wmi-tlv.c 116 KB

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  1. /*
  2. * Copyright (c) 2005-2011 Atheros Communications Inc.
  3. * Copyright (c) 2011-2017 Qualcomm Atheros, Inc.
  4. * Copyright (c) 2018, The Linux Foundation. All rights reserved.
  5. *
  6. * Permission to use, copy, modify, and/or distribute this software for any
  7. * purpose with or without fee is hereby granted, provided that the above
  8. * copyright notice and this permission notice appear in all copies.
  9. *
  10. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  11. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  12. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  13. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  14. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  15. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  16. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  17. */
  18. #include "core.h"
  19. #include "debug.h"
  20. #include "mac.h"
  21. #include "hw.h"
  22. #include "mac.h"
  23. #include "wmi.h"
  24. #include "wmi-ops.h"
  25. #include "wmi-tlv.h"
  26. #include "p2p.h"
  27. #include "testmode.h"
  28. /***************/
  29. /* TLV helpers */
  30. /**************/
  31. struct wmi_tlv_policy {
  32. size_t min_len;
  33. };
  34. static const struct wmi_tlv_policy wmi_tlv_policies[] = {
  35. [WMI_TLV_TAG_ARRAY_BYTE]
  36. = { .min_len = 0 },
  37. [WMI_TLV_TAG_ARRAY_UINT32]
  38. = { .min_len = 0 },
  39. [WMI_TLV_TAG_STRUCT_SCAN_EVENT]
  40. = { .min_len = sizeof(struct wmi_scan_event) },
  41. [WMI_TLV_TAG_STRUCT_MGMT_RX_HDR]
  42. = { .min_len = sizeof(struct wmi_tlv_mgmt_rx_ev) },
  43. [WMI_TLV_TAG_STRUCT_CHAN_INFO_EVENT]
  44. = { .min_len = sizeof(struct wmi_chan_info_event) },
  45. [WMI_TLV_TAG_STRUCT_VDEV_START_RESPONSE_EVENT]
  46. = { .min_len = sizeof(struct wmi_vdev_start_response_event) },
  47. [WMI_TLV_TAG_STRUCT_PEER_STA_KICKOUT_EVENT]
  48. = { .min_len = sizeof(struct wmi_peer_sta_kickout_event) },
  49. [WMI_TLV_TAG_STRUCT_HOST_SWBA_EVENT]
  50. = { .min_len = sizeof(struct wmi_host_swba_event) },
  51. [WMI_TLV_TAG_STRUCT_TIM_INFO]
  52. = { .min_len = sizeof(struct wmi_tim_info) },
  53. [WMI_TLV_TAG_STRUCT_P2P_NOA_INFO]
  54. = { .min_len = sizeof(struct wmi_p2p_noa_info) },
  55. [WMI_TLV_TAG_STRUCT_SERVICE_READY_EVENT]
  56. = { .min_len = sizeof(struct wmi_tlv_svc_rdy_ev) },
  57. [WMI_TLV_TAG_STRUCT_HAL_REG_CAPABILITIES]
  58. = { .min_len = sizeof(struct hal_reg_capabilities) },
  59. [WMI_TLV_TAG_STRUCT_WLAN_HOST_MEM_REQ]
  60. = { .min_len = sizeof(struct wlan_host_mem_req) },
  61. [WMI_TLV_TAG_STRUCT_READY_EVENT]
  62. = { .min_len = sizeof(struct wmi_tlv_rdy_ev) },
  63. [WMI_TLV_TAG_STRUCT_OFFLOAD_BCN_TX_STATUS_EVENT]
  64. = { .min_len = sizeof(struct wmi_tlv_bcn_tx_status_ev) },
  65. [WMI_TLV_TAG_STRUCT_DIAG_DATA_CONTAINER_EVENT]
  66. = { .min_len = sizeof(struct wmi_tlv_diag_data_ev) },
  67. [WMI_TLV_TAG_STRUCT_P2P_NOA_EVENT]
  68. = { .min_len = sizeof(struct wmi_tlv_p2p_noa_ev) },
  69. [WMI_TLV_TAG_STRUCT_ROAM_EVENT]
  70. = { .min_len = sizeof(struct wmi_tlv_roam_ev) },
  71. [WMI_TLV_TAG_STRUCT_WOW_EVENT_INFO]
  72. = { .min_len = sizeof(struct wmi_tlv_wow_event_info) },
  73. [WMI_TLV_TAG_STRUCT_TX_PAUSE_EVENT]
  74. = { .min_len = sizeof(struct wmi_tlv_tx_pause_ev) },
  75. };
  76. static int
  77. ath10k_wmi_tlv_iter(struct ath10k *ar, const void *ptr, size_t len,
  78. int (*iter)(struct ath10k *ar, u16 tag, u16 len,
  79. const void *ptr, void *data),
  80. void *data)
  81. {
  82. const void *begin = ptr;
  83. const struct wmi_tlv *tlv;
  84. u16 tlv_tag, tlv_len;
  85. int ret;
  86. while (len > 0) {
  87. if (len < sizeof(*tlv)) {
  88. ath10k_dbg(ar, ATH10K_DBG_WMI,
  89. "wmi tlv parse failure at byte %zd (%zu bytes left, %zu expected)\n",
  90. ptr - begin, len, sizeof(*tlv));
  91. return -EINVAL;
  92. }
  93. tlv = ptr;
  94. tlv_tag = __le16_to_cpu(tlv->tag);
  95. tlv_len = __le16_to_cpu(tlv->len);
  96. ptr += sizeof(*tlv);
  97. len -= sizeof(*tlv);
  98. if (tlv_len > len) {
  99. ath10k_dbg(ar, ATH10K_DBG_WMI,
  100. "wmi tlv parse failure of tag %hhu at byte %zd (%zu bytes left, %hhu expected)\n",
  101. tlv_tag, ptr - begin, len, tlv_len);
  102. return -EINVAL;
  103. }
  104. if (tlv_tag < ARRAY_SIZE(wmi_tlv_policies) &&
  105. wmi_tlv_policies[tlv_tag].min_len &&
  106. wmi_tlv_policies[tlv_tag].min_len > tlv_len) {
  107. ath10k_dbg(ar, ATH10K_DBG_WMI,
  108. "wmi tlv parse failure of tag %hhu at byte %zd (%hhu bytes is less than min length %zu)\n",
  109. tlv_tag, ptr - begin, tlv_len,
  110. wmi_tlv_policies[tlv_tag].min_len);
  111. return -EINVAL;
  112. }
  113. ret = iter(ar, tlv_tag, tlv_len, ptr, data);
  114. if (ret)
  115. return ret;
  116. ptr += tlv_len;
  117. len -= tlv_len;
  118. }
  119. return 0;
  120. }
  121. static int ath10k_wmi_tlv_iter_parse(struct ath10k *ar, u16 tag, u16 len,
  122. const void *ptr, void *data)
  123. {
  124. const void **tb = data;
  125. if (tag < WMI_TLV_TAG_MAX)
  126. tb[tag] = ptr;
  127. return 0;
  128. }
  129. static int ath10k_wmi_tlv_parse(struct ath10k *ar, const void **tb,
  130. const void *ptr, size_t len)
  131. {
  132. return ath10k_wmi_tlv_iter(ar, ptr, len, ath10k_wmi_tlv_iter_parse,
  133. (void *)tb);
  134. }
  135. static const void **
  136. ath10k_wmi_tlv_parse_alloc(struct ath10k *ar, const void *ptr,
  137. size_t len, gfp_t gfp)
  138. {
  139. const void **tb;
  140. int ret;
  141. tb = kcalloc(WMI_TLV_TAG_MAX, sizeof(*tb), gfp);
  142. if (!tb)
  143. return ERR_PTR(-ENOMEM);
  144. ret = ath10k_wmi_tlv_parse(ar, tb, ptr, len);
  145. if (ret) {
  146. kfree(tb);
  147. return ERR_PTR(ret);
  148. }
  149. return tb;
  150. }
  151. static u16 ath10k_wmi_tlv_len(const void *ptr)
  152. {
  153. return __le16_to_cpu((((const struct wmi_tlv *)ptr) - 1)->len);
  154. }
  155. /**************/
  156. /* TLV events */
  157. /**************/
  158. static int ath10k_wmi_tlv_event_bcn_tx_status(struct ath10k *ar,
  159. struct sk_buff *skb)
  160. {
  161. const void **tb;
  162. const struct wmi_tlv_bcn_tx_status_ev *ev;
  163. struct ath10k_vif *arvif;
  164. u32 vdev_id, tx_status;
  165. int ret;
  166. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  167. if (IS_ERR(tb)) {
  168. ret = PTR_ERR(tb);
  169. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  170. return ret;
  171. }
  172. ev = tb[WMI_TLV_TAG_STRUCT_OFFLOAD_BCN_TX_STATUS_EVENT];
  173. if (!ev) {
  174. kfree(tb);
  175. return -EPROTO;
  176. }
  177. tx_status = __le32_to_cpu(ev->tx_status);
  178. vdev_id = __le32_to_cpu(ev->vdev_id);
  179. switch (tx_status) {
  180. case WMI_TLV_BCN_TX_STATUS_OK:
  181. break;
  182. case WMI_TLV_BCN_TX_STATUS_XRETRY:
  183. case WMI_TLV_BCN_TX_STATUS_DROP:
  184. case WMI_TLV_BCN_TX_STATUS_FILTERED:
  185. /* FIXME: It's probably worth telling mac80211 to stop the
  186. * interface as it is crippled.
  187. */
  188. ath10k_warn(ar, "received bcn tmpl tx status on vdev %i: %d",
  189. vdev_id, tx_status);
  190. break;
  191. }
  192. arvif = ath10k_get_arvif(ar, vdev_id);
  193. if (arvif && arvif->is_up && arvif->vif->csa_active)
  194. ieee80211_queue_work(ar->hw, &arvif->ap_csa_work);
  195. kfree(tb);
  196. return 0;
  197. }
  198. static int ath10k_wmi_tlv_event_diag_data(struct ath10k *ar,
  199. struct sk_buff *skb)
  200. {
  201. const void **tb;
  202. const struct wmi_tlv_diag_data_ev *ev;
  203. const struct wmi_tlv_diag_item *item;
  204. const void *data;
  205. int ret, num_items, len;
  206. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  207. if (IS_ERR(tb)) {
  208. ret = PTR_ERR(tb);
  209. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  210. return ret;
  211. }
  212. ev = tb[WMI_TLV_TAG_STRUCT_DIAG_DATA_CONTAINER_EVENT];
  213. data = tb[WMI_TLV_TAG_ARRAY_BYTE];
  214. if (!ev || !data) {
  215. kfree(tb);
  216. return -EPROTO;
  217. }
  218. num_items = __le32_to_cpu(ev->num_items);
  219. len = ath10k_wmi_tlv_len(data);
  220. while (num_items--) {
  221. if (len == 0)
  222. break;
  223. if (len < sizeof(*item)) {
  224. ath10k_warn(ar, "failed to parse diag data: can't fit item header\n");
  225. break;
  226. }
  227. item = data;
  228. if (len < sizeof(*item) + __le16_to_cpu(item->len)) {
  229. ath10k_warn(ar, "failed to parse diag data: item is too long\n");
  230. break;
  231. }
  232. trace_ath10k_wmi_diag_container(ar,
  233. item->type,
  234. __le32_to_cpu(item->timestamp),
  235. __le32_to_cpu(item->code),
  236. __le16_to_cpu(item->len),
  237. item->payload);
  238. len -= sizeof(*item);
  239. len -= roundup(__le16_to_cpu(item->len), 4);
  240. data += sizeof(*item);
  241. data += roundup(__le16_to_cpu(item->len), 4);
  242. }
  243. if (num_items != -1 || len != 0)
  244. ath10k_warn(ar, "failed to parse diag data event: num_items %d len %d\n",
  245. num_items, len);
  246. kfree(tb);
  247. return 0;
  248. }
  249. static int ath10k_wmi_tlv_event_diag(struct ath10k *ar,
  250. struct sk_buff *skb)
  251. {
  252. const void **tb;
  253. const void *data;
  254. int ret, len;
  255. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  256. if (IS_ERR(tb)) {
  257. ret = PTR_ERR(tb);
  258. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  259. return ret;
  260. }
  261. data = tb[WMI_TLV_TAG_ARRAY_BYTE];
  262. if (!data) {
  263. kfree(tb);
  264. return -EPROTO;
  265. }
  266. len = ath10k_wmi_tlv_len(data);
  267. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv diag event len %d\n", len);
  268. trace_ath10k_wmi_diag(ar, data, len);
  269. kfree(tb);
  270. return 0;
  271. }
  272. static int ath10k_wmi_tlv_event_p2p_noa(struct ath10k *ar,
  273. struct sk_buff *skb)
  274. {
  275. const void **tb;
  276. const struct wmi_tlv_p2p_noa_ev *ev;
  277. const struct wmi_p2p_noa_info *noa;
  278. int ret, vdev_id;
  279. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  280. if (IS_ERR(tb)) {
  281. ret = PTR_ERR(tb);
  282. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  283. return ret;
  284. }
  285. ev = tb[WMI_TLV_TAG_STRUCT_P2P_NOA_EVENT];
  286. noa = tb[WMI_TLV_TAG_STRUCT_P2P_NOA_INFO];
  287. if (!ev || !noa) {
  288. kfree(tb);
  289. return -EPROTO;
  290. }
  291. vdev_id = __le32_to_cpu(ev->vdev_id);
  292. ath10k_dbg(ar, ATH10K_DBG_WMI,
  293. "wmi tlv p2p noa vdev_id %i descriptors %hhu\n",
  294. vdev_id, noa->num_descriptors);
  295. ath10k_p2p_noa_update_by_vdev_id(ar, vdev_id, noa);
  296. kfree(tb);
  297. return 0;
  298. }
  299. static int ath10k_wmi_tlv_event_tx_pause(struct ath10k *ar,
  300. struct sk_buff *skb)
  301. {
  302. const void **tb;
  303. const struct wmi_tlv_tx_pause_ev *ev;
  304. int ret, vdev_id;
  305. u32 pause_id, action, vdev_map, peer_id, tid_map;
  306. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  307. if (IS_ERR(tb)) {
  308. ret = PTR_ERR(tb);
  309. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  310. return ret;
  311. }
  312. ev = tb[WMI_TLV_TAG_STRUCT_TX_PAUSE_EVENT];
  313. if (!ev) {
  314. kfree(tb);
  315. return -EPROTO;
  316. }
  317. pause_id = __le32_to_cpu(ev->pause_id);
  318. action = __le32_to_cpu(ev->action);
  319. vdev_map = __le32_to_cpu(ev->vdev_map);
  320. peer_id = __le32_to_cpu(ev->peer_id);
  321. tid_map = __le32_to_cpu(ev->tid_map);
  322. ath10k_dbg(ar, ATH10K_DBG_WMI,
  323. "wmi tlv tx pause pause_id %u action %u vdev_map 0x%08x peer_id %u tid_map 0x%08x\n",
  324. pause_id, action, vdev_map, peer_id, tid_map);
  325. switch (pause_id) {
  326. case WMI_TLV_TX_PAUSE_ID_MCC:
  327. case WMI_TLV_TX_PAUSE_ID_P2P_CLI_NOA:
  328. case WMI_TLV_TX_PAUSE_ID_P2P_GO_PS:
  329. case WMI_TLV_TX_PAUSE_ID_AP_PS:
  330. case WMI_TLV_TX_PAUSE_ID_IBSS_PS:
  331. for (vdev_id = 0; vdev_map; vdev_id++) {
  332. if (!(vdev_map & BIT(vdev_id)))
  333. continue;
  334. vdev_map &= ~BIT(vdev_id);
  335. ath10k_mac_handle_tx_pause_vdev(ar, vdev_id, pause_id,
  336. action);
  337. }
  338. break;
  339. case WMI_TLV_TX_PAUSE_ID_AP_PEER_PS:
  340. case WMI_TLV_TX_PAUSE_ID_AP_PEER_UAPSD:
  341. case WMI_TLV_TX_PAUSE_ID_STA_ADD_BA:
  342. case WMI_TLV_TX_PAUSE_ID_HOST:
  343. ath10k_dbg(ar, ATH10K_DBG_MAC,
  344. "mac ignoring unsupported tx pause id %d\n",
  345. pause_id);
  346. break;
  347. default:
  348. ath10k_dbg(ar, ATH10K_DBG_MAC,
  349. "mac ignoring unknown tx pause vdev %d\n",
  350. pause_id);
  351. break;
  352. }
  353. kfree(tb);
  354. return 0;
  355. }
  356. static int ath10k_wmi_tlv_event_temperature(struct ath10k *ar,
  357. struct sk_buff *skb)
  358. {
  359. const struct wmi_tlv_pdev_temperature_event *ev;
  360. ev = (struct wmi_tlv_pdev_temperature_event *)skb->data;
  361. if (WARN_ON(skb->len < sizeof(*ev)))
  362. return -EPROTO;
  363. ath10k_thermal_event_temperature(ar, __le32_to_cpu(ev->temperature));
  364. return 0;
  365. }
  366. static void ath10k_wmi_event_tdls_peer(struct ath10k *ar, struct sk_buff *skb)
  367. {
  368. struct ieee80211_sta *station;
  369. const struct wmi_tlv_tdls_peer_event *ev;
  370. const void **tb;
  371. struct ath10k_vif *arvif;
  372. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  373. if (IS_ERR(tb)) {
  374. ath10k_warn(ar, "tdls peer failed to parse tlv");
  375. return;
  376. }
  377. ev = tb[WMI_TLV_TAG_STRUCT_TDLS_PEER_EVENT];
  378. if (!ev) {
  379. kfree(tb);
  380. ath10k_warn(ar, "tdls peer NULL event");
  381. return;
  382. }
  383. switch (__le32_to_cpu(ev->peer_reason)) {
  384. case WMI_TDLS_TEARDOWN_REASON_TX:
  385. case WMI_TDLS_TEARDOWN_REASON_RSSI:
  386. case WMI_TDLS_TEARDOWN_REASON_PTR_TIMEOUT:
  387. station = ieee80211_find_sta_by_ifaddr(ar->hw,
  388. ev->peer_macaddr.addr,
  389. NULL);
  390. if (!station) {
  391. ath10k_warn(ar, "did not find station from tdls peer event");
  392. kfree(tb);
  393. return;
  394. }
  395. arvif = ath10k_get_arvif(ar, __le32_to_cpu(ev->vdev_id));
  396. ieee80211_tdls_oper_request(
  397. arvif->vif, station->addr,
  398. NL80211_TDLS_TEARDOWN,
  399. WLAN_REASON_TDLS_TEARDOWN_UNREACHABLE,
  400. GFP_ATOMIC
  401. );
  402. break;
  403. }
  404. kfree(tb);
  405. }
  406. /***********/
  407. /* TLV ops */
  408. /***********/
  409. static void ath10k_wmi_tlv_op_rx(struct ath10k *ar, struct sk_buff *skb)
  410. {
  411. struct wmi_cmd_hdr *cmd_hdr;
  412. enum wmi_tlv_event_id id;
  413. bool consumed;
  414. cmd_hdr = (struct wmi_cmd_hdr *)skb->data;
  415. id = MS(__le32_to_cpu(cmd_hdr->cmd_id), WMI_CMD_HDR_CMD_ID);
  416. if (skb_pull(skb, sizeof(struct wmi_cmd_hdr)) == NULL)
  417. goto out;
  418. trace_ath10k_wmi_event(ar, id, skb->data, skb->len);
  419. consumed = ath10k_tm_event_wmi(ar, id, skb);
  420. /* Ready event must be handled normally also in UTF mode so that we
  421. * know the UTF firmware has booted, others we are just bypass WMI
  422. * events to testmode.
