. __entry->key_index = key_index;
  582. ),
  583. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d, "
  584. "key index: %u", WIPHY_PR_ARG, NETDEV_PR_ARG,
  585. __entry->link_id, __entry->key_index)
  586. );
  587. TRACE_EVENT(rdev_set_default_beacon_key,
  588. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int link_id,
  589. u8 key_index),
  590. TP_ARGS(wiphy, netdev, link_id, key_index),
  591. TP_STRUCT__entry(
  592. WIPHY_ENTRY
  593. NETDEV_ENTRY
  594. __field(int, link_id)
  595. __field(u8, key_index)
  596. ),
  597. TP_fast_assign(
  598. WIPHY_ASSIGN;
  599. NETDEV_ASSIGN;
  600. __entry->link_id = link_id;
  601. __entry->key_index = key_index;
  602. ),
  603. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d, "
  604. "key index: %u", WIPHY_PR_ARG, NETDEV_PR_ARG,
  605. __entry->link_id, __entry->key_index)
  606. );
  607. TRACE_EVENT(rdev_start_ap,
  608. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  609. struct cfg80211_ap_settings *settings),
  610. TP_ARGS(wiphy, netdev, settings),
  611. TP_STRUCT__entry(
  612. WIPHY_ENTRY
  613. NETDEV_ENTRY
  614. CHAN_DEF_ENTRY
  615. __field(int, beacon_interval)
  616. __field(int, dtim_period)
  617. __array(char, ssid, IEEE80211_MAX_SSID_LEN + 1)
  618. __field(enum nl80211_hidden_ssid, hidden_ssid)
  619. __field(u32, wpa_ver)
  620. __field(bool, privacy)
  621. __field(enum nl80211_auth_type, auth_type)
  622. __field(int, inactivity_timeout)
  623. __field(unsigned int, link_id)
  624. ),
  625. TP_fast_assign(
  626. WIPHY_ASSIGN;
  627. NETDEV_ASSIGN;
  628. CHAN_DEF_ASSIGN(&settings->chandef);
  629. __entry->beacon_interval = settings->beacon_interval;
  630. __entry->dtim_period = settings->dtim_period;
  631. __entry->hidden_ssid = settings->hidden_ssid;
  632. __entry->wpa_ver = settings->crypto.wpa_versions;
  633. __entry->privacy = settings->privacy;
  634. __entry->auth_type = settings->auth_type;
  635. __entry->inactivity_timeout = settings->inactivity_timeout;
  636. memset(__entry->ssid, 0, IEEE80211_MAX_SSID_LEN + 1);
  637. memcpy(__entry->ssid, settings->ssid, settings->ssid_len);
  638. __entry->link_id = settings->beacon.link_id;
  639. ),
  640. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", AP settings - ssid: %s, "
  641. CHAN_DEF_PR_FMT ", beacon interval: %d, dtim period: %d, "
  642. "hidden ssid: %d, wpa versions: %u, privacy: %s, "
  643. "auth type: %d, inactivity timeout: %d, link_id: %d",
  644. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->ssid, CHAN_DEF_PR_ARG,
  645. __entry->beacon_interval, __entry->dtim_period,
  646. __entry->hidden_ssid, __entry->wpa_ver,
  647. BOOL_TO_STR(__entry->privacy), __entry->auth_type,
  648. __entry->inactivity_timeout, __entry->link_id)
  649. );
  650. TRACE_EVENT(rdev_change_beacon,
  651. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  652. struct cfg80211_ap_update *info),
  653. TP_ARGS(wiphy, netdev, info),
  654. TP_STRUCT__entry(
  655. WIPHY_ENTRY
  656. NETDEV_ENTRY
  657. __field(int, link_id)
  658. __dynamic_array(u8, head, info->beacon.head_len)
  659. __dynamic_array(u8, tail, info->beacon.tail_len)
  660. __dynamic_array(u8, beacon_ies, info->beacon.beacon_ies_len)
  661. __dynamic_array(u8, proberesp_ies, info->beacon.proberesp_ies_len)
  662. __dynamic_array(u8, assocresp_ies, info->beacon.assocresp_ies_len)
  663. __dynamic_array(u8, probe_resp, info->beacon.probe_resp_len)
  664. ),
  665. TP_fast_assign(
  666. WIPHY_ASSIGN;
  667. NETDEV_ASSIGN;
  668. __entry->link_id = info->beacon.link_id;
  669. if (info->beacon.head)
  670. memcpy(__get_dynamic_array(head),
  671. info->beacon.head,
  672. info->beacon.head_len);
  673. if (info->beacon.tail)
  674. memcpy(__get_dynamic_array(tail),
  675. info->beacon.tail,
  676. info->beacon.tail_len);
  677. if (info->beacon.beacon_ies)
  678. memcpy(__get_dynamic_array(beacon_ies),
  679. info->beacon.beacon_ies,
  680. info->beacon.beacon_ies_len);
  681. if (info->beacon.proberesp_ies)
  682. memcpy(__get_dynamic_array(proberesp_ies),
  683. info->beacon.proberesp_ies,
  684. info->beacon.proberesp_ies_len);
  685. if (info->beacon.assocresp_ies)
  686. memcpy(__get_dynamic_array(assocresp_ies),
  687. info->beacon.assocresp_ies,
  688. info->beacon.assocresp_ies_len);
  689. if (info->beacon.probe_resp)
  690. memcpy(__get_dynamic_array(probe_resp),
  691. info->beacon.probe_resp,
  692. info->beacon.probe_resp_len);
  693. ),
  694. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id:%d",
  695. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id)
  696. );
  697. TRACE_EVENT(rdev_stop_ap,
  698. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  699. unsigned int link_id),
  700. TP_ARGS(wiphy, netdev, link_id),
  701. TP_STRUCT__entry(
  702. WIPHY_ENTRY
  703. NETDEV_ENTRY
  704. __field(unsigned int, link_id)
  705. ),
  706. TP_fast_assign(
  707. WIPHY_ASSIGN;
  708. NETDEV_ASSIGN;
  709. __entry->link_id = link_id;
  710. ),
  711. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d",
  712. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id)
  713. );
  714. DECLARE_EVENT_CLASS(wiphy_netdev_evt,
  715. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  716. TP_ARGS(wiphy, netdev),
  717. TP_STRUCT__entry(
  718. WIPHY_ENTRY
  719. NETDEV_ENTRY
  720. ),
  721. TP_fast_assign(
  722. WIPHY_ASSIGN;
  723. NETDEV_ASSIGN;
  724. ),
  725. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT, WIPHY_PR_ARG, NETDEV_PR_ARG)
  726. );
  727. DEFINE_EVENT(wiphy_netdev_evt, rdev_set_rekey_data,
  728. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  729. TP_ARGS(wiphy, netdev)
  730. );
  731. DEFINE_EVENT(wiphy_netdev_evt, rdev_get_mesh_config,
  732. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  733. TP_ARGS(wiphy, netdev)
  734. );
  735. DEFINE_EVENT(wiphy_netdev_evt, rdev_leave_mesh,
  736. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  737. TP_ARGS(wiphy, netdev)
  738. );
  739. DEFINE_EVENT(wiphy_netdev_evt, rdev_leave_ibss,
  740. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  741. TP_ARGS(wiphy, netdev)
  742. );
  743. DEFINE_EVENT(wiphy_netdev_evt, rdev_leave_ocb,
  744. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  745. TP_ARGS(wiphy, netdev)
  746. );
  747. DEFINE_EVENT(wiphy_netdev_evt, rdev_flush_pmksa,
  748. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev),
  749. TP_ARGS(wiphy, netdev)
  750. );
  751. TRACE_EVENT(rdev_end_cac,
  752. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  753. unsigned int link_id),
  754. TP_ARGS(wiphy, netdev, link_id),
  755. TP_STRUCT__entry(
  756. WIPHY_ENTRY
  757. NETDEV_ENTRY
  758. __field(unsigned int, link_id)
  759. ),
  760. TP_fast_assign(
  761. WIPHY_ASSIGN;
  762. NETDEV_ASSIGN;
  763. __entry->link_id = link_id;
  764. ),
  765. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d",
  766. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id)
  767. );
  768. DECLARE_EVENT_CLASS(station_add_change,
  769. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *mac,
  770. struct station_parameters *params),
  771. TP_ARGS(wiphy, netdev, mac, params),
  772. TP_STRUCT__entry(
  773. WIPHY_ENTRY
  774. NETDEV_ENTRY
  775. MAC_ENTRY(sta_mac)
  776. __field(u32, sta_flags_mask)
  777. __field(u32, sta_flags_set)
  778. __field(u32, sta_modify_mask)
  779. __field(int, listen_interval)
  780. __field(u16, capability)
  781. __field(u16, aid)
  782. __field(u8, plink_action)
  783. __field(u8, plink_state)
  784. __field(u8, uapsd_queues)
  785. __field(u8, max_sp)
  786. __field(u8, opmode_notif)
  787. __field(bool, opmode_notif_used)
  788. __array(u8, ht_capa, (int)sizeof(struct ieee80211_ht_cap))
  789. __array(u8, vht_capa, (int)sizeof(struct ieee80211_vht_cap))
  790. __array(char, vlan, IFNAMSIZ)
  791. __dynamic_array(u8, supported_rates,
  792. params->link_sta_params.supported_rates_len)
  793. __dynamic_array(u8, ext_capab, params->ext_capab_len)
  794. __dynamic_array(u8, supported_channels,
  795. params->supported_channels_len)
  796. __dynamic_array(u8, supported_oper_classes,
  797. params->supported_oper_classes_len)
  798. ),
  799. TP_fast_assign(
  800. WIPHY_ASSIGN;
  801. NETDEV_ASSIGN;
  802. MAC_ASSIGN(sta_mac, mac);
  803. __entry->sta_flags_mask = params->sta_flags_mask;
  804. __entry->sta_flags_set = params->sta_flags_set;
  805. __entry->sta_modify_mask = params->sta_modify_mask;
  806. __entry->listen_interval = params->listen_interval;
  807. __entry->aid = params->aid;
  808. __entry->plink_action = params->plink_action;
  809. __entry->plink_state = params->plink_state;
  810. __entry->uapsd_queues = params->uapsd_queues;
  811. memset(__entry->ht_capa, 0, sizeof(struct ieee80211_ht_cap));
  812. if (params->link_sta_params.ht_capa)
  813. memcpy(__entry->ht_capa,
  814. params->link_sta_params.ht_capa,
  815. sizeof(struct ieee80211_ht_cap));
  816. memset(__entry->vht_capa, 0, sizeof(struct ieee80211_vht_cap));
  817. if (params->link_sta_params.vht_capa)
  818. memcpy(__entry->vht_capa,
  819. params->link_sta_params.vht_capa,
  820. sizeof(struct ieee80211_vht_cap));
  821. memset(__entry->vlan, 0, sizeof(__entry->vlan));
  822. if (params->vlan)
  823. memcpy(__entry->vlan, params->vlan->name, IFNAMSIZ);
  824. if (params->link_sta_params.supported_rates &&
  825. params->link_sta_params.supported_rates_len)
  826. memcpy(__get_dynamic_array(supported_rates),
  827. params->link_sta_params.supported_rates,
  828. params->link_sta_params.supported_rates_len);
  829. if (params->ext_capab && params->ext_capab_len)
  830. memcpy(__get_dynamic_array(ext_capab),
  831. params->ext_capab,
  832. params->ext_capab_len);
  833. if (params->supported_channels &&
  834. params->supported_channels_len)
  835. memcpy(__get_dynamic_array(supported_channels),
  836. params->supported_channels,
  837. params->supported_channels_len);
  838. if (params->supported_oper_classes &&
  839. params->supported_oper_classes_len)
  840. memcpy(__get_dynamic_array(supported_oper_classes),
  841. params->supported_oper_classes,
  842. params->supported_oper_classes_len);
  843. __entry->max_sp = params->max_sp;
  844. __entry->capability = params->capability;
  845. __entry->opmode_notif = params->link_sta_params.opmode_notif;
  846. __entry->opmode_notif_used =
  847. params->link_sta_params.opmode_notif_used;
  848. ),
  849. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", station mac: %pM"
  850. ", station flags mask: 0x%x, station flags set: 0x%x, "
  851. "station modify mask: 0x%x, listen interval: %d, aid: %u, "
  852. "plink action: %u, plink state: %u, uapsd queues: %u, vlan:%s",
  853. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->sta_mac,
  854. __entry->sta_flags_mask, __entry->sta_flags_set,
  855. __entry->sta_modify_mask, __entry->listen_interval,
  856. __entry->aid, __entry->plink_action, __entry->plink_state,
  857. __entry->uapsd_queues, __entry->vlan)
  858. );
  859. DEFINE_EVENT(station_add_change, rdev_add_station,
  860. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *mac,
  861. struct station_parameters *params),
  862. TP_ARGS(wiphy, netdev, mac, params)
  863. );
  864. DEFINE_EVENT(station_add_change, rdev_change_station,
  865. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *mac,
  866. struct station_parameters *params),
  867. TP_ARGS(wiphy, netdev, mac, params)
  868. );
  869. DECLARE_EVENT_CLASS(wiphy_netdev_mac_evt,
  870. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, const u8 *mac),
  871. TP_ARGS(wiphy, netdev, mac),
  872. TP_STRUCT__entry(
  873. WIPHY_ENTRY
  874. NETDEV_ENTRY
  875. MAC_ENTRY(sta_mac)
  876. ),
  877. TP_fast_assign(
  878. WIPHY_ASSIGN;
  879. NETDEV_ASSIGN;
  880. MAC_ASSIGN(sta_mac, mac);
  881. ),
  882. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", mac: %pM",
  883. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->sta_mac)
  884. );
  885. DECLARE_EVENT_CLASS(station_del,
  886. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  887. struct station_del_parameters *params),
  888. TP_ARGS(wiphy, netdev, params),
  889. TP_STRUCT__entry(
  890. WIPHY_ENTRY
  891. NETDEV_ENTRY
  892. MAC_ENTRY(sta_mac)
  893. __field(u8, subtype)
  894. __field(u16, reason_code)
  895. __field(int, link_id)
  896. ),
  897. TP_fast_assign(
  898. WIPHY_ASSIGN;
  899. NETDEV_ASSIGN;
  900. MAC_ASSIGN(sta_mac, params->mac);
  901. __entry->subtype = params->subtype;
  902. __entry->reason_code = params->reason_code;
  903. __entry->link_id = params->link_id;
  904. ),
  905. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", station mac: %pM"
  906. ", subtype: %u, reason_code: %u, link_id: %d",
  907. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->sta_mac,
  908. __entry->subtype, __entry->reason_code,
  909. __entry->link_id)
  910. );
  911. DEFINE_EVENT(station_del, rdev_del_station,
  912. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  913. struct station_del_parameters *params),
  914. TP_ARGS(wiphy, netdev, params)
  915. );
  916. DEFINE_EVENT(wiphy_netdev_mac_evt, rdev_get_station,
  917. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, const u8 *mac),
  918. TP_ARGS(wiphy, netdev, mac)
  919. );
  920. DEFINE_EVENT(wiphy_netdev_mac_evt, rdev_del_mpath,
  921. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, const u8 *mac),
  922. TP_ARGS(wiphy, netdev, mac)
  923. );
  924. TRACE_EVENT(rdev_dump_station,
  925. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int _idx,
  926. u8 *mac),
  927. TP_ARGS(wiphy, netdev, _idx, mac),
  928. TP_STRUCT__entry(
  929. WIPHY_ENTRY
  930. NETDEV_ENTRY
  931. MAC_ENTRY(sta_mac)
  932. __field(int, idx)
  933. ),
  934. TP_fast_assign(
  935. WIPHY_ASSIGN;
  936. NETDEV_ASSIGN;
  937. MAC_ASSIGN(sta_mac, mac);
  938. __entry->idx = _idx;
  939. ),
  940. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", station mac: %pM, idx: %d",
  941. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->sta_mac,
  942. __entry->idx)
  943. );
  944. TRACE_EVENT(rdev_return_int_station_info,
  945. TP_PROTO(struct wiphy *wiphy, int ret, struct station_info *sinfo),
  946. TP_ARGS(wiphy, ret, sinfo),
  947. TP_STRUCT__entry(
  948. WIPHY_ENTRY
  949. __field(int, ret)
  950. SINFO_ENTRY
  951. ),
  952. TP_fast_assign(
  953. WIPHY_ASSIGN;
  954. __entry->ret = ret;
  955. SINFO_ASSIGN;
  956. ),
