wmi_unified_tlv.c 726 KB

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  1. /*
  2. * Copyright (c) 2016-2018 The Linux Foundation. All rights reserved.
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for
  5. * any purpose with or without fee is hereby granted, provided that the
  6. * above copyright notice and this permission notice appear in all
  7. * copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
  10. * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
  11. * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
  12. * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  13. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  14. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
  15. * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  16. * PERFORMANCE OF THIS SOFTWARE.
  17. */
  18. #include "wmi_unified_api.h"
  19. #include "wmi.h"
  20. #include "wmi_version.h"
  21. #include "wmi_unified_priv.h"
  22. #include "wmi_version_whitelist.h"
  23. #include <qdf_module.h>
  24. #include <wlan_defs.h>
  25. #include <htc_services.h>
  26. #ifdef FEATURE_WLAN_APF
  27. #include "wmi_unified_apf_tlv.h"
  28. #endif
  29. #ifdef CONVERGED_P2P_ENABLE
  30. #include "wlan_p2p_public_struct.h"
  31. #endif
  32. #ifdef WLAN_POWER_MANAGEMENT_OFFLOAD
  33. #include "wlan_pmo_hw_filter_public_struct.h"
  34. #endif
  35. #include <wlan_utility.h>
  36. #ifdef WLAN_SUPPORT_GREEN_AP
  37. #include "wlan_green_ap_api.h"
  38. #endif
  39. #ifdef WLAN_FEATURE_NAN_CONVERGENCE
  40. #include "nan_public_structs.h"
  41. #endif
  42. #include "wmi_unified_twt_api.h"
  43. #ifdef WLAN_POLICY_MGR_ENABLE
  44. #include "wlan_policy_mgr_public_struct.h"
  45. #endif
  46. /* HTC service ids for WMI for multi-radio */
  47. static const uint32_t multi_svc_ids[] = {WMI_CONTROL_SVC,
  48. WMI_CONTROL_SVC_WMAC1,
  49. WMI_CONTROL_SVC_WMAC2};
  50. /**
  51. * convert_host_pdev_id_to_target_pdev_id() - Convert pdev_id from
  52. * host to target defines.
  53. * @param pdev_id: host pdev_id to be converted.
  54. * Return: target pdev_id after conversion.
  55. */
  56. static uint32_t convert_host_pdev_id_to_target_pdev_id(uint32_t pdev_id)
  57. {
  58. switch (pdev_id) {
  59. case WMI_HOST_PDEV_ID_SOC:
  60. return WMI_PDEV_ID_SOC;
  61. case WMI_HOST_PDEV_ID_0:
  62. return WMI_PDEV_ID_1ST;
  63. case WMI_HOST_PDEV_ID_1:
  64. return WMI_PDEV_ID_2ND;
  65. case WMI_HOST_PDEV_ID_2:
  66. return WMI_PDEV_ID_3RD;
  67. }
  68. QDF_ASSERT(0);
  69. return WMI_PDEV_ID_SOC;
  70. }
  71. /**
  72. * convert_target_pdev_id_to_host_pdev_id() - Convert pdev_id from
  73. * target to host defines.
  74. * @param pdev_id: target pdev_id to be converted.
  75. * Return: host pdev_id after conversion.
  76. */
  77. static uint32_t convert_target_pdev_id_to_host_pdev_id(uint32_t pdev_id)
  78. {
  79. switch (pdev_id) {
  80. case WMI_PDEV_ID_SOC:
  81. return WMI_HOST_PDEV_ID_SOC;
  82. case WMI_PDEV_ID_1ST:
  83. return WMI_HOST_PDEV_ID_0;
  84. case WMI_PDEV_ID_2ND:
  85. return WMI_HOST_PDEV_ID_1;
  86. case WMI_PDEV_ID_3RD:
  87. return WMI_HOST_PDEV_ID_2;
  88. }
  89. QDF_ASSERT(0);
  90. return WMI_HOST_PDEV_ID_SOC;
  91. }
  92. /**
  93. * wmi_tlv_pdev_id_conversion_enable() - Enable pdev_id conversion
  94. *
  95. * Return None.
  96. */
  97. static void wmi_tlv_pdev_id_conversion_enable(wmi_unified_t wmi_handle)
  98. {
  99. wmi_handle->ops->convert_pdev_id_host_to_target =
  100. convert_host_pdev_id_to_target_pdev_id;
  101. wmi_handle->ops->convert_pdev_id_target_to_host =
  102. convert_target_pdev_id_to_host_pdev_id;
  103. }
  104. /* copy_vdev_create_pdev_id() - copy pdev from host params to target command
  105. * buffer.
  106. * @wmi_handle: pointer to wmi_handle
  107. * @cmd: pointer target vdev create command buffer
  108. * @param: pointer host params for vdev create
  109. *
  110. * Return: None
  111. */
  112. #ifdef CONFIG_MCL
  113. static inline void copy_vdev_create_pdev_id(
  114. struct wmi_unified *wmi_handle,
  115. wmi_vdev_create_cmd_fixed_param * cmd,
  116. struct vdev_create_params *param)
  117. {
  118. cmd->pdev_id = WMI_PDEV_ID_SOC;
  119. }
  120. #else
  121. static inline void copy_vdev_create_pdev_id(
  122. struct wmi_unified *wmi_handle,
  123. wmi_vdev_create_cmd_fixed_param * cmd,
  124. struct vdev_create_params *param)
  125. {
  126. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  127. param->pdev_id);
  128. }
  129. #endif
  130. /**
  131. * send_vdev_create_cmd_tlv() - send VDEV create command to fw
  132. * @wmi_handle: wmi handle
  133. * @param: pointer to hold vdev create parameter
  134. * @macaddr: vdev mac address
  135. *
  136. * Return: QDF_STATUS_SUCCESS for success or error code
  137. */
  138. static QDF_STATUS send_vdev_create_cmd_tlv(wmi_unified_t wmi_handle,
  139. uint8_t macaddr[IEEE80211_ADDR_LEN],
  140. struct vdev_create_params *param)
  141. {
  142. wmi_vdev_create_cmd_fixed_param *cmd;
  143. wmi_buf_t buf;
  144. int32_t len = sizeof(*cmd);
  145. QDF_STATUS ret;
  146. int num_bands = 2;
  147. uint8_t *buf_ptr;
  148. wmi_vdev_txrx_streams *txrx_streams;
  149. len += (num_bands * sizeof(*txrx_streams) + WMI_TLV_HDR_SIZE);
  150. buf = wmi_buf_alloc(wmi_handle, len);
  151. if (!buf) {
  152. WMI_LOGP("%s:wmi_buf_alloc failed", __func__);
  153. return QDF_STATUS_E_NOMEM;
  154. }
  155. cmd = (wmi_vdev_create_cmd_fixed_param *) wmi_buf_data(buf);
  156. WMITLV_SET_HDR(&cmd->tlv_header,
  157. WMITLV_TAG_STRUC_wmi_vdev_create_cmd_fixed_param,
  158. WMITLV_GET_STRUCT_TLVLEN
  159. (wmi_vdev_create_cmd_fixed_param));
  160. cmd->vdev_id = param->if_id;
  161. cmd->vdev_type = param->type;
  162. cmd->vdev_subtype = param->subtype;
  163. cmd->num_cfg_txrx_streams = num_bands;
  164. copy_vdev_create_pdev_id(wmi_handle, cmd, param);
  165. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->vdev_macaddr);
  166. WMI_LOGD("%s: ID = %d[pdev:%d] VAP Addr = %02x:%02x:%02x:%02x:%02x:%02x",
  167. __func__, param->if_id, cmd->pdev_id,
  168. macaddr[0], macaddr[1], macaddr[2],
  169. macaddr[3], macaddr[4], macaddr[5]);
  170. buf_ptr = (uint8_t *)cmd + sizeof(*cmd);
  171. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  172. (num_bands * sizeof(wmi_vdev_txrx_streams)));
  173. buf_ptr += WMI_TLV_HDR_SIZE;
  174. WMI_LOGD("%s: type %d, subtype %d, nss_2g %d, nss_5g %d", __func__,
  175. param->type, param->subtype,
  176. param->nss_2g, param->nss_5g);
  177. txrx_streams = (wmi_vdev_txrx_streams *)buf_ptr;
  178. txrx_streams->band = WMI_TPC_CHAINMASK_CONFIG_BAND_2G;
  179. txrx_streams->supported_tx_streams = param->nss_2g;
  180. txrx_streams->supported_rx_streams = param->nss_2g;
  181. WMITLV_SET_HDR(&txrx_streams->tlv_header,
  182. WMITLV_TAG_STRUC_wmi_vdev_txrx_streams,
  183. WMITLV_GET_STRUCT_TLVLEN(wmi_vdev_txrx_streams));
  184. txrx_streams++;
  185. txrx_streams->band = WMI_TPC_CHAINMASK_CONFIG_BAND_5G;
  186. txrx_streams->supported_tx_streams = param->nss_5g;
  187. txrx_streams->supported_rx_streams = param->nss_5g;
  188. WMITLV_SET_HDR(&txrx_streams->tlv_header,
  189. WMITLV_TAG_STRUC_wmi_vdev_txrx_streams,
  190. WMITLV_GET_STRUCT_TLVLEN(wmi_vdev_txrx_streams));
  191. ret = wmi_unified_cmd_send(wmi_handle, buf, len, WMI_VDEV_CREATE_CMDID);
  192. if (QDF_IS_STATUS_ERROR(ret)) {
  193. WMI_LOGE("Failed to send WMI_VDEV_CREATE_CMDID");
  194. wmi_buf_free(buf);
  195. }
  196. return ret;
  197. }
  198. /**
  199. * send_vdev_delete_cmd_tlv() - send VDEV delete command to fw
  200. * @wmi_handle: wmi handle
  201. * @if_id: vdev id
  202. *
  203. * Return: QDF_STATUS_SUCCESS for success or error code
  204. */
  205. static QDF_STATUS send_vdev_delete_cmd_tlv(wmi_unified_t wmi_handle,
  206. uint8_t if_id)
  207. {
  208. wmi_vdev_delete_cmd_fixed_param *cmd;
  209. wmi_buf_t buf;
  210. QDF_STATUS ret;
  211. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  212. if (!buf) {
  213. WMI_LOGP("%s:wmi_buf_alloc failed", __func__);
  214. return QDF_STATUS_E_NOMEM;
  215. }
  216. cmd = (wmi_vdev_delete_cmd_fixed_param *) wmi_buf_data(buf);
  217. WMITLV_SET_HDR(&cmd->tlv_header,
  218. WMITLV_TAG_STRUC_wmi_vdev_delete_cmd_fixed_param,
  219. WMITLV_GET_STRUCT_TLVLEN
  220. (wmi_vdev_delete_cmd_fixed_param));
  221. cmd->vdev_id = if_id;
  222. ret = wmi_unified_cmd_send(wmi_handle, buf,
  223. sizeof(wmi_vdev_delete_cmd_fixed_param),
  224. WMI_VDEV_DELETE_CMDID);
  225. if (QDF_IS_STATUS_ERROR(ret)) {
  226. WMI_LOGE("Failed to send WMI_VDEV_DELETE_CMDID");
  227. wmi_buf_free(buf);
  228. }
  229. WMI_LOGD("%s:vdev id = %d", __func__, if_id);
  230. return ret;
  231. }
  232. /**
  233. * send_vdev_stop_cmd_tlv() - send vdev stop command to fw
  234. * @wmi: wmi handle
  235. * @vdev_id: vdev id
  236. *
  237. * Return: QDF_STATUS_SUCCESS for success or erro code
  238. */
  239. static QDF_STATUS send_vdev_stop_cmd_tlv(wmi_unified_t wmi,
  240. uint8_t vdev_id)
  241. {
  242. wmi_vdev_stop_cmd_fixed_param *cmd;
  243. wmi_buf_t buf;
  244. int32_t len = sizeof(*cmd);
  245. buf = wmi_buf_alloc(wmi, len);
  246. if (!buf) {
  247. WMI_LOGP("%s : wmi_buf_alloc failed", __func__);
  248. return QDF_STATUS_E_NOMEM;
  249. }
  250. cmd = (wmi_vdev_stop_cmd_fixed_param *) wmi_buf_data(buf);
  251. WMITLV_SET_HDR(&cmd->tlv_header,
  252. WMITLV_TAG_STRUC_wmi_vdev_stop_cmd_fixed_param,
  253. WMITLV_GET_STRUCT_TLVLEN(wmi_vdev_stop_cmd_fixed_param));
  254. cmd->vdev_id = vdev_id;
  255. if (wmi_unified_cmd_send(wmi, buf, len, WMI_VDEV_STOP_CMDID)) {
  256. WMI_LOGP("%s: Failed to send vdev stop command", __func__);
  257. wmi_buf_free(buf);
  258. return QDF_STATUS_E_FAILURE;
  259. }
  260. WMI_LOGD("%s:vdev id = %d", __func__, vdev_id);
  261. return 0;
  262. }
  263. /**
  264. * send_vdev_down_cmd_tlv() - send vdev down command to fw
  265. * @wmi: wmi handle
  266. * @vdev_id: vdev id
  267. *
  268. * Return: QDF_STATUS_SUCCESS for success or error code
  269. */
  270. static QDF_STATUS send_vdev_down_cmd_tlv(wmi_unified_t wmi, uint8_t vdev_id)
  271. {
  272. wmi_vdev_down_cmd_fixed_param *cmd;
  273. wmi_buf_t buf;
  274. int32_t len = sizeof(*cmd);
  275. buf = wmi_buf_alloc(wmi, len);
  276. if (!buf) {
  277. WMI_LOGP("%s : wmi_buf_alloc failed", __func__);
  278. return QDF_STATUS_E_NOMEM;
  279. }
  280. cmd = (wmi_vdev_down_cmd_fixed_param *) wmi_buf_data(buf);
  281. WMITLV_SET_HDR(&cmd->tlv_header,
  282. WMITLV_TAG_STRUC_wmi_vdev_down_cmd_fixed_param,
  283. WMITLV_GET_STRUCT_TLVLEN(wmi_vdev_down_cmd_fixed_param));
  284. cmd->vdev_id = vdev_id;
  285. if (wmi_unified_cmd_send(wmi, buf, len, WMI_VDEV_DOWN_CMDID)) {
  286. WMI_LOGP("%s: Failed to send vdev down", __func__);
  287. wmi_buf_free(buf);
  288. return QDF_STATUS_E_FAILURE;
  289. }
  290. WMI_LOGD("%s: vdev_id %d", __func__, vdev_id);
  291. return 0;
  292. }
  293. #ifdef CONFIG_MCL
  294. static inline void copy_channel_info(
  295. wmi_vdev_start_request_cmd_fixed_param * cmd,
  296. wmi_channel *chan,
  297. struct vdev_start_params *req)
  298. {
  299. chan->mhz = req->chan_freq;
  300. WMI_SET_CHANNEL_MODE(chan, req->chan_mode);
  301. chan->band_center_freq1 = req->band_center_freq1;
  302. chan->band_center_freq2 = req->band_center_freq2;
  303. if (req->is_half_rate)
  304. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_HALF_RATE);
  305. else if (req->is_quarter_rate)
  306. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_QUARTER_RATE);
  307. if (req->is_dfs && req->flag_dfs) {
  308. WMI_SET_CHANNEL_FLAG(chan, req->flag_dfs);
  309. cmd->disable_hw_ack = req->dis_hw_ack;
  310. }
  311. WMI_SET_CHANNEL_REG_POWER(chan, req->max_txpow);
  312. WMI_SET_CHANNEL_MAX_TX_POWER(chan, req->max_txpow);
  313. }
  314. #else
  315. static inline void copy_channel_info(
  316. wmi_vdev_start_request_cmd_fixed_param * cmd,
  317. wmi_channel *chan,
  318. struct vdev_start_params *req)
  319. {
  320. chan->mhz = req->channel.mhz;
  321. WMI_SET_CHANNEL_MODE(chan, req->channel.phy_mode);
  322. chan->band_center_freq1 = req->channel.cfreq1;
  323. chan->band_center_freq2 = req->channel.cfreq2;
  324. WMI_LOGI("%s: req->channel.phy_mode: %d ", req->channel.phy_mode);
  325. if (req->channel.half_rate)
  326. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_HALF_RATE);
  327. else if (req->channel.quarter_rate)
  328. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_QUARTER_RATE);
  329. WMI_LOGI("%s: req->channel.dfs_set: %d ", req->channel.dfs_set);
  330. if (req->channel.dfs_set) {
  331. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_DFS);
  332. cmd->disable_hw_ack = req->disable_hw_ack;
  333. }
  334. if (req->channel.dfs_set_cfreq2)
  335. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_DFS_CFREQ2);
  336. /* According to firmware both reg power and max tx power
  337. * on set channel power is used and set it to max reg
  338. * power from regulatory.
  339. */
  340. WMI_SET_CHANNEL_MIN_POWER(chan, req->channel.minpower);
  341. WMI_SET_CHANNEL_MAX_POWER(chan, req->channel.maxpower);
  342. WMI_SET_CHANNEL_REG_POWER(chan, req->channel.maxregpower);
  343. WMI_SET_CHANNEL_ANTENNA_MAX(chan, req->channel.antennamax);
  344. WMI_SET_CHANNEL_REG_CLASSID(chan, req->channel.reg_class_id);
  345. WMI_SET_CHANNEL_MAX_TX_POWER(chan, req->channel.maxregpower);
  346. }
  347. #endif
  348. /**
  349. * send_vdev_start_cmd_tlv() - send vdev start request to fw
  350. * @wmi_handle: wmi handle
  351. * @req: vdev start params
  352. *
  353. * Return: QDF status
  354. */
  355. static QDF_STATUS send_vdev_start_cmd_tlv(wmi_unified_t wmi_handle,
  356. struct vdev_start_params *req)
  357. {
  358. wmi_vdev_start_request_cmd_fixed_param *cmd;
  359. wmi_buf_t buf;
  360. wmi_channel *chan;
  361. int32_t len, ret;
  362. uint8_t *buf_ptr;
  363. len = sizeof(*cmd) + sizeof(wmi_channel) + WMI_TLV_HDR_SIZE;
  364. buf = wmi_buf_alloc(wmi_handle, len);
  365. if (!buf) {
  366. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  367. return QDF_STATUS_E_NOMEM;
  368. }
  369. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  370. cmd = (wmi_vdev_start_request_cmd_fixed_param *) buf_ptr;
  371. chan = (wmi_channel *) (buf_ptr + sizeof(*cmd));
  372. WMITLV_SET_HDR(&cmd->tlv_header,
  373. WMITLV_TAG_STRUC_wmi_vdev_start_request_cmd_fixed_param,
  374. WMITLV_GET_STRUCT_TLVLEN
  375. (wmi_vdev_start_request_cmd_fixed_param));
  376. WMITLV_SET_HDR(&chan->tlv_header, WMITLV_TAG_STRUC_wmi_channel,
  377. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  378. cmd->vdev_id = req->vdev_id;
  379. /* Fill channel info */
  380. copy_channel_info(cmd, chan, req);
  381. cmd->beacon_interval = req->beacon_intval;
  382. cmd->dtim_period = req->dtim_period;
  383. cmd->bcn_tx_rate = req->bcn_tx_rate_code;
  384. if (req->bcn_tx_rate_code)
  385. cmd->flags |= WMI_UNIFIED_VDEV_START_BCN_TX_RATE_PRESENT;
  386. if (!req->is_restart) {
  387. cmd->beacon_interval = req->beacon_intval;
  388. cmd->dtim_period = req->dtim_period;
  389. /* Copy the SSID */
  390. if (req->ssid.length) {
  391. if (req->ssid.length < sizeof(cmd->ssid.ssid))
  392. cmd->ssid.ssid_len = req->ssid.length;
  393. else
  394. cmd->ssid.ssid_len = sizeof(cmd->ssid.ssid);
  395. qdf_mem_copy(cmd->ssid.ssid, req->ssid.mac_ssid,
  396. cmd->ssid.ssid_len);
  397. }
  398. if (req->hidden_ssid)
  399. cmd->flags |= WMI_UNIFIED_VDEV_START_HIDDEN_SSID;
  400. if (req->pmf_enabled)
  401. cmd->flags |= WMI_UNIFIED_VDEV_START_PMF_ENABLED;
  402. }
  403. cmd->flags |= WMI_UNIFIED_VDEV_START_LDPC_RX_ENABLED;
  404. cmd->num_noa_descriptors = req->num_noa_descriptors;
  405. cmd->preferred_rx_streams = req->preferred_rx_streams;
  406. cmd->preferred_tx_streams = req->preferred_tx_streams;
  407. cmd->cac_duration_ms = req->cac_duration_ms;
  408. cmd->regdomain = req->regdomain;
  409. cmd->he_ops = req->he_ops;
  410. buf_ptr = (uint8_t *) (((uintptr_t) cmd) + sizeof(*cmd) +
  411. sizeof(wmi_channel));
  412. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  413. cmd->num_noa_descriptors *
  414. sizeof(wmi_p2p_noa_descriptor));
  415. WMI_LOGI("%s: vdev_id %d freq %d chanmode %d ch_info: 0x%x is_dfs %d "
  416. "beacon interval %d dtim %d center_chan %d center_freq2 %d "
  417. "reg_info_1: 0x%x reg_info_2: 0x%x, req->max_txpow: 0x%x "
  418. "Tx SS %d, Rx SS %d, ldpc_rx: %d, cac %d, regd %d, HE ops: %d"
  419. "req->dis_hw_ack: %d ", __func__, req->vdev_id,
  420. chan->mhz, req->chan_mode, chan->info,
  421. req->is_dfs, req->beacon_intval, cmd->dtim_period,
  422. chan->band_center_freq1, chan->band_center_freq2,
  423. chan->reg_info_1, chan->reg_info_2, req->max_txpow,
  424. req->preferred_tx_streams, req->preferred_rx_streams,
  425. req->ldpc_rx_enabled, req->cac_duration_ms,
  426. req->regdomain, req->he_ops,
  427. req->dis_hw_ack);
  428. if (req->is_restart)
  429. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  430. WMI_VDEV_RESTART_REQUEST_CMDID);
  431. else
  432. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  433. WMI_VDEV_START_REQUEST_CMDID);
  434. if (ret) {
  435. WMI_LOGP("%s: Failed to send vdev start command", __func__);
  436. wmi_buf_free(buf);
  437. return QDF_STATUS_E_FAILURE;
  438. }
  439. return QDF_STATUS_SUCCESS;
  440. }
  441. /**
  442. * send_hidden_ssid_vdev_restart_cmd_tlv() - restart vdev to set hidden ssid
  443. * @wmi_handle: wmi handle
  444. * @restart_params: vdev restart params
  445. *
  446. * Return: QDF_STATUS_SUCCESS for success or error code
  447. */
  448. static QDF_STATUS send_hidden_ssid_vdev_restart_cmd_tlv(wmi_unified_t wmi_handle,
  449. struct hidden_ssid_vdev_restart_params *restart_params)
  450. {
  451. wmi_vdev_start_request_cmd_fixed_param *cmd;
  452. wmi_buf_t buf;
  453. wmi_channel *chan;
  454. int32_t len;
  455. uint8_t *buf_ptr;
  456. QDF_STATUS ret = 0;
  457. len = sizeof(*cmd) + sizeof(wmi_channel) + WMI_TLV_HDR_SIZE;
  458. buf = wmi_buf_alloc(wmi_handle, len);
  459. if (!buf) {
  460. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  461. return QDF_STATUS_E_NOMEM;
  462. }
  463. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  464. cmd = (wmi_vdev_start_request_cmd_fixed_param *) buf_ptr;
  465. chan = (wmi_channel *) (buf_ptr + sizeof(*cmd));
  466. WMITLV_SET_HDR(&cmd->tlv_header,
  467. WMITLV_TAG_STRUC_wmi_vdev_start_request_cmd_fixed_param,
  468. WMITLV_GET_STRUCT_TLVLEN
  469. (wmi_vdev_start_request_cmd_fixed_param));
  470. WMITLV_SET_HDR(&chan->tlv_header,
  471. WMITLV_TAG_STRUC_wmi_channel,
  472. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  473. cmd->vdev_id = restart_params->session_id;
  474. cmd->ssid.ssid_len = restart_params->ssid_len;
  475. qdf_mem_copy(cmd->ssid.ssid,
  476. restart_params->ssid,
  477. cmd->ssid.ssid_len);
  478. cmd->flags = restart_params->flags;
  479. cmd->requestor_id = restart_params->requestor_id;
  480. cmd->disable_hw_ack = restart_params->disable_hw_ack;
  481. chan->mhz = restart_params->mhz;
  482. chan->band_center_freq1 =
  483. restart_params->band_center_freq1;
  484. chan->band_center_freq2 =
  485. restart_params->band_center_freq2;
  486. chan->info = restart_params->info;
  487. chan->reg_info_1 = restart_params->reg_info_1;
  488. chan->reg_info_2 = restart_params->reg_info_2;
  489. cmd->num_noa_descriptors = 0;
  490. buf_ptr = (uint8_t *) (((uint8_t *) cmd) + sizeof(*cmd) +
  491. sizeof(wmi_channel));
  492. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  493. cmd->num_noa_descriptors *
  494. sizeof(wmi_p2p_noa_descriptor));
  495. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  496. WMI_VDEV_RESTART_REQUEST_CMDID);
  497. if (QDF_IS_STATUS_ERROR(ret)) {
  498. wmi_buf_free(buf);
  499. return QDF_STATUS_E_FAILURE;
  500. }
  501. return QDF_STATUS_SUCCESS;
  502. }
  503. /**
  504. * send_peer_flush_tids_cmd_tlv() - flush peer tids packets in fw
  505. * @wmi: wmi handle
  506. * @peer_addr: peer mac address
  507. * @param: pointer to hold peer flush tid parameter
  508. *
  509. * Return: 0 for success or error code
  510. */
  511. static QDF_STATUS send_peer_flush_tids_cmd_tlv(wmi_unified_t wmi,
  512. uint8_t peer_addr[IEEE80211_ADDR_LEN],
  513. struct peer_flush_params *param)
  514. {
  515. wmi_peer_flush_tids_cmd_fixed_param *cmd;
  516. wmi_buf_t buf;
  517. int32_t len = sizeof(*cmd);
  518. buf = wmi_buf_alloc(wmi, len);
  519. if (!buf) {
  520. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  521. return QDF_STATUS_E_NOMEM;
  522. }
  523. cmd = (wmi_peer_flush_tids_cmd_fixed_param *) wmi_buf_data(buf);
  524. WMITLV_SET_HDR(&cmd->tlv_header,
  525. WMITLV_TAG_STRUC_wmi_peer_flush_tids_cmd_fixed_param,
  526. WMITLV_GET_STRUCT_TLVLEN
  527. (wmi_peer_flush_tids_cmd_fixed_param));
  528. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  529. cmd->peer_tid_bitmap = param->peer_tid_bitmap;
  530. cmd->vdev_id = param->vdev_id;
  531. WMI_LOGD("%s: peer_addr %pM vdev_id %d and peer bitmap %d", __func__,
  532. peer_addr, param->vdev_id,
  533. param->peer_tid_bitmap);
  534. if (wmi_unified_cmd_send(wmi, buf, len, WMI_PEER_FLUSH_TIDS_CMDID)) {
  535. WMI_LOGP("%s: Failed to send flush tid command", __func__);
  536. wmi_buf_free(buf);
  537. return QDF_STATUS_E_FAILURE;
  538. }
  539. return 0;
  540. }
  541. /**
  542. * send_peer_delete_cmd_tlv() - send PEER delete command to fw
  543. * @wmi: wmi handle
  544. * @peer_addr: peer mac addr
  545. * @vdev_id: vdev id
  546. *
  547. * Return: QDF_STATUS_SUCCESS for success or error code
  548. */
  549. static QDF_STATUS send_peer_delete_cmd_tlv(wmi_unified_t wmi,
  550. uint8_t peer_addr[IEEE80211_ADDR_LEN],
  551. uint8_t vdev_id)
  552. {
  553. wmi_peer_delete_cmd_fixed_param *cmd;
  554. wmi_buf_t buf;
  555. int32_t len = sizeof(*cmd);
  556. buf = wmi_buf_alloc(wmi, len);
  557. if (!buf) {
  558. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  559. return QDF_STATUS_E_NOMEM;
  560. }
  561. cmd = (wmi_peer_delete_cmd_fixed_param *) wmi_buf_data(buf);
  562. WMITLV_SET_HDR(&cmd->tlv_header,
  563. WMITLV_TAG_STRUC_wmi_peer_delete_cmd_fixed_param,
  564. WMITLV_GET_STRUCT_TLVLEN
  565. (wmi_peer_delete_cmd_fixed_param));
  566. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  567. cmd->vdev_id = vdev_id;
  568. WMI_LOGD("%s: peer_addr %pM vdev_id %d", __func__, peer_addr, vdev_id);
  569. if (wmi_unified_cmd_send(wmi, buf, len, WMI_PEER_DELETE_CMDID)) {
  570. WMI_LOGP("%s: Failed to send peer delete command", __func__);
  571. wmi_buf_free(buf);
  572. return QDF_STATUS_E_FAILURE;
  573. }
  574. return 0;
  575. }
  576. /**
  577. * convert_host_peer_id_to_target_id_tlv - convert host peer param_id
  578. * to target id.
  579. * @targ_paramid: Target parameter id to hold the result.
  580. * @peer_param_id: host param id.
  581. *
  582. * Return: QDF_STATUS_SUCCESS for success
  583. * QDF_STATUS_E_NOSUPPORT when the param_id in not supported in tareget
  584. */
  585. #ifdef CONFIG_MCL
  586. static QDF_STATUS convert_host_peer_id_to_target_id_tlv(
  587. uint32_t *targ_paramid,
  588. uint32_t peer_param_id)
  589. {
  590. *targ_paramid = peer_param_id;
  591. return QDF_STATUS_SUCCESS;
  592. }
  593. #else
  594. static QDF_STATUS convert_host_peer_id_to_target_id_tlv(
  595. uint32_t *targ_paramid,
  596. uint32_t peer_param_id)
  597. {
  598. switch (peer_param_id) {
  599. case WMI_HOST_PEER_MIMO_PS_STATE:
  600. *targ_paramid = WMI_PEER_MIMO_PS_STATE;
  601. break;
  602. case WMI_HOST_PEER_AMPDU:
  603. *targ_paramid = WMI_PEER_AMPDU;
  604. break;
  605. case WMI_HOST_PEER_AUTHORIZE:
  606. *targ_paramid = WMI_PEER_AUTHORIZE;
  607. break;
  608. case WMI_HOST_PEER_CHWIDTH:
  609. *targ_paramid = WMI_PEER_CHWIDTH;
  610. break;
  611. case WMI_HOST_PEER_NSS:
  612. *targ_paramid = WMI_PEER_NSS;
  613. break;
  614. case WMI_HOST_PEER_USE_4ADDR:
  615. *targ_paramid = WMI_PEER_USE_4ADDR;
  616. break;
  617. case WMI_HOST_PEER_MEMBERSHIP:
  618. *targ_paramid = WMI_PEER_MEMBERSHIP;
  619. break;
  620. case WMI_HOST_PEER_USERPOS:
  621. *targ_paramid = WMI_PEER_USERPOS;
  622. break;
  623. case WMI_HOST_PEER_CRIT_PROTO_HINT_ENABLED:
  624. *targ_paramid = WMI_PEER_CRIT_PROTO_HINT_ENABLED;
  625. break;
  626. case WMI_HOST_PEER_TX_FAIL_CNT_THR:
  627. *targ_paramid = WMI_PEER_TX_FAIL_CNT_THR;
  628. break;
  629. case WMI_HOST_PEER_SET_HW_RETRY_CTS2S:
  630. *targ_paramid = WMI_PEER_SET_HW_RETRY_CTS2S;
  631. break;
  632. case WMI_HOST_PEER_IBSS_ATIM_WINDOW_LENGTH:
  633. *targ_paramid = WMI_PEER_IBSS_ATIM_WINDOW_LENGTH;
  634. break;
  635. case WMI_HOST_PEER_PHYMODE:
  636. *targ_paramid = WMI_PEER_PHYMODE;
  637. break;
  638. case WMI_HOST_PEER_USE_FIXED_PWR:
  639. *targ_paramid = WMI_PEER_USE_FIXED_PWR;
  640. break;
  641. case WMI_HOST_PEER_PARAM_FIXED_RATE:
  642. *targ_paramid = WMI_PEER_PARAM_FIXED_RATE;
  643. break;
  644. case WMI_HOST_PEER_SET_MU_WHITELIST:
  645. *targ_paramid = WMI_PEER_SET_MU_WHITELIST;
  646. break;
  647. case WMI_HOST_PEER_SET_MAC_TX_RATE:
  648. *targ_paramid = WMI_PEER_SET_MAX_TX_RATE;
  649. break;
  650. case WMI_HOST_PEER_SET_MIN_TX_RATE:
  651. *targ_paramid = WMI_PEER_SET_MIN_TX_RATE;
  652. break;
  653. case WMI_HOST_PEER_SET_DEFAULT_ROUTING:
  654. *targ_paramid = WMI_PEER_SET_DEFAULT_ROUTING;
  655. break;
  656. case WMI_HOST_PEER_NSS_VHT160:
  657. *targ_paramid = WMI_PEER_NSS_VHT160;
  658. break;
  659. case WMI_HOST_PEER_NSS_VHT80_80:
  660. *targ_paramid = WMI_PEER_NSS_VHT80_80;
  661. break;
  662. case WMI_HOST_PEER_PARAM_SU_TXBF_SOUNDING_INTERVAL:
  663. *targ_paramid = WMI_PEER_PARAM_SU_TXBF_SOUNDING_INTERVAL;
  664. break;
  665. case WMI_HOST_PEER_PARAM_MU_TXBF_SOUNDING_INTERVAL:
  666. *targ_paramid = WMI_PEER_PARAM_MU_TXBF_SOUNDING_INTERVAL;
  667. break;
  668. case WMI_HOST_PEER_PARAM_TXBF_SOUNDING_ENABLE:
  669. *targ_paramid = WMI_PEER_PARAM_TXBF_SOUNDING_ENABLE;
  670. break;
  671. case WMI_HOST_PEER_PARAM_MU_ENABLE:
  672. *targ_paramid = WMI_PEER_PARAM_MU_ENABLE;
  673. break;
  674. case WMI_HOST_PEER_PARAM_OFDMA_ENABLE:
  675. *targ_paramid = WMI_PEER_PARAM_OFDMA_ENABLE;
  676. break;
  677. default:
  678. return QDF_STATUS_E_NOSUPPORT;
  679. }
  680. return QDF_STATUS_SUCCESS;
  681. }
  682. #endif
  683. /**
  684. * send_peer_param_cmd_tlv() - set peer parameter in fw
  685. * @wmi: wmi handle
  686. * @peer_addr: peer mac address
  687. * @param : pointer to hold peer set parameter
  688. *
  689. * Return: QDF_STATUS_SUCCESS for success or error code
  690. */
  691. static QDF_STATUS send_peer_param_cmd_tlv(wmi_unified_t wmi,
  692. uint8_t peer_addr[IEEE80211_ADDR_LEN],
  693. struct peer_set_params *param)
  694. {
  695. wmi_peer_set_param_cmd_fixed_param *cmd;
  696. wmi_buf_t buf;
  697. int32_t err;
  698. uint32_t param_id;
  699. if (convert_host_peer_id_to_target_id_tlv(&param_id,
  700. param->param_id) != QDF_STATUS_SUCCESS)
  701. return QDF_STATUS_E_NOSUPPORT;
  702. buf = wmi_buf_alloc(wmi, sizeof(*cmd));
  703. if (!buf) {
  704. WMI_LOGE("Failed to allocate buffer to send set_param cmd");
  705. return QDF_STATUS_E_NOMEM;
  706. }
  707. cmd = (wmi_peer_set_param_cmd_fixed_param *) wmi_buf_data(buf);
  708. WMITLV_SET_HDR(&cmd->tlv_header,
  709. WMITLV_TAG_STRUC_wmi_peer_set_param_cmd_fixed_param,
  710. WMITLV_GET_STRUCT_TLVLEN
  711. (wmi_peer_set_param_cmd_fixed_param));
  712. cmd->vdev_id = param->vdev_id;
  713. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  714. cmd->param_id = param_id;
  715. cmd->param_value = param->param_value;
  716. err = wmi_unified_cmd_send(wmi, buf,
  717. sizeof(wmi_peer_set_param_cmd_fixed_param),
  718. WMI_PEER_SET_PARAM_CMDID);
  719. if (err) {
  720. WMI_LOGE("Failed to send set_param cmd");
  721. wmi_buf_free(buf);
  722. return QDF_STATUS_E_FAILURE;
  723. }
  724. return 0;
  725. }
  726. /**
  727. * send_vdev_up_cmd_tlv() - send vdev up command in fw
  728. * @wmi: wmi handle
  729. * @bssid: bssid
  730. * @vdev_up_params: pointer to hold vdev up parameter
  731. *
  732. * Return: QDF_STATUS_SUCCESS for success or error code
  733. */
  734. static QDF_STATUS send_vdev_up_cmd_tlv(wmi_unified_t wmi,
  735. uint8_t bssid[IEEE80211_ADDR_LEN],
  736. struct vdev_up_params *params)
  737. {
  738. wmi_vdev_up_cmd_fixed_param *cmd;
  739. wmi_buf_t buf;
  740. int32_t len = sizeof(*cmd);
  741. WMI_LOGD("%s: VDEV_UP", __func__);
  742. WMI_LOGD("%s: vdev_id %d aid %d bssid %pM", __func__,
  743. params->vdev_id, params->assoc_id, bssid);
  744. buf = wmi_buf_alloc(wmi, len);
  745. if (!buf) {
  746. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  747. return QDF_STATUS_E_NOMEM;
  748. }
  749. cmd = (wmi_vdev_up_cmd_fixed_param *) wmi_buf_data(buf);
  750. WMITLV_SET_HDR(&cmd->tlv_header,
  751. WMITLV_TAG_STRUC_wmi_vdev_up_cmd_fixed_param,
  752. WMITLV_GET_STRUCT_TLVLEN(wmi_vdev_up_cmd_fixed_param));
  753. cmd->vdev_id = params->vdev_id;
  754. cmd->vdev_assoc_id = params->assoc_id;
  755. WMI_CHAR_ARRAY_TO_MAC_ADDR(bssid, &cmd->vdev_bssid);
  756. if (wmi_unified_cmd_send(wmi, buf, len, WMI_VDEV_UP_CMDID)) {
  757. WMI_LOGP("%s: Failed to send vdev up command", __func__);
  758. wmi_buf_free(buf);
  759. return QDF_STATUS_E_FAILURE;
  760. }
  761. return 0;
  762. }
  763. /**
  764. * send_peer_create_cmd_tlv() - send peer create command to fw
  765. * @wmi: wmi handle
  766. * @peer_addr: peer mac address
  767. * @peer_type: peer type
  768. * @vdev_id: vdev id
  769. *
  770. * Return: QDF_STATUS_SUCCESS for success or error code
  771. */
  772. static QDF_STATUS send_peer_create_cmd_tlv(wmi_unified_t wmi,
  773. struct peer_create_params *param)
  774. {
  775. wmi_peer_create_cmd_fixed_param *cmd;
  776. wmi_buf_t buf;
  777. int32_t len = sizeof(*cmd);
  778. buf = wmi_buf_alloc(wmi, len);
  779. if (!buf) {
  780. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  781. return QDF_STATUS_E_NOMEM;
  782. }
  783. cmd = (wmi_peer_create_cmd_fixed_param *) wmi_buf_data(buf);
  784. WMITLV_SET_HDR(&cmd->tlv_header,
  785. WMITLV_TAG_STRUC_wmi_peer_create_cmd_fixed_param,
  786. WMITLV_GET_STRUCT_TLVLEN
  787. (wmi_peer_create_cmd_fixed_param));
  788. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_addr, &cmd->peer_macaddr);
  789. cmd->peer_type = param->peer_type;
  790. cmd->vdev_id = param->vdev_id;
  791. if (wmi_unified_cmd_send(wmi, buf, len, WMI_PEER_CREATE_CMDID)) {
  792. WMI_LOGP("%s: failed to send WMI_PEER_CREATE_CMDID", __func__);
  793. wmi_buf_free(buf);
  794. return QDF_STATUS_E_FAILURE;
  795. }
  796. WMI_LOGD("%s: peer_addr %pM vdev_id %d", __func__, param->peer_addr,
  797. param->vdev_id);
  798. return 0;
  799. }
  800. /**
  801. * send_peer_rx_reorder_queue_setup_cmd_tlv() - send rx reorder setup
  802. * command to fw
  803. * @wmi: wmi handle
  804. * @rx_reorder_queue_setup_params: Rx reorder queue setup parameters
  805. *
  806. * Return: 0 for success or error code
  807. */
  808. static
  809. QDF_STATUS send_peer_rx_reorder_queue_setup_cmd_tlv(wmi_unified_t wmi,
  810. struct rx_reorder_queue_setup_params *param)
  811. {
  812. wmi_peer_reorder_queue_setup_cmd_fixed_param *cmd;
  813. wmi_buf_t buf;
  814. int32_t len = sizeof(*cmd);
  815. buf = wmi_buf_alloc(wmi, len);
  816. if (!buf) {
  817. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  818. return QDF_STATUS_E_NOMEM;
  819. }
  820. cmd = (wmi_peer_reorder_queue_setup_cmd_fixed_param *)wmi_buf_data(buf);
  821. WMITLV_SET_HDR(&cmd->tlv_header,
  822. WMITLV_TAG_STRUC_wmi_peer_reorder_queue_setup_cmd_fixed_param,
  823. WMITLV_GET_STRUCT_TLVLEN
  824. (wmi_peer_reorder_queue_setup_cmd_fixed_param));
  825. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_macaddr, &cmd->peer_macaddr);
  826. cmd->vdev_id = param->vdev_id;
  827. cmd->tid = param->tid;
  828. cmd->queue_ptr_lo = param->hw_qdesc_paddr_lo;
  829. cmd->queue_ptr_hi = param->hw_qdesc_paddr_hi;
  830. cmd->queue_no = param->queue_no;
  831. if (wmi_unified_cmd_send(wmi, buf, len,
  832. WMI_PEER_REORDER_QUEUE_SETUP_CMDID)) {
  833. WMI_LOGP("%s: fail to send WMI_PEER_REORDER_QUEUE_SETUP_CMDID",
  834. __func__);
  835. qdf_nbuf_free(buf);
  836. return QDF_STATUS_E_FAILURE;
  837. }
  838. WMI_LOGD("%s: peer_macaddr %pM vdev_id %d, tid %d\n", __func__,
  839. param->peer_macaddr, param->vdev_id, param->tid);
  840. return QDF_STATUS_SUCCESS;
  841. }
  842. /**
  843. * send_peer_rx_reorder_queue_remove_cmd_tlv() - send rx reorder remove
  844. * command to fw
  845. * @wmi: wmi handle
  846. * @rx_reorder_queue_remove_params: Rx reorder queue remove parameters
  847. *
  848. * Return: 0 for success or error code
  849. */
  850. static
  851. QDF_STATUS send_peer_rx_reorder_queue_remove_cmd_tlv(wmi_unified_t wmi,
  852. struct rx_reorder_queue_remove_params *param)
  853. {
  854. wmi_peer_reorder_queue_remove_cmd_fixed_param *cmd;
  855. wmi_buf_t buf;
  856. int32_t len = sizeof(*cmd);
  857. buf = wmi_buf_alloc(wmi, len);
  858. if (!buf) {
  859. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  860. return QDF_STATUS_E_NOMEM;
  861. }
  862. cmd = (wmi_peer_reorder_queue_remove_cmd_fixed_param *)
  863. wmi_buf_data(buf);
  864. WMITLV_SET_HDR(&cmd->tlv_header,
  865. WMITLV_TAG_STRUC_wmi_peer_reorder_queue_remove_cmd_fixed_param,
  866. WMITLV_GET_STRUCT_TLVLEN
  867. (wmi_peer_reorder_queue_remove_cmd_fixed_param));
  868. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_macaddr, &cmd->peer_macaddr);
  869. cmd->vdev_id = param->vdev_id;
  870. cmd->tid_mask = param->peer_tid_bitmap;
  871. if (wmi_unified_cmd_send(wmi, buf, len,
  872. WMI_PEER_REORDER_QUEUE_REMOVE_CMDID)) {
  873. WMI_LOGP("%s: fail to send WMI_PEER_REORDER_QUEUE_REMOVE_CMDID",
  874. __func__);
  875. qdf_nbuf_free(buf);
  876. return QDF_STATUS_E_FAILURE;
  877. }
  878. WMI_LOGD("%s: peer_macaddr %pM vdev_id %d, tid_map %d", __func__,
  879. param->peer_macaddr, param->vdev_id, param->peer_tid_bitmap);
  880. return QDF_STATUS_SUCCESS;
  881. }
  882. /**
  883. * send_peer_add_wds_entry_cmd_tlv() - send peer add command to fw
  884. * @wmi_handle: wmi handle
  885. * @param: pointer holding peer details
  886. *
  887. * Return: 0 for success or error code
  888. */
  889. static QDF_STATUS send_peer_add_wds_entry_cmd_tlv(wmi_unified_t wmi_handle,
  890. struct peer_add_wds_entry_params *param)
  891. {
  892. wmi_peer_add_wds_entry_cmd_fixed_param *cmd;
  893. wmi_buf_t buf;
  894. int len = sizeof(*cmd);
  895. buf = wmi_buf_alloc(wmi_handle, len);
  896. if (!buf) {
  897. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  898. return QDF_STATUS_E_FAILURE;
  899. }
  900. cmd = (wmi_peer_add_wds_entry_cmd_fixed_param *) wmi_buf_data(buf);
  901. WMITLV_SET_HDR(&cmd->tlv_header,
  902. WMITLV_TAG_STRUC_wmi_peer_add_wds_entry_cmd_fixed_param,
  903. WMITLV_GET_STRUCT_TLVLEN
  904. (wmi_peer_add_wds_entry_cmd_fixed_param));
  905. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->dest_addr, &cmd->wds_macaddr);
  906. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_addr, &cmd->peer_macaddr);
  907. cmd->flags = (param->flags & WMI_HOST_WDS_FLAG_STATIC) ? WMI_WDS_FLAG_STATIC : 0;
  908. cmd->vdev_id = param->vdev_id;
  909. return wmi_unified_cmd_send(wmi_handle, buf, len,
  910. WMI_PEER_ADD_WDS_ENTRY_CMDID);
  911. }
  912. /**
  913. * send_peer_del_wds_entry_cmd_tlv() - send peer delete command to fw
  914. * @wmi_handle: wmi handle
  915. * @param: pointer holding peer details
  916. *
  917. * Return: 0 for success or error code
  918. */
  919. static QDF_STATUS send_peer_del_wds_entry_cmd_tlv(wmi_unified_t wmi_handle,
  920. struct peer_del_wds_entry_params *param)
  921. {
  922. wmi_peer_remove_wds_entry_cmd_fixed_param *cmd;
  923. wmi_buf_t buf;
  924. int len = sizeof(*cmd);
  925. buf = wmi_buf_alloc(wmi_handle, len);
  926. if (!buf) {
  927. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  928. return QDF_STATUS_E_NOMEM;
  929. }
  930. cmd = (wmi_peer_remove_wds_entry_cmd_fixed_param *)wmi_buf_data(buf);
  931. WMITLV_SET_HDR(&cmd->tlv_header,
  932. WMITLV_TAG_STRUC_wmi_peer_remove_wds_entry_cmd_fixed_param,
  933. WMITLV_GET_STRUCT_TLVLEN
  934. (wmi_peer_remove_wds_entry_cmd_fixed_param));
  935. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->dest_addr, &cmd->wds_macaddr);
  936. cmd->vdev_id = param->vdev_id;
  937. return wmi_unified_cmd_send(wmi_handle, buf, len,
  938. WMI_PEER_REMOVE_WDS_ENTRY_CMDID);
  939. }
  940. /**
  941. * send_peer_update_wds_entry_cmd_non_tlv() - send peer update command to fw
  942. * @wmi_handle: wmi handle
  943. * @param: pointer holding peer details
  944. *
  945. * Return: 0 for success or error code
  946. */
  947. static QDF_STATUS send_peer_update_wds_entry_cmd_tlv(wmi_unified_t wmi_handle,
  948. struct peer_update_wds_entry_params *param)
  949. {
  950. wmi_peer_update_wds_entry_cmd_fixed_param *cmd;
  951. wmi_buf_t buf;
  952. int len = sizeof(*cmd);
  953. buf = wmi_buf_alloc(wmi_handle, len);
  954. if (!buf) {
  955. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  956. return QDF_STATUS_E_NOMEM;
  957. }
  958. /* wmi_buf_alloc returns zeroed command buffer */
  959. cmd = (wmi_peer_update_wds_entry_cmd_fixed_param *)wmi_buf_data(buf);
  960. WMITLV_SET_HDR(&cmd->tlv_header,
  961. WMITLV_TAG_STRUC_wmi_peer_update_wds_entry_cmd_fixed_param,
  962. WMITLV_GET_STRUCT_TLVLEN
  963. (wmi_peer_update_wds_entry_cmd_fixed_param));
  964. cmd->flags = (param->flags & WMI_HOST_WDS_FLAG_STATIC) ? WMI_WDS_FLAG_STATIC : 0;
  965. cmd->vdev_id = param->vdev_id;
  966. if (param->wds_macaddr)
  967. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->wds_macaddr,
  968. &cmd->wds_macaddr);
  969. if (param->peer_macaddr)
  970. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_macaddr,
  971. &cmd->peer_macaddr);
  972. return wmi_unified_cmd_send(wmi_handle, buf, len,
  973. WMI_PEER_UPDATE_WDS_ENTRY_CMDID);
  974. }
  975. /**
  976. * send_pdev_get_tpc_config_cmd_tlv() - send get tpc config command to fw
  977. * @wmi_handle: wmi handle
  978. * @param: pointer to get tpc config params
  979. *
  980. * Return: 0 for success or error code
  981. */
  982. static QDF_STATUS
  983. send_pdev_get_tpc_config_cmd_tlv(wmi_unified_t wmi_handle,
  984. uint32_t param)
  985. {
  986. wmi_pdev_get_tpc_config_cmd_fixed_param *cmd;
  987. wmi_buf_t buf;
  988. int32_t len = sizeof(wmi_pdev_get_tpc_config_cmd_fixed_param);
  989. buf = wmi_buf_alloc(wmi_handle, len);
  990. if (!buf) {
  991. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  992. return QDF_STATUS_E_NOMEM;
  993. }
  994. cmd = (wmi_pdev_get_tpc_config_cmd_fixed_param *)wmi_buf_data(buf);
  995. WMITLV_SET_HDR(&cmd->tlv_header,
  996. WMITLV_TAG_STRUC_wmi_pdev_get_tpc_config_cmd_fixed_param,
  997. WMITLV_GET_STRUCT_TLVLEN
  998. (wmi_pdev_get_tpc_config_cmd_fixed_param));
  999. cmd->param = param;
  1000. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1001. WMI_PDEV_GET_TPC_CONFIG_CMDID)) {
  1002. WMI_LOGE("Send pdev get tpc config cmd failed");
  1003. wmi_buf_free(buf);
  1004. return QDF_STATUS_E_FAILURE;
  1005. }
  1006. WMI_LOGD("%s:send success", __func__);
  1007. return QDF_STATUS_SUCCESS;
  1008. }
  1009. #ifdef WLAN_SUPPORT_GREEN_AP
  1010. /**
  1011. * send_green_ap_ps_cmd_tlv() - enable green ap powersave command
  1012. * @wmi_handle: wmi handle
  1013. * @value: value
  1014. * @pdev_id: pdev id to have radio context
  1015. *
  1016. * Return: QDF_STATUS_SUCCESS for success or error code
  1017. */
  1018. static QDF_STATUS send_green_ap_ps_cmd_tlv(wmi_unified_t wmi_handle,
  1019. uint32_t value, uint8_t pdev_id)
  1020. {
  1021. wmi_pdev_green_ap_ps_enable_cmd_fixed_param *cmd;
  1022. wmi_buf_t buf;
  1023. int32_t len = sizeof(*cmd);
  1024. WMI_LOGD("Set Green AP PS val %d", value);
  1025. buf = wmi_buf_alloc(wmi_handle, len);
  1026. if (!buf) {
  1027. WMI_LOGP("%s: Green AP PS Mem Alloc Failed", __func__);
  1028. return QDF_STATUS_E_NOMEM;
  1029. }
  1030. cmd = (wmi_pdev_green_ap_ps_enable_cmd_fixed_param *) wmi_buf_data(buf);
  1031. WMITLV_SET_HDR(&cmd->tlv_header,
  1032. WMITLV_TAG_STRUC_wmi_pdev_green_ap_ps_enable_cmd_fixed_param,
  1033. WMITLV_GET_STRUCT_TLVLEN
  1034. (wmi_pdev_green_ap_ps_enable_cmd_fixed_param));
  1035. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(pdev_id);
  1036. cmd->enable = value;
  1037. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1038. WMI_PDEV_GREEN_AP_PS_ENABLE_CMDID)) {
  1039. WMI_LOGE("Set Green AP PS param Failed val %d", value);
  1040. wmi_buf_free(buf);
  1041. return QDF_STATUS_E_FAILURE;
  1042. }
  1043. return 0;
  1044. }
  1045. #endif
  1046. /**
  1047. * send_pdev_utf_cmd_tlv() - send utf command to fw
  1048. * @wmi_handle: wmi handle
  1049. * @param: pointer to pdev_utf_params
  1050. * @mac_id: mac id to have radio context
  1051. *
  1052. * Return: QDF_STATUS_SUCCESS for success or error code
  1053. */
  1054. static QDF_STATUS
  1055. send_pdev_utf_cmd_tlv(wmi_unified_t wmi_handle,
  1056. struct pdev_utf_params *param,
  1057. uint8_t mac_id)
  1058. {
  1059. wmi_buf_t buf;
  1060. uint8_t *cmd;
  1061. /* if param->len is 0 no data is sent, return error */
  1062. QDF_STATUS ret = QDF_STATUS_E_INVAL;
  1063. static uint8_t msgref = 1;
  1064. uint8_t segNumber = 0, segInfo, numSegments;
  1065. uint16_t chunk_len, total_bytes;
  1066. uint8_t *bufpos;
  1067. struct seg_hdr_info segHdrInfo;
  1068. bufpos = param->utf_payload;
  1069. total_bytes = param->len;
  1070. ASSERT(total_bytes / MAX_WMI_UTF_LEN ==
  1071. (uint8_t) (total_bytes / MAX_WMI_UTF_LEN));
  1072. numSegments = (uint8_t) (total_bytes / MAX_WMI_UTF_LEN);
  1073. if (param->len - (numSegments * MAX_WMI_UTF_LEN))
  1074. numSegments++;
  1075. while (param->len) {
  1076. if (param->len > MAX_WMI_UTF_LEN)
  1077. chunk_len = MAX_WMI_UTF_LEN; /* MAX message */
  1078. else
  1079. chunk_len = param->len;
  1080. buf = wmi_buf_alloc(wmi_handle,
  1081. (chunk_len + sizeof(segHdrInfo) +
  1082. WMI_TLV_HDR_SIZE));
  1083. if (!buf) {
  1084. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  1085. return QDF_STATUS_E_NOMEM;
  1086. }
  1087. cmd = (uint8_t *) wmi_buf_data(buf);
  1088. segHdrInfo.len = total_bytes;
  1089. segHdrInfo.msgref = msgref;
  1090. segInfo = ((numSegments << 4) & 0xF0) | (segNumber & 0xF);
  1091. segHdrInfo.segmentInfo = segInfo;
  1092. segHdrInfo.pad = 0;
  1093. WMI_LOGD("%s:segHdrInfo.len = %d, segHdrInfo.msgref = %d,"
  1094. " segHdrInfo.segmentInfo = %d",
  1095. __func__, segHdrInfo.len, segHdrInfo.msgref,
  1096. segHdrInfo.segmentInfo);
  1097. WMI_LOGD("%s:total_bytes %d segNumber %d totalSegments %d"
  1098. "chunk len %d", __func__, total_bytes, segNumber,
  1099. numSegments, chunk_len);
  1100. segNumber++;
  1101. WMITLV_SET_HDR(cmd, WMITLV_TAG_ARRAY_BYTE,
  1102. (chunk_len + sizeof(segHdrInfo)));
  1103. cmd += WMI_TLV_HDR_SIZE;
  1104. memcpy(cmd, &segHdrInfo, sizeof(segHdrInfo)); /* 4 bytes */
  1105. memcpy(&cmd[sizeof(segHdrInfo)], bufpos, chunk_len);
  1106. ret = wmi_unified_cmd_send(wmi_handle, buf,
  1107. (chunk_len + sizeof(segHdrInfo) +
  1108. WMI_TLV_HDR_SIZE),
  1109. WMI_PDEV_UTF_CMDID);
  1110. if (QDF_IS_STATUS_ERROR(ret)) {
  1111. WMI_LOGE("Failed to send WMI_PDEV_UTF_CMDID command");
  1112. wmi_buf_free(buf);
  1113. break;
  1114. }
  1115. param->len -= chunk_len;
  1116. bufpos += chunk_len;
  1117. }
  1118. msgref++;
  1119. return ret;
  1120. }
  1121. #ifdef CONFIG_MCL
  1122. static inline uint32_t convert_host_pdev_param_tlv(wmi_unified_t wmi_handle,
  1123. uint32_t host_param)
  1124. {
  1125. return host_param;
  1126. }
  1127. #else
  1128. static inline uint32_t convert_host_pdev_param_tlv(wmi_unified_t wmi_handle,
  1129. uint32_t host_param)
  1130. {
  1131. if (host_param < wmi_pdev_param_max)
  1132. return wmi_handle->pdev_param[host_param];
  1133. return WMI_UNAVAILABLE_PARAM;
  1134. }
  1135. #endif
  1136. /**
  1137. * send_pdev_param_cmd_tlv() - set pdev parameters
  1138. * @wmi_handle: wmi handle
  1139. * @param: pointer to pdev parameter
  1140. * @mac_id: radio context
  1141. *
  1142. * Return: 0 on success, errno on failure
  1143. */
  1144. static QDF_STATUS
  1145. send_pdev_param_cmd_tlv(wmi_unified_t wmi_handle,
  1146. struct pdev_params *param,
  1147. uint8_t mac_id)
  1148. {
  1149. QDF_STATUS ret;
  1150. wmi_pdev_set_param_cmd_fixed_param *cmd;
  1151. wmi_buf_t buf;
  1152. uint16_t len = sizeof(*cmd);
  1153. uint32_t pdev_param;
  1154. pdev_param = convert_host_pdev_param_tlv(wmi_handle, param->param_id);
  1155. if (pdev_param == WMI_UNAVAILABLE_PARAM) {
  1156. WMI_LOGW("%s: Unavailable param %d\n",
  1157. __func__, param->param_id);
  1158. return QDF_STATUS_E_INVAL;
  1159. }
  1160. buf = wmi_buf_alloc(wmi_handle, len);
  1161. if (!buf) {
  1162. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  1163. return QDF_STATUS_E_NOMEM;
  1164. }
  1165. cmd = (wmi_pdev_set_param_cmd_fixed_param *) wmi_buf_data(buf);
  1166. WMITLV_SET_HDR(&cmd->tlv_header,
  1167. WMITLV_TAG_STRUC_wmi_pdev_set_param_cmd_fixed_param,
  1168. WMITLV_GET_STRUCT_TLVLEN
  1169. (wmi_pdev_set_param_cmd_fixed_param));
  1170. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(mac_id);
  1171. cmd->param_id = pdev_param;
  1172. cmd->param_value = param->param_value;
  1173. WMI_LOGD("Setting pdev param = %x, value = %u", param->param_id,
  1174. param->param_value);
  1175. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1176. WMI_PDEV_SET_PARAM_CMDID);
  1177. if (QDF_IS_STATUS_ERROR(ret)) {
  1178. WMI_LOGE("Failed to send set param command ret = %d", ret);
  1179. wmi_buf_free(buf);
  1180. }
  1181. return ret;
  1182. }
  1183. /**
  1184. * send_suspend_cmd_tlv() - WMI suspend function
  1185. * @param wmi_handle : handle to WMI.
  1186. * @param param : pointer to hold suspend parameter
  1187. * @mac_id: radio context
  1188. *
  1189. * Return 0 on success and -ve on failure.
  1190. */
  1191. static QDF_STATUS send_suspend_cmd_tlv(wmi_unified_t wmi_handle,
  1192. struct suspend_params *param,
  1193. uint8_t mac_id)
  1194. {
  1195. wmi_pdev_suspend_cmd_fixed_param *cmd;
  1196. wmi_buf_t wmibuf;
  1197. uint32_t len = sizeof(*cmd);
  1198. int32_t ret;
  1199. /*
  1200. * send the command to Target to ignore the
  1201. * PCIE reset so as to ensure that Host and target
  1202. * states are in sync
  1203. */
  1204. wmibuf = wmi_buf_alloc(wmi_handle, len);
  1205. if (wmibuf == NULL)
  1206. return QDF_STATUS_E_NOMEM;
  1207. cmd = (wmi_pdev_suspend_cmd_fixed_param *) wmi_buf_data(wmibuf);
  1208. WMITLV_SET_HDR(&cmd->tlv_header,
  1209. WMITLV_TAG_STRUC_wmi_pdev_suspend_cmd_fixed_param,
  1210. WMITLV_GET_STRUCT_TLVLEN
  1211. (wmi_pdev_suspend_cmd_fixed_param));
  1212. if (param->disable_target_intr)
  1213. cmd->suspend_opt = WMI_PDEV_SUSPEND_AND_DISABLE_INTR;
  1214. else
  1215. cmd->suspend_opt = WMI_PDEV_SUSPEND;
  1216. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(mac_id);
  1217. ret = wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  1218. WMI_PDEV_SUSPEND_CMDID);
  1219. if (ret) {
  1220. wmi_buf_free(wmibuf);
  1221. WMI_LOGE("Failed to send WMI_PDEV_SUSPEND_CMDID command");
  1222. }
  1223. return ret;
  1224. }
  1225. /**
  1226. * send_resume_cmd_tlv() - WMI resume function
  1227. * @param wmi_handle : handle to WMI.
  1228. * @mac_id: radio context
  1229. *
  1230. * Return: 0 on success and -ve on failure.
  1231. */
  1232. static QDF_STATUS send_resume_cmd_tlv(wmi_unified_t wmi_handle,
  1233. uint8_t mac_id)
  1234. {
  1235. wmi_buf_t wmibuf;
  1236. wmi_pdev_resume_cmd_fixed_param *cmd;
  1237. QDF_STATUS ret;
  1238. wmibuf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1239. if (wmibuf == NULL)
  1240. return QDF_STATUS_E_NOMEM;
  1241. cmd = (wmi_pdev_resume_cmd_fixed_param *) wmi_buf_data(wmibuf);
  1242. WMITLV_SET_HDR(&cmd->tlv_header,
  1243. WMITLV_TAG_STRUC_wmi_pdev_resume_cmd_fixed_param,
  1244. WMITLV_GET_STRUCT_TLVLEN
  1245. (wmi_pdev_resume_cmd_fixed_param));
  1246. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(mac_id);
  1247. ret = wmi_unified_cmd_send(wmi_handle, wmibuf, sizeof(*cmd),
  1248. WMI_PDEV_RESUME_CMDID);
  1249. if (QDF_IS_STATUS_ERROR(ret)) {
  1250. WMI_LOGE("Failed to send WMI_PDEV_RESUME_CMDID command");
  1251. wmi_buf_free(wmibuf);
  1252. }
  1253. return ret;
  1254. }
  1255. #ifdef FEATURE_WLAN_D0WOW
  1256. /**
  1257. * send_d0wow_enable_cmd_tlv() - WMI d0 wow enable function
  1258. * @param wmi_handle: handle to WMI.
  1259. * @mac_id: radio context
  1260. *
  1261. * Return: 0 on success and error code on failure.
  1262. */
  1263. static QDF_STATUS send_d0wow_enable_cmd_tlv(wmi_unified_t wmi_handle,
  1264. uint8_t mac_id)
  1265. {
  1266. wmi_d0_wow_enable_disable_cmd_fixed_param *cmd;
  1267. wmi_buf_t buf;
  1268. int32_t len;
  1269. QDF_STATUS status;
  1270. len = sizeof(wmi_d0_wow_enable_disable_cmd_fixed_param);
  1271. buf = wmi_buf_alloc(wmi_handle, len);
  1272. if (!buf) {
  1273. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  1274. return QDF_STATUS_E_NOMEM;
  1275. }
  1276. cmd = (wmi_d0_wow_enable_disable_cmd_fixed_param *) wmi_buf_data(buf);
  1277. WMITLV_SET_HDR(&cmd->tlv_header,
  1278. WMITLV_TAG_STRUC_wmi_d0_wow_enable_disable_cmd_fixed_param,
  1279. WMITLV_GET_STRUCT_TLVLEN
  1280. (wmi_d0_wow_enable_disable_cmd_fixed_param));
  1281. cmd->enable = true;
  1282. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  1283. WMI_D0_WOW_ENABLE_DISABLE_CMDID);
  1284. if (QDF_IS_STATUS_ERROR(status))
  1285. wmi_buf_free(buf);
  1286. return status;
  1287. }
  1288. /**
  1289. * send_d0wow_disable_cmd_tlv() - WMI d0 wow disable function
  1290. * @param wmi_handle: handle to WMI.
  1291. * @mac_id: radio context
  1292. *
  1293. * Return: 0 on success and error code on failure.
  1294. */
  1295. static QDF_STATUS send_d0wow_disable_cmd_tlv(wmi_unified_t wmi_handle,
  1296. uint8_t mac_id)
  1297. {
  1298. wmi_d0_wow_enable_disable_cmd_fixed_param *cmd;
  1299. wmi_buf_t buf;
  1300. int32_t len;
  1301. QDF_STATUS status;
  1302. len = sizeof(wmi_d0_wow_enable_disable_cmd_fixed_param);
  1303. buf = wmi_buf_alloc(wmi_handle, len);
  1304. if (!buf) {
  1305. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  1306. return QDF_STATUS_E_NOMEM;
  1307. }
  1308. cmd = (wmi_d0_wow_enable_disable_cmd_fixed_param *) wmi_buf_data(buf);
  1309. WMITLV_SET_HDR(&cmd->tlv_header,
  1310. WMITLV_TAG_STRUC_wmi_d0_wow_enable_disable_cmd_fixed_param,
  1311. WMITLV_GET_STRUCT_TLVLEN
  1312. (wmi_d0_wow_enable_disable_cmd_fixed_param));
  1313. cmd->enable = false;
  1314. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  1315. WMI_D0_WOW_ENABLE_DISABLE_CMDID);
  1316. if (QDF_IS_STATUS_ERROR(status))
  1317. wmi_buf_free(buf);
  1318. return status;
  1319. }
  1320. #endif
  1321. /**
  1322. * send_wow_enable_cmd_tlv() - WMI wow enable function
  1323. * @param wmi_handle : handle to WMI.
  1324. * @param param : pointer to hold wow enable parameter
  1325. * @mac_id: radio context
  1326. *
  1327. * Return: 0 on success and -ve on failure.
  1328. */
  1329. static QDF_STATUS send_wow_enable_cmd_tlv(wmi_unified_t wmi_handle,
  1330. struct wow_cmd_params *param,
  1331. uint8_t mac_id)
  1332. {
  1333. wmi_wow_enable_cmd_fixed_param *cmd;
  1334. wmi_buf_t buf;
  1335. int32_t len;
  1336. int32_t ret;
  1337. len = sizeof(wmi_wow_enable_cmd_fixed_param);
  1338. buf = wmi_buf_alloc(wmi_handle, len);
  1339. if (!buf) {
  1340. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  1341. return QDF_STATUS_E_NOMEM;
  1342. }
  1343. cmd = (wmi_wow_enable_cmd_fixed_param *) wmi_buf_data(buf);
  1344. WMITLV_SET_HDR(&cmd->tlv_header,
  1345. WMITLV_TAG_STRUC_wmi_wow_enable_cmd_fixed_param,
  1346. WMITLV_GET_STRUCT_TLVLEN
  1347. (wmi_wow_enable_cmd_fixed_param));
  1348. cmd->enable = param->enable;
  1349. if (param->can_suspend_link)
  1350. cmd->pause_iface_config = WOW_IFACE_PAUSE_ENABLED;
  1351. else
  1352. cmd->pause_iface_config = WOW_IFACE_PAUSE_DISABLED;
  1353. cmd->flags = param->flags;
  1354. WMI_LOGI("suspend type: %s",
  1355. cmd->pause_iface_config == WOW_IFACE_PAUSE_ENABLED ?
  1356. "WOW_IFACE_PAUSE_ENABLED" : "WOW_IFACE_PAUSE_DISABLED");
  1357. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1358. WMI_WOW_ENABLE_CMDID);
  1359. if (ret)
  1360. wmi_buf_free(buf);
  1361. return ret;
  1362. }
  1363. /**
  1364. * send_set_ap_ps_param_cmd_tlv() - set ap powersave parameters
  1365. * @wmi_handle: wmi handle
  1366. * @peer_addr: peer mac address
  1367. * @param: pointer to ap_ps parameter structure
  1368. *
  1369. * Return: QDF_STATUS_SUCCESS for success or error code
  1370. */
  1371. static QDF_STATUS send_set_ap_ps_param_cmd_tlv(wmi_unified_t wmi_handle,
  1372. uint8_t *peer_addr,
  1373. struct ap_ps_params *param)
  1374. {
  1375. wmi_ap_ps_peer_cmd_fixed_param *cmd;
  1376. wmi_buf_t buf;
  1377. int32_t err;
  1378. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1379. if (!buf) {
  1380. WMI_LOGE("Failed to allocate buffer to send set_ap_ps_param cmd");
  1381. return QDF_STATUS_E_NOMEM;
  1382. }
  1383. cmd = (wmi_ap_ps_peer_cmd_fixed_param *) wmi_buf_data(buf);
  1384. WMITLV_SET_HDR(&cmd->tlv_header,
  1385. WMITLV_TAG_STRUC_wmi_ap_ps_peer_cmd_fixed_param,
  1386. WMITLV_GET_STRUCT_TLVLEN
  1387. (wmi_ap_ps_peer_cmd_fixed_param));
  1388. cmd->vdev_id = param->vdev_id;
  1389. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  1390. cmd->param = param->param;
  1391. cmd->value = param->value;
  1392. err = wmi_unified_cmd_send(wmi_handle, buf,
  1393. sizeof(*cmd), WMI_AP_PS_PEER_PARAM_CMDID);
  1394. if (err) {
  1395. WMI_LOGE("Failed to send set_ap_ps_param cmd");
  1396. wmi_buf_free(buf);
  1397. return QDF_STATUS_E_FAILURE;
  1398. }
  1399. return 0;
  1400. }
  1401. /**
  1402. * send_set_sta_ps_param_cmd_tlv() - set sta powersave parameters
  1403. * @wmi_handle: wmi handle
  1404. * @peer_addr: peer mac address
  1405. * @param: pointer to sta_ps parameter structure
  1406. *
  1407. * Return: QDF_STATUS_SUCCESS for success or error code
  1408. */
  1409. static QDF_STATUS send_set_sta_ps_param_cmd_tlv(wmi_unified_t wmi_handle,
  1410. struct sta_ps_params *param)
  1411. {
  1412. wmi_sta_powersave_param_cmd_fixed_param *cmd;
  1413. wmi_buf_t buf;
  1414. int32_t len = sizeof(*cmd);
  1415. buf = wmi_buf_alloc(wmi_handle, len);
  1416. if (!buf) {
  1417. WMI_LOGP("%s: Set Sta Ps param Mem Alloc Failed", __func__);
  1418. return QDF_STATUS_E_NOMEM;
  1419. }
  1420. cmd = (wmi_sta_powersave_param_cmd_fixed_param *) wmi_buf_data(buf);
  1421. WMITLV_SET_HDR(&cmd->tlv_header,
  1422. WMITLV_TAG_STRUC_wmi_sta_powersave_param_cmd_fixed_param,
  1423. WMITLV_GET_STRUCT_TLVLEN
  1424. (wmi_sta_powersave_param_cmd_fixed_param));
  1425. cmd->vdev_id = param->vdev_id;
  1426. cmd->param = param->param;
  1427. cmd->value = param->value;
  1428. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1429. WMI_STA_POWERSAVE_PARAM_CMDID)) {
  1430. WMI_LOGE("Set Sta Ps param Failed vdevId %d Param %d val %d",
  1431. param->vdev_id, param->param, param->value);
  1432. wmi_buf_free(buf);
  1433. return QDF_STATUS_E_FAILURE;
  1434. }
  1435. return 0;
  1436. }
  1437. /**
  1438. * send_crash_inject_cmd_tlv() - inject fw crash
  1439. * @wmi_handle: wmi handle
  1440. * @param: ponirt to crash inject parameter structure
  1441. *
  1442. * Return: QDF_STATUS_SUCCESS for success or return error
  1443. */
  1444. static QDF_STATUS send_crash_inject_cmd_tlv(wmi_unified_t wmi_handle,
  1445. struct crash_inject *param)
  1446. {
  1447. int32_t ret = 0;
  1448. WMI_FORCE_FW_HANG_CMD_fixed_param *cmd;
  1449. uint16_t len = sizeof(*cmd);
  1450. wmi_buf_t buf;
  1451. buf = wmi_buf_alloc(wmi_handle, len);
  1452. if (!buf) {
  1453. WMI_LOGE("%s: wmi_buf_alloc failed!", __func__);
  1454. return QDF_STATUS_E_NOMEM;
  1455. }
  1456. cmd = (WMI_FORCE_FW_HANG_CMD_fixed_param *) wmi_buf_data(buf);
  1457. WMITLV_SET_HDR(&cmd->tlv_header,
  1458. WMITLV_TAG_STRUC_WMI_FORCE_FW_HANG_CMD_fixed_param,
  1459. WMITLV_GET_STRUCT_TLVLEN
  1460. (WMI_FORCE_FW_HANG_CMD_fixed_param));
  1461. cmd->type = param->type;
  1462. cmd->delay_time_ms = param->delay_time_ms;
  1463. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1464. WMI_FORCE_FW_HANG_CMDID);
  1465. if (ret) {
  1466. WMI_LOGE("%s: Failed to send set param command, ret = %d",
  1467. __func__, ret);
  1468. wmi_buf_free(buf);
  1469. }
  1470. return ret;
  1471. }
  1472. #ifdef FEATURE_FW_LOG_PARSING
  1473. /**
  1474. * send_dbglog_cmd_tlv() - set debug log level
  1475. * @param wmi_handle : handle to WMI.