  423. */
  424. if (consumed && id != WMI_TLV_READY_EVENTID) {
  425. ath10k_dbg(ar, ATH10K_DBG_WMI,
  426. "wmi tlv testmode consumed 0x%x\n", id);
  427. goto out;
  428. }
  429. switch (id) {
  430. case WMI_TLV_MGMT_RX_EVENTID:
  431. ath10k_wmi_event_mgmt_rx(ar, skb);
  432. /* mgmt_rx() owns the skb now! */
  433. return;
  434. case WMI_TLV_SCAN_EVENTID:
  435. ath10k_wmi_event_scan(ar, skb);
  436. break;
  437. case WMI_TLV_CHAN_INFO_EVENTID:
  438. ath10k_wmi_event_chan_info(ar, skb);
  439. break;
  440. case WMI_TLV_ECHO_EVENTID:
  441. ath10k_wmi_event_echo(ar, skb);
  442. break;
  443. case WMI_TLV_DEBUG_MESG_EVENTID:
  444. ath10k_wmi_event_debug_mesg(ar, skb);
  445. break;
  446. case WMI_TLV_UPDATE_STATS_EVENTID:
  447. ath10k_wmi_event_update_stats(ar, skb);
  448. break;
  449. case WMI_TLV_VDEV_START_RESP_EVENTID:
  450. ath10k_wmi_event_vdev_start_resp(ar, skb);
  451. break;
  452. case WMI_TLV_VDEV_STOPPED_EVENTID:
  453. ath10k_wmi_event_vdev_stopped(ar, skb);
  454. break;
  455. case WMI_TLV_PEER_STA_KICKOUT_EVENTID:
  456. ath10k_wmi_event_peer_sta_kickout(ar, skb);
  457. break;
  458. case WMI_TLV_HOST_SWBA_EVENTID:
  459. ath10k_wmi_event_host_swba(ar, skb);
  460. break;
  461. case WMI_TLV_TBTTOFFSET_UPDATE_EVENTID:
  462. ath10k_wmi_event_tbttoffset_update(ar, skb);
  463. break;
  464. case WMI_TLV_PHYERR_EVENTID:
  465. ath10k_wmi_event_phyerr(ar, skb);
  466. break;
  467. case WMI_TLV_ROAM_EVENTID:
  468. ath10k_wmi_event_roam(ar, skb);
  469. break;
  470. case WMI_TLV_PROFILE_MATCH:
  471. ath10k_wmi_event_profile_match(ar, skb);
  472. break;
  473. case WMI_TLV_DEBUG_PRINT_EVENTID:
  474. ath10k_wmi_event_debug_print(ar, skb);
  475. break;
  476. case WMI_TLV_PDEV_QVIT_EVENTID:
  477. ath10k_wmi_event_pdev_qvit(ar, skb);
  478. break;
  479. case WMI_TLV_WLAN_PROFILE_DATA_EVENTID:
  480. ath10k_wmi_event_wlan_profile_data(ar, skb);
  481. break;
  482. case WMI_TLV_RTT_MEASUREMENT_REPORT_EVENTID:
  483. ath10k_wmi_event_rtt_measurement_report(ar, skb);
  484. break;
  485. case WMI_TLV_TSF_MEASUREMENT_REPORT_EVENTID:
  486. ath10k_wmi_event_tsf_measurement_report(ar, skb);
  487. break;
  488. case WMI_TLV_RTT_ERROR_REPORT_EVENTID:
  489. ath10k_wmi_event_rtt_error_report(ar, skb);
  490. break;
  491. case WMI_TLV_WOW_WAKEUP_HOST_EVENTID:
  492. ath10k_wmi_event_wow_wakeup_host(ar, skb);
  493. break;
  494. case WMI_TLV_DCS_INTERFERENCE_EVENTID:
  495. ath10k_wmi_event_dcs_interference(ar, skb);
  496. break;
  497. case WMI_TLV_PDEV_TPC_CONFIG_EVENTID:
  498. ath10k_wmi_event_pdev_tpc_config(ar, skb);
  499. break;
  500. case WMI_TLV_PDEV_FTM_INTG_EVENTID:
  501. ath10k_wmi_event_pdev_ftm_intg(ar, skb);
  502. break;
  503. case WMI_TLV_GTK_OFFLOAD_STATUS_EVENTID:
  504. ath10k_wmi_event_gtk_offload_status(ar, skb);
  505. break;
  506. case WMI_TLV_GTK_REKEY_FAIL_EVENTID:
  507. ath10k_wmi_event_gtk_rekey_fail(ar, skb);
  508. break;
  509. case WMI_TLV_TX_DELBA_COMPLETE_EVENTID:
  510. ath10k_wmi_event_delba_complete(ar, skb);
  511. break;
  512. case WMI_TLV_TX_ADDBA_COMPLETE_EVENTID:
  513. ath10k_wmi_event_addba_complete(ar, skb);
  514. break;
  515. case WMI_TLV_VDEV_INSTALL_KEY_COMPLETE_EVENTID:
  516. ath10k_wmi_event_vdev_install_key_complete(ar, skb);
  517. break;
  518. case WMI_TLV_SERVICE_READY_EVENTID:
  519. ath10k_wmi_event_service_ready(ar, skb);
  520. return;
  521. case WMI_TLV_READY_EVENTID:
  522. ath10k_wmi_event_ready(ar, skb);
  523. break;
  524. case WMI_TLV_SERVICE_AVAILABLE_EVENTID:
  525. ath10k_wmi_event_service_available(ar, skb);
  526. break;
  527. case WMI_TLV_OFFLOAD_BCN_TX_STATUS_EVENTID:
  528. ath10k_wmi_tlv_event_bcn_tx_status(ar, skb);
  529. break;
  530. case WMI_TLV_DIAG_DATA_CONTAINER_EVENTID:
  531. ath10k_wmi_tlv_event_diag_data(ar, skb);
  532. break;
  533. case WMI_TLV_DIAG_EVENTID:
  534. ath10k_wmi_tlv_event_diag(ar, skb);
  535. break;
  536. case WMI_TLV_P2P_NOA_EVENTID:
  537. ath10k_wmi_tlv_event_p2p_noa(ar, skb);
  538. break;
  539. case WMI_TLV_TX_PAUSE_EVENTID:
  540. ath10k_wmi_tlv_event_tx_pause(ar, skb);
  541. break;
  542. case WMI_TLV_PDEV_TEMPERATURE_EVENTID:
  543. ath10k_wmi_tlv_event_temperature(ar, skb);
  544. break;
  545. case WMI_TLV_TDLS_PEER_EVENTID:
  546. ath10k_wmi_event_tdls_peer(ar, skb);
  547. break;
  548. case WMI_TLV_MGMT_TX_COMPLETION_EVENTID:
  549. ath10k_wmi_event_mgmt_tx_compl(ar, skb);
  550. break;
  551. default:
  552. ath10k_warn(ar, "Unknown eventid: %d\n", id);
  553. break;
  554. }
  555. out:
  556. dev_kfree_skb(skb);
  557. }
  558. static int ath10k_wmi_tlv_op_pull_scan_ev(struct ath10k *ar,
  559. struct sk_buff *skb,
  560. struct wmi_scan_ev_arg *arg)
  561. {
  562. const void **tb;
  563. const struct wmi_scan_event *ev;
  564. int ret;
  565. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  566. if (IS_ERR(tb)) {
  567. ret = PTR_ERR(tb);
  568. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  569. return ret;
  570. }
  571. ev = tb[WMI_TLV_TAG_STRUCT_SCAN_EVENT];
  572. if (!ev) {
  573. kfree(tb);
  574. return -EPROTO;
  575. }
  576. arg->event_type = ev->event_type;
  577. arg->reason = ev->reason;
  578. arg->channel_freq = ev->channel_freq;
  579. arg->scan_req_id = ev->scan_req_id;
  580. arg->scan_id = ev->scan_id;
  581. arg->vdev_id = ev->vdev_id;
  582. kfree(tb);
  583. return 0;
  584. }
  585. static int
  586. ath10k_wmi_tlv_op_pull_mgmt_tx_compl_ev(struct ath10k *ar, struct sk_buff *skb,
  587. struct wmi_tlv_mgmt_tx_compl_ev_arg *arg)
  588. {
  589. const void **tb;
  590. const struct wmi_tlv_mgmt_tx_compl_ev *ev;
  591. int ret;
  592. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  593. if (IS_ERR(tb)) {
  594. ret = PTR_ERR(tb);
  595. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  596. return ret;
  597. }
  598. ev = tb[WMI_TLV_TAG_STRUCT_MGMT_TX_COMPL_EVENT];
  599. arg->desc_id = ev->desc_id;
  600. arg->status = ev->status;
  601. arg->pdev_id = ev->pdev_id;
  602. kfree(tb);
  603. return 0;
  604. }
  605. static int ath10k_wmi_tlv_op_pull_mgmt_rx_ev(struct ath10k *ar,
  606. struct sk_buff *skb,
  607. struct wmi_mgmt_rx_ev_arg *arg)
  608. {
  609. const void **tb;
  610. const struct wmi_tlv_mgmt_rx_ev *ev;
  611. const u8 *frame;
  612. u32 msdu_len;
  613. int ret;
  614. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  615. if (IS_ERR(tb)) {
  616. ret = PTR_ERR(tb);
  617. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  618. return ret;
  619. }
  620. ev = tb[WMI_TLV_TAG_STRUCT_MGMT_RX_HDR];
  621. frame = tb[WMI_TLV_TAG_ARRAY_BYTE];
  622. if (!ev || !frame) {
  623. kfree(tb);
  624. return -EPROTO;
  625. }
  626. arg->channel = ev->channel;
  627. arg->buf_len = ev->buf_len;
  628. arg->status = ev->status;
  629. arg->snr = ev->snr;
  630. arg->phy_mode = ev->phy_mode;
  631. arg->rate = ev->rate;
  632. msdu_len = __le32_to_cpu(arg->buf_len);
  633. if (skb->len < (frame - skb->data) + msdu_len) {
  634. kfree(tb);
  635. return -EPROTO;
  636. }
  637. /* shift the sk_buff to point to `frame` */
  638. skb_trim(skb, 0);
  639. skb_put(skb, frame - skb->data);
  640. skb_pull(skb, frame - skb->data);
  641. skb_put(skb, msdu_len);
  642. kfree(tb);
  643. return 0;
  644. }
  645. static int ath10k_wmi_tlv_op_pull_ch_info_ev(struct ath10k *ar,
  646. struct sk_buff *skb,
  647. struct wmi_ch_info_ev_arg *arg)
  648. {
  649. const void **tb;
  650. const struct wmi_chan_info_event *ev;
  651. int ret;
  652. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  653. if (IS_ERR(tb)) {
  654. ret = PTR_ERR(tb);
  655. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  656. return ret;
  657. }
  658. ev = tb[WMI_TLV_TAG_STRUCT_CHAN_INFO_EVENT];
  659. if (!ev) {
  660. kfree(tb);
  661. return -EPROTO;
  662. }
  663. arg->err_code = ev->err_code;
  664. arg->freq = ev->freq;
  665. arg->cmd_flags = ev->cmd_flags;
  666. arg->noise_floor = ev->noise_floor;
  667. arg->rx_clear_count = ev->rx_clear_count;
  668. arg->cycle_count = ev->cycle_count;
  669. kfree(tb);
  670. return 0;
  671. }
  672. static int
  673. ath10k_wmi_tlv_op_pull_vdev_start_ev(struct ath10k *ar, struct sk_buff *skb,
  674. struct wmi_vdev_start_ev_arg *arg)
  675. {
  676. const void **tb;
  677. const struct wmi_vdev_start_response_event *ev;
  678. int ret;
  679. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  680. if (IS_ERR(tb)) {
  681. ret = PTR_ERR(tb);
  682. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  683. return ret;
  684. }
  685. ev = tb[WMI_TLV_TAG_STRUCT_VDEV_START_RESPONSE_EVENT];
  686. if (!ev) {
  687. kfree(tb);
  688. return -EPROTO;
  689. }
  690. skb_pull(skb, sizeof(*ev));
  691. arg->vdev_id = ev->vdev_id;
  692. arg->req_id = ev->req_id;
  693. arg->resp_type = ev->resp_type;
  694. arg->status = ev->status;
  695. kfree(tb);
  696. return 0;
  697. }
  698. static int ath10k_wmi_tlv_op_pull_peer_kick_ev(struct ath10k *ar,
  699. struct sk_buff *skb,
  700. struct wmi_peer_kick_ev_arg *arg)
  701. {
  702. const void **tb;
  703. const struct wmi_peer_sta_kickout_event *ev;
  704. int ret;
  705. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  706. if (IS_ERR(tb)) {
  707. ret = PTR_ERR(tb);
  708. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  709. return ret;
  710. }
  711. ev = tb[WMI_TLV_TAG_STRUCT_PEER_STA_KICKOUT_EVENT];
  712. if (!ev) {
  713. kfree(tb);
  714. return -EPROTO;
  715. }
  716. arg->mac_addr = ev->peer_macaddr.addr;
  717. kfree(tb);
  718. return 0;
  719. }
  720. struct wmi_tlv_swba_parse {
  721. const struct wmi_host_swba_event *ev;
  722. bool tim_done;
  723. bool noa_done;
  724. size_t n_tim;
  725. size_t n_noa;
  726. struct wmi_swba_ev_arg *arg;
  727. };
  728. static int ath10k_wmi_tlv_swba_tim_parse(struct ath10k *ar, u16 tag, u16 len,
  729. const void *ptr, void *data)
  730. {
  731. struct wmi_tlv_swba_parse *swba = data;
  732. struct wmi_tim_info_arg *tim_info_arg;
  733. const struct wmi_tim_info *tim_info_ev = ptr;
  734. if (tag != WMI_TLV_TAG_STRUCT_TIM_INFO)
  735. return -EPROTO;
  736. if (swba->n_tim >= ARRAY_SIZE(swba->arg->tim_info))
  737. return -ENOBUFS;
  738. if (__le32_to_cpu(tim_info_ev->tim_len) >
  739. sizeof(tim_info_ev->tim_bitmap)) {
  740. ath10k_warn(ar, "refusing to parse invalid swba structure\n");
  741. return -EPROTO;
  742. }
  743. tim_info_arg = &swba->arg->tim_info[swba->n_tim];
  744. tim_info_arg->tim_len = tim_info_ev->tim_len;
  745. tim_info_arg->tim_mcast = tim_info_ev->tim_mcast;
  746. tim_info_arg->tim_bitmap = tim_info_ev->tim_bitmap;
  747. tim_info_arg->tim_changed = tim_info_ev->tim_changed;
  748. tim_info_arg->tim_num_ps_pending = tim_info_ev->tim_num_ps_pending;
  749. swba->n_tim++;
  750. return 0;
  751. }
  752. static int ath10k_wmi_tlv_swba_noa_parse(struct ath10k *ar, u16 tag, u16 len,
  753. const void *ptr, void *data)
  754. {
  755. struct wmi_tlv_swba_parse *swba = data;
  756. if (tag != WMI_TLV_TAG_STRUCT_P2P_NOA_INFO)
  757. return -EPROTO;
  758. if (swba->n_noa >= ARRAY_SIZE(swba->arg->noa_info))
  759. return -ENOBUFS;
  760. swba->arg->noa_info[swba->n_noa++] = ptr;
  761. return 0;
  762. }
  763. static int ath10k_wmi_tlv_swba_parse(struct ath10k *ar, u16 tag, u16 len,
  764. const void *ptr, void *data)
  765. {
  766. struct wmi_tlv_swba_parse *swba = data;
  767. int ret;
  768. switch (tag) {
  769. case WMI_TLV_TAG_STRUCT_HOST_SWBA_EVENT:
  770. swba->ev = ptr;
  771. break;
  772. case WMI_TLV_TAG_ARRAY_STRUCT:
  773. if (!swba->tim_done) {
  774. swba->tim_done = true;
  775. ret = ath10k_wmi_tlv_iter(ar, ptr, len,
  776. ath10k_wmi_tlv_swba_tim_parse,
  777. swba);
  778. if (ret)
  779. return ret;
  780. } else if (!swba->noa_done) {
  781. swba->noa_done = true;
  782. ret = ath10k_wmi_tlv_iter(ar, ptr, len,
  783. ath10k_wmi_tlv_swba_noa_parse,
  784. swba);
  785. if (ret)
  786. return ret;
  787. }
  788. break;
  789. default:
  790. break;
  791. }
  792. return 0;
  793. }
  794. static int ath10k_wmi_tlv_op_pull_swba_ev(struct ath10k *ar,
  795. struct sk_buff *skb,
  796. struct wmi_swba_ev_arg *arg)
  797. {
  798. struct wmi_tlv_swba_parse swba = { .arg = arg };
  799. u32 map;
  800. size_t n_vdevs;
  801. int ret;
  802. ret = ath10k_wmi_tlv_iter(ar, skb->data, skb->len,
  803. ath10k_wmi_tlv_swba_parse, &swba);
  804. if (ret) {
  805. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  806. return ret;
  807. }
  808. if (!swba.ev)
  809. return -EPROTO;
  810. arg->vdev_map = swba.ev->vdev_map;
  811. for (map = __le32_to_cpu(arg->vdev_map), n_vdevs = 0; map; map >>= 1)
  812. if (map & BIT(0))
  813. n_vdevs++;
  814. if (n_vdevs != swba.n_tim ||
  815. n_vdevs != swba.n_noa)
  816. return -EPROTO;
  817. return 0;
  818. }
  819. static int ath10k_wmi_tlv_op_pull_phyerr_ev_hdr(struct ath10k *ar,
  820. struct sk_buff *skb,
  821. struct wmi_phyerr_hdr_arg *arg)
  822. {
  823. const void **tb;
  824. const struct wmi_tlv_phyerr_ev *ev;
  825. const void *phyerrs;
  826. int ret;
  827. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  828. if (IS_ERR(tb)) {
  829. ret = PTR_ERR(tb);
  830. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  831. return ret;
  832. }
  833. ev = tb[WMI_TLV_TAG_STRUCT_COMB_PHYERR_RX_HDR];
  834. phyerrs = tb[WMI_TLV_TAG_ARRAY_BYTE];
  835. if (!ev || !phyerrs) {
  836. kfree(tb);
  837. return -EPROTO;
  838. }
  839. arg->num_phyerrs = __le32_to_cpu(ev->num_phyerrs);
  840. arg->tsf_l32 = __le32_to_cpu(ev->tsf_l32);
  841. arg->tsf_u32 = __le32_to_cpu(ev->tsf_u32);
  842. arg->buf_len = __le32_to_cpu(ev->buf_len);
  843. arg->phyerrs = phyerrs;
  844. kfree(tb);
  845. return 0;
  846. }
  847. #define WMI_TLV_ABI_VER_NS0 0x5F414351
  848. #define WMI_TLV_ABI_VER_NS1 0x00004C4D
  849. #define WMI_TLV_ABI_VER_NS2 0x00000000
  850. #define WMI_TLV_ABI_VER_NS3 0x00000000
  851. #define WMI_TLV_ABI_VER0_MAJOR 1
  852. #define WMI_TLV_ABI_VER0_MINOR 0
  853. #define WMI_TLV_ABI_VER0 ((((WMI_TLV_ABI_VER0_MAJOR) << 24) & 0xFF000000) | \
  854. (((WMI_TLV_ABI_VER0_MINOR) << 0) & 0x00FFFFFF))
  855. #define WMI_TLV_ABI_VER1 53
  856. static int
  857. ath10k_wmi_tlv_parse_mem_reqs(struct ath10k *ar, u16 tag, u16 len,
  858. const void *ptr, void *data)
  859. {
  860. struct wmi_svc_rdy_ev_arg *arg = data;
  861. int i;
  862. if (tag != WMI_TLV_TAG_STRUCT_WLAN_HOST_MEM_REQ)
  863. return -EPROTO;
  864. for (i = 0; i < ARRAY_SIZE(arg->mem_reqs); i++) {
  865. if (!arg->mem_reqs[i]) {
  866. arg->mem_reqs[i] = ptr;
  867. return 0;
  868. }
  869. }
  870. return -ENOMEM;
  871. }
  872. struct wmi_tlv_svc_rdy_parse {
  873. const struct hal_reg_capabilities *reg;
  874. const struct wmi_tlv_svc_rdy_ev *ev;
  875. const __le32 *svc_bmap;
  876. const struct wlan_host_mem_req *mem_reqs;
  877. bool svc_bmap_done;
  878. bool dbs_hw_mode_done;
  879. };
  880. static int ath10k_wmi_tlv_svc_rdy_parse(struct ath10k *ar, u16 tag, u16 len,
  881. const void *ptr, void *data)
  882. {
  883. struct wmi_tlv_svc_rdy_parse *svc_rdy = data;
  884. switch (tag) {
  885. case WMI_TLV_TAG_STRUCT_SERVICE_READY_EVENT:
  886. svc_rdy->ev = ptr;
  887. break;
  888. case WMI_TLV_TAG_STRUCT_HAL_REG_CAPABILITIES:
  889. svc_rdy->reg = ptr;
  890. break;
  891. case WMI_TLV_TAG_ARRAY_STRUCT:
  892. svc_rdy->mem_reqs = ptr;
  893. break;
  894. case WMI_TLV_TAG_ARRAY_UINT32:
  895. if (!svc_rdy->svc_bmap_done) {
  896. svc_rdy->svc_bmap_done = true;
  897. svc_rdy->svc_bmap = ptr;
  898. } else if (!svc_rdy->dbs_hw_mode_done) {
  899. svc_rdy->dbs_hw_mode_done = true;
  900. }
  901. break;
  902. default:
  903. break;
  904. }
  905. return 0;
  906. }
  907. static int ath10k_wmi_tlv_op_pull_svc_rdy_ev(struct ath10k *ar,
  908. struct sk_buff *skb,
  909. struct wmi_svc_rdy_ev_arg *arg)
  910. {
  911. const struct hal_reg_capabilities *reg;
  912. const struct wmi_tlv_svc_rdy_ev *ev;
  913. const __le32 *svc_bmap;
  914. const struct wlan_host_mem_req *mem_reqs;
  915. struct wmi_tlv_svc_rdy_parse svc_rdy = { };
  916. int ret;
  917. ret = ath10k_wmi_tlv_iter(ar, skb->data, skb->len,
  918. ath10k_wmi_tlv_svc_rdy_parse, &svc_rdy);
  919. if (ret) {
  920. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  921. return ret;
  922. }
  923. ev = svc_rdy.ev;
  924. reg = svc_rdy.reg;
  925. svc_bmap = svc_rdy.svc_bmap;
  926. mem_reqs = svc_rdy.mem_reqs;
  927. if (!ev || !reg || !svc_bmap || !mem_reqs)
  928. return -EPROTO;
  929. /* This is an internal ABI compatibility check for WMI TLV so check it
  930. * here instead of the generic WMI code.