  957. TP_printk(WIPHY_PR_FMT ", returned %d" ,
  958. WIPHY_PR_ARG, __entry->ret)
  959. );
  960. DECLARE_EVENT_CLASS(mpath_evt,
  961. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *dst,
  962. u8 *next_hop),
  963. TP_ARGS(wiphy, netdev, dst, next_hop),
  964. TP_STRUCT__entry(
  965. WIPHY_ENTRY
  966. NETDEV_ENTRY
  967. MAC_ENTRY(dst)
  968. MAC_ENTRY(next_hop)
  969. ),
  970. TP_fast_assign(
  971. WIPHY_ASSIGN;
  972. NETDEV_ASSIGN;
  973. MAC_ASSIGN(dst, dst);
  974. MAC_ASSIGN(next_hop, next_hop);
  975. ),
  976. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", destination: %pM, next hop: %pM",
  977. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->dst,
  978. __entry->next_hop)
  979. );
  980. DEFINE_EVENT(mpath_evt, rdev_add_mpath,
  981. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *dst,
  982. u8 *next_hop),
  983. TP_ARGS(wiphy, netdev, dst, next_hop)
  984. );
  985. DEFINE_EVENT(mpath_evt, rdev_change_mpath,
  986. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *dst,
  987. u8 *next_hop),
  988. TP_ARGS(wiphy, netdev, dst, next_hop)
  989. );
  990. DEFINE_EVENT(mpath_evt, rdev_get_mpath,
  991. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u8 *dst,
  992. u8 *next_hop),
  993. TP_ARGS(wiphy, netdev, dst, next_hop)
  994. );
  995. TRACE_EVENT(rdev_dump_mpath,
  996. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int _idx,
  997. u8 *dst, u8 *next_hop),
  998. TP_ARGS(wiphy, netdev, _idx, dst, next_hop),
  999. TP_STRUCT__entry(
  1000. WIPHY_ENTRY
  1001. NETDEV_ENTRY
  1002. MAC_ENTRY(dst)
  1003. MAC_ENTRY(next_hop)
  1004. __field(int, idx)
  1005. ),
  1006. TP_fast_assign(
  1007. WIPHY_ASSIGN;
  1008. NETDEV_ASSIGN;
  1009. MAC_ASSIGN(dst, dst);
  1010. MAC_ASSIGN(next_hop, next_hop);
  1011. __entry->idx = _idx;
  1012. ),
  1013. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", index: %d, destination: %pM, next hop: %pM",
  1014. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->idx, __entry->dst,
  1015. __entry->next_hop)
  1016. );
  1017. TRACE_EVENT(rdev_get_mpp,
  1018. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1019. u8 *dst, u8 *mpp),
  1020. TP_ARGS(wiphy, netdev, dst, mpp),
  1021. TP_STRUCT__entry(
  1022. WIPHY_ENTRY
  1023. NETDEV_ENTRY
  1024. MAC_ENTRY(dst)
  1025. MAC_ENTRY(mpp)
  1026. ),
  1027. TP_fast_assign(
  1028. WIPHY_ASSIGN;
  1029. NETDEV_ASSIGN;
  1030. MAC_ASSIGN(dst, dst);
  1031. MAC_ASSIGN(mpp, mpp);
  1032. ),
  1033. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", destination: %pM"
  1034. ", mpp: %pM", WIPHY_PR_ARG, NETDEV_PR_ARG,
  1035. __entry->dst, __entry->mpp)
  1036. );
  1037. TRACE_EVENT(rdev_dump_mpp,
  1038. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int _idx,
  1039. u8 *dst, u8 *mpp),
  1040. TP_ARGS(wiphy, netdev, _idx, dst, mpp),
  1041. TP_STRUCT__entry(
  1042. WIPHY_ENTRY
  1043. NETDEV_ENTRY
  1044. MAC_ENTRY(dst)
  1045. MAC_ENTRY(mpp)
  1046. __field(int, idx)
  1047. ),
  1048. TP_fast_assign(
  1049. WIPHY_ASSIGN;
  1050. NETDEV_ASSIGN;
  1051. MAC_ASSIGN(dst, dst);
  1052. MAC_ASSIGN(mpp, mpp);
  1053. __entry->idx = _idx;
  1054. ),
  1055. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", index: %d, destination: %pM, mpp: %pM",
  1056. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->idx, __entry->dst,
  1057. __entry->mpp)
  1058. );
  1059. TRACE_EVENT(rdev_return_int_mpath_info,
  1060. TP_PROTO(struct wiphy *wiphy, int ret, struct mpath_info *pinfo),
  1061. TP_ARGS(wiphy, ret, pinfo),
  1062. TP_STRUCT__entry(
  1063. WIPHY_ENTRY
  1064. __field(int, ret)
  1065. __field(int, generation)
  1066. __field(u32, filled)
  1067. __field(u32, frame_qlen)
  1068. __field(u32, sn)
  1069. __field(u32, metric)
  1070. __field(u32, exptime)
  1071. __field(u32, discovery_timeout)
  1072. __field(u8, discovery_retries)
  1073. __field(u8, flags)
  1074. ),
  1075. TP_fast_assign(
  1076. WIPHY_ASSIGN;
  1077. __entry->ret = ret;
  1078. __entry->generation = pinfo->generation;
  1079. __entry->filled = pinfo->filled;
  1080. __entry->frame_qlen = pinfo->frame_qlen;
  1081. __entry->sn = pinfo->sn;
  1082. __entry->metric = pinfo->metric;
  1083. __entry->exptime = pinfo->exptime;
  1084. __entry->discovery_timeout = pinfo->discovery_timeout;
  1085. __entry->discovery_retries = pinfo->discovery_retries;
  1086. __entry->flags = pinfo->flags;
  1087. ),
  1088. TP_printk(WIPHY_PR_FMT ", returned %d. mpath info - generation: %d, "
  1089. "filled: %u, frame qlen: %u, sn: %u, metric: %u, exptime: %u,"
  1090. " discovery timeout: %u, discovery retries: %u, flags: 0x%x",
  1091. WIPHY_PR_ARG, __entry->ret, __entry->generation,
  1092. __entry->filled, __entry->frame_qlen, __entry->sn,
  1093. __entry->metric, __entry->exptime, __entry->discovery_timeout,
  1094. __entry->discovery_retries, __entry->flags)
  1095. );
  1096. TRACE_EVENT(rdev_return_int_mesh_config,
  1097. TP_PROTO(struct wiphy *wiphy, int ret, struct mesh_config *conf),
  1098. TP_ARGS(wiphy, ret, conf),
  1099. TP_STRUCT__entry(
  1100. WIPHY_ENTRY
  1101. MESH_CFG_ENTRY
  1102. __field(int, ret)
  1103. ),
  1104. TP_fast_assign(
  1105. WIPHY_ASSIGN;
  1106. MESH_CFG_ASSIGN;
  1107. __entry->ret = ret;
  1108. ),
  1109. TP_printk(WIPHY_PR_FMT ", returned: %d",
  1110. WIPHY_PR_ARG, __entry->ret)
  1111. );
  1112. TRACE_EVENT(rdev_update_mesh_config,
  1113. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u32 mask,
  1114. const struct mesh_config *conf),
  1115. TP_ARGS(wiphy, netdev, mask, conf),
  1116. TP_STRUCT__entry(
  1117. WIPHY_ENTRY
  1118. NETDEV_ENTRY
  1119. MESH_CFG_ENTRY
  1120. __field(u32, mask)
  1121. ),
  1122. TP_fast_assign(
  1123. WIPHY_ASSIGN;
  1124. NETDEV_ASSIGN;
  1125. MESH_CFG_ASSIGN;
  1126. __entry->mask = mask;
  1127. ),
  1128. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", mask: %u",
  1129. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->mask)
  1130. );
  1131. TRACE_EVENT(rdev_join_mesh,
  1132. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1133. const struct mesh_config *conf,
  1134. const struct mesh_setup *setup),
  1135. TP_ARGS(wiphy, netdev, conf, setup),
  1136. TP_STRUCT__entry(
  1137. WIPHY_ENTRY
  1138. NETDEV_ENTRY
  1139. MESH_CFG_ENTRY
  1140. ),
  1141. TP_fast_assign(
  1142. WIPHY_ASSIGN;
  1143. NETDEV_ASSIGN;
  1144. MESH_CFG_ASSIGN;
  1145. ),
  1146. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT,
  1147. WIPHY_PR_ARG, NETDEV_PR_ARG)
  1148. );
  1149. TRACE_EVENT(rdev_change_bss,
  1150. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1151. struct bss_parameters *params),
  1152. TP_ARGS(wiphy, netdev, params),
  1153. TP_STRUCT__entry(
  1154. WIPHY_ENTRY
  1155. NETDEV_ENTRY
  1156. __field(int, use_cts_prot)
  1157. __field(int, use_short_preamble)
  1158. __field(int, use_short_slot_time)
  1159. __field(int, ap_isolate)
  1160. __field(int, ht_opmode)
  1161. ),
  1162. TP_fast_assign(
  1163. WIPHY_ASSIGN;
  1164. NETDEV_ASSIGN;
  1165. __entry->use_cts_prot = params->use_cts_prot;
  1166. __entry->use_short_preamble = params->use_short_preamble;
  1167. __entry->use_short_slot_time = params->use_short_slot_time;
  1168. __entry->ap_isolate = params->ap_isolate;
  1169. __entry->ht_opmode = params->ht_opmode;
  1170. ),
  1171. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", use cts prot: %d, "
  1172. "use short preamble: %d, use short slot time: %d, "
  1173. "ap isolate: %d, ht opmode: %d",
  1174. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->use_cts_prot,
  1175. __entry->use_short_preamble, __entry->use_short_slot_time,
  1176. __entry->ap_isolate, __entry->ht_opmode)
  1177. );
  1178. TRACE_EVENT(rdev_inform_bss,
  1179. TP_PROTO(struct wiphy *wiphy, struct cfg80211_bss *bss),
  1180. TP_ARGS(wiphy, bss),
  1181. TP_STRUCT__entry(
  1182. WIPHY_ENTRY
  1183. MAC_ENTRY(bssid)
  1184. CHAN_ENTRY
  1185. ),
  1186. TP_fast_assign(
  1187. WIPHY_ASSIGN;
  1188. MAC_ASSIGN(bssid, bss->bssid);
  1189. CHAN_ASSIGN(bss->channel);
  1190. ),
  1191. TP_printk(WIPHY_PR_FMT ", %pM, " CHAN_PR_FMT,
  1192. WIPHY_PR_ARG, __entry->bssid, CHAN_PR_ARG)
  1193. );
  1194. TRACE_EVENT(rdev_set_txq_params,
  1195. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1196. struct ieee80211_txq_params *params),
  1197. TP_ARGS(wiphy, netdev, params),
  1198. TP_STRUCT__entry(
  1199. WIPHY_ENTRY
  1200. NETDEV_ENTRY
  1201. __field(enum nl80211_ac, ac)
  1202. __field(u16, txop)
  1203. __field(u16, cwmin)
  1204. __field(u16, cwmax)
  1205. __field(u8, aifs)
  1206. ),
  1207. TP_fast_assign(
  1208. WIPHY_ASSIGN;
  1209. NETDEV_ASSIGN;
  1210. __entry->ac = params->ac;
  1211. __entry->txop = params->txop;
  1212. __entry->cwmin = params->cwmin;
  1213. __entry->cwmax = params->cwmax;
  1214. __entry->aifs = params->aifs;
  1215. ),
  1216. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", ac: %d, txop: %u, cwmin: %u, cwmax: %u, aifs: %u",
  1217. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->ac, __entry->txop,
  1218. __entry->cwmin, __entry->cwmax, __entry->aifs)
  1219. );
  1220. TRACE_EVENT(rdev_libertas_set_mesh_channel,
  1221. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1222. struct ieee80211_channel *chan),
  1223. TP_ARGS(wiphy, netdev, chan),
  1224. TP_STRUCT__entry(
  1225. WIPHY_ENTRY
  1226. NETDEV_ENTRY
  1227. CHAN_ENTRY
  1228. ),
  1229. TP_fast_assign(
  1230. WIPHY_ASSIGN;
  1231. NETDEV_ASSIGN;
  1232. CHAN_ASSIGN(chan);
  1233. ),
  1234. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", " CHAN_PR_FMT, WIPHY_PR_ARG,
  1235. NETDEV_PR_ARG, CHAN_PR_ARG)
  1236. );
  1237. TRACE_EVENT(rdev_set_monitor_channel,
  1238. TP_PROTO(struct wiphy *wiphy,
  1239. struct cfg80211_chan_def *chandef),
  1240. TP_ARGS(wiphy, chandef),
  1241. TP_STRUCT__entry(
  1242. WIPHY_ENTRY
  1243. CHAN_DEF_ENTRY
  1244. ),
  1245. TP_fast_assign(
  1246. WIPHY_ASSIGN;
  1247. CHAN_DEF_ASSIGN(chandef);
  1248. ),
  1249. TP_printk(WIPHY_PR_FMT ", " CHAN_DEF_PR_FMT,
  1250. WIPHY_PR_ARG, CHAN_DEF_PR_ARG)
  1251. );
  1252. TRACE_EVENT(rdev_auth,
  1253. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1254. struct cfg80211_auth_request *req),
  1255. TP_ARGS(wiphy, netdev, req),
  1256. TP_STRUCT__entry(
  1257. WIPHY_ENTRY
  1258. NETDEV_ENTRY
  1259. MAC_ENTRY(bssid)
  1260. __field(enum nl80211_auth_type, auth_type)
  1261. ),
  1262. TP_fast_assign(
  1263. WIPHY_ASSIGN;
  1264. NETDEV_ASSIGN;
  1265. if (req->bss)
  1266. MAC_ASSIGN(bssid, req->bss->bssid);
  1267. else
  1268. eth_zero_addr(__entry->bssid);
  1269. __entry->auth_type = req->auth_type;
  1270. ),
  1271. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", auth type: %d, bssid: %pM",
  1272. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->auth_type,
  1273. __entry->bssid)
  1274. );
  1275. TRACE_EVENT(rdev_assoc,
  1276. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1277. struct cfg80211_assoc_request *req),
  1278. TP_ARGS(wiphy, netdev, req),
  1279. TP_STRUCT__entry(
  1280. WIPHY_ENTRY
  1281. NETDEV_ENTRY
  1282. MAC_ENTRY(bssid)
  1283. MAC_ENTRY(prev_bssid)
  1284. __field(bool, use_mfp)
  1285. __field(u32, flags)
  1286. __dynamic_array(u8, elements, req->ie_len)
  1287. __array(u8, ht_capa, sizeof(struct ieee80211_ht_cap))
  1288. __array(u8, ht_capa_mask, sizeof(struct ieee80211_ht_cap))
  1289. __array(u8, vht_capa, sizeof(struct ieee80211_vht_cap))
  1290. __array(u8, vht_capa_mask, sizeof(struct ieee80211_vht_cap))
  1291. __dynamic_array(u8, fils_kek, req->fils_kek_len)
  1292. __dynamic_array(u8, fils_nonces,
  1293. req->fils_nonces ? 2 * FILS_NONCE_LEN : 0)
  1294. ),
  1295. TP_fast_assign(
  1296. WIPHY_ASSIGN;
  1297. NETDEV_ASSIGN;
  1298. if (req->bss)
  1299. MAC_ASSIGN(bssid, req->bss->bssid);
  1300. else
  1301. eth_zero_addr(__entry->bssid);
  1302. MAC_ASSIGN(prev_bssid, req->prev_bssid);
  1303. __entry->use_mfp = req->use_mfp;
  1304. __entry->flags = req->flags;
  1305. if (req->ie)
  1306. memcpy(__get_dynamic_array(elements),
  1307. req->ie, req->ie_len);
  1308. memcpy(__entry->ht_capa, &req->ht_capa, sizeof(req->ht_capa));
  1309. memcpy(__entry->ht_capa_mask, &req->ht_capa_mask,
  1310. sizeof(req->ht_capa_mask));
  1311. memcpy(__entry->vht_capa, &req->vht_capa, sizeof(req->vht_capa));
  1312. memcpy(__entry->vht_capa_mask, &req->vht_capa_mask,
  1313. sizeof(req->vht_capa_mask));
  1314. if (req->fils_kek)
  1315. memcpy(__get_dynamic_array(fils_kek),
  1316. req->fils_kek, req->fils_kek_len);
  1317. if (req->fils_nonces)
  1318. memcpy(__get_dynamic_array(fils_nonces),
  1319. req->fils_nonces, 2 * FILS_NONCE_LEN);
  1320. ),
  1321. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM"
  1322. ", previous bssid: %pM, use mfp: %s, flags: 0x%x",
  1323. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid,
  1324. __entry->prev_bssid, BOOL_TO_STR(__entry->use_mfp),
  1325. __entry->flags)
  1326. );
  1327. TRACE_EVENT(rdev_deauth,
  1328. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1329. struct cfg80211_deauth_request *req),
  1330. TP_ARGS(wiphy, netdev, req),
  1331. TP_STRUCT__entry(
  1332. WIPHY_ENTRY
  1333. NETDEV_ENTRY
  1334. MAC_ENTRY(bssid)
  1335. __field(u16, reason_code)
  1336. __field(bool, local_state_change)
  1337. ),
  1338. TP_fast_assign(
  1339. WIPHY_ASSIGN;
  1340. NETDEV_ASSIGN;
  1341. MAC_ASSIGN(bssid, req->bssid);
  1342. __entry->reason_code = req->reason_code;
  1343. __entry->local_state_change = req->local_state_change;
  1344. ),
  1345. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM, reason: %u, local_state_change:%d",
  1346. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid,
  1347. __entry->reason_code, __entry->local_state_change)
  1348. );
  1349. TRACE_EVENT(rdev_disassoc,
  1350. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1351. struct cfg80211_disassoc_request *req),
  1352. TP_ARGS(wiphy, netdev, req),
  1353. TP_STRUCT__entry(
  1354. WIPHY_ENTRY
  1355. NETDEV_ENTRY
  1356. MAC_ENTRY(bssid)
  1357. __field(u16, reason_code)
  1358. __field(bool, local_state_change)
  1359. ),
  1360. TP_fast_assign(
  1361. WIPHY_ASSIGN;
  1362. NETDEV_ASSIGN;
  1363. MAC_ASSIGN(bssid, req->ap_addr);
  1364. __entry->reason_code = req->reason_code;
  1365. __entry->local_state_change = req->local_state_change;
  1366. ),
  1367. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM"
  1368. ", reason: %u, local state change: %s",