  1476. * @param param : pointer to hold dbglog level parameter
  1477. *
  1478. * Return: 0 on success and -ve on failure.
  1479. */
  1480. static QDF_STATUS
  1481. send_dbglog_cmd_tlv(wmi_unified_t wmi_handle,
  1482. struct dbglog_params *dbglog_param)
  1483. {
  1484. wmi_buf_t buf;
  1485. wmi_debug_log_config_cmd_fixed_param *configmsg;
  1486. QDF_STATUS status;
  1487. int32_t i;
  1488. int32_t len;
  1489. int8_t *buf_ptr;
  1490. int32_t *module_id_bitmap_array; /* Used to fomr the second tlv */
  1491. ASSERT(dbglog_param->bitmap_len < MAX_MODULE_ID_BITMAP_WORDS);
  1492. /* Allocate size for 2 tlvs - including tlv hdr space for second tlv */
  1493. len = sizeof(wmi_debug_log_config_cmd_fixed_param) + WMI_TLV_HDR_SIZE +
  1494. (sizeof(int32_t) * MAX_MODULE_ID_BITMAP_WORDS);
  1495. buf = wmi_buf_alloc(wmi_handle, len);
  1496. if (buf == NULL)
  1497. return QDF_STATUS_E_NOMEM;
  1498. configmsg =
  1499. (wmi_debug_log_config_cmd_fixed_param *) (wmi_buf_data(buf));
  1500. buf_ptr = (int8_t *) configmsg;
  1501. WMITLV_SET_HDR(&configmsg->tlv_header,
  1502. WMITLV_TAG_STRUC_wmi_debug_log_config_cmd_fixed_param,
  1503. WMITLV_GET_STRUCT_TLVLEN
  1504. (wmi_debug_log_config_cmd_fixed_param));
  1505. configmsg->dbg_log_param = dbglog_param->param;
  1506. configmsg->value = dbglog_param->val;
  1507. /* Filling in the data part of second tlv -- should
  1508. * follow first tlv _ WMI_TLV_HDR_SIZE */
  1509. module_id_bitmap_array = (uint32_t *) (buf_ptr +
  1510. sizeof
  1511. (wmi_debug_log_config_cmd_fixed_param)
  1512. + WMI_TLV_HDR_SIZE);
  1513. WMITLV_SET_HDR(buf_ptr + sizeof(wmi_debug_log_config_cmd_fixed_param),
  1514. WMITLV_TAG_ARRAY_UINT32,
  1515. sizeof(uint32_t) * MAX_MODULE_ID_BITMAP_WORDS);
  1516. if (dbglog_param->module_id_bitmap) {
  1517. for (i = 0; i < dbglog_param->bitmap_len; ++i) {
  1518. module_id_bitmap_array[i] =
  1519. dbglog_param->module_id_bitmap[i];
  1520. }
  1521. }
  1522. status = wmi_unified_cmd_send(wmi_handle, buf,
  1523. len, WMI_DBGLOG_CFG_CMDID);
  1524. if (status != QDF_STATUS_SUCCESS)
  1525. wmi_buf_free(buf);
  1526. return status;
  1527. }
  1528. #endif
  1529. #ifdef CONFIG_MCL
  1530. static inline uint32_t convert_host_vdev_param_tlv(wmi_unified_t wmi_handle,
  1531. uint32_t host_param)
  1532. {
  1533. return host_param;
  1534. }
  1535. #else
  1536. static inline uint32_t convert_host_vdev_param_tlv(wmi_unified_t wmi_handle,
  1537. uint32_t host_param)
  1538. {
  1539. if (host_param < wmi_vdev_param_max)
  1540. return wmi_handle->vdev_param[host_param];
  1541. return WMI_UNAVAILABLE_PARAM;
  1542. }
  1543. #endif
  1544. /**
  1545. * send_vdev_set_param_cmd_tlv() - WMI vdev set parameter function
  1546. * @param wmi_handle : handle to WMI.
  1547. * @param macaddr : MAC address
  1548. * @param param : pointer to hold vdev set parameter
  1549. *
  1550. * Return: 0 on success and -ve on failure.
  1551. */
  1552. static QDF_STATUS send_vdev_set_param_cmd_tlv(wmi_unified_t wmi_handle,
  1553. struct vdev_set_params *param)
  1554. {
  1555. QDF_STATUS ret;
  1556. wmi_vdev_set_param_cmd_fixed_param *cmd;
  1557. wmi_buf_t buf;
  1558. uint16_t len = sizeof(*cmd);
  1559. uint32_t vdev_param;
  1560. vdev_param = convert_host_vdev_param_tlv(wmi_handle, param->param_id);
  1561. if (vdev_param == WMI_UNAVAILABLE_PARAM) {
  1562. WMI_LOGW("%s:Vdev param %d not available", __func__,
  1563. param->param_id);
  1564. return QDF_STATUS_E_INVAL;
  1565. }
  1566. buf = wmi_buf_alloc(wmi_handle, len);
  1567. if (!buf) {
  1568. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  1569. return QDF_STATUS_E_NOMEM;
  1570. }
  1571. cmd = (wmi_vdev_set_param_cmd_fixed_param *) wmi_buf_data(buf);
  1572. WMITLV_SET_HDR(&cmd->tlv_header,
  1573. WMITLV_TAG_STRUC_wmi_vdev_set_param_cmd_fixed_param,
  1574. WMITLV_GET_STRUCT_TLVLEN
  1575. (wmi_vdev_set_param_cmd_fixed_param));
  1576. cmd->vdev_id = param->if_id;
  1577. cmd->param_id = vdev_param;
  1578. cmd->param_value = param->param_value;
  1579. WMI_LOGD("Setting vdev %d param = %x, value = %u",
  1580. cmd->vdev_id, cmd->param_id, cmd->param_value);
  1581. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1582. WMI_VDEV_SET_PARAM_CMDID);
  1583. if (QDF_IS_STATUS_ERROR(ret)) {
  1584. WMI_LOGE("Failed to send set param command ret = %d", ret);
  1585. wmi_buf_free(buf);
  1586. }
  1587. return ret;
  1588. }
  1589. /**
  1590. * send_stats_request_cmd_tlv() - WMI request stats function
  1591. * @param wmi_handle : handle to WMI.
  1592. * @param macaddr : MAC address
  1593. * @param param : pointer to hold stats request parameter
  1594. *
  1595. * Return: 0 on success and -ve on failure.
  1596. */
  1597. static QDF_STATUS send_stats_request_cmd_tlv(wmi_unified_t wmi_handle,
  1598. uint8_t macaddr[IEEE80211_ADDR_LEN],
  1599. struct stats_request_params *param)
  1600. {
  1601. int32_t ret;
  1602. wmi_request_stats_cmd_fixed_param *cmd;
  1603. wmi_buf_t buf;
  1604. uint16_t len = sizeof(wmi_request_stats_cmd_fixed_param);
  1605. buf = wmi_buf_alloc(wmi_handle, len);
  1606. if (!buf) {
  1607. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  1608. return -QDF_STATUS_E_NOMEM;
  1609. }
  1610. cmd = (wmi_request_stats_cmd_fixed_param *) wmi_buf_data(buf);
  1611. WMITLV_SET_HDR(&cmd->tlv_header,
  1612. WMITLV_TAG_STRUC_wmi_request_stats_cmd_fixed_param,
  1613. WMITLV_GET_STRUCT_TLVLEN
  1614. (wmi_request_stats_cmd_fixed_param));
  1615. cmd->stats_id = param->stats_id;
  1616. cmd->vdev_id = param->vdev_id;
  1617. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  1618. param->pdev_id);
  1619. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  1620. WMI_LOGD("STATS REQ STATS_ID:%d VDEV_ID:%d PDEV_ID:%d-->",
  1621. cmd->stats_id, cmd->vdev_id, cmd->pdev_id);
  1622. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1623. WMI_REQUEST_STATS_CMDID);
  1624. if (ret) {
  1625. WMI_LOGE("Failed to send status request to fw =%d", ret);
  1626. wmi_buf_free(buf);
  1627. }
  1628. return ret;
  1629. }
  1630. #ifdef CONFIG_WIN
  1631. /**
  1632. * send_packet_log_enable_cmd_tlv() - Send WMI command to enable packet-log
  1633. * @param wmi_handle : handle to WMI.
  1634. * @param PKTLOG_EVENT : packet log event
  1635. * @mac_id: mac id to have radio context
  1636. *
  1637. * Return: 0 on success and -ve on failure.
  1638. */
  1639. static QDF_STATUS send_packet_log_enable_cmd_tlv(wmi_unified_t wmi_handle,
  1640. WMI_HOST_PKTLOG_EVENT PKTLOG_EVENT, uint8_t mac_id)
  1641. {
  1642. int32_t ret;
  1643. wmi_pdev_pktlog_enable_cmd_fixed_param *cmd;
  1644. wmi_buf_t buf;
  1645. uint16_t len = sizeof(wmi_pdev_pktlog_enable_cmd_fixed_param);
  1646. buf = wmi_buf_alloc(wmi_handle, len);
  1647. if (!buf) {
  1648. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  1649. return -QDF_STATUS_E_NOMEM;
  1650. }
  1651. cmd = (wmi_pdev_pktlog_enable_cmd_fixed_param *) wmi_buf_data(buf);
  1652. WMITLV_SET_HDR(&cmd->tlv_header,
  1653. WMITLV_TAG_STRUC_wmi_pdev_pktlog_enable_cmd_fixed_param,
  1654. WMITLV_GET_STRUCT_TLVLEN
  1655. (wmi_pdev_pktlog_enable_cmd_fixed_param));
  1656. cmd->evlist = PKTLOG_EVENT;
  1657. cmd->pdev_id = mac_id;
  1658. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1659. WMI_PDEV_PKTLOG_ENABLE_CMDID);
  1660. if (ret) {
  1661. WMI_LOGE("Failed to send pktlog enable cmd to FW =%d", ret);
  1662. wmi_buf_free(buf);
  1663. }
  1664. return ret;
  1665. }
  1666. /**
  1667. * send_packet_log_disable_cmd_tlv() - Send WMI command to disable packet-log
  1668. * @param wmi_handle : handle to WMI.
  1669. * @mac_id: mac id to have radio context
  1670. *
  1671. * Return: 0 on success and -ve on failure.
  1672. */
  1673. static QDF_STATUS send_packet_log_disable_cmd_tlv(wmi_unified_t wmi_handle,
  1674. uint8_t mac_id)
  1675. {
  1676. int32_t ret;
  1677. wmi_pdev_pktlog_disable_cmd_fixed_param *cmd;
  1678. wmi_buf_t buf;
  1679. uint16_t len = sizeof(wmi_pdev_pktlog_disable_cmd_fixed_param);
  1680. buf = wmi_buf_alloc(wmi_handle, len);
  1681. if (!buf) {
  1682. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  1683. return -QDF_STATUS_E_NOMEM;
  1684. }
  1685. cmd = (wmi_pdev_pktlog_disable_cmd_fixed_param *) wmi_buf_data(buf);
  1686. WMITLV_SET_HDR(&cmd->tlv_header,
  1687. WMITLV_TAG_STRUC_wmi_pdev_pktlog_disable_cmd_fixed_param,
  1688. WMITLV_GET_STRUCT_TLVLEN
  1689. (wmi_pdev_pktlog_disable_cmd_fixed_param));
  1690. cmd->pdev_id = mac_id;
  1691. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1692. WMI_PDEV_PKTLOG_DISABLE_CMDID);
  1693. if (ret) {
  1694. WMI_LOGE("Failed to send pktlog disable cmd to FW =%d", ret);
  1695. wmi_buf_free(buf);
  1696. }
  1697. return ret;
  1698. }
  1699. #else
  1700. /**
  1701. * send_packet_log_enable_cmd_tlv() - Send WMI command to enable
  1702. * packet-log
  1703. * @param wmi_handle : handle to WMI.
  1704. * @param macaddr : MAC address
  1705. * @param param : pointer to hold stats request parameter
  1706. *
  1707. * Return: 0 on success and -ve on failure.
  1708. */
  1709. static QDF_STATUS send_packet_log_enable_cmd_tlv(wmi_unified_t wmi_handle,
  1710. uint8_t macaddr[IEEE80211_ADDR_LEN],
  1711. struct packet_enable_params *param)
  1712. {
  1713. return 0;
  1714. }
  1715. /**
  1716. * send_packet_log_disable_cmd_tlv() - Send WMI command to disable
  1717. * packet-log
  1718. * @param wmi_handle : handle to WMI.
  1719. * @mac_id: mac id to have radio context
  1720. *
  1721. * Return: 0 on success and -ve on failure.
  1722. */
  1723. static QDF_STATUS send_packet_log_disable_cmd_tlv(wmi_unified_t wmi_handle,
  1724. uint8_t mac_id)
  1725. {
  1726. return 0;
  1727. }
  1728. #endif
  1729. #define WMI_FW_TIME_STAMP_LOW_MASK 0xffffffff
  1730. /**
  1731. * send_time_stamp_sync_cmd_tlv() - Send WMI command to
  1732. * sync time between bwtween host and firmware
  1733. * @param wmi_handle : handle to WMI.
  1734. *
  1735. * Return: None
  1736. */
  1737. static void send_time_stamp_sync_cmd_tlv(wmi_unified_t wmi_handle)
  1738. {
  1739. wmi_buf_t buf;
  1740. QDF_STATUS status = QDF_STATUS_SUCCESS;
  1741. WMI_DBGLOG_TIME_STAMP_SYNC_CMD_fixed_param *time_stamp;
  1742. int32_t len;
  1743. qdf_time_t time_ms;
  1744. len = sizeof(*time_stamp);
  1745. buf = wmi_buf_alloc(wmi_handle, len);
  1746. if (!buf) {
  1747. WMI_LOGP(FL("wmi_buf_alloc failed"));
  1748. return;
  1749. }
  1750. time_stamp =
  1751. (WMI_DBGLOG_TIME_STAMP_SYNC_CMD_fixed_param *)
  1752. (wmi_buf_data(buf));
  1753. WMITLV_SET_HDR(&time_stamp->tlv_header,
  1754. WMITLV_TAG_STRUC_wmi_dbglog_time_stamp_sync_cmd_fixed_param,
  1755. WMITLV_GET_STRUCT_TLVLEN(
  1756. WMI_DBGLOG_TIME_STAMP_SYNC_CMD_fixed_param));
  1757. time_ms = qdf_get_time_of_the_day_ms();
  1758. time_stamp->mode = WMI_TIME_STAMP_SYNC_MODE_MS;
  1759. time_stamp->time_stamp_low = time_ms &
  1760. WMI_FW_TIME_STAMP_LOW_MASK;
  1761. /*
  1762. * Send time_stamp_high 0 as the time converted from HR:MIN:SEC:MS to ms
  1763. * wont exceed 27 bit
  1764. */
  1765. time_stamp->time_stamp_high = 0;
  1766. WMI_LOGD(FL("WMA --> DBGLOG_TIME_STAMP_SYNC_CMDID mode %d time_stamp low %d high %d"),
  1767. time_stamp->mode, time_stamp->time_stamp_low,
  1768. time_stamp->time_stamp_high);
  1769. status = wmi_unified_cmd_send(wmi_handle, buf,
  1770. len, WMI_DBGLOG_TIME_STAMP_SYNC_CMDID);
  1771. if (status) {
  1772. WMI_LOGE("Failed to send WMI_DBGLOG_TIME_STAMP_SYNC_CMDID command");
  1773. wmi_buf_free(buf);
  1774. }
  1775. }
  1776. #ifdef WLAN_SUPPORT_FILS
  1777. /**
  1778. * extract_swfda_vdev_id_tlv() - extract swfda vdev id from event
  1779. * @wmi_handle: wmi handle
  1780. * @evt_buf: pointer to event buffer
  1781. * @vdev_id: pointer to hold vdev id
  1782. *
  1783. * Return: QDF_STATUS_SUCCESS on success and QDF_STATUS_E_INVAL on failure
  1784. */
  1785. static QDF_STATUS
  1786. extract_swfda_vdev_id_tlv(wmi_unified_t wmi_handle,
  1787. void *evt_buf, uint32_t *vdev_id)
  1788. {
  1789. WMI_HOST_SWFDA_EVENTID_param_tlvs *param_buf;
  1790. wmi_host_swfda_event_fixed_param *swfda_event;
  1791. param_buf = (WMI_HOST_SWFDA_EVENTID_param_tlvs *)evt_buf;
  1792. if (!param_buf) {
  1793. WMI_LOGE("Invalid swfda event buffer");
  1794. return QDF_STATUS_E_INVAL;
  1795. }
  1796. swfda_event = param_buf->fixed_param;
  1797. *vdev_id = swfda_event->vdev_id;
  1798. return QDF_STATUS_SUCCESS;
  1799. }
  1800. /**
  1801. * send_vdev_fils_enable_cmd_tlv() - enable/Disable FD Frame command to fw
  1802. * @wmi_handle: wmi handle
  1803. * @param: pointer to hold FILS discovery enable param
  1804. *
  1805. * Return: QDF_STATUS_SUCCESS on success and QDF_STATUS_E_FAILURE on failure
  1806. */
  1807. static QDF_STATUS
  1808. send_vdev_fils_enable_cmd_tlv(wmi_unified_t wmi_handle,
  1809. struct config_fils_params *param)
  1810. {
  1811. wmi_enable_fils_cmd_fixed_param *cmd;
  1812. wmi_buf_t buf;
  1813. QDF_STATUS status;
  1814. uint32_t len = sizeof(wmi_enable_fils_cmd_fixed_param);
  1815. buf = wmi_buf_alloc(wmi_handle, len);
  1816. if (!buf) {
  1817. WMI_LOGE("%s : wmi_buf_alloc failed\n", __func__);
  1818. return QDF_STATUS_E_NOMEM;
  1819. }
  1820. cmd = (wmi_enable_fils_cmd_fixed_param *)wmi_buf_data(buf);
  1821. WMITLV_SET_HDR(&cmd->tlv_header,
  1822. WMITLV_TAG_STRUC_wmi_enable_fils_cmd_fixed_param,
  1823. WMITLV_GET_STRUCT_TLVLEN(
  1824. wmi_enable_fils_cmd_fixed_param));
  1825. cmd->vdev_id = param->vdev_id;
  1826. cmd->fd_period = param->fd_period;
  1827. WMI_LOGI("Setting FD period to %d vdev id : %d\n",
  1828. param->fd_period, param->vdev_id);
  1829. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  1830. WMI_ENABLE_FILS_CMDID);
  1831. if (status != QDF_STATUS_SUCCESS) {
  1832. wmi_buf_free(buf);
  1833. return QDF_STATUS_E_FAILURE;
  1834. }
  1835. return QDF_STATUS_SUCCESS;
  1836. }
  1837. /**
  1838. * send_fils_discovery_send_cmd_tlv() - WMI FILS Discovery send function
  1839. * @wmi_handle: wmi handle
  1840. * @param: pointer to hold FD send cmd parameter
  1841. *
  1842. * Return : QDF_STATUS_SUCCESS on success and QDF_STATUS_E_NOMEM on failure.
  1843. */
  1844. static QDF_STATUS
  1845. send_fils_discovery_send_cmd_tlv(wmi_unified_t wmi_handle,
  1846. struct fd_params *param)
  1847. {
  1848. QDF_STATUS ret;
  1849. wmi_fd_send_from_host_cmd_fixed_param *cmd;
  1850. wmi_buf_t wmi_buf;
  1851. qdf_dma_addr_t dma_addr;
  1852. wmi_buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1853. if (!wmi_buf) {
  1854. WMI_LOGE("%s : wmi_buf_alloc failed\n", __func__);
  1855. return QDF_STATUS_E_NOMEM;
  1856. }
  1857. cmd = (wmi_fd_send_from_host_cmd_fixed_param *)wmi_buf_data(wmi_buf);
  1858. WMITLV_SET_HDR(&cmd->tlv_header,
  1859. WMITLV_TAG_STRUC_wmi_fd_send_from_host_cmd_fixed_param,
  1860. WMITLV_GET_STRUCT_TLVLEN(
  1861. wmi_fd_send_from_host_cmd_fixed_param));
  1862. cmd->vdev_id = param->vdev_id;
  1863. cmd->data_len = qdf_nbuf_len(param->wbuf);
  1864. dma_addr = qdf_nbuf_get_frag_paddr(param->wbuf, 0);
  1865. qdf_dmaaddr_to_32s(dma_addr, &cmd->frag_ptr_lo, &cmd->frag_ptr_hi);
  1866. cmd->frame_ctrl = param->frame_ctrl;
  1867. ret = wmi_unified_cmd_send(wmi_handle, wmi_buf, sizeof(*cmd),
  1868. WMI_PDEV_SEND_FD_CMDID);
  1869. if (ret != QDF_STATUS_SUCCESS) {
  1870. WMI_LOGE("%s: Failed to send fils discovery frame: %d",
  1871. __func__, ret);
  1872. wmi_buf_free(wmi_buf);
  1873. }
  1874. return ret;
  1875. }
  1876. #endif /* WLAN_SUPPORT_FILS */
  1877. static QDF_STATUS send_beacon_send_cmd_tlv(wmi_unified_t wmi_handle,
  1878. struct beacon_params *param)
  1879. {
  1880. QDF_STATUS ret;
  1881. wmi_bcn_send_from_host_cmd_fixed_param *cmd;
  1882. wmi_buf_t wmi_buf;
  1883. qdf_dma_addr_t dma_addr;
  1884. uint32_t dtim_flag = 0;
  1885. wmi_buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1886. if (!wmi_buf) {
  1887. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  1888. return QDF_STATUS_E_NOMEM;
  1889. }
  1890. if (param->is_dtim_count_zero) {
  1891. dtim_flag |= WMI_BCN_SEND_DTIM_ZERO;
  1892. if (param->is_bitctl_reqd) {
  1893. /* deliver CAB traffic in next DTIM beacon */
  1894. dtim_flag |= WMI_BCN_SEND_DTIM_BITCTL_SET;
  1895. }
  1896. }
  1897. cmd = (wmi_bcn_send_from_host_cmd_fixed_param *) wmi_buf_data(wmi_buf);
  1898. WMITLV_SET_HDR(&cmd->tlv_header,
  1899. WMITLV_TAG_STRUC_wmi_bcn_send_from_host_cmd_fixed_param,
  1900. WMITLV_GET_STRUCT_TLVLEN
  1901. (wmi_bcn_send_from_host_cmd_fixed_param));
  1902. cmd->vdev_id = param->vdev_id;
  1903. cmd->data_len = qdf_nbuf_len(param->wbuf);
  1904. cmd->frame_ctrl = param->frame_ctrl;
  1905. cmd->dtim_flag = dtim_flag;
  1906. dma_addr = qdf_nbuf_get_frag_paddr(param->wbuf, 0);
  1907. cmd->frag_ptr_lo = qdf_get_lower_32_bits(dma_addr);
  1908. #if defined(HTT_PADDR64)
  1909. cmd->frag_ptr_hi = qdf_get_upper_32_bits(dma_addr) & 0x1F;
  1910. #endif
  1911. cmd->bcn_antenna = param->bcn_txant;
  1912. ret = wmi_unified_cmd_send(wmi_handle,
  1913. wmi_buf, sizeof(*cmd), WMI_PDEV_SEND_BCN_CMDID);
  1914. if (ret != QDF_STATUS_SUCCESS) {
  1915. WMI_LOGE("%s: Failed to send bcn: %d", __func__, ret);
  1916. wmi_buf_free(wmi_buf);
  1917. }
  1918. return ret;
  1919. }
  1920. /**
  1921. * send_beacon_send_tmpl_cmd_tlv() - WMI beacon send function
  1922. * @param wmi_handle : handle to WMI.
  1923. * @param param : pointer to hold beacon send cmd parameter
  1924. *
  1925. * Return: 0 on success and -ve on failure.
  1926. */
  1927. static QDF_STATUS send_beacon_tmpl_send_cmd_tlv(wmi_unified_t wmi_handle,
  1928. struct beacon_tmpl_params *param)
  1929. {
  1930. int32_t ret;
  1931. wmi_bcn_tmpl_cmd_fixed_param *cmd;
  1932. wmi_bcn_prb_info *bcn_prb_info;
  1933. wmi_buf_t wmi_buf;
  1934. uint8_t *buf_ptr;
  1935. uint32_t wmi_buf_len;
  1936. wmi_buf_len = sizeof(wmi_bcn_tmpl_cmd_fixed_param) +
  1937. sizeof(wmi_bcn_prb_info) + WMI_TLV_HDR_SIZE +
  1938. param->tmpl_len_aligned;
  1939. wmi_buf = wmi_buf_alloc(wmi_handle, wmi_buf_len);
  1940. if (!wmi_buf) {
  1941. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  1942. return QDF_STATUS_E_NOMEM;
  1943. }
  1944. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  1945. cmd = (wmi_bcn_tmpl_cmd_fixed_param *) buf_ptr;
  1946. WMITLV_SET_HDR(&cmd->tlv_header,
  1947. WMITLV_TAG_STRUC_wmi_bcn_tmpl_cmd_fixed_param,
  1948. WMITLV_GET_STRUCT_TLVLEN(wmi_bcn_tmpl_cmd_fixed_param));
  1949. cmd->vdev_id = param->vdev_id;
  1950. cmd->tim_ie_offset = param->tim_ie_offset;
  1951. cmd->csa_switch_count_offset = param->csa_switch_count_offset;
  1952. cmd->ext_csa_switch_count_offset = param->ext_csa_switch_count_offset;
  1953. cmd->buf_len = param->tmpl_len;
  1954. buf_ptr += sizeof(wmi_bcn_tmpl_cmd_fixed_param);
  1955. bcn_prb_info = (wmi_bcn_prb_info *) buf_ptr;
  1956. WMITLV_SET_HDR(&bcn_prb_info->tlv_header,
  1957. WMITLV_TAG_STRUC_wmi_bcn_prb_info,
  1958. WMITLV_GET_STRUCT_TLVLEN(wmi_bcn_prb_info));
  1959. bcn_prb_info->caps = 0;
  1960. bcn_prb_info->erp = 0;
  1961. buf_ptr += sizeof(wmi_bcn_prb_info);
  1962. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, param->tmpl_len_aligned);
  1963. buf_ptr += WMI_TLV_HDR_SIZE;
  1964. qdf_mem_copy(buf_ptr, param->frm, param->tmpl_len);
  1965. ret = wmi_unified_cmd_send(wmi_handle,
  1966. wmi_buf, wmi_buf_len, WMI_BCN_TMPL_CMDID);
  1967. if (ret) {
  1968. WMI_LOGE("%s: Failed to send bcn tmpl: %d", __func__, ret);
  1969. wmi_buf_free(wmi_buf);
  1970. }
  1971. return 0;
  1972. }
  1973. #ifdef CONFIG_MCL
  1974. static inline void copy_peer_flags_tlv(
  1975. wmi_peer_assoc_complete_cmd_fixed_param * cmd,
  1976. struct peer_assoc_params *param)
  1977. {
  1978. cmd->peer_flags = param->peer_flags;
  1979. }
  1980. #else
  1981. static inline void copy_peer_flags_tlv(
  1982. wmi_peer_assoc_complete_cmd_fixed_param * cmd,
  1983. struct peer_assoc_params *param)
  1984. {
  1985. /*
  1986. * The target only needs a subset of the flags maintained in the host.
  1987. * Just populate those flags and send it down
  1988. */
  1989. cmd->peer_flags = 0;
  1990. /*
  1991. * Do not enable HT/VHT if WMM/wme is disabled for vap.
  1992. */
  1993. if (param->is_wme_set) {
  1994. if (param->qos_flag)
  1995. cmd->peer_flags |= WMI_PEER_QOS;
  1996. if (param->apsd_flag)
  1997. cmd->peer_flags |= WMI_PEER_APSD;
  1998. if (param->ht_flag)
  1999. cmd->peer_flags |= WMI_PEER_HT;
  2000. if (param->bw_40)
  2001. cmd->peer_flags |= WMI_PEER_40MHZ;
  2002. if (param->bw_80)
  2003. cmd->peer_flags |= WMI_PEER_80MHZ;
  2004. if (param->bw_160)
  2005. cmd->peer_flags |= WMI_PEER_160MHZ;
  2006. /* Typically if STBC is enabled for VHT it should be enabled
  2007. * for HT as well
  2008. **/
  2009. if (param->stbc_flag)
  2010. cmd->peer_flags |= WMI_PEER_STBC;
  2011. /* Typically if LDPC is enabled for VHT it should be enabled
  2012. * for HT as well
  2013. **/
  2014. if (param->ldpc_flag)
  2015. cmd->peer_flags |= WMI_PEER_LDPC;
  2016. if (param->static_mimops_flag)
  2017. cmd->peer_flags |= WMI_PEER_STATIC_MIMOPS;
  2018. if (param->dynamic_mimops_flag)
  2019. cmd->peer_flags |= WMI_PEER_DYN_MIMOPS;
  2020. if (param->spatial_mux_flag)
  2021. cmd->peer_flags |= WMI_PEER_SPATIAL_MUX;
  2022. if (param->vht_flag)
  2023. cmd->peer_flags |= WMI_PEER_VHT;
  2024. if (param->he_flag)
  2025. cmd->peer_flags |= WMI_PEER_HE;
  2026. }
  2027. if (param->is_pmf_enabled)
  2028. cmd->peer_flags |= WMI_PEER_PMF;
  2029. /*
  2030. * Suppress authorization for all AUTH modes that need 4-way handshake
  2031. * (during re-association).
  2032. * Authorization will be done for these modes on key installation.
  2033. */
  2034. if (param->auth_flag)
  2035. cmd->peer_flags |= WMI_PEER_AUTH;
  2036. if (param->need_ptk_4_way)
  2037. cmd->peer_flags |= WMI_PEER_NEED_PTK_4_WAY;
  2038. else
  2039. cmd->peer_flags &= ~WMI_PEER_NEED_PTK_4_WAY;
  2040. if (param->need_gtk_2_way)
  2041. cmd->peer_flags |= WMI_PEER_NEED_GTK_2_WAY;
  2042. /* safe mode bypass the 4-way handshake */
  2043. if (param->safe_mode_enabled)
  2044. cmd->peer_flags &=
  2045. ~(WMI_PEER_NEED_PTK_4_WAY | WMI_PEER_NEED_GTK_2_WAY);
  2046. /* Disable AMSDU for station transmit, if user configures it */
  2047. /* Disable AMSDU for AP transmit to 11n Stations, if user configures
  2048. * it
  2049. * if (param->amsdu_disable) Add after FW support
  2050. **/
  2051. /* Target asserts if node is marked HT and all MCS is set to 0.
  2052. * Mark the node as non-HT if all the mcs rates are disabled through
  2053. * iwpriv
  2054. **/
  2055. if (param->peer_ht_rates.num_rates == 0)
  2056. cmd->peer_flags &= ~WMI_PEER_HT;
  2057. }
  2058. #endif
  2059. #ifdef CONFIG_MCL
  2060. static inline void copy_peer_mac_addr_tlv(
  2061. wmi_peer_assoc_complete_cmd_fixed_param * cmd,
  2062. struct peer_assoc_params *param)
  2063. {
  2064. qdf_mem_copy(&cmd->peer_macaddr, &param->peer_macaddr,
  2065. sizeof(param->peer_macaddr));
  2066. }
  2067. #else
  2068. static inline void copy_peer_mac_addr_tlv(
  2069. wmi_peer_assoc_complete_cmd_fixed_param * cmd,
  2070. struct peer_assoc_params *param)
  2071. {
  2072. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_mac, &cmd->peer_macaddr);
  2073. }
  2074. #endif
  2075. /**
  2076. * send_peer_assoc_cmd_tlv() - WMI peer assoc function
  2077. * @param wmi_handle : handle to WMI.
  2078. * @param param : pointer to peer assoc parameter
  2079. *
  2080. * Return: 0 on success and -ve on failure.
  2081. */
  2082. static QDF_STATUS send_peer_assoc_cmd_tlv(wmi_unified_t wmi_handle,
  2083. struct peer_assoc_params *param)
  2084. {
  2085. wmi_peer_assoc_complete_cmd_fixed_param *cmd;
  2086. wmi_vht_rate_set *mcs;
  2087. wmi_he_rate_set *he_mcs;
  2088. wmi_buf_t buf;
  2089. int32_t len;
  2090. uint8_t *buf_ptr;
  2091. QDF_STATUS ret;
  2092. uint32_t peer_legacy_rates_align;
  2093. uint32_t peer_ht_rates_align;
  2094. int32_t i;
  2095. peer_legacy_rates_align = wmi_align(param->peer_legacy_rates.num_rates);
  2096. peer_ht_rates_align = wmi_align(param->peer_ht_rates.num_rates);
  2097. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  2098. (peer_legacy_rates_align * sizeof(uint8_t)) +
  2099. WMI_TLV_HDR_SIZE +
  2100. (peer_ht_rates_align * sizeof(uint8_t)) +
  2101. sizeof(wmi_vht_rate_set) +
  2102. (sizeof(wmi_he_rate_set) * param->peer_he_mcs_count
  2103. + WMI_TLV_HDR_SIZE);
  2104. buf = wmi_buf_alloc(wmi_handle, len);
  2105. if (!buf) {
  2106. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  2107. return QDF_STATUS_E_NOMEM;
  2108. }
  2109. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  2110. cmd = (wmi_peer_assoc_complete_cmd_fixed_param *) buf_ptr;
  2111. WMITLV_SET_HDR(&cmd->tlv_header,
  2112. WMITLV_TAG_STRUC_wmi_peer_assoc_complete_cmd_fixed_param,
  2113. WMITLV_GET_STRUCT_TLVLEN
  2114. (wmi_peer_assoc_complete_cmd_fixed_param));
  2115. cmd->vdev_id = param->vdev_id;
  2116. cmd->peer_new_assoc = param->peer_new_assoc;
  2117. cmd->peer_associd = param->peer_associd;
  2118. copy_peer_flags_tlv(cmd, param);
  2119. copy_peer_mac_addr_tlv(cmd, param);
  2120. cmd->peer_rate_caps = param->peer_rate_caps;
  2121. cmd->peer_caps = param->peer_caps;
  2122. cmd->peer_listen_intval = param->peer_listen_intval;
  2123. cmd->peer_ht_caps = param->peer_ht_caps;
  2124. cmd->peer_max_mpdu = param->peer_max_mpdu;
  2125. cmd->peer_mpdu_density = param->peer_mpdu_density;
  2126. cmd->peer_vht_caps = param->peer_vht_caps;
  2127. cmd->peer_phymode = param->peer_phymode;
  2128. /* Update 11ax capabilities */
  2129. cmd->peer_he_cap_info = param->peer_he_cap_macinfo;
  2130. cmd->peer_he_ops = param->peer_he_ops;
  2131. qdf_mem_copy(&cmd->peer_he_cap_phy, &param->peer_he_cap_phyinfo,
  2132. sizeof(param->peer_he_cap_phyinfo));
  2133. qdf_mem_copy(&cmd->peer_ppet, &param->peer_ppet,
  2134. sizeof(param->peer_ppet));
  2135. /* Update peer legacy rate information */
  2136. buf_ptr += sizeof(*cmd);
  2137. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  2138. peer_legacy_rates_align);
  2139. buf_ptr += WMI_TLV_HDR_SIZE;
  2140. cmd->num_peer_legacy_rates = param->peer_legacy_rates.num_rates;
  2141. qdf_mem_copy(buf_ptr, param->peer_legacy_rates.rates,
  2142. param->peer_legacy_rates.num_rates);
  2143. /* Update peer HT rate information */
  2144. buf_ptr += peer_legacy_rates_align;
  2145. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  2146. peer_ht_rates_align);
  2147. buf_ptr += WMI_TLV_HDR_SIZE;
  2148. cmd->num_peer_ht_rates = param->peer_ht_rates.num_rates;
  2149. qdf_mem_copy(buf_ptr, param->peer_ht_rates.rates,
  2150. param->peer_ht_rates.num_rates);
  2151. /* VHT Rates */
  2152. buf_ptr += peer_ht_rates_align;
  2153. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_STRUC_wmi_vht_rate_set,
  2154. WMITLV_GET_STRUCT_TLVLEN(wmi_vht_rate_set));
  2155. cmd->peer_nss = param->peer_nss;
  2156. /* Update bandwidth-NSS mapping */
  2157. cmd->peer_bw_rxnss_override = 0;
  2158. cmd->peer_bw_rxnss_override |= param->peer_bw_rxnss_override;
  2159. mcs = (wmi_vht_rate_set *) buf_ptr;
  2160. if (param->vht_capable) {
  2161. mcs->rx_max_rate = param->rx_max_rate;
  2162. mcs->rx_mcs_set = param->rx_mcs_set;
  2163. mcs->tx_max_rate = param->tx_max_rate;
  2164. mcs->tx_mcs_set = param->tx_mcs_set;
  2165. }
  2166. /* HE Rates */
  2167. cmd->peer_he_mcs = param->peer_he_mcs_count;
  2168. buf_ptr += sizeof(wmi_vht_rate_set);
  2169. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  2170. (param->peer_he_mcs_count * sizeof(wmi_he_rate_set)));
  2171. buf_ptr += WMI_TLV_HDR_SIZE;
  2172. /* Loop through the HE rate set */
  2173. for (i = 0; i < param->peer_he_mcs_count; i++) {
  2174. he_mcs = (wmi_he_rate_set *) buf_ptr;
  2175. WMITLV_SET_HDR(he_mcs, WMITLV_TAG_STRUC_wmi_he_rate_set,
  2176. WMITLV_GET_STRUCT_TLVLEN(wmi_he_rate_set));
  2177. he_mcs->rx_mcs_set = param->peer_he_rx_mcs_set[i];
  2178. he_mcs->tx_mcs_set = param->peer_he_tx_mcs_set[i];
  2179. WMI_LOGD("%s:HE idx %d RxMCSmap %x TxMCSmap %x ", __func__,
  2180. i, he_mcs->rx_mcs_set, he_mcs->tx_mcs_set);
  2181. buf_ptr += sizeof(wmi_he_rate_set);
  2182. }
  2183. WMI_LOGD("%s: vdev_id %d associd %d peer_flags %x rate_caps %x "
  2184. "peer_caps %x listen_intval %d ht_caps %x max_mpdu %d "
  2185. "nss %d phymode %d peer_mpdu_density %d "
  2186. "cmd->peer_vht_caps %x "
  2187. "HE cap_info %x ops %x "
  2188. "HE phy %x %x %x "
  2189. "peer_bw_rxnss_override %x", __func__,
  2190. cmd->vdev_id, cmd->peer_associd, cmd->peer_flags,
  2191. cmd->peer_rate_caps, cmd->peer_caps,
  2192. cmd->peer_listen_intval, cmd->peer_ht_caps,
  2193. cmd->peer_max_mpdu, cmd->peer_nss, cmd->peer_phymode,
  2194. cmd->peer_mpdu_density,
  2195. cmd->peer_vht_caps, cmd->peer_he_cap_info,
  2196. cmd->peer_he_ops, cmd->peer_he_cap_phy[0],
  2197. cmd->peer_he_cap_phy[1], cmd->peer_he_cap_phy[2],
  2198. cmd->peer_bw_rxnss_override);
  2199. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  2200. WMI_PEER_ASSOC_CMDID);
  2201. if (QDF_IS_STATUS_ERROR(ret)) {
  2202. WMI_LOGP("%s: Failed to send peer assoc command ret = %d",
  2203. __func__, ret);
  2204. wmi_buf_free(buf);
  2205. }
  2206. return ret;
  2207. }
  2208. /* copy_scan_notify_events() - Helper routine to copy scan notify events
  2209. */
  2210. static inline void copy_scan_event_cntrl_flags(
  2211. wmi_start_scan_cmd_fixed_param * cmd,
  2212. struct scan_req_params *param)
  2213. {
  2214. /* Scan events subscription */
  2215. if (param->scan_ev_started)
  2216. cmd->notify_scan_events |= WMI_SCAN_EVENT_STARTED;
  2217. if (param->scan_ev_completed)
  2218. cmd->notify_scan_events |= WMI_SCAN_EVENT_COMPLETED;
  2219. if (param->scan_ev_bss_chan)
  2220. cmd->notify_scan_events |= WMI_SCAN_EVENT_BSS_CHANNEL;
  2221. if (param->scan_ev_foreign_chan)
  2222. cmd->notify_scan_events |= WMI_SCAN_EVENT_FOREIGN_CHANNEL;
  2223. if (param->scan_ev_dequeued)
  2224. cmd->notify_scan_events |= WMI_SCAN_EVENT_DEQUEUED;
  2225. if (param->scan_ev_preempted)
  2226. cmd->notify_scan_events |= WMI_SCAN_EVENT_PREEMPTED;
  2227. if (param->scan_ev_start_failed)
  2228. cmd->notify_scan_events |= WMI_SCAN_EVENT_START_FAILED;
  2229. if (param->scan_ev_restarted)
  2230. cmd->notify_scan_events |= WMI_SCAN_EVENT_RESTARTED;
  2231. if (param->scan_ev_foreign_chn_exit)
  2232. cmd->notify_scan_events |= WMI_SCAN_EVENT_FOREIGN_CHANNEL_EXIT;
  2233. if (param->scan_ev_suspended)
  2234. cmd->notify_scan_events |= WMI_SCAN_EVENT_SUSPENDED;
  2235. if (param->scan_ev_resumed)
  2236. cmd->notify_scan_events |= WMI_SCAN_EVENT_RESUMED;
  2237. /** Set scan control flags */
  2238. cmd->scan_ctrl_flags = 0;
  2239. if (param->scan_f_passive)
  2240. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_PASSIVE;
  2241. if (param->scan_f_strict_passive_pch)
  2242. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_STRICT_PASSIVE_ON_PCHN;
  2243. if (param->scan_f_promisc_mode)
  2244. cmd->scan_ctrl_flags |= WMI_SCAN_FILTER_PROMISCOUS;
  2245. if (param->scan_f_capture_phy_err)
  2246. cmd->scan_ctrl_flags |= WMI_SCAN_CAPTURE_PHY_ERROR;
  2247. if (param->scan_f_half_rate)
  2248. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_HALF_RATE_SUPPORT;
  2249. if (param->scan_f_quarter_rate)
  2250. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_QUARTER_RATE_SUPPORT;
  2251. if (param->scan_f_cck_rates)
  2252. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_CCK_RATES;
  2253. if (param->scan_f_ofdm_rates)
  2254. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_OFDM_RATES;
  2255. if (param->scan_f_chan_stat_evnt)
  2256. cmd->scan_ctrl_flags |= WMI_SCAN_CHAN_STAT_EVENT;
  2257. if (param->scan_f_filter_prb_req)
  2258. cmd->scan_ctrl_flags |= WMI_SCAN_FILTER_PROBE_REQ;
  2259. if (param->scan_f_bcast_probe)
  2260. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_BCAST_PROBE_REQ;
  2261. if (param->scan_f_offchan_mgmt_tx)
  2262. cmd->scan_ctrl_flags |= WMI_SCAN_OFFCHAN_MGMT_TX;
  2263. if (param->scan_f_offchan_data_tx)
  2264. cmd->scan_ctrl_flags |= WMI_SCAN_OFFCHAN_DATA_TX;
  2265. if (param->scan_f_force_active_dfs_chn)
  2266. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_FORCE_ACTIVE_ON_DFS;
  2267. if (param->scan_f_add_tpc_ie_in_probe)
  2268. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_TPC_IE_IN_PROBE_REQ;
  2269. if (param->scan_f_add_ds_ie_in_probe)
  2270. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_DS_IE_IN_PROBE_REQ;
  2271. if (param->scan_f_add_spoofed_mac_in_probe)
  2272. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_SPOOFED_MAC_IN_PROBE_REQ;
  2273. if (param->scan_f_add_rand_seq_in_probe)
  2274. cmd->scan_ctrl_flags |= WMI_SCAN_RANDOM_SEQ_NO_IN_PROBE_REQ;
  2275. if (param->scan_f_en_ie_whitelist_in_probe)
  2276. cmd->scan_ctrl_flags |=
  2277. WMI_SCAN_ENABLE_IE_WHTELIST_IN_PROBE_REQ;
  2278. /* for adaptive scan mode using 3 bits (21 - 23 bits) */
  2279. WMI_SCAN_SET_DWELL_MODE(cmd->scan_ctrl_flags,
  2280. param->adaptive_dwell_time_mode);
  2281. }
  2282. /* scan_copy_ie_buffer() - Copy scan ie_data */
  2283. static inline void scan_copy_ie_buffer(uint8_t *buf_ptr,
  2284. struct scan_req_params *params)
  2285. {
  2286. qdf_mem_copy(buf_ptr, params->extraie.ptr, params->extraie.len);
  2287. }
  2288. /**
  2289. * wmi_copy_scan_random_mac() - To copy scan randomization attrs to wmi buffer
  2290. * @mac: random mac addr
  2291. * @mask: random mac mask
  2292. * @mac_addr: wmi random mac
  2293. * @mac_mask: wmi random mac mask
  2294. *
  2295. * Return None.
  2296. */
  2297. static inline
  2298. void wmi_copy_scan_random_mac(uint8_t *mac, uint8_t *mask,
  2299. wmi_mac_addr *mac_addr, wmi_mac_addr *mac_mask)
  2300. {
  2301. WMI_CHAR_ARRAY_TO_MAC_ADDR(mac, mac_addr);
  2302. WMI_CHAR_ARRAY_TO_MAC_ADDR(mask, mac_mask);
  2303. }
  2304. /*
  2305. * wmi_fill_vendor_oui() - fill vendor OUIs
  2306. * @buf_ptr: pointer to wmi tlv buffer
  2307. * @num_vendor_oui: number of vendor OUIs to be filled
  2308. * @param_voui: pointer to OUI buffer
  2309. *
  2310. * This function populates the wmi tlv buffer when vendor specific OUIs are
  2311. * present.
  2312. *
  2313. * Return: None
  2314. */
  2315. static inline
  2316. void wmi_fill_vendor_oui(uint8_t *buf_ptr, uint32_t num_vendor_oui,
  2317. uint32_t *pvoui)
  2318. {
  2319. wmi_vendor_oui *voui = NULL;
  2320. uint32_t i;
  2321. voui = (wmi_vendor_oui *)buf_ptr;
  2322. for (i = 0; i < num_vendor_oui; i++) {
  2323. WMITLV_SET_HDR(&voui[i].tlv_header,
  2324. WMITLV_TAG_STRUC_wmi_vendor_oui,
  2325. WMITLV_GET_STRUCT_TLVLEN(wmi_vendor_oui));
  2326. voui[i].oui_type_subtype = pvoui[i];
  2327. }
  2328. }
  2329. /*
  2330. * wmi_fill_ie_whitelist_attrs() - fill IE whitelist attrs
  2331. * @ie_bitmap: output pointer to ie bit map in cmd
  2332. * @num_vendor_oui: output pointer to num vendor OUIs
  2333. * @ie_whitelist: input parameter
  2334. *
  2335. * This function populates the IE whitelist attrs of scan, pno and
  2336. * scan oui commands for ie_whitelist parameter.
  2337. *
  2338. * Return: None
  2339. */
  2340. static inline
  2341. void wmi_fill_ie_whitelist_attrs(uint32_t *ie_bitmap,
  2342. uint32_t *num_vendor_oui,
  2343. struct probe_req_whitelist_attr *ie_whitelist)
  2344. {
  2345. uint32_t i = 0;
  2346. for (i = 0; i < PROBE_REQ_BITMAP_LEN; i++)
  2347. ie_bitmap[i] = ie_whitelist->ie_bitmap[i];
  2348. *num_vendor_oui = ie_whitelist->num_vendor_oui;
  2349. }
  2350. /**
  2351. * send_scan_start_cmd_tlv() - WMI scan start function
  2352. * @param wmi_handle : handle to WMI.
  2353. * @param param : pointer to hold scan start cmd parameter
  2354. *
  2355. * Return: 0 on success and -ve on failure.
  2356. */
  2357. static QDF_STATUS send_scan_start_cmd_tlv(wmi_unified_t wmi_handle,
  2358. struct scan_req_params *params)
  2359. {
  2360. int32_t ret = 0;
  2361. int32_t i;
  2362. wmi_buf_t wmi_buf;
  2363. wmi_start_scan_cmd_fixed_param *cmd;
  2364. uint8_t *buf_ptr;
  2365. uint32_t *tmp_ptr;
  2366. wmi_ssid *ssid = NULL;
  2367. wmi_mac_addr *bssid;
  2368. int len = sizeof(*cmd);
  2369. uint8_t extraie_len_with_pad = 0;
  2370. uint8_t phymode_roundup = 0;
  2371. struct probe_req_whitelist_attr *ie_whitelist = &params->ie_whitelist;
  2372. /* Length TLV placeholder for array of uint32_t */
  2373. len += WMI_TLV_HDR_SIZE;
  2374. /* calculate the length of buffer required */
  2375. if (params->chan_list.num_chan)
  2376. len += params->chan_list.num_chan * sizeof(uint32_t);
  2377. /* Length TLV placeholder for array of wmi_ssid structures */
  2378. len += WMI_TLV_HDR_SIZE;
  2379. if (params->num_ssids)
  2380. len += params->num_ssids * sizeof(wmi_ssid);
  2381. /* Length TLV placeholder for array of wmi_mac_addr structures */
  2382. len += WMI_TLV_HDR_SIZE;
  2383. if (params->num_bssid)
  2384. len += sizeof(wmi_mac_addr) * params->num_bssid;
  2385. /* Length TLV placeholder for array of bytes */
  2386. len += WMI_TLV_HDR_SIZE;
  2387. if (params->extraie.len)
  2388. extraie_len_with_pad =
  2389. roundup(params->extraie.len, sizeof(uint32_t));
  2390. len += extraie_len_with_pad;
  2391. len += WMI_TLV_HDR_SIZE; /* Length of TLV for array of wmi_vendor_oui */
  2392. if (ie_whitelist->num_vendor_oui)
  2393. len += ie_whitelist->num_vendor_oui * sizeof(wmi_vendor_oui);
  2394. len += WMI_TLV_HDR_SIZE; /* Length of TLV for array of scan phymode */
  2395. if (params->scan_f_wide_band)
  2396. phymode_roundup =
  2397. qdf_roundup(params->chan_list.num_chan * sizeof(uint8_t),
  2398. sizeof(uint32_t));
  2399. len += phymode_roundup;
  2400. /* Allocate the memory */
  2401. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  2402. if (!wmi_buf) {
  2403. WMI_LOGP("%s: failed to allocate memory for start scan cmd",
  2404. __func__);
  2405. return QDF_STATUS_E_FAILURE;
  2406. }
  2407. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  2408. cmd = (wmi_start_scan_cmd_fixed_param *) buf_ptr;
  2409. WMITLV_SET_HDR(&cmd->tlv_header,
  2410. WMITLV_TAG_STRUC_wmi_start_scan_cmd_fixed_param,
  2411. WMITLV_GET_STRUCT_TLVLEN
  2412. (wmi_start_scan_cmd_fixed_param));
  2413. cmd->scan_id = params->scan_id;
  2414. cmd->scan_req_id = params->scan_req_id;
  2415. cmd->vdev_id = params->vdev_id;
  2416. cmd->scan_priority = params->scan_priority;
  2417. copy_scan_event_cntrl_flags(cmd, params);
  2418. cmd->dwell_time_active = params->dwell_time_active;
  2419. cmd->dwell_time_passive = params->dwell_time_passive;
  2420. cmd->min_rest_time = params->min_rest_time;
  2421. cmd->max_rest_time = params->max_rest_time;
  2422. cmd->repeat_probe_time = params->repeat_probe_time;
  2423. cmd->probe_spacing_time = params->probe_spacing_time;
  2424. cmd->idle_time = params->idle_time;
  2425. cmd->max_scan_time = params->max_scan_time;
  2426. cmd->probe_delay = params->probe_delay;
  2427. cmd->burst_duration = params->burst_duration;
  2428. cmd->num_chan = params->chan_list.num_chan;
  2429. cmd->num_bssid = params->num_bssid;
  2430. cmd->num_ssids = params->num_ssids;
  2431. cmd->ie_len = params->extraie.len;
  2432. cmd->n_probes = params->n_probes;
  2433. cmd->scan_ctrl_flags_ext = params->scan_ctrl_flags_ext;
  2434. WMI_LOGD("scan_ctrl_flags_ext = %x", cmd->scan_ctrl_flags_ext);
  2435. if (params->scan_random.randomize)
  2436. wmi_copy_scan_random_mac(params->scan_random.mac_addr,
  2437. params->scan_random.mac_mask,
  2438. &cmd->mac_addr,
  2439. &cmd->mac_mask);
  2440. if (ie_whitelist->white_list)
  2441. wmi_fill_ie_whitelist_attrs(cmd->ie_bitmap,
  2442. &cmd->num_vendor_oui,
  2443. ie_whitelist);
  2444. buf_ptr += sizeof(*cmd);
  2445. tmp_ptr = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  2446. for (i = 0; i < params->chan_list.num_chan; ++i)
  2447. tmp_ptr[i] = params->chan_list.chan[i].freq;
  2448. WMITLV_SET_HDR(buf_ptr,
  2449. WMITLV_TAG_ARRAY_UINT32,
  2450. (params->chan_list.num_chan * sizeof(uint32_t)));
  2451. buf_ptr += WMI_TLV_HDR_SIZE +
  2452. (params->chan_list.num_chan * sizeof(uint32_t));
  2453. if (params->num_ssids > WMI_SCAN_MAX_NUM_SSID) {
  2454. WMI_LOGE("Invalid value for numSsid");
  2455. goto error;
  2456. }
  2457. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_FIXED_STRUC,
  2458. (params->num_ssids * sizeof(wmi_ssid)));
  2459. if (params->num_ssids) {
  2460. ssid = (wmi_ssid *) (buf_ptr + WMI_TLV_HDR_SIZE);
  2461. for (i = 0; i < params->num_ssids; ++i) {
  2462. ssid->ssid_len = params->ssid[i].length;
  2463. qdf_mem_copy(ssid->ssid, params->ssid[i].ssid,
  2464. params->ssid[i].length);
  2465. ssid++;
  2466. }
  2467. }
  2468. buf_ptr += WMI_TLV_HDR_SIZE + (params->num_ssids * sizeof(wmi_ssid));
  2469. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_FIXED_STRUC,
  2470. (params->num_bssid * sizeof(wmi_mac_addr)));
  2471. bssid = (wmi_mac_addr *) (buf_ptr + WMI_TLV_HDR_SIZE);
  2472. if (params->num_bssid) {
  2473. for (i = 0; i < params->num_bssid; ++i) {
  2474. WMI_CHAR_ARRAY_TO_MAC_ADDR(
  2475. &params->bssid_list[i].bytes[0], bssid);
  2476. bssid++;
  2477. }
  2478. }
  2479. buf_ptr += WMI_TLV_HDR_SIZE +
  2480. (params->num_bssid * sizeof(wmi_mac_addr));
  2481. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, extraie_len_with_pad);
  2482. if (params->extraie.len)
  2483. scan_copy_ie_buffer(buf_ptr + WMI_TLV_HDR_SIZE,
  2484. params);
  2485. buf_ptr += WMI_TLV_HDR_SIZE + extraie_len_with_pad;
  2486. /* probe req ie whitelisting */
  2487. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  2488. ie_whitelist->num_vendor_oui * sizeof(wmi_vendor_oui));
  2489. buf_ptr += WMI_TLV_HDR_SIZE;
  2490. if (cmd->num_vendor_oui) {
  2491. wmi_fill_vendor_oui(buf_ptr, cmd->num_vendor_oui,
  2492. ie_whitelist->voui);
  2493. buf_ptr += cmd->num_vendor_oui * sizeof(wmi_vendor_oui);
  2494. }
  2495. /* Add phy mode TLV if it's a wide band scan */
  2496. if (params->scan_f_wide_band) {
  2497. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, phymode_roundup);
  2498. buf_ptr = (uint8_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  2499. for (i = 0; i < params->chan_list.num_chan; ++i)
  2500. buf_ptr[i] =
  2501. WMI_SCAN_CHAN_SET_MODE(params->chan_list.chan[i].phymode);
  2502. buf_ptr += phymode_roundup;
  2503. } else {
  2504. /* Add ZERO legth phy mode TLV */
  2505. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, 0);
  2506. }
  2507. ret = wmi_unified_cmd_send(wmi_handle, wmi_buf,
  2508. len, WMI_START_SCAN_CMDID);
  2509. if (ret) {
  2510. WMI_LOGE("%s: Failed to start scan: %d", __func__, ret);
  2511. wmi_buf_free(wmi_buf);
  2512. }
  2513. return ret;
  2514. error:
  2515. wmi_buf_free(wmi_buf);
  2516. return QDF_STATUS_E_FAILURE;
  2517. }
  2518. /**
  2519. * send_scan_stop_cmd_tlv() - WMI scan start function
  2520. * @param wmi_handle : handle to WMI.
  2521. * @param param : pointer to hold scan cancel cmd parameter
  2522. *
  2523. * Return: 0 on success and -ve on failure.
  2524. */
  2525. static QDF_STATUS send_scan_stop_cmd_tlv(wmi_unified_t wmi_handle,
  2526. struct scan_cancel_param *param)
  2527. {
  2528. wmi_stop_scan_cmd_fixed_param *cmd;
  2529. int ret;
  2530. int len = sizeof(*cmd);
  2531. wmi_buf_t wmi_buf;
  2532. /* Allocate the memory */
  2533. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  2534. if (!wmi_buf) {
  2535. WMI_LOGP("%s: failed to allocate memory for stop scan cmd",
  2536. __func__);
  2537. ret = QDF_STATUS_E_NOMEM;
  2538. goto error;
  2539. }
  2540. cmd = (wmi_stop_scan_cmd_fixed_param *) wmi_buf_data(wmi_buf);
  2541. WMITLV_SET_HDR(&cmd->tlv_header,
  2542. WMITLV_TAG_STRUC_wmi_stop_scan_cmd_fixed_param,
  2543. WMITLV_GET_STRUCT_TLVLEN(wmi_stop_scan_cmd_fixed_param));
  2544. cmd->vdev_id = param->vdev_id;
  2545. cmd->requestor = param->requester;
  2546. cmd->scan_id = param->scan_id;
  2547. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  2548. param->pdev_id);
  2549. /* stop the scan with the corresponding scan_id */
  2550. if (param->req_type == WLAN_SCAN_CANCEL_PDEV_ALL) {
  2551. /* Cancelling all scans */
  2552. cmd->req_type = WMI_SCAN_STOP_ALL;
  2553. } else if (param->req_type == WLAN_SCAN_CANCEL_VDEV_ALL) {
  2554. /* Cancelling VAP scans */
  2555. cmd->req_type = WMI_SCN_STOP_VAP_ALL;
  2556. } else if (param->req_type == WLAN_SCAN_CANCEL_SINGLE) {
  2557. /* Cancelling specific scan */
  2558. cmd->req_type = WMI_SCAN_STOP_ONE;
  2559. } else {
  2560. WMI_LOGE("%s: Invalid Command : ", __func__);
  2561. wmi_buf_free(wmi_buf);
  2562. return QDF_STATUS_E_INVAL;
  2563. }
  2564. ret = wmi_unified_cmd_send(wmi_handle, wmi_buf,
  2565. len, WMI_STOP_SCAN_CMDID);
  2566. if (ret) {
  2567. WMI_LOGE("%s: Failed to send stop scan: %d", __func__, ret);
  2568. wmi_buf_free(wmi_buf);
  2569. }
  2570. error:
  2571. return ret;
  2572. }
  2573. #ifdef CONFIG_MCL
  2574. /**
  2575. * send_scan_chan_list_cmd_tlv() - WMI scan channel list function
  2576. * @param wmi_handle : handle to WMI.
  2577. * @param param : pointer to hold scan channel list parameter
  2578. *
  2579. * Return: 0 on success and -ve on failure.
  2580. */
  2581. static QDF_STATUS send_scan_chan_list_cmd_tlv(wmi_unified_t wmi_handle,
  2582. struct scan_chan_list_params *chan_list)
  2583. {
  2584. wmi_buf_t buf;
  2585. QDF_STATUS qdf_status;
  2586. wmi_scan_chan_list_cmd_fixed_param *cmd;
  2587. int i;
  2588. uint8_t *buf_ptr;
  2589. wmi_channel_param *chan_info, *tchan_info;
  2590. uint16_t len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  2591. len += sizeof(wmi_channel) * chan_list->num_scan_chans;
  2592. buf = wmi_buf_alloc(wmi_handle, len);
  2593. if (!buf) {
  2594. WMI_LOGE("Failed to allocate memory");
  2595. qdf_status = QDF_STATUS_E_NOMEM;
  2596. goto end;
  2597. }
  2598. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  2599. cmd = (wmi_scan_chan_list_cmd_fixed_param *) buf_ptr;
  2600. WMITLV_SET_HDR(&cmd->tlv_header,
  2601. WMITLV_TAG_STRUC_wmi_scan_chan_list_cmd_fixed_param,
  2602. WMITLV_GET_STRUCT_TLVLEN
  2603. (wmi_scan_chan_list_cmd_fixed_param));
  2604. WMI_LOGD("no of channels = %d, len = %d", chan_list->num_scan_chans, len);
  2605. cmd->num_scan_chans = chan_list->num_scan_chans;
  2606. WMITLV_SET_HDR((buf_ptr + sizeof(wmi_scan_chan_list_cmd_fixed_param)),
  2607. WMITLV_TAG_ARRAY_STRUC,
  2608. sizeof(wmi_channel) * chan_list->num_scan_chans);
  2609. chan_info = (wmi_channel_param *)
  2610. (buf_ptr + sizeof(*cmd) + WMI_TLV_HDR_SIZE);
  2611. tchan_info = chan_list->chan_info;
  2612. for (i = 0; i < chan_list->num_scan_chans; ++i) {
  2613. WMITLV_SET_HDR(&chan_info->tlv_header,
  2614. WMITLV_TAG_STRUC_wmi_channel,
  2615. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  2616. chan_info->mhz = tchan_info->mhz;
  2617. chan_info->band_center_freq1 =
  2618. tchan_info->band_center_freq1;
  2619. chan_info->band_center_freq2 =
  2620. tchan_info->band_center_freq2;
  2621. chan_info->info = tchan_info->info;
  2622. chan_info->reg_info_1 = tchan_info->reg_info_1;
  2623. chan_info->reg_info_2 = tchan_info->reg_info_2;
  2624. WMI_LOGD("chan[%d] = %u", i, chan_info->mhz);
  2625. /*TODO: Set WMI_SET_CHANNEL_MIN_POWER */
  2626. /*TODO: Set WMI_SET_CHANNEL_ANTENNA_MAX */
  2627. /*TODO: WMI_SET_CHANNEL_REG_CLASSID */
  2628. tchan_info++;
  2629. chan_info++;
  2630. }
  2631. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  2632. chan_list->pdev_id);
  2633. qdf_status = wmi_unified_cmd_send(wmi_handle,
  2634. buf, len, WMI_SCAN_CHAN_LIST_CMDID);
  2635. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  2636. WMI_LOGE("Failed to send WMI_SCAN_CHAN_LIST_CMDID");
  2637. wmi_buf_free(buf);
  2638. }
  2639. end:
  2640. return qdf_status;
  2641. }
  2642. #else
  2643. static QDF_STATUS send_scan_chan_list_cmd_tlv(wmi_unified_t wmi_handle,
  2644. struct scan_chan_list_params *chan_list)
  2645. {
  2646. wmi_buf_t buf;
  2647. QDF_STATUS qdf_status;
  2648. wmi_scan_chan_list_cmd_fixed_param *cmd;
  2649. int i;
  2650. uint8_t *buf_ptr;
  2651. wmi_channel *chan_info;
  2652. struct channel_param *tchan_info;
  2653. uint16_t len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  2654. len += sizeof(wmi_channel) * chan_list->nallchans;
  2655. buf = wmi_buf_alloc(wmi_handle, len);
  2656. if (!buf) {
  2657. WMI_LOGE("Failed to allocate memory");
  2658. qdf_status = QDF_STATUS_E_NOMEM;
  2659. goto end;
  2660. }
  2661. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  2662. cmd = (wmi_scan_chan_list_cmd_fixed_param *) buf_ptr;
  2663. WMITLV_SET_HDR(&cmd->tlv_header,
  2664. WMITLV_TAG_STRUC_wmi_scan_chan_list_cmd_fixed_param,
  2665. WMITLV_GET_STRUCT_TLVLEN
  2666. (wmi_scan_chan_list_cmd_fixed_param));
  2667. WMI_LOGD("no of channels = %d, len = %d", chan_list->nallchans, len);
  2668. if (chan_list->append)
  2669. cmd->flags |= APPEND_TO_EXISTING_CHAN_LIST;
  2670. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  2671. chan_list->pdev_id);
  2672. cmd->num_scan_chans = chan_list->nallchans;
  2673. WMITLV_SET_HDR((buf_ptr + sizeof(wmi_scan_chan_list_cmd_fixed_param)),
  2674. WMITLV_TAG_ARRAY_STRUC,
  2675. sizeof(wmi_channel) * chan_list->nallchans);
  2676. chan_info = (wmi_channel *) (buf_ptr + sizeof(*cmd) + WMI_TLV_HDR_SIZE);
  2677. tchan_info = &(chan_list->ch_param[0]);
  2678. for (i = 0; i < chan_list->nallchans; ++i) {
  2679. WMITLV_SET_HDR(&chan_info->tlv_header,
  2680. WMITLV_TAG_STRUC_wmi_channel,
  2681. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  2682. chan_info->mhz = tchan_info->mhz;
  2683. chan_info->band_center_freq1 =
  2684. tchan_info->cfreq1;
  2685. chan_info->band_center_freq2 =
  2686. tchan_info->cfreq2;
  2687. if (tchan_info->is_chan_passive)
  2688. WMI_SET_CHANNEL_FLAG(chan_info,
  2689. WMI_CHAN_FLAG_PASSIVE);
  2690. if (tchan_info->allow_vht)
  2691. WMI_SET_CHANNEL_FLAG(chan_info,
  2692. WMI_CHAN_FLAG_ALLOW_VHT);
  2693. else if (tchan_info->allow_ht)
  2694. WMI_SET_CHANNEL_FLAG(chan_info,
  2695. WMI_CHAN_FLAG_ALLOW_HT);
  2696. WMI_SET_CHANNEL_MODE(chan_info,
  2697. tchan_info->phy_mode);
  2698. if (tchan_info->half_rate)
  2699. WMI_SET_CHANNEL_FLAG(chan_info,
  2700. WMI_CHAN_FLAG_HALF_RATE);
  2701. if (tchan_info->quarter_rate)
  2702. WMI_SET_CHANNEL_FLAG(chan_info,
  2703. WMI_CHAN_FLAG_QUARTER_RATE);
  2704. /* also fill in power information */
  2705. WMI_SET_CHANNEL_MIN_POWER(chan_info,
  2706. tchan_info->minpower);
  2707. WMI_SET_CHANNEL_MAX_POWER(chan_info,
  2708. tchan_info->maxpower);
  2709. WMI_SET_CHANNEL_REG_POWER(chan_info,
  2710. tchan_info->maxregpower);
  2711. WMI_SET_CHANNEL_ANTENNA_MAX(chan_info,
  2712. tchan_info->antennamax);
  2713. WMI_SET_CHANNEL_REG_CLASSID(chan_info,
  2714. tchan_info->reg_class_id);
  2715. WMI_SET_CHANNEL_MAX_TX_POWER(chan_info,
  2716. tchan_info->maxregpower);
  2717. WMI_LOGD("chan[%d] = %u", i, chan_info->mhz);
  2718. tchan_info++;
  2719. chan_info++;
  2720. }
  2721. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  2722. chan_list->pdev_id);
  2723. qdf_status = wmi_unified_cmd_send(
  2724. wmi_handle,
  2725. buf, len, WMI_SCAN_CHAN_LIST_CMDID);
  2726. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  2727. WMI_LOGE("Failed to send WMI_SCAN_CHAN_LIST_CMDID");
  2728. wmi_buf_free(buf);
  2729. }
  2730. end:
  2731. return qdf_status;
  2732. }
  2733. #endif
  2734. /**
  2735. * populate_tx_send_params - Populate TX param TLV for mgmt and offchan tx
  2736. *
  2737. * @bufp: Pointer to buffer
  2738. * @param: Pointer to tx param
  2739. *
  2740. * Return: QDF_STATUS_SUCCESS for success and QDF_STATUS_E_FAILURE for failure
  2741. */
  2742. static inline QDF_STATUS populate_tx_send_params(uint8_t *bufp,
  2743. struct tx_send_params param)
  2744. {
  2745. wmi_tx_send_params *tx_param;
  2746. QDF_STATUS status = QDF_STATUS_SUCCESS;
  2747. if (!bufp) {
  2748. status = QDF_STATUS_E_FAILURE;
  2749. return status;
  2750. }
  2751. tx_param = (wmi_tx_send_params *)bufp;
  2752. WMITLV_SET_HDR(&tx_param->tlv_header,
  2753. WMITLV_TAG_STRUC_wmi_tx_send_params,
  2754. WMITLV_GET_STRUCT_TLVLEN(wmi_tx_send_params));
  2755. WMI_TX_SEND_PARAM_PWR_SET(tx_param->tx_param_dword0, param.pwr);
  2756. WMI_TX_SEND_PARAM_MCS_MASK_SET(tx_param->tx_param_dword0,
  2757. param.mcs_mask);
  2758. WMI_TX_SEND_PARAM_NSS_MASK_SET(tx_param->tx_param_dword0,
  2759. param.nss_mask);
  2760. WMI_TX_SEND_PARAM_RETRY_LIMIT_SET(tx_param->tx_param_dword0,
  2761. param.retry_limit);
  2762. WMI_TX_SEND_PARAM_CHAIN_MASK_SET(tx_param->tx_param_dword1,
  2763. param.chain_mask);
  2764. WMI_TX_SEND_PARAM_BW_MASK_SET(tx_param->tx_param_dword1,
  2765. param.bw_mask);
  2766. WMI_TX_SEND_PARAM_PREAMBLE_SET(tx_param->tx_param_dword1,
  2767. param.preamble_type);
  2768. WMI_TX_SEND_PARAM_FRAME_TYPE_SET(tx_param->tx_param_dword1,
  2769. param.frame_type);
  2770. return status;
  2771. }
  2772. #ifdef CONFIG_HL_SUPPORT
  2773. /**
  2774. * send_mgmt_cmd_tlv() - WMI scan start function
  2775. * @wmi_handle : handle to WMI.
  2776. * @param : pointer to hold mgmt cmd parameter
  2777. *
  2778. * Return: 0 on success and -ve on failure.
  2779. */
  2780. static QDF_STATUS send_mgmt_cmd_tlv(wmi_unified_t wmi_handle,
  2781. struct wmi_mgmt_params *param)
  2782. {
  2783. wmi_buf_t buf;
  2784. uint8_t *bufp;
  2785. int32_t cmd_len;
  2786. wmi_mgmt_tx_send_cmd_fixed_param *cmd;
  2787. int32_t bufp_len = (param->frm_len < mgmt_tx_dl_frm_len) ? param->frm_len :
  2788. mgmt_tx_dl_frm_len;
  2789. if (param->frm_len > mgmt_tx_dl_frm_len) {
  2790. WMI_LOGE("%s:mgmt frame len %u exceeds %u",
  2791. __func__, param->frm_len, mgmt_tx_dl_frm_len);
  2792. return QDF_STATUS_E_INVAL;
  2793. }
  2794. cmd_len = sizeof(wmi_mgmt_tx_send_cmd_fixed_param) +
  2795. WMI_TLV_HDR_SIZE +
  2796. roundup(bufp_len, sizeof(uint32_t));
  2797. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_tx_send_params) + cmd_len);
  2798. if (!buf) {
  2799. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  2800. return QDF_STATUS_E_NOMEM;
  2801. }
  2802. cmd = (wmi_mgmt_tx_send_cmd_fixed_param *)wmi_buf_data(buf);
  2803. bufp = (uint8_t *) cmd;
  2804. WMITLV_SET_HDR(&cmd->tlv_header,
  2805. WMITLV_TAG_STRUC_wmi_mgmt_tx_send_cmd_fixed_param,
  2806. WMITLV_GET_STRUCT_TLVLEN
  2807. (wmi_mgmt_tx_send_cmd_fixed_param));
  2808. cmd->vdev_id = param->vdev_id;
  2809. cmd->desc_id = param->desc_id;
  2810. cmd->chanfreq = param->chanfreq;
  2811. bufp += sizeof(wmi_mgmt_tx_send_cmd_fixed_param);
  2812. WMITLV_SET_HDR(bufp, WMITLV_TAG_ARRAY_BYTE, roundup(bufp_len,
  2813. sizeof(uint32_t)));
  2814. bufp += WMI_TLV_HDR_SIZE;
  2815. qdf_mem_copy(bufp, param->pdata, bufp_len);
  2816. cmd->frame_len = param->frm_len;
  2817. cmd->buf_len = bufp_len;
  2818. cmd->tx_params_valid = param->tx_params_valid;
  2819. wmi_mgmt_cmd_record(wmi_handle, WMI_MGMT_TX_SEND_CMDID,
  2820. bufp, cmd->vdev_id, cmd->chanfreq);
  2821. bufp += roundup(bufp_len, sizeof(uint32_t));
  2822. if (param->tx_params_valid) {
  2823. if (populate_tx_send_params(bufp, param->tx_param) !=
  2824. QDF_STATUS_SUCCESS) {
  2825. WMI_LOGE("%s: Populate TX send params failed",
  2826. __func__);
  2827. goto free_buf;
  2828. }
  2829. cmd_len += sizeof(wmi_tx_send_params);
  2830. }
  2831. if (wmi_unified_cmd_send(wmi_handle, buf, cmd_len,
  2832. WMI_MGMT_TX_SEND_CMDID)) {
  2833. WMI_LOGE("%s: Failed to send mgmt Tx", __func__);
  2834. goto free_buf;
  2835. }
  2836. return QDF_STATUS_SUCCESS;
  2837. free_buf:
  2838. wmi_buf_free(buf);
  2839. return QDF_STATUS_E_FAILURE;
  2840. }
  2841. #else
  2842. /**
  2843. * send_mgmt_cmd_tlv() - WMI scan start function
  2844. * @wmi_handle : handle to WMI.