  931. */
  932. ath10k_dbg(ar, ATH10K_DBG_WMI,
  933. "wmi tlv abi 0x%08x ?= 0x%08x, 0x%08x ?= 0x%08x, 0x%08x ?= 0x%08x, 0x%08x ?= 0x%08x, 0x%08x ?= 0x%08x\n",
  934. __le32_to_cpu(ev->abi.abi_ver0), WMI_TLV_ABI_VER0,
  935. __le32_to_cpu(ev->abi.abi_ver_ns0), WMI_TLV_ABI_VER_NS0,
  936. __le32_to_cpu(ev->abi.abi_ver_ns1), WMI_TLV_ABI_VER_NS1,
  937. __le32_to_cpu(ev->abi.abi_ver_ns2), WMI_TLV_ABI_VER_NS2,
  938. __le32_to_cpu(ev->abi.abi_ver_ns3), WMI_TLV_ABI_VER_NS3);
  939. if (__le32_to_cpu(ev->abi.abi_ver0) != WMI_TLV_ABI_VER0 ||
  940. __le32_to_cpu(ev->abi.abi_ver_ns0) != WMI_TLV_ABI_VER_NS0 ||
  941. __le32_to_cpu(ev->abi.abi_ver_ns1) != WMI_TLV_ABI_VER_NS1 ||
  942. __le32_to_cpu(ev->abi.abi_ver_ns2) != WMI_TLV_ABI_VER_NS2 ||
  943. __le32_to_cpu(ev->abi.abi_ver_ns3) != WMI_TLV_ABI_VER_NS3) {
  944. return -ENOTSUPP;
  945. }
  946. arg->min_tx_power = ev->hw_min_tx_power;
  947. arg->max_tx_power = ev->hw_max_tx_power;
  948. arg->ht_cap = ev->ht_cap_info;
  949. arg->vht_cap = ev->vht_cap_info;
  950. arg->sw_ver0 = ev->abi.abi_ver0;
  951. arg->sw_ver1 = ev->abi.abi_ver1;
  952. arg->fw_build = ev->fw_build_vers;
  953. arg->phy_capab = ev->phy_capability;
  954. arg->num_rf_chains = ev->num_rf_chains;
  955. arg->eeprom_rd = reg->eeprom_rd;
  956. arg->low_5ghz_chan = reg->low_5ghz_chan;
  957. arg->high_5ghz_chan = reg->high_5ghz_chan;
  958. arg->num_mem_reqs = ev->num_mem_reqs;
  959. arg->service_map = svc_bmap;
  960. arg->service_map_len = ath10k_wmi_tlv_len(svc_bmap);
  961. ret = ath10k_wmi_tlv_iter(ar, mem_reqs, ath10k_wmi_tlv_len(mem_reqs),
  962. ath10k_wmi_tlv_parse_mem_reqs, arg);
  963. if (ret) {
  964. ath10k_warn(ar, "failed to parse mem_reqs tlv: %d\n", ret);
  965. return ret;
  966. }
  967. return 0;
  968. }
  969. static int ath10k_wmi_tlv_op_pull_rdy_ev(struct ath10k *ar,
  970. struct sk_buff *skb,
  971. struct wmi_rdy_ev_arg *arg)
  972. {
  973. const void **tb;
  974. const struct wmi_tlv_rdy_ev *ev;
  975. int ret;
  976. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  977. if (IS_ERR(tb)) {
  978. ret = PTR_ERR(tb);
  979. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  980. return ret;
  981. }
  982. ev = tb[WMI_TLV_TAG_STRUCT_READY_EVENT];
  983. if (!ev) {
  984. kfree(tb);
  985. return -EPROTO;
  986. }
  987. arg->sw_version = ev->abi.abi_ver0;
  988. arg->abi_version = ev->abi.abi_ver1;
  989. arg->status = ev->status;
  990. arg->mac_addr = ev->mac_addr.addr;
  991. kfree(tb);
  992. return 0;
  993. }
  994. static int ath10k_wmi_tlv_svc_avail_parse(struct ath10k *ar, u16 tag, u16 len,
  995. const void *ptr, void *data)
  996. {
  997. struct wmi_svc_avail_ev_arg *arg = data;
  998. switch (tag) {
  999. case WMI_TLV_TAG_STRUCT_SERVICE_AVAILABLE_EVENT:
  1000. arg->service_map_ext_len = *(__le32 *)ptr;
  1001. arg->service_map_ext = ptr + sizeof(__le32);
  1002. return 0;
  1003. default:
  1004. break;
  1005. }
  1006. return -EPROTO;
  1007. }
  1008. static int ath10k_wmi_tlv_op_pull_svc_avail(struct ath10k *ar,
  1009. struct sk_buff *skb,
  1010. struct wmi_svc_avail_ev_arg *arg)
  1011. {
  1012. int ret;
  1013. ret = ath10k_wmi_tlv_iter(ar, skb->data, skb->len,
  1014. ath10k_wmi_tlv_svc_avail_parse, arg);
  1015. if (ret) {
  1016. ath10k_warn(ar, "failed to parse svc_avail tlv: %d\n", ret);
  1017. return ret;
  1018. }
  1019. return 0;
  1020. }
  1021. static void ath10k_wmi_tlv_pull_vdev_stats(const struct wmi_tlv_vdev_stats *src,
  1022. struct ath10k_fw_stats_vdev *dst)
  1023. {
  1024. int i;
  1025. dst->vdev_id = __le32_to_cpu(src->vdev_id);
  1026. dst->beacon_snr = __le32_to_cpu(src->beacon_snr);
  1027. dst->data_snr = __le32_to_cpu(src->data_snr);
  1028. dst->num_rx_frames = __le32_to_cpu(src->num_rx_frames);
  1029. dst->num_rts_fail = __le32_to_cpu(src->num_rts_fail);
  1030. dst->num_rts_success = __le32_to_cpu(src->num_rts_success);
  1031. dst->num_rx_err = __le32_to_cpu(src->num_rx_err);
  1032. dst->num_rx_discard = __le32_to_cpu(src->num_rx_discard);
  1033. dst->num_tx_not_acked = __le32_to_cpu(src->num_tx_not_acked);
  1034. for (i = 0; i < ARRAY_SIZE(src->num_tx_frames); i++)
  1035. dst->num_tx_frames[i] =
  1036. __le32_to_cpu(src->num_tx_frames[i]);
  1037. for (i = 0; i < ARRAY_SIZE(src->num_tx_frames_retries); i++)
  1038. dst->num_tx_frames_retries[i] =
  1039. __le32_to_cpu(src->num_tx_frames_retries[i]);
  1040. for (i = 0; i < ARRAY_SIZE(src->num_tx_frames_failures); i++)
  1041. dst->num_tx_frames_failures[i] =
  1042. __le32_to_cpu(src->num_tx_frames_failures[i]);
  1043. for (i = 0; i < ARRAY_SIZE(src->tx_rate_history); i++)
  1044. dst->tx_rate_history[i] =
  1045. __le32_to_cpu(src->tx_rate_history[i]);
  1046. for (i = 0; i < ARRAY_SIZE(src->beacon_rssi_history); i++)
  1047. dst->beacon_rssi_history[i] =
  1048. __le32_to_cpu(src->beacon_rssi_history[i]);
  1049. }
  1050. static int ath10k_wmi_tlv_op_pull_fw_stats(struct ath10k *ar,
  1051. struct sk_buff *skb,
  1052. struct ath10k_fw_stats *stats)
  1053. {
  1054. const void **tb;
  1055. const struct wmi_tlv_stats_ev *ev;
  1056. const void *data;
  1057. u32 num_pdev_stats;
  1058. u32 num_vdev_stats;
  1059. u32 num_peer_stats;
  1060. u32 num_bcnflt_stats;
  1061. u32 num_chan_stats;
  1062. size_t data_len;
  1063. int ret;
  1064. int i;
  1065. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  1066. if (IS_ERR(tb)) {
  1067. ret = PTR_ERR(tb);
  1068. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  1069. return ret;
  1070. }
  1071. ev = tb[WMI_TLV_TAG_STRUCT_STATS_EVENT];
  1072. data = tb[WMI_TLV_TAG_ARRAY_BYTE];
  1073. if (!ev || !data) {
  1074. kfree(tb);
  1075. return -EPROTO;
  1076. }
  1077. data_len = ath10k_wmi_tlv_len(data);
  1078. num_pdev_stats = __le32_to_cpu(ev->num_pdev_stats);
  1079. num_vdev_stats = __le32_to_cpu(ev->num_vdev_stats);
  1080. num_peer_stats = __le32_to_cpu(ev->num_peer_stats);
  1081. num_bcnflt_stats = __le32_to_cpu(ev->num_bcnflt_stats);
  1082. num_chan_stats = __le32_to_cpu(ev->num_chan_stats);
  1083. ath10k_dbg(ar, ATH10K_DBG_WMI,
  1084. "wmi tlv stats update pdev %i vdev %i peer %i bcnflt %i chan %i\n",
  1085. num_pdev_stats, num_vdev_stats, num_peer_stats,
  1086. num_bcnflt_stats, num_chan_stats);
  1087. for (i = 0; i < num_pdev_stats; i++) {
  1088. const struct wmi_pdev_stats *src;
  1089. struct ath10k_fw_stats_pdev *dst;
  1090. src = data;
  1091. if (data_len < sizeof(*src)) {
  1092. kfree(tb);
  1093. return -EPROTO;
  1094. }
  1095. data += sizeof(*src);
  1096. data_len -= sizeof(*src);
  1097. dst = kzalloc(sizeof(*dst), GFP_ATOMIC);
  1098. if (!dst)
  1099. continue;
  1100. ath10k_wmi_pull_pdev_stats_base(&src->base, dst);
  1101. ath10k_wmi_pull_pdev_stats_tx(&src->tx, dst);
  1102. ath10k_wmi_pull_pdev_stats_rx(&src->rx, dst);
  1103. list_add_tail(&dst->list, &stats->pdevs);
  1104. }
  1105. for (i = 0; i < num_vdev_stats; i++) {
  1106. const struct wmi_tlv_vdev_stats *src;
  1107. struct ath10k_fw_stats_vdev *dst;
  1108. src = data;
  1109. if (data_len < sizeof(*src)) {
  1110. kfree(tb);
  1111. return -EPROTO;
  1112. }
  1113. data += sizeof(*src);
  1114. data_len -= sizeof(*src);
  1115. dst = kzalloc(sizeof(*dst), GFP_ATOMIC);
  1116. if (!dst)
  1117. continue;
  1118. ath10k_wmi_tlv_pull_vdev_stats(src, dst);
  1119. list_add_tail(&dst->list, &stats->vdevs);
  1120. }
  1121. for (i = 0; i < num_peer_stats; i++) {
  1122. const struct wmi_10x_peer_stats *src;
  1123. struct ath10k_fw_stats_peer *dst;
  1124. src = data;
  1125. if (data_len < sizeof(*src)) {
  1126. kfree(tb);
  1127. return -EPROTO;
  1128. }
  1129. data += sizeof(*src);
  1130. data_len -= sizeof(*src);
  1131. dst = kzalloc(sizeof(*dst), GFP_ATOMIC);
  1132. if (!dst)
  1133. continue;
  1134. ath10k_wmi_pull_peer_stats(&src->old, dst);
  1135. dst->peer_rx_rate = __le32_to_cpu(src->peer_rx_rate);
  1136. list_add_tail(&dst->list, &stats->peers);
  1137. }
  1138. kfree(tb);
  1139. return 0;
  1140. }
  1141. static int ath10k_wmi_tlv_op_pull_roam_ev(struct ath10k *ar,
  1142. struct sk_buff *skb,
  1143. struct wmi_roam_ev_arg *arg)
  1144. {
  1145. const void **tb;
  1146. const struct wmi_tlv_roam_ev *ev;
  1147. int ret;
  1148. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  1149. if (IS_ERR(tb)) {
  1150. ret = PTR_ERR(tb);
  1151. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  1152. return ret;
  1153. }
  1154. ev = tb[WMI_TLV_TAG_STRUCT_ROAM_EVENT];
  1155. if (!ev) {
  1156. kfree(tb);
  1157. return -EPROTO;
  1158. }
  1159. arg->vdev_id = ev->vdev_id;
  1160. arg->reason = ev->reason;
  1161. arg->rssi = ev->rssi;
  1162. kfree(tb);
  1163. return 0;
  1164. }
  1165. static int
  1166. ath10k_wmi_tlv_op_pull_wow_ev(struct ath10k *ar, struct sk_buff *skb,
  1167. struct wmi_wow_ev_arg *arg)
  1168. {
  1169. const void **tb;
  1170. const struct wmi_tlv_wow_event_info *ev;
  1171. int ret;
  1172. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  1173. if (IS_ERR(tb)) {
  1174. ret = PTR_ERR(tb);
  1175. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  1176. return ret;
  1177. }
  1178. ev = tb[WMI_TLV_TAG_STRUCT_WOW_EVENT_INFO];
  1179. if (!ev) {
  1180. kfree(tb);
  1181. return -EPROTO;
  1182. }
  1183. arg->vdev_id = __le32_to_cpu(ev->vdev_id);
  1184. arg->flag = __le32_to_cpu(ev->flag);
  1185. arg->wake_reason = __le32_to_cpu(ev->wake_reason);
  1186. arg->data_len = __le32_to_cpu(ev->data_len);
  1187. kfree(tb);
  1188. return 0;
  1189. }
  1190. static int ath10k_wmi_tlv_op_pull_echo_ev(struct ath10k *ar,
  1191. struct sk_buff *skb,
  1192. struct wmi_echo_ev_arg *arg)
  1193. {
  1194. const void **tb;
  1195. const struct wmi_echo_event *ev;
  1196. int ret;
  1197. tb = ath10k_wmi_tlv_parse_alloc(ar, skb->data, skb->len, GFP_ATOMIC);
  1198. if (IS_ERR(tb)) {
  1199. ret = PTR_ERR(tb);
  1200. ath10k_warn(ar, "failed to parse tlv: %d\n", ret);
  1201. return ret;
  1202. }
  1203. ev = tb[WMI_TLV_TAG_STRUCT_ECHO_EVENT];
  1204. if (!ev) {
  1205. kfree(tb);
  1206. return -EPROTO;
  1207. }
  1208. arg->value = ev->value;
  1209. kfree(tb);
  1210. return 0;
  1211. }
  1212. static struct sk_buff *
  1213. ath10k_wmi_tlv_op_gen_pdev_suspend(struct ath10k *ar, u32 opt)
  1214. {
  1215. struct wmi_tlv_pdev_suspend *cmd;
  1216. struct wmi_tlv *tlv;
  1217. struct sk_buff *skb;
  1218. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1219. if (!skb)
  1220. return ERR_PTR(-ENOMEM);
  1221. tlv = (void *)skb->data;
  1222. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_SUSPEND_CMD);
  1223. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1224. cmd = (void *)tlv->value;
  1225. cmd->opt = __cpu_to_le32(opt);
  1226. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pdev suspend\n");
  1227. return skb;
  1228. }
  1229. static struct sk_buff *
  1230. ath10k_wmi_tlv_op_gen_pdev_resume(struct ath10k *ar)
  1231. {
  1232. struct wmi_tlv_resume_cmd *cmd;
  1233. struct wmi_tlv *tlv;
  1234. struct sk_buff *skb;
  1235. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1236. if (!skb)
  1237. return ERR_PTR(-ENOMEM);
  1238. tlv = (void *)skb->data;
  1239. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_RESUME_CMD);
  1240. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1241. cmd = (void *)tlv->value;
  1242. cmd->reserved = __cpu_to_le32(0);
  1243. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pdev resume\n");
  1244. return skb;
  1245. }
  1246. static struct sk_buff *
  1247. ath10k_wmi_tlv_op_gen_pdev_set_rd(struct ath10k *ar,
  1248. u16 rd, u16 rd2g, u16 rd5g,
  1249. u16 ctl2g, u16 ctl5g,
  1250. enum wmi_dfs_region dfs_reg)
  1251. {
  1252. struct wmi_tlv_pdev_set_rd_cmd *cmd;
  1253. struct wmi_tlv *tlv;
  1254. struct sk_buff *skb;
  1255. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1256. if (!skb)
  1257. return ERR_PTR(-ENOMEM);
  1258. tlv = (void *)skb->data;
  1259. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_SET_REGDOMAIN_CMD);
  1260. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1261. cmd = (void *)tlv->value;
  1262. cmd->regd = __cpu_to_le32(rd);
  1263. cmd->regd_2ghz = __cpu_to_le32(rd2g);
  1264. cmd->regd_5ghz = __cpu_to_le32(rd5g);
  1265. cmd->conform_limit_2ghz = __cpu_to_le32(ctl2g);
  1266. cmd->conform_limit_5ghz = __cpu_to_le32(ctl5g);
  1267. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pdev set rd\n");
  1268. return skb;
  1269. }
  1270. static enum wmi_txbf_conf ath10k_wmi_tlv_txbf_conf_scheme(struct ath10k *ar)
  1271. {
  1272. return WMI_TXBF_CONF_AFTER_ASSOC;
  1273. }
  1274. static struct sk_buff *
  1275. ath10k_wmi_tlv_op_gen_pdev_set_param(struct ath10k *ar, u32 param_id,
  1276. u32 param_value)
  1277. {
  1278. struct wmi_tlv_pdev_set_param_cmd *cmd;
  1279. struct wmi_tlv *tlv;
  1280. struct sk_buff *skb;
  1281. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1282. if (!skb)
  1283. return ERR_PTR(-ENOMEM);
  1284. tlv = (void *)skb->data;
  1285. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_SET_PARAM_CMD);
  1286. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1287. cmd = (void *)tlv->value;
  1288. cmd->param_id = __cpu_to_le32(param_id);
  1289. cmd->param_value = __cpu_to_le32(param_value);
  1290. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pdev set param\n");
  1291. return skb;
  1292. }
  1293. static struct sk_buff *ath10k_wmi_tlv_op_gen_init(struct ath10k *ar)
  1294. {
  1295. struct sk_buff *skb;
  1296. struct wmi_tlv *tlv;
  1297. struct wmi_tlv_init_cmd *cmd;
  1298. struct wmi_tlv_resource_config *cfg;
  1299. struct wmi_host_mem_chunks *chunks;
  1300. size_t len, chunks_len;
  1301. void *ptr;
  1302. chunks_len = ar->wmi.num_mem_chunks * sizeof(struct host_memory_chunk);
  1303. len = (sizeof(*tlv) + sizeof(*cmd)) +
  1304. (sizeof(*tlv) + sizeof(*cfg)) +
  1305. (sizeof(*tlv) + chunks_len);
  1306. skb = ath10k_wmi_alloc_skb(ar, len);
  1307. if (!skb)
  1308. return ERR_PTR(-ENOMEM);
  1309. ptr = skb->data;
  1310. tlv = ptr;
  1311. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_INIT_CMD);
  1312. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1313. cmd = (void *)tlv->value;
  1314. ptr += sizeof(*tlv);
  1315. ptr += sizeof(*cmd);
  1316. tlv = ptr;
  1317. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_RESOURCE_CONFIG);
  1318. tlv->len = __cpu_to_le16(sizeof(*cfg));
  1319. cfg = (void *)tlv->value;
  1320. ptr += sizeof(*tlv);
  1321. ptr += sizeof(*cfg);
  1322. tlv = ptr;
  1323. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  1324. tlv->len = __cpu_to_le16(chunks_len);
  1325. chunks = (void *)tlv->value;
  1326. ptr += sizeof(*tlv);
  1327. ptr += chunks_len;
  1328. cmd->abi.abi_ver0 = __cpu_to_le32(WMI_TLV_ABI_VER0);
  1329. cmd->abi.abi_ver1 = __cpu_to_le32(WMI_TLV_ABI_VER1);
  1330. cmd->abi.abi_ver_ns0 = __cpu_to_le32(WMI_TLV_ABI_VER_NS0);
  1331. cmd->abi.abi_ver_ns1 = __cpu_to_le32(WMI_TLV_ABI_VER_NS1);
  1332. cmd->abi.abi_ver_ns2 = __cpu_to_le32(WMI_TLV_ABI_VER_NS2);
  1333. cmd->abi.abi_ver_ns3 = __cpu_to_le32(WMI_TLV_ABI_VER_NS3);
  1334. cmd->num_host_mem_chunks = __cpu_to_le32(ar->wmi.num_mem_chunks);
  1335. cfg->num_vdevs = __cpu_to_le32(TARGET_TLV_NUM_VDEVS);
  1336. cfg->num_peers = __cpu_to_le32(ar->hw_params.num_peers);
  1337. cfg->ast_skid_limit = __cpu_to_le32(ar->hw_params.ast_skid_limit);
  1338. cfg->num_wds_entries = __cpu_to_le32(ar->hw_params.num_wds_entries);
  1339. if (test_bit(WMI_SERVICE_RX_FULL_REORDER, ar->wmi.svc_map)) {
  1340. cfg->num_offload_peers = __cpu_to_le32(TARGET_TLV_NUM_VDEVS);
  1341. cfg->num_offload_reorder_bufs = __cpu_to_le32(TARGET_TLV_NUM_VDEVS);
  1342. } else {
  1343. cfg->num_offload_peers = __cpu_to_le32(0);
  1344. cfg->num_offload_reorder_bufs = __cpu_to_le32(0);
  1345. }
  1346. cfg->num_peer_keys = __cpu_to_le32(2);
  1347. cfg->num_tids = __cpu_to_le32(TARGET_TLV_NUM_TIDS);
  1348. cfg->tx_chain_mask = __cpu_to_le32(0x7);
  1349. cfg->rx_chain_mask = __cpu_to_le32(0x7);
  1350. cfg->rx_timeout_pri[0] = __cpu_to_le32(0x64);
  1351. cfg->rx_timeout_pri[1] = __cpu_to_le32(0x64);
  1352. cfg->rx_timeout_pri[2] = __cpu_to_le32(0x64);
  1353. cfg->rx_timeout_pri[3] = __cpu_to_le32(0x28);
  1354. cfg->rx_decap_mode = __cpu_to_le32(ar->wmi.rx_decap_mode);
  1355. cfg->scan_max_pending_reqs = __cpu_to_le32(4);
  1356. cfg->bmiss_offload_max_vdev = __cpu_to_le32(TARGET_TLV_NUM_VDEVS);
  1357. cfg->roam_offload_max_vdev = __cpu_to_le32(TARGET_TLV_NUM_VDEVS);
  1358. cfg->roam_offload_max_ap_profiles = __cpu_to_le32(8);
  1359. cfg->num_mcast_groups = __cpu_to_le32(0);
  1360. cfg->num_mcast_table_elems = __cpu_to_le32(0);
  1361. cfg->mcast2ucast_mode = __cpu_to_le32(0);
  1362. cfg->tx_dbg_log_size = __cpu_to_le32(0x400);
  1363. cfg->dma_burst_size = __cpu_to_le32(0);
  1364. cfg->mac_aggr_delim = __cpu_to_le32(0);
  1365. cfg->rx_skip_defrag_timeout_dup_detection_check = __cpu_to_le32(0);
  1366. cfg->vow_config = __cpu_to_le32(0);
  1367. cfg->gtk_offload_max_vdev = __cpu_to_le32(2);
  1368. cfg->num_msdu_desc = __cpu_to_le32(TARGET_TLV_NUM_MSDU_DESC);
  1369. cfg->max_frag_entries = __cpu_to_le32(2);
  1370. cfg->num_tdls_vdevs = __cpu_to_le32(TARGET_TLV_NUM_TDLS_VDEVS);
  1371. cfg->num_tdls_conn_table_entries = __cpu_to_le32(0x20);
  1372. cfg->beacon_tx_offload_max_vdev = __cpu_to_le32(2);
  1373. cfg->num_multicast_filter_entries = __cpu_to_le32(5);
  1374. cfg->num_wow_filters = __cpu_to_le32(ar->wow.max_num_patterns);
  1375. cfg->num_keep_alive_pattern = __cpu_to_le32(6);
  1376. cfg->keep_alive_pattern_size = __cpu_to_le32(0);
  1377. cfg->max_tdls_concurrent_sleep_sta = __cpu_to_le32(1);
  1378. cfg->max_tdls_concurrent_buffer_sta = __cpu_to_le32(1);
  1379. cfg->wmi_send_separate = __cpu_to_le32(0);
  1380. cfg->num_ocb_vdevs = __cpu_to_le32(0);
  1381. cfg->num_ocb_channels = __cpu_to_le32(0);
  1382. cfg->num_ocb_schedules = __cpu_to_le32(0);
  1383. cfg->host_capab = __cpu_to_le32(0);
  1384. ath10k_wmi_put_host_mem_chunks(ar, chunks);
  1385. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv init\n");
  1386. return skb;
  1387. }
  1388. static struct sk_buff *
  1389. ath10k_wmi_tlv_op_gen_start_scan(struct ath10k *ar,
  1390. const struct wmi_start_scan_arg *arg)
  1391. {
  1392. struct wmi_tlv_start_scan_cmd *cmd;
  1393. struct wmi_tlv *tlv;
  1394. struct sk_buff *skb;
  1395. size_t len, chan_len, ssid_len, bssid_len, ie_len;
  1396. __le32 *chans;
  1397. struct wmi_ssid *ssids;
  1398. struct wmi_mac_addr *addrs;
  1399. void *ptr;
  1400. int i, ret;
  1401. ret = ath10k_wmi_start_scan_verify(arg);
  1402. if (ret)
  1403. return ERR_PTR(ret);
  1404. chan_len = arg->n_channels * sizeof(__le32);
  1405. ssid_len = arg->n_ssids * sizeof(struct wmi_ssid);
  1406. bssid_len = arg->n_bssids * sizeof(struct wmi_mac_addr);
  1407. ie_len = roundup(arg->ie_len, 4);
  1408. len = (sizeof(*tlv) + sizeof(*cmd)) +
  1409. sizeof(*tlv) + chan_len +
  1410. sizeof(*tlv) + ssid_len +
  1411. sizeof(*tlv) + bssid_len +
  1412. sizeof(*tlv) + ie_len;
  1413. skb = ath10k_wmi_alloc_skb(ar, len);
  1414. if (!skb)
  1415. return ERR_PTR(-ENOMEM);
  1416. ptr = (void *)skb->data;
  1417. tlv = ptr;
  1418. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_START_SCAN_CMD);
  1419. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1420. cmd = (void *)tlv->value;
  1421. ath10k_wmi_put_start_scan_common(&cmd->common, arg);
  1422. cmd->burst_duration_ms = __cpu_to_le32(arg->burst_duration_ms);
  1423. cmd->num_channels = __cpu_to_le32(arg->n_channels);
  1424. cmd->num_ssids = __cpu_to_le32(arg->n_ssids);
  1425. cmd->num_bssids = __cpu_to_le32(arg->n_bssids);
  1426. cmd->ie_len = __cpu_to_le32(arg->ie_len);
  1427. cmd->num_probes = __cpu_to_le32(3);
  1428. ether_addr_copy(cmd->mac_addr.addr, arg->mac_addr.addr);
  1429. ether_addr_copy(cmd->mac_mask.addr, arg->mac_mask.addr);
  1430. /* FIXME: There are some scan flag inconsistencies across firmwares,
  1431. * e.g. WMI-TLV inverts the logic behind the following flag.