  1369. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid,
  1370. __entry->reason_code,
  1371. BOOL_TO_STR(__entry->local_state_change))
  1372. );
  1373. TRACE_EVENT(rdev_mgmt_tx_cancel_wait,
  1374. TP_PROTO(struct wiphy *wiphy,
  1375. struct wireless_dev *wdev, u64 cookie),
  1376. TP_ARGS(wiphy, wdev, cookie),
  1377. TP_STRUCT__entry(
  1378. WIPHY_ENTRY
  1379. WDEV_ENTRY
  1380. __field(u64, cookie)
  1381. ),
  1382. TP_fast_assign(
  1383. WIPHY_ASSIGN;
  1384. WDEV_ASSIGN;
  1385. __entry->cookie = cookie;
  1386. ),
  1387. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", cookie: %llu ",
  1388. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->cookie)
  1389. );
  1390. TRACE_EVENT(rdev_set_power_mgmt,
  1391. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1392. bool enabled, int timeout),
  1393. TP_ARGS(wiphy, netdev, enabled, timeout),
  1394. TP_STRUCT__entry(
  1395. WIPHY_ENTRY
  1396. NETDEV_ENTRY
  1397. __field(bool, enabled)
  1398. __field(int, timeout)
  1399. ),
  1400. TP_fast_assign(
  1401. WIPHY_ASSIGN;
  1402. NETDEV_ASSIGN;
  1403. __entry->enabled = enabled;
  1404. __entry->timeout = timeout;
  1405. ),
  1406. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %senabled, timeout: %d ",
  1407. WIPHY_PR_ARG, NETDEV_PR_ARG,
  1408. __entry->enabled ? "" : "not ", __entry->timeout)
  1409. );
  1410. TRACE_EVENT(rdev_connect,
  1411. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1412. struct cfg80211_connect_params *sme),
  1413. TP_ARGS(wiphy, netdev, sme),
  1414. TP_STRUCT__entry(
  1415. WIPHY_ENTRY
  1416. NETDEV_ENTRY
  1417. MAC_ENTRY(bssid)
  1418. __array(char, ssid, IEEE80211_MAX_SSID_LEN + 1)
  1419. __field(enum nl80211_auth_type, auth_type)
  1420. __field(bool, privacy)
  1421. __field(u32, wpa_versions)
  1422. __field(u32, flags)
  1423. MAC_ENTRY(prev_bssid)
  1424. ),
  1425. TP_fast_assign(
  1426. WIPHY_ASSIGN;
  1427. NETDEV_ASSIGN;
  1428. MAC_ASSIGN(bssid, sme->bssid);
  1429. memset(__entry->ssid, 0, IEEE80211_MAX_SSID_LEN + 1);
  1430. memcpy(__entry->ssid, sme->ssid, sme->ssid_len);
  1431. __entry->auth_type = sme->auth_type;
  1432. __entry->privacy = sme->privacy;
  1433. __entry->wpa_versions = sme->crypto.wpa_versions;
  1434. __entry->flags = sme->flags;
  1435. MAC_ASSIGN(prev_bssid, sme->prev_bssid);
  1436. ),
  1437. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM"
  1438. ", ssid: %s, auth type: %d, privacy: %s, wpa versions: %u, "
  1439. "flags: 0x%x, previous bssid: %pM",
  1440. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid, __entry->ssid,
  1441. __entry->auth_type, BOOL_TO_STR(__entry->privacy),
  1442. __entry->wpa_versions, __entry->flags, __entry->prev_bssid)
  1443. );
  1444. TRACE_EVENT(rdev_update_connect_params,
  1445. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1446. struct cfg80211_connect_params *sme, u32 changed),
  1447. TP_ARGS(wiphy, netdev, sme, changed),
  1448. TP_STRUCT__entry(
  1449. WIPHY_ENTRY
  1450. NETDEV_ENTRY
  1451. __field(u32, changed)
  1452. ),
  1453. TP_fast_assign(
  1454. WIPHY_ASSIGN;
  1455. NETDEV_ASSIGN;
  1456. __entry->changed = changed;
  1457. ),
  1458. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", parameters changed: %u",
  1459. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->changed)
  1460. );
  1461. TRACE_EVENT(rdev_set_cqm_rssi_config,
  1462. TP_PROTO(struct wiphy *wiphy,
  1463. struct net_device *netdev, s32 rssi_thold,
  1464. u32 rssi_hyst),
  1465. TP_ARGS(wiphy, netdev, rssi_thold, rssi_hyst),
  1466. TP_STRUCT__entry(
  1467. WIPHY_ENTRY
  1468. NETDEV_ENTRY
  1469. __field(s32, rssi_thold)
  1470. __field(u32, rssi_hyst)
  1471. ),
  1472. TP_fast_assign(
  1473. WIPHY_ASSIGN;
  1474. NETDEV_ASSIGN;
  1475. __entry->rssi_thold = rssi_thold;
  1476. __entry->rssi_hyst = rssi_hyst;
  1477. ),
  1478. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT
  1479. ", rssi_thold: %d, rssi_hyst: %u ",
  1480. WIPHY_PR_ARG, NETDEV_PR_ARG,
  1481. __entry->rssi_thold, __entry->rssi_hyst)
  1482. );
  1483. TRACE_EVENT(rdev_set_cqm_rssi_range_config,
  1484. TP_PROTO(struct wiphy *wiphy,
  1485. struct net_device *netdev, s32 low, s32 high),
  1486. TP_ARGS(wiphy, netdev, low, high),
  1487. TP_STRUCT__entry(
  1488. WIPHY_ENTRY
  1489. NETDEV_ENTRY
  1490. __field(s32, rssi_low)
  1491. __field(s32, rssi_high)
  1492. ),
  1493. TP_fast_assign(
  1494. WIPHY_ASSIGN;
  1495. NETDEV_ASSIGN;
  1496. __entry->rssi_low = low;
  1497. __entry->rssi_high = high;
  1498. ),
  1499. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT
  1500. ", range: %d - %d ",
  1501. WIPHY_PR_ARG, NETDEV_PR_ARG,
  1502. __entry->rssi_low, __entry->rssi_high)
  1503. );
  1504. TRACE_EVENT(rdev_set_cqm_txe_config,
  1505. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u32 rate,
  1506. u32 pkts, u32 intvl),
  1507. TP_ARGS(wiphy, netdev, rate, pkts, intvl),
  1508. TP_STRUCT__entry(
  1509. WIPHY_ENTRY
  1510. NETDEV_ENTRY
  1511. __field(u32, rate)
  1512. __field(u32, pkts)
  1513. __field(u32, intvl)
  1514. ),
  1515. TP_fast_assign(
  1516. WIPHY_ASSIGN;
  1517. NETDEV_ASSIGN;
  1518. __entry->rate = rate;
  1519. __entry->pkts = pkts;
  1520. __entry->intvl = intvl;
  1521. ),
  1522. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", rate: %u, packets: %u, interval: %u",
  1523. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->rate, __entry->pkts,
  1524. __entry->intvl)
  1525. );
  1526. TRACE_EVENT(rdev_disconnect,
  1527. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1528. u16 reason_code),
  1529. TP_ARGS(wiphy, netdev, reason_code),
  1530. TP_STRUCT__entry(
  1531. WIPHY_ENTRY
  1532. NETDEV_ENTRY
  1533. __field(u16, reason_code)
  1534. ),
  1535. TP_fast_assign(
  1536. WIPHY_ASSIGN;
  1537. NETDEV_ASSIGN;
  1538. __entry->reason_code = reason_code;
  1539. ),
  1540. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", reason code: %u", WIPHY_PR_ARG,
  1541. NETDEV_PR_ARG, __entry->reason_code)
  1542. );
  1543. TRACE_EVENT(rdev_join_ibss,
  1544. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1545. struct cfg80211_ibss_params *params),
  1546. TP_ARGS(wiphy, netdev, params),
  1547. TP_STRUCT__entry(
  1548. WIPHY_ENTRY
  1549. NETDEV_ENTRY
  1550. MAC_ENTRY(bssid)
  1551. __array(char, ssid, IEEE80211_MAX_SSID_LEN + 1)
  1552. ),
  1553. TP_fast_assign(
  1554. WIPHY_ASSIGN;
  1555. NETDEV_ASSIGN;
  1556. MAC_ASSIGN(bssid, params->bssid);
  1557. memset(__entry->ssid, 0, IEEE80211_MAX_SSID_LEN + 1);
  1558. memcpy(__entry->ssid, params->ssid, params->ssid_len);
  1559. ),
  1560. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM, ssid: %s",
  1561. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid, __entry->ssid)
  1562. );
  1563. TRACE_EVENT(rdev_join_ocb,
  1564. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1565. const struct ocb_setup *setup),
  1566. TP_ARGS(wiphy, netdev, setup),
  1567. TP_STRUCT__entry(
  1568. WIPHY_ENTRY
  1569. NETDEV_ENTRY
  1570. ),
  1571. TP_fast_assign(
  1572. WIPHY_ASSIGN;
  1573. NETDEV_ASSIGN;
  1574. ),
  1575. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT,
  1576. WIPHY_PR_ARG, NETDEV_PR_ARG)
  1577. );
  1578. TRACE_EVENT(rdev_set_wiphy_params,
  1579. TP_PROTO(struct wiphy *wiphy, u32 changed),
  1580. TP_ARGS(wiphy, changed),
  1581. TP_STRUCT__entry(
  1582. WIPHY_ENTRY
  1583. __field(u32, changed)
  1584. ),
  1585. TP_fast_assign(
  1586. WIPHY_ASSIGN;
  1587. __entry->changed = changed;
  1588. ),
  1589. TP_printk(WIPHY_PR_FMT ", changed: %u",
  1590. WIPHY_PR_ARG, __entry->changed)
  1591. );
  1592. DEFINE_EVENT(wiphy_wdev_evt, rdev_get_tx_power,
  1593. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  1594. TP_ARGS(wiphy, wdev)
  1595. );
  1596. TRACE_EVENT(rdev_set_tx_power,
  1597. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  1598. enum nl80211_tx_power_setting type, int mbm),
  1599. TP_ARGS(wiphy, wdev, type, mbm),
  1600. TP_STRUCT__entry(
  1601. WIPHY_ENTRY
  1602. WDEV_ENTRY
  1603. __field(enum nl80211_tx_power_setting, type)
  1604. __field(int, mbm)
  1605. ),
  1606. TP_fast_assign(
  1607. WIPHY_ASSIGN;
  1608. WDEV_ASSIGN;
  1609. __entry->type = type;
  1610. __entry->mbm = mbm;
  1611. ),
  1612. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", type: %u, mbm: %d",
  1613. WIPHY_PR_ARG, WDEV_PR_ARG,__entry->type, __entry->mbm)
  1614. );
  1615. TRACE_EVENT(rdev_return_int_int,
  1616. TP_PROTO(struct wiphy *wiphy, int func_ret, int func_fill),
  1617. TP_ARGS(wiphy, func_ret, func_fill),
  1618. TP_STRUCT__entry(
  1619. WIPHY_ENTRY
  1620. __field(int, func_ret)
  1621. __field(int, func_fill)
  1622. ),
  1623. TP_fast_assign(
  1624. WIPHY_ASSIGN;
  1625. __entry->func_ret = func_ret;
  1626. __entry->func_fill = func_fill;
  1627. ),
  1628. TP_printk(WIPHY_PR_FMT ", function returns: %d, function filled: %d",
  1629. WIPHY_PR_ARG, __entry->func_ret, __entry->func_fill)
  1630. );
  1631. #ifdef CONFIG_NL80211_TESTMODE
  1632. TRACE_EVENT(rdev_testmode_cmd,
  1633. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  1634. TP_ARGS(wiphy, wdev),
  1635. TP_STRUCT__entry(
  1636. WIPHY_ENTRY
  1637. WDEV_ENTRY
  1638. ),
  1639. TP_fast_assign(
  1640. WIPHY_ASSIGN;
  1641. WDEV_ASSIGN;
  1642. ),
  1643. TP_printk(WIPHY_PR_FMT WDEV_PR_FMT, WIPHY_PR_ARG, WDEV_PR_ARG)
  1644. );
  1645. TRACE_EVENT(rdev_testmode_dump,
  1646. TP_PROTO(struct wiphy *wiphy),
  1647. TP_ARGS(wiphy),
  1648. TP_STRUCT__entry(
  1649. WIPHY_ENTRY
  1650. ),
  1651. TP_fast_assign(
  1652. WIPHY_ASSIGN;
  1653. ),
  1654. TP_printk(WIPHY_PR_FMT, WIPHY_PR_ARG)
  1655. );
  1656. #endif /* CONFIG_NL80211_TESTMODE */
  1657. TRACE_EVENT(rdev_set_bitrate_mask,
  1658. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1659. unsigned int link_id,
  1660. const u8 *peer, const struct cfg80211_bitrate_mask *mask),
  1661. TP_ARGS(wiphy, netdev, link_id, peer, mask),
  1662. TP_STRUCT__entry(
  1663. WIPHY_ENTRY
  1664. NETDEV_ENTRY
  1665. __field(unsigned int, link_id)
  1666. MAC_ENTRY(peer)
  1667. ),
  1668. TP_fast_assign(
  1669. WIPHY_ASSIGN;
  1670. NETDEV_ASSIGN;
  1671. __entry->link_id = link_id;
  1672. MAC_ASSIGN(peer, peer);
  1673. ),
  1674. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", link_id: %d, peer: %pM",
  1675. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->link_id,
  1676. __entry->peer)
  1677. );
  1678. TRACE_EVENT(rdev_update_mgmt_frame_registrations,
  1679. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  1680. struct mgmt_frame_regs *upd),
  1681. TP_ARGS(wiphy, wdev, upd),
  1682. TP_STRUCT__entry(
  1683. WIPHY_ENTRY
  1684. WDEV_ENTRY
  1685. __field(u16, global_stypes)
  1686. __field(u16, interface_stypes)
  1687. ),
  1688. TP_fast_assign(
  1689. WIPHY_ASSIGN;
  1690. WDEV_ASSIGN;
  1691. __entry->global_stypes = upd->global_stypes;
  1692. __entry->interface_stypes = upd->interface_stypes;
  1693. ),
  1694. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", global: 0x%.2x, intf: 0x%.2x",
  1695. WIPHY_PR_ARG, WDEV_PR_ARG,
  1696. __entry->global_stypes, __entry->interface_stypes)
  1697. );
  1698. TRACE_EVENT(rdev_return_int_tx_rx,
  1699. TP_PROTO(struct wiphy *wiphy, int ret, u32 tx, u32 rx),
  1700. TP_ARGS(wiphy, ret, tx, rx),
  1701. TP_STRUCT__entry(
  1702. WIPHY_ENTRY
  1703. __field(int, ret)
  1704. __field(u32, tx)
  1705. __field(u32, rx)
  1706. ),
  1707. TP_fast_assign(
  1708. WIPHY_ASSIGN;
  1709. __entry->ret = ret;
  1710. __entry->tx = tx;
  1711. __entry->rx = rx;
  1712. ),
  1713. TP_printk(WIPHY_PR_FMT ", returned %d, tx: %u, rx: %u",
  1714. WIPHY_PR_ARG, __entry->ret, __entry->tx, __entry->rx)
  1715. );
  1716. TRACE_EVENT(rdev_return_void_tx_rx,
  1717. TP_PROTO(struct wiphy *wiphy, u32 tx, u32 tx_max,
  1718. u32 rx, u32 rx_max),
  1719. TP_ARGS(wiphy, tx, tx_max, rx, rx_max),
  1720. TP_STRUCT__entry(
  1721. WIPHY_ENTRY
  1722. __field(u32, tx)
  1723. __field(u32, tx_max)
  1724. __field(u32, rx)
  1725. __field(u32, rx_max)
  1726. ),
  1727. TP_fast_assign(
  1728. WIPHY_ASSIGN;
  1729. __entry->tx = tx;
  1730. __entry->tx_max = tx_max;
  1731. __entry->rx = rx;
  1732. __entry->rx_max = rx_max;
  1733. ),
  1734. TP_printk(WIPHY_PR_FMT ", tx: %u, tx_max: %u, rx: %u, rx_max: %u ",
  1735. WIPHY_PR_ARG, __entry->tx, __entry->tx_max, __entry->rx,
  1736. __entry->rx_max)
  1737. );
  1738. DECLARE_EVENT_CLASS(tx_rx_evt,
  1739. TP_PROTO(struct wiphy *wiphy, u32 tx, u32 rx),
  1740. TP_ARGS(wiphy, tx, rx),
  1741. TP_STRUCT__entry(
  1742. WIPHY_ENTRY
  1743. __field(u32, tx)
  1744. __field(u32, rx)
  1745. ),
  1746. TP_fast_assign(
  1747. WIPHY_ASSIGN;
  1748. __entry->tx = tx;
  1749. __entry->rx = rx;
  1750. ),
  1751. TP_printk(WIPHY_PR_FMT ", tx: %u, rx: %u ",
  1752. WIPHY_PR_ARG, __entry->tx, __entry->rx)
  1753. );
  1754. DEFINE_EVENT(tx_rx_evt, rdev_set_antenna,
  1755. TP_PROTO(struct wiphy *wiphy, u32 tx, u32 rx),
  1756. TP_ARGS(wiphy, tx, rx)
  1757. );
  1758. DECLARE_EVENT_CLASS(wiphy_netdev_id_evt,
  1759. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u64 id),
  1760. TP_ARGS(wiphy, netdev, id),
  1761. TP_STRUCT__entry(
  1762. WIPHY_ENTRY
  1763. NETDEV_ENTRY
  1764. __field(u64, id)
  1765. ),
  1766. TP_fast_assign(
  1767. WIPHY_ASSIGN;
  1768. NETDEV_ASSIGN;
  1769. __entry->id = id;
  1770. ),
  1771. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", id: %llu",
  1772. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->id)
  1773. );
  1774. DEFINE_EVENT(wiphy_netdev_id_evt, rdev_sched_scan_start,
  1775. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u64 id),
  1776. TP_ARGS(wiphy, netdev, id)
  1777. );
  1778. DEFINE_EVENT(wiphy_netdev_id_evt, rdev_sched_scan_stop,
  1779. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, u64 id),
  1780. TP_ARGS(wiphy, netdev, id)
  1781. );
  1782. TRACE_EVENT(rdev_tdls_mgmt,
  1783. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1784. u8 *peer, int link_id, u8 action_code, u8 dialog_token,
  1785. u16 status_code, u32 peer_capability,
  1786. bool initiator, const u8 *buf, size_t len),
  1787. TP_ARGS(wiphy, netdev, peer, link_id, action_code, dialog_token,
  1788. status_code, peer_capability, initiator, buf, len),
  1789. TP_STRUCT__entry(
  1790. WIPHY_ENTRY
  1791. NETDEV_ENTRY
  1792. MAC_ENTRY(peer)
  1793. __field(int, link_id)
  1794. __field(u8, action_code)