  2845. * @param : pointer to hold mgmt cmd parameter
  2846. *
  2847. * Return: 0 on success and -ve on failure.
  2848. */
  2849. static QDF_STATUS send_mgmt_cmd_tlv(wmi_unified_t wmi_handle,
  2850. struct wmi_mgmt_params *param)
  2851. {
  2852. wmi_buf_t buf;
  2853. wmi_mgmt_tx_send_cmd_fixed_param *cmd;
  2854. int32_t cmd_len;
  2855. uint64_t dma_addr;
  2856. void *qdf_ctx = param->qdf_ctx;
  2857. uint8_t *bufp;
  2858. QDF_STATUS status = QDF_STATUS_SUCCESS;
  2859. int32_t bufp_len = (param->frm_len < mgmt_tx_dl_frm_len) ? param->frm_len :
  2860. mgmt_tx_dl_frm_len;
  2861. cmd_len = sizeof(wmi_mgmt_tx_send_cmd_fixed_param) +
  2862. WMI_TLV_HDR_SIZE +
  2863. roundup(bufp_len, sizeof(uint32_t));
  2864. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_tx_send_params) + cmd_len);
  2865. if (!buf) {
  2866. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  2867. return QDF_STATUS_E_NOMEM;
  2868. }
  2869. cmd = (wmi_mgmt_tx_send_cmd_fixed_param *)wmi_buf_data(buf);
  2870. bufp = (uint8_t *) cmd;
  2871. WMITLV_SET_HDR(&cmd->tlv_header,
  2872. WMITLV_TAG_STRUC_wmi_mgmt_tx_send_cmd_fixed_param,
  2873. WMITLV_GET_STRUCT_TLVLEN
  2874. (wmi_mgmt_tx_send_cmd_fixed_param));
  2875. cmd->vdev_id = param->vdev_id;
  2876. cmd->desc_id = param->desc_id;
  2877. cmd->chanfreq = param->chanfreq;
  2878. bufp += sizeof(wmi_mgmt_tx_send_cmd_fixed_param);
  2879. WMITLV_SET_HDR(bufp, WMITLV_TAG_ARRAY_BYTE, roundup(bufp_len,
  2880. sizeof(uint32_t)));
  2881. bufp += WMI_TLV_HDR_SIZE;
  2882. qdf_mem_copy(bufp, param->pdata, bufp_len);
  2883. status = qdf_nbuf_map_single(qdf_ctx, param->tx_frame,
  2884. QDF_DMA_TO_DEVICE);
  2885. if (status != QDF_STATUS_SUCCESS) {
  2886. WMI_LOGE("%s: wmi buf map failed", __func__);
  2887. goto free_buf;
  2888. }
  2889. dma_addr = qdf_nbuf_get_frag_paddr(param->tx_frame, 0);
  2890. cmd->paddr_lo = (uint32_t)(dma_addr & 0xffffffff);
  2891. #if defined(HTT_PADDR64)
  2892. cmd->paddr_hi = (uint32_t)((dma_addr >> 32) & 0x1F);
  2893. #endif
  2894. cmd->frame_len = param->frm_len;
  2895. cmd->buf_len = bufp_len;
  2896. cmd->tx_params_valid = param->tx_params_valid;
  2897. wmi_mgmt_cmd_record(wmi_handle, WMI_MGMT_TX_SEND_CMDID,
  2898. bufp, cmd->vdev_id, cmd->chanfreq);
  2899. bufp += roundup(bufp_len, sizeof(uint32_t));
  2900. if (param->tx_params_valid) {
  2901. status = populate_tx_send_params(bufp, param->tx_param);
  2902. if (status != QDF_STATUS_SUCCESS) {
  2903. WMI_LOGE("%s: Populate TX send params failed",
  2904. __func__);
  2905. goto unmap_tx_frame;
  2906. }
  2907. cmd_len += sizeof(wmi_tx_send_params);
  2908. }
  2909. if (wmi_unified_cmd_send(wmi_handle, buf, cmd_len,
  2910. WMI_MGMT_TX_SEND_CMDID)) {
  2911. WMI_LOGE("%s: Failed to send mgmt Tx", __func__);
  2912. goto unmap_tx_frame;
  2913. }
  2914. return QDF_STATUS_SUCCESS;
  2915. unmap_tx_frame:
  2916. qdf_nbuf_unmap_single(qdf_ctx, param->tx_frame,
  2917. QDF_DMA_TO_DEVICE);
  2918. free_buf:
  2919. wmi_buf_free(buf);
  2920. return QDF_STATUS_E_FAILURE;
  2921. }
  2922. #endif /* CONFIG_HL_SUPPORT */
  2923. /**
  2924. * send_offchan_data_tx_send_cmd_tlv() - Send off-chan tx data
  2925. * @wmi_handle : handle to WMI.
  2926. * @param : pointer to offchan data tx cmd parameter
  2927. *
  2928. * Return: QDF_STATUS_SUCCESS on success and error on failure.
  2929. */
  2930. static QDF_STATUS send_offchan_data_tx_cmd_tlv(wmi_unified_t wmi_handle,
  2931. struct wmi_offchan_data_tx_params *param)
  2932. {
  2933. wmi_buf_t buf;
  2934. wmi_offchan_data_tx_send_cmd_fixed_param *cmd;
  2935. int32_t cmd_len;
  2936. uint64_t dma_addr;
  2937. void *qdf_ctx = param->qdf_ctx;
  2938. uint8_t *bufp;
  2939. int32_t bufp_len = (param->frm_len < mgmt_tx_dl_frm_len) ?
  2940. param->frm_len : mgmt_tx_dl_frm_len;
  2941. QDF_STATUS status = QDF_STATUS_SUCCESS;
  2942. cmd_len = sizeof(wmi_offchan_data_tx_send_cmd_fixed_param) +
  2943. WMI_TLV_HDR_SIZE +
  2944. roundup(bufp_len, sizeof(uint32_t));
  2945. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_tx_send_params) + cmd_len);
  2946. if (!buf) {
  2947. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  2948. return QDF_STATUS_E_NOMEM;
  2949. }
  2950. cmd = (wmi_offchan_data_tx_send_cmd_fixed_param *) wmi_buf_data(buf);
  2951. bufp = (uint8_t *) cmd;
  2952. WMITLV_SET_HDR(&cmd->tlv_header,
  2953. WMITLV_TAG_STRUC_wmi_offchan_data_tx_send_cmd_fixed_param,
  2954. WMITLV_GET_STRUCT_TLVLEN
  2955. (wmi_offchan_data_tx_send_cmd_fixed_param));
  2956. cmd->vdev_id = param->vdev_id;
  2957. cmd->desc_id = param->desc_id;
  2958. cmd->chanfreq = param->chanfreq;
  2959. bufp += sizeof(wmi_offchan_data_tx_send_cmd_fixed_param);
  2960. WMITLV_SET_HDR(bufp, WMITLV_TAG_ARRAY_BYTE, roundup(bufp_len,
  2961. sizeof(uint32_t)));
  2962. bufp += WMI_TLV_HDR_SIZE;
  2963. qdf_mem_copy(bufp, param->pdata, bufp_len);
  2964. qdf_nbuf_map_single(qdf_ctx, param->tx_frame, QDF_DMA_TO_DEVICE);
  2965. dma_addr = qdf_nbuf_get_frag_paddr(param->tx_frame, 0);
  2966. cmd->paddr_lo = (uint32_t)(dma_addr & 0xffffffff);
  2967. #if defined(HTT_PADDR64)
  2968. cmd->paddr_hi = (uint32_t)((dma_addr >> 32) & 0x1F);
  2969. #endif
  2970. cmd->frame_len = param->frm_len;
  2971. cmd->buf_len = bufp_len;
  2972. cmd->tx_params_valid = param->tx_params_valid;
  2973. wmi_mgmt_cmd_record(wmi_handle, WMI_OFFCHAN_DATA_TX_SEND_CMDID,
  2974. bufp, cmd->vdev_id, cmd->chanfreq);
  2975. bufp += roundup(bufp_len, sizeof(uint32_t));
  2976. if (param->tx_params_valid) {
  2977. status = populate_tx_send_params(bufp, param->tx_param);
  2978. if (status != QDF_STATUS_SUCCESS) {
  2979. WMI_LOGE("%s: Populate TX send params failed",
  2980. __func__);
  2981. goto err1;
  2982. }
  2983. cmd_len += sizeof(wmi_tx_send_params);
  2984. }
  2985. if (wmi_unified_cmd_send(wmi_handle, buf, cmd_len,
  2986. WMI_OFFCHAN_DATA_TX_SEND_CMDID)) {
  2987. WMI_LOGE("%s: Failed to offchan data Tx", __func__);
  2988. goto err1;
  2989. }
  2990. return QDF_STATUS_SUCCESS;
  2991. err1:
  2992. wmi_buf_free(buf);
  2993. return QDF_STATUS_E_FAILURE;
  2994. }
  2995. /**
  2996. * send_modem_power_state_cmd_tlv() - set modem power state to fw
  2997. * @wmi_handle: wmi handle
  2998. * @param_value: parameter value
  2999. *
  3000. * Return: QDF_STATUS_SUCCESS for success or error code
  3001. */
  3002. static QDF_STATUS send_modem_power_state_cmd_tlv(wmi_unified_t wmi_handle,
  3003. uint32_t param_value)
  3004. {
  3005. QDF_STATUS ret;
  3006. wmi_modem_power_state_cmd_param *cmd;
  3007. wmi_buf_t buf;
  3008. uint16_t len = sizeof(*cmd);
  3009. buf = wmi_buf_alloc(wmi_handle, len);
  3010. if (!buf) {
  3011. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  3012. return QDF_STATUS_E_NOMEM;
  3013. }
  3014. cmd = (wmi_modem_power_state_cmd_param *) wmi_buf_data(buf);
  3015. WMITLV_SET_HDR(&cmd->tlv_header,
  3016. WMITLV_TAG_STRUC_wmi_modem_power_state_cmd_param,
  3017. WMITLV_GET_STRUCT_TLVLEN
  3018. (wmi_modem_power_state_cmd_param));
  3019. cmd->modem_power_state = param_value;
  3020. WMI_LOGD("%s: Setting cmd->modem_power_state = %u", __func__,
  3021. param_value);
  3022. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3023. WMI_MODEM_POWER_STATE_CMDID);
  3024. if (QDF_IS_STATUS_ERROR(ret)) {
  3025. WMI_LOGE("Failed to send notify cmd ret = %d", ret);
  3026. wmi_buf_free(buf);
  3027. }
  3028. return ret;
  3029. }
  3030. /**
  3031. * send_set_sta_ps_mode_cmd_tlv() - set sta powersave mode in fw
  3032. * @wmi_handle: wmi handle
  3033. * @vdev_id: vdev id
  3034. * @val: value
  3035. *
  3036. * Return: QDF_STATUS_SUCCESS for success or error code.
  3037. */
  3038. static QDF_STATUS send_set_sta_ps_mode_cmd_tlv(wmi_unified_t wmi_handle,
  3039. uint32_t vdev_id, uint8_t val)
  3040. {
  3041. wmi_sta_powersave_mode_cmd_fixed_param *cmd;
  3042. wmi_buf_t buf;
  3043. int32_t len = sizeof(*cmd);
  3044. WMI_LOGD("Set Sta Mode Ps vdevId %d val %d", vdev_id, val);
  3045. buf = wmi_buf_alloc(wmi_handle, len);
  3046. if (!buf) {
  3047. WMI_LOGP("%s: Set Sta Mode Ps Mem Alloc Failed", __func__);
  3048. return QDF_STATUS_E_NOMEM;
  3049. }
  3050. cmd = (wmi_sta_powersave_mode_cmd_fixed_param *) wmi_buf_data(buf);
  3051. WMITLV_SET_HDR(&cmd->tlv_header,
  3052. WMITLV_TAG_STRUC_wmi_sta_powersave_mode_cmd_fixed_param,
  3053. WMITLV_GET_STRUCT_TLVLEN
  3054. (wmi_sta_powersave_mode_cmd_fixed_param));
  3055. cmd->vdev_id = vdev_id;
  3056. if (val)
  3057. cmd->sta_ps_mode = WMI_STA_PS_MODE_ENABLED;
  3058. else
  3059. cmd->sta_ps_mode = WMI_STA_PS_MODE_DISABLED;
  3060. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3061. WMI_STA_POWERSAVE_MODE_CMDID)) {
  3062. WMI_LOGE("Set Sta Mode Ps Failed vdevId %d val %d",
  3063. vdev_id, val);
  3064. wmi_buf_free(buf);
  3065. return QDF_STATUS_E_FAILURE;
  3066. }
  3067. return 0;
  3068. }
  3069. /**
  3070. * send_set_mimops_cmd_tlv() - set MIMO powersave
  3071. * @wmi_handle: wmi handle
  3072. * @vdev_id: vdev id
  3073. * @value: value
  3074. *
  3075. * Return: QDF_STATUS_SUCCESS for success or error code.
  3076. */
  3077. static QDF_STATUS send_set_mimops_cmd_tlv(wmi_unified_t wmi_handle,
  3078. uint8_t vdev_id, int value)
  3079. {
  3080. QDF_STATUS ret;
  3081. wmi_sta_smps_force_mode_cmd_fixed_param *cmd;
  3082. wmi_buf_t buf;
  3083. uint16_t len = sizeof(*cmd);
  3084. buf = wmi_buf_alloc(wmi_handle, len);
  3085. if (!buf) {
  3086. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  3087. return QDF_STATUS_E_NOMEM;
  3088. }
  3089. cmd = (wmi_sta_smps_force_mode_cmd_fixed_param *) wmi_buf_data(buf);
  3090. WMITLV_SET_HDR(&cmd->tlv_header,
  3091. WMITLV_TAG_STRUC_wmi_sta_smps_force_mode_cmd_fixed_param,
  3092. WMITLV_GET_STRUCT_TLVLEN
  3093. (wmi_sta_smps_force_mode_cmd_fixed_param));
  3094. cmd->vdev_id = vdev_id;
  3095. /* WMI_SMPS_FORCED_MODE values do not directly map
  3096. * to SM power save values defined in the specification.
  3097. * Make sure to send the right mapping.
  3098. */
  3099. switch (value) {
  3100. case 0:
  3101. cmd->forced_mode = WMI_SMPS_FORCED_MODE_NONE;
  3102. break;
  3103. case 1:
  3104. cmd->forced_mode = WMI_SMPS_FORCED_MODE_DISABLED;
  3105. break;
  3106. case 2:
  3107. cmd->forced_mode = WMI_SMPS_FORCED_MODE_STATIC;
  3108. break;
  3109. case 3:
  3110. cmd->forced_mode = WMI_SMPS_FORCED_MODE_DYNAMIC;
  3111. break;
  3112. default:
  3113. WMI_LOGE("%s:INVALID Mimo PS CONFIG", __func__);
  3114. wmi_buf_free(buf);
  3115. return QDF_STATUS_E_FAILURE;
  3116. }
  3117. WMI_LOGD("Setting vdev %d value = %u", vdev_id, value);
  3118. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3119. WMI_STA_SMPS_FORCE_MODE_CMDID);
  3120. if (QDF_IS_STATUS_ERROR(ret)) {
  3121. WMI_LOGE("Failed to send set Mimo PS ret = %d", ret);
  3122. wmi_buf_free(buf);
  3123. }
  3124. return ret;
  3125. }
  3126. /**
  3127. * send_set_smps_params_cmd_tlv() - set smps params
  3128. * @wmi_handle: wmi handle
  3129. * @vdev_id: vdev id
  3130. * @value: value
  3131. *
  3132. * Return: QDF_STATUS_SUCCESS for success or error code.
  3133. */
  3134. static QDF_STATUS send_set_smps_params_cmd_tlv(wmi_unified_t wmi_handle, uint8_t vdev_id,
  3135. int value)
  3136. {
  3137. QDF_STATUS ret;
  3138. wmi_sta_smps_param_cmd_fixed_param *cmd;
  3139. wmi_buf_t buf;
  3140. uint16_t len = sizeof(*cmd);
  3141. buf = wmi_buf_alloc(wmi_handle, len);
  3142. if (!buf) {
  3143. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  3144. return QDF_STATUS_E_NOMEM;
  3145. }
  3146. cmd = (wmi_sta_smps_param_cmd_fixed_param *) wmi_buf_data(buf);
  3147. WMITLV_SET_HDR(&cmd->tlv_header,
  3148. WMITLV_TAG_STRUC_wmi_sta_smps_param_cmd_fixed_param,
  3149. WMITLV_GET_STRUCT_TLVLEN
  3150. (wmi_sta_smps_param_cmd_fixed_param));
  3151. cmd->vdev_id = vdev_id;
  3152. cmd->value = value & WMI_SMPS_MASK_LOWER_16BITS;
  3153. cmd->param =
  3154. (value >> WMI_SMPS_PARAM_VALUE_S) & WMI_SMPS_MASK_UPPER_3BITS;
  3155. WMI_LOGD("Setting vdev %d value = %x param %x", vdev_id, cmd->value,
  3156. cmd->param);
  3157. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3158. WMI_STA_SMPS_PARAM_CMDID);
  3159. if (QDF_IS_STATUS_ERROR(ret)) {
  3160. WMI_LOGE("Failed to send set Mimo PS ret = %d", ret);
  3161. wmi_buf_free(buf);
  3162. }
  3163. return ret;
  3164. }
  3165. /**
  3166. * send_set_p2pgo_noa_req_cmd_tlv() - send p2p go noa request to fw
  3167. * @wmi_handle: wmi handle
  3168. * @noa: p2p power save parameters
  3169. *
  3170. * Return: CDF status
  3171. */
  3172. static QDF_STATUS send_set_p2pgo_noa_req_cmd_tlv(wmi_unified_t wmi_handle,
  3173. struct p2p_ps_params *noa)
  3174. {
  3175. wmi_p2p_set_noa_cmd_fixed_param *cmd;
  3176. wmi_p2p_noa_descriptor *noa_discriptor;
  3177. wmi_buf_t buf;
  3178. uint8_t *buf_ptr;
  3179. uint16_t len;
  3180. QDF_STATUS status;
  3181. uint32_t duration;
  3182. WMI_LOGD("%s: Enter", __func__);
  3183. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE + sizeof(*noa_discriptor);
  3184. buf = wmi_buf_alloc(wmi_handle, len);
  3185. if (!buf) {
  3186. WMI_LOGE("Failed to allocate memory");
  3187. status = QDF_STATUS_E_FAILURE;
  3188. goto end;
  3189. }
  3190. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  3191. cmd = (wmi_p2p_set_noa_cmd_fixed_param *) buf_ptr;
  3192. WMITLV_SET_HDR(&cmd->tlv_header,
  3193. WMITLV_TAG_STRUC_wmi_p2p_set_noa_cmd_fixed_param,
  3194. WMITLV_GET_STRUCT_TLVLEN
  3195. (wmi_p2p_set_noa_cmd_fixed_param));
  3196. duration = (noa->count == 1) ? noa->single_noa_duration : noa->duration;
  3197. cmd->vdev_id = noa->session_id;
  3198. cmd->enable = (duration) ? true : false;
  3199. cmd->num_noa = 1;
  3200. WMITLV_SET_HDR((buf_ptr + sizeof(wmi_p2p_set_noa_cmd_fixed_param)),
  3201. WMITLV_TAG_ARRAY_STRUC, sizeof(wmi_p2p_noa_descriptor));
  3202. noa_discriptor = (wmi_p2p_noa_descriptor *) (buf_ptr +
  3203. sizeof
  3204. (wmi_p2p_set_noa_cmd_fixed_param)
  3205. + WMI_TLV_HDR_SIZE);
  3206. WMITLV_SET_HDR(&noa_discriptor->tlv_header,
  3207. WMITLV_TAG_STRUC_wmi_p2p_noa_descriptor,
  3208. WMITLV_GET_STRUCT_TLVLEN(wmi_p2p_noa_descriptor));
  3209. noa_discriptor->type_count = noa->count;
  3210. noa_discriptor->duration = duration;
  3211. noa_discriptor->interval = noa->interval;
  3212. noa_discriptor->start_time = 0;
  3213. WMI_LOGI("SET P2P GO NOA:vdev_id:%d count:%d duration:%d interval:%d",
  3214. cmd->vdev_id, noa->count, noa_discriptor->duration,
  3215. noa->interval);
  3216. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  3217. WMI_FWTEST_P2P_SET_NOA_PARAM_CMDID);
  3218. if (QDF_IS_STATUS_ERROR(status)) {
  3219. WMI_LOGE("Failed to send WMI_FWTEST_P2P_SET_NOA_PARAM_CMDID");
  3220. wmi_buf_free(buf);
  3221. }
  3222. end:
  3223. WMI_LOGD("%s: Exit", __func__);
  3224. return status;
  3225. }
  3226. /**
  3227. * send_set_p2pgo_oppps_req_cmd_tlv() - send p2p go opp power save request to fw
  3228. * @wmi_handle: wmi handle
  3229. * @noa: p2p opp power save parameters
  3230. *
  3231. * Return: CDF status
  3232. */
  3233. static QDF_STATUS send_set_p2pgo_oppps_req_cmd_tlv(wmi_unified_t wmi_handle,
  3234. struct p2p_ps_params *oppps)
  3235. {
  3236. wmi_p2p_set_oppps_cmd_fixed_param *cmd;
  3237. wmi_buf_t buf;
  3238. QDF_STATUS status;
  3239. WMI_LOGD("%s: Enter", __func__);
  3240. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  3241. if (!buf) {
  3242. WMI_LOGE("Failed to allocate memory");
  3243. status = QDF_STATUS_E_FAILURE;
  3244. goto end;
  3245. }
  3246. cmd = (wmi_p2p_set_oppps_cmd_fixed_param *) wmi_buf_data(buf);
  3247. WMITLV_SET_HDR(&cmd->tlv_header,
  3248. WMITLV_TAG_STRUC_wmi_p2p_set_oppps_cmd_fixed_param,
  3249. WMITLV_GET_STRUCT_TLVLEN
  3250. (wmi_p2p_set_oppps_cmd_fixed_param));
  3251. cmd->vdev_id = oppps->session_id;
  3252. if (oppps->ctwindow)
  3253. WMI_UNIFIED_OPPPS_ATTR_ENABLED_SET(cmd);
  3254. WMI_UNIFIED_OPPPS_ATTR_CTWIN_SET(cmd, oppps->ctwindow);
  3255. WMI_LOGI("SET P2P GO OPPPS:vdev_id:%d ctwindow:%d",
  3256. cmd->vdev_id, oppps->ctwindow);
  3257. status = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  3258. WMI_P2P_SET_OPPPS_PARAM_CMDID);
  3259. if (QDF_IS_STATUS_ERROR(status)) {
  3260. WMI_LOGE("Failed to send WMI_P2P_SET_OPPPS_PARAM_CMDID");
  3261. wmi_buf_free(buf);
  3262. }
  3263. end:
  3264. WMI_LOGD("%s: Exit", __func__);
  3265. return status;
  3266. }
  3267. #ifdef CONVERGED_P2P_ENABLE
  3268. /**
  3269. * send_p2p_lo_start_cmd_tlv() - send p2p lo start request to fw
  3270. * @wmi_handle: wmi handle
  3271. * @param: p2p listen offload start parameters
  3272. *
  3273. * Return: QDF status
  3274. */
  3275. static QDF_STATUS send_p2p_lo_start_cmd_tlv(wmi_unified_t wmi_handle,
  3276. struct p2p_lo_start *param)
  3277. {
  3278. wmi_buf_t buf;
  3279. wmi_p2p_lo_start_cmd_fixed_param *cmd;
  3280. int32_t len = sizeof(*cmd);
  3281. uint8_t *buf_ptr;
  3282. QDF_STATUS status;
  3283. int device_types_len_aligned;
  3284. int probe_resp_len_aligned;
  3285. if (!param) {
  3286. WMI_LOGE("lo start param is null");
  3287. return QDF_STATUS_E_INVAL;
  3288. }
  3289. WMI_LOGD("%s: vdev_id:%d", __func__, param->vdev_id);
  3290. device_types_len_aligned =
  3291. qdf_roundup(param->dev_types_len,
  3292. sizeof(uint32_t));
  3293. probe_resp_len_aligned =
  3294. qdf_roundup(param->probe_resp_len,
  3295. sizeof(uint32_t));
  3296. len += 2 * WMI_TLV_HDR_SIZE + device_types_len_aligned +
  3297. probe_resp_len_aligned;
  3298. buf = wmi_buf_alloc(wmi_handle, len);
  3299. if (!buf) {
  3300. WMI_LOGE("%s: Failed to allocate memory for p2p lo start",
  3301. __func__);
  3302. return QDF_STATUS_E_NOMEM;
  3303. }
  3304. cmd = (wmi_p2p_lo_start_cmd_fixed_param *)wmi_buf_data(buf);
  3305. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  3306. WMITLV_SET_HDR(&cmd->tlv_header,
  3307. WMITLV_TAG_STRUC_wmi_p2p_lo_start_cmd_fixed_param,
  3308. WMITLV_GET_STRUCT_TLVLEN(
  3309. wmi_p2p_lo_start_cmd_fixed_param));
  3310. cmd->vdev_id = param->vdev_id;
  3311. cmd->ctl_flags = param->ctl_flags;
  3312. cmd->channel = param->freq;
  3313. cmd->period = param->period;
  3314. cmd->interval = param->interval;
  3315. cmd->count = param->count;
  3316. cmd->device_types_len = param->dev_types_len;
  3317. cmd->prob_resp_len = param->probe_resp_len;
  3318. buf_ptr += sizeof(wmi_p2p_lo_start_cmd_fixed_param);
  3319. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  3320. device_types_len_aligned);
  3321. buf_ptr += WMI_TLV_HDR_SIZE;
  3322. qdf_mem_copy(buf_ptr, param->device_types,
  3323. param->dev_types_len);
  3324. buf_ptr += device_types_len_aligned;
  3325. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  3326. probe_resp_len_aligned);
  3327. buf_ptr += WMI_TLV_HDR_SIZE;
  3328. qdf_mem_copy(buf_ptr, param->probe_resp_tmplt,
  3329. param->probe_resp_len);
  3330. WMI_LOGD("%s: Sending WMI_P2P_LO_START command, channel=%d, period=%d, interval=%d, count=%d", __func__,
  3331. cmd->channel, cmd->period, cmd->interval, cmd->count);
  3332. status = wmi_unified_cmd_send(wmi_handle,
  3333. buf, len,
  3334. WMI_P2P_LISTEN_OFFLOAD_START_CMDID);
  3335. if (status != QDF_STATUS_SUCCESS) {
  3336. WMI_LOGE("%s: Failed to send p2p lo start: %d",
  3337. __func__, status);
  3338. wmi_buf_free(buf);
  3339. return status;
  3340. }
  3341. WMI_LOGD("%s: Successfully sent WMI_P2P_LO_START", __func__);
  3342. return QDF_STATUS_SUCCESS;
  3343. }
  3344. /**
  3345. * send_p2p_lo_stop_cmd_tlv() - send p2p lo stop request to fw
  3346. * @wmi_handle: wmi handle
  3347. * @param: p2p listen offload stop parameters
  3348. *
  3349. * Return: QDF status
  3350. */
  3351. static QDF_STATUS send_p2p_lo_stop_cmd_tlv(wmi_unified_t wmi_handle,
  3352. uint8_t vdev_id)
  3353. {
  3354. wmi_buf_t buf;
  3355. wmi_p2p_lo_stop_cmd_fixed_param *cmd;
  3356. int32_t len;
  3357. QDF_STATUS status;
  3358. WMI_LOGD("%s: vdev_id:%d", __func__, vdev_id);
  3359. len = sizeof(*cmd);
  3360. buf = wmi_buf_alloc(wmi_handle, len);
  3361. if (!buf) {
  3362. qdf_print("%s: Failed to allocate memory for p2p lo stop",
  3363. __func__);
  3364. return QDF_STATUS_E_NOMEM;
  3365. }
  3366. cmd = (wmi_p2p_lo_stop_cmd_fixed_param *)wmi_buf_data(buf);
  3367. WMITLV_SET_HDR(&cmd->tlv_header,
  3368. WMITLV_TAG_STRUC_wmi_p2p_lo_stop_cmd_fixed_param,
  3369. WMITLV_GET_STRUCT_TLVLEN(
  3370. wmi_p2p_lo_stop_cmd_fixed_param));
  3371. cmd->vdev_id = vdev_id;
  3372. WMI_LOGD("%s: Sending WMI_P2P_LO_STOP command", __func__);
  3373. status = wmi_unified_cmd_send(wmi_handle,
  3374. buf, len,
  3375. WMI_P2P_LISTEN_OFFLOAD_STOP_CMDID);
  3376. if (status != QDF_STATUS_SUCCESS) {
  3377. WMI_LOGE("%s: Failed to send p2p lo stop: %d",
  3378. __func__, status);
  3379. wmi_buf_free(buf);
  3380. return status;
  3381. }
  3382. WMI_LOGD("%s: Successfully sent WMI_P2P_LO_STOP", __func__);
  3383. return QDF_STATUS_SUCCESS;
  3384. }
  3385. #endif /* End of CONVERGED_P2P_ENABLE */
  3386. /**
  3387. * send_get_temperature_cmd_tlv() - get pdev temperature req
  3388. * @wmi_handle: wmi handle
  3389. *
  3390. * Return: QDF_STATUS_SUCCESS for success or error code.
  3391. */
  3392. static QDF_STATUS send_get_temperature_cmd_tlv(wmi_unified_t wmi_handle)
  3393. {
  3394. wmi_pdev_get_temperature_cmd_fixed_param *cmd;
  3395. wmi_buf_t wmi_buf;
  3396. uint32_t len = sizeof(wmi_pdev_get_temperature_cmd_fixed_param);
  3397. uint8_t *buf_ptr;
  3398. if (!wmi_handle) {
  3399. WMI_LOGE(FL("WMI is closed, can not issue cmd"));
  3400. return QDF_STATUS_E_INVAL;
  3401. }
  3402. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  3403. if (!wmi_buf) {
  3404. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3405. return QDF_STATUS_E_NOMEM;
  3406. }
  3407. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  3408. cmd = (wmi_pdev_get_temperature_cmd_fixed_param *) buf_ptr;
  3409. WMITLV_SET_HDR(&cmd->tlv_header,
  3410. WMITLV_TAG_STRUC_wmi_pdev_get_temperature_cmd_fixed_param,
  3411. WMITLV_GET_STRUCT_TLVLEN
  3412. (wmi_pdev_get_temperature_cmd_fixed_param));
  3413. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  3414. WMI_PDEV_GET_TEMPERATURE_CMDID)) {
  3415. WMI_LOGE(FL("failed to send get temperature command"));
  3416. wmi_buf_free(wmi_buf);
  3417. return QDF_STATUS_E_FAILURE;
  3418. }
  3419. return QDF_STATUS_SUCCESS;
  3420. }
  3421. /**
  3422. * send_set_sta_uapsd_auto_trig_cmd_tlv() - set uapsd auto trigger command
  3423. * @wmi_handle: wmi handle
  3424. * @vdevid: vdev id
  3425. * @peer_addr: peer mac address
  3426. * @auto_triggerparam: auto trigger parameters
  3427. * @num_ac: number of access category
  3428. *
  3429. * This function sets the trigger
  3430. * uapsd params such as service interval, delay interval
  3431. * and suspend interval which will be used by the firmware
  3432. * to send trigger frames periodically when there is no
  3433. * traffic on the transmit side.
  3434. *
  3435. * Return: QDF_STATUS_SUCCESS for success or error code.
  3436. */
  3437. static QDF_STATUS send_set_sta_uapsd_auto_trig_cmd_tlv(wmi_unified_t wmi_handle,
  3438. struct sta_uapsd_trig_params *param)
  3439. {
  3440. wmi_sta_uapsd_auto_trig_cmd_fixed_param *cmd;
  3441. QDF_STATUS ret;
  3442. uint32_t param_len = param->num_ac * sizeof(wmi_sta_uapsd_auto_trig_param);
  3443. uint32_t cmd_len = sizeof(*cmd) + param_len + WMI_TLV_HDR_SIZE;
  3444. uint32_t i;
  3445. wmi_buf_t buf;
  3446. uint8_t *buf_ptr;
  3447. struct sta_uapsd_params *uapsd_param;
  3448. wmi_sta_uapsd_auto_trig_param *trig_param;
  3449. buf = wmi_buf_alloc(wmi_handle, cmd_len);
  3450. if (!buf) {
  3451. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  3452. return QDF_STATUS_E_NOMEM;
  3453. }
  3454. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  3455. cmd = (wmi_sta_uapsd_auto_trig_cmd_fixed_param *) buf_ptr;
  3456. WMITLV_SET_HDR(&cmd->tlv_header,
  3457. WMITLV_TAG_STRUC_wmi_sta_uapsd_auto_trig_cmd_fixed_param,
  3458. WMITLV_GET_STRUCT_TLVLEN
  3459. (wmi_sta_uapsd_auto_trig_cmd_fixed_param));
  3460. cmd->vdev_id = param->vdevid;
  3461. cmd->num_ac = param->num_ac;
  3462. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_addr, &cmd->peer_macaddr);
  3463. /* TLV indicating array of structures to follow */
  3464. buf_ptr += sizeof(*cmd);
  3465. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, param_len);
  3466. buf_ptr += WMI_TLV_HDR_SIZE;
  3467. /*
  3468. * Update tag and length for uapsd auto trigger params (this will take
  3469. * care of updating tag and length if it is not pre-filled by caller).
  3470. */
  3471. uapsd_param = (struct sta_uapsd_params *)param->auto_triggerparam;
  3472. trig_param = (wmi_sta_uapsd_auto_trig_param *)buf_ptr;
  3473. for (i = 0; i < param->num_ac; i++) {
  3474. WMITLV_SET_HDR((buf_ptr +
  3475. (i * sizeof(wmi_sta_uapsd_auto_trig_param))),
  3476. WMITLV_TAG_STRUC_wmi_sta_uapsd_auto_trig_param,
  3477. WMITLV_GET_STRUCT_TLVLEN
  3478. (wmi_sta_uapsd_auto_trig_param));
  3479. trig_param->wmm_ac = uapsd_param->wmm_ac;
  3480. trig_param->user_priority = uapsd_param->user_priority;
  3481. trig_param->service_interval = uapsd_param->service_interval;
  3482. trig_param->suspend_interval = uapsd_param->suspend_interval;
  3483. trig_param->delay_interval = uapsd_param->delay_interval;
  3484. trig_param++;
  3485. uapsd_param++;
  3486. }
  3487. ret = wmi_unified_cmd_send(wmi_handle, buf, cmd_len,
  3488. WMI_STA_UAPSD_AUTO_TRIG_CMDID);
  3489. if (QDF_IS_STATUS_ERROR(ret)) {
  3490. WMI_LOGE("Failed to send set uapsd param ret = %d", ret);
  3491. wmi_buf_free(buf);
  3492. }
  3493. return ret;
  3494. }
  3495. #ifdef WLAN_FEATURE_DSRC
  3496. /**
  3497. * send_ocb_set_utc_time_cmd() - send the UTC time to the firmware
  3498. * @wmi_handle: pointer to the wmi handle
  3499. * @utc: pointer to the UTC time struct
  3500. *
  3501. * Return: 0 on succes
  3502. */
  3503. static QDF_STATUS send_ocb_set_utc_time_cmd_tlv(wmi_unified_t wmi_handle,
  3504. struct ocb_utc_param *utc)
  3505. {
  3506. QDF_STATUS ret;
  3507. wmi_ocb_set_utc_time_cmd_fixed_param *cmd;
  3508. uint8_t *buf_ptr;
  3509. uint32_t len, i;
  3510. wmi_buf_t buf;
  3511. len = sizeof(*cmd);
  3512. buf = wmi_buf_alloc(wmi_handle, len);
  3513. if (!buf) {
  3514. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3515. return QDF_STATUS_E_NOMEM;
  3516. }
  3517. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  3518. cmd = (wmi_ocb_set_utc_time_cmd_fixed_param *)buf_ptr;
  3519. WMITLV_SET_HDR(&cmd->tlv_header,
  3520. WMITLV_TAG_STRUC_wmi_ocb_set_utc_time_cmd_fixed_param,
  3521. WMITLV_GET_STRUCT_TLVLEN(wmi_ocb_set_utc_time_cmd_fixed_param));
  3522. cmd->vdev_id = utc->vdev_id;
  3523. for (i = 0; i < SIZE_UTC_TIME; i++)
  3524. WMI_UTC_TIME_SET(cmd, i, utc->utc_time[i]);
  3525. for (i = 0; i < SIZE_UTC_TIME_ERROR; i++)
  3526. WMI_TIME_ERROR_SET(cmd, i, utc->time_error[i]);
  3527. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3528. WMI_OCB_SET_UTC_TIME_CMDID);
  3529. if (QDF_IS_STATUS_ERROR(ret)) {
  3530. WMI_LOGE(FL("Failed to set OCB UTC time"));
  3531. wmi_buf_free(buf);
  3532. }
  3533. return ret;
  3534. }
  3535. /**
  3536. * send_ocb_start_timing_advert_cmd_tlv() - start sending the timing advertisement
  3537. * frames on a channel
  3538. * @wmi_handle: pointer to the wmi handle
  3539. * @timing_advert: pointer to the timing advertisement struct
  3540. *
  3541. * Return: 0 on succes
  3542. */
  3543. static QDF_STATUS send_ocb_start_timing_advert_cmd_tlv(wmi_unified_t wmi_handle,
  3544. struct ocb_timing_advert_param *timing_advert)
  3545. {
  3546. QDF_STATUS ret;
  3547. wmi_ocb_start_timing_advert_cmd_fixed_param *cmd;
  3548. uint8_t *buf_ptr;
  3549. uint32_t len, len_template;
  3550. wmi_buf_t buf;
  3551. len = sizeof(*cmd) +
  3552. WMI_TLV_HDR_SIZE;
  3553. len_template = timing_advert->template_length;
  3554. /* Add padding to the template if needed */
  3555. if (len_template % 4 != 0)
  3556. len_template += 4 - (len_template % 4);
  3557. len += len_template;
  3558. buf = wmi_buf_alloc(wmi_handle, len);
  3559. if (!buf) {
  3560. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3561. return QDF_STATUS_E_NOMEM;
  3562. }
  3563. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  3564. cmd = (wmi_ocb_start_timing_advert_cmd_fixed_param *)buf_ptr;
  3565. WMITLV_SET_HDR(&cmd->tlv_header,
  3566. WMITLV_TAG_STRUC_wmi_ocb_start_timing_advert_cmd_fixed_param,
  3567. WMITLV_GET_STRUCT_TLVLEN(
  3568. wmi_ocb_start_timing_advert_cmd_fixed_param));
  3569. cmd->vdev_id = timing_advert->vdev_id;
  3570. cmd->repeat_rate = timing_advert->repeat_rate;
  3571. cmd->channel_freq = timing_advert->chan_freq;
  3572. cmd->timestamp_offset = timing_advert->timestamp_offset;
  3573. cmd->time_value_offset = timing_advert->time_value_offset;
  3574. cmd->timing_advert_template_length = timing_advert->template_length;
  3575. buf_ptr += sizeof(*cmd);
  3576. /* Add the timing advert template */
  3577. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  3578. len_template);
  3579. qdf_mem_copy(buf_ptr + WMI_TLV_HDR_SIZE,
  3580. (uint8_t *)timing_advert->template_value,
  3581. timing_advert->template_length);
  3582. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3583. WMI_OCB_START_TIMING_ADVERT_CMDID);
  3584. if (QDF_IS_STATUS_ERROR(ret)) {
  3585. WMI_LOGE(FL("Failed to start OCB timing advert"));
  3586. wmi_buf_free(buf);
  3587. }
  3588. return ret;
  3589. }
  3590. /**
  3591. * send_ocb_stop_timing_advert_cmd_tlv() - stop sending the timing advertisement frames
  3592. * on a channel
  3593. * @wmi_handle: pointer to the wmi handle
  3594. * @timing_advert: pointer to the timing advertisement struct
  3595. *
  3596. * Return: 0 on succes
  3597. */
  3598. static QDF_STATUS send_ocb_stop_timing_advert_cmd_tlv(wmi_unified_t wmi_handle,
  3599. struct ocb_timing_advert_param *timing_advert)
  3600. {
  3601. QDF_STATUS ret;
  3602. wmi_ocb_stop_timing_advert_cmd_fixed_param *cmd;
  3603. uint8_t *buf_ptr;
  3604. uint32_t len;
  3605. wmi_buf_t buf;
  3606. len = sizeof(*cmd);
  3607. buf = wmi_buf_alloc(wmi_handle, len);
  3608. if (!buf) {
  3609. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3610. return QDF_STATUS_E_NOMEM;
  3611. }
  3612. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  3613. cmd = (wmi_ocb_stop_timing_advert_cmd_fixed_param *)buf_ptr;
  3614. WMITLV_SET_HDR(&cmd->tlv_header,
  3615. WMITLV_TAG_STRUC_wmi_ocb_stop_timing_advert_cmd_fixed_param,
  3616. WMITLV_GET_STRUCT_TLVLEN(
  3617. wmi_ocb_stop_timing_advert_cmd_fixed_param));
  3618. cmd->vdev_id = timing_advert->vdev_id;
  3619. cmd->channel_freq = timing_advert->chan_freq;
  3620. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3621. WMI_OCB_STOP_TIMING_ADVERT_CMDID);
  3622. if (QDF_IS_STATUS_ERROR(ret)) {
  3623. WMI_LOGE(FL("Failed to stop OCB timing advert"));
  3624. wmi_buf_free(buf);
  3625. }
  3626. return ret;
  3627. }
  3628. /**
  3629. * send_ocb_get_tsf_timer_cmd_tlv() - get ocb tsf timer val
  3630. * @wmi_handle: pointer to the wmi handle
  3631. * @request: pointer to the request
  3632. *
  3633. * Return: 0 on succes
  3634. */
  3635. static QDF_STATUS send_ocb_get_tsf_timer_cmd_tlv(wmi_unified_t wmi_handle,
  3636. uint8_t vdev_id)
  3637. {
  3638. QDF_STATUS ret;
  3639. wmi_ocb_get_tsf_timer_cmd_fixed_param *cmd;
  3640. uint8_t *buf_ptr;
  3641. wmi_buf_t buf;
  3642. int32_t len;
  3643. len = sizeof(*cmd);
  3644. buf = wmi_buf_alloc(wmi_handle, len);
  3645. if (!buf) {
  3646. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3647. return QDF_STATUS_E_NOMEM;
  3648. }
  3649. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  3650. cmd = (wmi_ocb_get_tsf_timer_cmd_fixed_param *)buf_ptr;
  3651. qdf_mem_zero(cmd, len);
  3652. WMITLV_SET_HDR(&cmd->tlv_header,
  3653. WMITLV_TAG_STRUC_wmi_ocb_get_tsf_timer_cmd_fixed_param,
  3654. WMITLV_GET_STRUCT_TLVLEN(
  3655. wmi_ocb_get_tsf_timer_cmd_fixed_param));
  3656. cmd->vdev_id = vdev_id;
  3657. /* Send the WMI command */
  3658. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3659. WMI_OCB_GET_TSF_TIMER_CMDID);
  3660. /* If there is an error, set the completion event */
  3661. if (QDF_IS_STATUS_ERROR(ret)) {
  3662. WMI_LOGE(FL("Failed to send WMI message: %d"), ret);
  3663. wmi_buf_free(buf);
  3664. }
  3665. return ret;
  3666. }
  3667. /**
  3668. * send_dcc_get_stats_cmd_tlv() - get the DCC channel stats
  3669. * @wmi_handle: pointer to the wmi handle
  3670. * @get_stats_param: pointer to the dcc stats
  3671. *
  3672. * Return: 0 on succes
  3673. */
  3674. static QDF_STATUS send_dcc_get_stats_cmd_tlv(wmi_unified_t wmi_handle,
  3675. struct ocb_dcc_get_stats_param *get_stats_param)
  3676. {
  3677. QDF_STATUS ret;
  3678. wmi_dcc_get_stats_cmd_fixed_param *cmd;
  3679. wmi_dcc_channel_stats_request *channel_stats_array;
  3680. wmi_buf_t buf;
  3681. uint8_t *buf_ptr;
  3682. uint32_t len;
  3683. uint32_t i;
  3684. /* Validate the input */
  3685. if (get_stats_param->request_array_len !=
  3686. get_stats_param->channel_count * sizeof(*channel_stats_array)) {
  3687. WMI_LOGE(FL("Invalid parameter"));
  3688. return QDF_STATUS_E_INVAL;
  3689. }
  3690. /* Allocate memory for the WMI command */
  3691. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  3692. get_stats_param->request_array_len;
  3693. buf = wmi_buf_alloc(wmi_handle, len);
  3694. if (!buf) {
  3695. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3696. return QDF_STATUS_E_NOMEM;
  3697. }
  3698. buf_ptr = wmi_buf_data(buf);
  3699. qdf_mem_zero(buf_ptr, len);
  3700. /* Populate the WMI command */
  3701. cmd = (wmi_dcc_get_stats_cmd_fixed_param *)buf_ptr;
  3702. buf_ptr += sizeof(*cmd);
  3703. WMITLV_SET_HDR(&cmd->tlv_header,
  3704. WMITLV_TAG_STRUC_wmi_dcc_get_stats_cmd_fixed_param,
  3705. WMITLV_GET_STRUCT_TLVLEN(
  3706. wmi_dcc_get_stats_cmd_fixed_param));
  3707. cmd->vdev_id = get_stats_param->vdev_id;
  3708. cmd->num_channels = get_stats_param->channel_count;
  3709. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  3710. get_stats_param->request_array_len);
  3711. buf_ptr += WMI_TLV_HDR_SIZE;
  3712. channel_stats_array = (wmi_dcc_channel_stats_request *)buf_ptr;
  3713. qdf_mem_copy(channel_stats_array, get_stats_param->request_array,
  3714. get_stats_param->request_array_len);
  3715. for (i = 0; i < cmd->num_channels; i++)
  3716. WMITLV_SET_HDR(&channel_stats_array[i].tlv_header,
  3717. WMITLV_TAG_STRUC_wmi_dcc_channel_stats_request,
  3718. WMITLV_GET_STRUCT_TLVLEN(
  3719. wmi_dcc_channel_stats_request));
  3720. /* Send the WMI command */
  3721. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3722. WMI_DCC_GET_STATS_CMDID);
  3723. if (QDF_IS_STATUS_ERROR(ret)) {
  3724. WMI_LOGE(FL("Failed to send WMI message: %d"), ret);
  3725. wmi_buf_free(buf);
  3726. }
  3727. return ret;
  3728. }
  3729. /**
  3730. * send_dcc_clear_stats_cmd_tlv() - command to clear the DCC stats
  3731. * @wmi_handle: pointer to the wmi handle
  3732. * @vdev_id: vdev id
  3733. * @dcc_stats_bitmap: dcc status bitmap
  3734. *
  3735. * Return: 0 on succes
  3736. */
  3737. static QDF_STATUS send_dcc_clear_stats_cmd_tlv(wmi_unified_t wmi_handle,
  3738. uint32_t vdev_id, uint32_t dcc_stats_bitmap)
  3739. {
  3740. QDF_STATUS ret;
  3741. wmi_dcc_clear_stats_cmd_fixed_param *cmd;
  3742. wmi_buf_t buf;
  3743. uint8_t *buf_ptr;
  3744. uint32_t len;
  3745. /* Allocate memory for the WMI command */
  3746. len = sizeof(*cmd);
  3747. buf = wmi_buf_alloc(wmi_handle, len);
  3748. if (!buf) {
  3749. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3750. return QDF_STATUS_E_NOMEM;
  3751. }
  3752. buf_ptr = wmi_buf_data(buf);
  3753. qdf_mem_zero(buf_ptr, len);
  3754. /* Populate the WMI command */
  3755. cmd = (wmi_dcc_clear_stats_cmd_fixed_param *)buf_ptr;
  3756. WMITLV_SET_HDR(&cmd->tlv_header,
  3757. WMITLV_TAG_STRUC_wmi_dcc_clear_stats_cmd_fixed_param,
  3758. WMITLV_GET_STRUCT_TLVLEN(
  3759. wmi_dcc_clear_stats_cmd_fixed_param));
  3760. cmd->vdev_id = vdev_id;
  3761. cmd->dcc_stats_bitmap = dcc_stats_bitmap;
  3762. /* Send the WMI command */
  3763. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  3764. WMI_DCC_CLEAR_STATS_CMDID);
  3765. if (QDF_IS_STATUS_ERROR(ret)) {
  3766. WMI_LOGE(FL("Failed to send the WMI command"));
  3767. wmi_buf_free(buf);
  3768. }
  3769. return ret;
  3770. }
  3771. /**
  3772. * send_dcc_update_ndl_cmd_tlv() - command to update the NDL data
  3773. * @wmi_handle: pointer to the wmi handle
  3774. * @update_ndl_param: pointer to the request parameters
  3775. *
  3776. * Return: 0 on success
  3777. */
  3778. static QDF_STATUS send_dcc_update_ndl_cmd_tlv(wmi_unified_t wmi_handle,
  3779. struct ocb_dcc_update_ndl_param *update_ndl_param)
  3780. {
  3781. QDF_STATUS qdf_status;
  3782. wmi_dcc_update_ndl_cmd_fixed_param *cmd;
  3783. wmi_dcc_ndl_chan *ndl_chan_array;
  3784. wmi_dcc_ndl_active_state_config *ndl_active_state_array;
  3785. uint32_t active_state_count;
  3786. wmi_buf_t buf;
  3787. uint8_t *buf_ptr;
  3788. uint32_t len;
  3789. uint32_t i;
  3790. /* validate the input */
  3791. if (update_ndl_param->dcc_ndl_chan_list_len !=
  3792. update_ndl_param->channel_count * sizeof(*ndl_chan_array)) {
  3793. WMI_LOGE(FL("Invalid parameter"));
  3794. return QDF_STATUS_E_INVAL;
  3795. }
  3796. active_state_count = 0;
  3797. ndl_chan_array = update_ndl_param->dcc_ndl_chan_list;
  3798. for (i = 0; i < update_ndl_param->channel_count; i++)
  3799. active_state_count +=
  3800. WMI_NDL_NUM_ACTIVE_STATE_GET(&ndl_chan_array[i]);
  3801. if (update_ndl_param->dcc_ndl_active_state_list_len !=
  3802. active_state_count * sizeof(*ndl_active_state_array)) {
  3803. WMI_LOGE(FL("Invalid parameter"));
  3804. return QDF_STATUS_E_INVAL;
  3805. }
  3806. /* Allocate memory for the WMI command */
  3807. len = sizeof(*cmd) +
  3808. WMI_TLV_HDR_SIZE + update_ndl_param->dcc_ndl_chan_list_len +
  3809. WMI_TLV_HDR_SIZE +
  3810. update_ndl_param->dcc_ndl_active_state_list_len;
  3811. buf = wmi_buf_alloc(wmi_handle, len);
  3812. if (!buf) {
  3813. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3814. return QDF_STATUS_E_NOMEM;
  3815. }
  3816. buf_ptr = wmi_buf_data(buf);
  3817. qdf_mem_zero(buf_ptr, len);
  3818. /* Populate the WMI command */
  3819. cmd = (wmi_dcc_update_ndl_cmd_fixed_param *)buf_ptr;
  3820. buf_ptr += sizeof(*cmd);
  3821. WMITLV_SET_HDR(&cmd->tlv_header,
  3822. WMITLV_TAG_STRUC_wmi_dcc_update_ndl_cmd_fixed_param,
  3823. WMITLV_GET_STRUCT_TLVLEN(
  3824. wmi_dcc_update_ndl_cmd_fixed_param));
  3825. cmd->vdev_id = update_ndl_param->vdev_id;
  3826. cmd->num_channel = update_ndl_param->channel_count;
  3827. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  3828. update_ndl_param->dcc_ndl_chan_list_len);
  3829. buf_ptr += WMI_TLV_HDR_SIZE;
  3830. ndl_chan_array = (wmi_dcc_ndl_chan *)buf_ptr;
  3831. qdf_mem_copy(ndl_chan_array, update_ndl_param->dcc_ndl_chan_list,
  3832. update_ndl_param->dcc_ndl_chan_list_len);
  3833. for (i = 0; i < cmd->num_channel; i++)
  3834. WMITLV_SET_HDR(&ndl_chan_array[i].tlv_header,
  3835. WMITLV_TAG_STRUC_wmi_dcc_ndl_chan,
  3836. WMITLV_GET_STRUCT_TLVLEN(
  3837. wmi_dcc_ndl_chan));
  3838. buf_ptr += update_ndl_param->dcc_ndl_chan_list_len;
  3839. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  3840. update_ndl_param->dcc_ndl_active_state_list_len);
  3841. buf_ptr += WMI_TLV_HDR_SIZE;
  3842. ndl_active_state_array = (wmi_dcc_ndl_active_state_config *) buf_ptr;
  3843. qdf_mem_copy(ndl_active_state_array,
  3844. update_ndl_param->dcc_ndl_active_state_list,
  3845. update_ndl_param->dcc_ndl_active_state_list_len);
  3846. for (i = 0; i < active_state_count; i++) {
  3847. WMITLV_SET_HDR(&ndl_active_state_array[i].tlv_header,
  3848. WMITLV_TAG_STRUC_wmi_dcc_ndl_active_state_config,
  3849. WMITLV_GET_STRUCT_TLVLEN(
  3850. wmi_dcc_ndl_active_state_config));
  3851. }
  3852. buf_ptr += update_ndl_param->dcc_ndl_active_state_list_len;
  3853. /* Send the WMI command */
  3854. qdf_status = wmi_unified_cmd_send(wmi_handle, buf, len,
  3855. WMI_DCC_UPDATE_NDL_CMDID);
  3856. /* If there is an error, set the completion event */
  3857. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  3858. WMI_LOGE(FL("Failed to send WMI message: %d"), qdf_status);
  3859. wmi_buf_free(buf);
  3860. }
  3861. return qdf_status;
  3862. }
  3863. /**
  3864. * send_ocb_set_config_cmd_tlv() - send the OCB config to the FW
  3865. * @wmi_handle: pointer to the wmi handle
  3866. * @config: the OCB configuration
  3867. *
  3868. * Return: 0 on success
  3869. */
  3870. static QDF_STATUS send_ocb_set_config_cmd_tlv(wmi_unified_t wmi_handle,
  3871. struct ocb_config *config)
  3872. {
  3873. QDF_STATUS ret;
  3874. wmi_ocb_set_config_cmd_fixed_param *cmd;
  3875. wmi_channel *chan;
  3876. wmi_ocb_channel *ocb_chan;
  3877. wmi_qos_parameter *qos_param;
  3878. wmi_dcc_ndl_chan *ndl_chan;
  3879. wmi_dcc_ndl_active_state_config *ndl_active_config;
  3880. wmi_ocb_schedule_element *sched_elem;
  3881. uint8_t *buf_ptr;
  3882. wmi_buf_t buf;
  3883. int32_t len;
  3884. int32_t i, j, active_state_count;
  3885. /*
  3886. * Validate the dcc_ndl_chan_list_len and count the number of active
  3887. * states. Validate dcc_ndl_active_state_list_len.
  3888. */
  3889. active_state_count = 0;
  3890. if (config->dcc_ndl_chan_list_len) {
  3891. if (!config->dcc_ndl_chan_list ||
  3892. config->dcc_ndl_chan_list_len !=
  3893. config->channel_count * sizeof(wmi_dcc_ndl_chan)) {
  3894. WMI_LOGE(FL("NDL channel is invalid. List len: %d"),
  3895. config->dcc_ndl_chan_list_len);
  3896. return QDF_STATUS_E_INVAL;
  3897. }
  3898. for (i = 0, ndl_chan = config->dcc_ndl_chan_list;
  3899. i < config->channel_count; ++i, ++ndl_chan)
  3900. active_state_count +=
  3901. WMI_NDL_NUM_ACTIVE_STATE_GET(ndl_chan);
  3902. if (active_state_count) {
  3903. if (!config->dcc_ndl_active_state_list ||
  3904. config->dcc_ndl_active_state_list_len !=
  3905. active_state_count *
  3906. sizeof(wmi_dcc_ndl_active_state_config)) {
  3907. WMI_LOGE(FL("NDL active state is invalid."));
  3908. return QDF_STATUS_E_INVAL;
  3909. }
  3910. }
  3911. }
  3912. len = sizeof(*cmd) +
  3913. WMI_TLV_HDR_SIZE + config->channel_count *
  3914. sizeof(wmi_channel) +
  3915. WMI_TLV_HDR_SIZE + config->channel_count *
  3916. sizeof(wmi_ocb_channel) +
  3917. WMI_TLV_HDR_SIZE + config->channel_count *
  3918. sizeof(wmi_qos_parameter) * WMI_MAX_NUM_AC +
  3919. WMI_TLV_HDR_SIZE + config->dcc_ndl_chan_list_len +
  3920. WMI_TLV_HDR_SIZE + active_state_count *
  3921. sizeof(wmi_dcc_ndl_active_state_config) +
  3922. WMI_TLV_HDR_SIZE + config->schedule_size *
  3923. sizeof(wmi_ocb_schedule_element);
  3924. buf = wmi_buf_alloc(wmi_handle, len);
  3925. if (!buf) {
  3926. WMI_LOGE(FL("wmi_buf_alloc failed"));
  3927. return QDF_STATUS_E_NOMEM;
  3928. }
  3929. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  3930. cmd = (wmi_ocb_set_config_cmd_fixed_param *)buf_ptr;
  3931. WMITLV_SET_HDR(&cmd->tlv_header,
  3932. WMITLV_TAG_STRUC_wmi_ocb_set_config_cmd_fixed_param,
  3933. WMITLV_GET_STRUCT_TLVLEN(wmi_ocb_set_config_cmd_fixed_param));
  3934. cmd->vdev_id = config->vdev_id;
  3935. cmd->channel_count = config->channel_count;
  3936. cmd->schedule_size = config->schedule_size;
  3937. cmd->flags = config->flags;
  3938. buf_ptr += sizeof(*cmd);
  3939. /* Add the wmi_channel info */
  3940. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  3941. config->channel_count*sizeof(wmi_channel));
  3942. buf_ptr += WMI_TLV_HDR_SIZE;
  3943. for (i = 0; i < config->channel_count; i++) {
  3944. chan = (wmi_channel *)buf_ptr;
  3945. WMITLV_SET_HDR(&chan->tlv_header,
  3946. WMITLV_TAG_STRUC_wmi_channel,
  3947. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  3948. chan->mhz = config->channels[i].chan_freq;
  3949. chan->band_center_freq1 = config->channels[i].chan_freq;
  3950. chan->band_center_freq2 = 0;
  3951. chan->info = 0;
  3952. WMI_SET_CHANNEL_MODE(chan, config->channels[i].ch_mode);
  3953. WMI_SET_CHANNEL_MAX_POWER(chan, config->channels[i].max_pwr);
  3954. WMI_SET_CHANNEL_MIN_POWER(chan, config->channels[i].min_pwr);
  3955. WMI_SET_CHANNEL_MAX_TX_POWER(chan, config->channels[i].max_pwr);
  3956. WMI_SET_CHANNEL_REG_POWER(chan, config->channels[i].reg_pwr);
  3957. WMI_SET_CHANNEL_ANTENNA_MAX(chan,
  3958. config->channels[i].antenna_max);
  3959. if (config->channels[i].bandwidth < 10)
  3960. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_QUARTER_RATE);
  3961. else if (config->channels[i].bandwidth < 20)
  3962. WMI_SET_CHANNEL_FLAG(chan, WMI_CHAN_FLAG_HALF_RATE);
  3963. buf_ptr += sizeof(*chan);
  3964. }
  3965. /* Add the wmi_ocb_channel info */
  3966. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  3967. config->channel_count*sizeof(wmi_ocb_channel));
  3968. buf_ptr += WMI_TLV_HDR_SIZE;
  3969. for (i = 0; i < config->channel_count; i++) {
  3970. ocb_chan = (wmi_ocb_channel *)buf_ptr;
  3971. WMITLV_SET_HDR(&ocb_chan->tlv_header,
  3972. WMITLV_TAG_STRUC_wmi_ocb_channel,
  3973. WMITLV_GET_STRUCT_TLVLEN(wmi_ocb_channel));
  3974. ocb_chan->bandwidth = config->channels[i].bandwidth;
  3975. WMI_CHAR_ARRAY_TO_MAC_ADDR(
  3976. config->channels[i].mac_address.bytes,
  3977. &ocb_chan->mac_address);
  3978. buf_ptr += sizeof(*ocb_chan);
  3979. }
  3980. /* Add the wmi_qos_parameter info */
  3981. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  3982. config->channel_count * sizeof(wmi_qos_parameter)*WMI_MAX_NUM_AC);
  3983. buf_ptr += WMI_TLV_HDR_SIZE;
  3984. /* WMI_MAX_NUM_AC parameters for each channel */
  3985. for (i = 0; i < config->channel_count; i++) {
  3986. for (j = 0; j < WMI_MAX_NUM_AC; j++) {
  3987. qos_param = (wmi_qos_parameter *)buf_ptr;
  3988. WMITLV_SET_HDR(&qos_param->tlv_header,
  3989. WMITLV_TAG_STRUC_wmi_qos_parameter,
  3990. WMITLV_GET_STRUCT_TLVLEN(wmi_qos_parameter));
  3991. qos_param->aifsn =
  3992. config->channels[i].qos_params[j].aifsn;
  3993. qos_param->cwmin =
  3994. config->channels[i].qos_params[j].cwmin;
  3995. qos_param->cwmax =
  3996. config->channels[i].qos_params[j].cwmax;
  3997. buf_ptr += sizeof(*qos_param);
  3998. }
  3999. }
  4000. /* Add the wmi_dcc_ndl_chan (per channel) */
  4001. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  4002. config->dcc_ndl_chan_list_len);
  4003. buf_ptr += WMI_TLV_HDR_SIZE;
  4004. if (config->dcc_ndl_chan_list_len) {
  4005. ndl_chan = (wmi_dcc_ndl_chan *)buf_ptr;
  4006. qdf_mem_copy(ndl_chan, config->dcc_ndl_chan_list,
  4007. config->dcc_ndl_chan_list_len);
  4008. for (i = 0; i < config->channel_count; i++)
  4009. WMITLV_SET_HDR(&(ndl_chan[i].tlv_header),
  4010. WMITLV_TAG_STRUC_wmi_dcc_ndl_chan,
  4011. WMITLV_GET_STRUCT_TLVLEN(wmi_dcc_ndl_chan));
  4012. buf_ptr += config->dcc_ndl_chan_list_len;
  4013. }
  4014. /* Add the wmi_dcc_ndl_active_state_config */
  4015. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, active_state_count *
  4016. sizeof(wmi_dcc_ndl_active_state_config));
  4017. buf_ptr += WMI_TLV_HDR_SIZE;
  4018. if (active_state_count) {
  4019. ndl_active_config = (wmi_dcc_ndl_active_state_config *)buf_ptr;
  4020. qdf_mem_copy(ndl_active_config,
  4021. config->dcc_ndl_active_state_list,
  4022. active_state_count * sizeof(*ndl_active_config));
  4023. for (i = 0; i < active_state_count; ++i)
  4024. WMITLV_SET_HDR(&(ndl_active_config[i].tlv_header),
  4025. WMITLV_TAG_STRUC_wmi_dcc_ndl_active_state_config,
  4026. WMITLV_GET_STRUCT_TLVLEN(
  4027. wmi_dcc_ndl_active_state_config));
  4028. buf_ptr += active_state_count *
  4029. sizeof(*ndl_active_config);
  4030. }
  4031. /* Add the wmi_ocb_schedule_element info */
  4032. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  4033. config->schedule_size * sizeof(wmi_ocb_schedule_element));
  4034. buf_ptr += WMI_TLV_HDR_SIZE;
  4035. for (i = 0; i < config->schedule_size; i++) {
  4036. sched_elem = (wmi_ocb_schedule_element *)buf_ptr;
  4037. WMITLV_SET_HDR(&sched_elem->tlv_header,
  4038. WMITLV_TAG_STRUC_wmi_ocb_schedule_element,
  4039. WMITLV_GET_STRUCT_TLVLEN(wmi_ocb_schedule_element));
  4040. sched_elem->channel_freq = config->schedule[i].chan_freq;
  4041. sched_elem->total_duration = config->schedule[i].total_duration;
  4042. sched_elem->guard_interval = config->schedule[i].guard_interval;
  4043. buf_ptr += sizeof(*sched_elem);
  4044. }
  4045. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4046. WMI_OCB_SET_CONFIG_CMDID);
  4047. if (QDF_IS_STATUS_ERROR(ret)) {
  4048. WMI_LOGE("Failed to set OCB config");
  4049. wmi_buf_free(buf);
  4050. }
  4051. return ret;
  4052. }
  4053. /**
  4054. * extract_ocb_channel_config_resp_tlv() - extract ocb channel config resp
  4055. * @wmi_handle: wmi handle
  4056. * @evt_buf: wmi event buffer
  4057. * @status: status buffer
  4058. *
  4059. * Return: QDF_STATUS_SUCCESS on success
  4060. */
  4061. static QDF_STATUS extract_ocb_channel_config_resp_tlv(wmi_unified_t wmi_handle,
  4062. void *evt_buf,
  4063. uint32_t *status)
  4064. {
  4065. WMI_OCB_SET_CONFIG_RESP_EVENTID_param_tlvs *param_tlvs;
  4066. wmi_ocb_set_config_resp_event_fixed_param *fix_param;
  4067. param_tlvs = evt_buf;
  4068. fix_param = param_tlvs->fixed_param;
  4069. *status = fix_param->status;
  4070. return QDF_STATUS_SUCCESS;
  4071. }
  4072. /**
  4073. * extract_ocb_tsf_timer_tlv() - extract TSF timer from event buffer
  4074. * @wmi_handle: wmi handle
  4075. * @evt_buf: wmi event buffer
  4076. * @resp: response buffer
  4077. *
  4078. * Return: QDF_STATUS_SUCCESS on success
  4079. */
  4080. static QDF_STATUS extract_ocb_tsf_timer_tlv(wmi_unified_t wmi_handle,
  4081. void *evt_buf, struct ocb_get_tsf_timer_response *resp)
  4082. {
  4083. WMI_OCB_GET_TSF_TIMER_RESP_EVENTID_param_tlvs *param_tlvs;
  4084. wmi_ocb_get_tsf_timer_resp_event_fixed_param *fix_param;
  4085. param_tlvs = evt_buf;
  4086. fix_param = param_tlvs->fixed_param;
  4087. resp->vdev_id = fix_param->vdev_id;
  4088. resp->timer_high = fix_param->tsf_timer_high;
  4089. resp->timer_low = fix_param->tsf_timer_low;
  4090. return QDF_STATUS_SUCCESS;
  4091. }
  4092. /**
  4093. * extract_ocb_ndl_resp_tlv() - extract TSF timer from event buffer
  4094. * @wmi_handle: wmi handle
  4095. * @evt_buf: wmi event buffer
  4096. * @resp: response buffer
  4097. *
  4098. * Return: QDF_STATUS_SUCCESS on success
  4099. */
  4100. static QDF_STATUS extract_ocb_ndl_resp_tlv(wmi_unified_t wmi_handle,
  4101. void *evt_buf, struct ocb_dcc_update_ndl_response *resp)
  4102. {
  4103. WMI_DCC_UPDATE_NDL_RESP_EVENTID_param_tlvs *param_tlvs;
  4104. wmi_dcc_update_ndl_resp_event_fixed_param *fix_param;
  4105. param_tlvs = evt_buf;
  4106. fix_param = param_tlvs->fixed_param;
  4107. resp->vdev_id = fix_param->vdev_id;
  4108. resp->status = fix_param->status;
  4109. return QDF_STATUS_SUCCESS;
  4110. }
  4111. /**
  4112. * extract_ocb_dcc_stats_tlv() - extract DCC stats from event buffer
  4113. * @wmi_handle: wmi handle
  4114. * @evt_buf: wmi event buffer
  4115. * @resp: response buffer
  4116. *
  4117. * Since length of stats is variable, buffer for DCC stats will be allocated
  4118. * in this function. The caller must free the buffer.
  4119. *
  4120. * Return: QDF_STATUS_SUCCESS on success
  4121. */
  4122. static QDF_STATUS extract_ocb_dcc_stats_tlv(wmi_unified_t wmi_handle,
  4123. void *evt_buf, struct ocb_dcc_get_stats_response **resp)
  4124. {
  4125. struct ocb_dcc_get_stats_response *response;
  4126. WMI_DCC_GET_STATS_RESP_EVENTID_param_tlvs *param_tlvs;
  4127. wmi_dcc_get_stats_resp_event_fixed_param *fix_param;
  4128. param_tlvs = (WMI_DCC_GET_STATS_RESP_EVENTID_param_tlvs *)evt_buf;
  4129. fix_param = param_tlvs->fixed_param;
  4130. /* Allocate and populate the response */
  4131. if (fix_param->num_channels > ((WMI_SVC_MSG_MAX_SIZE -
  4132. sizeof(*fix_param)) / sizeof(wmi_dcc_ndl_stats_per_channel))) {
  4133. WMI_LOGE("%s: too many channels:%d", __func__,
  4134. fix_param->num_channels);
  4135. QDF_ASSERT(0);
  4136. *resp = NULL;
  4137. return QDF_STATUS_E_INVAL;
  4138. }
  4139. response = qdf_mem_malloc(sizeof(*response) + fix_param->num_channels *
  4140. sizeof(wmi_dcc_ndl_stats_per_channel));
  4141. *resp = response;
  4142. if (!response)
  4143. return QDF_STATUS_E_NOMEM;
  4144. response->vdev_id = fix_param->vdev_id;
  4145. response->num_channels = fix_param->num_channels;
  4146. response->channel_stats_array_len =
  4147. fix_param->num_channels *
  4148. sizeof(wmi_dcc_ndl_stats_per_channel);
  4149. response->channel_stats_array = ((uint8_t *)response) +
  4150. sizeof(*response);
  4151. qdf_mem_copy(response->channel_stats_array,
  4152. param_tlvs->stats_per_channel_list,
  4153. response->channel_stats_array_len);
  4154. return QDF_STATUS_SUCCESS;
  4155. }
  4156. #endif
  4157. /**
  4158. * send_set_enable_disable_mcc_adaptive_scheduler_cmd_tlv() -enable/disable mcc scheduler
  4159. * @wmi_handle: wmi handle
  4160. * @mcc_adaptive_scheduler: enable/disable
  4161. *
  4162. * This function enable/disable mcc adaptive scheduler in fw.
  4163. *
  4164. * Return: QDF_STATUS_SUCCESS for success or error code
  4165. */
  4166. static QDF_STATUS send_set_enable_disable_mcc_adaptive_scheduler_cmd_tlv(
  4167. wmi_unified_t wmi_handle, uint32_t mcc_adaptive_scheduler,
  4168. uint32_t pdev_id)
  4169. {
  4170. QDF_STATUS ret;
  4171. wmi_buf_t buf = 0;
  4172. wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param *cmd = NULL;
  4173. uint16_t len =
  4174. sizeof(wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param);
  4175. buf = wmi_buf_alloc(wmi_handle, len);
  4176. if (!buf) {
  4177. WMI_LOGP("%s : wmi_buf_alloc failed", __func__);
  4178. return QDF_STATUS_E_NOMEM;
  4179. }
  4180. cmd = (wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param *)
  4181. wmi_buf_data(buf);
  4182. WMITLV_SET_HDR(&cmd->tlv_header,
  4183. WMITLV_TAG_STRUC_wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param,
  4184. WMITLV_GET_STRUCT_TLVLEN
  4185. (wmi_resmgr_adaptive_ocs_enable_disable_cmd_fixed_param));
  4186. cmd->enable = mcc_adaptive_scheduler;
  4187. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(pdev_id);
  4188. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4189. WMI_RESMGR_ADAPTIVE_OCS_ENABLE_DISABLE_CMDID);
  4190. if (QDF_IS_STATUS_ERROR(ret)) {
  4191. WMI_LOGP("%s: Failed to send enable/disable MCC"
  4192. " adaptive scheduler command", __func__);
  4193. wmi_buf_free(buf);
  4194. }
  4195. return ret;
  4196. }
  4197. /**
  4198. * send_set_mcc_channel_time_latency_cmd_tlv() -set MCC channel time latency
  4199. * @wmi: wmi handle
  4200. * @mcc_channel: mcc channel
  4201. * @mcc_channel_time_latency: MCC channel time latency.
  4202. *
  4203. * Currently used to set time latency for an MCC vdev/adapter using operating
  4204. * channel of it and channel number. The info is provided run time using
  4205. * iwpriv command: iwpriv <wlan0 | p2p0> setMccLatency <latency in ms>.