  1432. */
  1433. cmd->common.scan_ctrl_flags ^= __cpu_to_le32(WMI_SCAN_FILTER_PROBE_REQ);
  1434. ptr += sizeof(*tlv);
  1435. ptr += sizeof(*cmd);
  1436. tlv = ptr;
  1437. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_UINT32);
  1438. tlv->len = __cpu_to_le16(chan_len);
  1439. chans = (void *)tlv->value;
  1440. for (i = 0; i < arg->n_channels; i++)
  1441. chans[i] = __cpu_to_le32(arg->channels[i]);
  1442. ptr += sizeof(*tlv);
  1443. ptr += chan_len;
  1444. tlv = ptr;
  1445. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_FIXED_STRUCT);
  1446. tlv->len = __cpu_to_le16(ssid_len);
  1447. ssids = (void *)tlv->value;
  1448. for (i = 0; i < arg->n_ssids; i++) {
  1449. ssids[i].ssid_len = __cpu_to_le32(arg->ssids[i].len);
  1450. memcpy(ssids[i].ssid, arg->ssids[i].ssid, arg->ssids[i].len);
  1451. }
  1452. ptr += sizeof(*tlv);
  1453. ptr += ssid_len;
  1454. tlv = ptr;
  1455. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_FIXED_STRUCT);
  1456. tlv->len = __cpu_to_le16(bssid_len);
  1457. addrs = (void *)tlv->value;
  1458. for (i = 0; i < arg->n_bssids; i++)
  1459. ether_addr_copy(addrs[i].addr, arg->bssids[i].bssid);
  1460. ptr += sizeof(*tlv);
  1461. ptr += bssid_len;
  1462. tlv = ptr;
  1463. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  1464. tlv->len = __cpu_to_le16(ie_len);
  1465. memcpy(tlv->value, arg->ie, arg->ie_len);
  1466. ptr += sizeof(*tlv);
  1467. ptr += ie_len;
  1468. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv start scan\n");
  1469. return skb;
  1470. }
  1471. static struct sk_buff *
  1472. ath10k_wmi_tlv_op_gen_stop_scan(struct ath10k *ar,
  1473. const struct wmi_stop_scan_arg *arg)
  1474. {
  1475. struct wmi_stop_scan_cmd *cmd;
  1476. struct wmi_tlv *tlv;
  1477. struct sk_buff *skb;
  1478. u32 scan_id;
  1479. u32 req_id;
  1480. if (arg->req_id > 0xFFF)
  1481. return ERR_PTR(-EINVAL);
  1482. if (arg->req_type == WMI_SCAN_STOP_ONE && arg->u.scan_id > 0xFFF)
  1483. return ERR_PTR(-EINVAL);
  1484. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1485. if (!skb)
  1486. return ERR_PTR(-ENOMEM);
  1487. scan_id = arg->u.scan_id;
  1488. scan_id |= WMI_HOST_SCAN_REQ_ID_PREFIX;
  1489. req_id = arg->req_id;
  1490. req_id |= WMI_HOST_SCAN_REQUESTOR_ID_PREFIX;
  1491. tlv = (void *)skb->data;
  1492. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STOP_SCAN_CMD);
  1493. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1494. cmd = (void *)tlv->value;
  1495. cmd->req_type = __cpu_to_le32(arg->req_type);
  1496. cmd->vdev_id = __cpu_to_le32(arg->u.vdev_id);
  1497. cmd->scan_id = __cpu_to_le32(scan_id);
  1498. cmd->scan_req_id = __cpu_to_le32(req_id);
  1499. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv stop scan\n");
  1500. return skb;
  1501. }
  1502. static struct sk_buff *
  1503. ath10k_wmi_tlv_op_gen_vdev_create(struct ath10k *ar,
  1504. u32 vdev_id,
  1505. enum wmi_vdev_type vdev_type,
  1506. enum wmi_vdev_subtype vdev_subtype,
  1507. const u8 mac_addr[ETH_ALEN])
  1508. {
  1509. struct wmi_vdev_create_cmd *cmd;
  1510. struct wmi_tlv *tlv;
  1511. struct sk_buff *skb;
  1512. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1513. if (!skb)
  1514. return ERR_PTR(-ENOMEM);
  1515. tlv = (void *)skb->data;
  1516. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_CREATE_CMD);
  1517. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1518. cmd = (void *)tlv->value;
  1519. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1520. cmd->vdev_type = __cpu_to_le32(vdev_type);
  1521. cmd->vdev_subtype = __cpu_to_le32(vdev_subtype);
  1522. ether_addr_copy(cmd->vdev_macaddr.addr, mac_addr);
  1523. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev create\n");
  1524. return skb;
  1525. }
  1526. static struct sk_buff *
  1527. ath10k_wmi_tlv_op_gen_vdev_delete(struct ath10k *ar, u32 vdev_id)
  1528. {
  1529. struct wmi_vdev_delete_cmd *cmd;
  1530. struct wmi_tlv *tlv;
  1531. struct sk_buff *skb;
  1532. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1533. if (!skb)
  1534. return ERR_PTR(-ENOMEM);
  1535. tlv = (void *)skb->data;
  1536. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_DELETE_CMD);
  1537. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1538. cmd = (void *)tlv->value;
  1539. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1540. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev delete\n");
  1541. return skb;
  1542. }
  1543. static struct sk_buff *
  1544. ath10k_wmi_tlv_op_gen_vdev_start(struct ath10k *ar,
  1545. const struct wmi_vdev_start_request_arg *arg,
  1546. bool restart)
  1547. {
  1548. struct wmi_tlv_vdev_start_cmd *cmd;
  1549. struct wmi_channel *ch;
  1550. struct wmi_tlv *tlv;
  1551. struct sk_buff *skb;
  1552. size_t len;
  1553. void *ptr;
  1554. u32 flags = 0;
  1555. if (WARN_ON(arg->hidden_ssid && !arg->ssid))
  1556. return ERR_PTR(-EINVAL);
  1557. if (WARN_ON(arg->ssid_len > sizeof(cmd->ssid.ssid)))
  1558. return ERR_PTR(-EINVAL);
  1559. len = (sizeof(*tlv) + sizeof(*cmd)) +
  1560. (sizeof(*tlv) + sizeof(*ch)) +
  1561. (sizeof(*tlv) + 0);
  1562. skb = ath10k_wmi_alloc_skb(ar, len);
  1563. if (!skb)
  1564. return ERR_PTR(-ENOMEM);
  1565. if (arg->hidden_ssid)
  1566. flags |= WMI_VDEV_START_HIDDEN_SSID;
  1567. if (arg->pmf_enabled)
  1568. flags |= WMI_VDEV_START_PMF_ENABLED;
  1569. ptr = (void *)skb->data;
  1570. tlv = ptr;
  1571. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_START_REQUEST_CMD);
  1572. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1573. cmd = (void *)tlv->value;
  1574. cmd->vdev_id = __cpu_to_le32(arg->vdev_id);
  1575. cmd->bcn_intval = __cpu_to_le32(arg->bcn_intval);
  1576. cmd->dtim_period = __cpu_to_le32(arg->dtim_period);
  1577. cmd->flags = __cpu_to_le32(flags);
  1578. cmd->bcn_tx_rate = __cpu_to_le32(arg->bcn_tx_rate);
  1579. cmd->bcn_tx_power = __cpu_to_le32(arg->bcn_tx_power);
  1580. cmd->disable_hw_ack = __cpu_to_le32(arg->disable_hw_ack);
  1581. if (arg->ssid) {
  1582. cmd->ssid.ssid_len = __cpu_to_le32(arg->ssid_len);
  1583. memcpy(cmd->ssid.ssid, arg->ssid, arg->ssid_len);
  1584. }
  1585. ptr += sizeof(*tlv);
  1586. ptr += sizeof(*cmd);
  1587. tlv = ptr;
  1588. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_CHANNEL);
  1589. tlv->len = __cpu_to_le16(sizeof(*ch));
  1590. ch = (void *)tlv->value;
  1591. ath10k_wmi_put_wmi_channel(ch, &arg->channel);
  1592. ptr += sizeof(*tlv);
  1593. ptr += sizeof(*ch);
  1594. tlv = ptr;
  1595. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  1596. tlv->len = 0;
  1597. /* Note: This is a nested TLV containing:
  1598. * [wmi_tlv][wmi_p2p_noa_descriptor][wmi_tlv]..
  1599. */
  1600. ptr += sizeof(*tlv);
  1601. ptr += 0;
  1602. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev start\n");
  1603. return skb;
  1604. }
  1605. static struct sk_buff *
  1606. ath10k_wmi_tlv_op_gen_vdev_stop(struct ath10k *ar, u32 vdev_id)
  1607. {
  1608. struct wmi_vdev_stop_cmd *cmd;
  1609. struct wmi_tlv *tlv;
  1610. struct sk_buff *skb;
  1611. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1612. if (!skb)
  1613. return ERR_PTR(-ENOMEM);
  1614. tlv = (void *)skb->data;
  1615. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_STOP_CMD);
  1616. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1617. cmd = (void *)tlv->value;
  1618. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1619. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev stop\n");
  1620. return skb;
  1621. }
  1622. static struct sk_buff *
  1623. ath10k_wmi_tlv_op_gen_vdev_up(struct ath10k *ar, u32 vdev_id, u32 aid,
  1624. const u8 *bssid)
  1625. {
  1626. struct wmi_vdev_up_cmd *cmd;
  1627. struct wmi_tlv *tlv;
  1628. struct sk_buff *skb;
  1629. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1630. if (!skb)
  1631. return ERR_PTR(-ENOMEM);
  1632. tlv = (void *)skb->data;
  1633. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_UP_CMD);
  1634. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1635. cmd = (void *)tlv->value;
  1636. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1637. cmd->vdev_assoc_id = __cpu_to_le32(aid);
  1638. ether_addr_copy(cmd->vdev_bssid.addr, bssid);
  1639. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev up\n");
  1640. return skb;
  1641. }
  1642. static struct sk_buff *
  1643. ath10k_wmi_tlv_op_gen_vdev_down(struct ath10k *ar, u32 vdev_id)
  1644. {
  1645. struct wmi_vdev_down_cmd *cmd;
  1646. struct wmi_tlv *tlv;
  1647. struct sk_buff *skb;
  1648. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1649. if (!skb)
  1650. return ERR_PTR(-ENOMEM);
  1651. tlv = (void *)skb->data;
  1652. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_DOWN_CMD);
  1653. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1654. cmd = (void *)tlv->value;
  1655. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1656. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev down\n");
  1657. return skb;
  1658. }
  1659. static struct sk_buff *
  1660. ath10k_wmi_tlv_op_gen_vdev_set_param(struct ath10k *ar, u32 vdev_id,
  1661. u32 param_id, u32 param_value)
  1662. {
  1663. struct wmi_vdev_set_param_cmd *cmd;
  1664. struct wmi_tlv *tlv;
  1665. struct sk_buff *skb;
  1666. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1667. if (!skb)
  1668. return ERR_PTR(-ENOMEM);
  1669. tlv = (void *)skb->data;
  1670. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_SET_PARAM_CMD);
  1671. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1672. cmd = (void *)tlv->value;
  1673. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1674. cmd->param_id = __cpu_to_le32(param_id);
  1675. cmd->param_value = __cpu_to_le32(param_value);
  1676. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev set param\n");
  1677. return skb;
  1678. }
  1679. static struct sk_buff *
  1680. ath10k_wmi_tlv_op_gen_vdev_install_key(struct ath10k *ar,
  1681. const struct wmi_vdev_install_key_arg *arg)
  1682. {
  1683. struct wmi_vdev_install_key_cmd *cmd;
  1684. struct wmi_tlv *tlv;
  1685. struct sk_buff *skb;
  1686. size_t len;
  1687. void *ptr;
  1688. if (arg->key_cipher == WMI_CIPHER_NONE && arg->key_data != NULL)
  1689. return ERR_PTR(-EINVAL);
  1690. if (arg->key_cipher != WMI_CIPHER_NONE && arg->key_data == NULL)
  1691. return ERR_PTR(-EINVAL);
  1692. len = sizeof(*tlv) + sizeof(*cmd) +
  1693. sizeof(*tlv) + roundup(arg->key_len, sizeof(__le32));
  1694. skb = ath10k_wmi_alloc_skb(ar, len);
  1695. if (!skb)
  1696. return ERR_PTR(-ENOMEM);
  1697. ptr = (void *)skb->data;
  1698. tlv = ptr;
  1699. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_INSTALL_KEY_CMD);
  1700. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1701. cmd = (void *)tlv->value;
  1702. cmd->vdev_id = __cpu_to_le32(arg->vdev_id);
  1703. cmd->key_idx = __cpu_to_le32(arg->key_idx);
  1704. cmd->key_flags = __cpu_to_le32(arg->key_flags);
  1705. cmd->key_cipher = __cpu_to_le32(arg->key_cipher);
  1706. cmd->key_len = __cpu_to_le32(arg->key_len);
  1707. cmd->key_txmic_len = __cpu_to_le32(arg->key_txmic_len);
  1708. cmd->key_rxmic_len = __cpu_to_le32(arg->key_rxmic_len);
  1709. if (arg->macaddr)
  1710. ether_addr_copy(cmd->peer_macaddr.addr, arg->macaddr);
  1711. ptr += sizeof(*tlv);
  1712. ptr += sizeof(*cmd);
  1713. tlv = ptr;
  1714. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  1715. tlv->len = __cpu_to_le16(roundup(arg->key_len, sizeof(__le32)));
  1716. if (arg->key_data)
  1717. memcpy(tlv->value, arg->key_data, arg->key_len);
  1718. ptr += sizeof(*tlv);
  1719. ptr += roundup(arg->key_len, sizeof(__le32));
  1720. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev install key\n");
  1721. return skb;
  1722. }
  1723. static void *ath10k_wmi_tlv_put_uapsd_ac(struct ath10k *ar, void *ptr,
  1724. const struct wmi_sta_uapsd_auto_trig_arg *arg)
  1725. {
  1726. struct wmi_sta_uapsd_auto_trig_param *ac;
  1727. struct wmi_tlv *tlv;
  1728. tlv = ptr;
  1729. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STA_UAPSD_AUTO_TRIG_PARAM);
  1730. tlv->len = __cpu_to_le16(sizeof(*ac));
  1731. ac = (void *)tlv->value;
  1732. ac->wmm_ac = __cpu_to_le32(arg->wmm_ac);
  1733. ac->user_priority = __cpu_to_le32(arg->user_priority);
  1734. ac->service_interval = __cpu_to_le32(arg->service_interval);
  1735. ac->suspend_interval = __cpu_to_le32(arg->suspend_interval);
  1736. ac->delay_interval = __cpu_to_le32(arg->delay_interval);
  1737. ath10k_dbg(ar, ATH10K_DBG_WMI,
  1738. "wmi tlv vdev sta uapsd auto trigger ac %d prio %d svc int %d susp int %d delay int %d\n",
  1739. ac->wmm_ac, ac->user_priority, ac->service_interval,
  1740. ac->suspend_interval, ac->delay_interval);
  1741. return ptr + sizeof(*tlv) + sizeof(*ac);
  1742. }
  1743. static struct sk_buff *
  1744. ath10k_wmi_tlv_op_gen_vdev_sta_uapsd(struct ath10k *ar, u32 vdev_id,
  1745. const u8 peer_addr[ETH_ALEN],
  1746. const struct wmi_sta_uapsd_auto_trig_arg *args,
  1747. u32 num_ac)
  1748. {
  1749. struct wmi_sta_uapsd_auto_trig_cmd_fixed_param *cmd;
  1750. struct wmi_sta_uapsd_auto_trig_param *ac;
  1751. struct wmi_tlv *tlv;
  1752. struct sk_buff *skb;
  1753. size_t len;
  1754. size_t ac_tlv_len;
  1755. void *ptr;
  1756. int i;
  1757. ac_tlv_len = num_ac * (sizeof(*tlv) + sizeof(*ac));
  1758. len = sizeof(*tlv) + sizeof(*cmd) +
  1759. sizeof(*tlv) + ac_tlv_len;
  1760. skb = ath10k_wmi_alloc_skb(ar, len);
  1761. if (!skb)
  1762. return ERR_PTR(-ENOMEM);
  1763. ptr = (void *)skb->data;
  1764. tlv = ptr;
  1765. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STA_UAPSD_AUTO_TRIG_CMD);
  1766. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1767. cmd = (void *)tlv->value;
  1768. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1769. cmd->num_ac = __cpu_to_le32(num_ac);
  1770. ether_addr_copy(cmd->peer_macaddr.addr, peer_addr);
  1771. ptr += sizeof(*tlv);
  1772. ptr += sizeof(*cmd);
  1773. tlv = ptr;
  1774. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  1775. tlv->len = __cpu_to_le16(ac_tlv_len);
  1776. ac = (void *)tlv->value;
  1777. ptr += sizeof(*tlv);
  1778. for (i = 0; i < num_ac; i++)
  1779. ptr = ath10k_wmi_tlv_put_uapsd_ac(ar, ptr, &args[i]);
  1780. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev sta uapsd auto trigger\n");
  1781. return skb;
  1782. }
  1783. static void *ath10k_wmi_tlv_put_wmm(void *ptr,
  1784. const struct wmi_wmm_params_arg *arg)
  1785. {
  1786. struct wmi_wmm_params *wmm;
  1787. struct wmi_tlv *tlv;
  1788. tlv = ptr;
  1789. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WMM_PARAMS);
  1790. tlv->len = __cpu_to_le16(sizeof(*wmm));
  1791. wmm = (void *)tlv->value;
  1792. ath10k_wmi_set_wmm_param(wmm, arg);
  1793. return ptr + sizeof(*tlv) + sizeof(*wmm);
  1794. }
  1795. static struct sk_buff *
  1796. ath10k_wmi_tlv_op_gen_vdev_wmm_conf(struct ath10k *ar, u32 vdev_id,
  1797. const struct wmi_wmm_params_all_arg *arg)
  1798. {
  1799. struct wmi_tlv_vdev_set_wmm_cmd *cmd;
  1800. struct wmi_tlv *tlv;
  1801. struct sk_buff *skb;
  1802. size_t len;
  1803. void *ptr;
  1804. len = sizeof(*tlv) + sizeof(*cmd);
  1805. skb = ath10k_wmi_alloc_skb(ar, len);
  1806. if (!skb)
  1807. return ERR_PTR(-ENOMEM);
  1808. ptr = (void *)skb->data;
  1809. tlv = ptr;
  1810. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_SET_WMM_PARAMS_CMD);
  1811. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1812. cmd = (void *)tlv->value;
  1813. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1814. ath10k_wmi_set_wmm_param(&cmd->vdev_wmm_params[0].params, &arg->ac_be);
  1815. ath10k_wmi_set_wmm_param(&cmd->vdev_wmm_params[1].params, &arg->ac_bk);
  1816. ath10k_wmi_set_wmm_param(&cmd->vdev_wmm_params[2].params, &arg->ac_vi);
  1817. ath10k_wmi_set_wmm_param(&cmd->vdev_wmm_params[3].params, &arg->ac_vo);
  1818. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv vdev wmm conf\n");
  1819. return skb;
  1820. }
  1821. static struct sk_buff *
  1822. ath10k_wmi_tlv_op_gen_sta_keepalive(struct ath10k *ar,
  1823. const struct wmi_sta_keepalive_arg *arg)
  1824. {
  1825. struct wmi_tlv_sta_keepalive_cmd *cmd;
  1826. struct wmi_sta_keepalive_arp_resp *arp;
  1827. struct sk_buff *skb;
  1828. struct wmi_tlv *tlv;
  1829. void *ptr;
  1830. size_t len;
  1831. len = sizeof(*tlv) + sizeof(*cmd) +
  1832. sizeof(*tlv) + sizeof(*arp);
  1833. skb = ath10k_wmi_alloc_skb(ar, len);
  1834. if (!skb)
  1835. return ERR_PTR(-ENOMEM);
  1836. ptr = (void *)skb->data;
  1837. tlv = ptr;
  1838. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STA_KEEPALIVE_CMD);
  1839. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1840. cmd = (void *)tlv->value;
  1841. cmd->vdev_id = __cpu_to_le32(arg->vdev_id);
  1842. cmd->enabled = __cpu_to_le32(arg->enabled);
  1843. cmd->method = __cpu_to_le32(arg->method);
  1844. cmd->interval = __cpu_to_le32(arg->interval);
  1845. ptr += sizeof(*tlv);
  1846. ptr += sizeof(*cmd);
  1847. tlv = ptr;
  1848. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STA_KEEPALVE_ARP_RESPONSE);
  1849. tlv->len = __cpu_to_le16(sizeof(*arp));
  1850. arp = (void *)tlv->value;
  1851. arp->src_ip4_addr = arg->src_ip4_addr;
  1852. arp->dest_ip4_addr = arg->dest_ip4_addr;
  1853. ether_addr_copy(arp->dest_mac_addr.addr, arg->dest_mac_addr);
  1854. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv sta keepalive vdev %d enabled %d method %d interval %d\n",
  1855. arg->vdev_id, arg->enabled, arg->method, arg->interval);
  1856. return skb;
  1857. }
  1858. static struct sk_buff *
  1859. ath10k_wmi_tlv_op_gen_peer_create(struct ath10k *ar, u32 vdev_id,
  1860. const u8 peer_addr[ETH_ALEN],
  1861. enum wmi_peer_type peer_type)
  1862. {
  1863. struct wmi_tlv_peer_create_cmd *cmd;
  1864. struct wmi_tlv *tlv;
  1865. struct sk_buff *skb;
  1866. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1867. if (!skb)
  1868. return ERR_PTR(-ENOMEM);
  1869. tlv = (void *)skb->data;
  1870. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PEER_CREATE_CMD);
  1871. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1872. cmd = (void *)tlv->value;
  1873. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1874. cmd->peer_type = __cpu_to_le32(peer_type);
  1875. ether_addr_copy(cmd->peer_addr.addr, peer_addr);
  1876. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv peer create\n");
  1877. return skb;
  1878. }
  1879. static struct sk_buff *
  1880. ath10k_wmi_tlv_op_gen_peer_delete(struct ath10k *ar, u32 vdev_id,
  1881. const u8 peer_addr[ETH_ALEN])
  1882. {
  1883. struct wmi_peer_delete_cmd *cmd;
  1884. struct wmi_tlv *tlv;
  1885. struct sk_buff *skb;
  1886. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1887. if (!skb)
  1888. return ERR_PTR(-ENOMEM);
  1889. tlv = (void *)skb->data;
  1890. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PEER_DELETE_CMD);
  1891. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1892. cmd = (void *)tlv->value;
  1893. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1894. ether_addr_copy(cmd->peer_macaddr.addr, peer_addr);
  1895. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv peer delete\n");
  1896. return skb;
  1897. }
  1898. static struct sk_buff *
  1899. ath10k_wmi_tlv_op_gen_peer_flush(struct ath10k *ar, u32 vdev_id,
  1900. const u8 peer_addr[ETH_ALEN], u32 tid_bitmap)
  1901. {
  1902. struct wmi_peer_flush_tids_cmd *cmd;
  1903. struct wmi_tlv *tlv;
  1904. struct sk_buff *skb;
  1905. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1906. if (!skb)
  1907. return ERR_PTR(-ENOMEM);
  1908. tlv = (void *)skb->data;
  1909. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PEER_FLUSH_TIDS_CMD);
  1910. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1911. cmd = (void *)tlv->value;
  1912. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1913. cmd->peer_tid_bitmap = __cpu_to_le32(tid_bitmap);
  1914. ether_addr_copy(cmd->peer_macaddr.addr, peer_addr);
  1915. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv peer flush\n");
  1916. return skb;
  1917. }
  1918. static struct sk_buff *
  1919. ath10k_wmi_tlv_op_gen_peer_set_param(struct ath10k *ar, u32 vdev_id,
  1920. const u8 *peer_addr,
  1921. enum wmi_peer_param param_id,
  1922. u32 param_value)
  1923. {
  1924. struct wmi_peer_set_param_cmd *cmd;
  1925. struct wmi_tlv *tlv;
  1926. struct sk_buff *skb;
  1927. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  1928. if (!skb)
  1929. return ERR_PTR(-ENOMEM);
  1930. tlv = (void *)skb->data;
  1931. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PEER_SET_PARAM_CMD);
  1932. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1933. cmd = (void *)tlv->value;
  1934. cmd->vdev_id = __cpu_to_le32(vdev_id);
  1935. cmd->param_id = __cpu_to_le32(param_id);
  1936. cmd->param_value = __cpu_to_le32(param_value);
  1937. ether_addr_copy(cmd->peer_macaddr.addr, peer_addr);