  1795. __field(u8, dialog_token)
  1796. __field(u16, status_code)
  1797. __field(u32, peer_capability)
  1798. __field(bool, initiator)
  1799. __dynamic_array(u8, buf, len)
  1800. ),
  1801. TP_fast_assign(
  1802. WIPHY_ASSIGN;
  1803. NETDEV_ASSIGN;
  1804. MAC_ASSIGN(peer, peer);
  1805. __entry->link_id = link_id;
  1806. __entry->action_code = action_code;
  1807. __entry->dialog_token = dialog_token;
  1808. __entry->status_code = status_code;
  1809. __entry->peer_capability = peer_capability;
  1810. __entry->initiator = initiator;
  1811. memcpy(__get_dynamic_array(buf), buf, len);
  1812. ),
  1813. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM"
  1814. ", link_id: %d, action_code: %u "
  1815. "dialog_token: %u, status_code: %u, peer_capability: %u "
  1816. "initiator: %s buf: %#.2x ",
  1817. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer,
  1818. __entry->link_id, __entry->action_code, __entry->dialog_token,
  1819. __entry->status_code, __entry->peer_capability,
  1820. BOOL_TO_STR(__entry->initiator),
  1821. ((u8 *)__get_dynamic_array(buf))[0])
  1822. );
  1823. TRACE_EVENT(rdev_dump_survey,
  1824. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, int _idx),
  1825. TP_ARGS(wiphy, netdev, _idx),
  1826. TP_STRUCT__entry(
  1827. WIPHY_ENTRY
  1828. NETDEV_ENTRY
  1829. __field(int, idx)
  1830. ),
  1831. TP_fast_assign(
  1832. WIPHY_ASSIGN;
  1833. NETDEV_ASSIGN;
  1834. __entry->idx = _idx;
  1835. ),
  1836. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", index: %d",
  1837. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->idx)
  1838. );
  1839. TRACE_EVENT(rdev_return_int_survey_info,
  1840. TP_PROTO(struct wiphy *wiphy, int ret, struct survey_info *info),
  1841. TP_ARGS(wiphy, ret, info),
  1842. TP_STRUCT__entry(
  1843. WIPHY_ENTRY
  1844. CHAN_ENTRY
  1845. __field(int, ret)
  1846. __field(u64, time)
  1847. __field(u64, time_busy)
  1848. __field(u64, time_ext_busy)
  1849. __field(u64, time_rx)
  1850. __field(u64, time_tx)
  1851. __field(u64, time_scan)
  1852. __field(u32, filled)
  1853. __field(s8, noise)
  1854. ),
  1855. TP_fast_assign(
  1856. WIPHY_ASSIGN;
  1857. CHAN_ASSIGN(info->channel);
  1858. __entry->ret = ret;
  1859. __entry->time = info->time;
  1860. __entry->time_busy = info->time_busy;
  1861. __entry->time_ext_busy = info->time_ext_busy;
  1862. __entry->time_rx = info->time_rx;
  1863. __entry->time_tx = info->time_tx;
  1864. __entry->time_scan = info->time_scan;
  1865. __entry->filled = info->filled;
  1866. __entry->noise = info->noise;
  1867. ),
  1868. TP_printk(WIPHY_PR_FMT ", returned: %d, " CHAN_PR_FMT
  1869. ", channel time: %llu, channel time busy: %llu, "
  1870. "channel time extension busy: %llu, channel time rx: %llu, "
  1871. "channel time tx: %llu, scan time: %llu, filled: %u, noise: %d",
  1872. WIPHY_PR_ARG, __entry->ret, CHAN_PR_ARG,
  1873. __entry->time, __entry->time_busy,
  1874. __entry->time_ext_busy, __entry->time_rx,
  1875. __entry->time_tx, __entry->time_scan,
  1876. __entry->filled, __entry->noise)
  1877. );
  1878. TRACE_EVENT(rdev_tdls_oper,
  1879. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1880. u8 *peer, enum nl80211_tdls_operation oper),
  1881. TP_ARGS(wiphy, netdev, peer, oper),
  1882. TP_STRUCT__entry(
  1883. WIPHY_ENTRY
  1884. NETDEV_ENTRY
  1885. MAC_ENTRY(peer)
  1886. __field(enum nl80211_tdls_operation, oper)
  1887. ),
  1888. TP_fast_assign(
  1889. WIPHY_ASSIGN;
  1890. NETDEV_ASSIGN;
  1891. MAC_ASSIGN(peer, peer);
  1892. __entry->oper = oper;
  1893. ),
  1894. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM, oper: %d",
  1895. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer, __entry->oper)
  1896. );
  1897. DECLARE_EVENT_CLASS(rdev_pmksa,
  1898. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1899. struct cfg80211_pmksa *pmksa),
  1900. TP_ARGS(wiphy, netdev, pmksa),
  1901. TP_STRUCT__entry(
  1902. WIPHY_ENTRY
  1903. NETDEV_ENTRY
  1904. MAC_ENTRY(bssid)
  1905. ),
  1906. TP_fast_assign(
  1907. WIPHY_ASSIGN;
  1908. NETDEV_ASSIGN;
  1909. MAC_ASSIGN(bssid, pmksa->bssid);
  1910. ),
  1911. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM",
  1912. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid)
  1913. );
  1914. TRACE_EVENT(rdev_probe_client,
  1915. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1916. const u8 *peer),
  1917. TP_ARGS(wiphy, netdev, peer),
  1918. TP_STRUCT__entry(
  1919. WIPHY_ENTRY
  1920. NETDEV_ENTRY
  1921. MAC_ENTRY(peer)
  1922. ),
  1923. TP_fast_assign(
  1924. WIPHY_ASSIGN;
  1925. NETDEV_ASSIGN;
  1926. MAC_ASSIGN(peer, peer);
  1927. ),
  1928. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM",
  1929. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer)
  1930. );
  1931. DEFINE_EVENT(rdev_pmksa, rdev_set_pmksa,
  1932. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1933. struct cfg80211_pmksa *pmksa),
  1934. TP_ARGS(wiphy, netdev, pmksa)
  1935. );
  1936. DEFINE_EVENT(rdev_pmksa, rdev_del_pmksa,
  1937. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  1938. struct cfg80211_pmksa *pmksa),
  1939. TP_ARGS(wiphy, netdev, pmksa)
  1940. );
  1941. TRACE_EVENT(rdev_remain_on_channel,
  1942. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  1943. struct ieee80211_channel *chan,
  1944. unsigned int duration),
  1945. TP_ARGS(wiphy, wdev, chan, duration),
  1946. TP_STRUCT__entry(
  1947. WIPHY_ENTRY
  1948. WDEV_ENTRY
  1949. CHAN_ENTRY
  1950. __field(unsigned int, duration)
  1951. ),
  1952. TP_fast_assign(
  1953. WIPHY_ASSIGN;
  1954. WDEV_ASSIGN;
  1955. CHAN_ASSIGN(chan);
  1956. __entry->duration = duration;
  1957. ),
  1958. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", " CHAN_PR_FMT ", duration: %u",
  1959. WIPHY_PR_ARG, WDEV_PR_ARG, CHAN_PR_ARG, __entry->duration)
  1960. );
  1961. TRACE_EVENT(rdev_return_int_cookie,
  1962. TP_PROTO(struct wiphy *wiphy, int ret, u64 cookie),
  1963. TP_ARGS(wiphy, ret, cookie),
  1964. TP_STRUCT__entry(
  1965. WIPHY_ENTRY
  1966. __field(int, ret)
  1967. __field(u64, cookie)
  1968. ),
  1969. TP_fast_assign(
  1970. WIPHY_ASSIGN;
  1971. __entry->ret = ret;
  1972. __entry->cookie = cookie;
  1973. ),
  1974. TP_printk(WIPHY_PR_FMT ", returned %d, cookie: %llu",
  1975. WIPHY_PR_ARG, __entry->ret, __entry->cookie)
  1976. );
  1977. TRACE_EVENT(rdev_cancel_remain_on_channel,
  1978. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev, u64 cookie),
  1979. TP_ARGS(wiphy, wdev, cookie),
  1980. TP_STRUCT__entry(
  1981. WIPHY_ENTRY
  1982. WDEV_ENTRY
  1983. __field(u64, cookie)
  1984. ),
  1985. TP_fast_assign(
  1986. WIPHY_ASSIGN;
  1987. WDEV_ASSIGN;
  1988. __entry->cookie = cookie;
  1989. ),
  1990. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", cookie: %llu",
  1991. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->cookie)
  1992. );
  1993. TRACE_EVENT(rdev_mgmt_tx,
  1994. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  1995. struct cfg80211_mgmt_tx_params *params),
  1996. TP_ARGS(wiphy, wdev, params),
  1997. TP_STRUCT__entry(
  1998. WIPHY_ENTRY
  1999. WDEV_ENTRY
  2000. CHAN_ENTRY
  2001. __field(bool, offchan)
  2002. __field(unsigned int, wait)
  2003. __field(bool, no_cck)
  2004. __field(bool, dont_wait_for_ack)
  2005. ),
  2006. TP_fast_assign(
  2007. WIPHY_ASSIGN;
  2008. WDEV_ASSIGN;
  2009. CHAN_ASSIGN(params->chan);
  2010. __entry->offchan = params->offchan;
  2011. __entry->wait = params->wait;
  2012. __entry->no_cck = params->no_cck;
  2013. __entry->dont_wait_for_ack = params->dont_wait_for_ack;
  2014. ),
  2015. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", " CHAN_PR_FMT ", offchan: %s,"
  2016. " wait: %u, no cck: %s, dont wait for ack: %s",
  2017. WIPHY_PR_ARG, WDEV_PR_ARG, CHAN_PR_ARG,
  2018. BOOL_TO_STR(__entry->offchan), __entry->wait,
  2019. BOOL_TO_STR(__entry->no_cck),
  2020. BOOL_TO_STR(__entry->dont_wait_for_ack))
  2021. );
  2022. TRACE_EVENT(rdev_tx_control_port,
  2023. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2024. const u8 *buf, size_t len, const u8 *dest, __be16 proto,
  2025. bool unencrypted, int link_id),
  2026. TP_ARGS(wiphy, netdev, buf, len, dest, proto, unencrypted, link_id),
  2027. TP_STRUCT__entry(
  2028. WIPHY_ENTRY
  2029. NETDEV_ENTRY
  2030. MAC_ENTRY(dest)
  2031. __field(__be16, proto)
  2032. __field(bool, unencrypted)
  2033. __field(int, link_id)
  2034. ),
  2035. TP_fast_assign(
  2036. WIPHY_ASSIGN;
  2037. NETDEV_ASSIGN;
  2038. MAC_ASSIGN(dest, dest);
  2039. __entry->proto = proto;
  2040. __entry->unencrypted = unencrypted;
  2041. __entry->link_id = link_id;
  2042. ),
  2043. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM,"
  2044. " proto: 0x%x, unencrypted: %s, link: %d",
  2045. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->dest,
  2046. be16_to_cpu(__entry->proto),
  2047. BOOL_TO_STR(__entry->unencrypted),
  2048. __entry->link_id)
  2049. );
  2050. TRACE_EVENT(rdev_set_noack_map,
  2051. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2052. u16 noack_map),
  2053. TP_ARGS(wiphy, netdev, noack_map),
  2054. TP_STRUCT__entry(
  2055. WIPHY_ENTRY
  2056. NETDEV_ENTRY
  2057. __field(u16, noack_map)
  2058. ),
  2059. TP_fast_assign(
  2060. WIPHY_ASSIGN;
  2061. NETDEV_ASSIGN;
  2062. __entry->noack_map = noack_map;
  2063. ),
  2064. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", noack_map: %u",
  2065. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->noack_map)
  2066. );
  2067. DECLARE_EVENT_CLASS(wiphy_wdev_link_evt,
  2068. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2069. unsigned int link_id),
  2070. TP_ARGS(wiphy, wdev, link_id),
  2071. TP_STRUCT__entry(
  2072. WIPHY_ENTRY
  2073. WDEV_ENTRY
  2074. __field(unsigned int, link_id)
  2075. ),
  2076. TP_fast_assign(
  2077. WIPHY_ASSIGN;
  2078. WDEV_ASSIGN;
  2079. __entry->link_id = link_id;
  2080. ),
  2081. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", link_id: %u",
  2082. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->link_id)
  2083. );
  2084. DEFINE_EVENT(wiphy_wdev_link_evt, rdev_get_channel,
  2085. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2086. unsigned int link_id),
  2087. TP_ARGS(wiphy, wdev, link_id)
  2088. );
  2089. TRACE_EVENT(rdev_return_chandef,
  2090. TP_PROTO(struct wiphy *wiphy, int ret,
  2091. struct cfg80211_chan_def *chandef),
  2092. TP_ARGS(wiphy, ret, chandef),
  2093. TP_STRUCT__entry(
  2094. WIPHY_ENTRY
  2095. __field(int, ret)
  2096. CHAN_DEF_ENTRY
  2097. ),
  2098. TP_fast_assign(
  2099. WIPHY_ASSIGN;
  2100. if (ret == 0)
  2101. CHAN_DEF_ASSIGN(chandef);
  2102. else
  2103. CHAN_DEF_ASSIGN((struct cfg80211_chan_def *)NULL);
  2104. __entry->ret = ret;
  2105. ),
  2106. TP_printk(WIPHY_PR_FMT ", " CHAN_DEF_PR_FMT ", ret: %d",
  2107. WIPHY_PR_ARG, CHAN_DEF_PR_ARG, __entry->ret)
  2108. );
  2109. DEFINE_EVENT(wiphy_wdev_evt, rdev_start_p2p_device,
  2110. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  2111. TP_ARGS(wiphy, wdev)
  2112. );
  2113. DEFINE_EVENT(wiphy_wdev_evt, rdev_stop_p2p_device,
  2114. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  2115. TP_ARGS(wiphy, wdev)
  2116. );
  2117. TRACE_EVENT(rdev_start_nan,
  2118. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2119. struct cfg80211_nan_conf *conf),
  2120. TP_ARGS(wiphy, wdev, conf),
  2121. TP_STRUCT__entry(
  2122. WIPHY_ENTRY
  2123. WDEV_ENTRY
  2124. __field(u8, master_pref)
  2125. __field(u8, bands)
  2126. ),
  2127. TP_fast_assign(
  2128. WIPHY_ASSIGN;
  2129. WDEV_ASSIGN;
  2130. __entry->master_pref = conf->master_pref;
  2131. __entry->bands = conf->bands;
  2132. ),
  2133. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT
  2134. ", master preference: %u, bands: 0x%0x",
  2135. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->master_pref,
  2136. __entry->bands)
  2137. );
  2138. TRACE_EVENT(rdev_nan_change_conf,
  2139. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2140. struct cfg80211_nan_conf *conf, u32 changes),
  2141. TP_ARGS(wiphy, wdev, conf, changes),
  2142. TP_STRUCT__entry(
  2143. WIPHY_ENTRY
  2144. WDEV_ENTRY
  2145. __field(u8, master_pref)
  2146. __field(u8, bands)
  2147. __field(u32, changes)
  2148. ),
  2149. TP_fast_assign(
  2150. WIPHY_ASSIGN;
  2151. WDEV_ASSIGN;
  2152. __entry->master_pref = conf->master_pref;
  2153. __entry->bands = conf->bands;
  2154. __entry->changes = changes;
  2155. ),
  2156. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT
  2157. ", master preference: %u, bands: 0x%0x, changes: %x",
  2158. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->master_pref,
  2159. __entry->bands, __entry->changes)
  2160. );
  2161. DEFINE_EVENT(wiphy_wdev_evt, rdev_stop_nan,
  2162. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  2163. TP_ARGS(wiphy, wdev)
  2164. );
  2165. TRACE_EVENT(rdev_add_nan_func,
  2166. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2167. const struct cfg80211_nan_func *func),
  2168. TP_ARGS(wiphy, wdev, func),
  2169. TP_STRUCT__entry(
  2170. WIPHY_ENTRY
  2171. WDEV_ENTRY
  2172. __field(u8, func_type)
  2173. __field(u64, cookie)
  2174. ),
  2175. TP_fast_assign(
  2176. WIPHY_ASSIGN;
  2177. WDEV_ASSIGN;
  2178. __entry->func_type = func->type;
  2179. __entry->cookie = func->cookie
  2180. ),
  2181. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", type=%u, cookie=%llu",
  2182. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->func_type,
  2183. __entry->cookie)
  2184. );
  2185. TRACE_EVENT(rdev_del_nan_func,
  2186. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2187. u64 cookie),
  2188. TP_ARGS(wiphy, wdev, cookie),
  2189. TP_STRUCT__entry(
  2190. WIPHY_ENTRY
  2191. WDEV_ENTRY
  2192. __field(u64, cookie)
  2193. ),
  2194. TP_fast_assign(
  2195. WIPHY_ASSIGN;
  2196. WDEV_ASSIGN;
  2197. __entry->cookie = cookie;
  2198. ),
  2199. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", cookie=%llu",
  2200. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->cookie)
  2201. );
  2202. TRACE_EVENT(rdev_set_mac_acl,
  2203. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2204. struct cfg80211_acl_data *params),
  2205. TP_ARGS(wiphy, netdev, params),
  2206. TP_STRUCT__entry(
  2207. WIPHY_ENTRY
  2208. NETDEV_ENTRY
  2209. __field(u32, acl_policy)
  2210. ),
  2211. TP_fast_assign(
  2212. WIPHY_ASSIGN;
  2213. NETDEV_ASSIGN;