  4206. *
  4207. * Return: CDF status
  4208. */
  4209. static QDF_STATUS send_set_mcc_channel_time_latency_cmd_tlv(wmi_unified_t wmi_handle,
  4210. uint32_t mcc_channel_freq, uint32_t mcc_channel_time_latency)
  4211. {
  4212. QDF_STATUS ret;
  4213. wmi_buf_t buf = 0;
  4214. wmi_resmgr_set_chan_latency_cmd_fixed_param *cmdTL = NULL;
  4215. uint16_t len = 0;
  4216. uint8_t *buf_ptr = NULL;
  4217. wmi_resmgr_chan_latency chan_latency;
  4218. /* Note: we only support MCC time latency for a single channel */
  4219. uint32_t num_channels = 1;
  4220. uint32_t chan1_freq = mcc_channel_freq;
  4221. uint32_t latency_chan1 = mcc_channel_time_latency;
  4222. /* If 0ms latency is provided, then FW will set to a default.
  4223. * Otherwise, latency must be at least 30ms.
  4224. */
  4225. if ((latency_chan1 > 0) &&
  4226. (latency_chan1 < WMI_MCC_MIN_NON_ZERO_CHANNEL_LATENCY)) {
  4227. WMI_LOGE("%s: Invalid time latency for Channel #1 = %dms "
  4228. "Minimum is 30ms (or 0 to use default value by "
  4229. "firmware)", __func__, latency_chan1);
  4230. return QDF_STATUS_E_INVAL;
  4231. }
  4232. /* Set WMI CMD for channel time latency here */
  4233. len = sizeof(wmi_resmgr_set_chan_latency_cmd_fixed_param) +
  4234. WMI_TLV_HDR_SIZE + /*Place holder for chan_time_latency array */
  4235. num_channels * sizeof(wmi_resmgr_chan_latency);
  4236. buf = wmi_buf_alloc(wmi_handle, len);
  4237. if (!buf) {
  4238. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  4239. return QDF_STATUS_E_NOMEM;
  4240. }
  4241. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  4242. cmdTL = (wmi_resmgr_set_chan_latency_cmd_fixed_param *)
  4243. wmi_buf_data(buf);
  4244. WMITLV_SET_HDR(&cmdTL->tlv_header,
  4245. WMITLV_TAG_STRUC_wmi_resmgr_set_chan_latency_cmd_fixed_param,
  4246. WMITLV_GET_STRUCT_TLVLEN
  4247. (wmi_resmgr_set_chan_latency_cmd_fixed_param));
  4248. cmdTL->num_chans = num_channels;
  4249. /* Update channel time latency information for home channel(s) */
  4250. buf_ptr += sizeof(*cmdTL);
  4251. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  4252. num_channels * sizeof(wmi_resmgr_chan_latency));
  4253. buf_ptr += WMI_TLV_HDR_SIZE;
  4254. chan_latency.chan_mhz = chan1_freq;
  4255. chan_latency.latency = latency_chan1;
  4256. qdf_mem_copy(buf_ptr, &chan_latency, sizeof(chan_latency));
  4257. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4258. WMI_RESMGR_SET_CHAN_LATENCY_CMDID);
  4259. if (QDF_IS_STATUS_ERROR(ret)) {
  4260. WMI_LOGE("%s: Failed to send MCC Channel Time Latency command",
  4261. __func__);
  4262. wmi_buf_free(buf);
  4263. QDF_ASSERT(0);
  4264. }
  4265. return ret;
  4266. }
  4267. /**
  4268. * send_set_mcc_channel_time_quota_cmd_tlv() -set MCC channel time quota
  4269. * @wmi: wmi handle
  4270. * @adapter_1_chan_number: adapter 1 channel number
  4271. * @adapter_1_quota: adapter 1 quota
  4272. * @adapter_2_chan_number: adapter 2 channel number
  4273. *
  4274. * Return: CDF status
  4275. */
  4276. static QDF_STATUS send_set_mcc_channel_time_quota_cmd_tlv(wmi_unified_t wmi_handle,
  4277. uint32_t adapter_1_chan_freq,
  4278. uint32_t adapter_1_quota, uint32_t adapter_2_chan_freq)
  4279. {
  4280. QDF_STATUS ret;
  4281. wmi_buf_t buf = 0;
  4282. uint16_t len = 0;
  4283. uint8_t *buf_ptr = NULL;
  4284. wmi_resmgr_set_chan_time_quota_cmd_fixed_param *cmdTQ = NULL;
  4285. wmi_resmgr_chan_time_quota chan_quota;
  4286. uint32_t quota_chan1 = adapter_1_quota;
  4287. /* Knowing quota of 1st chan., derive quota for 2nd chan. */
  4288. uint32_t quota_chan2 = 100 - quota_chan1;
  4289. /* Note: setting time quota for MCC requires info for 2 channels */
  4290. uint32_t num_channels = 2;
  4291. uint32_t chan1_freq = adapter_1_chan_freq;
  4292. uint32_t chan2_freq = adapter_2_chan_freq;
  4293. WMI_LOGD("%s: freq1:%dMHz, Quota1:%dms, "
  4294. "freq2:%dMHz, Quota2:%dms", __func__,
  4295. chan1_freq, quota_chan1, chan2_freq,
  4296. quota_chan2);
  4297. /*
  4298. * Perform sanity check on time quota values provided.
  4299. */
  4300. if (quota_chan1 < WMI_MCC_MIN_CHANNEL_QUOTA ||
  4301. quota_chan1 > WMI_MCC_MAX_CHANNEL_QUOTA) {
  4302. WMI_LOGE("%s: Invalid time quota for Channel #1=%dms. Minimum "
  4303. "is 20ms & maximum is 80ms", __func__, quota_chan1);
  4304. return QDF_STATUS_E_INVAL;
  4305. }
  4306. /* Set WMI CMD for channel time quota here */
  4307. len = sizeof(wmi_resmgr_set_chan_time_quota_cmd_fixed_param) +
  4308. WMI_TLV_HDR_SIZE + /* Place holder for chan_time_quota array */
  4309. num_channels * sizeof(wmi_resmgr_chan_time_quota);
  4310. buf = wmi_buf_alloc(wmi_handle, len);
  4311. if (!buf) {
  4312. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  4313. QDF_ASSERT(0);
  4314. return QDF_STATUS_E_NOMEM;
  4315. }
  4316. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  4317. cmdTQ = (wmi_resmgr_set_chan_time_quota_cmd_fixed_param *)
  4318. wmi_buf_data(buf);
  4319. WMITLV_SET_HDR(&cmdTQ->tlv_header,
  4320. WMITLV_TAG_STRUC_wmi_resmgr_set_chan_time_quota_cmd_fixed_param,
  4321. WMITLV_GET_STRUCT_TLVLEN
  4322. (wmi_resmgr_set_chan_time_quota_cmd_fixed_param));
  4323. cmdTQ->num_chans = num_channels;
  4324. /* Update channel time quota information for home channel(s) */
  4325. buf_ptr += sizeof(*cmdTQ);
  4326. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  4327. num_channels * sizeof(wmi_resmgr_chan_time_quota));
  4328. buf_ptr += WMI_TLV_HDR_SIZE;
  4329. chan_quota.chan_mhz = chan1_freq;
  4330. chan_quota.channel_time_quota = quota_chan1;
  4331. qdf_mem_copy(buf_ptr, &chan_quota, sizeof(chan_quota));
  4332. /* Construct channel and quota record for the 2nd MCC mode. */
  4333. buf_ptr += sizeof(chan_quota);
  4334. chan_quota.chan_mhz = chan2_freq;
  4335. chan_quota.channel_time_quota = quota_chan2;
  4336. qdf_mem_copy(buf_ptr, &chan_quota, sizeof(chan_quota));
  4337. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4338. WMI_RESMGR_SET_CHAN_TIME_QUOTA_CMDID);
  4339. if (QDF_IS_STATUS_ERROR(ret)) {
  4340. WMI_LOGE("Failed to send MCC Channel Time Quota command");
  4341. wmi_buf_free(buf);
  4342. QDF_ASSERT(0);
  4343. }
  4344. return ret;
  4345. }
  4346. /**
  4347. * send_set_thermal_mgmt_cmd_tlv() - set thermal mgmt command to fw
  4348. * @wmi_handle: Pointer to wmi handle
  4349. * @thermal_info: Thermal command information
  4350. *
  4351. * This function sends the thermal management command
  4352. * to the firmware
  4353. *
  4354. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  4355. */
  4356. static QDF_STATUS send_set_thermal_mgmt_cmd_tlv(wmi_unified_t wmi_handle,
  4357. struct thermal_cmd_params *thermal_info)
  4358. {
  4359. wmi_thermal_mgmt_cmd_fixed_param *cmd = NULL;
  4360. wmi_buf_t buf = NULL;
  4361. QDF_STATUS status;
  4362. uint32_t len = 0;
  4363. len = sizeof(*cmd);
  4364. buf = wmi_buf_alloc(wmi_handle, len);
  4365. if (!buf) {
  4366. WMI_LOGE("Failed to allocate buffer to send set key cmd");
  4367. return QDF_STATUS_E_FAILURE;
  4368. }
  4369. cmd = (wmi_thermal_mgmt_cmd_fixed_param *) wmi_buf_data(buf);
  4370. WMITLV_SET_HDR(&cmd->tlv_header,
  4371. WMITLV_TAG_STRUC_wmi_thermal_mgmt_cmd_fixed_param,
  4372. WMITLV_GET_STRUCT_TLVLEN
  4373. (wmi_thermal_mgmt_cmd_fixed_param));
  4374. cmd->lower_thresh_degreeC = thermal_info->min_temp;
  4375. cmd->upper_thresh_degreeC = thermal_info->max_temp;
  4376. cmd->enable = thermal_info->thermal_enable;
  4377. WMI_LOGE("TM Sending thermal mgmt cmd: low temp %d, upper temp %d, enabled %d",
  4378. cmd->lower_thresh_degreeC, cmd->upper_thresh_degreeC, cmd->enable);
  4379. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  4380. WMI_THERMAL_MGMT_CMDID);
  4381. if (QDF_IS_STATUS_ERROR(status)) {
  4382. wmi_buf_free(buf);
  4383. WMI_LOGE("%s:Failed to send thermal mgmt command", __func__);
  4384. }
  4385. return status;
  4386. }
  4387. /**
  4388. * send_lro_config_cmd_tlv() - process the LRO config command
  4389. * @wmi_handle: Pointer to WMI handle
  4390. * @wmi_lro_cmd: Pointer to LRO configuration parameters
  4391. *
  4392. * This function sends down the LRO configuration parameters to
  4393. * the firmware to enable LRO, sets the TCP flags and sets the
  4394. * seed values for the toeplitz hash generation
  4395. *
  4396. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  4397. */
  4398. static QDF_STATUS send_lro_config_cmd_tlv(wmi_unified_t wmi_handle,
  4399. struct wmi_lro_config_cmd_t *wmi_lro_cmd)
  4400. {
  4401. wmi_lro_info_cmd_fixed_param *cmd;
  4402. wmi_buf_t buf;
  4403. QDF_STATUS status;
  4404. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  4405. if (!buf) {
  4406. WMI_LOGE("Failed to allocate buffer to send set key cmd");
  4407. return QDF_STATUS_E_FAILURE;
  4408. }
  4409. cmd = (wmi_lro_info_cmd_fixed_param *) wmi_buf_data(buf);
  4410. WMITLV_SET_HDR(&cmd->tlv_header,
  4411. WMITLV_TAG_STRUC_wmi_lro_info_cmd_fixed_param,
  4412. WMITLV_GET_STRUCT_TLVLEN(wmi_lro_info_cmd_fixed_param));
  4413. cmd->lro_enable = wmi_lro_cmd->lro_enable;
  4414. WMI_LRO_INFO_TCP_FLAG_VALS_SET(cmd->tcp_flag_u32,
  4415. wmi_lro_cmd->tcp_flag);
  4416. WMI_LRO_INFO_TCP_FLAGS_MASK_SET(cmd->tcp_flag_u32,
  4417. wmi_lro_cmd->tcp_flag_mask);
  4418. cmd->toeplitz_hash_ipv4_0_3 =
  4419. wmi_lro_cmd->toeplitz_hash_ipv4[0];
  4420. cmd->toeplitz_hash_ipv4_4_7 =
  4421. wmi_lro_cmd->toeplitz_hash_ipv4[1];
  4422. cmd->toeplitz_hash_ipv4_8_11 =
  4423. wmi_lro_cmd->toeplitz_hash_ipv4[2];
  4424. cmd->toeplitz_hash_ipv4_12_15 =
  4425. wmi_lro_cmd->toeplitz_hash_ipv4[3];
  4426. cmd->toeplitz_hash_ipv4_16 =
  4427. wmi_lro_cmd->toeplitz_hash_ipv4[4];
  4428. cmd->toeplitz_hash_ipv6_0_3 =
  4429. wmi_lro_cmd->toeplitz_hash_ipv6[0];
  4430. cmd->toeplitz_hash_ipv6_4_7 =
  4431. wmi_lro_cmd->toeplitz_hash_ipv6[1];
  4432. cmd->toeplitz_hash_ipv6_8_11 =
  4433. wmi_lro_cmd->toeplitz_hash_ipv6[2];
  4434. cmd->toeplitz_hash_ipv6_12_15 =
  4435. wmi_lro_cmd->toeplitz_hash_ipv6[3];
  4436. cmd->toeplitz_hash_ipv6_16_19 =
  4437. wmi_lro_cmd->toeplitz_hash_ipv6[4];
  4438. cmd->toeplitz_hash_ipv6_20_23 =
  4439. wmi_lro_cmd->toeplitz_hash_ipv6[5];
  4440. cmd->toeplitz_hash_ipv6_24_27 =
  4441. wmi_lro_cmd->toeplitz_hash_ipv6[6];
  4442. cmd->toeplitz_hash_ipv6_28_31 =
  4443. wmi_lro_cmd->toeplitz_hash_ipv6[7];
  4444. cmd->toeplitz_hash_ipv6_32_35 =
  4445. wmi_lro_cmd->toeplitz_hash_ipv6[8];
  4446. cmd->toeplitz_hash_ipv6_36_39 =
  4447. wmi_lro_cmd->toeplitz_hash_ipv6[9];
  4448. cmd->toeplitz_hash_ipv6_40 =
  4449. wmi_lro_cmd->toeplitz_hash_ipv6[10];
  4450. WMI_LOGD("WMI_LRO_CONFIG: lro_enable %d, tcp_flag 0x%x",
  4451. cmd->lro_enable, cmd->tcp_flag_u32);
  4452. status = wmi_unified_cmd_send(wmi_handle, buf,
  4453. sizeof(*cmd), WMI_LRO_CONFIG_CMDID);
  4454. if (QDF_IS_STATUS_ERROR(status)) {
  4455. wmi_buf_free(buf);
  4456. WMI_LOGE("%s:Failed to send WMI_LRO_CONFIG_CMDID", __func__);
  4457. }
  4458. return status;
  4459. }
  4460. /**
  4461. * send_peer_rate_report_cmd_tlv() - process the peer rate report command
  4462. * @wmi_handle: Pointer to wmi handle
  4463. * @rate_report_params: Pointer to peer rate report parameters
  4464. *
  4465. *
  4466. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  4467. */
  4468. static QDF_STATUS send_peer_rate_report_cmd_tlv(wmi_unified_t wmi_handle,
  4469. struct wmi_peer_rate_report_params *rate_report_params)
  4470. {
  4471. wmi_peer_set_rate_report_condition_fixed_param *cmd = NULL;
  4472. wmi_buf_t buf = NULL;
  4473. QDF_STATUS status = 0;
  4474. uint32_t len = 0;
  4475. uint32_t i, j;
  4476. len = sizeof(*cmd);
  4477. buf = wmi_buf_alloc(wmi_handle, len);
  4478. if (!buf) {
  4479. WMI_LOGE("Failed to alloc buf to peer_set_condition cmd\n");
  4480. return QDF_STATUS_E_FAILURE;
  4481. }
  4482. cmd = (wmi_peer_set_rate_report_condition_fixed_param *)
  4483. wmi_buf_data(buf);
  4484. WMITLV_SET_HDR(
  4485. &cmd->tlv_header,
  4486. WMITLV_TAG_STRUC_wmi_peer_set_rate_report_condition_fixed_param,
  4487. WMITLV_GET_STRUCT_TLVLEN(
  4488. wmi_peer_set_rate_report_condition_fixed_param));
  4489. cmd->enable_rate_report = rate_report_params->rate_report_enable;
  4490. cmd->report_backoff_time = rate_report_params->backoff_time;
  4491. cmd->report_timer_period = rate_report_params->timer_period;
  4492. for (i = 0; i < PEER_RATE_REPORT_COND_MAX_NUM; i++) {
  4493. cmd->cond_per_phy[i].val_cond_flags =
  4494. rate_report_params->report_per_phy[i].cond_flags;
  4495. cmd->cond_per_phy[i].rate_delta.min_delta =
  4496. rate_report_params->report_per_phy[i].delta.delta_min;
  4497. cmd->cond_per_phy[i].rate_delta.percentage =
  4498. rate_report_params->report_per_phy[i].delta.percent;
  4499. for (j = 0; j < MAX_NUM_OF_RATE_THRESH; j++) {
  4500. cmd->cond_per_phy[i].rate_threshold[j] =
  4501. rate_report_params->report_per_phy[i].
  4502. report_rate_threshold[j];
  4503. }
  4504. }
  4505. WMI_LOGE("%s enable %d backoff_time %d period %d\n", __func__,
  4506. cmd->enable_rate_report,
  4507. cmd->report_backoff_time, cmd->report_timer_period);
  4508. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  4509. WMI_PEER_SET_RATE_REPORT_CONDITION_CMDID);
  4510. if (QDF_IS_STATUS_ERROR(status)) {
  4511. wmi_buf_free(buf);
  4512. WMI_LOGE("%s:Failed to send peer_set_report_cond command",
  4513. __func__);
  4514. }
  4515. return status;
  4516. }
  4517. /**
  4518. * send_bcn_buf_ll_cmd_tlv() - prepare and send beacon buffer to fw for LL
  4519. * @wmi_handle: wmi handle
  4520. * @param: bcn ll cmd parameter
  4521. *
  4522. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  4523. */
  4524. static QDF_STATUS send_bcn_buf_ll_cmd_tlv(wmi_unified_t wmi_handle,
  4525. wmi_bcn_send_from_host_cmd_fixed_param *param)
  4526. {
  4527. wmi_bcn_send_from_host_cmd_fixed_param *cmd;
  4528. wmi_buf_t wmi_buf;
  4529. QDF_STATUS ret;
  4530. wmi_buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  4531. if (!wmi_buf) {
  4532. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  4533. return QDF_STATUS_E_FAILURE;
  4534. }
  4535. cmd = (wmi_bcn_send_from_host_cmd_fixed_param *) wmi_buf_data(wmi_buf);
  4536. WMITLV_SET_HDR(&cmd->tlv_header,
  4537. WMITLV_TAG_STRUC_wmi_bcn_send_from_host_cmd_fixed_param,
  4538. WMITLV_GET_STRUCT_TLVLEN
  4539. (wmi_bcn_send_from_host_cmd_fixed_param));
  4540. cmd->vdev_id = param->vdev_id;
  4541. cmd->data_len = param->data_len;
  4542. cmd->frame_ctrl = param->frame_ctrl;
  4543. cmd->frag_ptr = param->frag_ptr;
  4544. cmd->dtim_flag = param->dtim_flag;
  4545. ret = wmi_unified_cmd_send(wmi_handle, wmi_buf, sizeof(*cmd),
  4546. WMI_PDEV_SEND_BCN_CMDID);
  4547. if (QDF_IS_STATUS_ERROR(ret)) {
  4548. WMI_LOGE("Failed to send WMI_PDEV_SEND_BCN_CMDID command");
  4549. wmi_buf_free(wmi_buf);
  4550. }
  4551. return ret;
  4552. }
  4553. /**
  4554. * send_set_sta_sa_query_param_cmd_tlv() - set sta sa query parameters
  4555. * @wmi_handle: wmi handle
  4556. * @vdev_id: vdev id
  4557. * @max_retries: max retries
  4558. * @retry_interval: retry interval
  4559. * This function sets sta query related parameters in fw.
  4560. *
  4561. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  4562. */
  4563. static QDF_STATUS send_set_sta_sa_query_param_cmd_tlv(wmi_unified_t wmi_handle,
  4564. uint8_t vdev_id, uint32_t max_retries,
  4565. uint32_t retry_interval)
  4566. {
  4567. wmi_buf_t buf;
  4568. WMI_PMF_OFFLOAD_SET_SA_QUERY_CMD_fixed_param *cmd;
  4569. int len;
  4570. len = sizeof(*cmd);
  4571. buf = wmi_buf_alloc(wmi_handle, len);
  4572. if (!buf) {
  4573. WMI_LOGE(FL("wmi_buf_alloc failed"));
  4574. return QDF_STATUS_E_FAILURE;
  4575. }
  4576. cmd = (WMI_PMF_OFFLOAD_SET_SA_QUERY_CMD_fixed_param *)wmi_buf_data(buf);
  4577. WMITLV_SET_HDR(&cmd->tlv_header,
  4578. WMITLV_TAG_STRUC_WMI_PMF_OFFLOAD_SET_SA_QUERY_CMD_fixed_param,
  4579. WMITLV_GET_STRUCT_TLVLEN
  4580. (WMI_PMF_OFFLOAD_SET_SA_QUERY_CMD_fixed_param));
  4581. cmd->vdev_id = vdev_id;
  4582. cmd->sa_query_max_retry_count = max_retries;
  4583. cmd->sa_query_retry_interval = retry_interval;
  4584. WMI_LOGD(FL("STA sa query: vdev_id:%d interval:%u retry count:%d"),
  4585. vdev_id, retry_interval, max_retries);
  4586. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  4587. WMI_PMF_OFFLOAD_SET_SA_QUERY_CMDID)) {
  4588. WMI_LOGE(FL("Failed to offload STA SA Query"));
  4589. wmi_buf_free(buf);
  4590. return QDF_STATUS_E_FAILURE;
  4591. }
  4592. WMI_LOGD(FL("Exit :"));
  4593. return 0;
  4594. }
  4595. /**
  4596. * send_set_sta_keep_alive_cmd_tlv() - set sta keep alive parameters
  4597. * @wmi_handle: wmi handle
  4598. * @params: sta keep alive parameter
  4599. *
  4600. * This function sets keep alive related parameters in fw.
  4601. *
  4602. * Return: CDF status
  4603. */
  4604. static QDF_STATUS send_set_sta_keep_alive_cmd_tlv(wmi_unified_t wmi_handle,
  4605. struct sta_params *params)
  4606. {
  4607. wmi_buf_t buf;
  4608. WMI_STA_KEEPALIVE_CMD_fixed_param *cmd;
  4609. WMI_STA_KEEPALVE_ARP_RESPONSE *arp_rsp;
  4610. uint8_t *buf_ptr;
  4611. int len;
  4612. QDF_STATUS ret;
  4613. WMI_LOGD("%s: Enter", __func__);
  4614. len = sizeof(*cmd) + sizeof(*arp_rsp);
  4615. buf = wmi_buf_alloc(wmi_handle, len);
  4616. if (!buf) {
  4617. WMI_LOGE("wmi_buf_alloc failed");
  4618. return QDF_STATUS_E_FAILURE;
  4619. }
  4620. cmd = (WMI_STA_KEEPALIVE_CMD_fixed_param *) wmi_buf_data(buf);
  4621. buf_ptr = (uint8_t *) cmd;
  4622. WMITLV_SET_HDR(&cmd->tlv_header,
  4623. WMITLV_TAG_STRUC_WMI_STA_KEEPALIVE_CMD_fixed_param,
  4624. WMITLV_GET_STRUCT_TLVLEN
  4625. (WMI_STA_KEEPALIVE_CMD_fixed_param));
  4626. cmd->interval = params->timeperiod;
  4627. cmd->enable = (params->timeperiod) ? 1 : 0;
  4628. cmd->vdev_id = params->vdev_id;
  4629. WMI_LOGD("Keep Alive: vdev_id:%d interval:%u method:%d", params->vdev_id,
  4630. params->timeperiod, params->method);
  4631. arp_rsp = (WMI_STA_KEEPALVE_ARP_RESPONSE *) (buf_ptr + sizeof(*cmd));
  4632. WMITLV_SET_HDR(&arp_rsp->tlv_header,
  4633. WMITLV_TAG_STRUC_WMI_STA_KEEPALVE_ARP_RESPONSE,
  4634. WMITLV_GET_STRUCT_TLVLEN(WMI_STA_KEEPALVE_ARP_RESPONSE));
  4635. if ((params->method == WMI_KEEP_ALIVE_UNSOLICIT_ARP_RSP) ||
  4636. (params->method ==
  4637. WMI_STA_KEEPALIVE_METHOD_GRATUITOUS_ARP_REQUEST)) {
  4638. if ((NULL == params->hostv4addr) ||
  4639. (NULL == params->destv4addr) ||
  4640. (NULL == params->destmac)) {
  4641. WMI_LOGE("%s: received null pointer, hostv4addr:%pK "
  4642. "destv4addr:%pK destmac:%pK ", __func__,
  4643. params->hostv4addr, params->destv4addr, params->destmac);
  4644. wmi_buf_free(buf);
  4645. return QDF_STATUS_E_FAILURE;
  4646. }
  4647. cmd->method = params->method;
  4648. qdf_mem_copy(&arp_rsp->sender_prot_addr, params->hostv4addr,
  4649. WMI_IPV4_ADDR_LEN);
  4650. qdf_mem_copy(&arp_rsp->target_prot_addr, params->destv4addr,
  4651. WMI_IPV4_ADDR_LEN);
  4652. WMI_CHAR_ARRAY_TO_MAC_ADDR(params->destmac, &arp_rsp->dest_mac_addr);
  4653. } else {
  4654. cmd->method = WMI_STA_KEEPALIVE_METHOD_NULL_FRAME;
  4655. }
  4656. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4657. WMI_STA_KEEPALIVE_CMDID);
  4658. if (QDF_IS_STATUS_ERROR(ret)) {
  4659. WMI_LOGE("Failed to set KeepAlive");
  4660. wmi_buf_free(buf);
  4661. }
  4662. WMI_LOGD("%s: Exit", __func__);
  4663. return ret;
  4664. }
  4665. /**
  4666. * send_vdev_set_gtx_cfg_cmd_tlv() - set GTX params
  4667. * @wmi_handle: wmi handle
  4668. * @if_id: vdev id
  4669. * @gtx_info: GTX config params
  4670. *
  4671. * This function set GTX related params in firmware.
  4672. *
  4673. * Return: QDF_STATUS_SUCCESS for success or error code
  4674. */
  4675. static QDF_STATUS send_vdev_set_gtx_cfg_cmd_tlv(wmi_unified_t wmi_handle, uint32_t if_id,
  4676. struct wmi_gtx_config *gtx_info)
  4677. {
  4678. wmi_vdev_set_gtx_params_cmd_fixed_param *cmd;
  4679. wmi_buf_t buf;
  4680. QDF_STATUS ret;
  4681. int len = sizeof(wmi_vdev_set_gtx_params_cmd_fixed_param);
  4682. buf = wmi_buf_alloc(wmi_handle, len);
  4683. if (!buf) {
  4684. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  4685. return QDF_STATUS_E_NOMEM;
  4686. }
  4687. cmd = (wmi_vdev_set_gtx_params_cmd_fixed_param *) wmi_buf_data(buf);
  4688. WMITLV_SET_HDR(&cmd->tlv_header,
  4689. WMITLV_TAG_STRUC_wmi_vdev_set_gtx_params_cmd_fixed_param,
  4690. WMITLV_GET_STRUCT_TLVLEN
  4691. (wmi_vdev_set_gtx_params_cmd_fixed_param));
  4692. cmd->vdev_id = if_id;
  4693. cmd->gtxRTMask[0] = gtx_info->gtx_rt_mask[0];
  4694. cmd->gtxRTMask[1] = gtx_info->gtx_rt_mask[1];
  4695. cmd->userGtxMask = gtx_info->gtx_usrcfg;
  4696. cmd->gtxPERThreshold = gtx_info->gtx_threshold;
  4697. cmd->gtxPERMargin = gtx_info->gtx_margin;
  4698. cmd->gtxTPCstep = gtx_info->gtx_tpcstep;
  4699. cmd->gtxTPCMin = gtx_info->gtx_tpcmin;
  4700. cmd->gtxBWMask = gtx_info->gtx_bwmask;
  4701. WMI_LOGD("Setting vdev%d GTX values:htmcs 0x%x, vhtmcs 0x%x, usermask 0x%x, \
  4702. gtxPERThreshold %d, gtxPERMargin %d, gtxTPCstep %d, gtxTPCMin %d, \
  4703. gtxBWMask 0x%x.", if_id, cmd->gtxRTMask[0], cmd->gtxRTMask[1],
  4704. cmd->userGtxMask, cmd->gtxPERThreshold, cmd->gtxPERMargin,
  4705. cmd->gtxTPCstep, cmd->gtxTPCMin, cmd->gtxBWMask);
  4706. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4707. WMI_VDEV_SET_GTX_PARAMS_CMDID);
  4708. if (QDF_IS_STATUS_ERROR(ret)) {
  4709. WMI_LOGE("Failed to set GTX PARAMS");
  4710. wmi_buf_free(buf);
  4711. }
  4712. return ret;
  4713. }
  4714. /**
  4715. * send_process_update_edca_param_cmd_tlv() - update EDCA params
  4716. * @wmi_handle: wmi handle
  4717. * @vdev_id: vdev id.
  4718. * @wmm_vparams: edca parameters
  4719. *
  4720. * This function updates EDCA parameters to the target
  4721. *
  4722. * Return: CDF Status
  4723. */
  4724. static QDF_STATUS send_process_update_edca_param_cmd_tlv(wmi_unified_t wmi_handle,
  4725. uint8_t vdev_id, bool mu_edca_param,
  4726. struct wmi_host_wme_vparams wmm_vparams[WMI_MAX_NUM_AC])
  4727. {
  4728. uint8_t *buf_ptr;
  4729. wmi_buf_t buf;
  4730. wmi_vdev_set_wmm_params_cmd_fixed_param *cmd;
  4731. wmi_wmm_vparams *wmm_param;
  4732. struct wmi_host_wme_vparams *twmm_param;
  4733. int len = sizeof(*cmd);
  4734. int ac;
  4735. buf = wmi_buf_alloc(wmi_handle, len);
  4736. if (!buf) {
  4737. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  4738. return QDF_STATUS_E_NOMEM;
  4739. }
  4740. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  4741. cmd = (wmi_vdev_set_wmm_params_cmd_fixed_param *) buf_ptr;
  4742. WMITLV_SET_HDR(&cmd->tlv_header,
  4743. WMITLV_TAG_STRUC_wmi_vdev_set_wmm_params_cmd_fixed_param,
  4744. WMITLV_GET_STRUCT_TLVLEN
  4745. (wmi_vdev_set_wmm_params_cmd_fixed_param));
  4746. cmd->vdev_id = vdev_id;
  4747. cmd->wmm_param_type = mu_edca_param;
  4748. for (ac = 0; ac < WMI_MAX_NUM_AC; ac++) {
  4749. wmm_param = (wmi_wmm_vparams *) (&cmd->wmm_params[ac]);
  4750. twmm_param = (struct wmi_host_wme_vparams *) (&wmm_vparams[ac]);
  4751. WMITLV_SET_HDR(&wmm_param->tlv_header,
  4752. WMITLV_TAG_STRUC_wmi_vdev_set_wmm_params_cmd_fixed_param,
  4753. WMITLV_GET_STRUCT_TLVLEN(wmi_wmm_vparams));
  4754. wmm_param->cwmin = twmm_param->cwmin;
  4755. wmm_param->cwmax = twmm_param->cwmax;
  4756. wmm_param->aifs = twmm_param->aifs;
  4757. if (mu_edca_param)
  4758. wmm_param->mu_edca_timer = twmm_param->mu_edca_timer;
  4759. else
  4760. wmm_param->txoplimit = twmm_param->txoplimit;
  4761. wmm_param->acm = twmm_param->acm;
  4762. wmm_param->no_ack = twmm_param->noackpolicy;
  4763. }
  4764. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  4765. WMI_VDEV_SET_WMM_PARAMS_CMDID))
  4766. goto fail;
  4767. return QDF_STATUS_SUCCESS;
  4768. fail:
  4769. wmi_buf_free(buf);
  4770. WMI_LOGE("%s: Failed to set WMM Paremeters", __func__);
  4771. return QDF_STATUS_E_FAILURE;
  4772. }
  4773. /**
  4774. * send_probe_rsp_tmpl_send_cmd_tlv() - send probe response template to fw
  4775. * @wmi_handle: wmi handle
  4776. * @vdev_id: vdev id
  4777. * @probe_rsp_info: probe response info
  4778. *
  4779. * Return: QDF_STATUS_SUCCESS for success or error code
  4780. */
  4781. static QDF_STATUS send_probe_rsp_tmpl_send_cmd_tlv(wmi_unified_t wmi_handle,
  4782. uint8_t vdev_id,
  4783. struct wmi_probe_resp_params *probe_rsp_info)
  4784. {
  4785. wmi_prb_tmpl_cmd_fixed_param *cmd;
  4786. wmi_bcn_prb_info *bcn_prb_info;
  4787. wmi_buf_t wmi_buf;
  4788. uint32_t tmpl_len, tmpl_len_aligned, wmi_buf_len;
  4789. uint8_t *buf_ptr;
  4790. QDF_STATUS ret;
  4791. WMI_LOGD(FL("Send probe response template for vdev %d"), vdev_id);
  4792. tmpl_len = probe_rsp_info->prb_rsp_template_len;
  4793. tmpl_len_aligned = roundup(tmpl_len, sizeof(uint32_t));
  4794. wmi_buf_len = sizeof(wmi_prb_tmpl_cmd_fixed_param) +
  4795. sizeof(wmi_bcn_prb_info) + WMI_TLV_HDR_SIZE +
  4796. tmpl_len_aligned;
  4797. if (wmi_buf_len > WMI_BEACON_TX_BUFFER_SIZE) {
  4798. WMI_LOGE(FL("wmi_buf_len: %d > %d. Can't send wmi cmd"),
  4799. wmi_buf_len, WMI_BEACON_TX_BUFFER_SIZE);
  4800. return QDF_STATUS_E_INVAL;
  4801. }
  4802. wmi_buf = wmi_buf_alloc(wmi_handle, wmi_buf_len);
  4803. if (!wmi_buf) {
  4804. WMI_LOGE(FL("wmi_buf_alloc failed"));
  4805. return QDF_STATUS_E_NOMEM;
  4806. }
  4807. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  4808. cmd = (wmi_prb_tmpl_cmd_fixed_param *) buf_ptr;
  4809. WMITLV_SET_HDR(&cmd->tlv_header,
  4810. WMITLV_TAG_STRUC_wmi_prb_tmpl_cmd_fixed_param,
  4811. WMITLV_GET_STRUCT_TLVLEN(wmi_prb_tmpl_cmd_fixed_param));
  4812. cmd->vdev_id = vdev_id;
  4813. cmd->buf_len = tmpl_len;
  4814. buf_ptr += sizeof(wmi_prb_tmpl_cmd_fixed_param);
  4815. bcn_prb_info = (wmi_bcn_prb_info *) buf_ptr;
  4816. WMITLV_SET_HDR(&bcn_prb_info->tlv_header,
  4817. WMITLV_TAG_STRUC_wmi_bcn_prb_info,
  4818. WMITLV_GET_STRUCT_TLVLEN(wmi_bcn_prb_info));
  4819. bcn_prb_info->caps = 0;
  4820. bcn_prb_info->erp = 0;
  4821. buf_ptr += sizeof(wmi_bcn_prb_info);
  4822. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, tmpl_len_aligned);
  4823. buf_ptr += WMI_TLV_HDR_SIZE;
  4824. qdf_mem_copy(buf_ptr, probe_rsp_info->prb_rsp_template_frm, tmpl_len);
  4825. ret = wmi_unified_cmd_send(wmi_handle,
  4826. wmi_buf, wmi_buf_len, WMI_PRB_TMPL_CMDID);
  4827. if (QDF_IS_STATUS_ERROR(ret)) {
  4828. WMI_LOGE(FL("Failed to send PRB RSP tmpl: %d"), ret);
  4829. wmi_buf_free(wmi_buf);
  4830. }
  4831. return ret;
  4832. }
  4833. #if defined(ATH_SUPPORT_WAPI) || defined(FEATURE_WLAN_WAPI)
  4834. #define WPI_IV_LEN 16
  4835. /**
  4836. * wmi_update_wpi_key_counter() - update WAPI tsc and rsc key counters
  4837. *
  4838. * @dest_tx: destination address of tsc key counter
  4839. * @src_tx: source address of tsc key counter
  4840. * @dest_rx: destination address of rsc key counter
  4841. * @src_rx: source address of rsc key counter
  4842. *
  4843. * This function copies WAPI tsc and rsc key counters in the wmi buffer.
  4844. *
  4845. * Return: None
  4846. *
  4847. */
  4848. static void wmi_update_wpi_key_counter(uint8_t *dest_tx, uint8_t *src_tx,
  4849. uint8_t *dest_rx, uint8_t *src_rx)
  4850. {
  4851. qdf_mem_copy(dest_tx, src_tx, WPI_IV_LEN);
  4852. qdf_mem_copy(dest_rx, src_rx, WPI_IV_LEN);
  4853. }
  4854. #else
  4855. static void wmi_update_wpi_key_counter(uint8_t *dest_tx, uint8_t *src_tx,
  4856. uint8_t *dest_rx, uint8_t *src_rx)
  4857. {
  4858. return;
  4859. }
  4860. #endif
  4861. /**
  4862. * send_setup_install_key_cmd_tlv() - set key parameters
  4863. * @wmi_handle: wmi handle
  4864. * @key_params: key parameters
  4865. *
  4866. * This function fills structure from information
  4867. * passed in key_params.
  4868. *
  4869. * Return: QDF_STATUS_SUCCESS - success
  4870. * QDF_STATUS_E_FAILURE - failure
  4871. * QDF_STATUS_E_NOMEM - not able to allocate buffer
  4872. */
  4873. static QDF_STATUS send_setup_install_key_cmd_tlv(wmi_unified_t wmi_handle,
  4874. struct set_key_params *key_params)
  4875. {
  4876. wmi_vdev_install_key_cmd_fixed_param *cmd;
  4877. wmi_buf_t buf;
  4878. uint8_t *buf_ptr;
  4879. uint32_t len;
  4880. uint8_t *key_data;
  4881. QDF_STATUS status;
  4882. len = sizeof(*cmd) + roundup(key_params->key_len, sizeof(uint32_t)) +
  4883. WMI_TLV_HDR_SIZE;
  4884. buf = wmi_buf_alloc(wmi_handle, len);
  4885. if (!buf) {
  4886. WMI_LOGE("Failed to allocate buffer to send set key cmd");
  4887. return QDF_STATUS_E_NOMEM;
  4888. }
  4889. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  4890. cmd = (wmi_vdev_install_key_cmd_fixed_param *) buf_ptr;
  4891. WMITLV_SET_HDR(&cmd->tlv_header,
  4892. WMITLV_TAG_STRUC_wmi_vdev_install_key_cmd_fixed_param,
  4893. WMITLV_GET_STRUCT_TLVLEN
  4894. (wmi_vdev_install_key_cmd_fixed_param));
  4895. cmd->vdev_id = key_params->vdev_id;
  4896. cmd->key_ix = key_params->key_idx;
  4897. WMI_CHAR_ARRAY_TO_MAC_ADDR(key_params->peer_mac, &cmd->peer_macaddr);
  4898. cmd->key_flags |= key_params->key_flags;
  4899. cmd->key_cipher = key_params->key_cipher;
  4900. if ((key_params->key_txmic_len) &&
  4901. (key_params->key_rxmic_len)) {
  4902. cmd->key_txmic_len = key_params->key_txmic_len;
  4903. cmd->key_rxmic_len = key_params->key_rxmic_len;
  4904. }
  4905. #if defined(ATH_SUPPORT_WAPI) || defined(FEATURE_WLAN_WAPI)
  4906. wmi_update_wpi_key_counter(cmd->wpi_key_tsc_counter,
  4907. key_params->tx_iv,
  4908. cmd->wpi_key_rsc_counter,
  4909. key_params->rx_iv);
  4910. #endif
  4911. buf_ptr += sizeof(wmi_vdev_install_key_cmd_fixed_param);
  4912. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  4913. roundup(key_params->key_len, sizeof(uint32_t)));
  4914. key_data = (uint8_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  4915. qdf_mem_copy((void *)key_data,
  4916. (const void *)key_params->key_data, key_params->key_len);
  4917. if (key_params->key_rsc_counter)
  4918. qdf_mem_copy(&cmd->key_rsc_counter, key_params->key_rsc_counter,
  4919. sizeof(wmi_key_seq_counter));
  4920. cmd->key_len = key_params->key_len;
  4921. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  4922. WMI_VDEV_INSTALL_KEY_CMDID);
  4923. if (QDF_IS_STATUS_ERROR(status))
  4924. wmi_buf_free(buf);
  4925. return status;
  4926. }
  4927. /**
  4928. * send_sar_limit_cmd_tlv() - send sar limit cmd to fw
  4929. * @wmi_handle: wmi handle
  4930. * @params: sar limit params
  4931. *
  4932. * Return: QDF_STATUS_SUCCESS for success or error code
  4933. */
  4934. static QDF_STATUS send_sar_limit_cmd_tlv(wmi_unified_t wmi_handle,
  4935. struct sar_limit_cmd_params *sar_limit_params)
  4936. {
  4937. wmi_buf_t buf;
  4938. QDF_STATUS qdf_status;
  4939. wmi_sar_limits_cmd_fixed_param *cmd;
  4940. int i;
  4941. uint8_t *buf_ptr;
  4942. wmi_sar_limit_cmd_row *wmi_sar_rows_list;
  4943. struct sar_limit_cmd_row *sar_rows_list;
  4944. uint32_t len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  4945. len += sizeof(wmi_sar_limit_cmd_row) * sar_limit_params->num_limit_rows;
  4946. buf = wmi_buf_alloc(wmi_handle, len);
  4947. if (!buf) {
  4948. WMI_LOGE("Failed to allocate memory");
  4949. qdf_status = QDF_STATUS_E_NOMEM;
  4950. goto end;
  4951. }
  4952. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  4953. cmd = (wmi_sar_limits_cmd_fixed_param *) buf_ptr;
  4954. WMITLV_SET_HDR(&cmd->tlv_header,
  4955. WMITLV_TAG_STRUC_wmi_sar_limits_cmd_fixed_param,
  4956. WMITLV_GET_STRUCT_TLVLEN
  4957. (wmi_sar_limits_cmd_fixed_param));
  4958. cmd->sar_enable = sar_limit_params->sar_enable;
  4959. cmd->commit_limits = sar_limit_params->commit_limits;
  4960. cmd->num_limit_rows = sar_limit_params->num_limit_rows;
  4961. WMI_LOGD("no of sar rows = %d, len = %d",
  4962. sar_limit_params->num_limit_rows, len);
  4963. buf_ptr += sizeof(*cmd);
  4964. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  4965. sizeof(wmi_sar_limit_cmd_row) *
  4966. sar_limit_params->num_limit_rows);
  4967. if (cmd->num_limit_rows == 0)
  4968. goto send_sar_limits;
  4969. wmi_sar_rows_list = (wmi_sar_limit_cmd_row *)
  4970. (buf_ptr + WMI_TLV_HDR_SIZE);
  4971. sar_rows_list = sar_limit_params->sar_limit_row_list;
  4972. for (i = 0; i < sar_limit_params->num_limit_rows; i++) {
  4973. WMITLV_SET_HDR(&wmi_sar_rows_list->tlv_header,
  4974. WMITLV_TAG_STRUC_wmi_sar_limit_cmd_row,
  4975. WMITLV_GET_STRUCT_TLVLEN(wmi_sar_limit_cmd_row));
  4976. wmi_sar_rows_list->band_id = sar_rows_list->band_id;
  4977. wmi_sar_rows_list->chain_id = sar_rows_list->chain_id;
  4978. wmi_sar_rows_list->mod_id = sar_rows_list->mod_id;
  4979. wmi_sar_rows_list->limit_value = sar_rows_list->limit_value;
  4980. wmi_sar_rows_list->validity_bitmap =
  4981. sar_rows_list->validity_bitmap;
  4982. WMI_LOGD("row %d, band_id = %d, chain_id = %d, mod_id = %d, limit_value = %d, validity_bitmap = %d",
  4983. i, wmi_sar_rows_list->band_id,
  4984. wmi_sar_rows_list->chain_id,
  4985. wmi_sar_rows_list->mod_id,
  4986. wmi_sar_rows_list->limit_value,
  4987. wmi_sar_rows_list->validity_bitmap);
  4988. sar_rows_list++;
  4989. wmi_sar_rows_list++;
  4990. }
  4991. send_sar_limits:
  4992. qdf_status = wmi_unified_cmd_send(wmi_handle, buf, len,
  4993. WMI_SAR_LIMITS_CMDID);
  4994. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  4995. WMI_LOGE("Failed to send WMI_SAR_LIMITS_CMDID");
  4996. wmi_buf_free(buf);
  4997. }
  4998. end:
  4999. return qdf_status;
  5000. }
  5001. static QDF_STATUS get_sar_limit_cmd_tlv(wmi_unified_t wmi_handle)
  5002. {
  5003. wmi_sar_get_limits_cmd_fixed_param *cmd;
  5004. wmi_buf_t wmi_buf;
  5005. uint32_t len;
  5006. QDF_STATUS status;
  5007. WMI_LOGD(FL("Enter"));
  5008. len = sizeof(*cmd);
  5009. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  5010. if (!wmi_buf) {
  5011. WMI_LOGP(FL("failed to allocate memory for msg"));
  5012. return QDF_STATUS_E_NOMEM;
  5013. }
  5014. cmd = (wmi_sar_get_limits_cmd_fixed_param *)wmi_buf_data(wmi_buf);
  5015. WMITLV_SET_HDR(&cmd->tlv_header,
  5016. WMITLV_TAG_STRUC_wmi_sar_get_limits_cmd_fixed_param,
  5017. WMITLV_GET_STRUCT_TLVLEN
  5018. (wmi_sar_get_limits_cmd_fixed_param));
  5019. cmd->reserved = 0;
  5020. status = wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  5021. WMI_SAR_GET_LIMITS_CMDID);
  5022. if (QDF_IS_STATUS_ERROR(status)) {
  5023. WMI_LOGE(FL("Failed to send get SAR limit cmd: %d"), status);
  5024. wmi_buf_free(wmi_buf);
  5025. }
  5026. WMI_LOGD(FL("Exit"));
  5027. return status;
  5028. }
  5029. /**
  5030. * wmi_sar2_result_string() - return string conversion of sar2 result
  5031. * @result: sar2 result value
  5032. *
  5033. * This utility function helps log string conversion of sar2 result.
  5034. *
  5035. * Return: string conversion of sar 2 result, if match found;
  5036. * "Unknown response" otherwise.
  5037. */
  5038. static const char *wmi_sar2_result_string(uint32_t result)
  5039. {
  5040. switch (result) {
  5041. CASE_RETURN_STRING(WMI_SAR2_SUCCESS);
  5042. CASE_RETURN_STRING(WMI_SAR2_INVALID_ANTENNA_INDEX);
  5043. CASE_RETURN_STRING(WMI_SAR2_INVALID_TABLE_INDEX);
  5044. CASE_RETURN_STRING(WMI_SAR2_STATE_ERROR);
  5045. CASE_RETURN_STRING(WMI_SAR2_BDF_NO_TABLE);
  5046. default:
  5047. return "Unknown response";
  5048. }
  5049. }
  5050. /**
  5051. * extract_sar2_result_event_tlv() - process sar response event from FW.
  5052. * @handle: wma handle
  5053. * @event: event buffer
  5054. * @len: buffer length
  5055. *
  5056. * Return: 0 for success or error code
  5057. */
  5058. static QDF_STATUS extract_sar2_result_event_tlv(void *handle,
  5059. uint8_t *event,
  5060. uint32_t len)
  5061. {
  5062. wmi_sar2_result_event_fixed_param *sar2_fixed_param;
  5063. WMI_SAR2_RESULT_EVENTID_param_tlvs *param_buf =
  5064. (WMI_SAR2_RESULT_EVENTID_param_tlvs *)event;
  5065. if (!param_buf) {
  5066. WMI_LOGI("Invalid sar2 result event buffer");
  5067. return QDF_STATUS_E_INVAL;
  5068. }
  5069. sar2_fixed_param = param_buf->fixed_param;
  5070. if (!sar2_fixed_param) {
  5071. WMI_LOGI("Invalid sar2 result event fixed param buffer");
  5072. return QDF_STATUS_E_INVAL;
  5073. }
  5074. WMI_LOGI("SAR2 result: %s",
  5075. wmi_sar2_result_string(sar2_fixed_param->result));
  5076. return QDF_STATUS_SUCCESS;
  5077. }
  5078. static QDF_STATUS extract_sar_limit_event_tlv(wmi_unified_t wmi_handle,
  5079. uint8_t *evt_buf,
  5080. struct sar_limit_event *event)
  5081. {
  5082. wmi_sar_get_limits_event_fixed_param *fixed_param;
  5083. WMI_SAR_GET_LIMITS_EVENTID_param_tlvs *param_buf;
  5084. wmi_sar_get_limit_event_row *row_in;
  5085. struct sar_limit_event_row *row_out;
  5086. uint32_t row;
  5087. if (!evt_buf) {
  5088. WMI_LOGE(FL("input event is NULL"));
  5089. return QDF_STATUS_E_INVAL;
  5090. }
  5091. if (!event) {
  5092. WMI_LOGE(FL("output event is NULL"));
  5093. return QDF_STATUS_E_INVAL;
  5094. }
  5095. param_buf = (WMI_SAR_GET_LIMITS_EVENTID_param_tlvs *)evt_buf;
  5096. fixed_param = param_buf->fixed_param;
  5097. if (!fixed_param) {
  5098. WMI_LOGE(FL("Invalid fixed param"));
  5099. return QDF_STATUS_E_INVAL;
  5100. }
  5101. event->sar_enable = fixed_param->sar_enable;
  5102. event->num_limit_rows = fixed_param->num_limit_rows;
  5103. if (event->num_limit_rows > MAX_SAR_LIMIT_ROWS_SUPPORTED) {
  5104. QDF_ASSERT(0);
  5105. WMI_LOGE(FL("Num rows %d exceeds max of %d"),
  5106. event->num_limit_rows,
  5107. MAX_SAR_LIMIT_ROWS_SUPPORTED);
  5108. event->num_limit_rows = MAX_SAR_LIMIT_ROWS_SUPPORTED;
  5109. }
  5110. row_in = param_buf->sar_get_limits;
  5111. row_out = &event->sar_limit_row[0];
  5112. for (row = 0; row < event->num_limit_rows; row++) {
  5113. row_out->band_id = row_in->band_id;
  5114. row_out->chain_id = row_in->chain_id;
  5115. row_out->mod_id = row_in->mod_id;
  5116. row_out->limit_value = row_in->limit_value;
  5117. row_out++;
  5118. row_in++;
  5119. }
  5120. return QDF_STATUS_SUCCESS;
  5121. }
  5122. #ifdef WLAN_FEATURE_DISA
  5123. /**
  5124. * send_encrypt_decrypt_send_cmd() - send encrypt/decrypt cmd to fw
  5125. * @wmi_handle: wmi handle
  5126. * @params: encrypt/decrypt params
  5127. *
  5128. * Return: QDF_STATUS_SUCCESS for success or error code
  5129. */
  5130. static
  5131. QDF_STATUS send_encrypt_decrypt_send_cmd_tlv(wmi_unified_t wmi_handle,
  5132. struct disa_encrypt_decrypt_req_params *encrypt_decrypt_params)
  5133. {
  5134. wmi_vdev_encrypt_decrypt_data_req_cmd_fixed_param *cmd;
  5135. wmi_buf_t wmi_buf;
  5136. uint8_t *buf_ptr;
  5137. QDF_STATUS ret;
  5138. uint32_t len;
  5139. WMI_LOGD(FL("Send encrypt decrypt cmd"));
  5140. len = sizeof(*cmd) +
  5141. roundup(encrypt_decrypt_params->data_len, sizeof(uint32_t)) +
  5142. WMI_TLV_HDR_SIZE;
  5143. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  5144. if (!wmi_buf) {
  5145. WMI_LOGP("%s: failed to allocate memory for encrypt/decrypt msg",
  5146. __func__);
  5147. return QDF_STATUS_E_NOMEM;
  5148. }
  5149. buf_ptr = wmi_buf_data(wmi_buf);
  5150. cmd = (wmi_vdev_encrypt_decrypt_data_req_cmd_fixed_param *)buf_ptr;
  5151. WMITLV_SET_HDR(&cmd->tlv_header,
  5152. WMITLV_TAG_STRUC_wmi_vdev_encrypt_decrypt_data_req_cmd_fixed_param,
  5153. WMITLV_GET_STRUCT_TLVLEN(
  5154. wmi_vdev_encrypt_decrypt_data_req_cmd_fixed_param));
  5155. cmd->vdev_id = encrypt_decrypt_params->vdev_id;
  5156. cmd->key_flag = encrypt_decrypt_params->key_flag;
  5157. cmd->key_idx = encrypt_decrypt_params->key_idx;
  5158. cmd->key_cipher = encrypt_decrypt_params->key_cipher;
  5159. cmd->key_len = encrypt_decrypt_params->key_len;
  5160. cmd->key_txmic_len = encrypt_decrypt_params->key_txmic_len;
  5161. cmd->key_rxmic_len = encrypt_decrypt_params->key_rxmic_len;
  5162. qdf_mem_copy(cmd->key_data, encrypt_decrypt_params->key_data,
  5163. encrypt_decrypt_params->key_len);
  5164. qdf_mem_copy(cmd->mac_hdr, encrypt_decrypt_params->mac_header,
  5165. MAX_MAC_HEADER_LEN);
  5166. cmd->data_len = encrypt_decrypt_params->data_len;
  5167. if (cmd->data_len) {
  5168. buf_ptr += sizeof(*cmd);
  5169. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  5170. roundup(encrypt_decrypt_params->data_len,
  5171. sizeof(uint32_t)));
  5172. buf_ptr += WMI_TLV_HDR_SIZE;
  5173. qdf_mem_copy(buf_ptr, encrypt_decrypt_params->data,
  5174. encrypt_decrypt_params->data_len);
  5175. }
  5176. /* This conversion is to facilitate data to FW in little endian */
  5177. cmd->pn[5] = encrypt_decrypt_params->pn[0];
  5178. cmd->pn[4] = encrypt_decrypt_params->pn[1];
  5179. cmd->pn[3] = encrypt_decrypt_params->pn[2];
  5180. cmd->pn[2] = encrypt_decrypt_params->pn[3];
  5181. cmd->pn[1] = encrypt_decrypt_params->pn[4];
  5182. cmd->pn[0] = encrypt_decrypt_params->pn[5];
  5183. ret = wmi_unified_cmd_send(wmi_handle,
  5184. wmi_buf, len,
  5185. WMI_VDEV_ENCRYPT_DECRYPT_DATA_REQ_CMDID);
  5186. if (QDF_IS_STATUS_ERROR(ret)) {
  5187. WMI_LOGE("Failed to send ENCRYPT DECRYPT cmd: %d", ret);
  5188. wmi_buf_free(wmi_buf);
  5189. }
  5190. return ret;
  5191. }
  5192. /**
  5193. * extract_encrypt_decrypt_resp_event_tlv() - extract encrypt decrypt resp
  5194. * params from event
  5195. * @wmi_handle: wmi handle
  5196. * @evt_buf: pointer to event buffer
  5197. * @resp: Pointer to hold resp parameters
  5198. *
  5199. * Return: QDF_STATUS_SUCCESS for success or error code
  5200. */
  5201. static
  5202. QDF_STATUS extract_encrypt_decrypt_resp_event_tlv(wmi_unified_t wmi_handle,
  5203. void *evt_buf, struct disa_encrypt_decrypt_resp_params *resp)
  5204. {
  5205. WMI_VDEV_ENCRYPT_DECRYPT_DATA_RESP_EVENTID_param_tlvs *param_buf;
  5206. wmi_vdev_encrypt_decrypt_data_resp_event_fixed_param *data_event;
  5207. param_buf = evt_buf;
  5208. if (!param_buf) {
  5209. WMI_LOGE("encrypt decrypt resp evt_buf is NULL");
  5210. return QDF_STATUS_E_INVAL;
  5211. }
  5212. data_event = param_buf->fixed_param;
  5213. resp->vdev_id = data_event->vdev_id;
  5214. resp->status = data_event->status;
  5215. if (data_event->data_length > param_buf->num_enc80211_frame) {
  5216. WMI_LOGE("FW msg data_len %d more than TLV hdr %d",
  5217. data_event->data_length,
  5218. param_buf->num_enc80211_frame);
  5219. return QDF_STATUS_E_INVAL;
  5220. }
  5221. resp->data_len = data_event->data_length;
  5222. if (resp->data_len)
  5223. resp->data = (uint8_t *)param_buf->enc80211_frame;
  5224. return QDF_STATUS_SUCCESS;
  5225. }
  5226. #endif
  5227. /**
  5228. * send_p2p_go_set_beacon_ie_cmd_tlv() - set beacon IE for p2p go
  5229. * @wmi_handle: wmi handle
  5230. * @vdev_id: vdev id
  5231. * @p2p_ie: p2p IE
  5232. *
  5233. * Return: QDF_STATUS_SUCCESS for success or error code
  5234. */
  5235. static QDF_STATUS send_p2p_go_set_beacon_ie_cmd_tlv(wmi_unified_t wmi_handle,
  5236. uint32_t vdev_id, uint8_t *p2p_ie)
  5237. {
  5238. QDF_STATUS ret;
  5239. wmi_p2p_go_set_beacon_ie_fixed_param *cmd;
  5240. wmi_buf_t wmi_buf;
  5241. uint32_t ie_len, ie_len_aligned, wmi_buf_len;
  5242. uint8_t *buf_ptr;
  5243. ie_len = (uint32_t) (p2p_ie[1] + 2);
  5244. /* More than one P2P IE may be included in a single frame.
  5245. If multiple P2P IEs are present, the complete P2P attribute
  5246. data consists of the concatenation of the P2P Attribute
  5247. fields of the P2P IEs. The P2P Attributes field of each
  5248. P2P IE may be any length up to the maximum (251 octets).
  5249. In this case host sends one P2P IE to firmware so the length
  5250. should not exceed more than 251 bytes
  5251. */
  5252. if (ie_len > 251) {
  5253. WMI_LOGE("%s : invalid p2p ie length %u", __func__, ie_len);
  5254. return QDF_STATUS_E_INVAL;
  5255. }
  5256. ie_len_aligned = roundup(ie_len, sizeof(uint32_t));
  5257. wmi_buf_len =
  5258. sizeof(wmi_p2p_go_set_beacon_ie_fixed_param) + ie_len_aligned +
  5259. WMI_TLV_HDR_SIZE;
  5260. wmi_buf = wmi_buf_alloc(wmi_handle, wmi_buf_len);
  5261. if (!wmi_buf) {
  5262. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  5263. return QDF_STATUS_E_NOMEM;
  5264. }
  5265. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  5266. cmd = (wmi_p2p_go_set_beacon_ie_fixed_param *) buf_ptr;
  5267. WMITLV_SET_HDR(&cmd->tlv_header,
  5268. WMITLV_TAG_STRUC_wmi_p2p_go_set_beacon_ie_fixed_param,
  5269. WMITLV_GET_STRUCT_TLVLEN
  5270. (wmi_p2p_go_set_beacon_ie_fixed_param));
  5271. cmd->vdev_id = vdev_id;
  5272. cmd->ie_buf_len = ie_len;
  5273. buf_ptr += sizeof(wmi_p2p_go_set_beacon_ie_fixed_param);
  5274. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, ie_len_aligned);
  5275. buf_ptr += WMI_TLV_HDR_SIZE;
  5276. qdf_mem_copy(buf_ptr, p2p_ie, ie_len);
  5277. WMI_LOGI("%s: Sending WMI_P2P_GO_SET_BEACON_IE", __func__);
  5278. ret = wmi_unified_cmd_send(wmi_handle,
  5279. wmi_buf, wmi_buf_len,
  5280. WMI_P2P_GO_SET_BEACON_IE);
  5281. if (QDF_IS_STATUS_ERROR(ret)) {
  5282. WMI_LOGE("Failed to send bcn tmpl: %d", ret);
  5283. wmi_buf_free(wmi_buf);
  5284. }
  5285. WMI_LOGI("%s: Successfully sent WMI_P2P_GO_SET_BEACON_IE", __func__);
  5286. return ret;
  5287. }
  5288. /**
  5289. * send_set_gateway_params_cmd_tlv() - set gateway parameters
  5290. * @wmi_handle: wmi handle
  5291. * @req: gateway parameter update request structure
  5292. *
  5293. * This function reads the incoming @req and fill in the destination
  5294. * WMI structure and sends down the gateway configs down to the firmware
  5295. *
  5296. * Return: QDF_STATUS
  5297. */
  5298. static QDF_STATUS send_set_gateway_params_cmd_tlv(wmi_unified_t wmi_handle,
  5299. struct gateway_update_req_param *req)
  5300. {
  5301. wmi_roam_subnet_change_config_fixed_param *cmd;
  5302. wmi_buf_t buf;
  5303. QDF_STATUS ret;
  5304. int len = sizeof(*cmd);
  5305. buf = wmi_buf_alloc(wmi_handle, len);
  5306. if (!buf) {
  5307. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  5308. return QDF_STATUS_E_NOMEM;
  5309. }
  5310. cmd = (wmi_roam_subnet_change_config_fixed_param *) wmi_buf_data(buf);
  5311. WMITLV_SET_HDR(&cmd->tlv_header,
  5312. WMITLV_TAG_STRUC_wmi_roam_subnet_change_config_fixed_param,
  5313. WMITLV_GET_STRUCT_TLVLEN(
  5314. wmi_roam_subnet_change_config_fixed_param));
  5315. cmd->vdev_id = req->session_id;
  5316. qdf_mem_copy(&cmd->inet_gw_ip_v4_addr, req->ipv4_addr,
  5317. QDF_IPV4_ADDR_SIZE);
  5318. qdf_mem_copy(&cmd->inet_gw_ip_v6_addr, req->ipv6_addr,
  5319. QDF_IPV6_ADDR_SIZE);
  5320. WMI_CHAR_ARRAY_TO_MAC_ADDR(req->gw_mac_addr.bytes,
  5321. &cmd->inet_gw_mac_addr);
  5322. cmd->max_retries = req->max_retries;
  5323. cmd->timeout = req->timeout;
  5324. cmd->num_skip_subnet_change_detection_bssid_list = 0;
  5325. cmd->flag = 0;
  5326. if (req->ipv4_addr_type)
  5327. WMI_SET_ROAM_SUBNET_CHANGE_FLAG_IP4_ENABLED(cmd->flag);
  5328. if (req->ipv6_addr_type)
  5329. WMI_SET_ROAM_SUBNET_CHANGE_FLAG_IP6_ENABLED(cmd->flag);
  5330. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  5331. WMI_ROAM_SUBNET_CHANGE_CONFIG_CMDID);
  5332. if (QDF_IS_STATUS_ERROR(ret)) {
  5333. WMI_LOGE("Failed to send gw config parameter to fw, ret: %d",
  5334. ret);
  5335. wmi_buf_free(buf);
  5336. }
  5337. return ret;
  5338. }
  5339. /**
  5340. * send_set_rssi_monitoring_cmd_tlv() - set rssi monitoring
  5341. * @wmi_handle: wmi handle
  5342. * @req: rssi monitoring request structure
  5343. *
  5344. * This function reads the incoming @req and fill in the destination
  5345. * WMI structure and send down the rssi monitoring configs down to the firmware
  5346. *
  5347. * Return: 0 on success; error number otherwise
  5348. */
  5349. static QDF_STATUS send_set_rssi_monitoring_cmd_tlv(wmi_unified_t wmi_handle,
  5350. struct rssi_monitor_param *req)
  5351. {
  5352. wmi_rssi_breach_monitor_config_fixed_param *cmd;
  5353. wmi_buf_t buf;
  5354. QDF_STATUS ret;
  5355. uint32_t len = sizeof(*cmd);
  5356. buf = wmi_buf_alloc(wmi_handle, len);
  5357. if (!buf) {
  5358. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  5359. return QDF_STATUS_E_NOMEM;
  5360. }
  5361. cmd = (wmi_rssi_breach_monitor_config_fixed_param *) wmi_buf_data(buf);
  5362. WMITLV_SET_HDR(&cmd->tlv_header,
  5363. WMITLV_TAG_STRUC_wmi_rssi_breach_monitor_config_fixed_param,
  5364. WMITLV_GET_STRUCT_TLVLEN(
  5365. wmi_rssi_breach_monitor_config_fixed_param));
  5366. cmd->vdev_id = req->session_id;
  5367. cmd->request_id = req->request_id;
  5368. cmd->lo_rssi_reenable_hysteresis = 0;
  5369. cmd->hi_rssi_reenable_histeresis = 0;
  5370. cmd->min_report_interval = 0;
  5371. cmd->max_num_report = 1;
  5372. if (req->control) {
  5373. /* enable one threshold for each min/max */
  5374. cmd->enabled_bitmap = 0x09;
  5375. cmd->low_rssi_breach_threshold[0] = req->min_rssi;
  5376. cmd->hi_rssi_breach_threshold[0] = req->max_rssi;
  5377. } else {
  5378. cmd->enabled_bitmap = 0;
  5379. cmd->low_rssi_breach_threshold[0] = 0;
  5380. cmd->hi_rssi_breach_threshold[0] = 0;
  5381. }
  5382. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  5383. WMI_RSSI_BREACH_MONITOR_CONFIG_CMDID);
  5384. if (QDF_IS_STATUS_ERROR(ret)) {
  5385. WMI_LOGE("Failed to send WMI_RSSI_BREACH_MONITOR_CONFIG_CMDID");
  5386. wmi_buf_free(buf);
  5387. }
  5388. WMI_LOGD("Sent WMI_RSSI_BREACH_MONITOR_CONFIG_CMDID to FW");
  5389. return ret;
  5390. }
  5391. /**
  5392. * send_scan_probe_setoui_cmd_tlv() - set scan probe OUI
  5393. * @wmi_handle: wmi handle
  5394. * @psetoui: OUI parameters
  5395. *
  5396. * set scan probe OUI parameters in firmware
  5397. *
  5398. * Return: CDF status
  5399. */
  5400. static QDF_STATUS send_scan_probe_setoui_cmd_tlv(wmi_unified_t wmi_handle,
  5401. struct scan_mac_oui *psetoui)
  5402. {
  5403. wmi_scan_prob_req_oui_cmd_fixed_param *cmd;
  5404. wmi_buf_t wmi_buf;
  5405. uint32_t len;
  5406. uint8_t *buf_ptr;
  5407. uint32_t *oui_buf;
  5408. struct probe_req_whitelist_attr *ie_whitelist = &psetoui->ie_whitelist;
  5409. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  5410. ie_whitelist->num_vendor_oui * sizeof(wmi_vendor_oui);
  5411. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  5412. if (!wmi_buf) {
  5413. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  5414. return QDF_STATUS_E_NOMEM;
  5415. }
  5416. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  5417. cmd = (wmi_scan_prob_req_oui_cmd_fixed_param *) buf_ptr;
  5418. WMITLV_SET_HDR(&cmd->tlv_header,
  5419. WMITLV_TAG_STRUC_wmi_scan_prob_req_oui_cmd_fixed_param,
  5420. WMITLV_GET_STRUCT_TLVLEN
  5421. (wmi_scan_prob_req_oui_cmd_fixed_param));
  5422. oui_buf = &cmd->prob_req_oui;
  5423. qdf_mem_zero(oui_buf, sizeof(cmd->prob_req_oui));
  5424. *oui_buf = psetoui->oui[0] << 16 | psetoui->oui[1] << 8
  5425. | psetoui->oui[2];
  5426. WMI_LOGD("%s: wmi:oui received from hdd %08x", __func__,
  5427. cmd->prob_req_oui);
  5428. cmd->vdev_id = psetoui->vdev_id;
  5429. cmd->flags = WMI_SCAN_PROBE_OUI_SPOOFED_MAC_IN_PROBE_REQ;
  5430. if (psetoui->enb_probe_req_sno_randomization)
  5431. cmd->flags |= WMI_SCAN_PROBE_OUI_RANDOM_SEQ_NO_IN_PROBE_REQ;
  5432. if (ie_whitelist->white_list) {
  5433. wmi_fill_ie_whitelist_attrs(cmd->ie_bitmap,
  5434. &cmd->num_vendor_oui,
  5435. ie_whitelist);
  5436. cmd->flags |=
  5437. WMI_SCAN_PROBE_OUI_ENABLE_IE_WHITELIST_IN_PROBE_REQ;
  5438. }
  5439. buf_ptr += sizeof(*cmd);
  5440. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5441. ie_whitelist->num_vendor_oui * sizeof(wmi_vendor_oui));
  5442. buf_ptr += WMI_TLV_HDR_SIZE;
  5443. if (cmd->num_vendor_oui != 0) {
  5444. wmi_fill_vendor_oui(buf_ptr, cmd->num_vendor_oui,
  5445. ie_whitelist->voui);
  5446. buf_ptr += cmd->num_vendor_oui * sizeof(wmi_vendor_oui);
  5447. }
  5448. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  5449. WMI_SCAN_PROB_REQ_OUI_CMDID)) {
  5450. WMI_LOGE("%s: failed to send command", __func__);
  5451. wmi_buf_free(wmi_buf);
  5452. return QDF_STATUS_E_FAILURE;
  5453. }
  5454. return QDF_STATUS_SUCCESS;
  5455. }
  5456. #if defined(WLAN_FEATURE_FILS_SK) && defined(WLAN_FEATURE_ROAM_OFFLOAD)
  5457. /**
  5458. * wmi_add_fils_tlv() - Add FILS TLV to roam scan offload command
  5459. * @wmi_handle: wmi handle
  5460. * @roam_req: Roam scan offload params
  5461. * @buf_ptr: command buffer to send
  5462. * @fils_tlv_len: fils tlv length
  5463. *
  5464. * Return: Updated buffer pointer
  5465. */
  5466. static uint8_t *wmi_add_fils_tlv(wmi_unified_t wmi_handle,
  5467. struct roam_offload_scan_params *roam_req,
  5468. uint8_t *buf_ptr, uint32_t fils_tlv_len)
  5469. {
  5470. wmi_roam_fils_offload_tlv_param *fils_tlv;
  5471. wmi_erp_info *erp_info;
  5472. struct roam_fils_params *roam_fils_params;
  5473. if (!roam_req->add_fils_tlv)
  5474. return buf_ptr;
  5475. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5476. sizeof(*fils_tlv));
  5477. buf_ptr += WMI_TLV_HDR_SIZE;
  5478. fils_tlv = (wmi_roam_fils_offload_tlv_param *)buf_ptr;
  5479. WMITLV_SET_HDR(&fils_tlv->tlv_header,
  5480. WMITLV_TAG_STRUC_wmi_roam_fils_offload_tlv_param,
  5481. WMITLV_GET_STRUCT_TLVLEN
  5482. (wmi_roam_fils_offload_tlv_param));
  5483. roam_fils_params = &roam_req->roam_fils_params;
  5484. erp_info = (wmi_erp_info *)(&fils_tlv->vdev_erp_info);
  5485. erp_info->username_length = roam_fils_params->username_length;
  5486. qdf_mem_copy(erp_info->username, roam_fils_params->username,
  5487. erp_info->username_length);
  5488. erp_info->next_erp_seq_num = roam_fils_params->next_erp_seq_num;
  5489. erp_info->rRk_length = roam_fils_params->rrk_length;
  5490. qdf_mem_copy(erp_info->rRk, roam_fils_params->rrk,
  5491. erp_info->rRk_length);
  5492. erp_info->rIk_length = roam_fils_params->rik_length;
  5493. qdf_mem_copy(erp_info->rIk, roam_fils_params->rik,
  5494. erp_info->rIk_length);
  5495. erp_info->realm_len = roam_fils_params->realm_len;
  5496. qdf_mem_copy(erp_info->realm, roam_fils_params->realm,
  5497. erp_info->realm_len);
  5498. buf_ptr += sizeof(*fils_tlv);
  5499. return buf_ptr;
  5500. }
  5501. #else
  5502. static inline uint8_t *wmi_add_fils_tlv(wmi_unified_t wmi_handle,
  5503. struct roam_offload_scan_params *roam_req,
  5504. uint8_t *buf_ptr, uint32_t fils_tlv_len)
  5505. {
  5506. return buf_ptr;
  5507. }
  5508. #endif
  5509. /**
  5510. * send_roam_scan_offload_mode_cmd_tlv() - send roam scan mode request to fw
  5511. * @wmi_handle: wmi handle
  5512. * @scan_cmd_fp: start scan command ptr
  5513. * @roam_req: roam request param
  5514. *
  5515. * send WMI_ROAM_SCAN_MODE TLV to firmware. It has a piggyback
  5516. * of WMI_ROAM_SCAN_MODE.