  1938. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv peer set param\n");
  1939. return skb;
  1940. }
  1941. static struct sk_buff *
  1942. ath10k_wmi_tlv_op_gen_peer_assoc(struct ath10k *ar,
  1943. const struct wmi_peer_assoc_complete_arg *arg)
  1944. {
  1945. struct wmi_tlv_peer_assoc_cmd *cmd;
  1946. struct wmi_vht_rate_set *vht_rate;
  1947. struct wmi_tlv *tlv;
  1948. struct sk_buff *skb;
  1949. size_t len, legacy_rate_len, ht_rate_len;
  1950. void *ptr;
  1951. if (arg->peer_mpdu_density > 16)
  1952. return ERR_PTR(-EINVAL);
  1953. if (arg->peer_legacy_rates.num_rates > MAX_SUPPORTED_RATES)
  1954. return ERR_PTR(-EINVAL);
  1955. if (arg->peer_ht_rates.num_rates > MAX_SUPPORTED_RATES)
  1956. return ERR_PTR(-EINVAL);
  1957. legacy_rate_len = roundup(arg->peer_legacy_rates.num_rates,
  1958. sizeof(__le32));
  1959. ht_rate_len = roundup(arg->peer_ht_rates.num_rates, sizeof(__le32));
  1960. len = (sizeof(*tlv) + sizeof(*cmd)) +
  1961. (sizeof(*tlv) + legacy_rate_len) +
  1962. (sizeof(*tlv) + ht_rate_len) +
  1963. (sizeof(*tlv) + sizeof(*vht_rate));
  1964. skb = ath10k_wmi_alloc_skb(ar, len);
  1965. if (!skb)
  1966. return ERR_PTR(-ENOMEM);
  1967. ptr = (void *)skb->data;
  1968. tlv = ptr;
  1969. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PEER_ASSOC_COMPLETE_CMD);
  1970. tlv->len = __cpu_to_le16(sizeof(*cmd));
  1971. cmd = (void *)tlv->value;
  1972. cmd->vdev_id = __cpu_to_le32(arg->vdev_id);
  1973. cmd->new_assoc = __cpu_to_le32(arg->peer_reassoc ? 0 : 1);
  1974. cmd->assoc_id = __cpu_to_le32(arg->peer_aid);
  1975. cmd->flags = __cpu_to_le32(arg->peer_flags);
  1976. cmd->caps = __cpu_to_le32(arg->peer_caps);
  1977. cmd->listen_intval = __cpu_to_le32(arg->peer_listen_intval);
  1978. cmd->ht_caps = __cpu_to_le32(arg->peer_ht_caps);
  1979. cmd->max_mpdu = __cpu_to_le32(arg->peer_max_mpdu);
  1980. cmd->mpdu_density = __cpu_to_le32(arg->peer_mpdu_density);
  1981. cmd->rate_caps = __cpu_to_le32(arg->peer_rate_caps);
  1982. cmd->nss = __cpu_to_le32(arg->peer_num_spatial_streams);
  1983. cmd->vht_caps = __cpu_to_le32(arg->peer_vht_caps);
  1984. cmd->phy_mode = __cpu_to_le32(arg->peer_phymode);
  1985. cmd->num_legacy_rates = __cpu_to_le32(arg->peer_legacy_rates.num_rates);
  1986. cmd->num_ht_rates = __cpu_to_le32(arg->peer_ht_rates.num_rates);
  1987. ether_addr_copy(cmd->mac_addr.addr, arg->addr);
  1988. ptr += sizeof(*tlv);
  1989. ptr += sizeof(*cmd);
  1990. tlv = ptr;
  1991. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  1992. tlv->len = __cpu_to_le16(legacy_rate_len);
  1993. memcpy(tlv->value, arg->peer_legacy_rates.rates,
  1994. arg->peer_legacy_rates.num_rates);
  1995. ptr += sizeof(*tlv);
  1996. ptr += legacy_rate_len;
  1997. tlv = ptr;
  1998. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  1999. tlv->len = __cpu_to_le16(ht_rate_len);
  2000. memcpy(tlv->value, arg->peer_ht_rates.rates,
  2001. arg->peer_ht_rates.num_rates);
  2002. ptr += sizeof(*tlv);
  2003. ptr += ht_rate_len;
  2004. tlv = ptr;
  2005. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VHT_RATE_SET);
  2006. tlv->len = __cpu_to_le16(sizeof(*vht_rate));
  2007. vht_rate = (void *)tlv->value;
  2008. vht_rate->rx_max_rate = __cpu_to_le32(arg->peer_vht_rates.rx_max_rate);
  2009. vht_rate->rx_mcs_set = __cpu_to_le32(arg->peer_vht_rates.rx_mcs_set);
  2010. vht_rate->tx_max_rate = __cpu_to_le32(arg->peer_vht_rates.tx_max_rate);
  2011. vht_rate->tx_mcs_set = __cpu_to_le32(arg->peer_vht_rates.tx_mcs_set);
  2012. ptr += sizeof(*tlv);
  2013. ptr += sizeof(*vht_rate);
  2014. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv peer assoc\n");
  2015. return skb;
  2016. }
  2017. static struct sk_buff *
  2018. ath10k_wmi_tlv_op_gen_set_psmode(struct ath10k *ar, u32 vdev_id,
  2019. enum wmi_sta_ps_mode psmode)
  2020. {
  2021. struct wmi_sta_powersave_mode_cmd *cmd;
  2022. struct wmi_tlv *tlv;
  2023. struct sk_buff *skb;
  2024. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2025. if (!skb)
  2026. return ERR_PTR(-ENOMEM);
  2027. tlv = (void *)skb->data;
  2028. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STA_POWERSAVE_MODE_CMD);
  2029. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2030. cmd = (void *)tlv->value;
  2031. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2032. cmd->sta_ps_mode = __cpu_to_le32(psmode);
  2033. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv set psmode\n");
  2034. return skb;
  2035. }
  2036. static struct sk_buff *
  2037. ath10k_wmi_tlv_op_gen_set_sta_ps(struct ath10k *ar, u32 vdev_id,
  2038. enum wmi_sta_powersave_param param_id,
  2039. u32 param_value)
  2040. {
  2041. struct wmi_sta_powersave_param_cmd *cmd;
  2042. struct wmi_tlv *tlv;
  2043. struct sk_buff *skb;
  2044. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2045. if (!skb)
  2046. return ERR_PTR(-ENOMEM);
  2047. tlv = (void *)skb->data;
  2048. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_STA_POWERSAVE_PARAM_CMD);
  2049. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2050. cmd = (void *)tlv->value;
  2051. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2052. cmd->param_id = __cpu_to_le32(param_id);
  2053. cmd->param_value = __cpu_to_le32(param_value);
  2054. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv set sta ps\n");
  2055. return skb;
  2056. }
  2057. static struct sk_buff *
  2058. ath10k_wmi_tlv_op_gen_set_ap_ps(struct ath10k *ar, u32 vdev_id, const u8 *mac,
  2059. enum wmi_ap_ps_peer_param param_id, u32 value)
  2060. {
  2061. struct wmi_ap_ps_peer_cmd *cmd;
  2062. struct wmi_tlv *tlv;
  2063. struct sk_buff *skb;
  2064. if (!mac)
  2065. return ERR_PTR(-EINVAL);
  2066. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2067. if (!skb)
  2068. return ERR_PTR(-ENOMEM);
  2069. tlv = (void *)skb->data;
  2070. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_AP_PS_PEER_CMD);
  2071. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2072. cmd = (void *)tlv->value;
  2073. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2074. cmd->param_id = __cpu_to_le32(param_id);
  2075. cmd->param_value = __cpu_to_le32(value);
  2076. ether_addr_copy(cmd->peer_macaddr.addr, mac);
  2077. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv ap ps param\n");
  2078. return skb;
  2079. }
  2080. static struct sk_buff *
  2081. ath10k_wmi_tlv_op_gen_scan_chan_list(struct ath10k *ar,
  2082. const struct wmi_scan_chan_list_arg *arg)
  2083. {
  2084. struct wmi_tlv_scan_chan_list_cmd *cmd;
  2085. struct wmi_channel *ci;
  2086. struct wmi_channel_arg *ch;
  2087. struct wmi_tlv *tlv;
  2088. struct sk_buff *skb;
  2089. size_t chans_len, len;
  2090. int i;
  2091. void *ptr, *chans;
  2092. chans_len = arg->n_channels * (sizeof(*tlv) + sizeof(*ci));
  2093. len = (sizeof(*tlv) + sizeof(*cmd)) +
  2094. (sizeof(*tlv) + chans_len);
  2095. skb = ath10k_wmi_alloc_skb(ar, len);
  2096. if (!skb)
  2097. return ERR_PTR(-ENOMEM);
  2098. ptr = (void *)skb->data;
  2099. tlv = ptr;
  2100. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_SCAN_CHAN_LIST_CMD);
  2101. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2102. cmd = (void *)tlv->value;
  2103. cmd->num_scan_chans = __cpu_to_le32(arg->n_channels);
  2104. ptr += sizeof(*tlv);
  2105. ptr += sizeof(*cmd);
  2106. tlv = ptr;
  2107. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  2108. tlv->len = __cpu_to_le16(chans_len);
  2109. chans = (void *)tlv->value;
  2110. for (i = 0; i < arg->n_channels; i++) {
  2111. ch = &arg->channels[i];
  2112. tlv = chans;
  2113. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_CHANNEL);
  2114. tlv->len = __cpu_to_le16(sizeof(*ci));
  2115. ci = (void *)tlv->value;
  2116. ath10k_wmi_put_wmi_channel(ci, ch);
  2117. chans += sizeof(*tlv);
  2118. chans += sizeof(*ci);
  2119. }
  2120. ptr += sizeof(*tlv);
  2121. ptr += chans_len;
  2122. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv scan chan list\n");
  2123. return skb;
  2124. }
  2125. static struct sk_buff *
  2126. ath10k_wmi_tlv_op_gen_scan_prob_req_oui(struct ath10k *ar, u32 prob_req_oui)
  2127. {
  2128. struct wmi_scan_prob_req_oui_cmd *cmd;
  2129. struct wmi_tlv *tlv;
  2130. struct sk_buff *skb;
  2131. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2132. if (!skb)
  2133. return ERR_PTR(-ENOMEM);
  2134. tlv = (void *)skb->data;
  2135. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_SCAN_PROB_REQ_OUI_CMD);
  2136. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2137. cmd = (void *)tlv->value;
  2138. cmd->prob_req_oui = __cpu_to_le32(prob_req_oui);
  2139. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv scan prob req oui\n");
  2140. return skb;
  2141. }
  2142. static struct sk_buff *
  2143. ath10k_wmi_tlv_op_gen_beacon_dma(struct ath10k *ar, u32 vdev_id,
  2144. const void *bcn, size_t bcn_len,
  2145. u32 bcn_paddr, bool dtim_zero,
  2146. bool deliver_cab)
  2147. {
  2148. struct wmi_bcn_tx_ref_cmd *cmd;
  2149. struct wmi_tlv *tlv;
  2150. struct sk_buff *skb;
  2151. struct ieee80211_hdr *hdr;
  2152. u16 fc;
  2153. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2154. if (!skb)
  2155. return ERR_PTR(-ENOMEM);
  2156. hdr = (struct ieee80211_hdr *)bcn;
  2157. fc = le16_to_cpu(hdr->frame_control);
  2158. tlv = (void *)skb->data;
  2159. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_BCN_SEND_FROM_HOST_CMD);
  2160. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2161. cmd = (void *)tlv->value;
  2162. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2163. cmd->data_len = __cpu_to_le32(bcn_len);
  2164. cmd->data_ptr = __cpu_to_le32(bcn_paddr);
  2165. cmd->msdu_id = 0;
  2166. cmd->frame_control = __cpu_to_le32(fc);
  2167. cmd->flags = 0;
  2168. if (dtim_zero)
  2169. cmd->flags |= __cpu_to_le32(WMI_BCN_TX_REF_FLAG_DTIM_ZERO);
  2170. if (deliver_cab)
  2171. cmd->flags |= __cpu_to_le32(WMI_BCN_TX_REF_FLAG_DELIVER_CAB);
  2172. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv beacon dma\n");
  2173. return skb;
  2174. }
  2175. static struct sk_buff *
  2176. ath10k_wmi_tlv_op_gen_pdev_set_wmm(struct ath10k *ar,
  2177. const struct wmi_wmm_params_all_arg *arg)
  2178. {
  2179. struct wmi_tlv_pdev_set_wmm_cmd *cmd;
  2180. struct wmi_wmm_params *wmm;
  2181. struct wmi_tlv *tlv;
  2182. struct sk_buff *skb;
  2183. size_t len;
  2184. void *ptr;
  2185. len = (sizeof(*tlv) + sizeof(*cmd)) +
  2186. (4 * (sizeof(*tlv) + sizeof(*wmm)));
  2187. skb = ath10k_wmi_alloc_skb(ar, len);
  2188. if (!skb)
  2189. return ERR_PTR(-ENOMEM);
  2190. ptr = (void *)skb->data;
  2191. tlv = ptr;
  2192. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_SET_WMM_PARAMS_CMD);
  2193. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2194. cmd = (void *)tlv->value;
  2195. /* nothing to set here */
  2196. ptr += sizeof(*tlv);
  2197. ptr += sizeof(*cmd);
  2198. ptr = ath10k_wmi_tlv_put_wmm(ptr, &arg->ac_be);
  2199. ptr = ath10k_wmi_tlv_put_wmm(ptr, &arg->ac_bk);
  2200. ptr = ath10k_wmi_tlv_put_wmm(ptr, &arg->ac_vi);
  2201. ptr = ath10k_wmi_tlv_put_wmm(ptr, &arg->ac_vo);
  2202. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pdev set wmm\n");
  2203. return skb;
  2204. }
  2205. static struct sk_buff *
  2206. ath10k_wmi_tlv_op_gen_request_stats(struct ath10k *ar, u32 stats_mask)
  2207. {
  2208. struct wmi_request_stats_cmd *cmd;
  2209. struct wmi_tlv *tlv;
  2210. struct sk_buff *skb;
  2211. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2212. if (!skb)
  2213. return ERR_PTR(-ENOMEM);
  2214. tlv = (void *)skb->data;
  2215. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_REQUEST_STATS_CMD);
  2216. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2217. cmd = (void *)tlv->value;
  2218. cmd->stats_id = __cpu_to_le32(stats_mask);
  2219. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv request stats\n");
  2220. return skb;
  2221. }
  2222. static int
  2223. ath10k_wmi_mgmt_tx_alloc_msdu_id(struct ath10k *ar, struct sk_buff *skb,
  2224. dma_addr_t paddr)
  2225. {
  2226. struct ath10k_wmi *wmi = &ar->wmi;
  2227. struct ath10k_mgmt_tx_pkt_addr *pkt_addr;
  2228. int ret;
  2229. pkt_addr = kmalloc(sizeof(*pkt_addr), GFP_ATOMIC);
  2230. if (!pkt_addr)
  2231. return -ENOMEM;
  2232. pkt_addr->vaddr = skb;
  2233. pkt_addr->paddr = paddr;
  2234. spin_lock_bh(&ar->data_lock);
  2235. ret = idr_alloc(&wmi->mgmt_pending_tx, pkt_addr, 0,
  2236. wmi->mgmt_max_num_pending_tx, GFP_ATOMIC);
  2237. spin_unlock_bh(&ar->data_lock);
  2238. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi mgmt tx alloc msdu_id ret %d\n", ret);
  2239. return ret;
  2240. }
  2241. static struct sk_buff *
  2242. ath10k_wmi_tlv_op_gen_mgmt_tx_send(struct ath10k *ar, struct sk_buff *msdu,
  2243. dma_addr_t paddr)
  2244. {
  2245. struct ath10k_skb_cb *cb = ATH10K_SKB_CB(msdu);
  2246. struct wmi_tlv_mgmt_tx_cmd *cmd;
  2247. struct ieee80211_hdr *hdr;
  2248. struct ath10k_vif *arvif;
  2249. u32 buf_len = msdu->len;
  2250. struct wmi_tlv *tlv;
  2251. struct sk_buff *skb;
  2252. int len, desc_id;
  2253. u32 vdev_id;
  2254. void *ptr;
  2255. if (!cb->vif)
  2256. return ERR_PTR(-EINVAL);
  2257. hdr = (struct ieee80211_hdr *)msdu->data;
  2258. arvif = (void *)cb->vif->drv_priv;
  2259. vdev_id = arvif->vdev_id;
  2260. if (WARN_ON_ONCE(!ieee80211_is_mgmt(hdr->frame_control)))
  2261. return ERR_PTR(-EINVAL);
  2262. len = sizeof(*cmd) + 2 * sizeof(*tlv);
  2263. if ((ieee80211_is_action(hdr->frame_control) ||
  2264. ieee80211_is_deauth(hdr->frame_control) ||
  2265. ieee80211_is_disassoc(hdr->frame_control)) &&
  2266. ieee80211_has_protected(hdr->frame_control)) {
  2267. len += IEEE80211_CCMP_MIC_LEN;
  2268. buf_len += IEEE80211_CCMP_MIC_LEN;
  2269. }
  2270. buf_len = min_t(u32, buf_len, WMI_TLV_MGMT_TX_FRAME_MAX_LEN);
  2271. buf_len = round_up(buf_len, 4);
  2272. len += buf_len;
  2273. len = round_up(len, 4);
  2274. skb = ath10k_wmi_alloc_skb(ar, len);
  2275. if (!skb)
  2276. return ERR_PTR(-ENOMEM);
  2277. desc_id = ath10k_wmi_mgmt_tx_alloc_msdu_id(ar, msdu, paddr);
  2278. if (desc_id < 0)
  2279. goto err_free_skb;
  2280. ptr = (void *)skb->data;
  2281. tlv = ptr;
  2282. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_MGMT_TX_CMD);
  2283. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2284. cmd = (void *)tlv->value;
  2285. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2286. cmd->desc_id = __cpu_to_le32(desc_id);
  2287. cmd->chanfreq = 0;
  2288. cmd->buf_len = __cpu_to_le32(buf_len);
  2289. cmd->frame_len = __cpu_to_le32(msdu->len);
  2290. cmd->paddr = __cpu_to_le64(paddr);
  2291. ptr += sizeof(*tlv);
  2292. ptr += sizeof(*cmd);
  2293. tlv = ptr;
  2294. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  2295. tlv->len = __cpu_to_le16(buf_len);
  2296. ptr += sizeof(*tlv);
  2297. memcpy(ptr, msdu->data, buf_len);
  2298. return skb;
  2299. err_free_skb:
  2300. dev_kfree_skb(skb);
  2301. return ERR_PTR(desc_id);
  2302. }
  2303. static struct sk_buff *
  2304. ath10k_wmi_tlv_op_gen_force_fw_hang(struct ath10k *ar,
  2305. enum wmi_force_fw_hang_type type,
  2306. u32 delay_ms)
  2307. {
  2308. struct wmi_force_fw_hang_cmd *cmd;
  2309. struct wmi_tlv *tlv;
  2310. struct sk_buff *skb;
  2311. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2312. if (!skb)
  2313. return ERR_PTR(-ENOMEM);
  2314. tlv = (void *)skb->data;
  2315. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_FORCE_FW_HANG_CMD);
  2316. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2317. cmd = (void *)tlv->value;
  2318. cmd->type = __cpu_to_le32(type);
  2319. cmd->delay_ms = __cpu_to_le32(delay_ms);
  2320. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv force fw hang\n");
  2321. return skb;
  2322. }
  2323. static struct sk_buff *
  2324. ath10k_wmi_tlv_op_gen_dbglog_cfg(struct ath10k *ar, u64 module_enable,
  2325. u32 log_level)
  2326. {
  2327. struct wmi_tlv_dbglog_cmd *cmd;
  2328. struct wmi_tlv *tlv;
  2329. struct sk_buff *skb;
  2330. size_t len, bmap_len;
  2331. u32 value;
  2332. void *ptr;
  2333. if (module_enable) {
  2334. value = WMI_TLV_DBGLOG_LOG_LEVEL_VALUE(
  2335. module_enable,
  2336. WMI_TLV_DBGLOG_LOG_LEVEL_VERBOSE);
  2337. } else {
  2338. value = WMI_TLV_DBGLOG_LOG_LEVEL_VALUE(
  2339. WMI_TLV_DBGLOG_ALL_MODULES,
  2340. WMI_TLV_DBGLOG_LOG_LEVEL_WARN);
  2341. }
  2342. bmap_len = 0;
  2343. len = sizeof(*tlv) + sizeof(*cmd) + sizeof(*tlv) + bmap_len;
  2344. skb = ath10k_wmi_alloc_skb(ar, len);
  2345. if (!skb)
  2346. return ERR_PTR(-ENOMEM);
  2347. ptr = (void *)skb->data;
  2348. tlv = ptr;
  2349. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_DEBUG_LOG_CONFIG_CMD);
  2350. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2351. cmd = (void *)tlv->value;
  2352. cmd->param = __cpu_to_le32(WMI_TLV_DBGLOG_PARAM_LOG_LEVEL);
  2353. cmd->value = __cpu_to_le32(value);
  2354. ptr += sizeof(*tlv);
  2355. ptr += sizeof(*cmd);
  2356. tlv = ptr;
  2357. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_UINT32);
  2358. tlv->len = __cpu_to_le16(bmap_len);
  2359. /* nothing to do here */
  2360. ptr += sizeof(*tlv);
  2361. ptr += sizeof(bmap_len);
  2362. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv dbglog value 0x%08x\n", value);
  2363. return skb;
  2364. }
  2365. static struct sk_buff *
  2366. ath10k_wmi_tlv_op_gen_pktlog_enable(struct ath10k *ar, u32 filter)
  2367. {
  2368. struct wmi_tlv_pktlog_enable *cmd;
  2369. struct wmi_tlv *tlv;
  2370. struct sk_buff *skb;
  2371. void *ptr;
  2372. size_t len;
  2373. len = sizeof(*tlv) + sizeof(*cmd);
  2374. skb = ath10k_wmi_alloc_skb(ar, len);
  2375. if (!skb)
  2376. return ERR_PTR(-ENOMEM);
  2377. ptr = (void *)skb->data;
  2378. tlv = ptr;
  2379. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_PKTLOG_ENABLE_CMD);
  2380. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2381. cmd = (void *)tlv->value;
  2382. cmd->filter = __cpu_to_le32(filter);
  2383. ptr += sizeof(*tlv);
  2384. ptr += sizeof(*cmd);
  2385. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pktlog enable filter 0x%08x\n",
  2386. filter);
  2387. return skb;
  2388. }
  2389. static struct sk_buff *
  2390. ath10k_wmi_tlv_op_gen_pdev_get_temperature(struct ath10k *ar)
  2391. {
  2392. struct wmi_tlv_pdev_get_temp_cmd *cmd;
  2393. struct wmi_tlv *tlv;
  2394. struct sk_buff *skb;
  2395. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2396. if (!skb)
  2397. return ERR_PTR(-ENOMEM);
  2398. tlv = (void *)skb->data;
  2399. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_GET_TEMPERATURE_CMD);
  2400. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2401. cmd = (void *)tlv->value;
  2402. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi pdev get temperature tlv\n");
  2403. return skb;
  2404. }
  2405. static struct sk_buff *
  2406. ath10k_wmi_tlv_op_gen_pktlog_disable(struct ath10k *ar)
  2407. {
  2408. struct wmi_tlv_pktlog_disable *cmd;
  2409. struct wmi_tlv *tlv;
  2410. struct sk_buff *skb;
  2411. void *ptr;
  2412. size_t len;
  2413. len = sizeof(*tlv) + sizeof(*cmd);
  2414. skb = ath10k_wmi_alloc_skb(ar, len);
  2415. if (!skb)
  2416. return ERR_PTR(-ENOMEM);
  2417. ptr = (void *)skb->data;
  2418. tlv = ptr;
  2419. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_PKTLOG_DISABLE_CMD);
  2420. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2421. cmd = (void *)tlv->value;
  2422. ptr += sizeof(*tlv);
  2423. ptr += sizeof(*cmd);
  2424. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv pktlog disable\n");
  2425. return skb;
  2426. }
  2427. static struct sk_buff *
  2428. ath10k_wmi_tlv_op_gen_bcn_tmpl(struct ath10k *ar, u32 vdev_id,
  2429. u32 tim_ie_offset, struct sk_buff *bcn,
  2430. u32 prb_caps, u32 prb_erp, void *prb_ies,
  2431. size_t prb_ies_len)
  2432. {
  2433. struct wmi_tlv_bcn_tmpl_cmd *cmd;
  2434. struct wmi_tlv_bcn_prb_info *info;
  2435. struct wmi_tlv *tlv;
  2436. struct sk_buff *skb;
  2437. void *ptr;
  2438. size_t len;
  2439. if (WARN_ON(prb_ies_len > 0 && !prb_ies))
  2440. return ERR_PTR(-EINVAL);
  2441. len = sizeof(*tlv) + sizeof(*cmd) +
  2442. sizeof(*tlv) + sizeof(*info) + prb_ies_len +
  2443. sizeof(*tlv) + roundup(bcn->len, 4);
  2444. skb = ath10k_wmi_alloc_skb(ar, len);
  2445. if (!skb)
  2446. return ERR_PTR(-ENOMEM);
  2447. ptr = (void *)skb->data;
  2448. tlv = ptr;
  2449. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_BCN_TMPL_CMD);
  2450. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2451. cmd = (void *)tlv->value;
  2452. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2453. cmd->tim_ie_offset = __cpu_to_le32(tim_ie_offset);
  2454. cmd->buf_len = __cpu_to_le32(bcn->len);
  2455. ptr += sizeof(*tlv);
  2456. ptr += sizeof(*cmd);
  2457. /* FIXME: prb_ies_len should be probably aligned to 4byte boundary but
  2458. * then it is then impossible to pass original ie len.