  2214. __entry->acl_policy = params->acl_policy;
  2215. ),
  2216. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", acl policy: %d",
  2217. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->acl_policy)
  2218. );
  2219. TRACE_EVENT(rdev_update_ft_ies,
  2220. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2221. struct cfg80211_update_ft_ies_params *ftie),
  2222. TP_ARGS(wiphy, netdev, ftie),
  2223. TP_STRUCT__entry(
  2224. WIPHY_ENTRY
  2225. NETDEV_ENTRY
  2226. __field(u16, md)
  2227. __dynamic_array(u8, ie, ftie->ie_len)
  2228. ),
  2229. TP_fast_assign(
  2230. WIPHY_ASSIGN;
  2231. NETDEV_ASSIGN;
  2232. __entry->md = ftie->md;
  2233. memcpy(__get_dynamic_array(ie), ftie->ie, ftie->ie_len);
  2234. ),
  2235. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", md: 0x%x",
  2236. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->md)
  2237. );
  2238. TRACE_EVENT(rdev_crit_proto_start,
  2239. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2240. enum nl80211_crit_proto_id protocol, u16 duration),
  2241. TP_ARGS(wiphy, wdev, protocol, duration),
  2242. TP_STRUCT__entry(
  2243. WIPHY_ENTRY
  2244. WDEV_ENTRY
  2245. __field(u16, proto)
  2246. __field(u16, duration)
  2247. ),
  2248. TP_fast_assign(
  2249. WIPHY_ASSIGN;
  2250. WDEV_ASSIGN;
  2251. __entry->proto = protocol;
  2252. __entry->duration = duration;
  2253. ),
  2254. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", proto=%x, duration=%u",
  2255. WIPHY_PR_ARG, WDEV_PR_ARG, __entry->proto, __entry->duration)
  2256. );
  2257. TRACE_EVENT(rdev_crit_proto_stop,
  2258. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  2259. TP_ARGS(wiphy, wdev),
  2260. TP_STRUCT__entry(
  2261. WIPHY_ENTRY
  2262. WDEV_ENTRY
  2263. ),
  2264. TP_fast_assign(
  2265. WIPHY_ASSIGN;
  2266. WDEV_ASSIGN;
  2267. ),
  2268. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT,
  2269. WIPHY_PR_ARG, WDEV_PR_ARG)
  2270. );
  2271. TRACE_EVENT(rdev_channel_switch,
  2272. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2273. struct cfg80211_csa_settings *params),
  2274. TP_ARGS(wiphy, netdev, params),
  2275. TP_STRUCT__entry(
  2276. WIPHY_ENTRY
  2277. NETDEV_ENTRY
  2278. CHAN_DEF_ENTRY
  2279. __field(bool, radar_required)
  2280. __field(bool, block_tx)
  2281. __field(u8, count)
  2282. __dynamic_array(u16, bcn_ofs, params->n_counter_offsets_beacon)
  2283. __dynamic_array(u16, pres_ofs, params->n_counter_offsets_presp)
  2284. __field(u8, link_id)
  2285. ),
  2286. TP_fast_assign(
  2287. WIPHY_ASSIGN;
  2288. NETDEV_ASSIGN;
  2289. CHAN_DEF_ASSIGN(&params->chandef);
  2290. __entry->radar_required = params->radar_required;
  2291. __entry->block_tx = params->block_tx;
  2292. __entry->count = params->count;
  2293. memcpy(__get_dynamic_array(bcn_ofs),
  2294. params->counter_offsets_beacon,
  2295. params->n_counter_offsets_beacon * sizeof(u16));
  2296. /* probe response offsets are optional */
  2297. if (params->n_counter_offsets_presp)
  2298. memcpy(__get_dynamic_array(pres_ofs),
  2299. params->counter_offsets_presp,
  2300. params->n_counter_offsets_presp * sizeof(u16));
  2301. __entry->link_id = params->link_id;
  2302. ),
  2303. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", " CHAN_DEF_PR_FMT
  2304. ", block_tx: %d, count: %u, radar_required: %d, link_id: %d",
  2305. WIPHY_PR_ARG, NETDEV_PR_ARG, CHAN_DEF_PR_ARG,
  2306. __entry->block_tx, __entry->count, __entry->radar_required,
  2307. __entry->link_id)
  2308. );
  2309. TRACE_EVENT(rdev_set_qos_map,
  2310. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2311. struct cfg80211_qos_map *qos_map),
  2312. TP_ARGS(wiphy, netdev, qos_map),
  2313. TP_STRUCT__entry(
  2314. WIPHY_ENTRY
  2315. NETDEV_ENTRY
  2316. QOS_MAP_ENTRY
  2317. ),
  2318. TP_fast_assign(
  2319. WIPHY_ASSIGN;
  2320. NETDEV_ASSIGN;
  2321. QOS_MAP_ASSIGN(qos_map);
  2322. ),
  2323. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", num_des: %u",
  2324. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->num_des)
  2325. );
  2326. TRACE_EVENT(rdev_set_ap_chanwidth,
  2327. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2328. unsigned int link_id,
  2329. struct cfg80211_chan_def *chandef),
  2330. TP_ARGS(wiphy, netdev, link_id, chandef),
  2331. TP_STRUCT__entry(
  2332. WIPHY_ENTRY
  2333. NETDEV_ENTRY
  2334. CHAN_DEF_ENTRY
  2335. __field(unsigned int, link_id)
  2336. ),
  2337. TP_fast_assign(
  2338. WIPHY_ASSIGN;
  2339. NETDEV_ASSIGN;
  2340. CHAN_DEF_ASSIGN(chandef);
  2341. __entry->link_id = link_id;
  2342. ),
  2343. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", " CHAN_DEF_PR_FMT ", link:%d",
  2344. WIPHY_PR_ARG, NETDEV_PR_ARG, CHAN_DEF_PR_ARG,
  2345. __entry->link_id)
  2346. );
  2347. TRACE_EVENT(rdev_add_tx_ts,
  2348. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2349. u8 tsid, const u8 *peer, u8 user_prio, u16 admitted_time),
  2350. TP_ARGS(wiphy, netdev, tsid, peer, user_prio, admitted_time),
  2351. TP_STRUCT__entry(
  2352. WIPHY_ENTRY
  2353. NETDEV_ENTRY
  2354. MAC_ENTRY(peer)
  2355. __field(u8, tsid)
  2356. __field(u8, user_prio)
  2357. __field(u16, admitted_time)
  2358. ),
  2359. TP_fast_assign(
  2360. WIPHY_ASSIGN;
  2361. NETDEV_ASSIGN;
  2362. MAC_ASSIGN(peer, peer);
  2363. __entry->tsid = tsid;
  2364. __entry->user_prio = user_prio;
  2365. __entry->admitted_time = admitted_time;
  2366. ),
  2367. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM, TSID %d, UP %d, time %d",
  2368. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer,
  2369. __entry->tsid, __entry->user_prio, __entry->admitted_time)
  2370. );
  2371. TRACE_EVENT(rdev_del_tx_ts,
  2372. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2373. u8 tsid, const u8 *peer),
  2374. TP_ARGS(wiphy, netdev, tsid, peer),
  2375. TP_STRUCT__entry(
  2376. WIPHY_ENTRY
  2377. NETDEV_ENTRY
  2378. MAC_ENTRY(peer)
  2379. __field(u8, tsid)
  2380. ),
  2381. TP_fast_assign(
  2382. WIPHY_ASSIGN;
  2383. NETDEV_ASSIGN;
  2384. MAC_ASSIGN(peer, peer);
  2385. __entry->tsid = tsid;
  2386. ),
  2387. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM, TSID %d",
  2388. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer, __entry->tsid)
  2389. );
  2390. TRACE_EVENT(rdev_tdls_channel_switch,
  2391. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2392. const u8 *addr, u8 oper_class,
  2393. struct cfg80211_chan_def *chandef),
  2394. TP_ARGS(wiphy, netdev, addr, oper_class, chandef),
  2395. TP_STRUCT__entry(
  2396. WIPHY_ENTRY
  2397. NETDEV_ENTRY
  2398. MAC_ENTRY(addr)
  2399. __field(u8, oper_class)
  2400. CHAN_DEF_ENTRY
  2401. ),
  2402. TP_fast_assign(
  2403. WIPHY_ASSIGN;
  2404. NETDEV_ASSIGN;
  2405. MAC_ASSIGN(addr, addr);
  2406. CHAN_DEF_ASSIGN(chandef);
  2407. ),
  2408. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM"
  2409. " oper class %d, " CHAN_DEF_PR_FMT,
  2410. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->addr,
  2411. __entry->oper_class, CHAN_DEF_PR_ARG)
  2412. );
  2413. TRACE_EVENT(rdev_tdls_cancel_channel_switch,
  2414. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2415. const u8 *addr),
  2416. TP_ARGS(wiphy, netdev, addr),
  2417. TP_STRUCT__entry(
  2418. WIPHY_ENTRY
  2419. NETDEV_ENTRY
  2420. MAC_ENTRY(addr)
  2421. ),
  2422. TP_fast_assign(
  2423. WIPHY_ASSIGN;
  2424. NETDEV_ASSIGN;
  2425. MAC_ASSIGN(addr, addr);
  2426. ),
  2427. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM",
  2428. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->addr)
  2429. );
  2430. TRACE_EVENT(rdev_set_pmk,
  2431. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2432. struct cfg80211_pmk_conf *pmk_conf),
  2433. TP_ARGS(wiphy, netdev, pmk_conf),
  2434. TP_STRUCT__entry(
  2435. WIPHY_ENTRY
  2436. NETDEV_ENTRY
  2437. MAC_ENTRY(aa)
  2438. __field(u8, pmk_len)
  2439. __field(u8, pmk_r0_name_len)
  2440. __dynamic_array(u8, pmk, pmk_conf->pmk_len)
  2441. __dynamic_array(u8, pmk_r0_name, WLAN_PMK_NAME_LEN)
  2442. ),
  2443. TP_fast_assign(
  2444. WIPHY_ASSIGN;
  2445. NETDEV_ASSIGN;
  2446. MAC_ASSIGN(aa, pmk_conf->aa);
  2447. __entry->pmk_len = pmk_conf->pmk_len;
  2448. __entry->pmk_r0_name_len =
  2449. pmk_conf->pmk_r0_name ? WLAN_PMK_NAME_LEN : 0;
  2450. memcpy(__get_dynamic_array(pmk), pmk_conf->pmk,
  2451. pmk_conf->pmk_len);
  2452. memcpy(__get_dynamic_array(pmk_r0_name), pmk_conf->pmk_r0_name,
  2453. pmk_conf->pmk_r0_name ? WLAN_PMK_NAME_LEN : 0);
  2454. ),
  2455. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM"
  2456. "pmk_len=%u, pmk: %s pmk_r0_name: %s", WIPHY_PR_ARG,
  2457. NETDEV_PR_ARG, __entry->aa, __entry->pmk_len,
  2458. __print_array(__get_dynamic_array(pmk),
  2459. __get_dynamic_array_len(pmk), 1),
  2460. __entry->pmk_r0_name_len ?
  2461. __print_array(__get_dynamic_array(pmk_r0_name),
  2462. __get_dynamic_array_len(pmk_r0_name), 1) : "")
  2463. );
  2464. TRACE_EVENT(rdev_del_pmk,
  2465. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, const u8 *aa),
  2466. TP_ARGS(wiphy, netdev, aa),
  2467. TP_STRUCT__entry(
  2468. WIPHY_ENTRY
  2469. NETDEV_ENTRY
  2470. MAC_ENTRY(aa)
  2471. ),
  2472. TP_fast_assign(
  2473. WIPHY_ASSIGN;
  2474. NETDEV_ASSIGN;
  2475. MAC_ASSIGN(aa, aa);
  2476. ),
  2477. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM",
  2478. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->aa)
  2479. );
  2480. TRACE_EVENT(rdev_external_auth,
  2481. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2482. struct cfg80211_external_auth_params *params),
  2483. TP_ARGS(wiphy, netdev, params),
  2484. TP_STRUCT__entry(WIPHY_ENTRY
  2485. NETDEV_ENTRY
  2486. MAC_ENTRY(bssid)
  2487. __array(u8, ssid, IEEE80211_MAX_SSID_LEN + 1)
  2488. __field(u16, status)
  2489. MAC_ENTRY(mld_addr)
  2490. ),
  2491. TP_fast_assign(WIPHY_ASSIGN;
  2492. NETDEV_ASSIGN;
  2493. MAC_ASSIGN(bssid, params->bssid);
  2494. memset(__entry->ssid, 0, IEEE80211_MAX_SSID_LEN + 1);
  2495. memcpy(__entry->ssid, params->ssid.ssid,
  2496. params->ssid.ssid_len);
  2497. __entry->status = params->status;
  2498. MAC_ASSIGN(mld_addr, params->mld_addr);
  2499. ),
  2500. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", bssid: %pM"
  2501. ", ssid: %s, status: %u, mld_addr: %pM",
  2502. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->bssid,
  2503. __entry->ssid, __entry->status, __entry->mld_addr)
  2504. );
  2505. TRACE_EVENT(rdev_start_radar_detection,
  2506. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2507. struct cfg80211_chan_def *chandef,
  2508. u32 cac_time_ms, int link_id),
  2509. TP_ARGS(wiphy, netdev, chandef, cac_time_ms, link_id),
  2510. TP_STRUCT__entry(
  2511. WIPHY_ENTRY
  2512. NETDEV_ENTRY
  2513. CHAN_DEF_ENTRY
  2514. __field(u32, cac_time_ms)
  2515. __field(int, link_id)
  2516. ),
  2517. TP_fast_assign(
  2518. WIPHY_ASSIGN;
  2519. NETDEV_ASSIGN;
  2520. CHAN_DEF_ASSIGN(chandef);
  2521. __entry->cac_time_ms = cac_time_ms;
  2522. __entry->link_id = link_id;
  2523. ),
  2524. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", " CHAN_DEF_PR_FMT
  2525. ", cac_time_ms=%u, link_id=%d",
  2526. WIPHY_PR_ARG, NETDEV_PR_ARG, CHAN_DEF_PR_ARG,
  2527. __entry->cac_time_ms, __entry->link_id)
  2528. );
  2529. TRACE_EVENT(rdev_set_mcast_rate,
  2530. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2531. int *mcast_rate),
  2532. TP_ARGS(wiphy, netdev, mcast_rate),
  2533. TP_STRUCT__entry(
  2534. WIPHY_ENTRY
  2535. NETDEV_ENTRY
  2536. __array(int, mcast_rate, NUM_NL80211_BANDS)
  2537. ),
  2538. TP_fast_assign(
  2539. WIPHY_ASSIGN;
  2540. NETDEV_ASSIGN;
  2541. memcpy(__entry->mcast_rate, mcast_rate,
  2542. sizeof(int) * NUM_NL80211_BANDS);
  2543. ),
  2544. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", "
  2545. "mcast_rates [2.4GHz=0x%x, 5.2GHz=0x%x, 6GHz=0x%x, 60GHz=0x%x]",
  2546. WIPHY_PR_ARG, NETDEV_PR_ARG,
  2547. __entry->mcast_rate[NL80211_BAND_2GHZ],
  2548. __entry->mcast_rate[NL80211_BAND_5GHZ],
  2549. __entry->mcast_rate[NL80211_BAND_6GHZ],
  2550. __entry->mcast_rate[NL80211_BAND_60GHZ])
  2551. );
  2552. TRACE_EVENT(rdev_set_coalesce,
  2553. TP_PROTO(struct wiphy *wiphy, struct cfg80211_coalesce *coalesce),
  2554. TP_ARGS(wiphy, coalesce),
  2555. TP_STRUCT__entry(
  2556. WIPHY_ENTRY
  2557. __field(int, n_rules)
  2558. ),
  2559. TP_fast_assign(
  2560. WIPHY_ASSIGN;
  2561. __entry->n_rules = coalesce ? coalesce->n_rules : 0;
  2562. ),
  2563. TP_printk(WIPHY_PR_FMT ", n_rules=%d",
  2564. WIPHY_PR_ARG, __entry->n_rules)
  2565. );
  2566. DEFINE_EVENT(wiphy_wdev_evt, rdev_abort_scan,
  2567. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  2568. TP_ARGS(wiphy, wdev)
  2569. );
  2570. TRACE_EVENT(rdev_set_multicast_to_unicast,
  2571. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2572. const bool enabled),
  2573. TP_ARGS(wiphy, netdev, enabled),
  2574. TP_STRUCT__entry(
  2575. WIPHY_ENTRY
  2576. NETDEV_ENTRY
  2577. __field(bool, enabled)
  2578. ),
  2579. TP_fast_assign(
  2580. WIPHY_ASSIGN;
  2581. NETDEV_ASSIGN;
  2582. __entry->enabled = enabled;
  2583. ),
  2584. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", unicast: %s",
  2585. WIPHY_PR_ARG, NETDEV_PR_ARG,
  2586. BOOL_TO_STR(__entry->enabled))
  2587. );
  2588. DEFINE_EVENT(wiphy_wdev_evt, rdev_get_txq_stats,
  2589. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  2590. TP_ARGS(wiphy, wdev)
  2591. );
  2592. TRACE_EVENT(rdev_get_ftm_responder_stats,
  2593. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2594. struct cfg80211_ftm_responder_stats *ftm_stats),
  2595. TP_ARGS(wiphy, netdev, ftm_stats),
  2596. TP_STRUCT__entry(
  2597. WIPHY_ENTRY
  2598. NETDEV_ENTRY
  2599. __field(u64, timestamp)
  2600. __field(u32, success_num)
  2601. __field(u32, partial_num)
  2602. __field(u32, failed_num)
  2603. __field(u32, asap_num)
  2604. __field(u32, non_asap_num)
  2605. __field(u64, duration)
  2606. __field(u32, unknown_triggers)
  2607. __field(u32, reschedule)
  2608. __field(u32, out_of_window)
  2609. ),
  2610. TP_fast_assign(
  2611. WIPHY_ASSIGN;
  2612. NETDEV_ASSIGN;
  2613. __entry->success_num = ftm_stats->success_num;
  2614. __entry->partial_num = ftm_stats->partial_num;
  2615. __entry->failed_num = ftm_stats->failed_num;
  2616. __entry->asap_num = ftm_stats->asap_num;
  2617. __entry->non_asap_num = ftm_stats->non_asap_num;
  2618. __entry->duration = ftm_stats->total_duration_ms;