  5517. *
  5518. * Return: QDF status
  5519. */
  5520. static QDF_STATUS send_roam_scan_offload_mode_cmd_tlv(wmi_unified_t wmi_handle,
  5521. wmi_start_scan_cmd_fixed_param *
  5522. scan_cmd_fp,
  5523. struct roam_offload_scan_params *roam_req)
  5524. {
  5525. wmi_buf_t buf = NULL;
  5526. QDF_STATUS status;
  5527. int len;
  5528. uint8_t *buf_ptr;
  5529. wmi_roam_scan_mode_fixed_param *roam_scan_mode_fp;
  5530. #ifdef WLAN_FEATURE_ROAM_OFFLOAD
  5531. int auth_mode = roam_req->auth_mode;
  5532. wmi_roam_offload_tlv_param *roam_offload_params;
  5533. wmi_roam_11i_offload_tlv_param *roam_offload_11i;
  5534. wmi_roam_11r_offload_tlv_param *roam_offload_11r;
  5535. wmi_roam_ese_offload_tlv_param *roam_offload_ese;
  5536. wmi_tlv_buf_len_param *assoc_ies;
  5537. uint32_t fils_tlv_len = 0;
  5538. #endif /* WLAN_FEATURE_ROAM_OFFLOAD */
  5539. /* Need to create a buf with roam_scan command at
  5540. * front and piggyback with scan command */
  5541. len = sizeof(wmi_roam_scan_mode_fixed_param) +
  5542. #ifdef WLAN_FEATURE_ROAM_OFFLOAD
  5543. (2 * WMI_TLV_HDR_SIZE) +
  5544. #endif /* WLAN_FEATURE_ROAM_OFFLOAD */
  5545. sizeof(wmi_start_scan_cmd_fixed_param);
  5546. #ifdef WLAN_FEATURE_ROAM_OFFLOAD
  5547. WMI_LOGD("auth_mode = %d", auth_mode);
  5548. if (roam_req->is_roam_req_valid &&
  5549. roam_req->roam_offload_enabled) {
  5550. len += sizeof(wmi_roam_offload_tlv_param);
  5551. len += WMI_TLV_HDR_SIZE;
  5552. if ((auth_mode != WMI_AUTH_NONE) &&
  5553. ((auth_mode != WMI_AUTH_OPEN) ||
  5554. (auth_mode == WMI_AUTH_OPEN &&
  5555. roam_req->mdid.mdie_present &&
  5556. roam_req->is_11r_assoc) ||
  5557. roam_req->is_ese_assoc)) {
  5558. len += WMI_TLV_HDR_SIZE;
  5559. if (roam_req->is_ese_assoc)
  5560. len +=
  5561. sizeof(wmi_roam_ese_offload_tlv_param);
  5562. else if (auth_mode == WMI_AUTH_FT_RSNA ||
  5563. auth_mode == WMI_AUTH_FT_RSNA_PSK ||
  5564. (auth_mode == WMI_AUTH_OPEN &&
  5565. roam_req->mdid.mdie_present &&
  5566. roam_req->is_11r_assoc))
  5567. len +=
  5568. sizeof(wmi_roam_11r_offload_tlv_param);
  5569. else
  5570. len +=
  5571. sizeof(wmi_roam_11i_offload_tlv_param);
  5572. } else {
  5573. len += WMI_TLV_HDR_SIZE;
  5574. }
  5575. len += (sizeof(*assoc_ies) + (2*WMI_TLV_HDR_SIZE)
  5576. + roundup(roam_req->assoc_ie_length,
  5577. sizeof(uint32_t)));
  5578. if (roam_req->add_fils_tlv) {
  5579. fils_tlv_len = sizeof(
  5580. wmi_roam_fils_offload_tlv_param);
  5581. len += WMI_TLV_HDR_SIZE + fils_tlv_len;
  5582. }
  5583. } else {
  5584. if (roam_req->is_roam_req_valid)
  5585. WMI_LOGD("%s : roam offload = %d",
  5586. __func__, roam_req->roam_offload_enabled);
  5587. else
  5588. WMI_LOGD("%s : roam_req is NULL", __func__);
  5589. len += (4 * WMI_TLV_HDR_SIZE);
  5590. }
  5591. if (roam_req->is_roam_req_valid &&
  5592. roam_req->roam_offload_enabled) {
  5593. roam_req->mode = roam_req->mode |
  5594. WMI_ROAM_SCAN_MODE_ROAMOFFLOAD;
  5595. }
  5596. #endif /* WLAN_FEATURE_ROAM_OFFLOAD */
  5597. if (roam_req->mode == (WMI_ROAM_SCAN_MODE_NONE
  5598. |WMI_ROAM_SCAN_MODE_ROAMOFFLOAD))
  5599. len = sizeof(wmi_roam_scan_mode_fixed_param);
  5600. buf = wmi_buf_alloc(wmi_handle, len);
  5601. if (!buf) {
  5602. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  5603. return QDF_STATUS_E_NOMEM;
  5604. }
  5605. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  5606. roam_scan_mode_fp = (wmi_roam_scan_mode_fixed_param *) buf_ptr;
  5607. WMITLV_SET_HDR(&roam_scan_mode_fp->tlv_header,
  5608. WMITLV_TAG_STRUC_wmi_roam_scan_mode_fixed_param,
  5609. WMITLV_GET_STRUCT_TLVLEN
  5610. (wmi_roam_scan_mode_fixed_param));
  5611. roam_scan_mode_fp->min_delay_roam_trigger_reason_bitmask =
  5612. roam_req->roam_trigger_reason_bitmask;
  5613. roam_scan_mode_fp->min_delay_btw_scans =
  5614. WMI_SEC_TO_MSEC(roam_req->min_delay_btw_roam_scans);
  5615. roam_scan_mode_fp->roam_scan_mode = roam_req->mode;
  5616. roam_scan_mode_fp->vdev_id = roam_req->vdev_id;
  5617. if (roam_req->mode == (WMI_ROAM_SCAN_MODE_NONE |
  5618. WMI_ROAM_SCAN_MODE_ROAMOFFLOAD)) {
  5619. roam_scan_mode_fp->flags |=
  5620. WMI_ROAM_SCAN_MODE_FLAG_REPORT_STATUS;
  5621. goto send_roam_scan_mode_cmd;
  5622. }
  5623. /* Fill in scan parameters suitable for roaming scan */
  5624. buf_ptr += sizeof(wmi_roam_scan_mode_fixed_param);
  5625. qdf_mem_copy(buf_ptr, scan_cmd_fp,
  5626. sizeof(wmi_start_scan_cmd_fixed_param));
  5627. /* Ensure there is no additional IEs */
  5628. scan_cmd_fp->ie_len = 0;
  5629. WMITLV_SET_HDR(buf_ptr,
  5630. WMITLV_TAG_STRUC_wmi_start_scan_cmd_fixed_param,
  5631. WMITLV_GET_STRUCT_TLVLEN
  5632. (wmi_start_scan_cmd_fixed_param));
  5633. #ifdef WLAN_FEATURE_ROAM_OFFLOAD
  5634. buf_ptr += sizeof(wmi_start_scan_cmd_fixed_param);
  5635. if (roam_req->is_roam_req_valid && roam_req->roam_offload_enabled) {
  5636. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5637. sizeof(wmi_roam_offload_tlv_param));
  5638. buf_ptr += WMI_TLV_HDR_SIZE;
  5639. roam_offload_params = (wmi_roam_offload_tlv_param *) buf_ptr;
  5640. WMITLV_SET_HDR(buf_ptr,
  5641. WMITLV_TAG_STRUC_wmi_roam_offload_tlv_param,
  5642. WMITLV_GET_STRUCT_TLVLEN
  5643. (wmi_roam_offload_tlv_param));
  5644. roam_offload_params->prefer_5g = roam_req->prefer_5ghz;
  5645. roam_offload_params->rssi_cat_gap = roam_req->roam_rssi_cat_gap;
  5646. roam_offload_params->select_5g_margin =
  5647. roam_req->select_5ghz_margin;
  5648. roam_offload_params->handoff_delay_for_rx =
  5649. roam_req->roam_offload_params.ho_delay_for_rx;
  5650. roam_offload_params->reassoc_failure_timeout =
  5651. roam_req->reassoc_failure_timeout;
  5652. /* Fill the capabilities */
  5653. roam_offload_params->capability =
  5654. roam_req->roam_offload_params.capability;
  5655. roam_offload_params->ht_caps_info =
  5656. roam_req->roam_offload_params.ht_caps_info;
  5657. roam_offload_params->ampdu_param =
  5658. roam_req->roam_offload_params.ampdu_param;
  5659. roam_offload_params->ht_ext_cap =
  5660. roam_req->roam_offload_params.ht_ext_cap;
  5661. roam_offload_params->ht_txbf =
  5662. roam_req->roam_offload_params.ht_txbf;
  5663. roam_offload_params->asel_cap =
  5664. roam_req->roam_offload_params.asel_cap;
  5665. roam_offload_params->qos_caps =
  5666. roam_req->roam_offload_params.qos_caps;
  5667. roam_offload_params->qos_enabled =
  5668. roam_req->roam_offload_params.qos_enabled;
  5669. roam_offload_params->wmm_caps =
  5670. roam_req->roam_offload_params.wmm_caps;
  5671. qdf_mem_copy((uint8_t *)roam_offload_params->mcsset,
  5672. (uint8_t *)roam_req->roam_offload_params.mcsset,
  5673. ROAM_OFFLOAD_NUM_MCS_SET);
  5674. buf_ptr += sizeof(wmi_roam_offload_tlv_param);
  5675. /* The TLV's are in the order of 11i, 11R, ESE. Hence,
  5676. * they are filled in the same order.Depending on the
  5677. * authentication type, the other mode TLV's are nullified
  5678. * and only headers are filled.*/
  5679. if ((auth_mode != WMI_AUTH_NONE) &&
  5680. ((auth_mode != WMI_AUTH_OPEN) ||
  5681. (auth_mode == WMI_AUTH_OPEN
  5682. && roam_req->mdid.mdie_present &&
  5683. roam_req->is_11r_assoc) ||
  5684. roam_req->is_ese_assoc)) {
  5685. if (roam_req->is_ese_assoc) {
  5686. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5687. WMITLV_GET_STRUCT_TLVLEN(0));
  5688. buf_ptr += WMI_TLV_HDR_SIZE;
  5689. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5690. WMITLV_GET_STRUCT_TLVLEN(0));
  5691. buf_ptr += WMI_TLV_HDR_SIZE;
  5692. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5693. sizeof(wmi_roam_ese_offload_tlv_param));
  5694. buf_ptr += WMI_TLV_HDR_SIZE;
  5695. roam_offload_ese =
  5696. (wmi_roam_ese_offload_tlv_param *) buf_ptr;
  5697. qdf_mem_copy(roam_offload_ese->krk,
  5698. roam_req->krk,
  5699. sizeof(roam_req->krk));
  5700. qdf_mem_copy(roam_offload_ese->btk,
  5701. roam_req->btk,
  5702. sizeof(roam_req->btk));
  5703. WMITLV_SET_HDR(&roam_offload_ese->tlv_header,
  5704. WMITLV_TAG_STRUC_wmi_roam_ese_offload_tlv_param,
  5705. WMITLV_GET_STRUCT_TLVLEN
  5706. (wmi_roam_ese_offload_tlv_param));
  5707. buf_ptr +=
  5708. sizeof(wmi_roam_ese_offload_tlv_param);
  5709. } else if (auth_mode == WMI_AUTH_FT_RSNA
  5710. || auth_mode == WMI_AUTH_FT_RSNA_PSK
  5711. || (auth_mode == WMI_AUTH_OPEN
  5712. && roam_req->mdid.mdie_present &&
  5713. roam_req->is_11r_assoc)) {
  5714. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5715. 0);
  5716. buf_ptr += WMI_TLV_HDR_SIZE;
  5717. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5718. sizeof(wmi_roam_11r_offload_tlv_param));
  5719. buf_ptr += WMI_TLV_HDR_SIZE;
  5720. roam_offload_11r =
  5721. (wmi_roam_11r_offload_tlv_param *) buf_ptr;
  5722. roam_offload_11r->r0kh_id_len =
  5723. roam_req->rokh_id_length;
  5724. qdf_mem_copy(roam_offload_11r->r0kh_id,
  5725. roam_req->rokh_id,
  5726. roam_offload_11r->r0kh_id_len);
  5727. qdf_mem_copy(roam_offload_11r->psk_msk,
  5728. roam_req->psk_pmk,
  5729. sizeof(roam_req->psk_pmk));
  5730. roam_offload_11r->psk_msk_len =
  5731. roam_req->pmk_len;
  5732. roam_offload_11r->mdie_present =
  5733. roam_req->mdid.mdie_present;
  5734. roam_offload_11r->mdid =
  5735. roam_req->mdid.mobility_domain;
  5736. if (auth_mode == WMI_AUTH_OPEN) {
  5737. /* If FT-Open ensure pmk length
  5738. and r0khid len are zero */
  5739. roam_offload_11r->r0kh_id_len = 0;
  5740. roam_offload_11r->psk_msk_len = 0;
  5741. }
  5742. WMITLV_SET_HDR(&roam_offload_11r->tlv_header,
  5743. WMITLV_TAG_STRUC_wmi_roam_11r_offload_tlv_param,
  5744. WMITLV_GET_STRUCT_TLVLEN
  5745. (wmi_roam_11r_offload_tlv_param));
  5746. buf_ptr +=
  5747. sizeof(wmi_roam_11r_offload_tlv_param);
  5748. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5749. WMITLV_GET_STRUCT_TLVLEN(0));
  5750. buf_ptr += WMI_TLV_HDR_SIZE;
  5751. WMI_LOGD("psk_msk_len = %d",
  5752. roam_offload_11r->psk_msk_len);
  5753. if (roam_offload_11r->psk_msk_len)
  5754. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI,
  5755. QDF_TRACE_LEVEL_DEBUG,
  5756. roam_offload_11r->psk_msk,
  5757. roam_offload_11r->psk_msk_len);
  5758. } else {
  5759. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5760. sizeof(wmi_roam_11i_offload_tlv_param));
  5761. buf_ptr += WMI_TLV_HDR_SIZE;
  5762. roam_offload_11i =
  5763. (wmi_roam_11i_offload_tlv_param *) buf_ptr;
  5764. if (roam_req->roam_key_mgmt_offload_enabled &&
  5765. roam_req->fw_okc) {
  5766. WMI_SET_ROAM_OFFLOAD_OKC_ENABLED
  5767. (roam_offload_11i->flags);
  5768. WMI_LOGI("LFR3:OKC enabled");
  5769. } else {
  5770. WMI_SET_ROAM_OFFLOAD_OKC_DISABLED
  5771. (roam_offload_11i->flags);
  5772. WMI_LOGI("LFR3:OKC disabled");
  5773. }
  5774. if (roam_req->roam_key_mgmt_offload_enabled &&
  5775. roam_req->fw_pmksa_cache) {
  5776. WMI_SET_ROAM_OFFLOAD_PMK_CACHE_ENABLED
  5777. (roam_offload_11i->flags);
  5778. WMI_LOGI("LFR3:PMKSA caching enabled");
  5779. } else {
  5780. WMI_SET_ROAM_OFFLOAD_PMK_CACHE_DISABLED
  5781. (roam_offload_11i->flags);
  5782. WMI_LOGI("LFR3:PMKSA caching disabled");
  5783. }
  5784. qdf_mem_copy(roam_offload_11i->pmk,
  5785. roam_req->psk_pmk,
  5786. sizeof(roam_req->psk_pmk));
  5787. roam_offload_11i->pmk_len = roam_req->pmk_len;
  5788. WMITLV_SET_HDR(&roam_offload_11i->tlv_header,
  5789. WMITLV_TAG_STRUC_wmi_roam_11i_offload_tlv_param,
  5790. WMITLV_GET_STRUCT_TLVLEN
  5791. (wmi_roam_11i_offload_tlv_param));
  5792. buf_ptr +=
  5793. sizeof(wmi_roam_11i_offload_tlv_param);
  5794. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5795. 0);
  5796. buf_ptr += WMI_TLV_HDR_SIZE;
  5797. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5798. 0);
  5799. buf_ptr += WMI_TLV_HDR_SIZE;
  5800. WMI_LOGD("pmk_len = %d",
  5801. roam_offload_11i->pmk_len);
  5802. if (roam_offload_11i->pmk_len)
  5803. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI,
  5804. QDF_TRACE_LEVEL_DEBUG,
  5805. roam_offload_11i->pmk,
  5806. roam_offload_11i->pmk_len);
  5807. }
  5808. } else {
  5809. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5810. WMITLV_GET_STRUCT_TLVLEN(0));
  5811. buf_ptr += WMI_TLV_HDR_SIZE;
  5812. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5813. WMITLV_GET_STRUCT_TLVLEN(0));
  5814. buf_ptr += WMI_TLV_HDR_SIZE;
  5815. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5816. WMITLV_GET_STRUCT_TLVLEN(0));
  5817. buf_ptr += WMI_TLV_HDR_SIZE;
  5818. }
  5819. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5820. sizeof(*assoc_ies));
  5821. buf_ptr += WMI_TLV_HDR_SIZE;
  5822. assoc_ies = (wmi_tlv_buf_len_param *) buf_ptr;
  5823. WMITLV_SET_HDR(&assoc_ies->tlv_header,
  5824. WMITLV_TAG_STRUC_wmi_tlv_buf_len_param,
  5825. WMITLV_GET_STRUCT_TLVLEN(wmi_tlv_buf_len_param));
  5826. assoc_ies->buf_len = roam_req->assoc_ie_length;
  5827. buf_ptr += sizeof(*assoc_ies);
  5828. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  5829. roundup(assoc_ies->buf_len, sizeof(uint32_t)));
  5830. buf_ptr += WMI_TLV_HDR_SIZE;
  5831. if (assoc_ies->buf_len != 0) {
  5832. qdf_mem_copy(buf_ptr, roam_req->assoc_ie,
  5833. assoc_ies->buf_len);
  5834. }
  5835. buf_ptr += qdf_roundup(assoc_ies->buf_len, sizeof(uint32_t));
  5836. buf_ptr = wmi_add_fils_tlv(wmi_handle, roam_req,
  5837. buf_ptr, fils_tlv_len);
  5838. } else {
  5839. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5840. WMITLV_GET_STRUCT_TLVLEN(0));
  5841. buf_ptr += WMI_TLV_HDR_SIZE;
  5842. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5843. WMITLV_GET_STRUCT_TLVLEN(0));
  5844. buf_ptr += WMI_TLV_HDR_SIZE;
  5845. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5846. WMITLV_GET_STRUCT_TLVLEN(0));
  5847. buf_ptr += WMI_TLV_HDR_SIZE;
  5848. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5849. WMITLV_GET_STRUCT_TLVLEN(0));
  5850. buf_ptr += WMI_TLV_HDR_SIZE;
  5851. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  5852. WMITLV_GET_STRUCT_TLVLEN(0));
  5853. buf_ptr += WMI_TLV_HDR_SIZE;
  5854. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  5855. WMITLV_GET_STRUCT_TLVLEN(0));
  5856. }
  5857. #endif /* WLAN_FEATURE_ROAM_OFFLOAD */
  5858. send_roam_scan_mode_cmd:
  5859. status = wmi_unified_cmd_send(wmi_handle, buf,
  5860. len, WMI_ROAM_SCAN_MODE);
  5861. if (QDF_IS_STATUS_ERROR(status)) {
  5862. WMI_LOGE(
  5863. "wmi_unified_cmd_send WMI_ROAM_SCAN_MODE returned Error %d",
  5864. status);
  5865. wmi_buf_free(buf);
  5866. }
  5867. return status;
  5868. }
  5869. static QDF_STATUS send_roam_mawc_params_cmd_tlv(wmi_unified_t wmi_handle,
  5870. struct wmi_mawc_roam_params *params)
  5871. {
  5872. wmi_buf_t buf = NULL;
  5873. QDF_STATUS status;
  5874. int len;
  5875. uint8_t *buf_ptr;
  5876. wmi_roam_configure_mawc_cmd_fixed_param *wmi_roam_mawc_params;
  5877. len = sizeof(*wmi_roam_mawc_params);
  5878. buf = wmi_buf_alloc(wmi_handle, len);
  5879. if (!buf) {
  5880. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  5881. return QDF_STATUS_E_NOMEM;
  5882. }
  5883. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  5884. wmi_roam_mawc_params =
  5885. (wmi_roam_configure_mawc_cmd_fixed_param *) buf_ptr;
  5886. WMITLV_SET_HDR(&wmi_roam_mawc_params->tlv_header,
  5887. WMITLV_TAG_STRUC_wmi_roam_configure_mawc_cmd_fixed_param,
  5888. WMITLV_GET_STRUCT_TLVLEN
  5889. (wmi_roam_configure_mawc_cmd_fixed_param));
  5890. wmi_roam_mawc_params->vdev_id = params->vdev_id;
  5891. if (params->enable)
  5892. wmi_roam_mawc_params->enable = 1;
  5893. else
  5894. wmi_roam_mawc_params->enable = 0;
  5895. wmi_roam_mawc_params->traffic_load_threshold =
  5896. params->traffic_load_threshold;
  5897. wmi_roam_mawc_params->best_ap_rssi_threshold =
  5898. params->best_ap_rssi_threshold;
  5899. wmi_roam_mawc_params->rssi_stationary_high_adjust =
  5900. params->rssi_stationary_high_adjust;
  5901. wmi_roam_mawc_params->rssi_stationary_low_adjust =
  5902. params->rssi_stationary_low_adjust;
  5903. WMI_LOGD(FL("MAWC roam en=%d, vdev=%d, tr=%d, ap=%d, high=%d, low=%d"),
  5904. wmi_roam_mawc_params->enable, wmi_roam_mawc_params->vdev_id,
  5905. wmi_roam_mawc_params->traffic_load_threshold,
  5906. wmi_roam_mawc_params->best_ap_rssi_threshold,
  5907. wmi_roam_mawc_params->rssi_stationary_high_adjust,
  5908. wmi_roam_mawc_params->rssi_stationary_low_adjust);
  5909. status = wmi_unified_cmd_send(wmi_handle, buf,
  5910. len, WMI_ROAM_CONFIGURE_MAWC_CMDID);
  5911. if (QDF_IS_STATUS_ERROR(status)) {
  5912. WMI_LOGE("WMI_ROAM_CONFIGURE_MAWC_CMDID failed, Error %d",
  5913. status);
  5914. wmi_buf_free(buf);
  5915. return status;
  5916. }
  5917. return QDF_STATUS_SUCCESS;
  5918. }
  5919. /**
  5920. * send_roam_scan_offload_rssi_thresh_cmd_tlv() - set scan offload
  5921. * rssi threashold
  5922. * @wmi_handle: wmi handle
  5923. * @roam_req: Roaming request buffer
  5924. *
  5925. * Send WMI_ROAM_SCAN_RSSI_THRESHOLD TLV to firmware
  5926. *
  5927. * Return: QDF status
  5928. */
  5929. static QDF_STATUS send_roam_scan_offload_rssi_thresh_cmd_tlv(wmi_unified_t wmi_handle,
  5930. struct roam_offload_scan_rssi_params *roam_req)
  5931. {
  5932. wmi_buf_t buf = NULL;
  5933. QDF_STATUS status;
  5934. int len;
  5935. uint8_t *buf_ptr;
  5936. wmi_roam_scan_rssi_threshold_fixed_param *rssi_threshold_fp;
  5937. wmi_roam_scan_extended_threshold_param *ext_thresholds = NULL;
  5938. wmi_roam_earlystop_rssi_thres_param *early_stop_thresholds = NULL;
  5939. wmi_roam_dense_thres_param *dense_thresholds = NULL;
  5940. wmi_roam_bg_scan_roaming_param *bg_scan_params = NULL;
  5941. len = sizeof(wmi_roam_scan_rssi_threshold_fixed_param);
  5942. len += WMI_TLV_HDR_SIZE; /* TLV for ext_thresholds*/
  5943. len += sizeof(wmi_roam_scan_extended_threshold_param);
  5944. len += WMI_TLV_HDR_SIZE;
  5945. len += sizeof(wmi_roam_earlystop_rssi_thres_param);
  5946. len += WMI_TLV_HDR_SIZE; /* TLV for dense thresholds*/
  5947. len += sizeof(wmi_roam_dense_thres_param);
  5948. len += WMI_TLV_HDR_SIZE; /* TLV for BG Scan*/
  5949. len += sizeof(wmi_roam_bg_scan_roaming_param);
  5950. buf = wmi_buf_alloc(wmi_handle, len);
  5951. if (!buf) {
  5952. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  5953. return QDF_STATUS_E_NOMEM;
  5954. }
  5955. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  5956. rssi_threshold_fp =
  5957. (wmi_roam_scan_rssi_threshold_fixed_param *) buf_ptr;
  5958. WMITLV_SET_HDR(&rssi_threshold_fp->tlv_header,
  5959. WMITLV_TAG_STRUC_wmi_roam_scan_rssi_threshold_fixed_param,
  5960. WMITLV_GET_STRUCT_TLVLEN
  5961. (wmi_roam_scan_rssi_threshold_fixed_param));
  5962. /* fill in threshold values */
  5963. rssi_threshold_fp->vdev_id = roam_req->session_id;
  5964. rssi_threshold_fp->roam_scan_rssi_thresh = roam_req->rssi_thresh;
  5965. rssi_threshold_fp->roam_rssi_thresh_diff = roam_req->rssi_thresh_diff;
  5966. rssi_threshold_fp->hirssi_scan_max_count =
  5967. roam_req->hi_rssi_scan_max_count;
  5968. rssi_threshold_fp->hirssi_scan_delta =
  5969. roam_req->hi_rssi_scan_rssi_delta;
  5970. rssi_threshold_fp->hirssi_upper_bound = roam_req->hi_rssi_scan_rssi_ub;
  5971. rssi_threshold_fp->rssi_thresh_offset_5g =
  5972. roam_req->rssi_thresh_offset_5g;
  5973. buf_ptr += sizeof(wmi_roam_scan_rssi_threshold_fixed_param);
  5974. WMITLV_SET_HDR(buf_ptr,
  5975. WMITLV_TAG_ARRAY_STRUC,
  5976. sizeof(wmi_roam_scan_extended_threshold_param));
  5977. buf_ptr += WMI_TLV_HDR_SIZE;
  5978. ext_thresholds = (wmi_roam_scan_extended_threshold_param *) buf_ptr;
  5979. ext_thresholds->penalty_threshold_5g = roam_req->penalty_threshold_5g;
  5980. if (roam_req->raise_rssi_thresh_5g >= WMI_NOISE_FLOOR_DBM_DEFAULT)
  5981. ext_thresholds->boost_threshold_5g =
  5982. roam_req->boost_threshold_5g;
  5983. ext_thresholds->boost_algorithm_5g =
  5984. WMI_ROAM_5G_BOOST_PENALIZE_ALGO_LINEAR;
  5985. ext_thresholds->boost_factor_5g = roam_req->raise_factor_5g;
  5986. ext_thresholds->penalty_algorithm_5g =
  5987. WMI_ROAM_5G_BOOST_PENALIZE_ALGO_LINEAR;
  5988. ext_thresholds->penalty_factor_5g = roam_req->drop_factor_5g;
  5989. ext_thresholds->max_boost_5g = roam_req->max_raise_rssi_5g;
  5990. ext_thresholds->max_penalty_5g = roam_req->max_drop_rssi_5g;
  5991. ext_thresholds->good_rssi_threshold = roam_req->good_rssi_threshold;
  5992. WMITLV_SET_HDR(&ext_thresholds->tlv_header,
  5993. WMITLV_TAG_STRUC_wmi_roam_scan_extended_threshold_param,
  5994. WMITLV_GET_STRUCT_TLVLEN
  5995. (wmi_roam_scan_extended_threshold_param));
  5996. buf_ptr += sizeof(wmi_roam_scan_extended_threshold_param);
  5997. WMITLV_SET_HDR(buf_ptr,
  5998. WMITLV_TAG_ARRAY_STRUC,
  5999. sizeof(wmi_roam_earlystop_rssi_thres_param));
  6000. buf_ptr += WMI_TLV_HDR_SIZE;
  6001. early_stop_thresholds = (wmi_roam_earlystop_rssi_thres_param *) buf_ptr;
  6002. early_stop_thresholds->roam_earlystop_thres_min =
  6003. roam_req->roam_earlystop_thres_min;
  6004. early_stop_thresholds->roam_earlystop_thres_max =
  6005. roam_req->roam_earlystop_thres_max;
  6006. WMITLV_SET_HDR(&early_stop_thresholds->tlv_header,
  6007. WMITLV_TAG_STRUC_wmi_roam_earlystop_rssi_thres_param,
  6008. WMITLV_GET_STRUCT_TLVLEN
  6009. (wmi_roam_earlystop_rssi_thres_param));
  6010. buf_ptr += sizeof(wmi_roam_earlystop_rssi_thres_param);
  6011. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  6012. sizeof(wmi_roam_dense_thres_param));
  6013. buf_ptr += WMI_TLV_HDR_SIZE;
  6014. dense_thresholds = (wmi_roam_dense_thres_param *) buf_ptr;
  6015. dense_thresholds->roam_dense_rssi_thres_offset =
  6016. roam_req->dense_rssi_thresh_offset;
  6017. dense_thresholds->roam_dense_min_aps = roam_req->dense_min_aps_cnt;
  6018. dense_thresholds->roam_dense_traffic_thres =
  6019. roam_req->traffic_threshold;
  6020. dense_thresholds->roam_dense_status = roam_req->initial_dense_status;
  6021. WMITLV_SET_HDR(&dense_thresholds->tlv_header,
  6022. WMITLV_TAG_STRUC_wmi_roam_dense_thres_param,
  6023. WMITLV_GET_STRUCT_TLVLEN
  6024. (wmi_roam_dense_thres_param));
  6025. buf_ptr += sizeof(wmi_roam_dense_thres_param);
  6026. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  6027. sizeof(wmi_roam_bg_scan_roaming_param));
  6028. buf_ptr += WMI_TLV_HDR_SIZE;
  6029. bg_scan_params = (wmi_roam_bg_scan_roaming_param *) buf_ptr;
  6030. bg_scan_params->roam_bg_scan_bad_rssi_thresh =
  6031. roam_req->bg_scan_bad_rssi_thresh;
  6032. bg_scan_params->roam_bg_scan_client_bitmap =
  6033. roam_req->bg_scan_client_bitmap;
  6034. bg_scan_params->bad_rssi_thresh_offset_2g =
  6035. roam_req->roam_bad_rssi_thresh_offset_2g;
  6036. bg_scan_params->flags = roam_req->flags;
  6037. WMITLV_SET_HDR(&bg_scan_params->tlv_header,
  6038. WMITLV_TAG_STRUC_wmi_roam_bg_scan_roaming_param,
  6039. WMITLV_GET_STRUCT_TLVLEN
  6040. (wmi_roam_bg_scan_roaming_param));
  6041. status = wmi_unified_cmd_send(wmi_handle, buf,
  6042. len, WMI_ROAM_SCAN_RSSI_THRESHOLD);
  6043. if (QDF_IS_STATUS_ERROR(status)) {
  6044. WMI_LOGE("cmd WMI_ROAM_SCAN_RSSI_THRESHOLD returned Error %d",
  6045. status);
  6046. wmi_buf_free(buf);
  6047. }
  6048. return status;
  6049. }
  6050. /**
  6051. * send_adapt_dwelltime_params_cmd_tlv() - send wmi cmd of adaptive dwelltime
  6052. * configuration params
  6053. * @wma_handle: wma handler
  6054. * @dwelltime_params: pointer to dwelltime_params
  6055. *
  6056. * Return: QDF_STATUS_SUCCESS on success and QDF failure reason code for failure
  6057. */
  6058. static
  6059. QDF_STATUS send_adapt_dwelltime_params_cmd_tlv(wmi_unified_t wmi_handle,
  6060. struct wmi_adaptive_dwelltime_params *dwelltime_params)
  6061. {
  6062. wmi_scan_adaptive_dwell_config_fixed_param *dwell_param;
  6063. wmi_scan_adaptive_dwell_parameters_tlv *cmd;
  6064. wmi_buf_t buf;
  6065. uint8_t *buf_ptr;
  6066. int32_t err;
  6067. int len;
  6068. len = sizeof(wmi_scan_adaptive_dwell_config_fixed_param);
  6069. len += WMI_TLV_HDR_SIZE; /* TLV for ext_thresholds*/
  6070. len += sizeof(wmi_scan_adaptive_dwell_parameters_tlv);
  6071. buf = wmi_buf_alloc(wmi_handle, len);
  6072. if (!buf) {
  6073. WMI_LOGE("%s :Failed to allocate buffer to send cmd",
  6074. __func__);
  6075. return QDF_STATUS_E_NOMEM;
  6076. }
  6077. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  6078. dwell_param = (wmi_scan_adaptive_dwell_config_fixed_param *) buf_ptr;
  6079. WMITLV_SET_HDR(&dwell_param->tlv_header,
  6080. WMITLV_TAG_STRUC_wmi_scan_adaptive_dwell_config_fixed_param,
  6081. WMITLV_GET_STRUCT_TLVLEN
  6082. (wmi_scan_adaptive_dwell_config_fixed_param));
  6083. dwell_param->enable = dwelltime_params->is_enabled;
  6084. buf_ptr += sizeof(wmi_scan_adaptive_dwell_config_fixed_param);
  6085. WMITLV_SET_HDR(buf_ptr,
  6086. WMITLV_TAG_ARRAY_STRUC,
  6087. sizeof(wmi_scan_adaptive_dwell_parameters_tlv));
  6088. buf_ptr += WMI_TLV_HDR_SIZE;
  6089. cmd = (wmi_scan_adaptive_dwell_parameters_tlv *) buf_ptr;
  6090. WMITLV_SET_HDR(&cmd->tlv_header,
  6091. WMITLV_TAG_STRUC_wmi_scan_adaptive_dwell_parameters_tlv,
  6092. WMITLV_GET_STRUCT_TLVLEN(
  6093. wmi_scan_adaptive_dwell_parameters_tlv));
  6094. cmd->default_adaptive_dwell_mode = dwelltime_params->dwelltime_mode;
  6095. cmd->adapative_lpf_weight = dwelltime_params->lpf_weight;
  6096. cmd->passive_monitor_interval_ms = dwelltime_params->passive_mon_intval;
  6097. cmd->wifi_activity_threshold_pct = dwelltime_params->wifi_act_threshold;
  6098. err = wmi_unified_cmd_send(wmi_handle, buf,
  6099. len, WMI_SCAN_ADAPTIVE_DWELL_CONFIG_CMDID);
  6100. if (err) {
  6101. WMI_LOGE("Failed to send adapt dwelltime cmd err=%d", err);
  6102. wmi_buf_free(buf);
  6103. return QDF_STATUS_E_FAILURE;
  6104. }
  6105. return QDF_STATUS_SUCCESS;
  6106. }
  6107. /**
  6108. * send_dbs_scan_sel_params_cmd_tlv() - send wmi cmd of DBS scan selection
  6109. * configuration params
  6110. * @wmi_handle: wmi handler
  6111. * @dbs_scan_params: pointer to wmi_dbs_scan_sel_params
  6112. *
  6113. * Return: QDF_STATUS_SUCCESS on success and QDF failure reason code for failure
  6114. */
  6115. static QDF_STATUS send_dbs_scan_sel_params_cmd_tlv(wmi_unified_t wmi_handle,
  6116. struct wmi_dbs_scan_sel_params *dbs_scan_params)
  6117. {
  6118. wmi_scan_dbs_duty_cycle_fixed_param *dbs_scan_param;
  6119. wmi_scan_dbs_duty_cycle_tlv_param *cmd;
  6120. wmi_buf_t buf;
  6121. uint8_t *buf_ptr;
  6122. QDF_STATUS err;
  6123. uint32_t i;
  6124. int len;
  6125. len = sizeof(*dbs_scan_param);
  6126. len += WMI_TLV_HDR_SIZE;
  6127. len += dbs_scan_params->num_clients * sizeof(*cmd);
  6128. buf = wmi_buf_alloc(wmi_handle, len);
  6129. if (!buf) {
  6130. WMI_LOGE("%s:Failed to allocate buffer to send cmd", __func__);
  6131. return QDF_STATUS_E_NOMEM;
  6132. }
  6133. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  6134. dbs_scan_param = (wmi_scan_dbs_duty_cycle_fixed_param *) buf_ptr;
  6135. WMITLV_SET_HDR(&dbs_scan_param->tlv_header,
  6136. WMITLV_TAG_STRUC_wmi_scan_dbs_duty_cycle_fixed_param,
  6137. WMITLV_GET_STRUCT_TLVLEN
  6138. (wmi_scan_dbs_duty_cycle_fixed_param));
  6139. dbs_scan_param->num_clients = dbs_scan_params->num_clients;
  6140. dbs_scan_param->pdev_id = dbs_scan_params->pdev_id;
  6141. buf_ptr += sizeof(*dbs_scan_param);
  6142. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  6143. (sizeof(*cmd) * dbs_scan_params->num_clients));
  6144. buf_ptr = buf_ptr + (uint8_t) WMI_TLV_HDR_SIZE;
  6145. for (i = 0; i < dbs_scan_params->num_clients; i++) {
  6146. cmd = (wmi_scan_dbs_duty_cycle_tlv_param *) buf_ptr;
  6147. WMITLV_SET_HDR(&cmd->tlv_header,
  6148. WMITLV_TAG_STRUC_wmi_scan_dbs_duty_cycle_param_tlv,
  6149. WMITLV_GET_STRUCT_TLVLEN(
  6150. wmi_scan_dbs_duty_cycle_tlv_param));
  6151. cmd->module_id = dbs_scan_params->module_id[i];
  6152. cmd->num_dbs_scans = dbs_scan_params->num_dbs_scans[i];
  6153. cmd->num_non_dbs_scans = dbs_scan_params->num_non_dbs_scans[i];
  6154. buf_ptr = buf_ptr + (uint8_t) sizeof(*cmd);
  6155. }
  6156. err = wmi_unified_cmd_send(wmi_handle, buf,
  6157. len, WMI_SET_SCAN_DBS_DUTY_CYCLE_CMDID);
  6158. if (QDF_IS_STATUS_ERROR(err)) {
  6159. WMI_LOGE("Failed to send dbs scan selection cmd err=%d", err);
  6160. wmi_buf_free(buf);
  6161. return QDF_STATUS_E_FAILURE;
  6162. }
  6163. return QDF_STATUS_SUCCESS;
  6164. }
  6165. /**
  6166. * send_roam_scan_filter_cmd_tlv() - Filter to be applied while roaming
  6167. * @wmi_handle: wmi handle
  6168. * @roam_req: Request which contains the filters
  6169. *
  6170. * There are filters such as whitelist, blacklist and preferred
  6171. * list that need to be applied to the scan results to form the
  6172. * probable candidates for roaming.
  6173. *
  6174. * Return: Return success upon successfully passing the
  6175. * parameters to the firmware, otherwise failure.
  6176. */
  6177. static QDF_STATUS send_roam_scan_filter_cmd_tlv(wmi_unified_t wmi_handle,
  6178. struct roam_scan_filter_params *roam_req)
  6179. {
  6180. wmi_buf_t buf = NULL;
  6181. QDF_STATUS status;
  6182. uint32_t i;
  6183. uint32_t len, blist_len = 0;
  6184. uint8_t *buf_ptr;
  6185. wmi_roam_filter_fixed_param *roam_filter;
  6186. uint8_t *bssid_src_ptr = NULL;
  6187. wmi_mac_addr *bssid_dst_ptr = NULL;
  6188. wmi_ssid *ssid_ptr = NULL;
  6189. uint32_t *bssid_preferred_factor_ptr = NULL;
  6190. wmi_roam_lca_disallow_config_tlv_param *blist_param;
  6191. wmi_roam_rssi_rejection_oce_config_param *rssi_rej;
  6192. len = sizeof(wmi_roam_filter_fixed_param);
  6193. len += WMI_TLV_HDR_SIZE;
  6194. if (roam_req->num_bssid_black_list)
  6195. len += roam_req->num_bssid_black_list * sizeof(wmi_mac_addr);
  6196. len += WMI_TLV_HDR_SIZE;
  6197. if (roam_req->num_ssid_white_list)
  6198. len += roam_req->num_ssid_white_list * sizeof(wmi_ssid);
  6199. len += 2 * WMI_TLV_HDR_SIZE;
  6200. if (roam_req->num_bssid_preferred_list) {
  6201. len += roam_req->num_bssid_preferred_list * sizeof(wmi_mac_addr);
  6202. len += roam_req->num_bssid_preferred_list * sizeof(uint32_t);
  6203. }
  6204. len += WMI_TLV_HDR_SIZE;
  6205. if (roam_req->lca_disallow_config_present) {
  6206. len += sizeof(*blist_param);
  6207. blist_len = sizeof(*blist_param);
  6208. }
  6209. len += WMI_TLV_HDR_SIZE;
  6210. if (roam_req->num_rssi_rejection_ap)
  6211. len += roam_req->num_rssi_rejection_ap * sizeof(*rssi_rej);
  6212. buf = wmi_buf_alloc(wmi_handle, len);
  6213. if (!buf) {
  6214. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  6215. return QDF_STATUS_E_NOMEM;
  6216. }
  6217. buf_ptr = (u_int8_t *) wmi_buf_data(buf);
  6218. roam_filter = (wmi_roam_filter_fixed_param *) buf_ptr;
  6219. WMITLV_SET_HDR(&roam_filter->tlv_header,
  6220. WMITLV_TAG_STRUC_wmi_roam_filter_fixed_param,
  6221. WMITLV_GET_STRUCT_TLVLEN(wmi_roam_filter_fixed_param));
  6222. /* fill in fixed values */
  6223. roam_filter->vdev_id = roam_req->session_id;
  6224. roam_filter->flags = 0;
  6225. roam_filter->op_bitmap = roam_req->op_bitmap;
  6226. roam_filter->num_bssid_black_list = roam_req->num_bssid_black_list;
  6227. roam_filter->num_ssid_white_list = roam_req->num_ssid_white_list;
  6228. roam_filter->num_bssid_preferred_list =
  6229. roam_req->num_bssid_preferred_list;
  6230. roam_filter->num_rssi_rejection_ap =
  6231. roam_req->num_rssi_rejection_ap;
  6232. buf_ptr += sizeof(wmi_roam_filter_fixed_param);
  6233. WMITLV_SET_HDR((buf_ptr),
  6234. WMITLV_TAG_ARRAY_FIXED_STRUC,
  6235. (roam_req->num_bssid_black_list * sizeof(wmi_mac_addr)));
  6236. bssid_src_ptr = (uint8_t *)&roam_req->bssid_avoid_list;
  6237. bssid_dst_ptr = (wmi_mac_addr *)(buf_ptr + WMI_TLV_HDR_SIZE);
  6238. for (i = 0; i < roam_req->num_bssid_black_list; i++) {
  6239. WMI_CHAR_ARRAY_TO_MAC_ADDR(bssid_src_ptr, bssid_dst_ptr);
  6240. bssid_src_ptr += ATH_MAC_LEN;
  6241. bssid_dst_ptr++;
  6242. }
  6243. buf_ptr += WMI_TLV_HDR_SIZE +
  6244. (roam_req->num_bssid_black_list * sizeof(wmi_mac_addr));
  6245. WMITLV_SET_HDR((buf_ptr),
  6246. WMITLV_TAG_ARRAY_FIXED_STRUC,
  6247. (roam_req->num_ssid_white_list * sizeof(wmi_ssid)));
  6248. ssid_ptr = (wmi_ssid *)(buf_ptr + WMI_TLV_HDR_SIZE);
  6249. for (i = 0; i < roam_req->num_ssid_white_list; i++) {
  6250. qdf_mem_copy(&ssid_ptr->ssid,
  6251. &roam_req->ssid_allowed_list[i].mac_ssid,
  6252. roam_req->ssid_allowed_list[i].length);
  6253. ssid_ptr->ssid_len = roam_req->ssid_allowed_list[i].length;
  6254. ssid_ptr++;
  6255. }
  6256. buf_ptr += WMI_TLV_HDR_SIZE + (roam_req->num_ssid_white_list *
  6257. sizeof(wmi_ssid));
  6258. WMITLV_SET_HDR((buf_ptr),
  6259. WMITLV_TAG_ARRAY_FIXED_STRUC,
  6260. (roam_req->num_bssid_preferred_list * sizeof(wmi_mac_addr)));
  6261. bssid_src_ptr = (uint8_t *)&roam_req->bssid_favored;
  6262. bssid_dst_ptr = (wmi_mac_addr *)(buf_ptr + WMI_TLV_HDR_SIZE);
  6263. for (i = 0; i < roam_req->num_bssid_preferred_list; i++) {
  6264. WMI_CHAR_ARRAY_TO_MAC_ADDR(bssid_src_ptr,
  6265. (wmi_mac_addr *)bssid_dst_ptr);
  6266. bssid_src_ptr += ATH_MAC_LEN;
  6267. bssid_dst_ptr++;
  6268. }
  6269. buf_ptr += WMI_TLV_HDR_SIZE +
  6270. (roam_req->num_bssid_preferred_list * sizeof(wmi_mac_addr));
  6271. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  6272. (roam_req->num_bssid_preferred_list * sizeof(uint32_t)));
  6273. bssid_preferred_factor_ptr = (uint32_t *)(buf_ptr + WMI_TLV_HDR_SIZE);
  6274. for (i = 0; i < roam_req->num_bssid_preferred_list; i++) {
  6275. *bssid_preferred_factor_ptr =
  6276. roam_req->bssid_favored_factor[i];
  6277. bssid_preferred_factor_ptr++;
  6278. }
  6279. buf_ptr += WMI_TLV_HDR_SIZE +
  6280. (roam_req->num_bssid_preferred_list * sizeof(uint32_t));
  6281. WMITLV_SET_HDR(buf_ptr,
  6282. WMITLV_TAG_ARRAY_STRUC, blist_len);
  6283. buf_ptr += WMI_TLV_HDR_SIZE;
  6284. if (roam_req->lca_disallow_config_present) {
  6285. blist_param =
  6286. (wmi_roam_lca_disallow_config_tlv_param *) buf_ptr;
  6287. WMITLV_SET_HDR(&blist_param->tlv_header,
  6288. WMITLV_TAG_STRUC_wmi_roam_lca_disallow_config_tlv_param,
  6289. WMITLV_GET_STRUCT_TLVLEN(
  6290. wmi_roam_lca_disallow_config_tlv_param));
  6291. blist_param->disallow_duration = roam_req->disallow_duration;
  6292. blist_param->rssi_channel_penalization =
  6293. roam_req->rssi_channel_penalization;
  6294. blist_param->num_disallowed_aps = roam_req->num_disallowed_aps;
  6295. blist_param->disallow_lca_enable_source_bitmap =
  6296. (WMI_ROAM_LCA_DISALLOW_SOURCE_PER |
  6297. WMI_ROAM_LCA_DISALLOW_SOURCE_BACKGROUND);
  6298. buf_ptr += (sizeof(wmi_roam_lca_disallow_config_tlv_param));
  6299. }
  6300. WMITLV_SET_HDR(buf_ptr,
  6301. WMITLV_TAG_ARRAY_STRUC,
  6302. (roam_req->num_rssi_rejection_ap * sizeof(*rssi_rej)));
  6303. buf_ptr += WMI_TLV_HDR_SIZE;
  6304. for (i = 0; i < roam_req->num_rssi_rejection_ap; i++) {
  6305. rssi_rej =
  6306. (wmi_roam_rssi_rejection_oce_config_param *) buf_ptr;
  6307. WMITLV_SET_HDR(&rssi_rej->tlv_header,
  6308. WMITLV_TAG_STRUC_wmi_roam_rssi_rejection_oce_config_param,
  6309. WMITLV_GET_STRUCT_TLVLEN(
  6310. wmi_roam_rssi_rejection_oce_config_param));
  6311. WMI_CHAR_ARRAY_TO_MAC_ADDR(
  6312. roam_req->rssi_rejection_ap[i].bssid.bytes,
  6313. &rssi_rej->bssid);
  6314. rssi_rej->remaining_disallow_duration =
  6315. roam_req->rssi_rejection_ap[i].remaining_duration;
  6316. rssi_rej->requested_rssi =
  6317. (int32_t)roam_req->rssi_rejection_ap[i].expected_rssi;
  6318. buf_ptr +=
  6319. (sizeof(wmi_roam_rssi_rejection_oce_config_param));
  6320. }
  6321. status = wmi_unified_cmd_send(wmi_handle, buf,
  6322. len, WMI_ROAM_FILTER_CMDID);
  6323. if (QDF_IS_STATUS_ERROR(status)) {
  6324. WMI_LOGE("cmd WMI_ROAM_FILTER_CMDID returned Error %d",
  6325. status);
  6326. wmi_buf_free(buf);
  6327. }
  6328. return status;
  6329. }
  6330. #if defined(WLAN_FEATURE_FILS_SK)
  6331. static QDF_STATUS send_roam_scan_send_hlp_cmd_tlv(wmi_unified_t wmi_handle,
  6332. struct hlp_params *params)
  6333. {
  6334. uint32_t len;
  6335. uint8_t *buf_ptr;
  6336. wmi_buf_t buf = NULL;
  6337. wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param *hlp_params;
  6338. len = sizeof(wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param);
  6339. len += WMI_TLV_HDR_SIZE;
  6340. len += qdf_roundup(params->hlp_ie_len, sizeof(uint32_t));
  6341. buf = wmi_buf_alloc(wmi_handle, len);
  6342. if (!buf) {
  6343. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  6344. return QDF_STATUS_E_NOMEM;
  6345. }
  6346. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  6347. hlp_params = (wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param *) buf_ptr;
  6348. WMITLV_SET_HDR(&hlp_params->tlv_header,
  6349. WMITLV_TAG_STRUC_wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param,
  6350. WMITLV_GET_STRUCT_TLVLEN(
  6351. wmi_pdev_update_fils_hlp_pkt_cmd_fixed_param));
  6352. hlp_params->vdev_id = params->vdev_id;
  6353. hlp_params->size = params->hlp_ie_len;
  6354. hlp_params->pkt_type = WMI_FILS_HLP_PKT_TYPE_DHCP_DISCOVER;
  6355. buf_ptr += sizeof(*hlp_params);
  6356. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  6357. round_up(params->hlp_ie_len,
  6358. sizeof(uint32_t)));
  6359. buf_ptr += WMI_TLV_HDR_SIZE;
  6360. qdf_mem_copy(buf_ptr, params->hlp_ie, params->hlp_ie_len);
  6361. WMI_LOGD(FL("send FILS HLP pkt vdev %d len %d"),
  6362. hlp_params->vdev_id, hlp_params->size);
  6363. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  6364. WMI_PDEV_UPDATE_FILS_HLP_PKT_CMDID)) {
  6365. WMI_LOGE(FL("Failed to send FILS HLP pkt cmd"));
  6366. wmi_buf_free(buf);
  6367. return QDF_STATUS_E_FAILURE;
  6368. }
  6369. return QDF_STATUS_SUCCESS;
  6370. }
  6371. #endif
  6372. #ifdef IPA_OFFLOAD
  6373. /** send_ipa_offload_control_cmd_tlv() - ipa offload control parameter
  6374. * @wmi_handle: wmi handle
  6375. * @ipa_offload: ipa offload control parameter
  6376. *
  6377. * Returns: 0 on success, error number otherwise
  6378. */
  6379. static QDF_STATUS send_ipa_offload_control_cmd_tlv(wmi_unified_t wmi_handle,
  6380. struct ipa_uc_offload_control_params *ipa_offload)
  6381. {
  6382. wmi_ipa_offload_enable_disable_cmd_fixed_param *cmd;
  6383. wmi_buf_t wmi_buf;
  6384. uint32_t len;
  6385. u_int8_t *buf_ptr;
  6386. len = sizeof(*cmd);
  6387. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  6388. if (!wmi_buf) {
  6389. WMI_LOGE("%s: wmi_buf_alloc failed (len=%d)", __func__, len);
  6390. return QDF_STATUS_E_NOMEM;
  6391. }
  6392. WMI_LOGD("%s: offload_type=%d, enable=%d", __func__,
  6393. ipa_offload->offload_type, ipa_offload->enable);
  6394. buf_ptr = (u_int8_t *)wmi_buf_data(wmi_buf);
  6395. cmd = (wmi_ipa_offload_enable_disable_cmd_fixed_param *)buf_ptr;
  6396. WMITLV_SET_HDR(&cmd->tlv_header,
  6397. WMITLV_TAG_STRUCT_wmi_ipa_offload_enable_disable_cmd_fixed_param,
  6398. WMITLV_GET_STRUCT_TLVLEN(
  6399. wmi_ipa_offload_enable_disable_cmd_fixed_param));
  6400. cmd->offload_type = ipa_offload->offload_type;
  6401. cmd->vdev_id = ipa_offload->vdev_id;
  6402. cmd->enable = ipa_offload->enable;
  6403. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  6404. WMI_IPA_OFFLOAD_ENABLE_DISABLE_CMDID)) {
  6405. WMI_LOGE("%s: failed to command", __func__);
  6406. wmi_buf_free(wmi_buf);
  6407. return QDF_STATUS_E_FAILURE;
  6408. }
  6409. return QDF_STATUS_SUCCESS;
  6410. }
  6411. #endif
  6412. /**
  6413. * send_plm_stop_cmd_tlv() - plm stop request
  6414. * @wmi_handle: wmi handle
  6415. * @plm: plm request parameters
  6416. *
  6417. * This function request FW to stop PLM.
  6418. *
  6419. * Return: CDF status
  6420. */
  6421. static QDF_STATUS send_plm_stop_cmd_tlv(wmi_unified_t wmi_handle,
  6422. const struct plm_req_params *plm)
  6423. {
  6424. wmi_vdev_plmreq_stop_cmd_fixed_param *cmd;
  6425. int32_t len;
  6426. wmi_buf_t buf;
  6427. uint8_t *buf_ptr;
  6428. int ret;
  6429. len = sizeof(*cmd);
  6430. buf = wmi_buf_alloc(wmi_handle, len);
  6431. if (!buf) {
  6432. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  6433. return QDF_STATUS_E_NOMEM;
  6434. }
  6435. cmd = (wmi_vdev_plmreq_stop_cmd_fixed_param *) wmi_buf_data(buf);
  6436. buf_ptr = (uint8_t *) cmd;
  6437. WMITLV_SET_HDR(&cmd->tlv_header,
  6438. WMITLV_TAG_STRUC_wmi_vdev_plmreq_stop_cmd_fixed_param,
  6439. WMITLV_GET_STRUCT_TLVLEN
  6440. (wmi_vdev_plmreq_stop_cmd_fixed_param));
  6441. cmd->vdev_id = plm->session_id;
  6442. cmd->meas_token = plm->meas_token;
  6443. WMI_LOGD("vdev %d meas token %d", cmd->vdev_id, cmd->meas_token);
  6444. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  6445. WMI_VDEV_PLMREQ_STOP_CMDID);
  6446. if (ret) {
  6447. WMI_LOGE("%s: Failed to send plm stop wmi cmd", __func__);
  6448. wmi_buf_free(buf);
  6449. return QDF_STATUS_E_FAILURE;
  6450. }
  6451. return QDF_STATUS_SUCCESS;
  6452. }
  6453. /**
  6454. * send_plm_start_cmd_tlv() - plm start request
  6455. * @wmi_handle: wmi handle
  6456. * @plm: plm request parameters
  6457. *
  6458. * This function request FW to start PLM.
  6459. *
  6460. * Return: CDF status
  6461. */
  6462. static QDF_STATUS send_plm_start_cmd_tlv(wmi_unified_t wmi_handle,
  6463. const struct plm_req_params *plm,
  6464. uint32_t *gchannel_list)
  6465. {
  6466. wmi_vdev_plmreq_start_cmd_fixed_param *cmd;
  6467. uint32_t *channel_list;
  6468. int32_t len;
  6469. wmi_buf_t buf;
  6470. uint8_t *buf_ptr;
  6471. uint8_t count;
  6472. int ret;
  6473. /* TLV place holder for channel_list */
  6474. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  6475. len += sizeof(uint32_t) * plm->plm_num_ch;
  6476. buf = wmi_buf_alloc(wmi_handle, len);
  6477. if (!buf) {
  6478. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  6479. return QDF_STATUS_E_NOMEM;
  6480. }
  6481. cmd = (wmi_vdev_plmreq_start_cmd_fixed_param *) wmi_buf_data(buf);
  6482. buf_ptr = (uint8_t *) cmd;
  6483. WMITLV_SET_HDR(&cmd->tlv_header,
  6484. WMITLV_TAG_STRUC_wmi_vdev_plmreq_start_cmd_fixed_param,
  6485. WMITLV_GET_STRUCT_TLVLEN
  6486. (wmi_vdev_plmreq_start_cmd_fixed_param));
  6487. cmd->vdev_id = plm->session_id;
  6488. cmd->meas_token = plm->meas_token;
  6489. cmd->dialog_token = plm->diag_token;
  6490. cmd->number_bursts = plm->num_bursts;
  6491. cmd->burst_interval = WMI_SEC_TO_MSEC(plm->burst_int);
  6492. cmd->off_duration = plm->meas_duration;
  6493. cmd->burst_cycle = plm->burst_len;
  6494. cmd->tx_power = plm->desired_tx_pwr;
  6495. WMI_CHAR_ARRAY_TO_MAC_ADDR(plm->mac_addr.bytes, &cmd->dest_mac);
  6496. cmd->num_chans = plm->plm_num_ch;
  6497. buf_ptr += sizeof(wmi_vdev_plmreq_start_cmd_fixed_param);
  6498. WMI_LOGD("vdev : %d measu token : %d", cmd->vdev_id, cmd->meas_token);
  6499. WMI_LOGD("dialog_token: %d", cmd->dialog_token);
  6500. WMI_LOGD("number_bursts: %d", cmd->number_bursts);
  6501. WMI_LOGD("burst_interval: %d", cmd->burst_interval);
  6502. WMI_LOGD("off_duration: %d", cmd->off_duration);
  6503. WMI_LOGD("burst_cycle: %d", cmd->burst_cycle);
  6504. WMI_LOGD("tx_power: %d", cmd->tx_power);
  6505. WMI_LOGD("Number of channels : %d", cmd->num_chans);
  6506. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  6507. (cmd->num_chans * sizeof(uint32_t)));
  6508. buf_ptr += WMI_TLV_HDR_SIZE;
  6509. if (cmd->num_chans) {
  6510. channel_list = (uint32_t *) buf_ptr;
  6511. for (count = 0; count < cmd->num_chans; count++) {
  6512. channel_list[count] = plm->plm_ch_list[count];
  6513. if (channel_list[count] < WMI_NLO_FREQ_THRESH)
  6514. channel_list[count] =
  6515. gchannel_list[count];
  6516. WMI_LOGD("Ch[%d]: %d MHz", count, channel_list[count]);
  6517. }
  6518. buf_ptr += cmd->num_chans * sizeof(uint32_t);
  6519. }
  6520. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  6521. WMI_VDEV_PLMREQ_START_CMDID);
  6522. if (ret) {
  6523. WMI_LOGE("%s: Failed to send plm start wmi cmd", __func__);
  6524. wmi_buf_free(buf);
  6525. return QDF_STATUS_E_FAILURE;
  6526. }
  6527. return QDF_STATUS_SUCCESS;
  6528. }
  6529. /**
  6530. * send_pno_stop_cmd_tlv() - PNO stop request
  6531. * @wmi_handle: wmi handle
  6532. * @vdev_id: vdev id
  6533. *
  6534. * This function request FW to stop ongoing PNO operation.
  6535. *
  6536. * Return: CDF status
  6537. */
  6538. static QDF_STATUS send_pno_stop_cmd_tlv(wmi_unified_t wmi_handle, uint8_t vdev_id)
  6539. {
  6540. wmi_nlo_config_cmd_fixed_param *cmd;
  6541. int32_t len = sizeof(*cmd);
  6542. wmi_buf_t buf;
  6543. uint8_t *buf_ptr;
  6544. int ret;
  6545. /*
  6546. * TLV place holder for array of structures nlo_configured_parameters
  6547. * TLV place holder for array of uint32_t channel_list
  6548. * TLV place holder for chnl prediction cfg
  6549. */
  6550. len += WMI_TLV_HDR_SIZE + WMI_TLV_HDR_SIZE + WMI_TLV_HDR_SIZE;
  6551. buf = wmi_buf_alloc(wmi_handle, len);
  6552. if (!buf) {
  6553. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  6554. return QDF_STATUS_E_NOMEM;
  6555. }
  6556. cmd = (wmi_nlo_config_cmd_fixed_param *) wmi_buf_data(buf);
  6557. buf_ptr = (uint8_t *) cmd;
  6558. WMITLV_SET_HDR(&cmd->tlv_header,
  6559. WMITLV_TAG_STRUC_wmi_nlo_config_cmd_fixed_param,
  6560. WMITLV_GET_STRUCT_TLVLEN
  6561. (wmi_nlo_config_cmd_fixed_param));
  6562. cmd->vdev_id = vdev_id;
  6563. cmd->flags = WMI_NLO_CONFIG_STOP;
  6564. buf_ptr += sizeof(*cmd);
  6565. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  6566. buf_ptr += WMI_TLV_HDR_SIZE;
  6567. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, 0);
  6568. buf_ptr += WMI_TLV_HDR_SIZE;
  6569. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  6570. buf_ptr += WMI_TLV_HDR_SIZE;
  6571. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  6572. WMI_NETWORK_LIST_OFFLOAD_CONFIG_CMDID);
  6573. if (ret) {
  6574. WMI_LOGE("%s: Failed to send nlo wmi cmd", __func__);
  6575. wmi_buf_free(buf);
  6576. return QDF_STATUS_E_FAILURE;
  6577. }
  6578. return QDF_STATUS_SUCCESS;
  6579. }
  6580. /**
  6581. * wmi_set_pno_channel_prediction() - Set PNO channel prediction
  6582. * @buf_ptr: Buffer passed by upper layers
  6583. * @pno: Buffer to be sent to the firmware
  6584. *
  6585. * Copy the PNO Channel prediction configuration parameters
  6586. * passed by the upper layers to a WMI format TLV and send it
  6587. * down to the firmware.
  6588. *
  6589. * Return: None
  6590. */
  6591. static void wmi_set_pno_channel_prediction(uint8_t *buf_ptr,
  6592. struct pno_scan_req_params *pno)
  6593. {
  6594. nlo_channel_prediction_cfg *channel_prediction_cfg =
  6595. (nlo_channel_prediction_cfg *) buf_ptr;
  6596. WMITLV_SET_HDR(&channel_prediction_cfg->tlv_header,
  6597. WMITLV_TAG_ARRAY_BYTE,
  6598. WMITLV_GET_STRUCT_TLVLEN(nlo_channel_prediction_cfg));
  6599. #ifdef FEATURE_WLAN_SCAN_PNO
  6600. channel_prediction_cfg->enable = pno->pno_channel_prediction;
  6601. channel_prediction_cfg->top_k_num = pno->top_k_num_of_channels;
  6602. channel_prediction_cfg->stationary_threshold = pno->stationary_thresh;
  6603. channel_prediction_cfg->full_scan_period_ms =
  6604. pno->channel_prediction_full_scan;
  6605. #endif
  6606. buf_ptr += sizeof(nlo_channel_prediction_cfg);
  6607. WMI_LOGD("enable: %d, top_k_num: %d, stat_thresh: %d, full_scan: %d",
  6608. channel_prediction_cfg->enable,
  6609. channel_prediction_cfg->top_k_num,
  6610. channel_prediction_cfg->stationary_threshold,
  6611. channel_prediction_cfg->full_scan_period_ms);
  6612. }
  6613. /**
  6614. * send_nlo_mawc_cmd_tlv() - Send MAWC NLO configuration
  6615. * @wmi_handle: wmi handle
  6616. * @params: configuration parameters
  6617. *
  6618. * Return: QDF_STATUS
  6619. */
  6620. static QDF_STATUS send_nlo_mawc_cmd_tlv(wmi_unified_t wmi_handle,
  6621. struct nlo_mawc_params *params)
  6622. {
  6623. wmi_buf_t buf = NULL;
  6624. QDF_STATUS status;
  6625. int len;
  6626. uint8_t *buf_ptr;
  6627. wmi_nlo_configure_mawc_cmd_fixed_param *wmi_nlo_mawc_params;
  6628. len = sizeof(*wmi_nlo_mawc_params);
  6629. buf = wmi_buf_alloc(wmi_handle, len);
  6630. if (!buf) {
  6631. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  6632. return QDF_STATUS_E_NOMEM;
  6633. }
  6634. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  6635. wmi_nlo_mawc_params =
  6636. (wmi_nlo_configure_mawc_cmd_fixed_param *) buf_ptr;
  6637. WMITLV_SET_HDR(&wmi_nlo_mawc_params->tlv_header,
  6638. WMITLV_TAG_STRUC_wmi_nlo_configure_mawc_cmd_fixed_param,
  6639. WMITLV_GET_STRUCT_TLVLEN
  6640. (wmi_nlo_configure_mawc_cmd_fixed_param));
  6641. wmi_nlo_mawc_params->vdev_id = params->vdev_id;
  6642. if (params->enable)
  6643. wmi_nlo_mawc_params->enable = 1;
  6644. else
  6645. wmi_nlo_mawc_params->enable = 0;
  6646. wmi_nlo_mawc_params->exp_backoff_ratio = params->exp_backoff_ratio;
  6647. wmi_nlo_mawc_params->init_scan_interval = params->init_scan_interval;
  6648. wmi_nlo_mawc_params->max_scan_interval = params->max_scan_interval;
  6649. WMI_LOGD(FL("MAWC NLO en=%d, vdev=%d, ratio=%d, SCAN init=%d, max=%d"),
  6650. wmi_nlo_mawc_params->enable, wmi_nlo_mawc_params->vdev_id,
  6651. wmi_nlo_mawc_params->exp_backoff_ratio,
  6652. wmi_nlo_mawc_params->init_scan_interval,
  6653. wmi_nlo_mawc_params->max_scan_interval);
  6654. status = wmi_unified_cmd_send(wmi_handle, buf,
  6655. len, WMI_NLO_CONFIGURE_MAWC_CMDID);
  6656. if (QDF_IS_STATUS_ERROR(status)) {
  6657. WMI_LOGE("WMI_NLO_CONFIGURE_MAWC_CMDID failed, Error %d",
  6658. status);
  6659. wmi_buf_free(buf);
  6660. return QDF_STATUS_E_FAILURE;
  6661. }
  6662. return QDF_STATUS_SUCCESS;
  6663. }
  6664. /**
  6665. * send_pno_start_cmd_tlv() - PNO start request
  6666. * @wmi_handle: wmi handle
  6667. * @pno: PNO request
  6668. *
  6669. * This function request FW to start PNO request.
  6670. * Request: CDF status
  6671. */
  6672. static QDF_STATUS send_pno_start_cmd_tlv(wmi_unified_t wmi_handle,
  6673. struct pno_scan_req_params *pno)
  6674. {
  6675. wmi_nlo_config_cmd_fixed_param *cmd;
  6676. nlo_configured_parameters *nlo_list;
  6677. uint32_t *channel_list;
  6678. int32_t len;
  6679. wmi_buf_t buf;
  6680. uint8_t *buf_ptr;
  6681. uint8_t i;
  6682. int ret;
  6683. struct probe_req_whitelist_attr *ie_whitelist = &pno->ie_whitelist;
  6684. connected_nlo_rssi_params *nlo_relative_rssi;
  6685. connected_nlo_bss_band_rssi_pref *nlo_band_rssi;
  6686. /*
  6687. * TLV place holder for array nlo_configured_parameters(nlo_list)
  6688. * TLV place holder for array of uint32_t channel_list
  6689. * TLV place holder for chnnl prediction cfg
  6690. * TLV place holder for array of wmi_vendor_oui
  6691. * TLV place holder for array of connected_nlo_bss_band_rssi_pref
  6692. */
  6693. len = sizeof(*cmd) +
  6694. WMI_TLV_HDR_SIZE + WMI_TLV_HDR_SIZE + WMI_TLV_HDR_SIZE +
  6695. WMI_TLV_HDR_SIZE + WMI_TLV_HDR_SIZE;
  6696. len += sizeof(uint32_t) * QDF_MIN(pno->networks_list[0].channel_cnt,
  6697. WMI_NLO_MAX_CHAN);
  6698. len += sizeof(nlo_configured_parameters) *
  6699. QDF_MIN(pno->networks_cnt, WMI_NLO_MAX_SSIDS);
  6700. len += sizeof(nlo_channel_prediction_cfg);
  6701. len += sizeof(enlo_candidate_score_params);
  6702. len += sizeof(wmi_vendor_oui) * ie_whitelist->num_vendor_oui;
  6703. len += sizeof(connected_nlo_rssi_params);
  6704. len += sizeof(connected_nlo_bss_band_rssi_pref);
  6705. buf = wmi_buf_alloc(wmi_handle, len);
  6706. if (!buf) {
  6707. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  6708. return QDF_STATUS_E_NOMEM;
  6709. }
  6710. cmd = (wmi_nlo_config_cmd_fixed_param *) wmi_buf_data(buf);
  6711. buf_ptr = (uint8_t *) cmd;
  6712. WMITLV_SET_HDR(&cmd->tlv_header,
  6713. WMITLV_TAG_STRUC_wmi_nlo_config_cmd_fixed_param,
  6714. WMITLV_GET_STRUCT_TLVLEN
  6715. (wmi_nlo_config_cmd_fixed_param));
  6716. cmd->vdev_id = pno->vdev_id;
  6717. cmd->flags = WMI_NLO_CONFIG_START | WMI_NLO_CONFIG_SSID_HIDE_EN;
  6718. #ifdef FEATURE_WLAN_SCAN_PNO
  6719. WMI_SCAN_SET_DWELL_MODE(cmd->flags,
  6720. pno->adaptive_dwell_mode);
  6721. #endif
  6722. /* Current FW does not support min-max range for dwell time */
  6723. cmd->active_dwell_time = pno->active_dwell_time;
  6724. cmd->passive_dwell_time = pno->passive_dwell_time;
  6725. if (pno->do_passive_scan)
  6726. cmd->flags |= WMI_NLO_CONFIG_SCAN_PASSIVE;
  6727. /* Copy scan interval */
  6728. cmd->fast_scan_period = pno->fast_scan_period;
  6729. cmd->slow_scan_period = pno->slow_scan_period;
  6730. cmd->delay_start_time = WMI_SEC_TO_MSEC(pno->delay_start_time);
  6731. cmd->fast_scan_max_cycles = pno->fast_scan_max_cycles;
  6732. cmd->scan_backoff_multiplier = pno->scan_backoff_multiplier;
  6733. WMI_LOGD("fast_scan_period: %d msec slow_scan_period: %d msec",
  6734. cmd->fast_scan_period, cmd->slow_scan_period);
  6735. WMI_LOGD("fast_scan_max_cycles: %d", cmd->fast_scan_max_cycles);
  6736. /* mac randomization attributes */
  6737. if (pno->scan_random.randomize) {
  6738. cmd->flags |= WMI_NLO_CONFIG_SPOOFED_MAC_IN_PROBE_REQ |
  6739. WMI_NLO_CONFIG_RANDOM_SEQ_NO_IN_PROBE_REQ;
  6740. wmi_copy_scan_random_mac(pno->scan_random.mac_addr,
  6741. pno->scan_random.mac_mask,
  6742. &cmd->mac_addr,
  6743. &cmd->mac_mask);
  6744. }
  6745. buf_ptr += sizeof(wmi_nlo_config_cmd_fixed_param);
  6746. cmd->no_of_ssids = QDF_MIN(pno->networks_cnt, WMI_NLO_MAX_SSIDS);
  6747. WMI_LOGD("SSID count : %d", cmd->no_of_ssids);
  6748. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  6749. cmd->no_of_ssids * sizeof(nlo_configured_parameters));
  6750. buf_ptr += WMI_TLV_HDR_SIZE;
  6751. nlo_list = (nlo_configured_parameters *) buf_ptr;
  6752. for (i = 0; i < cmd->no_of_ssids; i++) {
  6753. WMITLV_SET_HDR(&nlo_list[i].tlv_header,
  6754. WMITLV_TAG_ARRAY_BYTE,
  6755. WMITLV_GET_STRUCT_TLVLEN
  6756. (nlo_configured_parameters));
  6757. /* Copy ssid and it's length */
  6758. nlo_list[i].ssid.valid = true;
  6759. nlo_list[i].ssid.ssid.ssid_len =
  6760. pno->networks_list[i].ssid.length;
  6761. qdf_mem_copy(nlo_list[i].ssid.ssid.ssid,
  6762. pno->networks_list[i].ssid.ssid,
  6763. nlo_list[i].ssid.ssid.ssid_len);
  6764. WMI_LOGD("index: %d ssid: %.*s len: %d", i,
  6765. nlo_list[i].ssid.ssid.ssid_len,
  6766. (char *)nlo_list[i].ssid.ssid.ssid,
  6767. nlo_list[i].ssid.ssid.ssid_len);
  6768. /* Copy rssi threshold */
  6769. if (pno->networks_list[i].rssi_thresh &&
  6770. pno->networks_list[i].rssi_thresh >
  6771. WMI_RSSI_THOLD_DEFAULT) {
  6772. nlo_list[i].rssi_cond.valid = true;
  6773. nlo_list[i].rssi_cond.rssi =
  6774. pno->networks_list[i].rssi_thresh;
  6775. WMI_LOGD("RSSI threshold : %d dBm",
  6776. nlo_list[i].rssi_cond.rssi);
  6777. }
  6778. nlo_list[i].bcast_nw_type.valid = true;
  6779. nlo_list[i].bcast_nw_type.bcast_nw_type =
  6780. pno->networks_list[i].bc_new_type;
  6781. WMI_LOGD("Broadcast NW type (%u)",
  6782. nlo_list[i].bcast_nw_type.bcast_nw_type);
  6783. }
  6784. buf_ptr += cmd->no_of_ssids * sizeof(nlo_configured_parameters);
  6785. /* Copy channel info */
  6786. cmd->num_of_channels = QDF_MIN(pno->networks_list[0].channel_cnt,
  6787. WMI_NLO_MAX_CHAN);
  6788. WMI_LOGD("Channel count: %d", cmd->num_of_channels);
  6789. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  6790. (cmd->num_of_channels * sizeof(uint32_t)));
  6791. buf_ptr += WMI_TLV_HDR_SIZE;
  6792. channel_list = (uint32_t *) buf_ptr;
  6793. for (i = 0; i < cmd->num_of_channels; i++) {
  6794. channel_list[i] = pno->networks_list[0].channels[i];
  6795. if (channel_list[i] < WMI_NLO_FREQ_THRESH)
  6796. channel_list[i] =
  6797. wlan_chan_to_freq(pno->
  6798. networks_list[0].channels[i]);
  6799. WMI_LOGD("Ch[%d]: %d MHz", i, channel_list[i]);
  6800. }
  6801. buf_ptr += cmd->num_of_channels * sizeof(uint32_t);
  6802. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  6803. sizeof(nlo_channel_prediction_cfg));
  6804. buf_ptr += WMI_TLV_HDR_SIZE;
  6805. wmi_set_pno_channel_prediction(buf_ptr, pno);
  6806. buf_ptr += sizeof(nlo_channel_prediction_cfg);
  6807. /** TODO: Discrete firmware doesn't have command/option to configure
  6808. * App IE which comes from wpa_supplicant as of part PNO start request.