  2459. * This chunk is not used yet so if setting probe resp template yields
  2460. * problems with beaconing or crashes firmware look here.
  2461. */
  2462. tlv = ptr;
  2463. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_BCN_PRB_INFO);
  2464. tlv->len = __cpu_to_le16(sizeof(*info) + prb_ies_len);
  2465. info = (void *)tlv->value;
  2466. info->caps = __cpu_to_le32(prb_caps);
  2467. info->erp = __cpu_to_le32(prb_erp);
  2468. memcpy(info->ies, prb_ies, prb_ies_len);
  2469. ptr += sizeof(*tlv);
  2470. ptr += sizeof(*info);
  2471. ptr += prb_ies_len;
  2472. tlv = ptr;
  2473. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  2474. tlv->len = __cpu_to_le16(roundup(bcn->len, 4));
  2475. memcpy(tlv->value, bcn->data, bcn->len);
  2476. /* FIXME: Adjust TSF? */
  2477. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv bcn tmpl vdev_id %i\n",
  2478. vdev_id);
  2479. return skb;
  2480. }
  2481. static struct sk_buff *
  2482. ath10k_wmi_tlv_op_gen_prb_tmpl(struct ath10k *ar, u32 vdev_id,
  2483. struct sk_buff *prb)
  2484. {
  2485. struct wmi_tlv_prb_tmpl_cmd *cmd;
  2486. struct wmi_tlv_bcn_prb_info *info;
  2487. struct wmi_tlv *tlv;
  2488. struct sk_buff *skb;
  2489. void *ptr;
  2490. size_t len;
  2491. len = sizeof(*tlv) + sizeof(*cmd) +
  2492. sizeof(*tlv) + sizeof(*info) +
  2493. sizeof(*tlv) + roundup(prb->len, 4);
  2494. skb = ath10k_wmi_alloc_skb(ar, len);
  2495. if (!skb)
  2496. return ERR_PTR(-ENOMEM);
  2497. ptr = (void *)skb->data;
  2498. tlv = ptr;
  2499. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PRB_TMPL_CMD);
  2500. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2501. cmd = (void *)tlv->value;
  2502. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2503. cmd->buf_len = __cpu_to_le32(prb->len);
  2504. ptr += sizeof(*tlv);
  2505. ptr += sizeof(*cmd);
  2506. tlv = ptr;
  2507. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_BCN_PRB_INFO);
  2508. tlv->len = __cpu_to_le16(sizeof(*info));
  2509. info = (void *)tlv->value;
  2510. info->caps = 0;
  2511. info->erp = 0;
  2512. ptr += sizeof(*tlv);
  2513. ptr += sizeof(*info);
  2514. tlv = ptr;
  2515. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  2516. tlv->len = __cpu_to_le16(roundup(prb->len, 4));
  2517. memcpy(tlv->value, prb->data, prb->len);
  2518. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv prb tmpl vdev_id %i\n",
  2519. vdev_id);
  2520. return skb;
  2521. }
  2522. static struct sk_buff *
  2523. ath10k_wmi_tlv_op_gen_p2p_go_bcn_ie(struct ath10k *ar, u32 vdev_id,
  2524. const u8 *p2p_ie)
  2525. {
  2526. struct wmi_tlv_p2p_go_bcn_ie *cmd;
  2527. struct wmi_tlv *tlv;
  2528. struct sk_buff *skb;
  2529. void *ptr;
  2530. size_t len;
  2531. len = sizeof(*tlv) + sizeof(*cmd) +
  2532. sizeof(*tlv) + roundup(p2p_ie[1] + 2, 4);
  2533. skb = ath10k_wmi_alloc_skb(ar, len);
  2534. if (!skb)
  2535. return ERR_PTR(-ENOMEM);
  2536. ptr = (void *)skb->data;
  2537. tlv = ptr;
  2538. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_P2P_GO_SET_BEACON_IE);
  2539. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2540. cmd = (void *)tlv->value;
  2541. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2542. cmd->ie_len = __cpu_to_le32(p2p_ie[1] + 2);
  2543. ptr += sizeof(*tlv);
  2544. ptr += sizeof(*cmd);
  2545. tlv = ptr;
  2546. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_BYTE);
  2547. tlv->len = __cpu_to_le16(roundup(p2p_ie[1] + 2, 4));
  2548. memcpy(tlv->value, p2p_ie, p2p_ie[1] + 2);
  2549. ptr += sizeof(*tlv);
  2550. ptr += roundup(p2p_ie[1] + 2, 4);
  2551. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv p2p go bcn ie for vdev %i\n",
  2552. vdev_id);
  2553. return skb;
  2554. }
  2555. static struct sk_buff *
  2556. ath10k_wmi_tlv_op_gen_update_fw_tdls_state(struct ath10k *ar, u32 vdev_id,
  2557. enum wmi_tdls_state state)
  2558. {
  2559. struct wmi_tdls_set_state_cmd *cmd;
  2560. struct wmi_tlv *tlv;
  2561. struct sk_buff *skb;
  2562. void *ptr;
  2563. size_t len;
  2564. /* Set to options from wmi_tlv_tdls_options,
  2565. * for now none of them are enabled.
  2566. */
  2567. u32 options = 0;
  2568. if (test_bit(WMI_SERVICE_TDLS_UAPSD_BUFFER_STA, ar->wmi.svc_map))
  2569. options |= WMI_TLV_TDLS_BUFFER_STA_EN;
  2570. /* WMI_TDLS_ENABLE_ACTIVE_EXTERNAL_CONTROL means firm will handle TDLS
  2571. * link inactivity detecting logic.
  2572. */
  2573. if (state == WMI_TDLS_ENABLE_ACTIVE)
  2574. state = WMI_TDLS_ENABLE_ACTIVE_EXTERNAL_CONTROL;
  2575. len = sizeof(*tlv) + sizeof(*cmd);
  2576. skb = ath10k_wmi_alloc_skb(ar, len);
  2577. if (!skb)
  2578. return ERR_PTR(-ENOMEM);
  2579. ptr = (void *)skb->data;
  2580. tlv = ptr;
  2581. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_TDLS_SET_STATE_CMD);
  2582. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2583. cmd = (void *)tlv->value;
  2584. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2585. cmd->state = __cpu_to_le32(state);
  2586. cmd->notification_interval_ms = __cpu_to_le32(5000);
  2587. cmd->tx_discovery_threshold = __cpu_to_le32(100);
  2588. cmd->tx_teardown_threshold = __cpu_to_le32(5);
  2589. cmd->rssi_teardown_threshold = __cpu_to_le32(-75);
  2590. cmd->rssi_delta = __cpu_to_le32(-20);
  2591. cmd->tdls_options = __cpu_to_le32(options);
  2592. cmd->tdls_peer_traffic_ind_window = __cpu_to_le32(2);
  2593. cmd->tdls_peer_traffic_response_timeout_ms = __cpu_to_le32(5000);
  2594. cmd->tdls_puapsd_mask = __cpu_to_le32(0xf);
  2595. cmd->tdls_puapsd_inactivity_time_ms = __cpu_to_le32(0);
  2596. cmd->tdls_puapsd_rx_frame_threshold = __cpu_to_le32(10);
  2597. ptr += sizeof(*tlv);
  2598. ptr += sizeof(*cmd);
  2599. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv update fw tdls state %d for vdev %i\n",
  2600. state, vdev_id);
  2601. return skb;
  2602. }
  2603. static u32 ath10k_wmi_tlv_prepare_peer_qos(u8 uapsd_queues, u8 sp)
  2604. {
  2605. u32 peer_qos = 0;
  2606. if (uapsd_queues & IEEE80211_WMM_IE_STA_QOSINFO_AC_VO)
  2607. peer_qos |= WMI_TLV_TDLS_PEER_QOS_AC_VO;
  2608. if (uapsd_queues & IEEE80211_WMM_IE_STA_QOSINFO_AC_VI)
  2609. peer_qos |= WMI_TLV_TDLS_PEER_QOS_AC_VI;
  2610. if (uapsd_queues & IEEE80211_WMM_IE_STA_QOSINFO_AC_BK)
  2611. peer_qos |= WMI_TLV_TDLS_PEER_QOS_AC_BK;
  2612. if (uapsd_queues & IEEE80211_WMM_IE_STA_QOSINFO_AC_BE)
  2613. peer_qos |= WMI_TLV_TDLS_PEER_QOS_AC_BE;
  2614. peer_qos |= SM(sp, WMI_TLV_TDLS_PEER_SP);
  2615. return peer_qos;
  2616. }
  2617. static struct sk_buff *
  2618. ath10k_wmi_tlv_op_gen_tdls_peer_update(struct ath10k *ar,
  2619. const struct wmi_tdls_peer_update_cmd_arg *arg,
  2620. const struct wmi_tdls_peer_capab_arg *cap,
  2621. const struct wmi_channel_arg *chan_arg)
  2622. {
  2623. struct wmi_tdls_peer_update_cmd *cmd;
  2624. struct wmi_tdls_peer_capab *peer_cap;
  2625. struct wmi_channel *chan;
  2626. struct wmi_tlv *tlv;
  2627. struct sk_buff *skb;
  2628. u32 peer_qos;
  2629. void *ptr;
  2630. int len;
  2631. int i;
  2632. len = sizeof(*tlv) + sizeof(*cmd) +
  2633. sizeof(*tlv) + sizeof(*peer_cap) +
  2634. sizeof(*tlv) + cap->peer_chan_len * sizeof(*chan);
  2635. skb = ath10k_wmi_alloc_skb(ar, len);
  2636. if (!skb)
  2637. return ERR_PTR(-ENOMEM);
  2638. ptr = (void *)skb->data;
  2639. tlv = ptr;
  2640. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_TDLS_PEER_UPDATE_CMD);
  2641. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2642. cmd = (void *)tlv->value;
  2643. cmd->vdev_id = __cpu_to_le32(arg->vdev_id);
  2644. ether_addr_copy(cmd->peer_macaddr.addr, arg->addr);
  2645. cmd->peer_state = __cpu_to_le32(arg->peer_state);
  2646. ptr += sizeof(*tlv);
  2647. ptr += sizeof(*cmd);
  2648. tlv = ptr;
  2649. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_TDLS_PEER_CAPABILITIES);
  2650. tlv->len = __cpu_to_le16(sizeof(*peer_cap));
  2651. peer_cap = (void *)tlv->value;
  2652. peer_qos = ath10k_wmi_tlv_prepare_peer_qos(cap->peer_uapsd_queues,
  2653. cap->peer_max_sp);
  2654. peer_cap->peer_qos = __cpu_to_le32(peer_qos);
  2655. peer_cap->buff_sta_support = __cpu_to_le32(cap->buff_sta_support);
  2656. peer_cap->off_chan_support = __cpu_to_le32(cap->off_chan_support);
  2657. peer_cap->peer_curr_operclass = __cpu_to_le32(cap->peer_curr_operclass);
  2658. peer_cap->self_curr_operclass = __cpu_to_le32(cap->self_curr_operclass);
  2659. peer_cap->peer_chan_len = __cpu_to_le32(cap->peer_chan_len);
  2660. peer_cap->peer_operclass_len = __cpu_to_le32(cap->peer_operclass_len);
  2661. for (i = 0; i < WMI_TDLS_MAX_SUPP_OPER_CLASSES; i++)
  2662. peer_cap->peer_operclass[i] = cap->peer_operclass[i];
  2663. peer_cap->is_peer_responder = __cpu_to_le32(cap->is_peer_responder);
  2664. peer_cap->pref_offchan_num = __cpu_to_le32(cap->pref_offchan_num);
  2665. peer_cap->pref_offchan_bw = __cpu_to_le32(cap->pref_offchan_bw);
  2666. ptr += sizeof(*tlv);
  2667. ptr += sizeof(*peer_cap);
  2668. tlv = ptr;
  2669. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  2670. tlv->len = __cpu_to_le16(cap->peer_chan_len * sizeof(*chan));
  2671. ptr += sizeof(*tlv);
  2672. for (i = 0; i < cap->peer_chan_len; i++) {
  2673. tlv = ptr;
  2674. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_CHANNEL);
  2675. tlv->len = __cpu_to_le16(sizeof(*chan));
  2676. chan = (void *)tlv->value;
  2677. ath10k_wmi_put_wmi_channel(chan, &chan_arg[i]);
  2678. ptr += sizeof(*tlv);
  2679. ptr += sizeof(*chan);
  2680. }
  2681. ath10k_dbg(ar, ATH10K_DBG_WMI,
  2682. "wmi tlv tdls peer update vdev %i state %d n_chans %u\n",
  2683. arg->vdev_id, arg->peer_state, cap->peer_chan_len);
  2684. return skb;
  2685. }
  2686. static struct sk_buff *
  2687. ath10k_wmi_tlv_op_gen_pdev_set_quiet_mode(struct ath10k *ar, u32 period,
  2688. u32 duration, u32 next_offset,
  2689. u32 enabled)
  2690. {
  2691. struct wmi_tlv_set_quiet_cmd *cmd;
  2692. struct wmi_tlv *tlv;
  2693. struct sk_buff *skb;
  2694. skb = ath10k_wmi_alloc_skb(ar, sizeof(*tlv) + sizeof(*cmd));
  2695. if (!skb)
  2696. return ERR_PTR(-ENOMEM);
  2697. tlv = (void *)skb->data;
  2698. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_PDEV_SET_QUIET_CMD);
  2699. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2700. cmd = (void *)tlv->value;
  2701. /* vdev_id is not in use, set to 0 */
  2702. cmd->vdev_id = __cpu_to_le32(0);
  2703. cmd->period = __cpu_to_le32(period);
  2704. cmd->duration = __cpu_to_le32(duration);
  2705. cmd->next_start = __cpu_to_le32(next_offset);
  2706. cmd->enabled = __cpu_to_le32(enabled);
  2707. ath10k_dbg(ar, ATH10K_DBG_WMI,
  2708. "wmi tlv quiet param: period %u duration %u enabled %d\n",
  2709. period, duration, enabled);
  2710. return skb;
  2711. }
  2712. static struct sk_buff *
  2713. ath10k_wmi_tlv_op_gen_wow_enable(struct ath10k *ar)
  2714. {
  2715. struct wmi_tlv_wow_enable_cmd *cmd;
  2716. struct wmi_tlv *tlv;
  2717. struct sk_buff *skb;
  2718. size_t len;
  2719. len = sizeof(*tlv) + sizeof(*cmd);
  2720. skb = ath10k_wmi_alloc_skb(ar, len);
  2721. if (!skb)
  2722. return ERR_PTR(-ENOMEM);
  2723. tlv = (struct wmi_tlv *)skb->data;
  2724. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WOW_ENABLE_CMD);
  2725. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2726. cmd = (void *)tlv->value;
  2727. cmd->enable = __cpu_to_le32(1);
  2728. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv wow enable\n");
  2729. return skb;
  2730. }
  2731. static struct sk_buff *
  2732. ath10k_wmi_tlv_op_gen_wow_add_wakeup_event(struct ath10k *ar,
  2733. u32 vdev_id,
  2734. enum wmi_wow_wakeup_event event,
  2735. u32 enable)
  2736. {
  2737. struct wmi_tlv_wow_add_del_event_cmd *cmd;
  2738. struct wmi_tlv *tlv;
  2739. struct sk_buff *skb;
  2740. size_t len;
  2741. len = sizeof(*tlv) + sizeof(*cmd);
  2742. skb = ath10k_wmi_alloc_skb(ar, len);
  2743. if (!skb)
  2744. return ERR_PTR(-ENOMEM);
  2745. tlv = (struct wmi_tlv *)skb->data;
  2746. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WOW_ADD_DEL_EVT_CMD);
  2747. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2748. cmd = (void *)tlv->value;
  2749. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2750. cmd->is_add = __cpu_to_le32(enable);
  2751. cmd->event_bitmap = __cpu_to_le32(1 << event);
  2752. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv wow add wakeup event %s enable %d vdev_id %d\n",
  2753. wow_wakeup_event(event), enable, vdev_id);
  2754. return skb;
  2755. }
  2756. static struct sk_buff *
  2757. ath10k_wmi_tlv_gen_wow_host_wakeup_ind(struct ath10k *ar)
  2758. {
  2759. struct wmi_tlv_wow_host_wakeup_ind *cmd;
  2760. struct wmi_tlv *tlv;
  2761. struct sk_buff *skb;
  2762. size_t len;
  2763. len = sizeof(*tlv) + sizeof(*cmd);
  2764. skb = ath10k_wmi_alloc_skb(ar, len);
  2765. if (!skb)
  2766. return ERR_PTR(-ENOMEM);
  2767. tlv = (struct wmi_tlv *)skb->data;
  2768. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WOW_HOSTWAKEUP_FROM_SLEEP_CMD);
  2769. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2770. cmd = (void *)tlv->value;
  2771. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv wow host wakeup ind\n");
  2772. return skb;
  2773. }
  2774. static struct sk_buff *
  2775. ath10k_wmi_tlv_op_gen_wow_add_pattern(struct ath10k *ar, u32 vdev_id,
  2776. u32 pattern_id, const u8 *pattern,
  2777. const u8 *bitmask, int pattern_len,
  2778. int pattern_offset)
  2779. {
  2780. struct wmi_tlv_wow_add_pattern_cmd *cmd;
  2781. struct wmi_tlv_wow_bitmap_pattern *bitmap;
  2782. struct wmi_tlv *tlv;
  2783. struct sk_buff *skb;
  2784. void *ptr;
  2785. size_t len;
  2786. len = sizeof(*tlv) + sizeof(*cmd) +
  2787. sizeof(*tlv) + /* array struct */
  2788. sizeof(*tlv) + sizeof(*bitmap) + /* bitmap */
  2789. sizeof(*tlv) + /* empty ipv4 sync */
  2790. sizeof(*tlv) + /* empty ipv6 sync */
  2791. sizeof(*tlv) + /* empty magic */
  2792. sizeof(*tlv) + /* empty info timeout */
  2793. sizeof(*tlv) + sizeof(u32); /* ratelimit interval */
  2794. skb = ath10k_wmi_alloc_skb(ar, len);
  2795. if (!skb)
  2796. return ERR_PTR(-ENOMEM);
  2797. /* cmd */
  2798. ptr = (void *)skb->data;
  2799. tlv = ptr;
  2800. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WOW_ADD_PATTERN_CMD);
  2801. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2802. cmd = (void *)tlv->value;
  2803. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2804. cmd->pattern_id = __cpu_to_le32(pattern_id);
  2805. cmd->pattern_type = __cpu_to_le32(WOW_BITMAP_PATTERN);
  2806. ptr += sizeof(*tlv);
  2807. ptr += sizeof(*cmd);
  2808. /* bitmap */
  2809. tlv = ptr;
  2810. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  2811. tlv->len = __cpu_to_le16(sizeof(*tlv) + sizeof(*bitmap));
  2812. ptr += sizeof(*tlv);
  2813. tlv = ptr;
  2814. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WOW_BITMAP_PATTERN_T);
  2815. tlv->len = __cpu_to_le16(sizeof(*bitmap));
  2816. bitmap = (void *)tlv->value;
  2817. memcpy(bitmap->patternbuf, pattern, pattern_len);
  2818. memcpy(bitmap->bitmaskbuf, bitmask, pattern_len);
  2819. bitmap->pattern_offset = __cpu_to_le32(pattern_offset);
  2820. bitmap->pattern_len = __cpu_to_le32(pattern_len);
  2821. bitmap->bitmask_len = __cpu_to_le32(pattern_len);
  2822. bitmap->pattern_id = __cpu_to_le32(pattern_id);
  2823. ptr += sizeof(*tlv);
  2824. ptr += sizeof(*bitmap);
  2825. /* ipv4 sync */
  2826. tlv = ptr;
  2827. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  2828. tlv->len = __cpu_to_le16(0);
  2829. ptr += sizeof(*tlv);
  2830. /* ipv6 sync */
  2831. tlv = ptr;
  2832. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  2833. tlv->len = __cpu_to_le16(0);
  2834. ptr += sizeof(*tlv);
  2835. /* magic */
  2836. tlv = ptr;