  2619. __entry->unknown_triggers = ftm_stats->unknown_triggers_num;
  2620. __entry->reschedule = ftm_stats->reschedule_requests_num;
  2621. __entry->out_of_window = ftm_stats->out_of_window_triggers_num;
  2622. ),
  2623. TP_printk(WIPHY_PR_FMT "Ftm responder stats: success %u, partial %u, "
  2624. "failed %u, asap %u, non asap %u, total duration %llu, unknown "
  2625. "triggers %u, rescheduled %u, out of window %u", WIPHY_PR_ARG,
  2626. __entry->success_num, __entry->partial_num, __entry->failed_num,
  2627. __entry->asap_num, __entry->non_asap_num, __entry->duration,
  2628. __entry->unknown_triggers, __entry->reschedule,
  2629. __entry->out_of_window)
  2630. );
  2631. DEFINE_EVENT(wiphy_wdev_cookie_evt, rdev_start_pmsr,
  2632. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev, u64 cookie),
  2633. TP_ARGS(wiphy, wdev, cookie)
  2634. );
  2635. DEFINE_EVENT(wiphy_wdev_cookie_evt, rdev_abort_pmsr,
  2636. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev, u64 cookie),
  2637. TP_ARGS(wiphy, wdev, cookie)
  2638. );
  2639. TRACE_EVENT(rdev_set_fils_aad,
  2640. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2641. struct cfg80211_fils_aad *fils_aad),
  2642. TP_ARGS(wiphy, netdev, fils_aad),
  2643. TP_STRUCT__entry(WIPHY_ENTRY
  2644. NETDEV_ENTRY
  2645. __array(u8, macaddr, ETH_ALEN)
  2646. __field(u8, kek_len)
  2647. ),
  2648. TP_fast_assign(WIPHY_ASSIGN;
  2649. NETDEV_ASSIGN;
  2650. FILS_AAD_ASSIGN(fils_aad);
  2651. ),
  2652. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", " FILS_AAD_PR_FMT,
  2653. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->macaddr,
  2654. __entry->kek_len)
  2655. );
  2656. TRACE_EVENT(rdev_update_owe_info,
  2657. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2658. struct cfg80211_update_owe_info *owe_info),
  2659. TP_ARGS(wiphy, netdev, owe_info),
  2660. TP_STRUCT__entry(WIPHY_ENTRY
  2661. NETDEV_ENTRY
  2662. MAC_ENTRY(peer)
  2663. __field(u16, status)
  2664. __dynamic_array(u8, ie, owe_info->ie_len)),
  2665. TP_fast_assign(WIPHY_ASSIGN;
  2666. NETDEV_ASSIGN;
  2667. MAC_ASSIGN(peer, owe_info->peer);
  2668. __entry->status = owe_info->status;
  2669. memcpy(__get_dynamic_array(ie),
  2670. owe_info->ie, owe_info->ie_len);),
  2671. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", peer: %pM"
  2672. " status %d", WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer,
  2673. __entry->status)
  2674. );
  2675. TRACE_EVENT(rdev_probe_mesh_link,
  2676. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2677. const u8 *dest, const u8 *buf, size_t len),
  2678. TP_ARGS(wiphy, netdev, dest, buf, len),
  2679. TP_STRUCT__entry(
  2680. WIPHY_ENTRY
  2681. NETDEV_ENTRY
  2682. MAC_ENTRY(dest)
  2683. ),
  2684. TP_fast_assign(
  2685. WIPHY_ASSIGN;
  2686. NETDEV_ASSIGN;
  2687. MAC_ASSIGN(dest, dest);
  2688. ),
  2689. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", %pM",
  2690. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->dest)
  2691. );
  2692. TRACE_EVENT(rdev_set_tid_config,
  2693. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2694. struct cfg80211_tid_config *tid_conf),
  2695. TP_ARGS(wiphy, netdev, tid_conf),
  2696. TP_STRUCT__entry(
  2697. WIPHY_ENTRY
  2698. NETDEV_ENTRY
  2699. MAC_ENTRY(peer)
  2700. ),
  2701. TP_fast_assign(
  2702. WIPHY_ASSIGN;
  2703. NETDEV_ASSIGN;
  2704. MAC_ASSIGN(peer, tid_conf->peer);
  2705. ),
  2706. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", peer: %pM",
  2707. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer)
  2708. );
  2709. TRACE_EVENT(rdev_reset_tid_config,
  2710. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2711. const u8 *peer, u8 tids),
  2712. TP_ARGS(wiphy, netdev, peer, tids),
  2713. TP_STRUCT__entry(
  2714. WIPHY_ENTRY
  2715. NETDEV_ENTRY
  2716. MAC_ENTRY(peer)
  2717. __field(u8, tids)
  2718. ),
  2719. TP_fast_assign(
  2720. WIPHY_ASSIGN;
  2721. NETDEV_ASSIGN;
  2722. MAC_ASSIGN(peer, peer);
  2723. __entry->tids = tids;
  2724. ),
  2725. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", peer: %pM, tids: 0x%x",
  2726. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer, __entry->tids)
  2727. );
  2728. TRACE_EVENT(rdev_set_sar_specs,
  2729. TP_PROTO(struct wiphy *wiphy, struct cfg80211_sar_specs *sar),
  2730. TP_ARGS(wiphy, sar),
  2731. TP_STRUCT__entry(
  2732. WIPHY_ENTRY
  2733. __field(u16, type)
  2734. __field(u16, num)
  2735. ),
  2736. TP_fast_assign(
  2737. WIPHY_ASSIGN;
  2738. __entry->type = sar->type;
  2739. __entry->num = sar->num_sub_specs;
  2740. ),
  2741. TP_printk(WIPHY_PR_FMT ", Set type:%d, num_specs:%d",
  2742. WIPHY_PR_ARG, __entry->type, __entry->num)
  2743. );
  2744. TRACE_EVENT(rdev_color_change,
  2745. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2746. struct cfg80211_color_change_settings *params),
  2747. TP_ARGS(wiphy, netdev, params),
  2748. TP_STRUCT__entry(
  2749. WIPHY_ENTRY
  2750. NETDEV_ENTRY
  2751. __field(u8, count)
  2752. __field(u16, bcn_ofs)
  2753. __field(u16, pres_ofs)
  2754. __field(u8, link_id)
  2755. ),
  2756. TP_fast_assign(
  2757. WIPHY_ASSIGN;
  2758. NETDEV_ASSIGN;
  2759. __entry->count = params->count;
  2760. __entry->bcn_ofs = params->counter_offset_beacon;
  2761. __entry->pres_ofs = params->counter_offset_presp;
  2762. __entry->link_id = params->link_id;
  2763. ),
  2764. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT
  2765. ", count: %u, link_id: %d",
  2766. WIPHY_PR_ARG, NETDEV_PR_ARG,
  2767. __entry->count, __entry->link_id)
  2768. );
  2769. TRACE_EVENT(rdev_set_radar_background,
  2770. TP_PROTO(struct wiphy *wiphy, struct cfg80211_chan_def *chandef),
  2771. TP_ARGS(wiphy, chandef),
  2772. TP_STRUCT__entry(
  2773. WIPHY_ENTRY
  2774. CHAN_DEF_ENTRY
  2775. ),
  2776. TP_fast_assign(
  2777. WIPHY_ASSIGN;
  2778. CHAN_DEF_ASSIGN(chandef)
  2779. ),
  2780. TP_printk(WIPHY_PR_FMT ", " CHAN_DEF_PR_FMT,
  2781. WIPHY_PR_ARG, CHAN_DEF_PR_ARG)
  2782. );
  2783. DEFINE_EVENT(wiphy_wdev_link_evt, rdev_add_intf_link,
  2784. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2785. unsigned int link_id),
  2786. TP_ARGS(wiphy, wdev, link_id)
  2787. );
  2788. DEFINE_EVENT(wiphy_wdev_link_evt, rdev_del_intf_link,
  2789. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  2790. unsigned int link_id),
  2791. TP_ARGS(wiphy, wdev, link_id)
  2792. );
  2793. TRACE_EVENT(rdev_del_link_station,
  2794. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2795. struct link_station_del_parameters *params),
  2796. TP_ARGS(wiphy, netdev, params),
  2797. TP_STRUCT__entry(
  2798. WIPHY_ENTRY
  2799. NETDEV_ENTRY
  2800. __array(u8, mld_mac, 6)
  2801. __field(u32, link_id)
  2802. ),
  2803. TP_fast_assign(
  2804. WIPHY_ASSIGN;
  2805. NETDEV_ASSIGN;
  2806. memset(__entry->mld_mac, 0, 6);
  2807. if (params->mld_mac)
  2808. memcpy(__entry->mld_mac, params->mld_mac, 6);
  2809. __entry->link_id = params->link_id;
  2810. ),
  2811. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", station mac: %pM"
  2812. ", link id: %u",
  2813. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->mld_mac,
  2814. __entry->link_id)
  2815. );
  2816. TRACE_EVENT(rdev_set_hw_timestamp,
  2817. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2818. struct cfg80211_set_hw_timestamp *hwts),
  2819. TP_ARGS(wiphy, netdev, hwts),
  2820. TP_STRUCT__entry(
  2821. WIPHY_ENTRY
  2822. NETDEV_ENTRY
  2823. MAC_ENTRY(macaddr)
  2824. __field(bool, enable)
  2825. ),
  2826. TP_fast_assign(
  2827. WIPHY_ASSIGN;
  2828. NETDEV_ASSIGN;
  2829. MAC_ASSIGN(macaddr, hwts->macaddr);
  2830. __entry->enable = hwts->enable;
  2831. ),
  2832. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", mac %pM, enable: %u",
  2833. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->macaddr,
  2834. __entry->enable)
  2835. );
  2836. TRACE_EVENT(rdev_set_ttlm,
  2837. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  2838. struct cfg80211_ttlm_params *params),
  2839. TP_ARGS(wiphy, netdev, params),
  2840. TP_STRUCT__entry(
  2841. WIPHY_ENTRY
  2842. NETDEV_ENTRY
  2843. __array(u8, dlink, sizeof(u16) * 8)
  2844. __array(u8, ulink, sizeof(u16) * 8)
  2845. ),
  2846. TP_fast_assign(
  2847. WIPHY_ASSIGN;
  2848. NETDEV_ASSIGN;
  2849. memcpy(__entry->dlink, params->dlink, sizeof(params->dlink));
  2850. memcpy(__entry->ulink, params->ulink, sizeof(params->ulink));
  2851. ),
  2852. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT,
  2853. WIPHY_PR_ARG, NETDEV_PR_ARG)
  2854. );
  2855. /*************************************************************
  2856. * cfg80211 exported functions traces *
  2857. *************************************************************/
  2858. TRACE_EVENT(cfg80211_return_bool,
  2859. TP_PROTO(bool ret),
  2860. TP_ARGS(ret),
  2861. TP_STRUCT__entry(
  2862. __field(bool, ret)
  2863. ),
  2864. TP_fast_assign(
  2865. __entry->ret = ret;
  2866. ),
  2867. TP_printk("returned %s", BOOL_TO_STR(__entry->ret))
  2868. );
  2869. DECLARE_EVENT_CLASS(cfg80211_netdev_mac_evt,
  2870. TP_PROTO(struct net_device *netdev, const u8 *macaddr),
  2871. TP_ARGS(netdev, macaddr),
  2872. TP_STRUCT__entry(
  2873. NETDEV_ENTRY
  2874. MAC_ENTRY(macaddr)
  2875. ),
  2876. TP_fast_assign(
  2877. NETDEV_ASSIGN;
  2878. MAC_ASSIGN(macaddr, macaddr);
  2879. ),
  2880. TP_printk(NETDEV_PR_FMT ", mac: %pM",
  2881. NETDEV_PR_ARG, __entry->macaddr)
  2882. );
  2883. DEFINE_EVENT(cfg80211_netdev_mac_evt, cfg80211_notify_new_peer_candidate,
  2884. TP_PROTO(struct net_device *netdev, const u8 *macaddr),
  2885. TP_ARGS(netdev, macaddr)
  2886. );
  2887. DECLARE_EVENT_CLASS(netdev_evt_only,
  2888. TP_PROTO(struct net_device *netdev),
  2889. TP_ARGS(netdev),
  2890. TP_STRUCT__entry(
  2891. NETDEV_ENTRY
  2892. ),
  2893. TP_fast_assign(
  2894. NETDEV_ASSIGN;
  2895. ),
  2896. TP_printk(NETDEV_PR_FMT , NETDEV_PR_ARG)
  2897. );
  2898. DEFINE_EVENT(netdev_evt_only, cfg80211_send_rx_auth,
  2899. TP_PROTO(struct net_device *netdev),
  2900. TP_ARGS(netdev)
  2901. );
  2902. TRACE_EVENT(cfg80211_send_rx_assoc,
  2903. TP_PROTO(struct net_device *netdev,
  2904. const struct cfg80211_rx_assoc_resp_data *data),
  2905. TP_ARGS(netdev, data),
  2906. TP_STRUCT__entry(
  2907. NETDEV_ENTRY
  2908. MAC_ENTRY(ap_addr)
  2909. ),
  2910. TP_fast_assign(
  2911. NETDEV_ASSIGN;
  2912. MAC_ASSIGN(ap_addr,
  2913. data->ap_mld_addr ?: data->links[0].bss->bssid);
  2914. ),
  2915. TP_printk(NETDEV_PR_FMT ", %pM",
  2916. NETDEV_PR_ARG, __entry->ap_addr)
  2917. );
  2918. DECLARE_EVENT_CLASS(netdev_frame_event,
  2919. TP_PROTO(struct net_device *netdev, const u8 *buf, int len),
  2920. TP_ARGS(netdev, buf, len),
  2921. TP_STRUCT__entry(
  2922. NETDEV_ENTRY
  2923. __dynamic_array(u8, frame, len)
  2924. ),
  2925. TP_fast_assign(
  2926. NETDEV_ASSIGN;
  2927. memcpy(__get_dynamic_array(frame), buf, len);
  2928. ),
  2929. TP_printk(NETDEV_PR_FMT ", ftype:0x%.2x",
  2930. NETDEV_PR_ARG,
  2931. le16_to_cpup((__le16 *)__get_dynamic_array(frame)))
  2932. );
  2933. DEFINE_EVENT(netdev_frame_event, cfg80211_rx_unprot_mlme_mgmt,
  2934. TP_PROTO(struct net_device *netdev, const u8 *buf, int len),
  2935. TP_ARGS(netdev, buf, len)
  2936. );
  2937. DEFINE_EVENT(netdev_frame_event, cfg80211_rx_mlme_mgmt,
  2938. TP_PROTO(struct net_device *netdev, const u8 *buf, int len),
  2939. TP_ARGS(netdev, buf, len)
  2940. );
  2941. TRACE_EVENT(cfg80211_tx_mlme_mgmt,
  2942. TP_PROTO(struct net_device *netdev, const u8 *buf, int len,
  2943. bool reconnect),
  2944. TP_ARGS(netdev, buf, len, reconnect),
  2945. TP_STRUCT__entry(
  2946. NETDEV_ENTRY
  2947. __dynamic_array(u8, frame, len)
  2948. __field(int, reconnect)
  2949. ),
  2950. TP_fast_assign(
  2951. NETDEV_ASSIGN;
  2952. memcpy(__get_dynamic_array(frame), buf, len);
  2953. __entry->reconnect = reconnect;
  2954. ),
  2955. TP_printk(NETDEV_PR_FMT ", ftype:0x%.2x reconnect:%d",
  2956. NETDEV_PR_ARG,
  2957. le16_to_cpup((__le16 *)__get_dynamic_array(frame)),
  2958. __entry->reconnect)
  2959. );
  2960. DECLARE_EVENT_CLASS(netdev_mac_evt,
  2961. TP_PROTO(struct net_device *netdev, const u8 *mac),
  2962. TP_ARGS(netdev, mac),
  2963. TP_STRUCT__entry(
  2964. NETDEV_ENTRY
  2965. MAC_ENTRY(mac)
  2966. ),
  2967. TP_fast_assign(
  2968. NETDEV_ASSIGN;
  2969. MAC_ASSIGN(mac, mac)
  2970. ),
  2971. TP_printk(NETDEV_PR_FMT ", mac: %pM",
  2972. NETDEV_PR_ARG, __entry->mac)
  2973. );
  2974. DEFINE_EVENT(netdev_mac_evt, cfg80211_send_auth_timeout,
  2975. TP_PROTO(struct net_device *netdev, const u8 *mac),
  2976. TP_ARGS(netdev, mac)
  2977. );
  2978. TRACE_EVENT(cfg80211_send_assoc_failure,
  2979. TP_PROTO(struct net_device *netdev,
  2980. struct cfg80211_assoc_failure *data),
  2981. TP_ARGS(netdev, data),
  2982. TP_STRUCT__entry(
  2983. NETDEV_ENTRY
  2984. MAC_ENTRY(ap_addr)
  2985. __field(bool, timeout)
  2986. ),
  2987. TP_fast_assign(
  2988. NETDEV_ASSIGN;
  2989. MAC_ASSIGN(ap_addr, data->ap_mld_addr ?: data->bss[0]->bssid);
  2990. __entry->timeout = data->timeout;
  2991. ),
  2992. TP_printk(NETDEV_PR_FMT ", mac: %pM, timeout: %d",
  2993. NETDEV_PR_ARG, __entry->ap_addr, __entry->timeout)
  2994. );
  2995. TRACE_EVENT(cfg80211_michael_mic_failure,
  2996. TP_PROTO(struct net_device *netdev, const u8 *addr,
  2997. enum nl80211_key_type key_type, int key_id, const u8 *tsc),
  2998. TP_ARGS(netdev, addr, key_type, key_id, tsc),
  2999. TP_STRUCT__entry(
  3000. NETDEV_ENTRY
  3001. MAC_ENTRY(addr)
  3002. __field(enum nl80211_key_type, key_type)
  3003. __field(int, key_id)
  3004. __array(u8, tsc, 6)
  3005. ),
  3006. TP_fast_assign(
  3007. NETDEV_ASSIGN;
  3008. MAC_ASSIGN(addr, addr);
  3009. __entry->key_type = key_type;
  3010. __entry->key_id = key_id;
  3011. if (tsc)
  3012. memcpy(__entry->tsc, tsc, 6);
  3013. ),
  3014. TP_printk(NETDEV_PR_FMT ", %pM, key type: %d, key id: %d, tsc: %pm",
  3015. NETDEV_PR_ARG, __entry->addr, __entry->key_type,
  3016. __entry->key_id, __entry->tsc)
  3017. );
  3018. TRACE_EVENT(cfg80211_ready_on_channel,
  3019. TP_PROTO(struct wireless_dev *wdev, u64 cookie,
  3020. struct ieee80211_channel *chan,
  3021. unsigned int duration),
  3022. TP_ARGS(wdev, cookie, chan, duration),
  3023. TP_STRUCT__entry(
  3024. WDEV_ENTRY
  3025. __field(u64, cookie)
  3026. CHAN_ENTRY
  3027. __field(unsigned int, duration)