  6809. */
  6810. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_STRUC_enlo_candidate_score_param,
  6811. WMITLV_GET_STRUCT_TLVLEN(enlo_candidate_score_params));
  6812. buf_ptr += sizeof(enlo_candidate_score_params);
  6813. if (ie_whitelist->white_list) {
  6814. cmd->flags |= WMI_NLO_CONFIG_ENABLE_IE_WHITELIST_IN_PROBE_REQ;
  6815. wmi_fill_ie_whitelist_attrs(cmd->ie_bitmap,
  6816. &cmd->num_vendor_oui,
  6817. ie_whitelist);
  6818. }
  6819. /* ie white list */
  6820. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  6821. ie_whitelist->num_vendor_oui * sizeof(wmi_vendor_oui));
  6822. buf_ptr += WMI_TLV_HDR_SIZE;
  6823. if (cmd->num_vendor_oui != 0) {
  6824. wmi_fill_vendor_oui(buf_ptr, cmd->num_vendor_oui,
  6825. ie_whitelist->voui);
  6826. buf_ptr += cmd->num_vendor_oui * sizeof(wmi_vendor_oui);
  6827. }
  6828. if (pno->relative_rssi_set)
  6829. cmd->flags |= WMI_NLO_CONFIG_ENABLE_CNLO_RSSI_CONFIG;
  6830. /*
  6831. * Firmware calculation using connected PNO params:
  6832. * New AP's RSSI >= (Connected AP's RSSI + relative_rssi +/- rssi_pref)
  6833. * deduction of rssi_pref for chosen band_pref and
  6834. * addition of rssi_pref for remaining bands (other than chosen band).
  6835. */
  6836. nlo_relative_rssi = (connected_nlo_rssi_params *) buf_ptr;
  6837. WMITLV_SET_HDR(&nlo_relative_rssi->tlv_header,
  6838. WMITLV_TAG_STRUC_wmi_connected_nlo_rssi_params,
  6839. WMITLV_GET_STRUCT_TLVLEN(connected_nlo_rssi_params));
  6840. nlo_relative_rssi->relative_rssi = pno->relative_rssi;
  6841. WMI_LOGD("relative_rssi %d", nlo_relative_rssi->relative_rssi);
  6842. buf_ptr += sizeof(*nlo_relative_rssi);
  6843. /*
  6844. * As of now Kernel and Host supports one band and rssi preference.
  6845. * Firmware supports array of band and rssi preferences
  6846. */
  6847. cmd->num_cnlo_band_pref = 1;
  6848. WMITLV_SET_HDR(buf_ptr,
  6849. WMITLV_TAG_ARRAY_STRUC,
  6850. cmd->num_cnlo_band_pref *
  6851. sizeof(connected_nlo_bss_band_rssi_pref));
  6852. buf_ptr += WMI_TLV_HDR_SIZE;
  6853. nlo_band_rssi = (connected_nlo_bss_band_rssi_pref *) buf_ptr;
  6854. for (i = 0; i < cmd->num_cnlo_band_pref; i++) {
  6855. WMITLV_SET_HDR(&nlo_band_rssi[i].tlv_header,
  6856. WMITLV_TAG_STRUC_wmi_connected_nlo_bss_band_rssi_pref,
  6857. WMITLV_GET_STRUCT_TLVLEN(
  6858. connected_nlo_bss_band_rssi_pref));
  6859. nlo_band_rssi[i].band = pno->band_rssi_pref.band;
  6860. nlo_band_rssi[i].rssi_pref = pno->band_rssi_pref.rssi;
  6861. WMI_LOGI("band_pref %d, rssi_pref %d",
  6862. nlo_band_rssi[i].band,
  6863. nlo_band_rssi[i].rssi_pref);
  6864. }
  6865. buf_ptr += cmd->num_cnlo_band_pref * sizeof(*nlo_band_rssi);
  6866. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  6867. WMI_NETWORK_LIST_OFFLOAD_CONFIG_CMDID);
  6868. if (ret) {
  6869. WMI_LOGE("%s: Failed to send nlo wmi cmd", __func__);
  6870. wmi_buf_free(buf);
  6871. return QDF_STATUS_E_FAILURE;
  6872. }
  6873. return QDF_STATUS_SUCCESS;
  6874. }
  6875. /* send_set_ric_req_cmd_tlv() - set ric request element
  6876. * @wmi_handle: wmi handle
  6877. * @msg: message
  6878. * @is_add_ts: is addts required
  6879. *
  6880. * This function sets ric request element for 11r roaming.
  6881. *
  6882. * Return: CDF status
  6883. */
  6884. static QDF_STATUS send_set_ric_req_cmd_tlv(wmi_unified_t wmi_handle,
  6885. void *msg, uint8_t is_add_ts)
  6886. {
  6887. wmi_ric_request_fixed_param *cmd;
  6888. wmi_ric_tspec *tspec_param;
  6889. wmi_buf_t buf;
  6890. uint8_t *buf_ptr;
  6891. struct mac_tspec_ie *ptspecIE = NULL;
  6892. int32_t len = sizeof(wmi_ric_request_fixed_param) +
  6893. WMI_TLV_HDR_SIZE + sizeof(wmi_ric_tspec);
  6894. buf = wmi_buf_alloc(wmi_handle, len);
  6895. if (!buf) {
  6896. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  6897. return QDF_STATUS_E_NOMEM;
  6898. }
  6899. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  6900. cmd = (wmi_ric_request_fixed_param *) buf_ptr;
  6901. WMITLV_SET_HDR(&cmd->tlv_header,
  6902. WMITLV_TAG_STRUC_wmi_ric_request_fixed_param,
  6903. WMITLV_GET_STRUCT_TLVLEN(wmi_ric_request_fixed_param));
  6904. if (is_add_ts)
  6905. cmd->vdev_id = ((struct add_ts_param *) msg)->sme_session_id;
  6906. else
  6907. cmd->vdev_id = ((struct del_ts_params *) msg)->sessionId;
  6908. cmd->num_ric_request = 1;
  6909. cmd->is_add_ric = is_add_ts;
  6910. buf_ptr += sizeof(wmi_ric_request_fixed_param);
  6911. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, sizeof(wmi_ric_tspec));
  6912. buf_ptr += WMI_TLV_HDR_SIZE;
  6913. tspec_param = (wmi_ric_tspec *) buf_ptr;
  6914. WMITLV_SET_HDR(&tspec_param->tlv_header,
  6915. WMITLV_TAG_STRUC_wmi_ric_tspec,
  6916. WMITLV_GET_STRUCT_TLVLEN(wmi_ric_tspec));
  6917. if (is_add_ts)
  6918. ptspecIE = &(((struct add_ts_param *) msg)->tspec);
  6919. #ifdef WLAN_FEATURE_ROAM_OFFLOAD
  6920. else
  6921. ptspecIE = &(((struct del_ts_params *) msg)->delTsInfo.tspec);
  6922. #endif
  6923. if (ptspecIE) {
  6924. /* Fill the tsinfo in the format expected by firmware */
  6925. #ifndef ANI_LITTLE_BIT_ENDIAN
  6926. qdf_mem_copy(((uint8_t *) &tspec_param->ts_info) + 1,
  6927. ((uint8_t *) &ptspecIE->tsinfo) + 1, 2);
  6928. #else
  6929. qdf_mem_copy(((uint8_t *) &tspec_param->ts_info),
  6930. ((uint8_t *) &ptspecIE->tsinfo) + 1, 2);
  6931. #endif /* ANI_LITTLE_BIT_ENDIAN */
  6932. tspec_param->nominal_msdu_size = ptspecIE->nomMsduSz;
  6933. tspec_param->maximum_msdu_size = ptspecIE->maxMsduSz;
  6934. tspec_param->min_service_interval = ptspecIE->minSvcInterval;
  6935. tspec_param->max_service_interval = ptspecIE->maxSvcInterval;
  6936. tspec_param->inactivity_interval = ptspecIE->inactInterval;
  6937. tspec_param->suspension_interval = ptspecIE->suspendInterval;
  6938. tspec_param->svc_start_time = ptspecIE->svcStartTime;
  6939. tspec_param->min_data_rate = ptspecIE->minDataRate;
  6940. tspec_param->mean_data_rate = ptspecIE->meanDataRate;
  6941. tspec_param->peak_data_rate = ptspecIE->peakDataRate;
  6942. tspec_param->max_burst_size = ptspecIE->maxBurstSz;
  6943. tspec_param->delay_bound = ptspecIE->delayBound;
  6944. tspec_param->min_phy_rate = ptspecIE->minPhyRate;
  6945. tspec_param->surplus_bw_allowance = ptspecIE->surplusBw;
  6946. tspec_param->medium_time = 0;
  6947. }
  6948. WMI_LOGI("%s: Set RIC Req is_add_ts:%d", __func__, is_add_ts);
  6949. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  6950. WMI_ROAM_SET_RIC_REQUEST_CMDID)) {
  6951. WMI_LOGP("%s: Failed to send vdev Set RIC Req command",
  6952. __func__);
  6953. if (is_add_ts)
  6954. ((struct add_ts_param *) msg)->status =
  6955. QDF_STATUS_E_FAILURE;
  6956. wmi_buf_free(buf);
  6957. return QDF_STATUS_E_FAILURE;
  6958. }
  6959. return QDF_STATUS_SUCCESS;
  6960. }
  6961. #ifdef WLAN_FEATURE_LINK_LAYER_STATS
  6962. /**
  6963. * send_process_ll_stats_clear_cmd_tlv() - clear link layer stats
  6964. * @wmi_handle: wmi handle
  6965. * @clear_req: ll stats clear request command params
  6966. *
  6967. * Return: QDF_STATUS_SUCCESS for success or error code
  6968. */
  6969. static QDF_STATUS send_process_ll_stats_clear_cmd_tlv(wmi_unified_t wmi_handle,
  6970. const struct ll_stats_clear_params *clear_req,
  6971. uint8_t addr[IEEE80211_ADDR_LEN])
  6972. {
  6973. wmi_clear_link_stats_cmd_fixed_param *cmd;
  6974. int32_t len;
  6975. wmi_buf_t buf;
  6976. uint8_t *buf_ptr;
  6977. int ret;
  6978. len = sizeof(*cmd);
  6979. buf = wmi_buf_alloc(wmi_handle, len);
  6980. if (!buf) {
  6981. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  6982. return QDF_STATUS_E_NOMEM;
  6983. }
  6984. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  6985. qdf_mem_zero(buf_ptr, len);
  6986. cmd = (wmi_clear_link_stats_cmd_fixed_param *) buf_ptr;
  6987. WMITLV_SET_HDR(&cmd->tlv_header,
  6988. WMITLV_TAG_STRUC_wmi_clear_link_stats_cmd_fixed_param,
  6989. WMITLV_GET_STRUCT_TLVLEN
  6990. (wmi_clear_link_stats_cmd_fixed_param));
  6991. cmd->stop_stats_collection_req = clear_req->stop_req;
  6992. cmd->vdev_id = clear_req->sta_id;
  6993. cmd->stats_clear_req_mask = clear_req->stats_clear_mask;
  6994. WMI_CHAR_ARRAY_TO_MAC_ADDR(addr,
  6995. &cmd->peer_macaddr);
  6996. WMI_LOGD("LINK_LAYER_STATS - Clear Request Params");
  6997. WMI_LOGD("StopReq : %d", cmd->stop_stats_collection_req);
  6998. WMI_LOGD("Vdev Id : %d", cmd->vdev_id);
  6999. WMI_LOGD("Clear Stat Mask : %d", cmd->stats_clear_req_mask);
  7000. /* WMI_LOGD("Peer MAC Addr : %pM",
  7001. cmd->peer_macaddr); */
  7002. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7003. WMI_CLEAR_LINK_STATS_CMDID);
  7004. if (ret) {
  7005. WMI_LOGE("%s: Failed to send clear link stats req", __func__);
  7006. wmi_buf_free(buf);
  7007. return QDF_STATUS_E_FAILURE;
  7008. }
  7009. WMI_LOGD("Clear Link Layer Stats request sent successfully");
  7010. return QDF_STATUS_SUCCESS;
  7011. }
  7012. /**
  7013. * send_process_ll_stats_set_cmd_tlv() - link layer stats set request
  7014. * @wmi_handle: wmi handle
  7015. * @setReq: ll stats set request command params
  7016. *
  7017. * Return: QDF_STATUS_SUCCESS for success or error code
  7018. */
  7019. static QDF_STATUS send_process_ll_stats_set_cmd_tlv(wmi_unified_t wmi_handle,
  7020. const struct ll_stats_set_params *set_req)
  7021. {
  7022. wmi_start_link_stats_cmd_fixed_param *cmd;
  7023. int32_t len;
  7024. wmi_buf_t buf;
  7025. uint8_t *buf_ptr;
  7026. int ret;
  7027. len = sizeof(*cmd);
  7028. buf = wmi_buf_alloc(wmi_handle, len);
  7029. if (!buf) {
  7030. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  7031. return QDF_STATUS_E_NOMEM;
  7032. }
  7033. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  7034. qdf_mem_zero(buf_ptr, len);
  7035. cmd = (wmi_start_link_stats_cmd_fixed_param *) buf_ptr;
  7036. WMITLV_SET_HDR(&cmd->tlv_header,
  7037. WMITLV_TAG_STRUC_wmi_start_link_stats_cmd_fixed_param,
  7038. WMITLV_GET_STRUCT_TLVLEN
  7039. (wmi_start_link_stats_cmd_fixed_param));
  7040. cmd->mpdu_size_threshold = set_req->mpdu_size_threshold;
  7041. cmd->aggressive_statistics_gathering =
  7042. set_req->aggressive_statistics_gathering;
  7043. WMI_LOGD("LINK_LAYER_STATS - Start/Set Request Params");
  7044. WMI_LOGD("MPDU Size Thresh : %d", cmd->mpdu_size_threshold);
  7045. WMI_LOGD("Aggressive Gather: %d", cmd->aggressive_statistics_gathering);
  7046. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7047. WMI_START_LINK_STATS_CMDID);
  7048. if (ret) {
  7049. WMI_LOGE("%s: Failed to send set link stats request", __func__);
  7050. wmi_buf_free(buf);
  7051. return QDF_STATUS_E_FAILURE;
  7052. }
  7053. return QDF_STATUS_SUCCESS;
  7054. }
  7055. /**
  7056. * send_process_ll_stats_get_cmd_tlv() - link layer stats get request
  7057. * @wmi_handle:wmi handle
  7058. * @get_req:ll stats get request command params
  7059. * @addr: mac address
  7060. *
  7061. * Return: QDF_STATUS_SUCCESS for success or error code
  7062. */
  7063. static QDF_STATUS send_process_ll_stats_get_cmd_tlv(wmi_unified_t wmi_handle,
  7064. const struct ll_stats_get_params *get_req,
  7065. uint8_t addr[IEEE80211_ADDR_LEN])
  7066. {
  7067. wmi_request_link_stats_cmd_fixed_param *cmd;
  7068. int32_t len;
  7069. wmi_buf_t buf;
  7070. uint8_t *buf_ptr;
  7071. int ret;
  7072. len = sizeof(*cmd);
  7073. buf = wmi_buf_alloc(wmi_handle, len);
  7074. if (!buf) {
  7075. WMI_LOGE("%s: buf allocation failed", __func__);
  7076. return QDF_STATUS_E_NOMEM;
  7077. }
  7078. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  7079. qdf_mem_zero(buf_ptr, len);
  7080. cmd = (wmi_request_link_stats_cmd_fixed_param *) buf_ptr;
  7081. WMITLV_SET_HDR(&cmd->tlv_header,
  7082. WMITLV_TAG_STRUC_wmi_request_link_stats_cmd_fixed_param,
  7083. WMITLV_GET_STRUCT_TLVLEN
  7084. (wmi_request_link_stats_cmd_fixed_param));
  7085. cmd->request_id = get_req->req_id;
  7086. cmd->stats_type = get_req->param_id_mask;
  7087. cmd->vdev_id = get_req->sta_id;
  7088. WMI_CHAR_ARRAY_TO_MAC_ADDR(addr,
  7089. &cmd->peer_macaddr);
  7090. WMI_LOGD("LINK_LAYER_STATS - Get Request Params");
  7091. WMI_LOGD("Request ID : %u", cmd->request_id);
  7092. WMI_LOGD("Stats Type : %0x", cmd->stats_type);
  7093. WMI_LOGD("Vdev ID : %d", cmd->vdev_id);
  7094. WMI_LOGD("Peer MAC Addr : %pM", addr);
  7095. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7096. WMI_REQUEST_LINK_STATS_CMDID);
  7097. if (ret) {
  7098. WMI_LOGE("%s: Failed to send get link stats request", __func__);
  7099. wmi_buf_free(buf);
  7100. return QDF_STATUS_E_FAILURE;
  7101. }
  7102. return QDF_STATUS_SUCCESS;
  7103. }
  7104. #endif /* WLAN_FEATURE_LINK_LAYER_STATS */
  7105. /**
  7106. * send_congestion_cmd_tlv() - send request to fw to get CCA
  7107. * @wmi_handle: wmi handle
  7108. * @vdev_id: vdev id
  7109. *
  7110. * Return: CDF status
  7111. */
  7112. static QDF_STATUS send_congestion_cmd_tlv(wmi_unified_t wmi_handle,
  7113. uint8_t vdev_id)
  7114. {
  7115. wmi_buf_t buf;
  7116. wmi_request_stats_cmd_fixed_param *cmd;
  7117. uint8_t len;
  7118. uint8_t *buf_ptr;
  7119. len = sizeof(*cmd);
  7120. buf = wmi_buf_alloc(wmi_handle, len);
  7121. if (!buf) {
  7122. WMI_LOGE("%s: Failed to allocate wmi buffer", __func__);
  7123. return QDF_STATUS_E_FAILURE;
  7124. }
  7125. buf_ptr = wmi_buf_data(buf);
  7126. cmd = (wmi_request_stats_cmd_fixed_param *)buf_ptr;
  7127. WMITLV_SET_HDR(&cmd->tlv_header,
  7128. WMITLV_TAG_STRUC_wmi_request_stats_cmd_fixed_param,
  7129. WMITLV_GET_STRUCT_TLVLEN
  7130. (wmi_request_stats_cmd_fixed_param));
  7131. cmd->stats_id = WMI_REQUEST_CONGESTION_STAT;
  7132. cmd->vdev_id = vdev_id;
  7133. WMI_LOGD("STATS REQ VDEV_ID:%d stats_id %d -->",
  7134. cmd->vdev_id, cmd->stats_id);
  7135. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7136. WMI_REQUEST_STATS_CMDID)) {
  7137. WMI_LOGE("%s: Failed to send WMI_REQUEST_STATS_CMDID",
  7138. __func__);
  7139. wmi_buf_free(buf);
  7140. return QDF_STATUS_E_FAILURE;
  7141. }
  7142. return QDF_STATUS_SUCCESS;
  7143. }
  7144. /**
  7145. * send_snr_request_cmd_tlv() - send request to fw to get RSSI stats
  7146. * @wmi_handle: wmi handle
  7147. * @rssi_req: get RSSI request
  7148. *
  7149. * Return: CDF status
  7150. */
  7151. static QDF_STATUS send_snr_request_cmd_tlv(wmi_unified_t wmi_handle)
  7152. {
  7153. wmi_buf_t buf;
  7154. wmi_request_stats_cmd_fixed_param *cmd;
  7155. uint8_t len = sizeof(wmi_request_stats_cmd_fixed_param);
  7156. buf = wmi_buf_alloc(wmi_handle, len);
  7157. if (!buf) {
  7158. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  7159. return QDF_STATUS_E_FAILURE;
  7160. }
  7161. cmd = (wmi_request_stats_cmd_fixed_param *) wmi_buf_data(buf);
  7162. WMITLV_SET_HDR(&cmd->tlv_header,
  7163. WMITLV_TAG_STRUC_wmi_request_stats_cmd_fixed_param,
  7164. WMITLV_GET_STRUCT_TLVLEN
  7165. (wmi_request_stats_cmd_fixed_param));
  7166. cmd->stats_id = WMI_REQUEST_VDEV_STAT;
  7167. if (wmi_unified_cmd_send
  7168. (wmi_handle, buf, len, WMI_REQUEST_STATS_CMDID)) {
  7169. WMI_LOGE("Failed to send host stats request to fw");
  7170. wmi_buf_free(buf);
  7171. return QDF_STATUS_E_FAILURE;
  7172. }
  7173. return QDF_STATUS_SUCCESS;
  7174. }
  7175. /**
  7176. * send_snr_cmd_tlv() - get RSSI from fw
  7177. * @wmi_handle: wmi handle
  7178. * @vdev_id: vdev id
  7179. *
  7180. * Return: CDF status
  7181. */
  7182. static QDF_STATUS send_snr_cmd_tlv(wmi_unified_t wmi_handle, uint8_t vdev_id)
  7183. {
  7184. wmi_buf_t buf;
  7185. wmi_request_stats_cmd_fixed_param *cmd;
  7186. uint8_t len = sizeof(wmi_request_stats_cmd_fixed_param);
  7187. buf = wmi_buf_alloc(wmi_handle, len);
  7188. if (!buf) {
  7189. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  7190. return QDF_STATUS_E_FAILURE;
  7191. }
  7192. cmd = (wmi_request_stats_cmd_fixed_param *) wmi_buf_data(buf);
  7193. cmd->vdev_id = vdev_id;
  7194. WMITLV_SET_HDR(&cmd->tlv_header,
  7195. WMITLV_TAG_STRUC_wmi_request_stats_cmd_fixed_param,
  7196. WMITLV_GET_STRUCT_TLVLEN
  7197. (wmi_request_stats_cmd_fixed_param));
  7198. cmd->stats_id = WMI_REQUEST_VDEV_STAT;
  7199. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7200. WMI_REQUEST_STATS_CMDID)) {
  7201. WMI_LOGE("Failed to send host stats request to fw");
  7202. wmi_buf_free(buf);
  7203. return QDF_STATUS_E_FAILURE;
  7204. }
  7205. return QDF_STATUS_SUCCESS;
  7206. }
  7207. /**
  7208. * send_link_status_req_cmd_tlv() - process link status request from UMAC
  7209. * @wmi_handle: wmi handle
  7210. * @link_status: get link params
  7211. *
  7212. * Return: CDF status
  7213. */
  7214. static QDF_STATUS send_link_status_req_cmd_tlv(wmi_unified_t wmi_handle,
  7215. struct link_status_params *link_status)
  7216. {
  7217. wmi_buf_t buf;
  7218. wmi_request_stats_cmd_fixed_param *cmd;
  7219. uint8_t len = sizeof(wmi_request_stats_cmd_fixed_param);
  7220. buf = wmi_buf_alloc(wmi_handle, len);
  7221. if (!buf) {
  7222. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  7223. return QDF_STATUS_E_FAILURE;
  7224. }
  7225. cmd = (wmi_request_stats_cmd_fixed_param *) wmi_buf_data(buf);
  7226. WMITLV_SET_HDR(&cmd->tlv_header,
  7227. WMITLV_TAG_STRUC_wmi_request_stats_cmd_fixed_param,
  7228. WMITLV_GET_STRUCT_TLVLEN
  7229. (wmi_request_stats_cmd_fixed_param));
  7230. cmd->stats_id = WMI_REQUEST_VDEV_RATE_STAT;
  7231. cmd->vdev_id = link_status->session_id;
  7232. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7233. WMI_REQUEST_STATS_CMDID)) {
  7234. WMI_LOGE("Failed to send WMI link status request to fw");
  7235. wmi_buf_free(buf);
  7236. return QDF_STATUS_E_FAILURE;
  7237. }
  7238. return QDF_STATUS_SUCCESS;
  7239. }
  7240. /**
  7241. * send_process_dhcp_ind_cmd_tlv() - process dhcp indication from SME
  7242. * @wmi_handle: wmi handle
  7243. * @ta_dhcp_ind: DHCP indication parameter
  7244. *
  7245. * Return: CDF Status
  7246. */
  7247. static QDF_STATUS send_process_dhcp_ind_cmd_tlv(wmi_unified_t wmi_handle,
  7248. wmi_peer_set_param_cmd_fixed_param *ta_dhcp_ind)
  7249. {
  7250. QDF_STATUS status;
  7251. wmi_buf_t buf = NULL;
  7252. uint8_t *buf_ptr;
  7253. wmi_peer_set_param_cmd_fixed_param *peer_set_param_fp;
  7254. int len = sizeof(wmi_peer_set_param_cmd_fixed_param);
  7255. buf = wmi_buf_alloc(wmi_handle, len);
  7256. if (!buf) {
  7257. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  7258. return QDF_STATUS_E_NOMEM;
  7259. }
  7260. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  7261. peer_set_param_fp = (wmi_peer_set_param_cmd_fixed_param *) buf_ptr;
  7262. WMITLV_SET_HDR(&peer_set_param_fp->tlv_header,
  7263. WMITLV_TAG_STRUC_wmi_peer_set_param_cmd_fixed_param,
  7264. WMITLV_GET_STRUCT_TLVLEN
  7265. (wmi_peer_set_param_cmd_fixed_param));
  7266. /* fill in values */
  7267. peer_set_param_fp->vdev_id = ta_dhcp_ind->vdev_id;
  7268. peer_set_param_fp->param_id = ta_dhcp_ind->param_id;
  7269. peer_set_param_fp->param_value = ta_dhcp_ind->param_value;
  7270. qdf_mem_copy(&peer_set_param_fp->peer_macaddr,
  7271. &ta_dhcp_ind->peer_macaddr,
  7272. sizeof(ta_dhcp_ind->peer_macaddr));
  7273. status = wmi_unified_cmd_send(wmi_handle, buf,
  7274. len, WMI_PEER_SET_PARAM_CMDID);
  7275. if (QDF_IS_STATUS_ERROR(status)) {
  7276. WMI_LOGE("%s: wmi_unified_cmd_send WMI_PEER_SET_PARAM_CMD"
  7277. " returned Error %d", __func__, status);
  7278. wmi_buf_free(buf);
  7279. }
  7280. return status;
  7281. }
  7282. /**
  7283. * send_get_link_speed_cmd_tlv() -send command to get linkspeed
  7284. * @wmi_handle: wmi handle
  7285. * @pLinkSpeed: link speed info
  7286. *
  7287. * Return: CDF status
  7288. */
  7289. static QDF_STATUS send_get_link_speed_cmd_tlv(wmi_unified_t wmi_handle,
  7290. wmi_mac_addr peer_macaddr)
  7291. {
  7292. wmi_peer_get_estimated_linkspeed_cmd_fixed_param *cmd;
  7293. wmi_buf_t wmi_buf;
  7294. uint32_t len;
  7295. uint8_t *buf_ptr;
  7296. len = sizeof(wmi_peer_get_estimated_linkspeed_cmd_fixed_param);
  7297. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  7298. if (!wmi_buf) {
  7299. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  7300. return QDF_STATUS_E_NOMEM;
  7301. }
  7302. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  7303. cmd = (wmi_peer_get_estimated_linkspeed_cmd_fixed_param *) buf_ptr;
  7304. WMITLV_SET_HDR(&cmd->tlv_header,
  7305. WMITLV_TAG_STRUC_wmi_peer_get_estimated_linkspeed_cmd_fixed_param,
  7306. WMITLV_GET_STRUCT_TLVLEN
  7307. (wmi_peer_get_estimated_linkspeed_cmd_fixed_param));
  7308. /* Copy the peer macaddress to the wma buffer */
  7309. qdf_mem_copy(&cmd->peer_macaddr,
  7310. &peer_macaddr,
  7311. sizeof(peer_macaddr));
  7312. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  7313. WMI_PEER_GET_ESTIMATED_LINKSPEED_CMDID)) {
  7314. WMI_LOGE("%s: failed to send link speed command", __func__);
  7315. wmi_buf_free(wmi_buf);
  7316. return QDF_STATUS_E_FAILURE;
  7317. }
  7318. return QDF_STATUS_SUCCESS;
  7319. }
  7320. #ifdef WLAN_SUPPORT_GREEN_AP
  7321. /**
  7322. * send_egap_conf_params_cmd_tlv() - send wmi cmd of egap configuration params
  7323. * @wmi_handle: wmi handler
  7324. * @egap_params: pointer to egap_params
  7325. *
  7326. * Return: 0 for success, otherwise appropriate error code
  7327. */
  7328. static QDF_STATUS send_egap_conf_params_cmd_tlv(wmi_unified_t wmi_handle,
  7329. struct wlan_green_ap_egap_params *egap_params)
  7330. {
  7331. wmi_ap_ps_egap_param_cmd_fixed_param *cmd;
  7332. wmi_buf_t buf;
  7333. int32_t err;
  7334. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  7335. if (!buf) {
  7336. WMI_LOGE("Failed to allocate buffer to send ap_ps_egap cmd");
  7337. return QDF_STATUS_E_NOMEM;
  7338. }
  7339. cmd = (wmi_ap_ps_egap_param_cmd_fixed_param *) wmi_buf_data(buf);
  7340. WMITLV_SET_HDR(&cmd->tlv_header,
  7341. WMITLV_TAG_STRUC_wmi_ap_ps_egap_param_cmd_fixed_param,
  7342. WMITLV_GET_STRUCT_TLVLEN(
  7343. wmi_ap_ps_egap_param_cmd_fixed_param));
  7344. cmd->enable = egap_params->host_enable_egap;
  7345. cmd->inactivity_time = egap_params->egap_inactivity_time;
  7346. cmd->wait_time = egap_params->egap_wait_time;
  7347. cmd->flags = egap_params->egap_feature_flags;
  7348. err = wmi_unified_cmd_send(wmi_handle, buf,
  7349. sizeof(*cmd), WMI_AP_PS_EGAP_PARAM_CMDID);
  7350. if (err) {
  7351. WMI_LOGE("Failed to send ap_ps_egap cmd");
  7352. wmi_buf_free(buf);
  7353. return QDF_STATUS_E_FAILURE;
  7354. }
  7355. return QDF_STATUS_SUCCESS;
  7356. }
  7357. #endif
  7358. /**
  7359. * send_fw_profiling_cmd_tlv() - send FW profiling cmd to WLAN FW
  7360. * @wmi_handl: wmi handle
  7361. * @cmd: Profiling command index
  7362. * @value1: parameter1 value
  7363. * @value2: parameter2 value
  7364. *
  7365. * Return: QDF_STATUS_SUCCESS for success else error code
  7366. */
  7367. static QDF_STATUS send_fw_profiling_cmd_tlv(wmi_unified_t wmi_handle,
  7368. uint32_t cmd, uint32_t value1, uint32_t value2)
  7369. {
  7370. wmi_buf_t buf;
  7371. int32_t len = 0;
  7372. int ret;
  7373. wmi_wlan_profile_trigger_cmd_fixed_param *prof_trig_cmd;
  7374. wmi_wlan_profile_set_hist_intvl_cmd_fixed_param *hist_intvl_cmd;
  7375. wmi_wlan_profile_enable_profile_id_cmd_fixed_param *profile_enable_cmd;
  7376. wmi_wlan_profile_get_prof_data_cmd_fixed_param *profile_getdata_cmd;
  7377. switch (cmd) {
  7378. case WMI_WLAN_PROFILE_TRIGGER_CMDID:
  7379. len = sizeof(wmi_wlan_profile_trigger_cmd_fixed_param);
  7380. buf = wmi_buf_alloc(wmi_handle, len);
  7381. if (!buf) {
  7382. WMI_LOGP("%s: wmi_buf_alloc Failed", __func__);
  7383. return QDF_STATUS_E_NOMEM;
  7384. }
  7385. prof_trig_cmd =
  7386. (wmi_wlan_profile_trigger_cmd_fixed_param *)
  7387. wmi_buf_data(buf);
  7388. WMITLV_SET_HDR(&prof_trig_cmd->tlv_header,
  7389. WMITLV_TAG_STRUC_wmi_wlan_profile_trigger_cmd_fixed_param,
  7390. WMITLV_GET_STRUCT_TLVLEN
  7391. (wmi_wlan_profile_trigger_cmd_fixed_param));
  7392. prof_trig_cmd->enable = value1;
  7393. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7394. WMI_WLAN_PROFILE_TRIGGER_CMDID);
  7395. if (ret) {
  7396. WMI_LOGE("PROFILE_TRIGGER cmd Failed with value %d",
  7397. value1);
  7398. wmi_buf_free(buf);
  7399. return ret;
  7400. }
  7401. break;
  7402. case WMI_WLAN_PROFILE_GET_PROFILE_DATA_CMDID:
  7403. len = sizeof(wmi_wlan_profile_get_prof_data_cmd_fixed_param);
  7404. buf = wmi_buf_alloc(wmi_handle, len);
  7405. if (!buf) {
  7406. WMI_LOGP("%s: wmi_buf_alloc Failed", __func__);
  7407. return QDF_STATUS_E_NOMEM;
  7408. }
  7409. profile_getdata_cmd =
  7410. (wmi_wlan_profile_get_prof_data_cmd_fixed_param *)
  7411. wmi_buf_data(buf);
  7412. WMITLV_SET_HDR(&profile_getdata_cmd->tlv_header,
  7413. WMITLV_TAG_STRUC_wmi_wlan_profile_get_prof_data_cmd_fixed_param,
  7414. WMITLV_GET_STRUCT_TLVLEN
  7415. (wmi_wlan_profile_get_prof_data_cmd_fixed_param));
  7416. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7417. WMI_WLAN_PROFILE_GET_PROFILE_DATA_CMDID);
  7418. if (ret) {
  7419. WMI_LOGE("PROFILE_DATA cmd Failed for id %d value %d",
  7420. value1, value2);
  7421. wmi_buf_free(buf);
  7422. return ret;
  7423. }
  7424. break;
  7425. case WMI_WLAN_PROFILE_SET_HIST_INTVL_CMDID:
  7426. len = sizeof(wmi_wlan_profile_set_hist_intvl_cmd_fixed_param);
  7427. buf = wmi_buf_alloc(wmi_handle, len);
  7428. if (!buf) {
  7429. WMI_LOGP("%s: wmi_buf_alloc Failed", __func__);
  7430. return QDF_STATUS_E_NOMEM;
  7431. }
  7432. hist_intvl_cmd =
  7433. (wmi_wlan_profile_set_hist_intvl_cmd_fixed_param *)
  7434. wmi_buf_data(buf);
  7435. WMITLV_SET_HDR(&hist_intvl_cmd->tlv_header,
  7436. WMITLV_TAG_STRUC_wmi_wlan_profile_set_hist_intvl_cmd_fixed_param,
  7437. WMITLV_GET_STRUCT_TLVLEN
  7438. (wmi_wlan_profile_set_hist_intvl_cmd_fixed_param));
  7439. hist_intvl_cmd->profile_id = value1;
  7440. hist_intvl_cmd->value = value2;
  7441. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7442. WMI_WLAN_PROFILE_SET_HIST_INTVL_CMDID);
  7443. if (ret) {
  7444. WMI_LOGE("HIST_INTVL cmd Failed for id %d value %d",
  7445. value1, value2);
  7446. wmi_buf_free(buf);
  7447. return ret;
  7448. }
  7449. break;
  7450. case WMI_WLAN_PROFILE_ENABLE_PROFILE_ID_CMDID:
  7451. len =
  7452. sizeof(wmi_wlan_profile_enable_profile_id_cmd_fixed_param);
  7453. buf = wmi_buf_alloc(wmi_handle, len);
  7454. if (!buf) {
  7455. WMI_LOGP("%s: wmi_buf_alloc Failed", __func__);
  7456. return QDF_STATUS_E_NOMEM;
  7457. }
  7458. profile_enable_cmd =
  7459. (wmi_wlan_profile_enable_profile_id_cmd_fixed_param *)
  7460. wmi_buf_data(buf);
  7461. WMITLV_SET_HDR(&profile_enable_cmd->tlv_header,
  7462. WMITLV_TAG_STRUC_wmi_wlan_profile_enable_profile_id_cmd_fixed_param,
  7463. WMITLV_GET_STRUCT_TLVLEN
  7464. (wmi_wlan_profile_enable_profile_id_cmd_fixed_param));
  7465. profile_enable_cmd->profile_id = value1;
  7466. profile_enable_cmd->enable = value2;
  7467. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7468. WMI_WLAN_PROFILE_ENABLE_PROFILE_ID_CMDID);
  7469. if (ret) {
  7470. WMI_LOGE("enable cmd Failed for id %d value %d",
  7471. value1, value2);
  7472. wmi_buf_free(buf);
  7473. return ret;
  7474. }
  7475. break;
  7476. default:
  7477. WMI_LOGD("%s: invalid profiling command", __func__);
  7478. break;
  7479. }
  7480. return 0;
  7481. }
  7482. static QDF_STATUS send_wlm_latency_level_cmd_tlv(wmi_unified_t wmi_handle,
  7483. struct wlm_latency_level_param *params)
  7484. {
  7485. wmi_wlm_config_cmd_fixed_param *cmd;
  7486. wmi_buf_t buf;
  7487. uint32_t len = sizeof(*cmd);
  7488. static uint32_t ll[4] = {100, 60, 40, 20};
  7489. buf = wmi_buf_alloc(wmi_handle, len);
  7490. if (!buf) {
  7491. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  7492. return QDF_STATUS_E_NOMEM;
  7493. }
  7494. cmd = (wmi_wlm_config_cmd_fixed_param *)wmi_buf_data(buf);
  7495. WMITLV_SET_HDR(&cmd->tlv_header,
  7496. WMITLV_TAG_STRUC_wmi_wlm_config_cmd_fixed_param,
  7497. WMITLV_GET_STRUCT_TLVLEN
  7498. (wmi_wlm_config_cmd_fixed_param));
  7499. cmd->vdev_id = params->vdev_id;
  7500. cmd->latency_level = params->wlm_latency_level;
  7501. cmd->ul_latency = ll[params->wlm_latency_level];
  7502. cmd->dl_latency = ll[params->wlm_latency_level];
  7503. cmd->flags = params->wlm_latency_flags;
  7504. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7505. WMI_WLM_CONFIG_CMDID)) {
  7506. WMI_LOGE("%s: Failed to send setting latency config command",
  7507. __func__);
  7508. wmi_buf_free(buf);
  7509. return QDF_STATUS_E_FAILURE;
  7510. }
  7511. return 0;
  7512. }
  7513. /**
  7514. * send_nat_keepalive_en_cmd_tlv() - enable NAT keepalive filter
  7515. * @wmi_handle: wmi handle
  7516. * @vdev_id: vdev id
  7517. *
  7518. * Return: QDF_STATUS_SUCCESS for success or error code
  7519. */
  7520. static QDF_STATUS send_nat_keepalive_en_cmd_tlv(wmi_unified_t wmi_handle, uint8_t vdev_id)
  7521. {
  7522. WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD_fixed_param *cmd;
  7523. wmi_buf_t buf;
  7524. int32_t len = sizeof(*cmd);
  7525. WMI_LOGD("%s: vdev_id %d", __func__, vdev_id);
  7526. buf = wmi_buf_alloc(wmi_handle, len);
  7527. if (!buf) {
  7528. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  7529. return QDF_STATUS_E_NOMEM;
  7530. }
  7531. cmd = (WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD_fixed_param *)
  7532. wmi_buf_data(buf);
  7533. WMITLV_SET_HDR(&cmd->tlv_header,
  7534. WMITLV_TAG_STRUC_WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD_fixed_param,
  7535. WMITLV_GET_STRUCT_TLVLEN
  7536. (WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMD_fixed_param));
  7537. cmd->vdev_id = vdev_id;
  7538. cmd->action = IPSEC_NATKEEPALIVE_FILTER_ENABLE;
  7539. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7540. WMI_VDEV_IPSEC_NATKEEPALIVE_FILTER_CMDID)) {
  7541. WMI_LOGP("%s: Failed to send NAT keepalive enable command",
  7542. __func__);
  7543. wmi_buf_free(buf);
  7544. return QDF_STATUS_E_FAILURE;
  7545. }
  7546. return 0;
  7547. }
  7548. /**
  7549. * wmi_unified_csa_offload_enable() - sen CSA offload enable command
  7550. * @wmi_handle: wmi handle
  7551. * @vdev_id: vdev id
  7552. *
  7553. * Return: QDF_STATUS_SUCCESS for success or error code
  7554. */
  7555. static QDF_STATUS send_csa_offload_enable_cmd_tlv(wmi_unified_t wmi_handle,
  7556. uint8_t vdev_id)
  7557. {
  7558. wmi_csa_offload_enable_cmd_fixed_param *cmd;
  7559. wmi_buf_t buf;
  7560. int32_t len = sizeof(*cmd);
  7561. WMI_LOGD("%s: vdev_id %d", __func__, vdev_id);
  7562. buf = wmi_buf_alloc(wmi_handle, len);
  7563. if (!buf) {
  7564. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  7565. return QDF_STATUS_E_NOMEM;
  7566. }
  7567. cmd = (wmi_csa_offload_enable_cmd_fixed_param *) wmi_buf_data(buf);
  7568. WMITLV_SET_HDR(&cmd->tlv_header,
  7569. WMITLV_TAG_STRUC_wmi_csa_offload_enable_cmd_fixed_param,
  7570. WMITLV_GET_STRUCT_TLVLEN
  7571. (wmi_csa_offload_enable_cmd_fixed_param));
  7572. cmd->vdev_id = vdev_id;
  7573. cmd->csa_offload_enable = WMI_CSA_OFFLOAD_ENABLE;
  7574. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7575. WMI_CSA_OFFLOAD_ENABLE_CMDID)) {
  7576. WMI_LOGP("%s: Failed to send CSA offload enable command",
  7577. __func__);
  7578. wmi_buf_free(buf);
  7579. return QDF_STATUS_E_FAILURE;
  7580. }
  7581. return 0;
  7582. }
  7583. #ifdef WLAN_FEATURE_CIF_CFR
  7584. /**
  7585. * send_oem_dma_cfg_cmd_tlv() - configure OEM DMA rings
  7586. * @wmi_handle: wmi handle
  7587. * @data_len: len of dma cfg req
  7588. * @data: dma cfg req
  7589. *
  7590. * Return: QDF_STATUS_SUCCESS on success and QDF_STATUS_E_FAILURE for failure
  7591. */
  7592. static QDF_STATUS send_oem_dma_cfg_cmd_tlv(wmi_unified_t wmi_handle,
  7593. wmi_oem_dma_ring_cfg_req_fixed_param *cfg)
  7594. {
  7595. wmi_buf_t buf;
  7596. uint8_t *cmd;
  7597. QDF_STATUS ret;
  7598. WMITLV_SET_HDR(cfg,
  7599. WMITLV_TAG_STRUC_wmi_oem_dma_ring_cfg_req_fixed_param,
  7600. (sizeof(*cfg) - WMI_TLV_HDR_SIZE));
  7601. buf = wmi_buf_alloc(wmi_handle, sizeof(*cfg));
  7602. if (!buf) {
  7603. WMI_LOGE(FL("wmi_buf_alloc failed"));
  7604. return QDF_STATUS_E_FAILURE;
  7605. }
  7606. cmd = (uint8_t *) wmi_buf_data(buf);
  7607. qdf_mem_copy(cmd, cfg, sizeof(*cfg));
  7608. WMI_LOGI(FL("Sending OEM Data Request to target, data len %lu"),
  7609. sizeof(*cfg));
  7610. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cfg),
  7611. WMI_OEM_DMA_RING_CFG_REQ_CMDID);
  7612. if (QDF_IS_STATUS_ERROR(ret)) {
  7613. WMI_LOGE(FL(":wmi cmd send failed"));
  7614. wmi_buf_free(buf);
  7615. }
  7616. return ret;
  7617. }
  7618. #endif
  7619. /**
  7620. * send_dbr_cfg_cmd_tlv() - configure DMA rings for Direct Buf RX
  7621. * @wmi_handle: wmi handle
  7622. * @data_len: len of dma cfg req
  7623. * @data: dma cfg req
  7624. *
  7625. * Return: QDF_STATUS_SUCCESS on success and QDF_STATUS_E_FAILURE for failure
  7626. */
  7627. static QDF_STATUS send_dbr_cfg_cmd_tlv(wmi_unified_t wmi_handle,
  7628. struct direct_buf_rx_cfg_req *cfg)
  7629. {
  7630. wmi_buf_t buf;
  7631. wmi_dma_ring_cfg_req_fixed_param *cmd;
  7632. QDF_STATUS ret;
  7633. int32_t len = sizeof(*cmd);
  7634. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  7635. if (!buf) {
  7636. WMI_LOGE(FL("wmi_buf_alloc failed"));
  7637. return QDF_STATUS_E_FAILURE;
  7638. }
  7639. cmd = (wmi_dma_ring_cfg_req_fixed_param *)wmi_buf_data(buf);
  7640. WMITLV_SET_HDR(&cmd->tlv_header,
  7641. WMITLV_TAG_STRUC_wmi_dma_ring_cfg_req_fixed_param,
  7642. WMITLV_GET_STRUCT_TLVLEN(wmi_dma_ring_cfg_req_fixed_param));
  7643. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  7644. cfg->pdev_id);
  7645. cmd->mod_id = cfg->mod_id;
  7646. cmd->base_paddr_lo = cfg->base_paddr_lo;
  7647. cmd->base_paddr_hi = cfg->base_paddr_hi;
  7648. cmd->head_idx_paddr_lo = cfg->head_idx_paddr_lo;
  7649. cmd->head_idx_paddr_hi = cfg->head_idx_paddr_hi;
  7650. cmd->tail_idx_paddr_lo = cfg->tail_idx_paddr_lo;
  7651. cmd->tail_idx_paddr_hi = cfg->tail_idx_paddr_hi;
  7652. cmd->num_elems = cfg->num_elems;
  7653. cmd->buf_size = cfg->buf_size;
  7654. cmd->num_resp_per_event = cfg->num_resp_per_event;
  7655. cmd->event_timeout_ms = cfg->event_timeout_ms;
  7656. WMI_LOGD("%s: wmi_dma_ring_cfg_req_fixed_param pdev id %d mod id %d"
  7657. "base paddr lo %x base paddr hi %x head idx paddr lo %x"
  7658. "head idx paddr hi %x tail idx paddr lo %x"
  7659. "tail idx addr hi %x num elems %d buf size %d num resp %d"
  7660. "event timeout %d\n", __func__, cmd->pdev_id,
  7661. cmd->mod_id, cmd->base_paddr_lo, cmd->base_paddr_hi,
  7662. cmd->head_idx_paddr_lo, cmd->head_idx_paddr_hi,
  7663. cmd->tail_idx_paddr_lo, cmd->tail_idx_paddr_hi,
  7664. cmd->num_elems, cmd->buf_size, cmd->num_resp_per_event,
  7665. cmd->event_timeout_ms);
  7666. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7667. WMI_PDEV_DMA_RING_CFG_REQ_CMDID);
  7668. if (QDF_IS_STATUS_ERROR(ret)) {
  7669. WMI_LOGE(FL(":wmi cmd send failed"));
  7670. wmi_buf_free(buf);
  7671. }
  7672. return ret;
  7673. }
  7674. /**
  7675. * send_start_11d_scan_cmd_tlv() - start 11d scan request
  7676. * @wmi_handle: wmi handle
  7677. * @start_11d_scan: 11d scan start request parameters
  7678. *
  7679. * This function request FW to start 11d scan.
  7680. *
  7681. * Return: QDF status
  7682. */
  7683. static QDF_STATUS send_start_11d_scan_cmd_tlv(wmi_unified_t wmi_handle,
  7684. struct reg_start_11d_scan_req *start_11d_scan)
  7685. {
  7686. wmi_11d_scan_start_cmd_fixed_param *cmd;
  7687. int32_t len;
  7688. wmi_buf_t buf;
  7689. int ret;
  7690. len = sizeof(*cmd);
  7691. buf = wmi_buf_alloc(wmi_handle, len);
  7692. if (!buf) {
  7693. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  7694. return QDF_STATUS_E_NOMEM;
  7695. }
  7696. cmd = (wmi_11d_scan_start_cmd_fixed_param *)wmi_buf_data(buf);
  7697. WMITLV_SET_HDR(&cmd->tlv_header,
  7698. WMITLV_TAG_STRUC_wmi_11d_scan_start_cmd_fixed_param,
  7699. WMITLV_GET_STRUCT_TLVLEN
  7700. (wmi_11d_scan_start_cmd_fixed_param));
  7701. cmd->vdev_id = start_11d_scan->vdev_id;
  7702. cmd->scan_period_msec = start_11d_scan->scan_period_msec;
  7703. cmd->start_interval_msec = start_11d_scan->start_interval_msec;
  7704. WMI_LOGD("vdev %d sending 11D scan start req", cmd->vdev_id);
  7705. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7706. WMI_11D_SCAN_START_CMDID);
  7707. if (ret) {
  7708. WMI_LOGE("%s: Failed to send start 11d scan wmi cmd", __func__);
  7709. wmi_buf_free(buf);
  7710. return QDF_STATUS_E_FAILURE;
  7711. }
  7712. return QDF_STATUS_SUCCESS;
  7713. }
  7714. /**
  7715. * send_stop_11d_scan_cmd_tlv() - stop 11d scan request
  7716. * @wmi_handle: wmi handle
  7717. * @start_11d_scan: 11d scan stop request parameters
  7718. *
  7719. * This function request FW to stop 11d scan.
  7720. *
  7721. * Return: QDF status
  7722. */
  7723. static QDF_STATUS send_stop_11d_scan_cmd_tlv(wmi_unified_t wmi_handle,
  7724. struct reg_stop_11d_scan_req *stop_11d_scan)
  7725. {
  7726. wmi_11d_scan_stop_cmd_fixed_param *cmd;
  7727. int32_t len;
  7728. wmi_buf_t buf;
  7729. int ret;
  7730. len = sizeof(*cmd);
  7731. buf = wmi_buf_alloc(wmi_handle, len);
  7732. if (!buf) {
  7733. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  7734. return QDF_STATUS_E_NOMEM;
  7735. }
  7736. cmd = (wmi_11d_scan_stop_cmd_fixed_param *)wmi_buf_data(buf);
  7737. WMITLV_SET_HDR(&cmd->tlv_header,
  7738. WMITLV_TAG_STRUC_wmi_11d_scan_stop_cmd_fixed_param,
  7739. WMITLV_GET_STRUCT_TLVLEN
  7740. (wmi_11d_scan_stop_cmd_fixed_param));
  7741. cmd->vdev_id = stop_11d_scan->vdev_id;
  7742. WMI_LOGD("vdev %d sending 11D scan stop req", cmd->vdev_id);
  7743. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7744. WMI_11D_SCAN_STOP_CMDID);
  7745. if (ret) {
  7746. WMI_LOGE("%s: Failed to send stop 11d scan wmi cmd", __func__);
  7747. wmi_buf_free(buf);
  7748. return QDF_STATUS_E_FAILURE;
  7749. }
  7750. return QDF_STATUS_SUCCESS;
  7751. }
  7752. /**
  7753. * send_start_oem_data_cmd_tlv() - start OEM data request to target
  7754. * @wmi_handle: wmi handle
  7755. * @startOemDataReq: start request params
  7756. *
  7757. * Return: CDF status
  7758. */
  7759. static QDF_STATUS send_start_oem_data_cmd_tlv(wmi_unified_t wmi_handle,
  7760. uint32_t data_len,
  7761. uint8_t *data)
  7762. {
  7763. wmi_buf_t buf;
  7764. uint8_t *cmd;
  7765. QDF_STATUS ret;
  7766. buf = wmi_buf_alloc(wmi_handle,
  7767. (data_len + WMI_TLV_HDR_SIZE));
  7768. if (!buf) {
  7769. WMI_LOGE(FL("wmi_buf_alloc failed"));
  7770. return QDF_STATUS_E_FAILURE;
  7771. }
  7772. cmd = (uint8_t *) wmi_buf_data(buf);
  7773. WMITLV_SET_HDR(cmd, WMITLV_TAG_ARRAY_BYTE, data_len);
  7774. cmd += WMI_TLV_HDR_SIZE;
  7775. qdf_mem_copy(cmd, data,
  7776. data_len);
  7777. WMI_LOGD(FL("Sending OEM Data Request to target, data len %d"),
  7778. data_len);
  7779. ret = wmi_unified_cmd_send(wmi_handle, buf,
  7780. (data_len +
  7781. WMI_TLV_HDR_SIZE), WMI_OEM_REQ_CMDID);
  7782. if (QDF_IS_STATUS_ERROR(ret)) {
  7783. WMI_LOGE(FL(":wmi cmd send failed"));
  7784. wmi_buf_free(buf);
  7785. }
  7786. return ret;
  7787. }
  7788. /**
  7789. * send_dfs_phyerr_filter_offload_en_cmd_tlv() - enable dfs phyerr filter
  7790. * @wmi_handle: wmi handle
  7791. * @dfs_phyerr_filter_offload: is dfs phyerr filter offload
  7792. *
  7793. * Send WMI_DFS_PHYERR_FILTER_ENA_CMDID or
  7794. * WMI_DFS_PHYERR_FILTER_DIS_CMDID command
  7795. * to firmware based on phyerr filtering
  7796. * offload status.
  7797. *
  7798. * Return: 1 success, 0 failure
  7799. */
  7800. static QDF_STATUS
  7801. send_dfs_phyerr_filter_offload_en_cmd_tlv(wmi_unified_t wmi_handle,
  7802. bool dfs_phyerr_filter_offload)
  7803. {
  7804. wmi_dfs_phyerr_filter_ena_cmd_fixed_param *enable_phyerr_offload_cmd;
  7805. wmi_dfs_phyerr_filter_dis_cmd_fixed_param *disable_phyerr_offload_cmd;
  7806. wmi_buf_t buf;
  7807. uint16_t len;
  7808. QDF_STATUS ret;
  7809. if (false == dfs_phyerr_filter_offload) {
  7810. WMI_LOGD("%s:Phyerror Filtering offload is Disabled in ini",
  7811. __func__);
  7812. len = sizeof(*disable_phyerr_offload_cmd);
  7813. buf = wmi_buf_alloc(wmi_handle, len);
  7814. if (!buf) {
  7815. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  7816. return 0;
  7817. }
  7818. disable_phyerr_offload_cmd =
  7819. (wmi_dfs_phyerr_filter_dis_cmd_fixed_param *)
  7820. wmi_buf_data(buf);
  7821. WMITLV_SET_HDR(&disable_phyerr_offload_cmd->tlv_header,
  7822. WMITLV_TAG_STRUC_wmi_dfs_phyerr_filter_dis_cmd_fixed_param,
  7823. WMITLV_GET_STRUCT_TLVLEN
  7824. (wmi_dfs_phyerr_filter_dis_cmd_fixed_param));
  7825. /*
  7826. * Send WMI_DFS_PHYERR_FILTER_DIS_CMDID
  7827. * to the firmware to disable the phyerror
  7828. * filtering offload.
  7829. */
  7830. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7831. WMI_DFS_PHYERR_FILTER_DIS_CMDID);
  7832. if (QDF_IS_STATUS_ERROR(ret)) {
  7833. WMI_LOGE("%s: Failed to send WMI_DFS_PHYERR_FILTER_DIS_CMDID ret=%d",
  7834. __func__, ret);
  7835. wmi_buf_free(buf);
  7836. return QDF_STATUS_E_FAILURE;
  7837. }
  7838. WMI_LOGD("%s: WMI_DFS_PHYERR_FILTER_DIS_CMDID Send Success",
  7839. __func__);
  7840. } else {
  7841. WMI_LOGD("%s:Phyerror Filtering offload is Enabled in ini",
  7842. __func__);
  7843. len = sizeof(*enable_phyerr_offload_cmd);
  7844. buf = wmi_buf_alloc(wmi_handle, len);
  7845. if (!buf) {
  7846. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  7847. return QDF_STATUS_E_FAILURE;
  7848. }
  7849. enable_phyerr_offload_cmd =
  7850. (wmi_dfs_phyerr_filter_ena_cmd_fixed_param *)
  7851. wmi_buf_data(buf);
  7852. WMITLV_SET_HDR(&enable_phyerr_offload_cmd->tlv_header,
  7853. WMITLV_TAG_STRUC_wmi_dfs_phyerr_filter_ena_cmd_fixed_param,
  7854. WMITLV_GET_STRUCT_TLVLEN
  7855. (wmi_dfs_phyerr_filter_ena_cmd_fixed_param));
  7856. /*
  7857. * Send a WMI_DFS_PHYERR_FILTER_ENA_CMDID
  7858. * to the firmware to enable the phyerror
  7859. * filtering offload.
  7860. */
  7861. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7862. WMI_DFS_PHYERR_FILTER_ENA_CMDID);
  7863. if (QDF_IS_STATUS_ERROR(ret)) {
  7864. WMI_LOGE("%s: Failed to send DFS PHYERR CMD ret=%d",
  7865. __func__, ret);
  7866. wmi_buf_free(buf);
  7867. return QDF_STATUS_E_FAILURE;
  7868. }
  7869. WMI_LOGD("%s: WMI_DFS_PHYERR_FILTER_ENA_CMDID Send Success",
  7870. __func__);
  7871. }
  7872. return QDF_STATUS_SUCCESS;
  7873. }
  7874. /**
  7875. * send_wow_timer_pattern_cmd_tlv() - set timer pattern tlv, so that firmware
  7876. * will wake up host after specified time is elapsed
  7877. * @wmi_handle: wmi handle
  7878. * @vdev_id: vdev id
  7879. * @cookie: value to identify reason why host set up wake call.
  7880. * @time: time in ms
  7881. *
  7882. * Return: QDF status
  7883. */
  7884. static QDF_STATUS send_wow_timer_pattern_cmd_tlv(wmi_unified_t wmi_handle,
  7885. uint8_t vdev_id, uint32_t cookie, uint32_t time)
  7886. {
  7887. WMI_WOW_ADD_PATTERN_CMD_fixed_param *cmd;
  7888. wmi_buf_t buf;
  7889. uint8_t *buf_ptr;
  7890. int32_t len;
  7891. int ret;
  7892. len = sizeof(WMI_WOW_ADD_PATTERN_CMD_fixed_param) +
  7893. WMI_TLV_HDR_SIZE + 0 * sizeof(WOW_BITMAP_PATTERN_T) +
  7894. WMI_TLV_HDR_SIZE + 0 * sizeof(WOW_IPV4_SYNC_PATTERN_T) +
  7895. WMI_TLV_HDR_SIZE + 0 * sizeof(WOW_IPV6_SYNC_PATTERN_T) +
  7896. WMI_TLV_HDR_SIZE + 0 * sizeof(WOW_MAGIC_PATTERN_CMD) +
  7897. WMI_TLV_HDR_SIZE + 1 * sizeof(uint32_t) +
  7898. WMI_TLV_HDR_SIZE + 1 * sizeof(uint32_t);
  7899. buf = wmi_buf_alloc(wmi_handle, len);
  7900. if (!buf) {
  7901. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  7902. return QDF_STATUS_E_NOMEM;
  7903. }
  7904. cmd = (WMI_WOW_ADD_PATTERN_CMD_fixed_param *) wmi_buf_data(buf);
  7905. buf_ptr = (uint8_t *) cmd;
  7906. WMITLV_SET_HDR(&cmd->tlv_header,
  7907. WMITLV_TAG_STRUC_WMI_WOW_ADD_PATTERN_CMD_fixed_param,
  7908. WMITLV_GET_STRUCT_TLVLEN
  7909. (WMI_WOW_ADD_PATTERN_CMD_fixed_param));
  7910. cmd->vdev_id = vdev_id;
  7911. cmd->pattern_id = cookie,
  7912. cmd->pattern_type = WOW_TIMER_PATTERN;
  7913. buf_ptr += sizeof(WMI_WOW_ADD_PATTERN_CMD_fixed_param);
  7914. /* Fill TLV for WMITLV_TAG_STRUC_WOW_BITMAP_PATTERN_T but no data. */
  7915. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  7916. buf_ptr += WMI_TLV_HDR_SIZE;
  7917. /* Fill TLV for WMITLV_TAG_STRUC_WOW_IPV4_SYNC_PATTERN_T but no data. */
  7918. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  7919. buf_ptr += WMI_TLV_HDR_SIZE;
  7920. /* Fill TLV for WMITLV_TAG_STRUC_WOW_IPV6_SYNC_PATTERN_T but no data. */
  7921. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  7922. buf_ptr += WMI_TLV_HDR_SIZE;
  7923. /* Fill TLV for WMITLV_TAG_STRUC_WOW_MAGIC_PATTERN_CMD but no data. */
  7924. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  7925. buf_ptr += WMI_TLV_HDR_SIZE;
  7926. /* Fill TLV for pattern_info_timeout, and time value */
  7927. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, sizeof(uint32_t));
  7928. buf_ptr += WMI_TLV_HDR_SIZE;
  7929. *((uint32_t *) buf_ptr) = time;
  7930. buf_ptr += sizeof(uint32_t);
  7931. /* Fill TLV for ra_ratelimit_interval. with dummy 0 value */
  7932. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, sizeof(uint32_t));
  7933. buf_ptr += WMI_TLV_HDR_SIZE;
  7934. *((uint32_t *) buf_ptr) = 0;
  7935. WMI_LOGD("%s: send wake timer pattern with time[%d] to fw vdev = %d",
  7936. __func__, time, vdev_id);
  7937. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  7938. WMI_WOW_ADD_WAKE_PATTERN_CMDID);
  7939. if (ret) {
  7940. WMI_LOGE("%s: Failed to send wake timer pattern to fw",
  7941. __func__);
  7942. wmi_buf_free(buf);
  7943. return QDF_STATUS_E_FAILURE;
  7944. }
  7945. return QDF_STATUS_SUCCESS;
  7946. }
  7947. #if !defined(REMOVE_PKT_LOG)
  7948. /**
  7949. * send_pktlog_wmi_send_cmd_tlv() - send pktlog enable/disable command to target
  7950. * @wmi_handle: wmi handle
  7951. * @pktlog_event: pktlog event
  7952. * @cmd_id: pktlog cmd id
  7953. *
  7954. * Return: CDF status
  7955. */
  7956. static QDF_STATUS send_pktlog_wmi_send_cmd_tlv(wmi_unified_t wmi_handle,
  7957. WMI_PKTLOG_EVENT pktlog_event,
  7958. WMI_CMD_ID cmd_id, uint8_t user_triggered)
  7959. {
  7960. WMI_PKTLOG_EVENT PKTLOG_EVENT;
  7961. WMI_CMD_ID CMD_ID;
  7962. wmi_pdev_pktlog_enable_cmd_fixed_param *cmd;
  7963. wmi_pdev_pktlog_disable_cmd_fixed_param *disable_cmd;
  7964. int len = 0;
  7965. wmi_buf_t buf;
  7966. PKTLOG_EVENT = pktlog_event;
  7967. CMD_ID = cmd_id;
  7968. switch (CMD_ID) {
  7969. case WMI_PDEV_PKTLOG_ENABLE_CMDID:
  7970. len = sizeof(*cmd);
  7971. buf = wmi_buf_alloc(wmi_handle, len);
  7972. if (!buf) {
  7973. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  7974. return QDF_STATUS_E_NOMEM;
  7975. }
  7976. cmd = (wmi_pdev_pktlog_enable_cmd_fixed_param *)
  7977. wmi_buf_data(buf);
  7978. WMITLV_SET_HDR(&cmd->tlv_header,
  7979. WMITLV_TAG_STRUC_wmi_pdev_pktlog_enable_cmd_fixed_param,
  7980. WMITLV_GET_STRUCT_TLVLEN
  7981. (wmi_pdev_pktlog_enable_cmd_fixed_param));
  7982. cmd->evlist = PKTLOG_EVENT;
  7983. cmd->enable = user_triggered ? WMI_PKTLOG_ENABLE_FORCE
  7984. : WMI_PKTLOG_ENABLE_AUTO;
  7985. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  7986. WMI_HOST_PDEV_ID_SOC);
  7987. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  7988. WMI_PDEV_PKTLOG_ENABLE_CMDID)) {
  7989. WMI_LOGE("failed to send pktlog enable cmdid");
  7990. goto wmi_send_failed;
  7991. }
  7992. break;
  7993. case WMI_PDEV_PKTLOG_DISABLE_CMDID:
  7994. len = sizeof(*disable_cmd);
  7995. buf = wmi_buf_alloc(wmi_handle, len);
  7996. if (!buf) {
  7997. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  7998. return QDF_STATUS_E_NOMEM;
  7999. }
  8000. disable_cmd = (wmi_pdev_pktlog_disable_cmd_fixed_param *)
  8001. wmi_buf_data(buf);
  8002. WMITLV_SET_HDR(&disable_cmd->tlv_header,
  8003. WMITLV_TAG_STRUC_wmi_pdev_pktlog_disable_cmd_fixed_param,
  8004. WMITLV_GET_STRUCT_TLVLEN
  8005. (wmi_pdev_pktlog_disable_cmd_fixed_param));
  8006. disable_cmd->pdev_id =
  8007. wmi_handle->ops->convert_pdev_id_host_to_target(
  8008. WMI_HOST_PDEV_ID_SOC);
  8009. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  8010. WMI_PDEV_PKTLOG_DISABLE_CMDID)) {
  8011. WMI_LOGE("failed to send pktlog disable cmdid");
  8012. goto wmi_send_failed;
  8013. }
  8014. break;
  8015. default:
  8016. WMI_LOGD("%s: invalid PKTLOG command", __func__);
  8017. break;
  8018. }
  8019. return QDF_STATUS_SUCCESS;
  8020. wmi_send_failed:
  8021. wmi_buf_free(buf);
  8022. return QDF_STATUS_E_FAILURE;
  8023. }
  8024. #endif /* REMOVE_PKT_LOG */
  8025. /**
  8026. * send_wow_delete_pattern_cmd_tlv() - delete wow pattern in target
  8027. * @wmi_handle: wmi handle
  8028. * @ptrn_id: pattern id
  8029. * @vdev_id: vdev id
  8030. *
  8031. * Return: CDF status
  8032. */
  8033. static QDF_STATUS send_wow_delete_pattern_cmd_tlv(wmi_unified_t wmi_handle,
  8034. uint8_t ptrn_id, uint8_t vdev_id)
  8035. {
  8036. WMI_WOW_DEL_PATTERN_CMD_fixed_param *cmd;
  8037. wmi_buf_t buf;
  8038. int32_t len;
  8039. int ret;
  8040. len = sizeof(WMI_WOW_DEL_PATTERN_CMD_fixed_param);
  8041. buf = wmi_buf_alloc(wmi_handle, len);
  8042. if (!buf) {
  8043. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  8044. return QDF_STATUS_E_NOMEM;
  8045. }
  8046. cmd = (WMI_WOW_DEL_PATTERN_CMD_fixed_param *) wmi_buf_data(buf);
  8047. WMITLV_SET_HDR(&cmd->tlv_header,
  8048. WMITLV_TAG_STRUC_WMI_WOW_DEL_PATTERN_CMD_fixed_param,
  8049. WMITLV_GET_STRUCT_TLVLEN(
  8050. WMI_WOW_DEL_PATTERN_CMD_fixed_param));
  8051. cmd->vdev_id = vdev_id;
  8052. cmd->pattern_id = ptrn_id;
  8053. cmd->pattern_type = WOW_BITMAP_PATTERN;
  8054. WMI_LOGI("Deleting pattern id: %d vdev id %d in fw",
  8055. cmd->pattern_id, vdev_id);
  8056. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8057. WMI_WOW_DEL_WAKE_PATTERN_CMDID);
  8058. if (ret) {
  8059. WMI_LOGE("%s: Failed to delete wow ptrn from fw", __func__);
  8060. wmi_buf_free(buf);
  8061. return QDF_STATUS_E_FAILURE;
  8062. }
  8063. return QDF_STATUS_SUCCESS;
  8064. }
  8065. /**
  8066. * send_host_wakeup_ind_to_fw_cmd_tlv() - send wakeup ind to fw
  8067. * @wmi_handle: wmi handle
  8068. *
  8069. * Sends host wakeup indication to FW. On receiving this indication,
  8070. * FW will come out of WOW.
  8071. *
  8072. * Return: CDF status
  8073. */
  8074. static QDF_STATUS send_host_wakeup_ind_to_fw_cmd_tlv(wmi_unified_t wmi_handle)
  8075. {
  8076. wmi_wow_hostwakeup_from_sleep_cmd_fixed_param *cmd;
  8077. wmi_buf_t buf;
  8078. QDF_STATUS qdf_status = QDF_STATUS_SUCCESS;
  8079. int32_t len;
  8080. int ret;
  8081. len = sizeof(wmi_wow_hostwakeup_from_sleep_cmd_fixed_param);
  8082. buf = wmi_buf_alloc(wmi_handle, len);
  8083. if (!buf) {
  8084. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  8085. return QDF_STATUS_E_NOMEM;
  8086. }
  8087. cmd = (wmi_wow_hostwakeup_from_sleep_cmd_fixed_param *)
  8088. wmi_buf_data(buf);
  8089. WMITLV_SET_HDR(&cmd->tlv_header,
  8090. WMITLV_TAG_STRUC_wmi_wow_hostwakeup_from_sleep_cmd_fixed_param,
  8091. WMITLV_GET_STRUCT_TLVLEN
  8092. (wmi_wow_hostwakeup_from_sleep_cmd_fixed_param));
  8093. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8094. WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID);
  8095. if (ret) {
  8096. WMI_LOGE("Failed to send host wakeup indication to fw");
  8097. wmi_buf_free(buf);
  8098. return QDF_STATUS_E_FAILURE;
  8099. }
  8100. return qdf_status;
  8101. }
  8102. /**
  8103. * send_del_ts_cmd_tlv() - send DELTS request to fw
  8104. * @wmi_handle: wmi handle
  8105. * @msg: delts params
  8106. *
  8107. * Return: CDF status
  8108. */
  8109. static QDF_STATUS send_del_ts_cmd_tlv(wmi_unified_t wmi_handle, uint8_t vdev_id,
  8110. uint8_t ac)
  8111. {
  8112. wmi_vdev_wmm_delts_cmd_fixed_param *cmd;
  8113. wmi_buf_t buf;
  8114. int32_t len = sizeof(*cmd);
  8115. buf = wmi_buf_alloc(wmi_handle, len);
  8116. if (!buf) {
  8117. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  8118. return QDF_STATUS_E_NOMEM;
  8119. }
  8120. cmd = (wmi_vdev_wmm_delts_cmd_fixed_param *) wmi_buf_data(buf);
  8121. WMITLV_SET_HDR(&cmd->tlv_header,
  8122. WMITLV_TAG_STRUC_wmi_vdev_wmm_delts_cmd_fixed_param,
  8123. WMITLV_GET_STRUCT_TLVLEN
  8124. (wmi_vdev_wmm_delts_cmd_fixed_param));
  8125. cmd->vdev_id = vdev_id;
  8126. cmd->ac = ac;
  8127. WMI_LOGD("Delts vdev:%d, ac:%d, %s:%d",
  8128. cmd->vdev_id, cmd->ac, __func__, __LINE__);
  8129. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  8130. WMI_VDEV_WMM_DELTS_CMDID)) {
  8131. WMI_LOGP("%s: Failed to send vdev DELTS command", __func__);
  8132. wmi_buf_free(buf);
  8133. return QDF_STATUS_E_FAILURE;
  8134. }
  8135. return QDF_STATUS_SUCCESS;
  8136. }
  8137. /**
  8138. * send_aggr_qos_cmd_tlv() - send aggr qos request to fw
  8139. * @wmi_handle: handle to wmi
  8140. * @aggr_qos_rsp_msg - combined struct for all ADD_TS requests.
  8141. *
  8142. * A function to handle WMI_AGGR_QOS_REQ. This will send out
  8143. * ADD_TS requestes to firmware in loop for all the ACs with
  8144. * active flow.