  2837. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_STRUCT);
  2838. tlv->len = __cpu_to_le16(0);
  2839. ptr += sizeof(*tlv);
  2840. /* pattern info timeout */
  2841. tlv = ptr;
  2842. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_UINT32);
  2843. tlv->len = __cpu_to_le16(0);
  2844. ptr += sizeof(*tlv);
  2845. /* ratelimit interval */
  2846. tlv = ptr;
  2847. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_ARRAY_UINT32);
  2848. tlv->len = __cpu_to_le16(sizeof(u32));
  2849. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv wow add pattern vdev_id %d pattern_id %d, pattern_offset %d\n",
  2850. vdev_id, pattern_id, pattern_offset);
  2851. return skb;
  2852. }
  2853. static struct sk_buff *
  2854. ath10k_wmi_tlv_op_gen_wow_del_pattern(struct ath10k *ar, u32 vdev_id,
  2855. u32 pattern_id)
  2856. {
  2857. struct wmi_tlv_wow_del_pattern_cmd *cmd;
  2858. struct wmi_tlv *tlv;
  2859. struct sk_buff *skb;
  2860. size_t len;
  2861. len = sizeof(*tlv) + sizeof(*cmd);
  2862. skb = ath10k_wmi_alloc_skb(ar, len);
  2863. if (!skb)
  2864. return ERR_PTR(-ENOMEM);
  2865. tlv = (struct wmi_tlv *)skb->data;
  2866. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_WOW_DEL_PATTERN_CMD);
  2867. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2868. cmd = (void *)tlv->value;
  2869. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2870. cmd->pattern_id = __cpu_to_le32(pattern_id);
  2871. cmd->pattern_type = __cpu_to_le32(WOW_BITMAP_PATTERN);
  2872. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv wow del pattern vdev_id %d pattern_id %d\n",
  2873. vdev_id, pattern_id);
  2874. return skb;
  2875. }
  2876. static struct sk_buff *
  2877. ath10k_wmi_tlv_op_gen_adaptive_qcs(struct ath10k *ar, bool enable)
  2878. {
  2879. struct wmi_tlv_adaptive_qcs *cmd;
  2880. struct wmi_tlv *tlv;
  2881. struct sk_buff *skb;
  2882. void *ptr;
  2883. size_t len;
  2884. len = sizeof(*tlv) + sizeof(*cmd);
  2885. skb = ath10k_wmi_alloc_skb(ar, len);
  2886. if (!skb)
  2887. return ERR_PTR(-ENOMEM);
  2888. ptr = (void *)skb->data;
  2889. tlv = ptr;
  2890. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_RESMGR_ADAPTIVE_OCS_CMD);
  2891. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2892. cmd = (void *)tlv->value;
  2893. cmd->enable = __cpu_to_le32(enable ? 1 : 0);
  2894. ptr += sizeof(*tlv);
  2895. ptr += sizeof(*cmd);
  2896. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv adaptive qcs %d\n", enable);
  2897. return skb;
  2898. }
  2899. static struct sk_buff *
  2900. ath10k_wmi_tlv_op_gen_echo(struct ath10k *ar, u32 value)
  2901. {
  2902. struct wmi_echo_cmd *cmd;
  2903. struct wmi_tlv *tlv;
  2904. struct sk_buff *skb;
  2905. void *ptr;
  2906. size_t len;
  2907. len = sizeof(*tlv) + sizeof(*cmd);
  2908. skb = ath10k_wmi_alloc_skb(ar, len);
  2909. if (!skb)
  2910. return ERR_PTR(-ENOMEM);
  2911. ptr = (void *)skb->data;
  2912. tlv = ptr;
  2913. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_ECHO_CMD);
  2914. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2915. cmd = (void *)tlv->value;
  2916. cmd->value = cpu_to_le32(value);
  2917. ptr += sizeof(*tlv);
  2918. ptr += sizeof(*cmd);
  2919. ath10k_dbg(ar, ATH10K_DBG_WMI, "wmi tlv echo value 0x%08x\n", value);
  2920. return skb;
  2921. }
  2922. static struct sk_buff *
  2923. ath10k_wmi_tlv_op_gen_vdev_spectral_conf(struct ath10k *ar,
  2924. const struct wmi_vdev_spectral_conf_arg *arg)
  2925. {
  2926. struct wmi_vdev_spectral_conf_cmd *cmd;
  2927. struct sk_buff *skb;
  2928. struct wmi_tlv *tlv;
  2929. void *ptr;
  2930. size_t len;
  2931. len = sizeof(*tlv) + sizeof(*cmd);
  2932. skb = ath10k_wmi_alloc_skb(ar, len);
  2933. if (!skb)
  2934. return ERR_PTR(-ENOMEM);
  2935. ptr = (void *)skb->data;
  2936. tlv = ptr;
  2937. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_SPECTRAL_CONFIGURE_CMD);
  2938. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2939. cmd = (void *)tlv->value;
  2940. cmd->vdev_id = __cpu_to_le32(arg->vdev_id);
  2941. cmd->scan_count = __cpu_to_le32(arg->scan_count);
  2942. cmd->scan_period = __cpu_to_le32(arg->scan_period);
  2943. cmd->scan_priority = __cpu_to_le32(arg->scan_priority);
  2944. cmd->scan_fft_size = __cpu_to_le32(arg->scan_fft_size);
  2945. cmd->scan_gc_ena = __cpu_to_le32(arg->scan_gc_ena);
  2946. cmd->scan_restart_ena = __cpu_to_le32(arg->scan_restart_ena);
  2947. cmd->scan_noise_floor_ref = __cpu_to_le32(arg->scan_noise_floor_ref);
  2948. cmd->scan_init_delay = __cpu_to_le32(arg->scan_init_delay);
  2949. cmd->scan_nb_tone_thr = __cpu_to_le32(arg->scan_nb_tone_thr);
  2950. cmd->scan_str_bin_thr = __cpu_to_le32(arg->scan_str_bin_thr);
  2951. cmd->scan_wb_rpt_mode = __cpu_to_le32(arg->scan_wb_rpt_mode);
  2952. cmd->scan_rssi_rpt_mode = __cpu_to_le32(arg->scan_rssi_rpt_mode);
  2953. cmd->scan_rssi_thr = __cpu_to_le32(arg->scan_rssi_thr);
  2954. cmd->scan_pwr_format = __cpu_to_le32(arg->scan_pwr_format);
  2955. cmd->scan_rpt_mode = __cpu_to_le32(arg->scan_rpt_mode);
  2956. cmd->scan_bin_scale = __cpu_to_le32(arg->scan_bin_scale);
  2957. cmd->scan_dbm_adj = __cpu_to_le32(arg->scan_dbm_adj);
  2958. cmd->scan_chn_mask = __cpu_to_le32(arg->scan_chn_mask);
  2959. return skb;
  2960. }
  2961. static struct sk_buff *
  2962. ath10k_wmi_tlv_op_gen_vdev_spectral_enable(struct ath10k *ar, u32 vdev_id,
  2963. u32 trigger, u32 enable)
  2964. {
  2965. struct wmi_vdev_spectral_enable_cmd *cmd;
  2966. struct sk_buff *skb;
  2967. struct wmi_tlv *tlv;
  2968. void *ptr;
  2969. size_t len;
  2970. len = sizeof(*tlv) + sizeof(*cmd);
  2971. skb = ath10k_wmi_alloc_skb(ar, len);
  2972. if (!skb)
  2973. return ERR_PTR(-ENOMEM);
  2974. ptr = (void *)skb->data;
  2975. tlv = ptr;
  2976. tlv->tag = __cpu_to_le16(WMI_TLV_TAG_STRUCT_VDEV_SPECTRAL_ENABLE_CMD);
  2977. tlv->len = __cpu_to_le16(sizeof(*cmd));
  2978. cmd = (void *)tlv->value;
  2979. cmd->vdev_id = __cpu_to_le32(vdev_id);
  2980. cmd->trigger_cmd = __cpu_to_le32(trigger);
  2981. cmd->enable_cmd = __cpu_to_le32(enable);
  2982. return skb;
  2983. }
  2984. /****************/
  2985. /* TLV mappings */
  2986. /****************/
  2987. static struct wmi_cmd_map wmi_tlv_cmd_map = {
  2988. .init_cmdid = WMI_TLV_INIT_CMDID,
  2989. .start_scan_cmdid = WMI_TLV_START_SCAN_CMDID,
  2990. .stop_scan_cmdid = WMI_TLV_STOP_SCAN_CMDID,
  2991. .scan_chan_list_cmdid = WMI_TLV_SCAN_CHAN_LIST_CMDID,
  2992. .scan_sch_prio_tbl_cmdid = WMI_TLV_SCAN_SCH_PRIO_TBL_CMDID,
  2993. .scan_prob_req_oui_cmdid = WMI_TLV_SCAN_PROB_REQ_OUI_CMDID,
  2994. .pdev_set_regdomain_cmdid = WMI_TLV_PDEV_SET_REGDOMAIN_CMDID,
  2995. .pdev_set_channel_cmdid = WMI_TLV_PDEV_SET_CHANNEL_CMDID,
  2996. .pdev_set_param_cmdid = WMI_TLV_PDEV_SET_PARAM_CMDID,
  2997. .pdev_pktlog_enable_cmdid = WMI_TLV_PDEV_PKTLOG_ENABLE_CMDID,
  2998. .pdev_pktlog_disable_cmdid = WMI_TLV_PDEV_PKTLOG_DISABLE_CMDID,
  2999. .pdev_set_wmm_params_cmdid = WMI_TLV_PDEV_SET_WMM_PARAMS_CMDID,
  3000. .pdev_set_ht_cap_ie_cmdid = WMI_TLV_PDEV_SET_HT_CAP_IE_CMDID,
  3001. .pdev_set_vht_cap_ie_cmdid = WMI_TLV_PDEV_SET_VHT_CAP_IE_CMDID,
  3002. .pdev_set_dscp_tid_map_cmdid = WMI_TLV_PDEV_SET_DSCP_TID_MAP_CMDID,
  3003. .pdev_set_quiet_mode_cmdid = WMI_TLV_PDEV_SET_QUIET_MODE_CMDID,
  3004. .pdev_green_ap_ps_enable_cmdid = WMI_TLV_PDEV_GREEN_AP_PS_ENABLE_CMDID,
  3005. .pdev_get_tpc_config_cmdid = WMI_TLV_PDEV_GET_TPC_CONFIG_CMDID,
  3006. .pdev_set_base_macaddr_cmdid = WMI_TLV_PDEV_SET_BASE_MACADDR_CMDID,
  3007. .vdev_create_cmdid = WMI_TLV_VDEV_CREATE_CMDID,
  3008. .vdev_delete_cmdid = WMI_TLV_VDEV_DELETE_CMDID,
  3009. .vdev_start_request_cmdid = WMI_TLV_VDEV_START_REQUEST_CMDID,
  3010. .vdev_restart_request_cmdid = WMI_TLV_VDEV_RESTART_REQUEST_CMDID,
  3011. .vdev_up_cmdid = WMI_TLV_VDEV_UP_CMDID,
  3012. .vdev_stop_cmdid = WMI_TLV_VDEV_STOP_CMDID,
  3013. .vdev_down_cmdid = WMI_TLV_VDEV_DOWN_CMDID,
  3014. .vdev_set_param_cmdid = WMI_TLV_VDEV_SET_PARAM_CMDID,
  3015. .vdev_install_key_cmdid = WMI_TLV_VDEV_INSTALL_KEY_CMDID,
  3016. .peer_create_cmdid = WMI_TLV_PEER_CREATE_CMDID,
  3017. .peer_delete_cmdid = WMI_TLV_PEER_DELETE_CMDID,
  3018. .peer_flush_tids_cmdid = WMI_TLV_PEER_FLUSH_TIDS_CMDID,
  3019. .peer_set_param_cmdid = WMI_TLV_PEER_SET_PARAM_CMDID,
  3020. .peer_assoc_cmdid = WMI_TLV_PEER_ASSOC_CMDID,
  3021. .peer_add_wds_entry_cmdid = WMI_TLV_PEER_ADD_WDS_ENTRY_CMDID,
  3022. .peer_remove_wds_entry_cmdid = WMI_TLV_PEER_REMOVE_WDS_ENTRY_CMDID,
  3023. .peer_mcast_group_cmdid = WMI_TLV_PEER_MCAST_GROUP_CMDID,
  3024. .bcn_tx_cmdid = WMI_TLV_BCN_TX_CMDID,
  3025. .pdev_send_bcn_cmdid = WMI_TLV_PDEV_SEND_BCN_CMDID,
  3026. .bcn_tmpl_cmdid = WMI_TLV_BCN_TMPL_CMDID,
  3027. .bcn_filter_rx_cmdid = WMI_TLV_BCN_FILTER_RX_CMDID,
  3028. .prb_req_filter_rx_cmdid = WMI_TLV_PRB_REQ_FILTER_RX_CMDID,
  3029. .mgmt_tx_cmdid = WMI_TLV_MGMT_TX_CMDID,
  3030. .mgmt_tx_send_cmdid = WMI_TLV_MGMT_TX_SEND_CMD,
  3031. .prb_tmpl_cmdid = WMI_TLV_PRB_TMPL_CMDID,
  3032. .addba_clear_resp_cmdid = WMI_TLV_ADDBA_CLEAR_RESP_CMDID,
  3033. .addba_send_cmdid = WMI_TLV_ADDBA_SEND_CMDID,
  3034. .addba_status_cmdid = WMI_TLV_ADDBA_STATUS_CMDID,
  3035. .delba_send_cmdid = WMI_TLV_DELBA_SEND_CMDID,
  3036. .addba_set_resp_cmdid = WMI_TLV_ADDBA_SET_RESP_CMDID,
  3037. .send_singleamsdu_cmdid = WMI_TLV_SEND_SINGLEAMSDU_CMDID,
  3038. .sta_powersave_mode_cmdid = WMI_TLV_STA_POWERSAVE_MODE_CMDID,
  3039. .sta_powersave_param_cmdid = WMI_TLV_STA_POWERSAVE_PARAM_CMDID,
  3040. .sta_mimo_ps_mode_cmdid = WMI_TLV_STA_MIMO_PS_MODE_CMDID,
  3041. .pdev_dfs_enable_cmdid = WMI_TLV_PDEV_DFS_ENABLE_CMDID,
  3042. .pdev_dfs_disable_cmdid = WMI_TLV_PDEV_DFS_DISABLE_CMDID,
  3043. .roam_scan_mode = WMI_TLV_ROAM_SCAN_MODE,
  3044. .roam_scan_rssi_threshold = WMI_TLV_ROAM_SCAN_RSSI_THRESHOLD,
  3045. .roam_scan_period = WMI_TLV_ROAM_SCAN_PERIOD,
  3046. .roam_scan_rssi_change_threshold =
  3047. WMI_TLV_ROAM_SCAN_RSSI_CHANGE_THRESHOLD,
  3048. .roam_ap_profile = WMI_TLV_ROAM_AP_PROFILE,
  3049. .ofl_scan_add_ap_profile = WMI_TLV_ROAM_AP_PROFILE,
  3050. .ofl_scan_remove_ap_profile = WMI_TLV_OFL_SCAN_REMOVE_AP_PROFILE,
  3051. .ofl_scan_period = WMI_TLV_OFL_SCAN_PERIOD,
  3052. .p2p_dev_set_device_info = WMI_TLV_P2P_DEV_SET_DEVICE_INFO,
  3053. .p2p_dev_set_discoverability = WMI_TLV_P2P_DEV_SET_DISCOVERABILITY,
  3054. .p2p_go_set_beacon_ie = WMI_TLV_P2P_GO_SET_BEACON_IE,
  3055. .p2p_go_set_probe_resp_ie = WMI_TLV_P2P_GO_SET_PROBE_RESP_IE,
  3056. .p2p_set_vendor_ie_data_cmdid = WMI_TLV_P2P_SET_VENDOR_IE_DATA_CMDID,
  3057. .ap_ps_peer_param_cmdid = WMI_TLV_AP_PS_PEER_PARAM_CMDID,
  3058. .ap_ps_peer_uapsd_coex_cmdid = WMI_TLV_AP_PS_PEER_UAPSD_COEX_CMDID,
  3059. .peer_rate_retry_sched_cmdid = WMI_TLV_PEER_RATE_RETRY_SCHED_CMDID,
  3060. .wlan_profile_trigger_cmdid = WMI_TLV_WLAN_PROFILE_TRIGGER_CMDID,
  3061. .wlan_profile_set_hist_intvl_cmdid =
  3062. WMI_TLV_WLAN_PROFILE_SET_HIST_INTVL_CMDID,
  3063. .wlan_profile_get_profile_data_cmdid =
  3064. WMI_TLV_WLAN_PROFILE_GET_PROFILE_DATA_CMDID,
  3065. .wlan_profile_enable_profile_id_cmdid =
  3066. WMI_TLV_WLAN_PROFILE_ENABLE_PROFILE_ID_CMDID,
  3067. .wlan_profile_list_profile_id_cmdid =
  3068. WMI_TLV_WLAN_PROFILE_LIST_PROFILE_ID_CMDID,
  3069. .pdev_suspend_cmdid = WMI_TLV_PDEV_SUSPEND_CMDID,
  3070. .pdev_resume_cmdid = WMI_TLV_PDEV_RESUME_CMDID,
  3071. .add_bcn_filter_cmdid = WMI_TLV_ADD_BCN_FILTER_CMDID,
  3072. .rmv_bcn_filter_cmdid = WMI_TLV_RMV_BCN_FILTER_CMDID,
  3073. .wow_add_wake_pattern_cmdid = WMI_TLV_WOW_ADD_WAKE_PATTERN_CMDID,
  3074. .wow_del_wake_pattern_cmdid = WMI_TLV_WOW_DEL_WAKE_PATTERN_CMDID,
  3075. .wow_enable_disable_wake_event_cmdid =
  3076. WMI_TLV_WOW_ENABLE_DISABLE_WAKE_EVENT_CMDID,
  3077. .wow_enable_cmdid = WMI_TLV_WOW_ENABLE_CMDID,
  3078. .wow_hostwakeup_from_sleep_cmdid =
  3079. WMI_TLV_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID,
  3080. .rtt_measreq_cmdid = WMI_TLV_RTT_MEASREQ_CMDID,
  3081. .rtt_tsf_cmdid = WMI_TLV_RTT_TSF_CMDID,
  3082. .vdev_spectral_scan_configure_cmdid = WMI_TLV_SPECTRAL_SCAN_CONF_CMDID,
  3083. .vdev_spectral_scan_enable_cmdid = WMI_TLV_SPECTRAL_SCAN_ENABLE_CMDID,
  3084. .request_stats_cmdid = WMI_TLV_REQUEST_STATS_CMDID,
  3085. .set_arp_ns_offload_cmdid = WMI_TLV_SET_ARP_NS_OFFLOAD_CMDID,
  3086. .network_list_offload_config_cmdid =
  3087. WMI_TLV_NETWORK_LIST_OFFLOAD_CONFIG_CMDID,
  3088. .gtk_offload_cmdid = WMI_TLV_GTK_OFFLOAD_CMDID,
  3089. .csa_offload_enable_cmdid = WMI_TLV_CSA_OFFLOAD_ENABLE_CMDID,
  3090. .csa_offload_chanswitch_cmdid = WMI_TLV_CSA_OFFLOAD_CHANSWITCH_CMDID,
  3091. .chatter_set_mode_cmdid = WMI_TLV_CHATTER_SET_MODE_CMDID,
  3092. .peer_tid_addba_cmdid = WMI_TLV_PEER_TID_ADDBA_CMDID,
  3093. .peer_tid_delba_cmdid = WMI_TLV_PEER_TID_DELBA_CMDID,
  3094. .sta_dtim_ps_method_cmdid = WMI_TLV_STA_DTIM_PS_METHOD_CMDID,
  3095. .sta_uapsd_auto_trig_cmdid = WMI_TLV_STA_UAPSD_AUTO_TRIG_CMDID,
  3096. .sta_keepalive_cmd = WMI_TLV_STA_KEEPALIVE_CMDID,
  3097. .echo_cmdid = WMI_TLV_ECHO_CMDID,
  3098. .pdev_utf_cmdid = WMI_TLV_PDEV_UTF_CMDID,
  3099. .dbglog_cfg_cmdid = WMI_TLV_DBGLOG_CFG_CMDID,
  3100. .pdev_qvit_cmdid = WMI_TLV_PDEV_QVIT_CMDID,
  3101. .pdev_ftm_intg_cmdid = WMI_TLV_PDEV_FTM_INTG_CMDID,
  3102. .vdev_set_keepalive_cmdid = WMI_TLV_VDEV_SET_KEEPALIVE_CMDID,
  3103. .vdev_get_keepalive_cmdid = WMI_TLV_VDEV_GET_KEEPALIVE_CMDID,
  3104. .force_fw_hang_cmdid = WMI_TLV_FORCE_FW_HANG_CMDID,
  3105. .gpio_config_cmdid = WMI_TLV_GPIO_CONFIG_CMDID,
  3106. .gpio_output_cmdid = WMI_TLV_GPIO_OUTPUT_CMDID,
  3107. .pdev_get_temperature_cmdid = WMI_TLV_PDEV_GET_TEMPERATURE_CMDID,
  3108. .vdev_set_wmm_params_cmdid = WMI_TLV_VDEV_SET_WMM_PARAMS_CMDID,
  3109. .tdls_set_state_cmdid = WMI_TLV_TDLS_SET_STATE_CMDID,
  3110. .tdls_peer_update_cmdid = WMI_TLV_TDLS_PEER_UPDATE_CMDID,
  3111. .adaptive_qcs_cmdid = WMI_TLV_RESMGR_ADAPTIVE_OCS_CMDID,
  3112. .scan_update_request_cmdid = WMI_CMD_UNSUPPORTED,
  3113. .vdev_standby_response_cmdid = WMI_CMD_UNSUPPORTED,
  3114. .vdev_resume_response_cmdid = WMI_CMD_UNSUPPORTED,
  3115. .wlan_peer_caching_add_peer_cmdid = WMI_CMD_UNSUPPORTED,
  3116. .wlan_peer_caching_evict_peer_cmdid = WMI_CMD_UNSUPPORTED,
  3117. .wlan_peer_caching_restore_peer_cmdid = WMI_CMD_UNSUPPORTED,
  3118. .wlan_peer_caching_print_all_peers_info_cmdid = WMI_CMD_UNSUPPORTED,
  3119. .peer_update_wds_entry_cmdid = WMI_CMD_UNSUPPORTED,
  3120. .peer_add_proxy_sta_entry_cmdid = WMI_CMD_UNSUPPORTED,
  3121. .rtt_keepalive_cmdid = WMI_CMD_UNSUPPORTED,
  3122. .oem_req_cmdid = WMI_CMD_UNSUPPORTED,
  3123. .nan_cmdid = WMI_CMD_UNSUPPORTED,
  3124. .vdev_ratemask_cmdid = WMI_CMD_UNSUPPORTED,
  3125. .qboost_cfg_cmdid = WMI_CMD_UNSUPPORTED,
  3126. .pdev_smart_ant_enable_cmdid = WMI_CMD_UNSUPPORTED,
  3127. .pdev_smart_ant_set_rx_antenna_cmdid = WMI_CMD_UNSUPPORTED,
  3128. .peer_smart_ant_set_tx_antenna_cmdid = WMI_CMD_UNSUPPORTED,
  3129. .peer_smart_ant_set_train_info_cmdid = WMI_CMD_UNSUPPORTED,
  3130. .peer_smart_ant_set_node_config_ops_cmdid = WMI_CMD_UNSUPPORTED,
  3131. .pdev_set_antenna_switch_table_cmdid = WMI_CMD_UNSUPPORTED,
  3132. .pdev_set_ctl_table_cmdid = WMI_CMD_UNSUPPORTED,
  3133. .pdev_set_mimogain_table_cmdid = WMI_CMD_UNSUPPORTED,
  3134. .pdev_ratepwr_table_cmdid = WMI_CMD_UNSUPPORTED,
  3135. .pdev_ratepwr_chainmsk_table_cmdid = WMI_CMD_UNSUPPORTED,
  3136. .pdev_fips_cmdid = WMI_CMD_UNSUPPORTED,
  3137. .tt_set_conf_cmdid = WMI_CMD_UNSUPPORTED,
  3138. .fwtest_cmdid = WMI_CMD_UNSUPPORTED,
  3139. .vdev_atf_request_cmdid = WMI_CMD_UNSUPPORTED,
  3140. .peer_atf_request_cmdid = WMI_CMD_UNSUPPORTED,
  3141. .pdev_get_ani_cck_config_cmdid = WMI_CMD_UNSUPPORTED,
  3142. .pdev_get_ani_ofdm_config_cmdid = WMI_CMD_UNSUPPORTED,
  3143. .pdev_reserve_ast_entry_cmdid = WMI_CMD_UNSUPPORTED,