  3028. ),
  3029. TP_fast_assign(
  3030. WDEV_ASSIGN;
  3031. __entry->cookie = cookie;
  3032. CHAN_ASSIGN(chan);
  3033. __entry->duration = duration;
  3034. ),
  3035. TP_printk(WDEV_PR_FMT ", cookie: %llu, " CHAN_PR_FMT ", duration: %u",
  3036. WDEV_PR_ARG, __entry->cookie, CHAN_PR_ARG,
  3037. __entry->duration)
  3038. );
  3039. TRACE_EVENT(cfg80211_ready_on_channel_expired,
  3040. TP_PROTO(struct wireless_dev *wdev, u64 cookie,
  3041. struct ieee80211_channel *chan),
  3042. TP_ARGS(wdev, cookie, chan),
  3043. TP_STRUCT__entry(
  3044. WDEV_ENTRY
  3045. __field(u64, cookie)
  3046. CHAN_ENTRY
  3047. ),
  3048. TP_fast_assign(
  3049. WDEV_ASSIGN;
  3050. __entry->cookie = cookie;
  3051. CHAN_ASSIGN(chan);
  3052. ),
  3053. TP_printk(WDEV_PR_FMT ", cookie: %llu, " CHAN_PR_FMT,
  3054. WDEV_PR_ARG, __entry->cookie, CHAN_PR_ARG)
  3055. );
  3056. TRACE_EVENT(cfg80211_tx_mgmt_expired,
  3057. TP_PROTO(struct wireless_dev *wdev, u64 cookie,
  3058. struct ieee80211_channel *chan),
  3059. TP_ARGS(wdev, cookie, chan),
  3060. TP_STRUCT__entry(
  3061. WDEV_ENTRY
  3062. __field(u64, cookie)
  3063. CHAN_ENTRY
  3064. ),
  3065. TP_fast_assign(
  3066. WDEV_ASSIGN;
  3067. __entry->cookie = cookie;
  3068. CHAN_ASSIGN(chan);
  3069. ),
  3070. TP_printk(WDEV_PR_FMT ", cookie: %llu, " CHAN_PR_FMT,
  3071. WDEV_PR_ARG, __entry->cookie, CHAN_PR_ARG)
  3072. );
  3073. TRACE_EVENT(cfg80211_new_sta,
  3074. TP_PROTO(struct net_device *netdev, const u8 *mac_addr,
  3075. struct station_info *sinfo),
  3076. TP_ARGS(netdev, mac_addr, sinfo),
  3077. TP_STRUCT__entry(
  3078. NETDEV_ENTRY
  3079. MAC_ENTRY(mac_addr)
  3080. SINFO_ENTRY
  3081. ),
  3082. TP_fast_assign(
  3083. NETDEV_ASSIGN;
  3084. MAC_ASSIGN(mac_addr, mac_addr);
  3085. SINFO_ASSIGN;
  3086. ),
  3087. TP_printk(NETDEV_PR_FMT ", %pM",
  3088. NETDEV_PR_ARG, __entry->mac_addr)
  3089. );
  3090. DEFINE_EVENT(cfg80211_netdev_mac_evt, cfg80211_del_sta,
  3091. TP_PROTO(struct net_device *netdev, const u8 *macaddr),
  3092. TP_ARGS(netdev, macaddr)
  3093. );
  3094. TRACE_EVENT(cfg80211_rx_mgmt,
  3095. TP_PROTO(struct wireless_dev *wdev, struct cfg80211_rx_info *info),
  3096. TP_ARGS(wdev, info),
  3097. TP_STRUCT__entry(
  3098. WDEV_ENTRY
  3099. __field(int, freq)
  3100. __field(int, sig_dbm)
  3101. ),
  3102. TP_fast_assign(
  3103. WDEV_ASSIGN;
  3104. __entry->freq = info->freq;
  3105. __entry->sig_dbm = info->sig_dbm;
  3106. ),
  3107. TP_printk(WDEV_PR_FMT ", freq: "KHZ_F", sig dbm: %d",
  3108. WDEV_PR_ARG, PR_KHZ(__entry->freq), __entry->sig_dbm)
  3109. );
  3110. TRACE_EVENT(cfg80211_mgmt_tx_status,
  3111. TP_PROTO(struct wireless_dev *wdev, u64 cookie, bool ack),
  3112. TP_ARGS(wdev, cookie, ack),
  3113. TP_STRUCT__entry(
  3114. WDEV_ENTRY
  3115. __field(u64, cookie)
  3116. __field(bool, ack)
  3117. ),
  3118. TP_fast_assign(
  3119. WDEV_ASSIGN;
  3120. __entry->cookie = cookie;
  3121. __entry->ack = ack;
  3122. ),
  3123. TP_printk(WDEV_PR_FMT", cookie: %llu, ack: %s",
  3124. WDEV_PR_ARG, __entry->cookie, BOOL_TO_STR(__entry->ack))
  3125. );
  3126. TRACE_EVENT(cfg80211_control_port_tx_status,
  3127. TP_PROTO(struct wireless_dev *wdev, u64 cookie, bool ack),
  3128. TP_ARGS(wdev, cookie, ack),
  3129. TP_STRUCT__entry(
  3130. WDEV_ENTRY
  3131. __field(u64, cookie)
  3132. __field(bool, ack)
  3133. ),
  3134. TP_fast_assign(
  3135. WDEV_ASSIGN;
  3136. __entry->cookie = cookie;
  3137. __entry->ack = ack;
  3138. ),
  3139. TP_printk(WDEV_PR_FMT", cookie: %llu, ack: %s",
  3140. WDEV_PR_ARG, __entry->cookie, BOOL_TO_STR(__entry->ack))
  3141. );
  3142. TRACE_EVENT(cfg80211_rx_control_port,
  3143. TP_PROTO(struct net_device *netdev, struct sk_buff *skb,
  3144. bool unencrypted, int link_id),
  3145. TP_ARGS(netdev, skb, unencrypted, link_id),
  3146. TP_STRUCT__entry(
  3147. NETDEV_ENTRY
  3148. __field(int, len)
  3149. MAC_ENTRY(from)
  3150. __field(u16, proto)
  3151. __field(bool, unencrypted)
  3152. __field(int, link_id)
  3153. ),
  3154. TP_fast_assign(
  3155. NETDEV_ASSIGN;
  3156. __entry->len = skb->len;
  3157. MAC_ASSIGN(from, eth_hdr(skb)->h_source);
  3158. __entry->proto = be16_to_cpu(skb->protocol);
  3159. __entry->unencrypted = unencrypted;
  3160. __entry->link_id = link_id;
  3161. ),
  3162. TP_printk(NETDEV_PR_FMT ", len=%d, %pM, proto: 0x%x, unencrypted: %s, link: %d",
  3163. NETDEV_PR_ARG, __entry->len, __entry->from,
  3164. __entry->proto, BOOL_TO_STR(__entry->unencrypted),
  3165. __entry->link_id)
  3166. );
  3167. TRACE_EVENT(cfg80211_cqm_rssi_notify,
  3168. TP_PROTO(struct net_device *netdev,
  3169. enum nl80211_cqm_rssi_threshold_event rssi_event,
  3170. s32 rssi_level),
  3171. TP_ARGS(netdev, rssi_event, rssi_level),
  3172. TP_STRUCT__entry(
  3173. NETDEV_ENTRY
  3174. __field(enum nl80211_cqm_rssi_threshold_event, rssi_event)
  3175. __field(s32, rssi_level)
  3176. ),
  3177. TP_fast_assign(
  3178. NETDEV_ASSIGN;
  3179. __entry->rssi_event = rssi_event;
  3180. __entry->rssi_level = rssi_level;
  3181. ),
  3182. TP_printk(NETDEV_PR_FMT ", rssi event: %d, level: %d",
  3183. NETDEV_PR_ARG, __entry->rssi_event, __entry->rssi_level)
  3184. );
  3185. TRACE_EVENT(cfg80211_reg_can_beacon,
  3186. TP_PROTO(struct wiphy *wiphy, struct cfg80211_chan_def *chandef,
  3187. enum nl80211_iftype iftype, u32 prohibited_flags,
  3188. u32 permitting_flags),
  3189. TP_ARGS(wiphy, chandef, iftype, prohibited_flags, permitting_flags),
  3190. TP_STRUCT__entry(
  3191. WIPHY_ENTRY
  3192. CHAN_DEF_ENTRY
  3193. __field(enum nl80211_iftype, iftype)
  3194. __field(u32, prohibited_flags)
  3195. __field(u32, permitting_flags)
  3196. ),
  3197. TP_fast_assign(
  3198. WIPHY_ASSIGN;
  3199. CHAN_DEF_ASSIGN(chandef);
  3200. __entry->iftype = iftype;
  3201. __entry->prohibited_flags = prohibited_flags;
  3202. __entry->permitting_flags = permitting_flags;
  3203. ),
  3204. TP_printk(WIPHY_PR_FMT ", " CHAN_DEF_PR_FMT ", iftype=%d prohibited_flags=0x%x permitting_flags=0x%x",
  3205. WIPHY_PR_ARG, CHAN_DEF_PR_ARG, __entry->iftype,
  3206. __entry->prohibited_flags, __entry->permitting_flags)
  3207. );
  3208. TRACE_EVENT(cfg80211_chandef_dfs_required,
  3209. TP_PROTO(struct wiphy *wiphy, struct cfg80211_chan_def *chandef),
  3210. TP_ARGS(wiphy, chandef),
  3211. TP_STRUCT__entry(
  3212. WIPHY_ENTRY
  3213. CHAN_DEF_ENTRY
  3214. ),
  3215. TP_fast_assign(
  3216. WIPHY_ASSIGN;
  3217. CHAN_DEF_ASSIGN(chandef);
  3218. ),
  3219. TP_printk(WIPHY_PR_FMT ", " CHAN_DEF_PR_FMT,
  3220. WIPHY_PR_ARG, CHAN_DEF_PR_ARG)
  3221. );
  3222. TRACE_EVENT(cfg80211_ch_switch_notify,
  3223. TP_PROTO(struct net_device *netdev,
  3224. struct cfg80211_chan_def *chandef,
  3225. unsigned int link_id),
  3226. TP_ARGS(netdev, chandef, link_id),
  3227. TP_STRUCT__entry(
  3228. NETDEV_ENTRY
  3229. CHAN_DEF_ENTRY
  3230. __field(unsigned int, link_id)
  3231. ),
  3232. TP_fast_assign(
  3233. NETDEV_ASSIGN;
  3234. CHAN_DEF_ASSIGN(chandef);
  3235. __entry->link_id = link_id;
  3236. ),
  3237. TP_printk(NETDEV_PR_FMT ", " CHAN_DEF_PR_FMT ", link:%d",
  3238. NETDEV_PR_ARG, CHAN_DEF_PR_ARG, __entry->link_id)
  3239. );
  3240. TRACE_EVENT(cfg80211_ch_switch_started_notify,
  3241. TP_PROTO(struct net_device *netdev,
  3242. struct cfg80211_chan_def *chandef,
  3243. unsigned int link_id),
  3244. TP_ARGS(netdev, chandef, link_id),
  3245. TP_STRUCT__entry(
  3246. NETDEV_ENTRY
  3247. CHAN_DEF_ENTRY
  3248. __field(unsigned int, link_id)
  3249. ),
  3250. TP_fast_assign(
  3251. NETDEV_ASSIGN;
  3252. CHAN_DEF_ASSIGN(chandef);
  3253. __entry->link_id = link_id;
  3254. ),
  3255. TP_printk(NETDEV_PR_FMT ", " CHAN_DEF_PR_FMT ", link:%d",
  3256. NETDEV_PR_ARG, CHAN_DEF_PR_ARG, __entry->link_id)
  3257. );
  3258. TRACE_EVENT(cfg80211_radar_event,
  3259. TP_PROTO(struct wiphy *wiphy, struct cfg80211_chan_def *chandef,
  3260. bool offchan),
  3261. TP_ARGS(wiphy, chandef, offchan),
  3262. TP_STRUCT__entry(
  3263. WIPHY_ENTRY
  3264. CHAN_DEF_ENTRY
  3265. __field(bool, offchan)
  3266. ),
  3267. TP_fast_assign(
  3268. WIPHY_ASSIGN;
  3269. CHAN_DEF_ASSIGN(chandef);
  3270. __entry->offchan = offchan;
  3271. ),
  3272. TP_printk(WIPHY_PR_FMT ", " CHAN_DEF_PR_FMT ", offchan %d",
  3273. WIPHY_PR_ARG, CHAN_DEF_PR_ARG, __entry->offchan)
  3274. );
  3275. TRACE_EVENT(cfg80211_cac_event,
  3276. TP_PROTO(struct net_device *netdev, enum nl80211_radar_event evt,
  3277. unsigned int link_id),
  3278. TP_ARGS(netdev, evt, link_id),
  3279. TP_STRUCT__entry(
  3280. NETDEV_ENTRY
  3281. __field(enum nl80211_radar_event, evt)
  3282. __field(unsigned int, link_id)
  3283. ),
  3284. TP_fast_assign(
  3285. NETDEV_ASSIGN;
  3286. __entry->evt = evt;
  3287. __entry->link_id = link_id;
  3288. ),
  3289. TP_printk(NETDEV_PR_FMT ", event: %d, link_id=%u",
  3290. NETDEV_PR_ARG, __entry->evt, __entry->link_id)
  3291. );
  3292. DECLARE_EVENT_CLASS(cfg80211_rx_evt,
  3293. TP_PROTO(struct net_device *netdev, const u8 *addr),
  3294. TP_ARGS(netdev, addr),
  3295. TP_STRUCT__entry(
  3296. NETDEV_ENTRY
  3297. MAC_ENTRY(addr)
  3298. ),
  3299. TP_fast_assign(
  3300. NETDEV_ASSIGN;
  3301. MAC_ASSIGN(addr, addr);
  3302. ),
  3303. TP_printk(NETDEV_PR_FMT ", %pM", NETDEV_PR_ARG, __entry->addr)
  3304. );
  3305. DEFINE_EVENT(cfg80211_rx_evt, cfg80211_rx_spurious_frame,
  3306. TP_PROTO(struct net_device *netdev, const u8 *addr),
  3307. TP_ARGS(netdev, addr)
  3308. );
  3309. DEFINE_EVENT(cfg80211_rx_evt, cfg80211_rx_unexpected_4addr_frame,
  3310. TP_PROTO(struct net_device *netdev, const u8 *addr),
  3311. TP_ARGS(netdev, addr)
  3312. );
  3313. TRACE_EVENT(cfg80211_ibss_joined,
  3314. TP_PROTO(struct net_device *netdev, const u8 *bssid,
  3315. struct ieee80211_channel *channel),
  3316. TP_ARGS(netdev, bssid, channel),
  3317. TP_STRUCT__entry(
  3318. NETDEV_ENTRY
  3319. MAC_ENTRY(bssid)
  3320. CHAN_ENTRY
  3321. ),
  3322. TP_fast_assign(
  3323. NETDEV_ASSIGN;
  3324. MAC_ASSIGN(bssid, bssid);
  3325. CHAN_ASSIGN(channel);
  3326. ),
  3327. TP_printk(NETDEV_PR_FMT ", bssid: %pM, " CHAN_PR_FMT,
  3328. NETDEV_PR_ARG, __entry->bssid, CHAN_PR_ARG)
  3329. );
  3330. TRACE_EVENT(cfg80211_probe_status,
  3331. TP_PROTO(struct net_device *netdev, const u8 *addr, u64 cookie,
  3332. bool acked),
  3333. TP_ARGS(netdev, addr, cookie, acked),
  3334. TP_STRUCT__entry(
  3335. NETDEV_ENTRY
  3336. MAC_ENTRY(addr)
  3337. __field(u64, cookie)
  3338. __field(bool, acked)
  3339. ),
  3340. TP_fast_assign(
  3341. NETDEV_ASSIGN;
  3342. MAC_ASSIGN(addr, addr);
  3343. __entry->cookie = cookie;
  3344. __entry->acked = acked;
  3345. ),
  3346. TP_printk(NETDEV_PR_FMT " addr:%pM, cookie: %llu, acked: %s",
  3347. NETDEV_PR_ARG, __entry->addr, __entry->cookie,
  3348. BOOL_TO_STR(__entry->acked))
  3349. );
  3350. TRACE_EVENT(cfg80211_cqm_pktloss_notify,
  3351. TP_PROTO(struct net_device *netdev, const u8 *peer, u32 num_packets),
  3352. TP_ARGS(netdev, peer, num_packets),
  3353. TP_STRUCT__entry(
  3354. NETDEV_ENTRY
  3355. MAC_ENTRY(peer)
  3356. __field(u32, num_packets)
  3357. ),
  3358. TP_fast_assign(
  3359. NETDEV_ASSIGN;
  3360. MAC_ASSIGN(peer, peer);
  3361. __entry->num_packets = num_packets;
  3362. ),
  3363. TP_printk(NETDEV_PR_FMT ", peer: %pM, num of lost packets: %u",
  3364. NETDEV_PR_ARG, __entry->peer, __entry->num_packets)
  3365. );
  3366. DEFINE_EVENT(cfg80211_netdev_mac_evt, cfg80211_gtk_rekey_notify,
  3367. TP_PROTO(struct net_device *netdev, const u8 *macaddr),
  3368. TP_ARGS(netdev, macaddr)
  3369. );
  3370. TRACE_EVENT(cfg80211_pmksa_candidate_notify,
  3371. TP_PROTO(struct net_device *netdev, int index, const u8 *bssid,
  3372. bool preauth),
  3373. TP_ARGS(netdev, index, bssid, preauth),
  3374. TP_STRUCT__entry(
  3375. NETDEV_ENTRY
  3376. __field(int, index)
  3377. MAC_ENTRY(bssid)
  3378. __field(bool, preauth)
  3379. ),
  3380. TP_fast_assign(
  3381. NETDEV_ASSIGN;
  3382. __entry->index = index;
  3383. MAC_ASSIGN(bssid, bssid);
  3384. __entry->preauth = preauth;
  3385. ),
  3386. TP_printk(NETDEV_PR_FMT ", index:%d, bssid: %pM, pre auth: %s",
  3387. NETDEV_PR_ARG, __entry->index, __entry->bssid,
  3388. BOOL_TO_STR(__entry->preauth))
  3389. );
  3390. TRACE_EVENT(cfg80211_report_obss_beacon,
  3391. TP_PROTO(struct wiphy *wiphy, const u8 *frame, size_t len,
  3392. int freq, int sig_dbm),
  3393. TP_ARGS(wiphy, frame, len, freq, sig_dbm),
  3394. TP_STRUCT__entry(
  3395. WIPHY_ENTRY
  3396. __field(int, freq)
  3397. __field(int, sig_dbm)
  3398. ),
  3399. TP_fast_assign(
  3400. WIPHY_ASSIGN;
  3401. __entry->freq = freq;
  3402. __entry->sig_dbm = sig_dbm;
  3403. ),
  3404. TP_printk(WIPHY_PR_FMT ", freq: "KHZ_F", sig_dbm: %d",
  3405. WIPHY_PR_ARG, PR_KHZ(__entry->freq), __entry->sig_dbm)
  3406. );
  3407. TRACE_EVENT(cfg80211_tdls_oper_request,
  3408. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev, const u8 *peer,
  3409. enum nl80211_tdls_operation oper, u16 reason_code),
  3410. TP_ARGS(wiphy, netdev, peer, oper, reason_code),
  3411. TP_STRUCT__entry(
  3412. WIPHY_ENTRY
  3413. NETDEV_ENTRY
  3414. MAC_ENTRY(peer)
  3415. __field(enum nl80211_tdls_operation, oper)
  3416. __field(u16, reason_code)
  3417. ),
  3418. TP_fast_assign(
  3419. WIPHY_ASSIGN;
  3420. NETDEV_ASSIGN;
  3421. MAC_ASSIGN(peer, peer);
  3422. __entry->oper = oper;
  3423. __entry->reason_code = reason_code;
  3424. ),
  3425. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", peer: %pM, oper: %d, reason_code %u",
  3426. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer, __entry->oper,
  3427. __entry->reason_code)
  3428. );
  3429. TRACE_EVENT(cfg80211_scan_done,
  3430. TP_PROTO(struct cfg80211_scan_request *request,
  3431. struct cfg80211_scan_info *info),
  3432. TP_ARGS(request, info),
  3433. TP_STRUCT__entry(
  3434. __field(u32, n_channels)
  3435. __dynamic_array(u8, ie, request ? request->ie_len : 0)
  3436. __array(u32, rates, NUM_NL80211_BANDS)
  3437. __field(u32, wdev_id)
  3438. MAC_ENTRY(wiphy_mac)
  3439. __field(bool, no_cck)
  3440. __field(bool, aborted)
  3441. __field(u64, scan_start_tsf)
  3442. MAC_ENTRY(tsf_bssid)
  3443. ),
  3444. TP_fast_assign(
  3445. if (request) {
  3446. memcpy(__get_dynamic_array(ie), request->ie,
  3447. request->ie_len);
  3448. memcpy(__entry->rates, request->rates,
  3449. NUM_NL80211_BANDS);
  3450. __entry->wdev_id = request->wdev ?