  8145. *
  8146. * Return: CDF status
  8147. */
  8148. static QDF_STATUS send_aggr_qos_cmd_tlv(wmi_unified_t wmi_handle,
  8149. struct aggr_add_ts_param *aggr_qos_rsp_msg)
  8150. {
  8151. int i = 0;
  8152. wmi_vdev_wmm_addts_cmd_fixed_param *cmd;
  8153. wmi_buf_t buf;
  8154. int32_t len = sizeof(*cmd);
  8155. for (i = 0; i < WMI_QOS_NUM_AC_MAX; i++) {
  8156. /* if flow in this AC is active */
  8157. if (((1 << i) & aggr_qos_rsp_msg->tspecIdx)) {
  8158. /*
  8159. * as per implementation of wma_add_ts_req() we
  8160. * are not waiting any response from firmware so
  8161. * apart from sending ADDTS to firmware just send
  8162. * success to upper layers
  8163. */
  8164. aggr_qos_rsp_msg->status[i] = QDF_STATUS_SUCCESS;
  8165. buf = wmi_buf_alloc(wmi_handle, len);
  8166. if (!buf) {
  8167. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  8168. return QDF_STATUS_E_NOMEM;
  8169. }
  8170. cmd = (wmi_vdev_wmm_addts_cmd_fixed_param *)
  8171. wmi_buf_data(buf);
  8172. WMITLV_SET_HDR(&cmd->tlv_header,
  8173. WMITLV_TAG_STRUC_wmi_vdev_wmm_addts_cmd_fixed_param,
  8174. WMITLV_GET_STRUCT_TLVLEN
  8175. (wmi_vdev_wmm_addts_cmd_fixed_param));
  8176. cmd->vdev_id = aggr_qos_rsp_msg->sessionId;
  8177. cmd->ac =
  8178. WMI_TID_TO_AC(aggr_qos_rsp_msg->tspec[i].tsinfo.
  8179. traffic.userPrio);
  8180. cmd->medium_time_us =
  8181. aggr_qos_rsp_msg->tspec[i].mediumTime * 32;
  8182. cmd->downgrade_type = WMM_AC_DOWNGRADE_DEPRIO;
  8183. WMI_LOGD("%s:%d: Addts vdev:%d, ac:%d, mediumTime:%d downgrade_type:%d",
  8184. __func__, __LINE__, cmd->vdev_id, cmd->ac,
  8185. cmd->medium_time_us, cmd->downgrade_type);
  8186. if (wmi_unified_cmd_send
  8187. (wmi_handle, buf, len,
  8188. WMI_VDEV_WMM_ADDTS_CMDID)) {
  8189. WMI_LOGP("%s: Failed to send vdev ADDTS command",
  8190. __func__);
  8191. aggr_qos_rsp_msg->status[i] =
  8192. QDF_STATUS_E_FAILURE;
  8193. wmi_buf_free(buf);
  8194. return QDF_STATUS_E_FAILURE;
  8195. }
  8196. }
  8197. }
  8198. return QDF_STATUS_SUCCESS;
  8199. }
  8200. /**
  8201. * send_add_ts_cmd_tlv() - send ADDTS request to fw
  8202. * @wmi_handle: wmi handle
  8203. * @msg: ADDTS params
  8204. *
  8205. * Return: CDF status
  8206. */
  8207. static QDF_STATUS send_add_ts_cmd_tlv(wmi_unified_t wmi_handle,
  8208. struct add_ts_param *msg)
  8209. {
  8210. wmi_vdev_wmm_addts_cmd_fixed_param *cmd;
  8211. wmi_buf_t buf;
  8212. int32_t len = sizeof(*cmd);
  8213. msg->status = QDF_STATUS_SUCCESS;
  8214. buf = wmi_buf_alloc(wmi_handle, len);
  8215. if (!buf) {
  8216. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  8217. return QDF_STATUS_E_NOMEM;
  8218. }
  8219. cmd = (wmi_vdev_wmm_addts_cmd_fixed_param *) wmi_buf_data(buf);
  8220. WMITLV_SET_HDR(&cmd->tlv_header,
  8221. WMITLV_TAG_STRUC_wmi_vdev_wmm_addts_cmd_fixed_param,
  8222. WMITLV_GET_STRUCT_TLVLEN
  8223. (wmi_vdev_wmm_addts_cmd_fixed_param));
  8224. cmd->vdev_id = msg->sme_session_id;
  8225. cmd->ac = msg->tspec.tsinfo.traffic.userPrio;
  8226. cmd->medium_time_us = msg->tspec.mediumTime * 32;
  8227. cmd->downgrade_type = WMM_AC_DOWNGRADE_DROP;
  8228. WMI_LOGD("Addts vdev:%d, ac:%d, mediumTime:%d, downgrade_type:%d %s:%d",
  8229. cmd->vdev_id, cmd->ac, cmd->medium_time_us,
  8230. cmd->downgrade_type, __func__, __LINE__);
  8231. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  8232. WMI_VDEV_WMM_ADDTS_CMDID)) {
  8233. WMI_LOGP("%s: Failed to send vdev ADDTS command", __func__);
  8234. msg->status = QDF_STATUS_E_FAILURE;
  8235. wmi_buf_free(buf);
  8236. return QDF_STATUS_E_FAILURE;
  8237. }
  8238. return QDF_STATUS_SUCCESS;
  8239. }
  8240. /**
  8241. * send_process_add_periodic_tx_ptrn_cmd_tlv - add periodic tx ptrn
  8242. * @wmi_handle: wmi handle
  8243. * @pAddPeriodicTxPtrnParams: tx ptrn params
  8244. *
  8245. * Retrun: CDF status
  8246. */
  8247. static QDF_STATUS send_process_add_periodic_tx_ptrn_cmd_tlv(wmi_unified_t wmi_handle,
  8248. struct periodic_tx_pattern *
  8249. pAddPeriodicTxPtrnParams,
  8250. uint8_t vdev_id)
  8251. {
  8252. WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param *cmd;
  8253. wmi_buf_t wmi_buf;
  8254. uint32_t len;
  8255. uint8_t *buf_ptr;
  8256. uint32_t ptrn_len, ptrn_len_aligned;
  8257. int j;
  8258. ptrn_len = pAddPeriodicTxPtrnParams->ucPtrnSize;
  8259. ptrn_len_aligned = roundup(ptrn_len, sizeof(uint32_t));
  8260. len = sizeof(WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param) +
  8261. WMI_TLV_HDR_SIZE + ptrn_len_aligned;
  8262. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  8263. if (!wmi_buf) {
  8264. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  8265. return QDF_STATUS_E_NOMEM;
  8266. }
  8267. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  8268. cmd = (WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param *) buf_ptr;
  8269. WMITLV_SET_HDR(&cmd->tlv_header,
  8270. WMITLV_TAG_STRUC_WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param,
  8271. WMITLV_GET_STRUCT_TLVLEN
  8272. (WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param));
  8273. /* Pass the pattern id to delete for the corresponding vdev id */
  8274. cmd->vdev_id = vdev_id;
  8275. cmd->pattern_id = pAddPeriodicTxPtrnParams->ucPtrnId;
  8276. cmd->timeout = pAddPeriodicTxPtrnParams->usPtrnIntervalMs;
  8277. cmd->length = pAddPeriodicTxPtrnParams->ucPtrnSize;
  8278. /* Pattern info */
  8279. buf_ptr += sizeof(WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param);
  8280. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, ptrn_len_aligned);
  8281. buf_ptr += WMI_TLV_HDR_SIZE;
  8282. qdf_mem_copy(buf_ptr, pAddPeriodicTxPtrnParams->ucPattern, ptrn_len);
  8283. for (j = 0; j < pAddPeriodicTxPtrnParams->ucPtrnSize; j++)
  8284. WMI_LOGD("%s: Add Ptrn: %02x", __func__, buf_ptr[j] & 0xff);
  8285. WMI_LOGD("%s: Add ptrn id: %d vdev_id: %d",
  8286. __func__, cmd->pattern_id, cmd->vdev_id);
  8287. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  8288. WMI_ADD_PROACTIVE_ARP_RSP_PATTERN_CMDID)) {
  8289. WMI_LOGE("%s: failed to add pattern set state command",
  8290. __func__);
  8291. wmi_buf_free(wmi_buf);
  8292. return QDF_STATUS_E_FAILURE;
  8293. }
  8294. return QDF_STATUS_SUCCESS;
  8295. }
  8296. /**
  8297. * send_process_del_periodic_tx_ptrn_cmd_tlv - del periodic tx ptrn
  8298. * @wmi_handle: wmi handle
  8299. * @vdev_id: vdev id
  8300. * @pattern_id: pattern id
  8301. *
  8302. * Retrun: CDF status
  8303. */
  8304. static QDF_STATUS send_process_del_periodic_tx_ptrn_cmd_tlv(wmi_unified_t wmi_handle,
  8305. uint8_t vdev_id,
  8306. uint8_t pattern_id)
  8307. {
  8308. WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param *cmd;
  8309. wmi_buf_t wmi_buf;
  8310. uint32_t len =
  8311. sizeof(WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param);
  8312. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  8313. if (!wmi_buf) {
  8314. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  8315. return QDF_STATUS_E_NOMEM;
  8316. }
  8317. cmd = (WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param *)
  8318. wmi_buf_data(wmi_buf);
  8319. WMITLV_SET_HDR(&cmd->tlv_header,
  8320. WMITLV_TAG_STRUC_WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param,
  8321. WMITLV_GET_STRUCT_TLVLEN
  8322. (WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMD_fixed_param));
  8323. /* Pass the pattern id to delete for the corresponding vdev id */
  8324. cmd->vdev_id = vdev_id;
  8325. cmd->pattern_id = pattern_id;
  8326. WMI_LOGD("%s: Del ptrn id: %d vdev_id: %d",
  8327. __func__, cmd->pattern_id, cmd->vdev_id);
  8328. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  8329. WMI_DEL_PROACTIVE_ARP_RSP_PATTERN_CMDID)) {
  8330. WMI_LOGE("%s: failed to send del pattern command", __func__);
  8331. wmi_buf_free(wmi_buf);
  8332. return QDF_STATUS_E_FAILURE;
  8333. }
  8334. return QDF_STATUS_SUCCESS;
  8335. }
  8336. /**
  8337. * send_stats_ext_req_cmd_tlv() - request ext stats from fw
  8338. * @wmi_handle: wmi handle
  8339. * @preq: stats ext params
  8340. *
  8341. * Return: CDF status
  8342. */
  8343. static QDF_STATUS send_stats_ext_req_cmd_tlv(wmi_unified_t wmi_handle,
  8344. struct stats_ext_params *preq)
  8345. {
  8346. QDF_STATUS ret;
  8347. wmi_req_stats_ext_cmd_fixed_param *cmd;
  8348. wmi_buf_t buf;
  8349. size_t len;
  8350. uint8_t *buf_ptr;
  8351. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE + preq->request_data_len;
  8352. buf = wmi_buf_alloc(wmi_handle, len);
  8353. if (!buf) {
  8354. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  8355. return QDF_STATUS_E_NOMEM;
  8356. }
  8357. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  8358. cmd = (wmi_req_stats_ext_cmd_fixed_param *) buf_ptr;
  8359. WMITLV_SET_HDR(&cmd->tlv_header,
  8360. WMITLV_TAG_STRUC_wmi_req_stats_ext_cmd_fixed_param,
  8361. WMITLV_GET_STRUCT_TLVLEN
  8362. (wmi_req_stats_ext_cmd_fixed_param));
  8363. cmd->vdev_id = preq->vdev_id;
  8364. cmd->data_len = preq->request_data_len;
  8365. WMI_LOGD("%s: The data len value is %u and vdev id set is %u ",
  8366. __func__, preq->request_data_len, preq->vdev_id);
  8367. buf_ptr += sizeof(wmi_req_stats_ext_cmd_fixed_param);
  8368. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, cmd->data_len);
  8369. buf_ptr += WMI_TLV_HDR_SIZE;
  8370. qdf_mem_copy(buf_ptr, preq->request_data, cmd->data_len);
  8371. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8372. WMI_REQUEST_STATS_EXT_CMDID);
  8373. if (QDF_IS_STATUS_ERROR(ret)) {
  8374. WMI_LOGE("%s: Failed to send notify cmd ret = %d", __func__,
  8375. ret);
  8376. wmi_buf_free(buf);
  8377. }
  8378. return ret;
  8379. }
  8380. /**
  8381. * send_enable_ext_wow_cmd_tlv() - enable ext wow in fw
  8382. * @wmi_handle: wmi handle
  8383. * @params: ext wow params
  8384. *
  8385. * Return:0 for success or error code
  8386. */
  8387. static QDF_STATUS send_enable_ext_wow_cmd_tlv(wmi_unified_t wmi_handle,
  8388. struct ext_wow_params *params)
  8389. {
  8390. wmi_extwow_enable_cmd_fixed_param *cmd;
  8391. wmi_buf_t buf;
  8392. int32_t len;
  8393. int ret;
  8394. len = sizeof(wmi_extwow_enable_cmd_fixed_param);
  8395. buf = wmi_buf_alloc(wmi_handle, len);
  8396. if (!buf) {
  8397. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  8398. return QDF_STATUS_E_NOMEM;
  8399. }
  8400. cmd = (wmi_extwow_enable_cmd_fixed_param *) wmi_buf_data(buf);
  8401. WMITLV_SET_HDR(&cmd->tlv_header,
  8402. WMITLV_TAG_STRUC_wmi_extwow_enable_cmd_fixed_param,
  8403. WMITLV_GET_STRUCT_TLVLEN
  8404. (wmi_extwow_enable_cmd_fixed_param));
  8405. cmd->vdev_id = params->vdev_id;
  8406. cmd->type = params->type;
  8407. cmd->wakeup_pin_num = params->wakeup_pin_num;
  8408. WMI_LOGD("%s: vdev_id %d type %d Wakeup_pin_num %x",
  8409. __func__, cmd->vdev_id, cmd->type, cmd->wakeup_pin_num);
  8410. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8411. WMI_EXTWOW_ENABLE_CMDID);
  8412. if (ret) {
  8413. WMI_LOGE("%s: Failed to set EXTWOW Enable", __func__);
  8414. wmi_buf_free(buf);
  8415. return QDF_STATUS_E_FAILURE;
  8416. }
  8417. return QDF_STATUS_SUCCESS;
  8418. }
  8419. /**
  8420. * send_app_type1_params_in_fw_cmd_tlv() - set app type1 params in fw
  8421. * @wmi_handle: wmi handle
  8422. * @app_type1_params: app type1 params
  8423. *
  8424. * Return: CDF status
  8425. */
  8426. static QDF_STATUS send_app_type1_params_in_fw_cmd_tlv(wmi_unified_t wmi_handle,
  8427. struct app_type1_params *app_type1_params)
  8428. {
  8429. wmi_extwow_set_app_type1_params_cmd_fixed_param *cmd;
  8430. wmi_buf_t buf;
  8431. int32_t len;
  8432. int ret;
  8433. len = sizeof(wmi_extwow_set_app_type1_params_cmd_fixed_param);
  8434. buf = wmi_buf_alloc(wmi_handle, len);
  8435. if (!buf) {
  8436. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  8437. return QDF_STATUS_E_NOMEM;
  8438. }
  8439. cmd = (wmi_extwow_set_app_type1_params_cmd_fixed_param *)
  8440. wmi_buf_data(buf);
  8441. WMITLV_SET_HDR(&cmd->tlv_header,
  8442. WMITLV_TAG_STRUC_wmi_extwow_set_app_type1_params_cmd_fixed_param,
  8443. WMITLV_GET_STRUCT_TLVLEN
  8444. (wmi_extwow_set_app_type1_params_cmd_fixed_param));
  8445. cmd->vdev_id = app_type1_params->vdev_id;
  8446. WMI_CHAR_ARRAY_TO_MAC_ADDR(app_type1_params->wakee_mac_addr.bytes,
  8447. &cmd->wakee_mac);
  8448. qdf_mem_copy(cmd->ident, app_type1_params->identification_id, 8);
  8449. cmd->ident_len = app_type1_params->id_length;
  8450. qdf_mem_copy(cmd->passwd, app_type1_params->password, 16);
  8451. cmd->passwd_len = app_type1_params->pass_length;
  8452. WMI_LOGD("%s: vdev_id %d wakee_mac_addr %pM "
  8453. "identification_id %.8s id_length %u "
  8454. "password %.16s pass_length %u",
  8455. __func__, cmd->vdev_id, app_type1_params->wakee_mac_addr.bytes,
  8456. cmd->ident, cmd->ident_len, cmd->passwd, cmd->passwd_len);
  8457. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8458. WMI_EXTWOW_SET_APP_TYPE1_PARAMS_CMDID);
  8459. if (ret) {
  8460. WMI_LOGE("%s: Failed to set APP TYPE1 PARAMS", __func__);
  8461. wmi_buf_free(buf);
  8462. return QDF_STATUS_E_FAILURE;
  8463. }
  8464. return QDF_STATUS_SUCCESS;
  8465. }
  8466. /**
  8467. * send_set_app_type2_params_in_fw_cmd_tlv() - set app type2 params in fw
  8468. * @wmi_handle: wmi handle
  8469. * @appType2Params: app type2 params
  8470. *
  8471. * Return: CDF status
  8472. */
  8473. static QDF_STATUS send_set_app_type2_params_in_fw_cmd_tlv(wmi_unified_t wmi_handle,
  8474. struct app_type2_params *appType2Params)
  8475. {
  8476. wmi_extwow_set_app_type2_params_cmd_fixed_param *cmd;
  8477. wmi_buf_t buf;
  8478. int32_t len;
  8479. int ret;
  8480. len = sizeof(wmi_extwow_set_app_type2_params_cmd_fixed_param);
  8481. buf = wmi_buf_alloc(wmi_handle, len);
  8482. if (!buf) {
  8483. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  8484. return QDF_STATUS_E_NOMEM;
  8485. }
  8486. cmd = (wmi_extwow_set_app_type2_params_cmd_fixed_param *)
  8487. wmi_buf_data(buf);
  8488. WMITLV_SET_HDR(&cmd->tlv_header,
  8489. WMITLV_TAG_STRUC_wmi_extwow_set_app_type2_params_cmd_fixed_param,
  8490. WMITLV_GET_STRUCT_TLVLEN
  8491. (wmi_extwow_set_app_type2_params_cmd_fixed_param));
  8492. cmd->vdev_id = appType2Params->vdev_id;
  8493. qdf_mem_copy(cmd->rc4_key, appType2Params->rc4_key, 16);
  8494. cmd->rc4_key_len = appType2Params->rc4_key_len;
  8495. cmd->ip_id = appType2Params->ip_id;
  8496. cmd->ip_device_ip = appType2Params->ip_device_ip;
  8497. cmd->ip_server_ip = appType2Params->ip_server_ip;
  8498. cmd->tcp_src_port = appType2Params->tcp_src_port;
  8499. cmd->tcp_dst_port = appType2Params->tcp_dst_port;
  8500. cmd->tcp_seq = appType2Params->tcp_seq;
  8501. cmd->tcp_ack_seq = appType2Params->tcp_ack_seq;
  8502. cmd->keepalive_init = appType2Params->keepalive_init;
  8503. cmd->keepalive_min = appType2Params->keepalive_min;
  8504. cmd->keepalive_max = appType2Params->keepalive_max;
  8505. cmd->keepalive_inc = appType2Params->keepalive_inc;
  8506. WMI_CHAR_ARRAY_TO_MAC_ADDR(appType2Params->gateway_mac.bytes,
  8507. &cmd->gateway_mac);
  8508. cmd->tcp_tx_timeout_val = appType2Params->tcp_tx_timeout_val;
  8509. cmd->tcp_rx_timeout_val = appType2Params->tcp_rx_timeout_val;
  8510. WMI_LOGD("%s: vdev_id %d gateway_mac %pM "
  8511. "rc4_key %.16s rc4_key_len %u "
  8512. "ip_id %x ip_device_ip %x ip_server_ip %x "
  8513. "tcp_src_port %u tcp_dst_port %u tcp_seq %u "
  8514. "tcp_ack_seq %u keepalive_init %u keepalive_min %u "
  8515. "keepalive_max %u keepalive_inc %u "
  8516. "tcp_tx_timeout_val %u tcp_rx_timeout_val %u",
  8517. __func__, cmd->vdev_id, appType2Params->gateway_mac.bytes,
  8518. cmd->rc4_key, cmd->rc4_key_len,
  8519. cmd->ip_id, cmd->ip_device_ip, cmd->ip_server_ip,
  8520. cmd->tcp_src_port, cmd->tcp_dst_port, cmd->tcp_seq,
  8521. cmd->tcp_ack_seq, cmd->keepalive_init, cmd->keepalive_min,
  8522. cmd->keepalive_max, cmd->keepalive_inc,
  8523. cmd->tcp_tx_timeout_val, cmd->tcp_rx_timeout_val);
  8524. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8525. WMI_EXTWOW_SET_APP_TYPE2_PARAMS_CMDID);
  8526. if (ret) {
  8527. WMI_LOGE("%s: Failed to set APP TYPE2 PARAMS", __func__);
  8528. wmi_buf_free(buf);
  8529. return QDF_STATUS_E_FAILURE;
  8530. }
  8531. return QDF_STATUS_SUCCESS;
  8532. }
  8533. /**
  8534. * send_set_auto_shutdown_timer_cmd_tlv() - sets auto shutdown timer in firmware
  8535. * @wmi_handle: wmi handle
  8536. * @timer_val: auto shutdown timer value
  8537. *
  8538. * Return: CDF status
  8539. */
  8540. static QDF_STATUS send_set_auto_shutdown_timer_cmd_tlv(wmi_unified_t wmi_handle,
  8541. uint32_t timer_val)
  8542. {
  8543. QDF_STATUS status;
  8544. wmi_buf_t buf = NULL;
  8545. uint8_t *buf_ptr;
  8546. wmi_host_auto_shutdown_cfg_cmd_fixed_param *wmi_auto_sh_cmd;
  8547. int len = sizeof(wmi_host_auto_shutdown_cfg_cmd_fixed_param);
  8548. WMI_LOGD("%s: Set WMI_HOST_AUTO_SHUTDOWN_CFG_CMDID:TIMER_VAL=%d",
  8549. __func__, timer_val);
  8550. buf = wmi_buf_alloc(wmi_handle, len);
  8551. if (!buf) {
  8552. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  8553. return QDF_STATUS_E_NOMEM;
  8554. }
  8555. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  8556. wmi_auto_sh_cmd =
  8557. (wmi_host_auto_shutdown_cfg_cmd_fixed_param *) buf_ptr;
  8558. wmi_auto_sh_cmd->timer_value = timer_val;
  8559. WMITLV_SET_HDR(&wmi_auto_sh_cmd->tlv_header,
  8560. WMITLV_TAG_STRUC_wmi_host_auto_shutdown_cfg_cmd_fixed_param,
  8561. WMITLV_GET_STRUCT_TLVLEN
  8562. (wmi_host_auto_shutdown_cfg_cmd_fixed_param));
  8563. status = wmi_unified_cmd_send(wmi_handle, buf,
  8564. len, WMI_HOST_AUTO_SHUTDOWN_CFG_CMDID);
  8565. if (QDF_IS_STATUS_ERROR(status)) {
  8566. WMI_LOGE("%s: WMI_HOST_AUTO_SHUTDOWN_CFG_CMDID Err %d",
  8567. __func__, status);
  8568. wmi_buf_free(buf);
  8569. }
  8570. return status;
  8571. }
  8572. /**
  8573. * send_nan_req_cmd_tlv() - to send nan request to target
  8574. * @wmi_handle: wmi handle
  8575. * @nan_req: request data which will be non-null
  8576. *
  8577. * Return: CDF status
  8578. */
  8579. static QDF_STATUS send_nan_req_cmd_tlv(wmi_unified_t wmi_handle,
  8580. struct nan_req_params *nan_req)
  8581. {
  8582. QDF_STATUS ret;
  8583. wmi_nan_cmd_param *cmd;
  8584. wmi_buf_t buf;
  8585. uint16_t len = sizeof(*cmd);
  8586. uint16_t nan_data_len, nan_data_len_aligned;
  8587. uint8_t *buf_ptr;
  8588. /*
  8589. * <----- cmd ------------><-- WMI_TLV_HDR_SIZE --><--- data ---->
  8590. * +------------+----------+-----------------------+--------------+
  8591. * | tlv_header | data_len | WMITLV_TAG_ARRAY_BYTE | nan_req_data |
  8592. * +------------+----------+-----------------------+--------------+
  8593. */
  8594. if (!nan_req) {
  8595. WMI_LOGE("%s:nan req is not valid", __func__);
  8596. return QDF_STATUS_E_FAILURE;
  8597. }
  8598. nan_data_len = nan_req->request_data_len;
  8599. nan_data_len_aligned = roundup(nan_req->request_data_len,
  8600. sizeof(uint32_t));
  8601. if (nan_data_len_aligned < nan_req->request_data_len) {
  8602. WMI_LOGE("%s: integer overflow while rounding up data_len",
  8603. __func__);
  8604. return QDF_STATUS_E_FAILURE;
  8605. }
  8606. if (nan_data_len_aligned > WMI_SVC_MSG_MAX_SIZE - WMI_TLV_HDR_SIZE) {
  8607. WMI_LOGE("%s: wmi_max_msg_size overflow for given datalen",
  8608. __func__);
  8609. return QDF_STATUS_E_FAILURE;
  8610. }
  8611. len += WMI_TLV_HDR_SIZE + nan_data_len_aligned;
  8612. buf = wmi_buf_alloc(wmi_handle, len);
  8613. if (!buf) {
  8614. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  8615. return QDF_STATUS_E_NOMEM;
  8616. }
  8617. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  8618. cmd = (wmi_nan_cmd_param *) buf_ptr;
  8619. WMITLV_SET_HDR(&cmd->tlv_header,
  8620. WMITLV_TAG_STRUC_wmi_nan_cmd_param,
  8621. WMITLV_GET_STRUCT_TLVLEN(wmi_nan_cmd_param));
  8622. cmd->data_len = nan_req->request_data_len;
  8623. WMI_LOGD("%s: The data len value is %u",
  8624. __func__, nan_req->request_data_len);
  8625. buf_ptr += sizeof(wmi_nan_cmd_param);
  8626. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, nan_data_len_aligned);
  8627. buf_ptr += WMI_TLV_HDR_SIZE;
  8628. qdf_mem_copy(buf_ptr, nan_req->request_data, cmd->data_len);
  8629. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  8630. WMI_NAN_CMDID);
  8631. if (QDF_IS_STATUS_ERROR(ret)) {
  8632. WMI_LOGE("%s Failed to send set param command ret = %d",
  8633. __func__, ret);
  8634. wmi_buf_free(buf);
  8635. }
  8636. return ret;
  8637. }
  8638. /**
  8639. * send_process_dhcpserver_offload_cmd_tlv() - enable DHCP server offload
  8640. * @wmi_handle: wmi handle
  8641. * @params: DHCP server offload info
  8642. *
  8643. * Return: QDF_STATUS_SUCCESS for success or error code
  8644. */
  8645. static QDF_STATUS
  8646. send_process_dhcpserver_offload_cmd_tlv(wmi_unified_t wmi_handle,
  8647. struct dhcp_offload_info_params *params)
  8648. {
  8649. wmi_set_dhcp_server_offload_cmd_fixed_param *cmd;
  8650. wmi_buf_t buf;
  8651. QDF_STATUS status;
  8652. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  8653. if (!buf) {
  8654. WMI_LOGE("Failed to allocate buffer to send "
  8655. "set_dhcp_server_offload cmd");
  8656. return QDF_STATUS_E_NOMEM;
  8657. }
  8658. cmd = (wmi_set_dhcp_server_offload_cmd_fixed_param *) wmi_buf_data(buf);
  8659. WMITLV_SET_HDR(&cmd->tlv_header,
  8660. WMITLV_TAG_STRUC_wmi_set_dhcp_server_offload_cmd_fixed_param,
  8661. WMITLV_GET_STRUCT_TLVLEN
  8662. (wmi_set_dhcp_server_offload_cmd_fixed_param));
  8663. cmd->vdev_id = params->vdev_id;
  8664. cmd->enable = params->dhcp_offload_enabled;
  8665. cmd->num_client = params->dhcp_client_num;
  8666. cmd->srv_ipv4 = params->dhcp_srv_addr;
  8667. cmd->start_lsb = 0;
  8668. status = wmi_unified_cmd_send(wmi_handle, buf,
  8669. sizeof(*cmd),
  8670. WMI_SET_DHCP_SERVER_OFFLOAD_CMDID);
  8671. if (QDF_IS_STATUS_ERROR(status)) {
  8672. WMI_LOGE("Failed to send set_dhcp_server_offload cmd");
  8673. wmi_buf_free(buf);
  8674. return QDF_STATUS_E_FAILURE;
  8675. }
  8676. WMI_LOGD("Set dhcp server offload to vdevId %d",
  8677. params->vdev_id);
  8678. return status;
  8679. }
  8680. /**
  8681. * send_set_led_flashing_cmd_tlv() - set led flashing in fw
  8682. * @wmi_handle: wmi handle
  8683. * @flashing: flashing request
  8684. *
  8685. * Return: CDF status
  8686. */
  8687. static QDF_STATUS send_set_led_flashing_cmd_tlv(wmi_unified_t wmi_handle,
  8688. struct flashing_req_params *flashing)
  8689. {
  8690. wmi_set_led_flashing_cmd_fixed_param *cmd;
  8691. QDF_STATUS status;
  8692. wmi_buf_t buf;
  8693. uint8_t *buf_ptr;
  8694. int32_t len = sizeof(wmi_set_led_flashing_cmd_fixed_param);
  8695. buf = wmi_buf_alloc(wmi_handle, len);
  8696. if (!buf) {
  8697. WMI_LOGP(FL("wmi_buf_alloc failed"));
  8698. return QDF_STATUS_E_NOMEM;
  8699. }
  8700. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  8701. cmd = (wmi_set_led_flashing_cmd_fixed_param *) buf_ptr;
  8702. WMITLV_SET_HDR(&cmd->tlv_header,
  8703. WMITLV_TAG_STRUC_wmi_set_led_flashing_cmd_fixed_param,
  8704. WMITLV_GET_STRUCT_TLVLEN
  8705. (wmi_set_led_flashing_cmd_fixed_param));
  8706. cmd->pattern_id = flashing->pattern_id;
  8707. cmd->led_x0 = flashing->led_x0;
  8708. cmd->led_x1 = flashing->led_x1;
  8709. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  8710. WMI_PDEV_SET_LED_FLASHING_CMDID);
  8711. if (QDF_IS_STATUS_ERROR(status)) {
  8712. WMI_LOGE("%s: wmi_unified_cmd_send WMI_PEER_SET_PARAM_CMD"
  8713. " returned Error %d", __func__, status);
  8714. wmi_buf_free(buf);
  8715. }
  8716. return status;
  8717. }
  8718. /**
  8719. * send_process_ch_avoid_update_cmd_tlv() - handles channel avoid update request
  8720. * @wmi_handle: wmi handle
  8721. * @ch_avoid_update_req: channel avoid update params
  8722. *
  8723. * Return: CDF status
  8724. */
  8725. static QDF_STATUS send_process_ch_avoid_update_cmd_tlv(wmi_unified_t wmi_handle)
  8726. {
  8727. QDF_STATUS status;
  8728. wmi_buf_t buf = NULL;
  8729. uint8_t *buf_ptr;
  8730. wmi_chan_avoid_update_cmd_param *ch_avoid_update_fp;
  8731. int len = sizeof(wmi_chan_avoid_update_cmd_param);
  8732. buf = wmi_buf_alloc(wmi_handle, len);
  8733. if (!buf) {
  8734. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  8735. return QDF_STATUS_E_NOMEM;
  8736. }
  8737. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  8738. ch_avoid_update_fp = (wmi_chan_avoid_update_cmd_param *) buf_ptr;
  8739. WMITLV_SET_HDR(&ch_avoid_update_fp->tlv_header,
  8740. WMITLV_TAG_STRUC_wmi_chan_avoid_update_cmd_param,
  8741. WMITLV_GET_STRUCT_TLVLEN
  8742. (wmi_chan_avoid_update_cmd_param));
  8743. status = wmi_unified_cmd_send(wmi_handle, buf,
  8744. len, WMI_CHAN_AVOID_UPDATE_CMDID);
  8745. if (QDF_IS_STATUS_ERROR(status)) {
  8746. WMI_LOGE("wmi_unified_cmd_send"
  8747. " WMITLV_TABLE_WMI_CHAN_AVOID_UPDATE"
  8748. " returned Error %d", status);
  8749. wmi_buf_free(buf);
  8750. }
  8751. return status;
  8752. }
  8753. /**
  8754. * send_pdev_set_regdomain_cmd_tlv() - send set regdomain command to fw
  8755. * @wmi_handle: wmi handle
  8756. * @param: pointer to pdev regdomain params
  8757. *
  8758. * Return: 0 for success or error code
  8759. */
  8760. static QDF_STATUS
  8761. send_pdev_set_regdomain_cmd_tlv(wmi_unified_t wmi_handle,
  8762. struct pdev_set_regdomain_params *param)
  8763. {
  8764. wmi_buf_t buf;
  8765. wmi_pdev_set_regdomain_cmd_fixed_param *cmd;
  8766. int32_t len = sizeof(*cmd);
  8767. buf = wmi_buf_alloc(wmi_handle, len);
  8768. if (!buf) {
  8769. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  8770. return QDF_STATUS_E_NOMEM;
  8771. }
  8772. cmd = (wmi_pdev_set_regdomain_cmd_fixed_param *) wmi_buf_data(buf);
  8773. WMITLV_SET_HDR(&cmd->tlv_header,
  8774. WMITLV_TAG_STRUC_wmi_pdev_set_regdomain_cmd_fixed_param,
  8775. WMITLV_GET_STRUCT_TLVLEN
  8776. (wmi_pdev_set_regdomain_cmd_fixed_param));
  8777. cmd->reg_domain = param->currentRDinuse;
  8778. cmd->reg_domain_2G = param->currentRD2G;
  8779. cmd->reg_domain_5G = param->currentRD5G;
  8780. cmd->conformance_test_limit_2G = param->ctl_2G;
  8781. cmd->conformance_test_limit_5G = param->ctl_5G;
  8782. cmd->dfs_domain = param->dfsDomain;
  8783. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  8784. param->pdev_id);
  8785. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  8786. WMI_PDEV_SET_REGDOMAIN_CMDID)) {
  8787. WMI_LOGE("%s: Failed to send pdev set regdomain command",
  8788. __func__);
  8789. wmi_buf_free(buf);
  8790. return QDF_STATUS_E_FAILURE;
  8791. }
  8792. return QDF_STATUS_SUCCESS;
  8793. }
  8794. /**
  8795. * send_regdomain_info_to_fw_cmd_tlv() - send regdomain info to fw
  8796. * @wmi_handle: wmi handle
  8797. * @reg_dmn: reg domain
  8798. * @regdmn2G: 2G reg domain
  8799. * @regdmn5G: 5G reg domain
  8800. * @ctl2G: 2G test limit
  8801. * @ctl5G: 5G test limit
  8802. *
  8803. * Return: none
  8804. */
  8805. static QDF_STATUS send_regdomain_info_to_fw_cmd_tlv(wmi_unified_t wmi_handle,
  8806. uint32_t reg_dmn, uint16_t regdmn2G,
  8807. uint16_t regdmn5G, uint8_t ctl2G,
  8808. uint8_t ctl5G)
  8809. {
  8810. wmi_buf_t buf;
  8811. wmi_pdev_set_regdomain_cmd_fixed_param *cmd;
  8812. int32_t len = sizeof(*cmd);
  8813. buf = wmi_buf_alloc(wmi_handle, len);
  8814. if (!buf) {
  8815. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  8816. return QDF_STATUS_E_NOMEM;
  8817. }
  8818. cmd = (wmi_pdev_set_regdomain_cmd_fixed_param *) wmi_buf_data(buf);
  8819. WMITLV_SET_HDR(&cmd->tlv_header,
  8820. WMITLV_TAG_STRUC_wmi_pdev_set_regdomain_cmd_fixed_param,
  8821. WMITLV_GET_STRUCT_TLVLEN
  8822. (wmi_pdev_set_regdomain_cmd_fixed_param));
  8823. cmd->reg_domain = reg_dmn;
  8824. cmd->reg_domain_2G = regdmn2G;
  8825. cmd->reg_domain_5G = regdmn5G;
  8826. cmd->conformance_test_limit_2G = ctl2G;
  8827. cmd->conformance_test_limit_5G = ctl5G;
  8828. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  8829. WMI_PDEV_SET_REGDOMAIN_CMDID)) {
  8830. WMI_LOGP("%s: Failed to send pdev set regdomain command",
  8831. __func__);
  8832. wmi_buf_free(buf);
  8833. return QDF_STATUS_E_FAILURE;
  8834. }
  8835. return QDF_STATUS_SUCCESS;
  8836. }
  8837. /**
  8838. * send_set_tdls_offchan_mode_cmd_tlv() - set tdls off channel mode
  8839. * @wmi_handle: wmi handle
  8840. * @chan_switch_params: Pointer to tdls channel switch parameter structure
  8841. *
  8842. * This function sets tdls off channel mode
  8843. *
  8844. * Return: 0 on success; Negative errno otherwise
  8845. */
  8846. static QDF_STATUS send_set_tdls_offchan_mode_cmd_tlv(wmi_unified_t wmi_handle,
  8847. struct tdls_channel_switch_params *chan_switch_params)
  8848. {
  8849. wmi_tdls_set_offchan_mode_cmd_fixed_param *cmd;
  8850. wmi_buf_t wmi_buf;
  8851. u_int16_t len = sizeof(wmi_tdls_set_offchan_mode_cmd_fixed_param);
  8852. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  8853. if (!wmi_buf) {
  8854. WMI_LOGE(FL("wmi_buf_alloc failed"));
  8855. return QDF_STATUS_E_FAILURE;
  8856. }
  8857. cmd = (wmi_tdls_set_offchan_mode_cmd_fixed_param *)
  8858. wmi_buf_data(wmi_buf);
  8859. WMITLV_SET_HDR(&cmd->tlv_header,
  8860. WMITLV_TAG_STRUC_wmi_tdls_set_offchan_mode_cmd_fixed_param,
  8861. WMITLV_GET_STRUCT_TLVLEN(
  8862. wmi_tdls_set_offchan_mode_cmd_fixed_param));
  8863. WMI_CHAR_ARRAY_TO_MAC_ADDR(chan_switch_params->peer_mac_addr,
  8864. &cmd->peer_macaddr);
  8865. cmd->vdev_id = chan_switch_params->vdev_id;
  8866. cmd->offchan_mode = chan_switch_params->tdls_sw_mode;
  8867. cmd->is_peer_responder = chan_switch_params->is_responder;
  8868. cmd->offchan_num = chan_switch_params->tdls_off_ch;
  8869. cmd->offchan_bw_bitmap = chan_switch_params->tdls_off_ch_bw_offset;
  8870. cmd->offchan_oper_class = chan_switch_params->oper_class;
  8871. WMI_LOGD(FL("Peer MAC Addr mac_addr31to0: 0x%x, mac_addr47to32: 0x%x"),
  8872. cmd->peer_macaddr.mac_addr31to0,
  8873. cmd->peer_macaddr.mac_addr47to32);
  8874. WMI_LOGD(FL(
  8875. "vdev_id: %d, off channel mode: %d, off channel Num: %d, "
  8876. "off channel offset: 0x%x, is_peer_responder: %d, operating class: %d"
  8877. ),
  8878. cmd->vdev_id,
  8879. cmd->offchan_mode,
  8880. cmd->offchan_num,
  8881. cmd->offchan_bw_bitmap,
  8882. cmd->is_peer_responder,
  8883. cmd->offchan_oper_class);
  8884. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  8885. WMI_TDLS_SET_OFFCHAN_MODE_CMDID)) {
  8886. WMI_LOGP(FL("failed to send tdls off chan command"));
  8887. wmi_buf_free(wmi_buf);
  8888. return QDF_STATUS_E_FAILURE;
  8889. }
  8890. return QDF_STATUS_SUCCESS;
  8891. }
  8892. /**
  8893. * send_update_fw_tdls_state_cmd_tlv() - send enable/disable tdls for a vdev
  8894. * @wmi_handle: wmi handle
  8895. * @pwmaTdlsparams: TDLS params
  8896. *
  8897. * Return: 0 for success or error code
  8898. */
  8899. static QDF_STATUS send_update_fw_tdls_state_cmd_tlv(wmi_unified_t wmi_handle,
  8900. void *tdls_param, uint8_t tdls_state)
  8901. {
  8902. wmi_tdls_set_state_cmd_fixed_param *cmd;
  8903. wmi_buf_t wmi_buf;
  8904. struct wmi_tdls_params *wmi_tdls = (struct wmi_tdls_params *) tdls_param;
  8905. uint16_t len = sizeof(wmi_tdls_set_state_cmd_fixed_param);
  8906. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  8907. if (!wmi_buf) {
  8908. WMI_LOGE("%s: wmai_buf_alloc failed", __func__);
  8909. return QDF_STATUS_E_FAILURE;
  8910. }
  8911. cmd = (wmi_tdls_set_state_cmd_fixed_param *) wmi_buf_data(wmi_buf);
  8912. WMITLV_SET_HDR(&cmd->tlv_header,
  8913. WMITLV_TAG_STRUC_wmi_tdls_set_state_cmd_fixed_param,
  8914. WMITLV_GET_STRUCT_TLVLEN
  8915. (wmi_tdls_set_state_cmd_fixed_param));
  8916. cmd->vdev_id = wmi_tdls->vdev_id;
  8917. cmd->state = tdls_state;
  8918. cmd->notification_interval_ms = wmi_tdls->notification_interval_ms;
  8919. cmd->tx_discovery_threshold = wmi_tdls->tx_discovery_threshold;
  8920. cmd->tx_teardown_threshold = wmi_tdls->tx_teardown_threshold;
  8921. cmd->rssi_teardown_threshold = wmi_tdls->rssi_teardown_threshold;
  8922. cmd->rssi_delta = wmi_tdls->rssi_delta;
  8923. cmd->tdls_options = wmi_tdls->tdls_options;
  8924. cmd->tdls_peer_traffic_ind_window = wmi_tdls->peer_traffic_ind_window;
  8925. cmd->tdls_peer_traffic_response_timeout_ms =
  8926. wmi_tdls->peer_traffic_response_timeout;
  8927. cmd->tdls_puapsd_mask = wmi_tdls->puapsd_mask;
  8928. cmd->tdls_puapsd_inactivity_time_ms = wmi_tdls->puapsd_inactivity_time;
  8929. cmd->tdls_puapsd_rx_frame_threshold =
  8930. wmi_tdls->puapsd_rx_frame_threshold;
  8931. cmd->teardown_notification_ms =
  8932. wmi_tdls->teardown_notification_ms;
  8933. cmd->tdls_peer_kickout_threshold =
  8934. wmi_tdls->tdls_peer_kickout_threshold;
  8935. WMI_LOGD("%s: tdls_state: %d, state: %d, "
  8936. "notification_interval_ms: %d, "
  8937. "tx_discovery_threshold: %d, "
  8938. "tx_teardown_threshold: %d, "
  8939. "rssi_teardown_threshold: %d, "
  8940. "rssi_delta: %d, "
  8941. "tdls_options: 0x%x, "
  8942. "tdls_peer_traffic_ind_window: %d, "
  8943. "tdls_peer_traffic_response_timeout: %d, "
  8944. "tdls_puapsd_mask: 0x%x, "
  8945. "tdls_puapsd_inactivity_time: %d, "
  8946. "tdls_puapsd_rx_frame_threshold: %d, "
  8947. "teardown_notification_ms: %d, "
  8948. "tdls_peer_kickout_threshold: %d",
  8949. __func__, tdls_state, cmd->state,
  8950. cmd->notification_interval_ms,
  8951. cmd->tx_discovery_threshold,
  8952. cmd->tx_teardown_threshold,
  8953. cmd->rssi_teardown_threshold,
  8954. cmd->rssi_delta,
  8955. cmd->tdls_options,
  8956. cmd->tdls_peer_traffic_ind_window,
  8957. cmd->tdls_peer_traffic_response_timeout_ms,
  8958. cmd->tdls_puapsd_mask,
  8959. cmd->tdls_puapsd_inactivity_time_ms,
  8960. cmd->tdls_puapsd_rx_frame_threshold,
  8961. cmd->teardown_notification_ms,
  8962. cmd->tdls_peer_kickout_threshold);
  8963. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  8964. WMI_TDLS_SET_STATE_CMDID)) {
  8965. WMI_LOGP("%s: failed to send tdls set state command", __func__);
  8966. wmi_buf_free(wmi_buf);
  8967. return QDF_STATUS_E_FAILURE;
  8968. }
  8969. WMI_LOGD("%s: vdev_id %d", __func__, wmi_tdls->vdev_id);
  8970. return QDF_STATUS_SUCCESS;
  8971. }
  8972. /**
  8973. * send_update_tdls_peer_state_cmd_tlv() - update TDLS peer state
  8974. * @wmi_handle: wmi handle
  8975. * @peerStateParams: TDLS peer state params
  8976. *
  8977. * Return: QDF_STATUS_SUCCESS for success or error code
  8978. */
  8979. static QDF_STATUS send_update_tdls_peer_state_cmd_tlv(wmi_unified_t wmi_handle,
  8980. struct tdls_peer_state_params *peerStateParams,
  8981. uint32_t *ch_mhz)
  8982. {
  8983. wmi_tdls_peer_update_cmd_fixed_param *cmd;
  8984. wmi_tdls_peer_capabilities *peer_cap;
  8985. wmi_channel *chan_info;
  8986. wmi_buf_t wmi_buf;
  8987. uint8_t *buf_ptr;
  8988. uint32_t i;
  8989. int32_t len = sizeof(wmi_tdls_peer_update_cmd_fixed_param) +
  8990. sizeof(wmi_tdls_peer_capabilities);
  8991. len += WMI_TLV_HDR_SIZE +
  8992. sizeof(wmi_channel) * peerStateParams->peerCap.peerChanLen;
  8993. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  8994. if (!wmi_buf) {
  8995. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  8996. return QDF_STATUS_E_FAILURE;
  8997. }
  8998. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  8999. cmd = (wmi_tdls_peer_update_cmd_fixed_param *) buf_ptr;
  9000. WMITLV_SET_HDR(&cmd->tlv_header,
  9001. WMITLV_TAG_STRUC_wmi_tdls_peer_update_cmd_fixed_param,
  9002. WMITLV_GET_STRUCT_TLVLEN
  9003. (wmi_tdls_peer_update_cmd_fixed_param));
  9004. cmd->vdev_id = peerStateParams->vdevId;
  9005. WMI_CHAR_ARRAY_TO_MAC_ADDR(peerStateParams->peerMacAddr,
  9006. &cmd->peer_macaddr);
  9007. cmd->peer_state = peerStateParams->peerState;
  9008. WMI_LOGD("%s: vdev_id: %d, peerStateParams->peerMacAddr: %pM, "
  9009. "peer_macaddr.mac_addr31to0: 0x%x, "
  9010. "peer_macaddr.mac_addr47to32: 0x%x, peer_state: %d",
  9011. __func__, cmd->vdev_id, peerStateParams->peerMacAddr,
  9012. cmd->peer_macaddr.mac_addr31to0,
  9013. cmd->peer_macaddr.mac_addr47to32, cmd->peer_state);
  9014. buf_ptr += sizeof(wmi_tdls_peer_update_cmd_fixed_param);
  9015. peer_cap = (wmi_tdls_peer_capabilities *) buf_ptr;
  9016. WMITLV_SET_HDR(&peer_cap->tlv_header,
  9017. WMITLV_TAG_STRUC_wmi_tdls_peer_capabilities,
  9018. WMITLV_GET_STRUCT_TLVLEN(wmi_tdls_peer_capabilities));
  9019. if ((peerStateParams->peerCap.peerUapsdQueue & 0x08) >> 3)
  9020. WMI_SET_TDLS_PEER_VO_UAPSD(peer_cap);
  9021. if ((peerStateParams->peerCap.peerUapsdQueue & 0x04) >> 2)
  9022. WMI_SET_TDLS_PEER_VI_UAPSD(peer_cap);
  9023. if ((peerStateParams->peerCap.peerUapsdQueue & 0x02) >> 1)
  9024. WMI_SET_TDLS_PEER_BK_UAPSD(peer_cap);
  9025. if (peerStateParams->peerCap.peerUapsdQueue & 0x01)
  9026. WMI_SET_TDLS_PEER_BE_UAPSD(peer_cap);
  9027. /* Ack and More Data Ack are sent as 0, so no need to set
  9028. * but fill SP
  9029. */
  9030. WMI_SET_TDLS_PEER_SP_UAPSD(peer_cap,
  9031. peerStateParams->peerCap.peerMaxSp);
  9032. peer_cap->buff_sta_support =
  9033. peerStateParams->peerCap.peerBuffStaSupport;
  9034. peer_cap->off_chan_support =
  9035. peerStateParams->peerCap.peerOffChanSupport;
  9036. peer_cap->peer_curr_operclass =
  9037. peerStateParams->peerCap.peerCurrOperClass;
  9038. /* self curr operclass is not being used and so pass op class for
  9039. * preferred off chan in it.
  9040. */
  9041. peer_cap->self_curr_operclass =
  9042. peerStateParams->peerCap.opClassForPrefOffChan;
  9043. peer_cap->peer_chan_len = peerStateParams->peerCap.peerChanLen;
  9044. peer_cap->peer_operclass_len =
  9045. peerStateParams->peerCap.peerOperClassLen;
  9046. WMI_LOGD("%s: peer_operclass_len: %d",
  9047. __func__, peer_cap->peer_operclass_len);
  9048. for (i = 0; i < WMI_TDLS_MAX_SUPP_OPER_CLASSES; i++) {
  9049. peer_cap->peer_operclass[i] =
  9050. peerStateParams->peerCap.peerOperClass[i];
  9051. WMI_LOGD("%s: peer_operclass[%d]: %d",
  9052. __func__, i, peer_cap->peer_operclass[i]);
  9053. }
  9054. peer_cap->is_peer_responder = peerStateParams->peerCap.isPeerResponder;
  9055. peer_cap->pref_offchan_num = peerStateParams->peerCap.prefOffChanNum;
  9056. peer_cap->pref_offchan_bw =
  9057. peerStateParams->peerCap.prefOffChanBandwidth;
  9058. WMI_LOGD
  9059. ("%s: peer_qos: 0x%x, buff_sta_support: %d, off_chan_support: %d, "
  9060. "peer_curr_operclass: %d, self_curr_operclass: %d, peer_chan_len: "
  9061. "%d, peer_operclass_len: %d, is_peer_responder: %d, pref_offchan_num:"
  9062. " %d, pref_offchan_bw: %d",
  9063. __func__, peer_cap->peer_qos, peer_cap->buff_sta_support,
  9064. peer_cap->off_chan_support, peer_cap->peer_curr_operclass,
  9065. peer_cap->self_curr_operclass, peer_cap->peer_chan_len,
  9066. peer_cap->peer_operclass_len, peer_cap->is_peer_responder,
  9067. peer_cap->pref_offchan_num, peer_cap->pref_offchan_bw);
  9068. /* next fill variable size array of peer chan info */
  9069. buf_ptr += sizeof(wmi_tdls_peer_capabilities);
  9070. WMITLV_SET_HDR(buf_ptr,
  9071. WMITLV_TAG_ARRAY_STRUC,
  9072. sizeof(wmi_channel) *
  9073. peerStateParams->peerCap.peerChanLen);
  9074. chan_info = (wmi_channel *) (buf_ptr + WMI_TLV_HDR_SIZE);
  9075. for (i = 0; i < peerStateParams->peerCap.peerChanLen; ++i) {
  9076. WMITLV_SET_HDR(&chan_info->tlv_header,
  9077. WMITLV_TAG_STRUC_wmi_channel,
  9078. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  9079. chan_info->mhz = ch_mhz[i];
  9080. chan_info->band_center_freq1 = chan_info->mhz;
  9081. chan_info->band_center_freq2 = 0;
  9082. WMI_LOGD("%s: chan[%d] = %u", __func__, i, chan_info->mhz);
  9083. if (peerStateParams->peerCap.peerChan[i].dfsSet) {
  9084. WMI_SET_CHANNEL_FLAG(chan_info, WMI_CHAN_FLAG_PASSIVE);
  9085. WMI_LOGI("chan[%d] DFS[%d]\n",
  9086. peerStateParams->peerCap.peerChan[i].chanId,
  9087. peerStateParams->peerCap.peerChan[i].dfsSet);
  9088. }
  9089. if (chan_info->mhz < WMI_2_4_GHZ_MAX_FREQ)
  9090. WMI_SET_CHANNEL_MODE(chan_info, MODE_11G);
  9091. else
  9092. WMI_SET_CHANNEL_MODE(chan_info, MODE_11A);
  9093. WMI_SET_CHANNEL_MAX_TX_POWER(chan_info,
  9094. peerStateParams->peerCap.
  9095. peerChan[i].pwr);
  9096. WMI_SET_CHANNEL_REG_POWER(chan_info,
  9097. peerStateParams->peerCap.peerChan[i].
  9098. pwr);
  9099. WMI_LOGD("Channel TX power[%d] = %u: %d", i, chan_info->mhz,
  9100. peerStateParams->peerCap.peerChan[i].pwr);
  9101. chan_info++;
  9102. }
  9103. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  9104. WMI_TDLS_PEER_UPDATE_CMDID)) {
  9105. WMI_LOGE("%s: failed to send tdls peer update state command",
  9106. __func__);
  9107. wmi_buf_free(wmi_buf);
  9108. return QDF_STATUS_E_FAILURE;
  9109. }
  9110. return QDF_STATUS_SUCCESS;
  9111. }
  9112. /*
  9113. * send_process_set_ie_info_cmd_tlv() - Function to send IE info to firmware
  9114. * @wmi_handle: Pointer to WMi handle
  9115. * @ie_data: Pointer for ie data
  9116. *
  9117. * This function sends IE information to firmware
  9118. *
  9119. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  9120. *
  9121. */
  9122. static QDF_STATUS send_process_set_ie_info_cmd_tlv(wmi_unified_t wmi_handle,
  9123. struct vdev_ie_info_param *ie_info)
  9124. {
  9125. wmi_vdev_set_ie_cmd_fixed_param *cmd;
  9126. wmi_buf_t buf;
  9127. uint8_t *buf_ptr;
  9128. uint32_t len, ie_len_aligned;
  9129. QDF_STATUS ret;
  9130. ie_len_aligned = roundup(ie_info->length, sizeof(uint32_t));
  9131. /* Allocate memory for the WMI command */
  9132. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE + ie_len_aligned;
  9133. buf = wmi_buf_alloc(wmi_handle, len);
  9134. if (!buf) {
  9135. WMI_LOGE(FL("wmi_buf_alloc failed"));
  9136. return QDF_STATUS_E_NOMEM;
  9137. }
  9138. buf_ptr = wmi_buf_data(buf);
  9139. qdf_mem_zero(buf_ptr, len);
  9140. /* Populate the WMI command */
  9141. cmd = (wmi_vdev_set_ie_cmd_fixed_param *)buf_ptr;
  9142. WMITLV_SET_HDR(&cmd->tlv_header,
  9143. WMITLV_TAG_STRUC_wmi_vdev_set_ie_cmd_fixed_param,
  9144. WMITLV_GET_STRUCT_TLVLEN(
  9145. wmi_vdev_set_ie_cmd_fixed_param));
  9146. cmd->vdev_id = ie_info->vdev_id;
  9147. cmd->ie_id = ie_info->ie_id;
  9148. cmd->ie_len = ie_info->length;
  9149. cmd->band = ie_info->band;
  9150. WMI_LOGD(FL("IE:%d of size:%d sent for vdev:%d"), ie_info->ie_id,
  9151. ie_info->length, ie_info->vdev_id);
  9152. buf_ptr += sizeof(*cmd);
  9153. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, ie_len_aligned);
  9154. buf_ptr += WMI_TLV_HDR_SIZE;
  9155. qdf_mem_copy(buf_ptr, ie_info->data, cmd->ie_len);
  9156. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  9157. WMI_VDEV_SET_IE_CMDID);
  9158. if (QDF_IS_STATUS_ERROR(ret)) {
  9159. WMI_LOGE(FL("Failed to send set IE command ret = %d"), ret);
  9160. wmi_buf_free(buf);
  9161. }
  9162. return ret;
  9163. }
  9164. /**
  9165. * send_smart_ant_enable_cmd_tlv() - WMI smart ant enable function
  9166. *
  9167. * @param wmi_handle : handle to WMI.
  9168. * @param param : pointer to antenna param
  9169. *
  9170. * This function sends smart antenna enable command to FW
  9171. *
  9172. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9173. */
  9174. static QDF_STATUS send_smart_ant_enable_cmd_tlv(wmi_unified_t wmi_handle,
  9175. struct smart_ant_enable_params *param)
  9176. {
  9177. /* Send WMI COMMAND to Enable */
  9178. wmi_pdev_smart_ant_enable_cmd_fixed_param *cmd;
  9179. wmi_pdev_smart_ant_gpio_handle *gpio_param;
  9180. wmi_buf_t buf;
  9181. uint8_t *buf_ptr;
  9182. int len = 0;
  9183. QDF_STATUS ret;
  9184. int loop = 0;
  9185. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  9186. len += WMI_HAL_MAX_SANTENNA * sizeof(wmi_pdev_smart_ant_gpio_handle);
  9187. buf = wmi_buf_alloc(wmi_handle, len);
  9188. if (!buf) {
  9189. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9190. return QDF_STATUS_E_NOMEM;
  9191. }
  9192. buf_ptr = wmi_buf_data(buf);
  9193. qdf_mem_zero(buf_ptr, len);
  9194. cmd = (wmi_pdev_smart_ant_enable_cmd_fixed_param *)buf_ptr;
  9195. WMITLV_SET_HDR(&cmd->tlv_header,
  9196. WMITLV_TAG_STRUC_wmi_pdev_smart_ant_enable_cmd_fixed_param,
  9197. WMITLV_GET_STRUCT_TLVLEN(
  9198. wmi_pdev_smart_ant_enable_cmd_fixed_param));
  9199. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  9200. param->pdev_id);
  9201. cmd->enable = param->enable;
  9202. cmd->mode = param->mode;
  9203. cmd->rx_antenna = param->rx_antenna;
  9204. cmd->tx_default_antenna = param->rx_antenna;
  9205. /* TLV indicating array of structures to follow */
  9206. buf_ptr += sizeof(wmi_pdev_smart_ant_enable_cmd_fixed_param);
  9207. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  9208. WMI_HAL_MAX_SANTENNA *
  9209. sizeof(wmi_pdev_smart_ant_gpio_handle));
  9210. buf_ptr += WMI_TLV_HDR_SIZE;
  9211. gpio_param = (wmi_pdev_smart_ant_gpio_handle *)buf_ptr;
  9212. for (loop = 0; loop < WMI_HAL_MAX_SANTENNA; loop++) {
  9213. WMITLV_SET_HDR(&gpio_param->tlv_header,
  9214. WMITLV_TAG_STRUC_wmi_pdev_smart_ant_gpio_handle,
  9215. WMITLV_GET_STRUCT_TLVLEN(
  9216. wmi_pdev_smart_ant_gpio_handle));
  9217. if (param->mode == SMART_ANT_MODE_SERIAL) {
  9218. if (loop < WMI_HOST_MAX_SERIAL_ANTENNA) {
  9219. gpio_param->gpio_pin = param->gpio_pin[loop];
  9220. gpio_param->gpio_func = param->gpio_func[loop];
  9221. } else {
  9222. gpio_param->gpio_pin = 0;
  9223. gpio_param->gpio_func = 0;
  9224. }
  9225. } else if (param->mode == SMART_ANT_MODE_PARALLEL) {
  9226. gpio_param->gpio_pin = param->gpio_pin[loop];
  9227. gpio_param->gpio_func = param->gpio_func[loop];
  9228. }
  9229. /* Setting it to 0 for now */
  9230. gpio_param->pdev_id =
  9231. wmi_handle->ops->convert_pdev_id_host_to_target(
  9232. param->pdev_id);
  9233. gpio_param++;
  9234. }
  9235. ret = wmi_unified_cmd_send(wmi_handle,
  9236. buf,
  9237. len,
  9238. WMI_PDEV_SMART_ANT_ENABLE_CMDID);
  9239. if (ret != 0) {
  9240. WMI_LOGE(" %s :WMI Failed\n", __func__);
  9241. WMI_LOGE("enable:%d mode:%d rx_antenna: 0x%08x PINS: [%d %d %d %d] Func[%d %d %d %d] cmdstatus=%d\n",
  9242. cmd->enable,
  9243. cmd->mode,
  9244. cmd->rx_antenna,
  9245. param->gpio_pin[0], param->gpio_pin[1],
  9246. param->gpio_pin[2], param->gpio_pin[3],
  9247. param->gpio_func[0], param->gpio_func[1],
  9248. param->gpio_func[2], param->gpio_func[3],
  9249. ret);
  9250. wmi_buf_free(buf);
  9251. }
  9252. return ret;
  9253. }
  9254. /**
  9255. * send_smart_ant_set_rx_ant_cmd_tlv() - WMI set rx antenna function
  9256. *
  9257. * @param wmi_handle : handle to WMI.
  9258. * @param param : pointer to rx antenna param
  9259. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9260. */
  9261. static QDF_STATUS send_smart_ant_set_rx_ant_cmd_tlv(wmi_unified_t wmi_handle,
  9262. struct smart_ant_rx_ant_params *param)
  9263. {
  9264. wmi_pdev_smart_ant_set_rx_antenna_cmd_fixed_param *cmd;
  9265. wmi_buf_t buf;
  9266. uint8_t *buf_ptr;
  9267. uint32_t len;
  9268. QDF_STATUS ret;
  9269. len = sizeof(*cmd);
  9270. buf = wmi_buf_alloc(wmi_handle, len);
  9271. WMI_LOGD("%s:\n", __func__);
  9272. if (!buf) {
  9273. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9274. return QDF_STATUS_E_NOMEM;
  9275. }
  9276. buf_ptr = wmi_buf_data(buf);
  9277. cmd = (wmi_pdev_smart_ant_set_rx_antenna_cmd_fixed_param *)buf_ptr;
  9278. WMITLV_SET_HDR(&cmd->tlv_header,
  9279. WMITLV_TAG_STRUC_wmi_pdev_smart_ant_set_rx_antenna_cmd_fixed_param,
  9280. WMITLV_GET_STRUCT_TLVLEN(
  9281. wmi_pdev_smart_ant_set_rx_antenna_cmd_fixed_param));
  9282. cmd->rx_antenna = param->antenna;
  9283. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  9284. param->pdev_id);
  9285. ret = wmi_unified_cmd_send(wmi_handle,
  9286. buf,
  9287. len,
  9288. WMI_PDEV_SMART_ANT_SET_RX_ANTENNA_CMDID);
  9289. if (ret != 0) {
  9290. WMI_LOGE(" %s :WMI Failed\n", __func__);
  9291. WMI_LOGE("%s: rx_antenna: 0x%08x cmdstatus=%d\n",
  9292. __func__,
  9293. cmd->rx_antenna,
  9294. ret);
  9295. wmi_buf_free(buf);
  9296. }
  9297. return ret;
  9298. }
  9299. /**
  9300. * send_set_ctl_table_cmd_tlv() - send ctl table cmd to fw
  9301. * @wmi_handle: wmi handle
  9302. * @param: pointer to hold ctl table param
  9303. *
  9304. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9305. */
  9306. static QDF_STATUS
  9307. send_set_ctl_table_cmd_tlv(wmi_unified_t wmi_handle,
  9308. struct ctl_table_params *param)
  9309. {
  9310. uint16_t len, ctl_tlv_len;
  9311. uint8_t *buf_ptr;
  9312. wmi_buf_t buf;
  9313. wmi_pdev_set_ctl_table_cmd_fixed_param *cmd;
  9314. uint32_t *ctl_array;
  9315. if (!param->ctl_array)
  9316. return QDF_STATUS_E_FAILURE;
  9317. ctl_tlv_len = WMI_TLV_HDR_SIZE +
  9318. roundup(param->ctl_cmd_len, sizeof(uint32_t));
  9319. len = sizeof(*cmd) + ctl_tlv_len;
  9320. buf = wmi_buf_alloc(wmi_handle, len);
  9321. if (!buf) {
  9322. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9323. return QDF_STATUS_E_FAILURE;
  9324. }
  9325. buf_ptr = wmi_buf_data(buf);
  9326. qdf_mem_zero(buf_ptr, len);
  9327. cmd = (wmi_pdev_set_ctl_table_cmd_fixed_param *)buf_ptr;
  9328. WMITLV_SET_HDR(&cmd->tlv_header,
  9329. WMITLV_TAG_STRUC_wmi_pdev_set_ctl_table_cmd_fixed_param,
  9330. WMITLV_GET_STRUCT_TLVLEN(
  9331. wmi_pdev_set_ctl_table_cmd_fixed_param));
  9332. cmd->ctl_len = param->ctl_cmd_len;
  9333. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  9334. param->pdev_id);
  9335. buf_ptr += sizeof(*cmd);
  9336. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  9337. (cmd->ctl_len));
  9338. buf_ptr += WMI_TLV_HDR_SIZE;
  9339. ctl_array = (uint32_t *)buf_ptr;
  9340. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&ctl_array[0], &param->ctl_band,
  9341. sizeof(param->ctl_band));
  9342. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&ctl_array[1], param->ctl_array,
  9343. param->ctl_cmd_len -
  9344. sizeof(param->ctl_band));
  9345. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9346. WMI_PDEV_SET_CTL_TABLE_CMDID)) {
  9347. WMI_LOGE("%s:Failed to send command\n", __func__);
  9348. wmi_buf_free(buf);
  9349. return QDF_STATUS_E_FAILURE;
  9350. }
  9351. return QDF_STATUS_SUCCESS;
  9352. }
  9353. /**
  9354. * send_set_mimogain_table_cmd_tlv() - send mimogain table cmd to fw
  9355. * @wmi_handle: wmi handle
  9356. * @param: pointer to hold mimogain table param
  9357. *
  9358. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9359. */
  9360. static QDF_STATUS
  9361. send_set_mimogain_table_cmd_tlv(wmi_unified_t wmi_handle,
  9362. struct mimogain_table_params *param)
  9363. {
  9364. uint16_t len, table_tlv_len;
  9365. wmi_buf_t buf;
  9366. uint8_t *buf_ptr;
  9367. wmi_pdev_set_mimogain_table_cmd_fixed_param *cmd;
  9368. uint32_t *gain_table;
  9369. if (!param->array_gain)
  9370. return QDF_STATUS_E_FAILURE;
  9371. /* len must be multiple of a single array gain table */
  9372. if (param->tbl_len %
  9373. ((WMI_HOST_TX_NUM_CHAIN-1) * WMI_HOST_TPC_REGINDEX_MAX *
  9374. WMI_HOST_ARRAY_GAIN_NUM_STREAMS) != 0) {
  9375. WMI_LOGE("Array gain table len not correct\n");
  9376. return QDF_STATUS_E_FAILURE;
  9377. }
  9378. table_tlv_len = WMI_TLV_HDR_SIZE +
  9379. roundup(param->tbl_len, sizeof(uint32_t));
  9380. len = sizeof(*cmd) + table_tlv_len;
  9381. buf = wmi_buf_alloc(wmi_handle, len);
  9382. if (!buf) {
  9383. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9384. return QDF_STATUS_E_FAILURE;
  9385. }
  9386. buf_ptr = wmi_buf_data(buf);
  9387. qdf_mem_zero(buf_ptr, len);
  9388. cmd = (wmi_pdev_set_mimogain_table_cmd_fixed_param *)buf_ptr;
  9389. WMITLV_SET_HDR(&cmd->tlv_header,
  9390. WMITLV_TAG_STRUC_wmi_pdev_set_mimogain_table_cmd_fixed_param,
  9391. WMITLV_GET_STRUCT_TLVLEN(
  9392. wmi_pdev_set_mimogain_table_cmd_fixed_param));
  9393. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  9394. param->pdev_id);
  9395. WMI_MIMOGAIN_ARRAY_GAIN_LEN_SET(cmd->mimogain_info, param->tbl_len);
  9396. WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_SET(cmd->mimogain_info,
  9397. param->multichain_gain_bypass);
  9398. buf_ptr += sizeof(*cmd);
  9399. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  9400. (param->tbl_len));
  9401. buf_ptr += WMI_TLV_HDR_SIZE;
  9402. gain_table = (uint32_t *)buf_ptr;
  9403. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(gain_table,
  9404. param->array_gain,
  9405. param->tbl_len);
  9406. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9407. WMI_PDEV_SET_MIMOGAIN_TABLE_CMDID)) {
  9408. return QDF_STATUS_E_FAILURE;
  9409. }
  9410. return QDF_STATUS_SUCCESS;
  9411. }
  9412. /**
  9413. * enum packet_power_tlv_flags: target defined
  9414. * packet power rate flags for TLV
  9415. * @WMI_TLV_FLAG_ONE_CHAIN: one chain
  9416. * @WMI_TLV_FLAG_TWO_CHAIN: two chain
  9417. * @WMI_TLV_FLAG_THREE_CHAIN: three chain
  9418. * @WMI_TLV_FLAG_FOUR_CHAIN: four chain
  9419. * @WMI_TLV_FLAG_FIVE_CHAIN: five chain
  9420. * @WMI_TLV_FLAG_SIX_CHAIN: six chain
  9421. * @WMI_TLV_FLAG_SEVEN_CHAIN: seven chain
  9422. * @WMI_TLV_FLAG_EIGHT_CHAIN:eight chain
  9423. * @WMI_TLV_FLAG_STBC: STBC is set
  9424. * @WMI_TLV_FLAG_40MHZ: 40MHz chan width
  9425. * @WMI_TLV_FLAG_80MHZ: 80MHz chan width
  9426. * @WMI_TLV_FLAG_160MHZ: 160MHz chan width
  9427. * @WMI_TLV_FLAG_TXBF: Tx Bf enabled
  9428. * @WMI_TLV_FLAG_RTSENA: RTS enabled
  9429. * @WMI_TLV_FLAG_CTSENA: CTS enabled
  9430. * @WMI_TLV_FLAG_LDPC: LDPC is set
  9431. * @WMI_TLV_FLAG_SGI: Short gaurd interval
  9432. * @WMI_TLV_FLAG_SU: SU Data
  9433. * @WMI_TLV_FLAG_DL_MU_MIMO_AC: DL AC MU data
  9434. * @WMI_TLV_FLAG_DL_MU_MIMO_AX: DL AX MU data
  9435. * @WMI_TLV_FLAG_DL_OFDMA: DL OFDMA data
  9436. * @WMI_TLV_FLAG_UL_OFDMA: UL OFDMA data
  9437. * @WMI_TLV_FLAG_UL_MU_MIMO: UL MU data
  9438. *
  9439. * @WMI_TLV_FLAG_BW_MASK: bandwidth mask
  9440. * @WMI_TLV_FLAG_BW_SHIFT: bandwidth shift
  9441. * @WMI_TLV_FLAG_SU_MU_OFDMA_MASK: su/mu/ofdma mask
  9442. * @WMI_TLV_FLAG_SU_MU_OFDMA_shift: su/mu/ofdma shift
  9443. */
  9444. enum packet_power_tlv_flags {
  9445. WMI_TLV_FLAG_ONE_CHAIN = 0x00000001,
  9446. WMI_TLV_FLAG_TWO_CHAIN = 0x00000003,
  9447. WMI_TLV_FLAG_THREE_CHAIN = 0x00000007,
  9448. WMI_TLV_FLAG_FOUR_CHAIN = 0x0000000F,
  9449. WMI_TLV_FLAG_FIVE_CHAIN = 0x0000001F,
  9450. WMI_TLV_FLAG_SIX_CHAIN = 0x0000003F,
  9451. WMI_TLV_FLAG_SEVEN_CHAIN = 0x0000007F,
  9452. WMI_TLV_FLAG_EIGHT_CHAIN = 0x0000008F,
  9453. WMI_TLV_FLAG_STBC = 0x00000100,
  9454. WMI_TLV_FLAG_40MHZ = 0x00000200,
  9455. WMI_TLV_FLAG_80MHZ = 0x00000300,
  9456. WMI_TLV_FLAG_160MHZ = 0x00000400,
  9457. WMI_TLV_FLAG_TXBF = 0x00000800,
  9458. WMI_TLV_FLAG_RTSENA = 0x00001000,
  9459. WMI_TLV_FLAG_CTSENA = 0x00002000,
  9460. WMI_TLV_FLAG_LDPC = 0x00004000,
  9461. WMI_TLV_FLAG_SGI = 0x00008000,
  9462. WMI_TLV_FLAG_SU = 0x00100000,
  9463. WMI_TLV_FLAG_DL_MU_MIMO_AC = 0x00200000,
  9464. WMI_TLV_FLAG_DL_MU_MIMO_AX = 0x00300000,
  9465. WMI_TLV_FLAG_DL_OFDMA = 0x00400000,
  9466. WMI_TLV_FLAG_UL_OFDMA = 0x00500000,
  9467. WMI_TLV_FLAG_UL_MU_MIMO = 0x00600000,
  9468. WMI_TLV_FLAG_CHAIN_MASK = 0xff,
  9469. WMI_TLV_FLAG_BW_MASK = 0x3,
  9470. WMI_TLV_FLAG_BW_SHIFT = 9,
  9471. WMI_TLV_FLAG_SU_MU_OFDMA_MASK = 0x7,
  9472. WMI_TLV_FLAG_SU_MU_OFDMA_SHIFT = 20,
  9473. };
  9474. /**
  9475. * convert_to_power_info_rate_flags() - convert packet_power_info_params
  9476. * to FW understandable format
  9477. * @param: pointer to hold packet power info param
  9478. *
  9479. * @return FW understandable 32 bit rate flags
  9480. */
  9481. static uint32_t
  9482. convert_to_power_info_rate_flags(struct packet_power_info_params *param)
  9483. {
  9484. uint32_t rateflags = 0;
  9485. if (param->chainmask)
  9486. rateflags |=
  9487. (param->chainmask & WMI_TLV_FLAG_CHAIN_MASK);
  9488. if (param->chan_width)
  9489. rateflags |=
  9490. ((param->chan_width & WMI_TLV_FLAG_BW_MASK)
  9491. << WMI_TLV_FLAG_BW_SHIFT);
  9492. if (param->su_mu_ofdma)
  9493. rateflags |=
  9494. ((param->su_mu_ofdma & WMI_TLV_FLAG_SU_MU_OFDMA_MASK)
  9495. << WMI_TLV_FLAG_SU_MU_OFDMA_SHIFT);
  9496. if (param->rate_flags & WMI_HOST_FLAG_STBC)
  9497. rateflags |= WMI_TLV_FLAG_STBC;
  9498. if (param->rate_flags & WMI_HOST_FLAG_LDPC)
  9499. rateflags |= WMI_TLV_FLAG_LDPC;
  9500. if (param->rate_flags & WMI_HOST_FLAG_TXBF)
  9501. rateflags |= WMI_TLV_FLAG_TXBF;
  9502. if (param->rate_flags & WMI_HOST_FLAG_RTSENA)
  9503. rateflags |= WMI_TLV_FLAG_RTSENA;
  9504. if (param->rate_flags & WMI_HOST_FLAG_CTSENA)
  9505. rateflags |= WMI_TLV_FLAG_CTSENA;
  9506. if (param->rate_flags & WMI_HOST_FLAG_SGI)
  9507. rateflags |= WMI_TLV_FLAG_SGI;
  9508. return rateflags;
  9509. }
  9510. /**
  9511. * send_packet_power_info_get_cmd_tlv() - send request to get packet power
  9512. * info to fw
  9513. * @wmi_handle: wmi handle
  9514. * @param: pointer to hold packet power info param
  9515. *
  9516. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9517. */
  9518. static QDF_STATUS
  9519. send_packet_power_info_get_cmd_tlv(wmi_unified_t wmi_handle,
  9520. struct packet_power_info_params *param)
  9521. {
  9522. wmi_pdev_get_tpc_cmd_fixed_param *cmd;
  9523. wmi_buf_t wmibuf;
  9524. uint8_t *buf_ptr;
  9525. u_int32_t len = sizeof(wmi_pdev_get_tpc_cmd_fixed_param);
  9526. wmibuf = wmi_buf_alloc(wmi_handle, len);
  9527. if (wmibuf == NULL)
  9528. return QDF_STATUS_E_NOMEM;
  9529. buf_ptr = (uint8_t *)wmi_buf_data(wmibuf);
  9530. cmd = (wmi_pdev_get_tpc_cmd_fixed_param *)buf_ptr;
  9531. WMITLV_SET_HDR(&cmd->tlv_header,
  9532. WMITLV_TAG_STRUC_wmi_pdev_get_tpc_cmd_fixed_param,
  9533. WMITLV_GET_STRUCT_TLVLEN(
  9534. wmi_pdev_get_tpc_cmd_fixed_param));
  9535. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  9536. param->pdev_id);
  9537. cmd->rate_flags = convert_to_power_info_rate_flags(param);
  9538. cmd->nss = param->nss;
  9539. cmd->preamble = param->preamble;
  9540. cmd->hw_rate = param->hw_rate;
  9541. WMI_LOGI("%s[%d] commandID %d, wmi_pdev_get_tpc_cmd=0x%x,"
  9542. "rate_flags: 0x%x, nss: %d, preamble: %d, hw_rate: %d\n",
  9543. __func__, __LINE__, WMI_PDEV_GET_TPC_CMDID, *((u_int32_t *)cmd),
  9544. cmd->rate_flags, cmd->nss, cmd->preamble, cmd->hw_rate);
  9545. if (wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  9546. WMI_PDEV_GET_TPC_CMDID)) {
  9547. WMI_LOGE(FL("Failed to get tpc command\n"));
  9548. wmi_buf_free(wmibuf);
  9549. return QDF_STATUS_E_FAILURE;
  9550. }
  9551. return QDF_STATUS_SUCCESS;
  9552. }
  9553. /**
  9554. * send_vdev_config_ratemask_cmd_tlv() - config ratemask param in fw
  9555. * @wmi_handle: wmi handle
  9556. * @param: pointer to hold config ratemask params
  9557. *
  9558. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9559. */
  9560. static QDF_STATUS send_vdev_config_ratemask_cmd_tlv(wmi_unified_t wmi_handle,
  9561. struct config_ratemask_params *param)
  9562. {
  9563. wmi_vdev_config_ratemask_cmd_fixed_param *cmd;
  9564. wmi_buf_t buf;
  9565. int32_t len = sizeof(*cmd);
  9566. buf = wmi_buf_alloc(wmi_handle, len);
  9567. if (!buf) {
  9568. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9569. return QDF_STATUS_E_FAILURE;
  9570. }
  9571. cmd = (wmi_vdev_config_ratemask_cmd_fixed_param *)wmi_buf_data(buf);
  9572. WMITLV_SET_HDR(&cmd->tlv_header,
  9573. WMITLV_TAG_STRUC_wmi_vdev_config_ratemask_fixed_param,
  9574. WMITLV_GET_STRUCT_TLVLEN(
  9575. wmi_vdev_config_ratemask_cmd_fixed_param));
  9576. cmd->vdev_id = param->vdev_id;
  9577. cmd->type = param->type;
  9578. cmd->mask_lower32 = param->lower32;
  9579. cmd->mask_higher32 = param->higher32;
  9580. WMI_LOGI("Setting vdev ratemask vdev id = 0x%X, type = 0x%X, mask_l32 = 0x%X mask_h32 = 0x%X\n",
  9581. param->vdev_id, param->type, param->lower32, param->higher32);
  9582. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9583. WMI_VDEV_RATEMASK_CMDID)) {
  9584. WMI_LOGE("Seting vdev ratemask failed\n");
  9585. wmi_buf_free(buf);
  9586. return QDF_STATUS_E_FAILURE;
  9587. }
  9588. return QDF_STATUS_SUCCESS;
  9589. }
  9590. /**
  9591. * copy_custom_aggr_bitmap() - copies host side bitmap using FW APIs
  9592. * @param: param sent from the host side
  9593. * @cmd: param to be sent to the fw side
  9594. */
  9595. static inline void copy_custom_aggr_bitmap(
  9596. struct set_custom_aggr_size_params *param,
  9597. wmi_vdev_set_custom_aggr_size_cmd_fixed_param *cmd)
  9598. {
  9599. WMI_VDEV_CUSTOM_AGGR_AC_SET(cmd->enable_bitmap,
  9600. param->ac);
  9601. WMI_VDEV_CUSTOM_AGGR_TYPE_SET(cmd->enable_bitmap,
  9602. param->aggr_type);
  9603. WMI_VDEV_CUSTOM_TX_AGGR_SZ_DIS_SET(cmd->enable_bitmap,
  9604. param->tx_aggr_size_disable);
  9605. WMI_VDEV_CUSTOM_RX_AGGR_SZ_DIS_SET(cmd->enable_bitmap,
  9606. param->rx_aggr_size_disable);
  9607. WMI_VDEV_CUSTOM_TX_AC_EN_SET(cmd->enable_bitmap,
  9608. param->tx_ac_enable);
  9609. }
  9610. /**
  9611. * send_vdev_set_custom_aggr_size_cmd_tlv() - custom aggr size param in fw
  9612. * @wmi_handle: wmi handle
  9613. * @param: pointer to hold custom aggr size params
  9614. *
  9615. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9616. */
  9617. static QDF_STATUS send_vdev_set_custom_aggr_size_cmd_tlv(
  9618. wmi_unified_t wmi_handle,
  9619. struct set_custom_aggr_size_params *param)
  9620. {
  9621. wmi_vdev_set_custom_aggr_size_cmd_fixed_param *cmd;
  9622. wmi_buf_t buf;
  9623. int32_t len = sizeof(*cmd);
  9624. buf = wmi_buf_alloc(wmi_handle, len);
  9625. if (!buf) {
  9626. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9627. return QDF_STATUS_E_FAILURE;
  9628. }
  9629. cmd = (wmi_vdev_set_custom_aggr_size_cmd_fixed_param *)
  9630. wmi_buf_data(buf);
  9631. WMITLV_SET_HDR(&cmd->tlv_header,
  9632. WMITLV_TAG_STRUC_wmi_vdev_set_custom_aggr_size_cmd_fixed_param,
  9633. WMITLV_GET_STRUCT_TLVLEN(
  9634. wmi_vdev_set_custom_aggr_size_cmd_fixed_param));
  9635. cmd->vdev_id = param->vdev_id;
  9636. cmd->tx_aggr_size = param->tx_aggr_size;
  9637. cmd->rx_aggr_size = param->rx_aggr_size;
  9638. copy_custom_aggr_bitmap(param, cmd);
  9639. WMI_LOGD("Set custom aggr: vdev id=0x%X, tx aggr size=0x%X "
  9640. "rx_aggr_size=0x%X access category=0x%X, agg_type=0x%X "
  9641. "tx_aggr_size_disable=0x%X, rx_aggr_size_disable=0x%X "
  9642. "tx_ac_enable=0x%X\n",
  9643. param->vdev_id, param->tx_aggr_size, param->rx_aggr_size,
  9644. param->ac, param->aggr_type, param->tx_aggr_size_disable,
  9645. param->rx_aggr_size_disable, param->tx_ac_enable);
  9646. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9647. WMI_VDEV_SET_CUSTOM_AGGR_SIZE_CMDID)) {
  9648. WMI_LOGE("Seting custom aggregation size failed\n");
  9649. wmi_buf_free(buf);
  9650. return QDF_STATUS_E_FAILURE;
  9651. }
  9652. return QDF_STATUS_SUCCESS;
  9653. }
  9654. /**
  9655. * send_vdev_set_qdepth_thresh_cmd_tlv() - WMI set qdepth threshold
  9656. * @param wmi_handle : handle to WMI.