  3144. };
  3145. static struct wmi_pdev_param_map wmi_tlv_pdev_param_map = {
  3146. .tx_chain_mask = WMI_TLV_PDEV_PARAM_TX_CHAIN_MASK,
  3147. .rx_chain_mask = WMI_TLV_PDEV_PARAM_RX_CHAIN_MASK,
  3148. .txpower_limit2g = WMI_TLV_PDEV_PARAM_TXPOWER_LIMIT2G,
  3149. .txpower_limit5g = WMI_TLV_PDEV_PARAM_TXPOWER_LIMIT5G,
  3150. .txpower_scale = WMI_TLV_PDEV_PARAM_TXPOWER_SCALE,
  3151. .beacon_gen_mode = WMI_TLV_PDEV_PARAM_BEACON_GEN_MODE,
  3152. .beacon_tx_mode = WMI_TLV_PDEV_PARAM_BEACON_TX_MODE,
  3153. .resmgr_offchan_mode = WMI_TLV_PDEV_PARAM_RESMGR_OFFCHAN_MODE,
  3154. .protection_mode = WMI_TLV_PDEV_PARAM_PROTECTION_MODE,
  3155. .dynamic_bw = WMI_TLV_PDEV_PARAM_DYNAMIC_BW,
  3156. .non_agg_sw_retry_th = WMI_TLV_PDEV_PARAM_NON_AGG_SW_RETRY_TH,
  3157. .agg_sw_retry_th = WMI_TLV_PDEV_PARAM_AGG_SW_RETRY_TH,
  3158. .sta_kickout_th = WMI_TLV_PDEV_PARAM_STA_KICKOUT_TH,
  3159. .ac_aggrsize_scaling = WMI_TLV_PDEV_PARAM_AC_AGGRSIZE_SCALING,
  3160. .ltr_enable = WMI_TLV_PDEV_PARAM_LTR_ENABLE,
  3161. .ltr_ac_latency_be = WMI_TLV_PDEV_PARAM_LTR_AC_LATENCY_BE,
  3162. .ltr_ac_latency_bk = WMI_TLV_PDEV_PARAM_LTR_AC_LATENCY_BK,
  3163. .ltr_ac_latency_vi = WMI_TLV_PDEV_PARAM_LTR_AC_LATENCY_VI,
  3164. .ltr_ac_latency_vo = WMI_TLV_PDEV_PARAM_LTR_AC_LATENCY_VO,
  3165. .ltr_ac_latency_timeout = WMI_TLV_PDEV_PARAM_LTR_AC_LATENCY_TIMEOUT,
  3166. .ltr_sleep_override = WMI_TLV_PDEV_PARAM_LTR_SLEEP_OVERRIDE,
  3167. .ltr_rx_override = WMI_TLV_PDEV_PARAM_LTR_RX_OVERRIDE,
  3168. .ltr_tx_activity_timeout = WMI_TLV_PDEV_PARAM_LTR_TX_ACTIVITY_TIMEOUT,
  3169. .l1ss_enable = WMI_TLV_PDEV_PARAM_L1SS_ENABLE,
  3170. .dsleep_enable = WMI_TLV_PDEV_PARAM_DSLEEP_ENABLE,
  3171. .pcielp_txbuf_flush = WMI_TLV_PDEV_PARAM_PCIELP_TXBUF_FLUSH,
  3172. .pcielp_txbuf_watermark = WMI_TLV_PDEV_PARAM_PCIELP_TXBUF_TMO_EN,
  3173. .pcielp_txbuf_tmo_en = WMI_TLV_PDEV_PARAM_PCIELP_TXBUF_TMO_EN,
  3174. .pcielp_txbuf_tmo_value = WMI_TLV_PDEV_PARAM_PCIELP_TXBUF_TMO_VALUE,
  3175. .pdev_stats_update_period = WMI_TLV_PDEV_PARAM_PDEV_STATS_UPDATE_PERIOD,
  3176. .vdev_stats_update_period = WMI_TLV_PDEV_PARAM_VDEV_STATS_UPDATE_PERIOD,
  3177. .peer_stats_update_period = WMI_TLV_PDEV_PARAM_PEER_STATS_UPDATE_PERIOD,
  3178. .bcnflt_stats_update_period =
  3179. WMI_TLV_PDEV_PARAM_BCNFLT_STATS_UPDATE_PERIOD,
  3180. .pmf_qos = WMI_TLV_PDEV_PARAM_PMF_QOS,
  3181. .arp_ac_override = WMI_TLV_PDEV_PARAM_ARP_AC_OVERRIDE,
  3182. .dcs = WMI_TLV_PDEV_PARAM_DCS,
  3183. .ani_enable = WMI_TLV_PDEV_PARAM_ANI_ENABLE,
  3184. .ani_poll_period = WMI_TLV_PDEV_PARAM_ANI_POLL_PERIOD,
  3185. .ani_listen_period = WMI_TLV_PDEV_PARAM_ANI_LISTEN_PERIOD,
  3186. .ani_ofdm_level = WMI_TLV_PDEV_PARAM_ANI_OFDM_LEVEL,
  3187. .ani_cck_level = WMI_TLV_PDEV_PARAM_ANI_CCK_LEVEL,
  3188. .dyntxchain = WMI_TLV_PDEV_PARAM_DYNTXCHAIN,
  3189. .proxy_sta = WMI_TLV_PDEV_PARAM_PROXY_STA,
  3190. .idle_ps_config = WMI_TLV_PDEV_PARAM_IDLE_PS_CONFIG,
  3191. .power_gating_sleep = WMI_TLV_PDEV_PARAM_POWER_GATING_SLEEP,
  3192. .fast_channel_reset = WMI_TLV_PDEV_PARAM_UNSUPPORTED,
  3193. .burst_dur = WMI_TLV_PDEV_PARAM_BURST_DUR,
  3194. .burst_enable = WMI_TLV_PDEV_PARAM_BURST_ENABLE,
  3195. .cal_period = WMI_PDEV_PARAM_UNSUPPORTED,
  3196. .aggr_burst = WMI_PDEV_PARAM_UNSUPPORTED,
  3197. .rx_decap_mode = WMI_PDEV_PARAM_UNSUPPORTED,
  3198. .smart_antenna_default_antenna = WMI_PDEV_PARAM_UNSUPPORTED,
  3199. .igmpmld_override = WMI_PDEV_PARAM_UNSUPPORTED,
  3200. .igmpmld_tid = WMI_PDEV_PARAM_UNSUPPORTED,
  3201. .antenna_gain = WMI_PDEV_PARAM_UNSUPPORTED,
  3202. .rx_filter = WMI_PDEV_PARAM_UNSUPPORTED,
  3203. .set_mcast_to_ucast_tid = WMI_PDEV_PARAM_UNSUPPORTED,
  3204. .proxy_sta_mode = WMI_PDEV_PARAM_UNSUPPORTED,
  3205. .set_mcast2ucast_mode = WMI_PDEV_PARAM_UNSUPPORTED,
  3206. .set_mcast2ucast_buffer = WMI_PDEV_PARAM_UNSUPPORTED,
  3207. .remove_mcast2ucast_buffer = WMI_PDEV_PARAM_UNSUPPORTED,
  3208. .peer_sta_ps_statechg_enable = WMI_PDEV_PARAM_UNSUPPORTED,
  3209. .igmpmld_ac_override = WMI_PDEV_PARAM_UNSUPPORTED,
  3210. .block_interbss = WMI_PDEV_PARAM_UNSUPPORTED,
  3211. .set_disable_reset_cmdid = WMI_PDEV_PARAM_UNSUPPORTED,
  3212. .set_msdu_ttl_cmdid = WMI_PDEV_PARAM_UNSUPPORTED,
  3213. .set_ppdu_duration_cmdid = WMI_PDEV_PARAM_UNSUPPORTED,
  3214. .txbf_sound_period_cmdid = WMI_PDEV_PARAM_UNSUPPORTED,
  3215. .set_promisc_mode_cmdid = WMI_PDEV_PARAM_UNSUPPORTED,
  3216. .set_burst_mode_cmdid = WMI_PDEV_PARAM_UNSUPPORTED,
  3217. .en_stats = WMI_PDEV_PARAM_UNSUPPORTED,
  3218. .mu_group_policy = WMI_PDEV_PARAM_UNSUPPORTED,
  3219. .noise_detection = WMI_PDEV_PARAM_UNSUPPORTED,
  3220. .noise_threshold = WMI_PDEV_PARAM_UNSUPPORTED,
  3221. .dpd_enable = WMI_PDEV_PARAM_UNSUPPORTED,
  3222. .set_mcast_bcast_echo = WMI_PDEV_PARAM_UNSUPPORTED,
  3223. .atf_strict_sch = WMI_PDEV_PARAM_UNSUPPORTED,
  3224. .atf_sched_duration = WMI_PDEV_PARAM_UNSUPPORTED,
  3225. .ant_plzn = WMI_PDEV_PARAM_UNSUPPORTED,
  3226. .mgmt_retry_limit = WMI_PDEV_PARAM_UNSUPPORTED,
  3227. .sensitivity_level = WMI_PDEV_PARAM_UNSUPPORTED,
  3228. .signed_txpower_2g = WMI_PDEV_PARAM_UNSUPPORTED,
  3229. .signed_txpower_5g = WMI_PDEV_PARAM_UNSUPPORTED,
  3230. .enable_per_tid_amsdu = WMI_PDEV_PARAM_UNSUPPORTED,
  3231. .enable_per_tid_ampdu = WMI_PDEV_PARAM_UNSUPPORTED,
  3232. .cca_threshold = WMI_PDEV_PARAM_UNSUPPORTED,
  3233. .rts_fixed_rate = WMI_PDEV_PARAM_UNSUPPORTED,
  3234. .pdev_reset = WMI_PDEV_PARAM_UNSUPPORTED,
  3235. .wapi_mbssid_offset = WMI_PDEV_PARAM_UNSUPPORTED,
  3236. .arp_srcaddr = WMI_PDEV_PARAM_UNSUPPORTED,
  3237. .arp_dstaddr = WMI_PDEV_PARAM_UNSUPPORTED,
  3238. };
  3239. static struct wmi_vdev_param_map wmi_tlv_vdev_param_map = {
  3240. .rts_threshold = WMI_TLV_VDEV_PARAM_RTS_THRESHOLD,
  3241. .fragmentation_threshold = WMI_TLV_VDEV_PARAM_FRAGMENTATION_THRESHOLD,
  3242. .beacon_interval = WMI_TLV_VDEV_PARAM_BEACON_INTERVAL,
  3243. .listen_interval = WMI_TLV_VDEV_PARAM_LISTEN_INTERVAL,
  3244. .multicast_rate = WMI_TLV_VDEV_PARAM_MULTICAST_RATE,
  3245. .mgmt_tx_rate = WMI_TLV_VDEV_PARAM_MGMT_TX_RATE,
  3246. .slot_time = WMI_TLV_VDEV_PARAM_SLOT_TIME,
  3247. .preamble = WMI_TLV_VDEV_PARAM_PREAMBLE,
  3248. .swba_time = WMI_TLV_VDEV_PARAM_SWBA_TIME,
  3249. .wmi_vdev_stats_update_period = WMI_TLV_VDEV_STATS_UPDATE_PERIOD,
  3250. .wmi_vdev_pwrsave_ageout_time = WMI_TLV_VDEV_PWRSAVE_AGEOUT_TIME,
  3251. .wmi_vdev_host_swba_interval = WMI_TLV_VDEV_HOST_SWBA_INTERVAL,
  3252. .dtim_period = WMI_TLV_VDEV_PARAM_DTIM_PERIOD,
  3253. .wmi_vdev_oc_scheduler_air_time_limit =
  3254. WMI_TLV_VDEV_OC_SCHEDULER_AIR_TIME_LIMIT,
  3255. .wds = WMI_TLV_VDEV_PARAM_WDS,
  3256. .atim_window = WMI_TLV_VDEV_PARAM_ATIM_WINDOW,
  3257. .bmiss_count_max = WMI_TLV_VDEV_PARAM_BMISS_COUNT_MAX,
  3258. .bmiss_first_bcnt = WMI_TLV_VDEV_PARAM_BMISS_FIRST_BCNT,
  3259. .bmiss_final_bcnt = WMI_TLV_VDEV_PARAM_BMISS_FINAL_BCNT,
  3260. .feature_wmm = WMI_TLV_VDEV_PARAM_FEATURE_WMM,
  3261. .chwidth = WMI_TLV_VDEV_PARAM_CHWIDTH,
  3262. .chextoffset = WMI_TLV_VDEV_PARAM_CHEXTOFFSET,
  3263. .disable_htprotection = WMI_TLV_VDEV_PARAM_DISABLE_HTPROTECTION,
  3264. .sta_quickkickout = WMI_TLV_VDEV_PARAM_STA_QUICKKICKOUT,
  3265. .mgmt_rate = WMI_TLV_VDEV_PARAM_MGMT_RATE,
  3266. .protection_mode = WMI_TLV_VDEV_PARAM_PROTECTION_MODE,
  3267. .fixed_rate = WMI_TLV_VDEV_PARAM_FIXED_RATE,
  3268. .sgi = WMI_TLV_VDEV_PARAM_SGI,
  3269. .ldpc = WMI_TLV_VDEV_PARAM_LDPC,
  3270. .tx_stbc = WMI_TLV_VDEV_PARAM_TX_STBC,
  3271. .rx_stbc = WMI_TLV_VDEV_PARAM_RX_STBC,
  3272. .intra_bss_fwd = WMI_TLV_VDEV_PARAM_INTRA_BSS_FWD,
  3273. .def_keyid = WMI_TLV_VDEV_PARAM_DEF_KEYID,
  3274. .nss = WMI_TLV_VDEV_PARAM_NSS,
  3275. .bcast_data_rate = WMI_TLV_VDEV_PARAM_BCAST_DATA_RATE,
  3276. .mcast_data_rate = WMI_TLV_VDEV_PARAM_MCAST_DATA_RATE,
  3277. .mcast_indicate = WMI_TLV_VDEV_PARAM_MCAST_INDICATE,
  3278. .dhcp_indicate = WMI_TLV_VDEV_PARAM_DHCP_INDICATE,
  3279. .unknown_dest_indicate = WMI_TLV_VDEV_PARAM_UNKNOWN_DEST_INDICATE,
  3280. .ap_keepalive_min_idle_inactive_time_secs =
  3281. WMI_TLV_VDEV_PARAM_AP_KEEPALIVE_MIN_IDLE_INACTIVE_TIME_SECS,
  3282. .ap_keepalive_max_idle_inactive_time_secs =
  3283. WMI_TLV_VDEV_PARAM_AP_KEEPALIVE_MAX_IDLE_INACTIVE_TIME_SECS,
  3284. .ap_keepalive_max_unresponsive_time_secs =
  3285. WMI_TLV_VDEV_PARAM_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS,
  3286. .ap_enable_nawds = WMI_TLV_VDEV_PARAM_AP_ENABLE_NAWDS,
  3287. .mcast2ucast_set = WMI_TLV_VDEV_PARAM_UNSUPPORTED,
  3288. .enable_rtscts = WMI_TLV_VDEV_PARAM_ENABLE_RTSCTS,
  3289. .txbf = WMI_TLV_VDEV_PARAM_TXBF,
  3290. .packet_powersave = WMI_TLV_VDEV_PARAM_PACKET_POWERSAVE,
  3291. .drop_unencry = WMI_TLV_VDEV_PARAM_DROP_UNENCRY,
  3292. .tx_encap_type = WMI_TLV_VDEV_PARAM_TX_ENCAP_TYPE,
  3293. .ap_detect_out_of_sync_sleeping_sta_time_secs =
  3294. WMI_TLV_VDEV_PARAM_UNSUPPORTED,
  3295. .rc_num_retries = WMI_VDEV_PARAM_UNSUPPORTED,
  3296. .cabq_maxdur = WMI_VDEV_PARAM_UNSUPPORTED,
  3297. .mfptest_set = WMI_VDEV_PARAM_UNSUPPORTED,
  3298. .rts_fixed_rate = WMI_VDEV_PARAM_UNSUPPORTED,
  3299. .vht_sgimask = WMI_VDEV_PARAM_UNSUPPORTED,
  3300. .vht80_ratemask = WMI_VDEV_PARAM_UNSUPPORTED,
  3301. .early_rx_adjust_enable = WMI_VDEV_PARAM_UNSUPPORTED,
  3302. .early_rx_tgt_bmiss_num = WMI_VDEV_PARAM_UNSUPPORTED,
  3303. .early_rx_bmiss_sample_cycle = WMI_VDEV_PARAM_UNSUPPORTED,
  3304. .early_rx_slop_step = WMI_VDEV_PARAM_UNSUPPORTED,
  3305. .early_rx_init_slop = WMI_VDEV_PARAM_UNSUPPORTED,
  3306. .early_rx_adjust_pause = WMI_VDEV_PARAM_UNSUPPORTED,
  3307. .proxy_sta = WMI_VDEV_PARAM_UNSUPPORTED,
  3308. .meru_vc = WMI_VDEV_PARAM_UNSUPPORTED,
  3309. .rx_decap_type = WMI_VDEV_PARAM_UNSUPPORTED,
  3310. .bw_nss_ratemask = WMI_VDEV_PARAM_UNSUPPORTED,
  3311. };
  3312. static const struct wmi_ops wmi_tlv_ops = {
  3313. .rx = ath10k_wmi_tlv_op_rx,
  3314. .map_svc = wmi_tlv_svc_map,
  3315. .map_svc_ext = wmi_tlv_svc_map_ext,
  3316. .pull_scan = ath10k_wmi_tlv_op_pull_scan_ev,
  3317. .pull_mgmt_rx = ath10k_wmi_tlv_op_pull_mgmt_rx_ev,
  3318. .pull_mgmt_tx_compl = ath10k_wmi_tlv_op_pull_mgmt_tx_compl_ev,
  3319. .pull_ch_info = ath10k_wmi_tlv_op_pull_ch_info_ev,
  3320. .pull_vdev_start = ath10k_wmi_tlv_op_pull_vdev_start_ev,
  3321. .pull_peer_kick = ath10k_wmi_tlv_op_pull_peer_kick_ev,
  3322. .pull_swba = ath10k_wmi_tlv_op_pull_swba_ev,
  3323. .pull_phyerr_hdr = ath10k_wmi_tlv_op_pull_phyerr_ev_hdr,
  3324. .pull_phyerr = ath10k_wmi_op_pull_phyerr_ev,
  3325. .pull_svc_rdy = ath10k_wmi_tlv_op_pull_svc_rdy_ev,
  3326. .pull_rdy = ath10k_wmi_tlv_op_pull_rdy_ev,
  3327. .pull_svc_avail = ath10k_wmi_tlv_op_pull_svc_avail,
  3328. .pull_fw_stats = ath10k_wmi_tlv_op_pull_fw_stats,
  3329. .pull_roam_ev = ath10k_wmi_tlv_op_pull_roam_ev,
  3330. .pull_wow_event = ath10k_wmi_tlv_op_pull_wow_ev,
  3331. .pull_echo_ev = ath10k_wmi_tlv_op_pull_echo_ev,
  3332. .get_txbf_conf_scheme = ath10k_wmi_tlv_txbf_conf_scheme,
  3333. .gen_pdev_suspend = ath10k_wmi_tlv_op_gen_pdev_suspend,
  3334. .gen_pdev_resume = ath10k_wmi_tlv_op_gen_pdev_resume,
  3335. .gen_pdev_set_rd = ath10k_wmi_tlv_op_gen_pdev_set_rd,
  3336. .gen_pdev_set_param = ath10k_wmi_tlv_op_gen_pdev_set_param,
  3337. .gen_init = ath10k_wmi_tlv_op_gen_init,
  3338. .gen_start_scan = ath10k_wmi_tlv_op_gen_start_scan,
  3339. .gen_stop_scan = ath10k_wmi_tlv_op_gen_stop_scan,
  3340. .gen_vdev_create = ath10k_wmi_tlv_op_gen_vdev_create,
  3341. .gen_vdev_delete = ath10k_wmi_tlv_op_gen_vdev_delete,
  3342. .gen_vdev_start = ath10k_wmi_tlv_op_gen_vdev_start,
  3343. .gen_vdev_stop = ath10k_wmi_tlv_op_gen_vdev_stop,
  3344. .gen_vdev_up = ath10k_wmi_tlv_op_gen_vdev_up,
  3345. .gen_vdev_down = ath10k_wmi_tlv_op_gen_vdev_down,
  3346. .gen_vdev_set_param = ath10k_wmi_tlv_op_gen_vdev_set_param,
  3347. .gen_vdev_install_key = ath10k_wmi_tlv_op_gen_vdev_install_key,
  3348. .gen_vdev_wmm_conf = ath10k_wmi_tlv_op_gen_vdev_wmm_conf,
  3349. .gen_peer_create = ath10k_wmi_tlv_op_gen_peer_create,
  3350. .gen_peer_delete = ath10k_wmi_tlv_op_gen_peer_delete,
  3351. .gen_peer_flush = ath10k_wmi_tlv_op_gen_peer_flush,
  3352. .gen_peer_set_param = ath10k_wmi_tlv_op_gen_peer_set_param,
  3353. .gen_peer_assoc = ath10k_wmi_tlv_op_gen_peer_assoc,
  3354. .gen_set_psmode = ath10k_wmi_tlv_op_gen_set_psmode,
  3355. .gen_set_sta_ps = ath10k_wmi_tlv_op_gen_set_sta_ps,
  3356. .gen_set_ap_ps = ath10k_wmi_tlv_op_gen_set_ap_ps,
  3357. .gen_scan_chan_list = ath10k_wmi_tlv_op_gen_scan_chan_list,
  3358. .gen_scan_prob_req_oui = ath10k_wmi_tlv_op_gen_scan_prob_req_oui,
  3359. .gen_beacon_dma = ath10k_wmi_tlv_op_gen_beacon_dma,
  3360. .gen_pdev_set_wmm = ath10k_wmi_tlv_op_gen_pdev_set_wmm,
  3361. .gen_request_stats = ath10k_wmi_tlv_op_gen_request_stats,
  3362. .gen_force_fw_hang = ath10k_wmi_tlv_op_gen_force_fw_hang,
  3363. /* .gen_mgmt_tx = not implemented; HTT is used */
  3364. .gen_mgmt_tx_send = ath10k_wmi_tlv_op_gen_mgmt_tx_send,
  3365. .gen_dbglog_cfg = ath10k_wmi_tlv_op_gen_dbglog_cfg,
  3366. .gen_pktlog_enable = ath10k_wmi_tlv_op_gen_pktlog_enable,
  3367. .gen_pktlog_disable = ath10k_wmi_tlv_op_gen_pktlog_disable,
  3368. .gen_pdev_set_quiet_mode = ath10k_wmi_tlv_op_gen_pdev_set_quiet_mode,
  3369. .gen_pdev_get_temperature = ath10k_wmi_tlv_op_gen_pdev_get_temperature,
  3370. /* .gen_addba_clear_resp not implemented */
  3371. /* .gen_addba_send not implemented */
  3372. /* .gen_addba_set_resp not implemented */
  3373. /* .gen_delba_send not implemented */
  3374. .gen_bcn_tmpl = ath10k_wmi_tlv_op_gen_bcn_tmpl,
  3375. .gen_prb_tmpl = ath10k_wmi_tlv_op_gen_prb_tmpl,
  3376. .gen_p2p_go_bcn_ie = ath10k_wmi_tlv_op_gen_p2p_go_bcn_ie,
  3377. .gen_vdev_sta_uapsd = ath10k_wmi_tlv_op_gen_vdev_sta_uapsd,
  3378. .gen_sta_keepalive = ath10k_wmi_tlv_op_gen_sta_keepalive,
  3379. .gen_wow_enable = ath10k_wmi_tlv_op_gen_wow_enable,
  3380. .gen_wow_add_wakeup_event = ath10k_wmi_tlv_op_gen_wow_add_wakeup_event,
  3381. .gen_wow_host_wakeup_ind = ath10k_wmi_tlv_gen_wow_host_wakeup_ind,
  3382. .gen_wow_add_pattern = ath10k_wmi_tlv_op_gen_wow_add_pattern,
  3383. .gen_wow_del_pattern = ath10k_wmi_tlv_op_gen_wow_del_pattern,
  3384. .gen_update_fw_tdls_state = ath10k_wmi_tlv_op_gen_update_fw_tdls_state,
  3385. .gen_tdls_peer_update = ath10k_wmi_tlv_op_gen_tdls_peer_update,
  3386. .gen_adaptive_qcs = ath10k_wmi_tlv_op_gen_adaptive_qcs,
  3387. .fw_stats_fill = ath10k_wmi_main_op_fw_stats_fill,
  3388. .get_vdev_subtype = ath10k_wmi_op_get_vdev_subtype,
  3389. .gen_echo = ath10k_wmi_tlv_op_gen_echo,
  3390. .gen_vdev_spectral_conf = ath10k_wmi_tlv_op_gen_vdev_spectral_conf,
  3391. .gen_vdev_spectral_enable = ath10k_wmi_tlv_op_gen_vdev_spectral_enable,
  3392. };
  3393. static const struct wmi_peer_flags_map wmi_tlv_peer_flags_map = {
  3394. .auth = WMI_TLV_PEER_AUTH,
  3395. .qos = WMI_TLV_PEER_QOS,
  3396. .need_ptk_4_way = WMI_TLV_PEER_NEED_PTK_4_WAY,
  3397. .need_gtk_2_way = WMI_TLV_PEER_NEED_GTK_2_WAY,
  3398. .apsd = WMI_TLV_PEER_APSD,
  3399. .ht = WMI_TLV_PEER_HT,
  3400. .bw40 = WMI_TLV_PEER_40MHZ,
  3401. .stbc = WMI_TLV_PEER_STBC,
  3402. .ldbc = WMI_TLV_PEER_LDPC,
  3403. .dyn_mimops = WMI_TLV_PEER_DYN_MIMOPS,
  3404. .static_mimops = WMI_TLV_PEER_STATIC_MIMOPS,
  3405. .spatial_mux = WMI_TLV_PEER_SPATIAL_MUX,
  3406. .vht = WMI_TLV_PEER_VHT,
  3407. .bw80 = WMI_TLV_PEER_80MHZ,
  3408. .pmf = WMI_TLV_PEER_PMF,
  3409. .bw160 = WMI_TLV_PEER_160MHZ,
  3410. };
  3411. /************/
  3412. /* TLV init */
  3413. /************/
  3414. void ath10k_wmi_tlv_attach(struct ath10k *ar)
  3415. {
  3416. ar->wmi.cmd = &wmi_tlv_cmd_map;
  3417. ar->wmi.vdev_param = &wmi_tlv_vdev_param_map;
  3418. ar->wmi.pdev_param = &wmi_tlv_pdev_param_map;
  3419. ar->wmi.ops = &wmi_tlv_ops;
  3420. ar->wmi.peer_flags = &wmi_tlv_peer_flags_map;
  3421. }