  3451. request->wdev->identifier : 0;
  3452. if (request->wiphy)
  3453. MAC_ASSIGN(wiphy_mac,
  3454. request->wiphy->perm_addr);
  3455. __entry->no_cck = request->no_cck;
  3456. }
  3457. if (info) {
  3458. __entry->aborted = info->aborted;
  3459. __entry->scan_start_tsf = info->scan_start_tsf;
  3460. MAC_ASSIGN(tsf_bssid, info->tsf_bssid);
  3461. }
  3462. ),
  3463. TP_printk("aborted: %s, scan start (TSF): %llu, tsf_bssid: %pM",
  3464. BOOL_TO_STR(__entry->aborted),
  3465. (unsigned long long)__entry->scan_start_tsf,
  3466. __entry->tsf_bssid)
  3467. );
  3468. DECLARE_EVENT_CLASS(wiphy_id_evt,
  3469. TP_PROTO(struct wiphy *wiphy, u64 id),
  3470. TP_ARGS(wiphy, id),
  3471. TP_STRUCT__entry(
  3472. WIPHY_ENTRY
  3473. __field(u64, id)
  3474. ),
  3475. TP_fast_assign(
  3476. WIPHY_ASSIGN;
  3477. __entry->id = id;
  3478. ),
  3479. TP_printk(WIPHY_PR_FMT ", id: %llu", WIPHY_PR_ARG, __entry->id)
  3480. );
  3481. DEFINE_EVENT(wiphy_id_evt, cfg80211_sched_scan_stopped,
  3482. TP_PROTO(struct wiphy *wiphy, u64 id),
  3483. TP_ARGS(wiphy, id)
  3484. );
  3485. DEFINE_EVENT(wiphy_id_evt, cfg80211_sched_scan_results,
  3486. TP_PROTO(struct wiphy *wiphy, u64 id),
  3487. TP_ARGS(wiphy, id)
  3488. );
  3489. TRACE_EVENT(cfg80211_get_bss,
  3490. TP_PROTO(struct wiphy *wiphy, struct ieee80211_channel *channel,
  3491. const u8 *bssid, const u8 *ssid, size_t ssid_len,
  3492. enum ieee80211_bss_type bss_type,
  3493. enum ieee80211_privacy privacy),
  3494. TP_ARGS(wiphy, channel, bssid, ssid, ssid_len, bss_type, privacy),
  3495. TP_STRUCT__entry(
  3496. WIPHY_ENTRY
  3497. CHAN_ENTRY
  3498. MAC_ENTRY(bssid)
  3499. __dynamic_array(u8, ssid, ssid_len)
  3500. __field(enum ieee80211_bss_type, bss_type)
  3501. __field(enum ieee80211_privacy, privacy)
  3502. ),
  3503. TP_fast_assign(
  3504. WIPHY_ASSIGN;
  3505. CHAN_ASSIGN(channel);
  3506. MAC_ASSIGN(bssid, bssid);
  3507. memcpy(__get_dynamic_array(ssid), ssid, ssid_len);
  3508. __entry->bss_type = bss_type;
  3509. __entry->privacy = privacy;
  3510. ),
  3511. TP_printk(WIPHY_PR_FMT ", " CHAN_PR_FMT ", %pM"
  3512. ", buf: %#.2x, bss_type: %d, privacy: %d",
  3513. WIPHY_PR_ARG, CHAN_PR_ARG, __entry->bssid,
  3514. ((u8 *)__get_dynamic_array(ssid))[0], __entry->bss_type,
  3515. __entry->privacy)
  3516. );
  3517. TRACE_EVENT(cfg80211_inform_bss_frame,
  3518. TP_PROTO(struct wiphy *wiphy, struct cfg80211_inform_bss *data,
  3519. struct ieee80211_mgmt *mgmt, size_t len),
  3520. TP_ARGS(wiphy, data, mgmt, len),
  3521. TP_STRUCT__entry(
  3522. WIPHY_ENTRY
  3523. CHAN_ENTRY
  3524. __dynamic_array(u8, mgmt, len)
  3525. __field(s32, signal)
  3526. __field(u64, ts_boottime)
  3527. __field(u64, parent_tsf)
  3528. MAC_ENTRY(parent_bssid)
  3529. ),
  3530. TP_fast_assign(
  3531. WIPHY_ASSIGN;
  3532. CHAN_ASSIGN(data->chan);
  3533. if (mgmt)
  3534. memcpy(__get_dynamic_array(mgmt), mgmt, len);
  3535. __entry->signal = data->signal;
  3536. __entry->ts_boottime = data->boottime_ns;
  3537. __entry->parent_tsf = data->parent_tsf;
  3538. MAC_ASSIGN(parent_bssid, data->parent_bssid);
  3539. ),
  3540. TP_printk(WIPHY_PR_FMT ", " CHAN_PR_FMT
  3541. "signal: %d, tsb:%llu, detect_tsf:%llu, tsf_bssid: %pM",
  3542. WIPHY_PR_ARG, CHAN_PR_ARG,
  3543. __entry->signal, (unsigned long long)__entry->ts_boottime,
  3544. (unsigned long long)__entry->parent_tsf,
  3545. __entry->parent_bssid)
  3546. );
  3547. DECLARE_EVENT_CLASS(cfg80211_bss_evt,
  3548. TP_PROTO(struct cfg80211_bss *pub),
  3549. TP_ARGS(pub),
  3550. TP_STRUCT__entry(
  3551. MAC_ENTRY(bssid)
  3552. CHAN_ENTRY
  3553. ),
  3554. TP_fast_assign(
  3555. MAC_ASSIGN(bssid, pub->bssid);
  3556. CHAN_ASSIGN(pub->channel);
  3557. ),
  3558. TP_printk("%pM, " CHAN_PR_FMT, __entry->bssid, CHAN_PR_ARG)
  3559. );
  3560. DEFINE_EVENT(cfg80211_bss_evt, cfg80211_return_bss,
  3561. TP_PROTO(struct cfg80211_bss *pub),
  3562. TP_ARGS(pub)
  3563. );
  3564. TRACE_EVENT(cfg80211_return_uint,
  3565. TP_PROTO(unsigned int ret),
  3566. TP_ARGS(ret),
  3567. TP_STRUCT__entry(
  3568. __field(unsigned int, ret)
  3569. ),
  3570. TP_fast_assign(
  3571. __entry->ret = ret;
  3572. ),
  3573. TP_printk("ret: %d", __entry->ret)
  3574. );
  3575. TRACE_EVENT(cfg80211_return_u32,
  3576. TP_PROTO(u32 ret),
  3577. TP_ARGS(ret),
  3578. TP_STRUCT__entry(
  3579. __field(u32, ret)
  3580. ),
  3581. TP_fast_assign(
  3582. __entry->ret = ret;
  3583. ),
  3584. TP_printk("ret: %u", __entry->ret)
  3585. );
  3586. TRACE_EVENT(cfg80211_report_wowlan_wakeup,
  3587. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  3588. struct cfg80211_wowlan_wakeup *wakeup),
  3589. TP_ARGS(wiphy, wdev, wakeup),
  3590. TP_STRUCT__entry(
  3591. WIPHY_ENTRY
  3592. WDEV_ENTRY
  3593. __field(bool, non_wireless)
  3594. __field(bool, disconnect)
  3595. __field(bool, magic_pkt)
  3596. __field(bool, gtk_rekey_failure)
  3597. __field(bool, eap_identity_req)
  3598. __field(bool, four_way_handshake)
  3599. __field(bool, rfkill_release)
  3600. __field(s32, pattern_idx)
  3601. __field(u32, packet_len)
  3602. __dynamic_array(u8, packet,
  3603. wakeup ? wakeup->packet_present_len : 0)
  3604. ),
  3605. TP_fast_assign(
  3606. WIPHY_ASSIGN;
  3607. WDEV_ASSIGN;
  3608. __entry->non_wireless = !wakeup;
  3609. __entry->disconnect = wakeup ? wakeup->disconnect : false;
  3610. __entry->magic_pkt = wakeup ? wakeup->magic_pkt : false;
  3611. __entry->gtk_rekey_failure = wakeup ? wakeup->gtk_rekey_failure : false;
  3612. __entry->eap_identity_req = wakeup ? wakeup->eap_identity_req : false;
  3613. __entry->four_way_handshake = wakeup ? wakeup->four_way_handshake : false;
  3614. __entry->rfkill_release = wakeup ? wakeup->rfkill_release : false;
  3615. __entry->pattern_idx = wakeup ? wakeup->pattern_idx : false;
  3616. __entry->packet_len = wakeup ? wakeup->packet_len : false;
  3617. if (wakeup && wakeup->packet && wakeup->packet_present_len)
  3618. memcpy(__get_dynamic_array(packet), wakeup->packet,
  3619. wakeup->packet_present_len);
  3620. ),
  3621. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT, WIPHY_PR_ARG, WDEV_PR_ARG)
  3622. );
  3623. TRACE_EVENT(cfg80211_ft_event,
  3624. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  3625. struct cfg80211_ft_event_params *ft_event),
  3626. TP_ARGS(wiphy, netdev, ft_event),
  3627. TP_STRUCT__entry(
  3628. WIPHY_ENTRY
  3629. NETDEV_ENTRY
  3630. __dynamic_array(u8, ies, ft_event->ies_len)
  3631. MAC_ENTRY(target_ap)
  3632. __dynamic_array(u8, ric_ies, ft_event->ric_ies_len)
  3633. ),
  3634. TP_fast_assign(
  3635. WIPHY_ASSIGN;
  3636. NETDEV_ASSIGN;
  3637. if (ft_event->ies)
  3638. memcpy(__get_dynamic_array(ies), ft_event->ies,
  3639. ft_event->ies_len);
  3640. MAC_ASSIGN(target_ap, ft_event->target_ap);
  3641. if (ft_event->ric_ies)
  3642. memcpy(__get_dynamic_array(ric_ies), ft_event->ric_ies,
  3643. ft_event->ric_ies_len);
  3644. ),
  3645. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", target_ap: %pM",
  3646. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->target_ap)
  3647. );
  3648. TRACE_EVENT(cfg80211_stop_iface,
  3649. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev),
  3650. TP_ARGS(wiphy, wdev),
  3651. TP_STRUCT__entry(
  3652. WIPHY_ENTRY
  3653. WDEV_ENTRY
  3654. ),
  3655. TP_fast_assign(
  3656. WIPHY_ASSIGN;
  3657. WDEV_ASSIGN;
  3658. ),
  3659. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT,
  3660. WIPHY_PR_ARG, WDEV_PR_ARG)
  3661. );
  3662. TRACE_EVENT(cfg80211_pmsr_report,
  3663. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev,
  3664. u64 cookie, const u8 *addr),
  3665. TP_ARGS(wiphy, wdev, cookie, addr),
  3666. TP_STRUCT__entry(
  3667. WIPHY_ENTRY
  3668. WDEV_ENTRY
  3669. __field(u64, cookie)
  3670. MAC_ENTRY(addr)
  3671. ),
  3672. TP_fast_assign(
  3673. WIPHY_ASSIGN;
  3674. WDEV_ASSIGN;
  3675. __entry->cookie = cookie;
  3676. MAC_ASSIGN(addr, addr);
  3677. ),
  3678. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", cookie:%lld, %pM",
  3679. WIPHY_PR_ARG, WDEV_PR_ARG,
  3680. (unsigned long long)__entry->cookie,
  3681. __entry->addr)
  3682. );
  3683. TRACE_EVENT(cfg80211_pmsr_complete,
  3684. TP_PROTO(struct wiphy *wiphy, struct wireless_dev *wdev, u64 cookie),
  3685. TP_ARGS(wiphy, wdev, cookie),
  3686. TP_STRUCT__entry(
  3687. WIPHY_ENTRY
  3688. WDEV_ENTRY
  3689. __field(u64, cookie)
  3690. ),
  3691. TP_fast_assign(
  3692. WIPHY_ASSIGN;
  3693. WDEV_ASSIGN;
  3694. __entry->cookie = cookie;
  3695. ),
  3696. TP_printk(WIPHY_PR_FMT ", " WDEV_PR_FMT ", cookie:%lld",
  3697. WIPHY_PR_ARG, WDEV_PR_ARG,
  3698. (unsigned long long)__entry->cookie)
  3699. );
  3700. TRACE_EVENT(cfg80211_update_owe_info_event,
  3701. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  3702. struct cfg80211_update_owe_info *owe_info),
  3703. TP_ARGS(wiphy, netdev, owe_info),
  3704. TP_STRUCT__entry(
  3705. WIPHY_ENTRY
  3706. NETDEV_ENTRY
  3707. MAC_ENTRY(peer)
  3708. __dynamic_array(u8, ie, owe_info->ie_len)
  3709. __field(int, assoc_link_id)
  3710. MAC_ENTRY(peer_mld_addr)
  3711. ),
  3712. TP_fast_assign(
  3713. WIPHY_ASSIGN;
  3714. NETDEV_ASSIGN;
  3715. MAC_ASSIGN(peer, owe_info->peer);
  3716. memcpy(__get_dynamic_array(ie), owe_info->ie,
  3717. owe_info->ie_len);
  3718. __entry->assoc_link_id = owe_info->assoc_link_id;
  3719. MAC_ASSIGN(peer_mld_addr, owe_info->peer_mld_addr);
  3720. ),
  3721. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", peer: %pM,"
  3722. " assoc_link_id: %d, peer_mld_addr: %pM",
  3723. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->peer,
  3724. __entry->assoc_link_id, __entry->peer_mld_addr)
  3725. );
  3726. TRACE_EVENT(cfg80211_bss_color_notify,
  3727. TP_PROTO(struct net_device *netdev,
  3728. enum nl80211_commands cmd,
  3729. u8 count, u64 color_bitmap),
  3730. TP_ARGS(netdev, cmd, count, color_bitmap),
  3731. TP_STRUCT__entry(
  3732. NETDEV_ENTRY
  3733. __field(u32, cmd)
  3734. __field(u8, count)
  3735. __field(u64, color_bitmap)
  3736. ),
  3737. TP_fast_assign(
  3738. NETDEV_ASSIGN;
  3739. __entry->cmd = cmd;
  3740. __entry->count = count;
  3741. __entry->color_bitmap = color_bitmap;
  3742. ),
  3743. TP_printk(NETDEV_PR_FMT ", cmd: %x, count: %u, bitmap: %llx",
  3744. NETDEV_PR_ARG, __entry->cmd, __entry->count,
  3745. __entry->color_bitmap)
  3746. );
  3747. TRACE_EVENT(cfg80211_assoc_comeback,
  3748. TP_PROTO(struct wireless_dev *wdev, const u8 *ap_addr, u32 timeout),
  3749. TP_ARGS(wdev, ap_addr, timeout),
  3750. TP_STRUCT__entry(
  3751. WDEV_ENTRY
  3752. MAC_ENTRY(ap_addr)
  3753. __field(u32, timeout)
  3754. ),
  3755. TP_fast_assign(
  3756. WDEV_ASSIGN;
  3757. MAC_ASSIGN(ap_addr, ap_addr);
  3758. __entry->timeout = timeout;
  3759. ),
  3760. TP_printk(WDEV_PR_FMT ", %pM, timeout: %u TUs",
  3761. WDEV_PR_ARG, __entry->ap_addr, __entry->timeout)
  3762. );
  3763. DECLARE_EVENT_CLASS(link_station_add_mod,
  3764. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  3765. struct link_station_parameters *params),
  3766. TP_ARGS(wiphy, netdev, params),
  3767. TP_STRUCT__entry(
  3768. WIPHY_ENTRY
  3769. NETDEV_ENTRY
  3770. __array(u8, mld_mac, 6)
  3771. __array(u8, link_mac, 6)
  3772. __field(u32, link_id)
  3773. __dynamic_array(u8, supported_rates,
  3774. params->supported_rates_len)
  3775. __array(u8, ht_capa, (int)sizeof(struct ieee80211_ht_cap))
  3776. __array(u8, vht_capa, (int)sizeof(struct ieee80211_vht_cap))
  3777. __field(u8, opmode_notif)
  3778. __field(bool, opmode_notif_used)
  3779. __dynamic_array(u8, he_capa, params->he_capa_len)
  3780. __array(u8, he_6ghz_capa, (int)sizeof(struct ieee80211_he_6ghz_capa))
  3781. __dynamic_array(u8, eht_capa, params->eht_capa_len)
  3782. ),
  3783. TP_fast_assign(
  3784. WIPHY_ASSIGN;
  3785. NETDEV_ASSIGN;
  3786. memset(__entry->mld_mac, 0, 6);
  3787. memset(__entry->link_mac, 0, 6);
  3788. if (params->mld_mac)
  3789. memcpy(__entry->mld_mac, params->mld_mac, 6);
  3790. if (params->link_mac)
  3791. memcpy(__entry->link_mac, params->link_mac, 6);
  3792. __entry->link_id = params->link_id;
  3793. if (params->supported_rates && params->supported_rates_len)
  3794. memcpy(__get_dynamic_array(supported_rates),
  3795. params->supported_rates,
  3796. params->supported_rates_len);
  3797. memset(__entry->ht_capa, 0, sizeof(struct ieee80211_ht_cap));
  3798. if (params->ht_capa)
  3799. memcpy(__entry->ht_capa, params->ht_capa,
  3800. sizeof(struct ieee80211_ht_cap));
  3801. memset(__entry->vht_capa, 0, sizeof(struct ieee80211_vht_cap));
  3802. if (params->vht_capa)
  3803. memcpy(__entry->vht_capa, params->vht_capa,
  3804. sizeof(struct ieee80211_vht_cap));
  3805. __entry->opmode_notif = params->opmode_notif;
  3806. __entry->opmode_notif_used = params->opmode_notif_used;
  3807. if (params->he_capa && params->he_capa_len)
  3808. memcpy(__get_dynamic_array(he_capa), params->he_capa,
  3809. params->he_capa_len);
  3810. memset(__entry->he_6ghz_capa, 0, sizeof(struct ieee80211_he_6ghz_capa));
  3811. if (params->he_6ghz_capa)
  3812. memcpy(__entry->he_6ghz_capa, params->he_6ghz_capa,
  3813. sizeof(struct ieee80211_he_6ghz_capa));
  3814. if (params->eht_capa && params->eht_capa_len)
  3815. memcpy(__get_dynamic_array(eht_capa), params->eht_capa,
  3816. params->eht_capa_len);
  3817. ),
  3818. TP_printk(WIPHY_PR_FMT ", " NETDEV_PR_FMT ", station mac: %pM"
  3819. ", link mac: %pM, link id: %u",
  3820. WIPHY_PR_ARG, NETDEV_PR_ARG, __entry->mld_mac,
  3821. __entry->link_mac, __entry->link_id)
  3822. );
  3823. DEFINE_EVENT(link_station_add_mod, rdev_add_link_station,
  3824. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  3825. struct link_station_parameters *params),
  3826. TP_ARGS(wiphy, netdev, params)
  3827. );
  3828. DEFINE_EVENT(link_station_add_mod, rdev_mod_link_station,
  3829. TP_PROTO(struct wiphy *wiphy, struct net_device *netdev,
  3830. struct link_station_parameters *params),
  3831. TP_ARGS(wiphy, netdev, params)
  3832. );
  3833. TRACE_EVENT(cfg80211_links_removed,
  3834. TP_PROTO(struct net_device *netdev, u16 link_mask),
  3835. TP_ARGS(netdev, link_mask),
  3836. TP_STRUCT__entry(
  3837. NETDEV_ENTRY
  3838. __field(u16, link_mask)
  3839. ),
  3840. TP_fast_assign(
  3841. NETDEV_ASSIGN;
  3842. __entry->link_mask = link_mask;
  3843. ),
  3844. TP_printk(NETDEV_PR_FMT ", link_mask:%u", NETDEV_PR_ARG,
  3845. __entry->link_mask)
  3846. );
  3847. #endif /* !__RDEV_OPS_TRACE || TRACE_HEADER_MULTI_READ */
  3848. #undef TRACE_INCLUDE_PATH
  3849. #define TRACE_INCLUDE_PATH .
  3850. #undef TRACE_INCLUDE_FILE
  3851. #define TRACE_INCLUDE_FILE trace
  3852. #include <trace/define_trace.h>