  9657. * @param param : pointer to tx antenna param
  9658. *
  9659. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9660. */
  9661. static QDF_STATUS send_vdev_set_qdepth_thresh_cmd_tlv(wmi_unified_t wmi_handle,
  9662. struct set_qdepth_thresh_params *param)
  9663. {
  9664. wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param *cmd;
  9665. wmi_msduq_qdepth_thresh_update *cmd_update;
  9666. wmi_buf_t buf;
  9667. int32_t len = 0;
  9668. int i;
  9669. uint8_t *buf_ptr;
  9670. QDF_STATUS ret;
  9671. if (param->num_of_msduq_updates > QDEPTH_THRESH_MAX_UPDATES) {
  9672. WMI_LOGE("%s: Invalid Update Count!\n", __func__);
  9673. return QDF_STATUS_E_INVAL;
  9674. }
  9675. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  9676. len += (sizeof(wmi_msduq_qdepth_thresh_update) *
  9677. param->num_of_msduq_updates);
  9678. buf = wmi_buf_alloc(wmi_handle, len);
  9679. if (!buf) {
  9680. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9681. return QDF_STATUS_E_NOMEM;
  9682. }
  9683. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  9684. cmd = (wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param *)
  9685. buf_ptr;
  9686. WMITLV_SET_HDR(&cmd->tlv_header,
  9687. WMITLV_TAG_STRUC_wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param
  9688. , WMITLV_GET_STRUCT_TLVLEN(
  9689. wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param));
  9690. cmd->pdev_id =
  9691. wmi_handle->ops->convert_pdev_id_host_to_target(param->pdev_id);
  9692. cmd->vdev_id = param->vdev_id;
  9693. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->mac_addr, &cmd->peer_mac_address);
  9694. cmd->num_of_msduq_updates = param->num_of_msduq_updates;
  9695. buf_ptr += sizeof(
  9696. wmi_peer_tid_msduq_qdepth_thresh_update_cmd_fixed_param);
  9697. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  9698. param->num_of_msduq_updates *
  9699. sizeof(wmi_msduq_qdepth_thresh_update));
  9700. buf_ptr += WMI_TLV_HDR_SIZE;
  9701. cmd_update = (wmi_msduq_qdepth_thresh_update *)buf_ptr;
  9702. for (i = 0; i < cmd->num_of_msduq_updates; i++) {
  9703. WMITLV_SET_HDR(&cmd_update->tlv_header,
  9704. WMITLV_TAG_STRUC_wmi_msduq_qdepth_thresh_update,
  9705. WMITLV_GET_STRUCT_TLVLEN(
  9706. wmi_msduq_qdepth_thresh_update));
  9707. cmd_update->tid_num = param->update_params[i].tid_num;
  9708. cmd_update->msduq_update_mask =
  9709. param->update_params[i].msduq_update_mask;
  9710. cmd_update->qdepth_thresh_value =
  9711. param->update_params[i].qdepth_thresh_value;
  9712. WMI_LOGD("Set QDepth Threshold: vdev=0x%X pdev=0x%X, tid=0x%X "
  9713. "mac_addr_upper4=%X, mac_addr_lower2:%X,"
  9714. " update mask=0x%X thresh val=0x%X\n",
  9715. cmd->vdev_id, cmd->pdev_id, cmd_update->tid_num,
  9716. cmd->peer_mac_address.mac_addr31to0,
  9717. cmd->peer_mac_address.mac_addr47to32,
  9718. cmd_update->msduq_update_mask,
  9719. cmd_update->qdepth_thresh_value);
  9720. cmd_update++;
  9721. }
  9722. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  9723. WMI_PEER_TID_MSDUQ_QDEPTH_THRESH_UPDATE_CMDID);
  9724. if (ret != 0) {
  9725. WMI_LOGE(" %s :WMI Failed\n", __func__);
  9726. wmi_buf_free(buf);
  9727. }
  9728. return ret;
  9729. }
  9730. /**
  9731. * send_set_vap_dscp_tid_map_cmd_tlv() - send vap dscp tid map cmd to fw
  9732. * @wmi_handle: wmi handle
  9733. * @param: pointer to hold vap dscp tid map param
  9734. *
  9735. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9736. */
  9737. static QDF_STATUS
  9738. send_set_vap_dscp_tid_map_cmd_tlv(wmi_unified_t wmi_handle,
  9739. struct vap_dscp_tid_map_params *param)
  9740. {
  9741. wmi_buf_t buf;
  9742. wmi_vdev_set_dscp_tid_map_cmd_fixed_param *cmd;
  9743. int32_t len = sizeof(*cmd);
  9744. buf = wmi_buf_alloc(wmi_handle, len);
  9745. if (!buf) {
  9746. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9747. return QDF_STATUS_E_FAILURE;
  9748. }
  9749. cmd = (wmi_vdev_set_dscp_tid_map_cmd_fixed_param *)wmi_buf_data(buf);
  9750. qdf_mem_copy(cmd->dscp_to_tid_map, param->dscp_to_tid_map,
  9751. sizeof(uint32_t) * WMI_DSCP_MAP_MAX);
  9752. cmd->vdev_id = param->vdev_id;
  9753. cmd->enable_override = 0;
  9754. WMI_LOGI("Setting dscp for vap id: %d\n", cmd->vdev_id);
  9755. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9756. WMI_VDEV_SET_DSCP_TID_MAP_CMDID)) {
  9757. WMI_LOGE("Failed to set dscp cmd\n");
  9758. wmi_buf_free(buf);
  9759. return QDF_STATUS_E_FAILURE;
  9760. }
  9761. return QDF_STATUS_SUCCESS;
  9762. }
  9763. /**
  9764. * send_vdev_set_neighbour_rx_cmd_tlv() - set neighbour rx param in fw
  9765. * @wmi_handle: wmi handle
  9766. * @macaddr: vdev mac address
  9767. * @param: pointer to hold neigbour rx param
  9768. *
  9769. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9770. */
  9771. static QDF_STATUS send_vdev_set_neighbour_rx_cmd_tlv(wmi_unified_t wmi_handle,
  9772. uint8_t macaddr[IEEE80211_ADDR_LEN],
  9773. struct set_neighbour_rx_params *param)
  9774. {
  9775. wmi_vdev_filter_nrp_config_cmd_fixed_param *cmd;
  9776. wmi_buf_t buf;
  9777. int32_t len = sizeof(*cmd);
  9778. buf = wmi_buf_alloc(wmi_handle, len);
  9779. if (!buf) {
  9780. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9781. return QDF_STATUS_E_FAILURE;
  9782. }
  9783. cmd = (wmi_vdev_filter_nrp_config_cmd_fixed_param *)wmi_buf_data(buf);
  9784. WMITLV_SET_HDR(&cmd->tlv_header,
  9785. WMITLV_TAG_STRUC_wmi_vdev_filter_nrp_config_cmd_fixed_param,
  9786. WMITLV_GET_STRUCT_TLVLEN(
  9787. wmi_vdev_filter_nrp_config_cmd_fixed_param));
  9788. cmd->vdev_id = param->vdev_id;
  9789. cmd->bssid_idx = param->idx;
  9790. cmd->action = param->action;
  9791. cmd->type = param->type;
  9792. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->addr);
  9793. cmd->flag = 0;
  9794. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9795. WMI_VDEV_FILTER_NEIGHBOR_RX_PACKETS_CMDID)) {
  9796. WMI_LOGE("Failed to set neighbour rx param\n");
  9797. wmi_buf_free(buf);
  9798. return QDF_STATUS_E_FAILURE;
  9799. }
  9800. return QDF_STATUS_SUCCESS;
  9801. }
  9802. /**
  9803. * send_smart_ant_set_tx_ant_cmd_tlv() - WMI set tx antenna function
  9804. * @param wmi_handle : handle to WMI.
  9805. * @param macaddr : vdev mac address
  9806. * @param param : pointer to tx antenna param
  9807. *
  9808. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9809. */
  9810. static QDF_STATUS send_smart_ant_set_tx_ant_cmd_tlv(wmi_unified_t wmi_handle,
  9811. uint8_t macaddr[IEEE80211_ADDR_LEN],
  9812. struct smart_ant_tx_ant_params *param)
  9813. {
  9814. wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param *cmd;
  9815. wmi_peer_smart_ant_set_tx_antenna_series *ant_tx_series;
  9816. wmi_buf_t buf;
  9817. int32_t len = 0;
  9818. int i;
  9819. uint8_t *buf_ptr;
  9820. QDF_STATUS ret;
  9821. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  9822. len += (WMI_SMART_ANT_MAX_RATE_SERIES) *
  9823. sizeof(wmi_peer_smart_ant_set_tx_antenna_series);
  9824. buf = wmi_buf_alloc(wmi_handle, len);
  9825. if (!buf) {
  9826. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9827. return QDF_STATUS_E_NOMEM;
  9828. }
  9829. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  9830. qdf_mem_zero(buf_ptr, len);
  9831. cmd = (wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param *)buf_ptr;
  9832. WMITLV_SET_HDR(&cmd->tlv_header,
  9833. WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param,
  9834. WMITLV_GET_STRUCT_TLVLEN(
  9835. wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param));
  9836. cmd->vdev_id = param->vdev_id;
  9837. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  9838. buf_ptr += sizeof(wmi_peer_smart_ant_set_tx_antenna_cmd_fixed_param);
  9839. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  9840. sizeof(wmi_peer_smart_ant_set_tx_antenna_series));
  9841. buf_ptr += WMI_TLV_HDR_SIZE;
  9842. ant_tx_series = (wmi_peer_smart_ant_set_tx_antenna_series *)buf_ptr;
  9843. for (i = 0; i < WMI_SMART_ANT_MAX_RATE_SERIES; i++) {
  9844. WMITLV_SET_HDR(&ant_tx_series->tlv_header,
  9845. WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_tx_antenna_series,
  9846. WMITLV_GET_STRUCT_TLVLEN(
  9847. wmi_peer_smart_ant_set_tx_antenna_series));
  9848. ant_tx_series->antenna_series = param->antenna_array[i];
  9849. ant_tx_series++;
  9850. }
  9851. ret = wmi_unified_cmd_send(wmi_handle,
  9852. buf,
  9853. len,
  9854. WMI_PEER_SMART_ANT_SET_TX_ANTENNA_CMDID);
  9855. if (ret != 0) {
  9856. WMI_LOGE(" %s :WMI Failed\n", __func__);
  9857. wmi_buf_free(buf);
  9858. }
  9859. return ret;
  9860. }
  9861. /**
  9862. * send_set_ant_switch_tbl_cmd_tlv() - send ant switch tbl cmd to fw
  9863. * @wmi_handle: wmi handle
  9864. * @param: pointer to hold ant switch tbl param
  9865. *
  9866. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9867. */
  9868. static QDF_STATUS
  9869. send_set_ant_switch_tbl_cmd_tlv(wmi_unified_t wmi_handle,
  9870. struct ant_switch_tbl_params *param)
  9871. {
  9872. uint8_t len;
  9873. wmi_buf_t buf;
  9874. wmi_pdev_set_ant_switch_tbl_cmd_fixed_param *cmd;
  9875. wmi_pdev_set_ant_ctrl_chain *ctrl_chain;
  9876. uint8_t *buf_ptr;
  9877. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  9878. len += sizeof(wmi_pdev_set_ant_ctrl_chain);
  9879. buf = wmi_buf_alloc(wmi_handle, len);
  9880. if (!buf) {
  9881. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9882. return QDF_STATUS_E_NOMEM;
  9883. }
  9884. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  9885. qdf_mem_zero(buf_ptr, len);
  9886. cmd = (wmi_pdev_set_ant_switch_tbl_cmd_fixed_param *)buf_ptr;
  9887. WMITLV_SET_HDR(&cmd->tlv_header,
  9888. WMITLV_TAG_STRUC_wmi_pdev_set_ant_switch_tbl_cmd_fixed_param,
  9889. WMITLV_GET_STRUCT_TLVLEN(
  9890. wmi_pdev_set_ant_switch_tbl_cmd_fixed_param));
  9891. cmd->antCtrlCommon1 = param->ant_ctrl_common1;
  9892. cmd->antCtrlCommon2 = param->ant_ctrl_common2;
  9893. cmd->mac_id =
  9894. wmi_handle->ops->convert_pdev_id_host_to_target(param->pdev_id);
  9895. /* TLV indicating array of structures to follow */
  9896. buf_ptr += sizeof(wmi_pdev_set_ant_switch_tbl_cmd_fixed_param);
  9897. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  9898. sizeof(wmi_pdev_set_ant_ctrl_chain));
  9899. buf_ptr += WMI_TLV_HDR_SIZE;
  9900. ctrl_chain = (wmi_pdev_set_ant_ctrl_chain *)buf_ptr;
  9901. ctrl_chain->pdev_id =
  9902. wmi_handle->ops->convert_pdev_id_host_to_target(param->pdev_id);
  9903. ctrl_chain->antCtrlChain = param->antCtrlChain;
  9904. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  9905. WMI_PDEV_SET_ANTENNA_SWITCH_TABLE_CMDID)) {
  9906. wmi_buf_free(buf);
  9907. return QDF_STATUS_E_FAILURE;
  9908. }
  9909. return QDF_STATUS_SUCCESS;
  9910. }
  9911. /**
  9912. * send_smart_ant_set_training_info_cmd_tlv() - WMI set smart antenna
  9913. * training information function
  9914. * @param wmi_handle : handle to WMI.
  9915. * @macaddr : vdev mac address
  9916. * @param param : pointer to tx antenna param
  9917. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9918. */
  9919. static QDF_STATUS send_smart_ant_set_training_info_cmd_tlv(
  9920. wmi_unified_t wmi_handle,
  9921. uint8_t macaddr[IEEE80211_ADDR_LEN],
  9922. struct smart_ant_training_info_params *param)
  9923. {
  9924. wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param *cmd;
  9925. wmi_peer_smart_ant_set_train_antenna_param *train_param;
  9926. wmi_buf_t buf;
  9927. uint8_t *buf_ptr;
  9928. int32_t len = 0;
  9929. QDF_STATUS ret;
  9930. int loop;
  9931. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  9932. len += (WMI_SMART_ANT_MAX_RATE_SERIES) *
  9933. sizeof(wmi_peer_smart_ant_set_train_antenna_param);
  9934. buf = wmi_buf_alloc(wmi_handle, len);
  9935. if (!buf) {
  9936. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  9937. return QDF_STATUS_E_NOMEM;
  9938. }
  9939. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  9940. qdf_mem_zero(buf_ptr, len);
  9941. cmd = (wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param *)buf_ptr;
  9942. WMITLV_SET_HDR(&cmd->tlv_header,
  9943. WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param,
  9944. WMITLV_GET_STRUCT_TLVLEN(
  9945. wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param));
  9946. cmd->vdev_id = param->vdev_id;
  9947. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  9948. cmd->num_pkts = param->numpkts;
  9949. buf_ptr += sizeof(wmi_peer_smart_ant_set_train_antenna_cmd_fixed_param);
  9950. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  9951. sizeof(wmi_peer_smart_ant_set_train_antenna_param) *
  9952. WMI_SMART_ANT_MAX_RATE_SERIES);
  9953. buf_ptr += WMI_TLV_HDR_SIZE;
  9954. train_param = (wmi_peer_smart_ant_set_train_antenna_param *)buf_ptr;
  9955. for (loop = 0; loop < WMI_SMART_ANT_MAX_RATE_SERIES; loop++) {
  9956. WMITLV_SET_HDR(&train_param->tlv_header,
  9957. WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_train_antenna_param,
  9958. WMITLV_GET_STRUCT_TLVLEN(
  9959. wmi_peer_smart_ant_set_train_antenna_param));
  9960. train_param->train_rate_series = param->rate_array[loop];
  9961. train_param->train_antenna_series = param->antenna_array[loop];
  9962. train_param->rc_flags = 0;
  9963. WMI_LOGI(FL("Series number:%d\n"), loop);
  9964. WMI_LOGI(FL("Rate [0x%02x] Tx_Antenna [0x%08x]\n"),
  9965. train_param->train_rate_series,
  9966. train_param->train_antenna_series);
  9967. train_param++;
  9968. }
  9969. ret = wmi_unified_cmd_send(wmi_handle,
  9970. buf,
  9971. len,
  9972. WMI_PEER_SMART_ANT_SET_TRAIN_INFO_CMDID);
  9973. if (ret != 0) {
  9974. WMI_LOGE(" %s :WMI Failed\n", __func__);
  9975. wmi_buf_free(buf);
  9976. return QDF_STATUS_E_FAILURE;
  9977. }
  9978. return ret;
  9979. }
  9980. /**
  9981. * send_smart_ant_set_node_config_cmd_tlv() - WMI set node
  9982. * configuration function
  9983. * @param wmi_handle : handle to WMI.
  9984. * @macaddr : vdev mad address
  9985. * @param param : pointer to tx antenna param
  9986. *
  9987. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  9988. */
  9989. static QDF_STATUS send_smart_ant_set_node_config_cmd_tlv(
  9990. wmi_unified_t wmi_handle,
  9991. uint8_t macaddr[IEEE80211_ADDR_LEN],
  9992. struct smart_ant_node_config_params *param)
  9993. {
  9994. wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param *cmd;
  9995. wmi_buf_t buf;
  9996. uint8_t *buf_ptr;
  9997. int32_t len = 0, args_tlv_len;
  9998. int ret;
  9999. int i = 0;
  10000. uint32_t *node_config_args;
  10001. args_tlv_len = WMI_TLV_HDR_SIZE + param->args_count * sizeof(uint32_t);
  10002. len = sizeof(*cmd) + args_tlv_len;
  10003. if (param->args_count == 0) {
  10004. WMI_LOGE("%s: Can't send a command with %d arguments\n",
  10005. __func__, param->args_count);
  10006. return QDF_STATUS_E_FAILURE;
  10007. }
  10008. buf = wmi_buf_alloc(wmi_handle, len);
  10009. if (!buf) {
  10010. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  10011. return QDF_STATUS_E_NOMEM;
  10012. }
  10013. cmd = (wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param *)
  10014. wmi_buf_data(buf);
  10015. buf_ptr = (uint8_t *)cmd;
  10016. WMITLV_SET_HDR(&cmd->tlv_header,
  10017. WMITLV_TAG_STRUC_wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param,
  10018. WMITLV_GET_STRUCT_TLVLEN(
  10019. wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param));
  10020. cmd->vdev_id = param->vdev_id;
  10021. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  10022. cmd->cmd_id = param->cmd_id;
  10023. cmd->args_count = param->args_count;
  10024. buf_ptr += sizeof(
  10025. wmi_peer_smart_ant_set_node_config_ops_cmd_fixed_param);
  10026. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  10027. (cmd->args_count * sizeof(uint32_t)));
  10028. buf_ptr += WMI_TLV_HDR_SIZE;
  10029. node_config_args = (uint32_t *)buf_ptr;
  10030. for (i = 0; i < param->args_count; i++) {
  10031. node_config_args[i] = param->args_arr[i];
  10032. WMI_LOGI("%d", param->args_arr[i]);
  10033. }
  10034. ret = wmi_unified_cmd_send(wmi_handle,
  10035. buf,
  10036. len,
  10037. WMI_PEER_SMART_ANT_SET_NODE_CONFIG_OPS_CMDID);
  10038. if (ret != 0) {
  10039. WMI_LOGE("%s: WMI FAILED:Sent cmd_id: 0x%x\n Node: %02x:%02x:%02x:%02x:%02x:%02x cmdstatus=%d\n",
  10040. __func__, param->cmd_id, macaddr[0],
  10041. macaddr[1], macaddr[2], macaddr[3],
  10042. macaddr[4], macaddr[5], ret);
  10043. wmi_buf_free(buf);
  10044. }
  10045. return ret;
  10046. }
  10047. /**
  10048. * send_set_atf_cmd_tlv() - send set atf command to fw
  10049. * @wmi_handle: wmi handle
  10050. * @param: pointer to set atf param
  10051. *
  10052. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  10053. */
  10054. static QDF_STATUS
  10055. send_set_atf_cmd_tlv(wmi_unified_t wmi_handle,
  10056. struct set_atf_params *param)
  10057. {
  10058. wmi_atf_peer_info *peer_info;
  10059. wmi_peer_atf_request_fixed_param *cmd;
  10060. wmi_buf_t buf;
  10061. uint8_t *buf_ptr;
  10062. int i;
  10063. int32_t len = 0;
  10064. QDF_STATUS retval;
  10065. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  10066. len += param->num_peers * sizeof(wmi_atf_peer_info);
  10067. buf = wmi_buf_alloc(wmi_handle, len);
  10068. if (!buf) {
  10069. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  10070. return QDF_STATUS_E_FAILURE;
  10071. }
  10072. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  10073. cmd = (wmi_peer_atf_request_fixed_param *)buf_ptr;
  10074. WMITLV_SET_HDR(&cmd->tlv_header,
  10075. WMITLV_TAG_STRUC_wmi_peer_atf_request_fixed_param,
  10076. WMITLV_GET_STRUCT_TLVLEN(
  10077. wmi_peer_atf_request_fixed_param));
  10078. cmd->num_peers = param->num_peers;
  10079. buf_ptr += sizeof(*cmd);
  10080. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  10081. sizeof(wmi_atf_peer_info) *
  10082. cmd->num_peers);
  10083. buf_ptr += WMI_TLV_HDR_SIZE;
  10084. peer_info = (wmi_atf_peer_info *)buf_ptr;
  10085. for (i = 0; i < cmd->num_peers; i++) {
  10086. WMITLV_SET_HDR(&peer_info->tlv_header,
  10087. WMITLV_TAG_STRUC_wmi_atf_peer_info,
  10088. WMITLV_GET_STRUCT_TLVLEN(
  10089. wmi_atf_peer_info));
  10090. qdf_mem_copy(&(peer_info->peer_macaddr),
  10091. &(param->peer_info[i].peer_macaddr),
  10092. sizeof(wmi_mac_addr));
  10093. peer_info->atf_units = param->peer_info[i].percentage_peer;
  10094. peer_info->vdev_id = param->peer_info[i].vdev_id;
  10095. peer_info->pdev_id =
  10096. wmi_handle->ops->convert_pdev_id_host_to_target(
  10097. param->peer_info[i].pdev_id);
  10098. /*
  10099. * TLV definition for peer atf request fixed param combines
  10100. * extension stats. Legacy FW for WIN (Non-TLV) has peer atf
  10101. * stats and atf extension stats as two different
  10102. * implementations.
  10103. * Need to discuss with FW on this.
  10104. *
  10105. * peer_info->atf_groupid = param->peer_ext_info[i].group_index;
  10106. * peer_info->atf_units_reserved =
  10107. * param->peer_ext_info[i].atf_index_reserved;
  10108. */
  10109. peer_info++;
  10110. }
  10111. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  10112. WMI_PEER_ATF_REQUEST_CMDID);
  10113. if (retval != QDF_STATUS_SUCCESS) {
  10114. WMI_LOGE("%s : WMI Failed\n", __func__);
  10115. wmi_buf_free(buf);
  10116. }
  10117. return retval;
  10118. }
  10119. /**
  10120. * send_vdev_set_fwtest_param_cmd_tlv() - send fwtest param in fw
  10121. * @wmi_handle: wmi handle
  10122. * @param: pointer to hold fwtest param
  10123. *
  10124. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  10125. */
  10126. static QDF_STATUS send_vdev_set_fwtest_param_cmd_tlv(wmi_unified_t wmi_handle,
  10127. struct set_fwtest_params *param)
  10128. {
  10129. wmi_fwtest_set_param_cmd_fixed_param *cmd;
  10130. wmi_buf_t buf;
  10131. int32_t len = sizeof(*cmd);
  10132. buf = wmi_buf_alloc(wmi_handle, len);
  10133. if (!buf) {
  10134. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  10135. return QDF_STATUS_E_FAILURE;
  10136. }
  10137. cmd = (wmi_fwtest_set_param_cmd_fixed_param *)wmi_buf_data(buf);
  10138. WMITLV_SET_HDR(&cmd->tlv_header,
  10139. WMITLV_TAG_STRUC_wmi_fwtest_set_param_cmd_fixed_param,
  10140. WMITLV_GET_STRUCT_TLVLEN(
  10141. wmi_fwtest_set_param_cmd_fixed_param));
  10142. cmd->param_id = param->arg;
  10143. cmd->param_value = param->value;
  10144. if (wmi_unified_cmd_send(wmi_handle, buf, len, WMI_FWTEST_CMDID)) {
  10145. WMI_LOGE("Setting FW test param failed\n");
  10146. wmi_buf_free(buf);
  10147. return QDF_STATUS_E_FAILURE;
  10148. }
  10149. return QDF_STATUS_SUCCESS;
  10150. }
  10151. /**
  10152. * send_set_qboost_param_cmd_tlv() - send set qboost command to fw
  10153. * @wmi_handle: wmi handle
  10154. * @param: pointer to qboost params
  10155. * @macaddr: vdev mac address
  10156. *
  10157. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  10158. */
  10159. static QDF_STATUS
  10160. send_set_qboost_param_cmd_tlv(wmi_unified_t wmi_handle,
  10161. uint8_t macaddr[IEEE80211_ADDR_LEN],
  10162. struct set_qboost_params *param)
  10163. {
  10164. WMI_QBOOST_CFG_CMD_fixed_param *cmd;
  10165. wmi_buf_t buf;
  10166. int32_t len;
  10167. QDF_STATUS ret;
  10168. len = sizeof(*cmd);
  10169. buf = wmi_buf_alloc(wmi_handle, len);
  10170. if (!buf) {
  10171. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10172. return QDF_STATUS_E_FAILURE;
  10173. }
  10174. cmd = (WMI_QBOOST_CFG_CMD_fixed_param *)wmi_buf_data(buf);
  10175. WMITLV_SET_HDR(&cmd->tlv_header,
  10176. WMITLV_TAG_STRUC_WMI_QBOOST_CFG_CMD_fixed_param,
  10177. WMITLV_GET_STRUCT_TLVLEN(
  10178. WMI_QBOOST_CFG_CMD_fixed_param));
  10179. cmd->vdev_id = param->vdev_id;
  10180. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  10181. cmd->qb_enable = param->value;
  10182. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  10183. WMI_QBOOST_CFG_CMDID);
  10184. if (ret != 0) {
  10185. WMI_LOGE("Setting qboost cmd failed\n");
  10186. wmi_buf_free(buf);
  10187. }
  10188. return ret;
  10189. }
  10190. /**
  10191. * send_gpio_config_cmd_tlv() - send gpio config to fw
  10192. * @wmi_handle: wmi handle
  10193. * @param: pointer to hold gpio config param
  10194. *
  10195. * Return: 0 for success or error code
  10196. */
  10197. static QDF_STATUS
  10198. send_gpio_config_cmd_tlv(wmi_unified_t wmi_handle,
  10199. struct gpio_config_params *param)
  10200. {
  10201. wmi_gpio_config_cmd_fixed_param *cmd;
  10202. wmi_buf_t buf;
  10203. int32_t len;
  10204. QDF_STATUS ret;
  10205. len = sizeof(*cmd);
  10206. /* Sanity Checks */
  10207. if (param->pull_type > WMI_GPIO_PULL_DOWN ||
  10208. param->intr_mode > WMI_GPIO_INTTYPE_LEVEL_HIGH) {
  10209. return QDF_STATUS_E_FAILURE;
  10210. }
  10211. buf = wmi_buf_alloc(wmi_handle, len);
  10212. if (!buf) {
  10213. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10214. return QDF_STATUS_E_FAILURE;
  10215. }
  10216. cmd = (wmi_gpio_config_cmd_fixed_param *)wmi_buf_data(buf);
  10217. WMITLV_SET_HDR(&cmd->tlv_header,
  10218. WMITLV_TAG_STRUC_wmi_gpio_config_cmd_fixed_param,
  10219. WMITLV_GET_STRUCT_TLVLEN(
  10220. wmi_gpio_config_cmd_fixed_param));
  10221. cmd->gpio_num = param->gpio_num;
  10222. cmd->input = param->input;
  10223. cmd->pull_type = param->pull_type;
  10224. cmd->intr_mode = param->intr_mode;
  10225. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  10226. WMI_GPIO_CONFIG_CMDID);
  10227. if (ret != 0) {
  10228. WMI_LOGE("Sending GPIO config cmd failed\n");
  10229. wmi_buf_free(buf);
  10230. }
  10231. return ret;
  10232. }
  10233. /**
  10234. * send_gpio_output_cmd_tlv() - send gpio output to fw
  10235. * @wmi_handle: wmi handle
  10236. * @param: pointer to hold gpio output param
  10237. *
  10238. * Return: 0 for success or error code
  10239. */
  10240. static QDF_STATUS
  10241. send_gpio_output_cmd_tlv(wmi_unified_t wmi_handle,
  10242. struct gpio_output_params *param)
  10243. {
  10244. wmi_gpio_output_cmd_fixed_param *cmd;
  10245. wmi_buf_t buf;
  10246. int32_t len;
  10247. QDF_STATUS ret;
  10248. len = sizeof(*cmd);
  10249. buf = wmi_buf_alloc(wmi_handle, len);
  10250. if (!buf) {
  10251. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10252. return QDF_STATUS_E_FAILURE;
  10253. }
  10254. cmd = (wmi_gpio_output_cmd_fixed_param *)wmi_buf_data(buf);
  10255. WMITLV_SET_HDR(&cmd->tlv_header,
  10256. WMITLV_TAG_STRUC_wmi_gpio_output_cmd_fixed_param,
  10257. WMITLV_GET_STRUCT_TLVLEN(
  10258. wmi_gpio_output_cmd_fixed_param));
  10259. cmd->gpio_num = param->gpio_num;
  10260. cmd->set = param->set;
  10261. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  10262. WMI_GPIO_OUTPUT_CMDID);
  10263. if (ret != 0) {
  10264. WMI_LOGE("Sending GPIO output cmd failed\n");
  10265. wmi_buf_free(buf);
  10266. }
  10267. return ret;
  10268. }
  10269. /**
  10270. * send_phyerr_disable_cmd_tlv() - WMI phyerr disable function
  10271. *
  10272. * @param wmi_handle : handle to WMI.
  10273. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  10274. */
  10275. static QDF_STATUS send_phyerr_disable_cmd_tlv(wmi_unified_t wmi_handle)
  10276. {
  10277. wmi_pdev_dfs_disable_cmd_fixed_param *cmd;
  10278. wmi_buf_t buf;
  10279. QDF_STATUS ret;
  10280. int32_t len;
  10281. len = sizeof(*cmd);
  10282. buf = wmi_buf_alloc(wmi_handle, len);
  10283. if (!buf) {
  10284. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10285. return QDF_STATUS_E_FAILURE;
  10286. }
  10287. cmd = (wmi_pdev_dfs_disable_cmd_fixed_param *)wmi_buf_data(buf);
  10288. WMITLV_SET_HDR(&cmd->tlv_header,
  10289. WMITLV_TAG_STRUC_wmi_pdev_dfs_disable_cmd_fixed_param,
  10290. WMITLV_GET_STRUCT_TLVLEN(
  10291. wmi_pdev_dfs_disable_cmd_fixed_param));
  10292. /* Filling it with WMI_PDEV_ID_SOC for now */
  10293. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  10294. WMI_HOST_PDEV_ID_SOC);
  10295. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  10296. WMI_PDEV_DFS_DISABLE_CMDID);
  10297. if (ret != 0) {
  10298. WMI_LOGE("Sending PDEV DFS disable cmd failed\n");
  10299. wmi_buf_free(buf);
  10300. }
  10301. return ret;
  10302. }
  10303. /**
  10304. * send_phyerr_enable_cmd_tlv() - WMI phyerr disable function
  10305. *
  10306. * @param wmi_handle : handle to WMI.
  10307. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  10308. */
  10309. static QDF_STATUS send_phyerr_enable_cmd_tlv(wmi_unified_t wmi_handle)
  10310. {
  10311. wmi_pdev_dfs_enable_cmd_fixed_param *cmd;
  10312. wmi_buf_t buf;
  10313. QDF_STATUS ret;
  10314. int32_t len;
  10315. len = sizeof(*cmd);
  10316. buf = wmi_buf_alloc(wmi_handle, len);
  10317. if (!buf) {
  10318. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10319. return QDF_STATUS_E_FAILURE;
  10320. }
  10321. cmd = (wmi_pdev_dfs_enable_cmd_fixed_param *)wmi_buf_data(buf);
  10322. WMITLV_SET_HDR(&cmd->tlv_header,
  10323. WMITLV_TAG_STRUC_wmi_pdev_dfs_enable_cmd_fixed_param,
  10324. WMITLV_GET_STRUCT_TLVLEN(
  10325. wmi_pdev_dfs_enable_cmd_fixed_param));
  10326. /* Reserved for future use */
  10327. cmd->reserved0 = 0;
  10328. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  10329. WMI_PDEV_DFS_ENABLE_CMDID);
  10330. if (ret != 0) {
  10331. WMI_LOGE("Sending PDEV DFS enable cmd failed\n");
  10332. wmi_buf_free(buf);
  10333. }
  10334. return ret;
  10335. }
  10336. /**
  10337. * send_periodic_chan_stats_config_cmd_tlv() - send periodic chan stats cmd
  10338. * to fw
  10339. * @wmi_handle: wmi handle
  10340. * @param: pointer to hold periodic chan stats param
  10341. *
  10342. * Return: 0 for success or error code
  10343. */
  10344. static QDF_STATUS
  10345. send_periodic_chan_stats_config_cmd_tlv(wmi_unified_t wmi_handle,
  10346. struct periodic_chan_stats_params *param)
  10347. {
  10348. wmi_set_periodic_channel_stats_config_fixed_param *cmd;
  10349. wmi_buf_t buf;
  10350. QDF_STATUS ret;
  10351. int32_t len;
  10352. len = sizeof(*cmd);
  10353. buf = wmi_buf_alloc(wmi_handle, len);
  10354. if (!buf) {
  10355. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10356. return QDF_STATUS_E_FAILURE;
  10357. }
  10358. cmd = (wmi_set_periodic_channel_stats_config_fixed_param *)
  10359. wmi_buf_data(buf);
  10360. WMITLV_SET_HDR(&cmd->tlv_header,
  10361. WMITLV_TAG_STRUC_wmi_set_periodic_channel_stats_config_fixed_param,
  10362. WMITLV_GET_STRUCT_TLVLEN(
  10363. wmi_set_periodic_channel_stats_config_fixed_param));
  10364. cmd->enable = param->enable;
  10365. cmd->stats_period = param->stats_period;
  10366. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  10367. param->pdev_id);
  10368. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  10369. WMI_SET_PERIODIC_CHANNEL_STATS_CONFIG_CMDID);
  10370. if (ret != 0) {
  10371. WMI_LOGE("Sending periodic chan stats config failed");
  10372. wmi_buf_free(buf);
  10373. }
  10374. return ret;
  10375. }
  10376. /**
  10377. * send_nf_dbr_dbm_info_get_cmd_tlv() - send request to get nf to fw
  10378. * @wmi_handle: wmi handle
  10379. * @mac_id: radio context
  10380. *
  10381. * Return: 0 for success or error code
  10382. */
  10383. static QDF_STATUS
  10384. send_nf_dbr_dbm_info_get_cmd_tlv(wmi_unified_t wmi_handle, uint8_t mac_id)
  10385. {
  10386. wmi_buf_t buf;
  10387. QDF_STATUS ret;
  10388. wmi_pdev_get_nfcal_power_fixed_param *cmd;
  10389. int32_t len = sizeof(*cmd);
  10390. buf = wmi_buf_alloc(wmi_handle, len);
  10391. if (buf == NULL)
  10392. return QDF_STATUS_E_NOMEM;
  10393. cmd = (wmi_pdev_get_nfcal_power_fixed_param *)wmi_buf_data(buf);
  10394. WMITLV_SET_HDR(&cmd->tlv_header,
  10395. WMITLV_TAG_STRUC_wmi_pdev_get_nfcal_power_fixed_param,
  10396. WMITLV_GET_STRUCT_TLVLEN
  10397. (wmi_pdev_get_nfcal_power_fixed_param));
  10398. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(mac_id);
  10399. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10400. WMI_PDEV_GET_NFCAL_POWER_CMDID);
  10401. if (ret != 0) {
  10402. WMI_LOGE("Sending get nfcal power cmd failed\n");
  10403. wmi_buf_free(buf);
  10404. }
  10405. return ret;
  10406. }
  10407. /**
  10408. * send_set_ht_ie_cmd_tlv() - send ht ie command to fw
  10409. * @wmi_handle: wmi handle
  10410. * @param: pointer to ht ie param
  10411. *
  10412. * Return: 0 for success or error code
  10413. */
  10414. static QDF_STATUS
  10415. send_set_ht_ie_cmd_tlv(wmi_unified_t wmi_handle,
  10416. struct ht_ie_params *param)
  10417. {
  10418. wmi_pdev_set_ht_ie_cmd_fixed_param *cmd;
  10419. wmi_buf_t buf;
  10420. QDF_STATUS ret;
  10421. int32_t len;
  10422. uint8_t *buf_ptr;
  10423. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  10424. roundup(param->ie_len, sizeof(uint32_t));
  10425. buf = wmi_buf_alloc(wmi_handle, len);
  10426. if (!buf) {
  10427. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10428. return QDF_STATUS_E_FAILURE;
  10429. }
  10430. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  10431. cmd = (wmi_pdev_set_ht_ie_cmd_fixed_param *)buf_ptr;
  10432. WMITLV_SET_HDR(&cmd->tlv_header,
  10433. WMITLV_TAG_STRUC_wmi_pdev_set_ht_ie_cmd_fixed_param,
  10434. WMITLV_GET_STRUCT_TLVLEN(
  10435. wmi_pdev_set_ht_ie_cmd_fixed_param));
  10436. cmd->reserved0 = 0;
  10437. cmd->ie_len = param->ie_len;
  10438. cmd->tx_streams = param->tx_streams;
  10439. cmd->rx_streams = param->rx_streams;
  10440. buf_ptr += sizeof(*cmd);
  10441. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, cmd->ie_len);
  10442. buf_ptr += WMI_TLV_HDR_SIZE;
  10443. if (param->ie_len)
  10444. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(buf_ptr, param->ie_data,
  10445. cmd->ie_len);
  10446. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10447. WMI_PDEV_SET_HT_CAP_IE_CMDID);
  10448. if (ret != 0) {
  10449. WMI_LOGE("Sending set ht ie cmd failed\n");
  10450. wmi_buf_free(buf);
  10451. }
  10452. return ret;
  10453. }
  10454. /**
  10455. * send_set_vht_ie_cmd_tlv() - send vht ie command to fw
  10456. * @wmi_handle: wmi handle
  10457. * @param: pointer to vht ie param
  10458. *
  10459. * Return: 0 for success or error code
  10460. */
  10461. static QDF_STATUS
  10462. send_set_vht_ie_cmd_tlv(wmi_unified_t wmi_handle,
  10463. struct vht_ie_params *param)
  10464. {
  10465. wmi_pdev_set_vht_ie_cmd_fixed_param *cmd;
  10466. wmi_buf_t buf;
  10467. QDF_STATUS ret;
  10468. int32_t len;
  10469. uint8_t *buf_ptr;
  10470. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  10471. roundup(param->ie_len, sizeof(uint32_t));
  10472. buf = wmi_buf_alloc(wmi_handle, len);
  10473. if (!buf) {
  10474. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10475. return QDF_STATUS_E_FAILURE;
  10476. }
  10477. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  10478. cmd = (wmi_pdev_set_vht_ie_cmd_fixed_param *)buf_ptr;
  10479. WMITLV_SET_HDR(&cmd->tlv_header,
  10480. WMITLV_TAG_STRUC_wmi_pdev_set_vht_ie_cmd_fixed_param,
  10481. WMITLV_GET_STRUCT_TLVLEN(
  10482. wmi_pdev_set_vht_ie_cmd_fixed_param));
  10483. cmd->reserved0 = 0;
  10484. cmd->ie_len = param->ie_len;
  10485. cmd->tx_streams = param->tx_streams;
  10486. cmd->rx_streams = param->rx_streams;
  10487. buf_ptr += sizeof(*cmd);
  10488. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, cmd->ie_len);
  10489. buf_ptr += WMI_TLV_HDR_SIZE;
  10490. if (param->ie_len)
  10491. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(buf_ptr, param->ie_data,
  10492. cmd->ie_len);
  10493. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10494. WMI_PDEV_SET_VHT_CAP_IE_CMDID);
  10495. if (ret != 0) {
  10496. WMI_LOGE("Sending set vht ie cmd failed\n");
  10497. wmi_buf_free(buf);
  10498. }
  10499. return ret;
  10500. }
  10501. /**
  10502. * send_set_quiet_mode_cmd_tlv() - send set quiet mode command to fw
  10503. * @wmi_handle: wmi handle
  10504. * @param: pointer to quiet mode params
  10505. *
  10506. * Return: 0 for success or error code
  10507. */
  10508. static QDF_STATUS
  10509. send_set_quiet_mode_cmd_tlv(wmi_unified_t wmi_handle,
  10510. struct set_quiet_mode_params *param)
  10511. {
  10512. wmi_pdev_set_quiet_cmd_fixed_param *quiet_cmd;
  10513. wmi_buf_t buf;
  10514. QDF_STATUS ret;
  10515. int32_t len;
  10516. len = sizeof(*quiet_cmd);
  10517. buf = wmi_buf_alloc(wmi_handle, len);
  10518. if (!buf) {
  10519. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10520. return QDF_STATUS_E_FAILURE;
  10521. }
  10522. quiet_cmd = (wmi_pdev_set_quiet_cmd_fixed_param *)wmi_buf_data(buf);
  10523. WMITLV_SET_HDR(&quiet_cmd->tlv_header,
  10524. WMITLV_TAG_STRUC_wmi_pdev_set_quiet_cmd_fixed_param,
  10525. WMITLV_GET_STRUCT_TLVLEN(
  10526. wmi_pdev_set_quiet_cmd_fixed_param));
  10527. quiet_cmd = (wmi_pdev_set_quiet_cmd_fixed_param *)wmi_buf_data(buf);
  10528. quiet_cmd->enabled = param->enabled;
  10529. quiet_cmd->period = (param->period)*(param->intval);
  10530. quiet_cmd->duration = param->duration;
  10531. quiet_cmd->next_start = param->offset;
  10532. quiet_cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  10533. WMI_HOST_PDEV_ID_SOC);
  10534. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10535. WMI_PDEV_SET_QUIET_MODE_CMDID);
  10536. if (ret != 0) {
  10537. WMI_LOGE("Sending set quiet cmd failed\n");
  10538. wmi_buf_free(buf);
  10539. }
  10540. return ret;
  10541. }
  10542. /**
  10543. * send_set_bwf_cmd_tlv() - send set bwf command to fw
  10544. * @wmi_handle: wmi handle
  10545. * @param: pointer to set bwf param
  10546. *
  10547. * Return: 0 for success or error code
  10548. */
  10549. static QDF_STATUS
  10550. send_set_bwf_cmd_tlv(wmi_unified_t wmi_handle,
  10551. struct set_bwf_params *param)
  10552. {
  10553. wmi_bwf_peer_info *peer_info;
  10554. wmi_peer_bwf_request_fixed_param *cmd;
  10555. wmi_buf_t buf;
  10556. QDF_STATUS retval;
  10557. int32_t len;
  10558. uint8_t *buf_ptr;
  10559. int i;
  10560. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  10561. len += param->num_peers * sizeof(wmi_bwf_peer_info);
  10562. buf = wmi_buf_alloc(wmi_handle, len);
  10563. if (!buf) {
  10564. WMI_LOGE("%s:wmi_buf_alloc failed\n", __func__);
  10565. return QDF_STATUS_E_FAILURE;
  10566. }
  10567. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  10568. cmd = (wmi_peer_bwf_request_fixed_param *)buf_ptr;
  10569. WMITLV_SET_HDR(&cmd->tlv_header,
  10570. WMITLV_TAG_STRUC_wmi_peer_bwf_request_fixed_param,
  10571. WMITLV_GET_STRUCT_TLVLEN(
  10572. wmi_peer_bwf_request_fixed_param));
  10573. cmd->num_peers = param->num_peers;
  10574. buf_ptr += sizeof(*cmd);
  10575. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  10576. sizeof(wmi_bwf_peer_info) *
  10577. cmd->num_peers);
  10578. buf_ptr += WMI_TLV_HDR_SIZE;
  10579. peer_info = (wmi_bwf_peer_info *)buf_ptr;
  10580. for (i = 0; i < cmd->num_peers; i++) {
  10581. WMITLV_SET_HDR(&peer_info->tlv_header,
  10582. WMITLV_TAG_STRUC_wmi_bwf_peer_info,
  10583. WMITLV_GET_STRUCT_TLVLEN(wmi_bwf_peer_info));
  10584. peer_info->bwf_guaranteed_bandwidth =
  10585. param->peer_info[i].throughput;
  10586. peer_info->bwf_max_airtime =
  10587. param->peer_info[i].max_airtime;
  10588. peer_info->bwf_peer_priority =
  10589. param->peer_info[i].priority;
  10590. qdf_mem_copy(&peer_info->peer_macaddr,
  10591. &param->peer_info[i].peer_macaddr,
  10592. sizeof(param->peer_info[i].peer_macaddr));
  10593. peer_info->vdev_id =
  10594. param->peer_info[i].vdev_id;
  10595. peer_info->pdev_id =
  10596. wmi_handle->ops->convert_pdev_id_host_to_target(
  10597. param->peer_info[i].pdev_id);
  10598. peer_info++;
  10599. }
  10600. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  10601. WMI_PEER_BWF_REQUEST_CMDID);
  10602. if (retval != QDF_STATUS_SUCCESS) {
  10603. WMI_LOGE("%s : WMI Failed\n", __func__);
  10604. wmi_buf_free(buf);
  10605. }
  10606. return retval;
  10607. }
  10608. /**
  10609. * send_mcast_group_update_cmd_tlv() - send mcast group update cmd to fw
  10610. * @wmi_handle: wmi handle
  10611. * @param: pointer to hold mcast update param
  10612. *
  10613. * Return: 0 for success or error code
  10614. */
  10615. static QDF_STATUS
  10616. send_mcast_group_update_cmd_tlv(wmi_unified_t wmi_handle,
  10617. struct mcast_group_update_params *param)
  10618. {
  10619. wmi_peer_mcast_group_cmd_fixed_param *cmd;
  10620. wmi_buf_t buf;
  10621. QDF_STATUS ret;
  10622. int32_t len;
  10623. int offset = 0;
  10624. static char dummymask[4] = { 0xFF, 0xFF, 0xFF, 0xFF};
  10625. len = sizeof(*cmd);
  10626. buf = wmi_buf_alloc(wmi_handle, len);
  10627. if (!buf) {
  10628. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10629. return QDF_STATUS_E_FAILURE;
  10630. }
  10631. cmd = (wmi_peer_mcast_group_cmd_fixed_param *)wmi_buf_data(buf);
  10632. WMITLV_SET_HDR(&cmd->tlv_header,
  10633. WMITLV_TAG_STRUC_wmi_peer_mcast_group_cmd_fixed_param,
  10634. WMITLV_GET_STRUCT_TLVLEN(
  10635. wmi_peer_mcast_group_cmd_fixed_param));
  10636. /* confirm the buffer is 4-byte aligned */
  10637. QDF_ASSERT((((size_t) cmd) & 0x3) == 0);
  10638. qdf_mem_zero(cmd, sizeof(*cmd));
  10639. cmd->vdev_id = param->vap_id;
  10640. /* construct the message assuming our endianness matches the target */
  10641. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_ACTION_M &
  10642. (param->action << WMI_PEER_MCAST_GROUP_FLAG_ACTION_S);
  10643. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_M &
  10644. (param->wildcard << WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_S);
  10645. if (param->is_action_delete)
  10646. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_DELETEALL_M;
  10647. if (param->is_mcast_addr_len)
  10648. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_IPV6_M;
  10649. if (param->is_filter_mode_snoop)
  10650. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_SRC_FILTER_EXCLUDE_M;
  10651. /* unicast address spec only applies for non-wildcard cases */
  10652. if (!param->wildcard && param->ucast_mac_addr) {
  10653. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->ucast_mac_addr,
  10654. &cmd->ucast_mac_addr);
  10655. }
  10656. if (param->mcast_ip_addr) {
  10657. QDF_ASSERT(param->mcast_ip_addr_bytes <=
  10658. sizeof(cmd->mcast_ip_addr));
  10659. offset = sizeof(cmd->mcast_ip_addr) -
  10660. param->mcast_ip_addr_bytes;
  10661. qdf_mem_copy(((uint8_t *)&cmd->mcast_ip_addr) + offset,
  10662. param->mcast_ip_addr,
  10663. param->mcast_ip_addr_bytes);
  10664. }
  10665. if (!param->mask)
  10666. param->mask = &dummymask[0];
  10667. qdf_mem_copy(((uint8_t *)&cmd->mcast_ip_mask) + offset,
  10668. param->mask,
  10669. param->mcast_ip_addr_bytes);
  10670. if (param->srcs && param->nsrcs) {
  10671. cmd->num_filter_addr = param->nsrcs;
  10672. QDF_ASSERT((param->nsrcs * param->mcast_ip_addr_bytes) <=
  10673. sizeof(cmd->filter_addr));
  10674. qdf_mem_copy(((uint8_t *) &cmd->filter_addr), param->srcs,
  10675. param->nsrcs * param->mcast_ip_addr_bytes);
  10676. }
  10677. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10678. WMI_PEER_MCAST_GROUP_CMDID);
  10679. if (ret != QDF_STATUS_SUCCESS) {
  10680. WMI_LOGE("%s : WMI Failed\n", __func__);
  10681. wmi_buf_free(buf);
  10682. }
  10683. return ret;
  10684. }
  10685. /**
  10686. * send_vdev_spectral_configure_cmd_tlv() - send VDEV spectral configure
  10687. * command to fw
  10688. * @wmi_handle: wmi handle
  10689. * @param: pointer to hold spectral config parameter
  10690. *
  10691. * Return: 0 for success or error code
  10692. */
  10693. static QDF_STATUS send_vdev_spectral_configure_cmd_tlv(wmi_unified_t wmi_handle,
  10694. struct vdev_spectral_configure_params *param)
  10695. {
  10696. wmi_vdev_spectral_configure_cmd_fixed_param *cmd;
  10697. wmi_buf_t buf;
  10698. QDF_STATUS ret;
  10699. int32_t len;
  10700. len = sizeof(*cmd);
  10701. buf = wmi_buf_alloc(wmi_handle, len);
  10702. if (!buf) {
  10703. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10704. return QDF_STATUS_E_FAILURE;
  10705. }
  10706. cmd = (wmi_vdev_spectral_configure_cmd_fixed_param *)wmi_buf_data(buf);
  10707. WMITLV_SET_HDR(&cmd->tlv_header,
  10708. WMITLV_TAG_STRUC_wmi_vdev_spectral_configure_cmd_fixed_param,
  10709. WMITLV_GET_STRUCT_TLVLEN(
  10710. wmi_vdev_spectral_configure_cmd_fixed_param));
  10711. cmd->vdev_id = param->vdev_id;
  10712. cmd->spectral_scan_count = param->count;
  10713. cmd->spectral_scan_period = param->period;
  10714. cmd->spectral_scan_priority = param->spectral_pri;
  10715. cmd->spectral_scan_fft_size = param->fft_size;
  10716. cmd->spectral_scan_gc_ena = param->gc_enable;
  10717. cmd->spectral_scan_restart_ena = param->restart_enable;
  10718. cmd->spectral_scan_noise_floor_ref = param->noise_floor_ref;
  10719. cmd->spectral_scan_init_delay = param->init_delay;
  10720. cmd->spectral_scan_nb_tone_thr = param->nb_tone_thr;
  10721. cmd->spectral_scan_str_bin_thr = param->str_bin_thr;
  10722. cmd->spectral_scan_wb_rpt_mode = param->wb_rpt_mode;
  10723. cmd->spectral_scan_rssi_rpt_mode = param->rssi_rpt_mode;
  10724. cmd->spectral_scan_rssi_thr = param->rssi_thr;
  10725. cmd->spectral_scan_pwr_format = param->pwr_format;
  10726. cmd->spectral_scan_rpt_mode = param->rpt_mode;
  10727. cmd->spectral_scan_bin_scale = param->bin_scale;
  10728. cmd->spectral_scan_dBm_adj = param->dbm_adj;
  10729. cmd->spectral_scan_chn_mask = param->chn_mask;
  10730. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10731. WMI_VDEV_SPECTRAL_SCAN_CONFIGURE_CMDID);
  10732. if (ret != 0) {
  10733. WMI_LOGE("Sending set quiet cmd failed\n");
  10734. wmi_buf_free(buf);
  10735. }
  10736. WMI_LOGI("%s: Sent WMI_VDEV_SPECTRAL_SCAN_CONFIGURE_CMDID\n",
  10737. __func__);
  10738. WMI_LOGI("vdev_id = %u\n"
  10739. "spectral_scan_count = %u\n"
  10740. "spectral_scan_period = %u\n"
  10741. "spectral_scan_priority = %u\n"
  10742. "spectral_scan_fft_size = %u\n"
  10743. "spectral_scan_gc_ena = %u\n"
  10744. "spectral_scan_restart_ena = %u\n"
  10745. "spectral_scan_noise_floor_ref = %u\n"
  10746. "spectral_scan_init_delay = %u\n"
  10747. "spectral_scan_nb_tone_thr = %u\n"
  10748. "spectral_scan_str_bin_thr = %u\n"
  10749. "spectral_scan_wb_rpt_mode = %u\n"
  10750. "spectral_scan_rssi_rpt_mode = %u\n"
  10751. "spectral_scan_rssi_thr = %u\n"
  10752. "spectral_scan_pwr_format = %u\n"
  10753. "spectral_scan_rpt_mode = %u\n"
  10754. "spectral_scan_bin_scale = %u\n"
  10755. "spectral_scan_dBm_adj = %u\n"
  10756. "spectral_scan_chn_mask = %u\n",
  10757. param->vdev_id,
  10758. param->count,
  10759. param->period,
  10760. param->spectral_pri,
  10761. param->fft_size,
  10762. param->gc_enable,
  10763. param->restart_enable,
  10764. param->noise_floor_ref,
  10765. param->init_delay,
  10766. param->nb_tone_thr,
  10767. param->str_bin_thr,
  10768. param->wb_rpt_mode,
  10769. param->rssi_rpt_mode,
  10770. param->rssi_thr,
  10771. param->pwr_format,
  10772. param->rpt_mode,
  10773. param->bin_scale,
  10774. param->dbm_adj,
  10775. param->chn_mask);
  10776. WMI_LOGI("%s: Status: %d\n\n", __func__, ret);
  10777. return ret;
  10778. }
  10779. /**
  10780. * send_vdev_spectral_enable_cmd_tlv() - send VDEV spectral configure
  10781. * command to fw
  10782. * @wmi_handle: wmi handle
  10783. * @param: pointer to hold spectral enable parameter
  10784. *
  10785. * Return: 0 for success or error code
  10786. */
  10787. static QDF_STATUS send_vdev_spectral_enable_cmd_tlv(wmi_unified_t wmi_handle,
  10788. struct vdev_spectral_enable_params *param)
  10789. {
  10790. wmi_vdev_spectral_enable_cmd_fixed_param *cmd;
  10791. wmi_buf_t buf;
  10792. QDF_STATUS ret;
  10793. int32_t len;
  10794. len = sizeof(*cmd);
  10795. buf = wmi_buf_alloc(wmi_handle, len);
  10796. if (!buf) {
  10797. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10798. return QDF_STATUS_E_FAILURE;
  10799. }
  10800. cmd = (wmi_vdev_spectral_enable_cmd_fixed_param *)wmi_buf_data(buf);
  10801. WMITLV_SET_HDR(&cmd->tlv_header,
  10802. WMITLV_TAG_STRUC_wmi_vdev_spectral_enable_cmd_fixed_param,
  10803. WMITLV_GET_STRUCT_TLVLEN(
  10804. wmi_vdev_spectral_enable_cmd_fixed_param));
  10805. cmd->vdev_id = param->vdev_id;
  10806. if (param->active_valid) {
  10807. cmd->trigger_cmd = param->active ? 1 : 2;
  10808. /* 1: Trigger, 2: Clear Trigger */
  10809. } else {
  10810. cmd->trigger_cmd = 0; /* 0: Ignore */
  10811. }
  10812. if (param->enabled_valid) {
  10813. cmd->enable_cmd = param->enabled ? 1 : 2;
  10814. /* 1: Enable 2: Disable */
  10815. } else {
  10816. cmd->enable_cmd = 0; /* 0: Ignore */
  10817. }
  10818. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  10819. WMI_VDEV_SPECTRAL_SCAN_ENABLE_CMDID);
  10820. if (ret != 0) {
  10821. WMI_LOGE("Sending scan enable CMD failed\n");
  10822. wmi_buf_free(buf);
  10823. }
  10824. WMI_LOGI("%s: Sent WMI_VDEV_SPECTRAL_SCAN_ENABLE_CMDID\n", __func__);
  10825. WMI_LOGI("vdev_id = %u\n"
  10826. "trigger_cmd = %u\n"
  10827. "enable_cmd = %u\n",
  10828. cmd->vdev_id,
  10829. cmd->trigger_cmd,
  10830. cmd->enable_cmd);
  10831. WMI_LOGI("%s: Status: %d\n\n", __func__, ret);
  10832. return ret;
  10833. }
  10834. /**
  10835. * send_thermal_mitigation_param_cmd_tlv() - configure thermal mitigation params
  10836. * @param wmi_handle : handle to WMI.
  10837. * @param param : pointer to hold thermal mitigation param
  10838. *
  10839. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  10840. */
  10841. static QDF_STATUS send_thermal_mitigation_param_cmd_tlv(
  10842. wmi_unified_t wmi_handle,
  10843. struct thermal_mitigation_params *param)
  10844. {
  10845. wmi_therm_throt_config_request_fixed_param *tt_conf = NULL;
  10846. wmi_therm_throt_level_config_info *lvl_conf = NULL;
  10847. wmi_buf_t buf = NULL;
  10848. uint8_t *buf_ptr = NULL;
  10849. int error;
  10850. int32_t len;
  10851. int i;
  10852. len = sizeof(*tt_conf) + WMI_TLV_HDR_SIZE +
  10853. THERMAL_LEVELS * sizeof(wmi_therm_throt_level_config_info);
  10854. buf = wmi_buf_alloc(wmi_handle, len);
  10855. if (!buf) {
  10856. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  10857. return QDF_STATUS_E_NOMEM;
  10858. }
  10859. tt_conf = (wmi_therm_throt_config_request_fixed_param *) wmi_buf_data(buf);
  10860. /* init fixed params */
  10861. WMITLV_SET_HDR(tt_conf,
  10862. WMITLV_TAG_STRUC_wmi_therm_throt_config_request_fixed_param,
  10863. (WMITLV_GET_STRUCT_TLVLEN(wmi_therm_throt_config_request_fixed_param)));
  10864. tt_conf->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  10865. param->pdev_id);
  10866. tt_conf->enable = param->enable;
  10867. tt_conf->dc = param->dc;
  10868. tt_conf->dc_per_event = param->dc_per_event;
  10869. tt_conf->therm_throt_levels = THERMAL_LEVELS;
  10870. buf_ptr = (uint8_t *) ++tt_conf;
  10871. /* init TLV params */
  10872. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  10873. (THERMAL_LEVELS * sizeof(wmi_therm_throt_level_config_info)));
  10874. lvl_conf = (wmi_therm_throt_level_config_info *) (buf_ptr + WMI_TLV_HDR_SIZE);
  10875. for (i = 0; i < THERMAL_LEVELS; i++) {
  10876. WMITLV_SET_HDR(&lvl_conf->tlv_header,
  10877. WMITLV_TAG_STRUC_wmi_therm_throt_level_config_info,
  10878. WMITLV_GET_STRUCT_TLVLEN(wmi_therm_throt_level_config_info));
  10879. lvl_conf->temp_lwm = param->levelconf[i].tmplwm;
  10880. lvl_conf->temp_hwm = param->levelconf[i].tmphwm;
  10881. lvl_conf->dc_off_percent = param->levelconf[i].dcoffpercent;
  10882. lvl_conf->prio = param->levelconf[i].priority;
  10883. lvl_conf++;
  10884. }
  10885. error = wmi_unified_cmd_send(wmi_handle, buf, len,
  10886. WMI_THERM_THROT_SET_CONF_CMDID);
  10887. if (QDF_IS_STATUS_ERROR(error)) {
  10888. wmi_buf_free(buf);
  10889. WMI_LOGE("Failed to send WMI_THERM_THROT_SET_CONF_CMDID command");
  10890. }
  10891. return error;
  10892. }
  10893. /**
  10894. * send_pdev_qvit_cmd_tlv() - send qvit command to fw
  10895. * @wmi_handle: wmi handle
  10896. * @param: pointer to pdev_qvit_params
  10897. *
  10898. * Return: 0 for success or error code
  10899. */
  10900. static QDF_STATUS
  10901. send_pdev_qvit_cmd_tlv(wmi_unified_t wmi_handle,
  10902. struct pdev_qvit_params *param)
  10903. {
  10904. wmi_buf_t buf;
  10905. QDF_STATUS ret = QDF_STATUS_E_INVAL;
  10906. uint8_t *cmd;
  10907. static uint8_t msgref = 1;
  10908. uint8_t segnumber = 0, seginfo, numsegments;
  10909. uint16_t chunk_len, total_bytes;
  10910. uint8_t *bufpos;
  10911. QVIT_SEG_HDR_INFO_STRUCT seghdrinfo;
  10912. bufpos = param->utf_payload;
  10913. total_bytes = param->len;
  10914. ASSERT(total_bytes / MAX_WMI_QVIT_LEN ==
  10915. (uint8_t) (total_bytes / MAX_WMI_QVIT_LEN));
  10916. numsegments = (uint8_t) (total_bytes / MAX_WMI_QVIT_LEN);
  10917. if (param->len - (numsegments * MAX_WMI_QVIT_LEN))
  10918. numsegments++;
  10919. while (param->len) {
  10920. if (param->len > MAX_WMI_QVIT_LEN)
  10921. chunk_len = MAX_WMI_QVIT_LEN; /* MAX message */
  10922. else
  10923. chunk_len = param->len;
  10924. buf = wmi_buf_alloc(wmi_handle,
  10925. (chunk_len + sizeof(seghdrinfo) +
  10926. WMI_TLV_HDR_SIZE));
  10927. if (!buf) {
  10928. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  10929. return QDF_STATUS_E_NOMEM;
  10930. }
  10931. cmd = (uint8_t *) wmi_buf_data(buf);
  10932. seghdrinfo.len = total_bytes;
  10933. seghdrinfo.msgref = msgref;
  10934. seginfo = ((numsegments << 4) & 0xF0) | (segnumber & 0xF);
  10935. seghdrinfo.segmentInfo = seginfo;
  10936. segnumber++;
  10937. WMITLV_SET_HDR(cmd, WMITLV_TAG_ARRAY_BYTE,
  10938. (chunk_len + sizeof(seghdrinfo)));
  10939. cmd += WMI_TLV_HDR_SIZE;
  10940. qdf_mem_copy(cmd, &seghdrinfo, sizeof(seghdrinfo));
  10941. qdf_mem_copy(&cmd[sizeof(seghdrinfo)], bufpos, chunk_len);
  10942. ret = wmi_unified_cmd_send(wmi_handle, buf,
  10943. (chunk_len + sizeof(seghdrinfo) +
  10944. WMI_TLV_HDR_SIZE),
  10945. WMI_PDEV_QVIT_CMDID);
  10946. if (ret != 0) {
  10947. WMI_LOGE("Failed to send WMI_PDEV_QVIT_CMDID command");
  10948. wmi_buf_free(buf);
  10949. break;
  10950. }
  10951. param->len -= chunk_len;
  10952. bufpos += chunk_len;
  10953. }
  10954. msgref++;
  10955. return ret;
  10956. }
  10957. /**
  10958. * send_wmm_update_cmd_tlv() - send wmm update command to fw
  10959. * @wmi_handle: wmi handle
  10960. * @param: pointer to wmm update param
  10961. *
  10962. * Return: 0 for success or error code
  10963. */
  10964. static QDF_STATUS
  10965. send_wmm_update_cmd_tlv(wmi_unified_t wmi_handle,
  10966. struct wmm_update_params *param)
  10967. {
  10968. wmi_pdev_set_wmm_params_cmd_fixed_param *cmd;
  10969. wmi_wmm_params *wmm_param;
  10970. wmi_buf_t buf;
  10971. QDF_STATUS ret;
  10972. int32_t len;
  10973. int ac = 0;
  10974. struct wmi_host_wmeParams *wmep;
  10975. uint8_t *buf_ptr;
  10976. len = sizeof(*cmd) + (WME_NUM_AC * sizeof(*wmm_param));
  10977. buf = wmi_buf_alloc(wmi_handle, len);
  10978. if (!buf) {
  10979. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  10980. return QDF_STATUS_E_FAILURE;
  10981. }
  10982. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  10983. cmd = (wmi_pdev_set_wmm_params_cmd_fixed_param *) buf_ptr;
  10984. WMITLV_SET_HDR(&cmd->tlv_header,
  10985. WMITLV_TAG_STRUC_wmi_pdev_set_wmm_params_cmd_fixed_param,
  10986. WMITLV_GET_STRUCT_TLVLEN
  10987. (wmi_pdev_set_wmm_params_cmd_fixed_param));
  10988. cmd->reserved0 = WMI_HOST_PDEV_ID_SOC;
  10989. buf_ptr += sizeof(wmi_pdev_set_wmm_params_cmd_fixed_param);
  10990. for (ac = 0; ac < WME_NUM_AC; ac++) {
  10991. wmep = &param->wmep_array[ac];
  10992. wmm_param = (wmi_wmm_params *)buf_ptr;
  10993. WMITLV_SET_HDR(&wmm_param->tlv_header,
  10994. WMITLV_TAG_STRUC_wmi_wmm_params,
  10995. WMITLV_GET_STRUCT_TLVLEN(wmi_wmm_params));
  10996. wmm_param->aifs = wmep->wmep_aifsn;
  10997. wmm_param->cwmin = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmin);
  10998. wmm_param->cwmax = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmax);
  10999. wmm_param->txoplimit = ATH_TXOP_TO_US(wmep->wmep_txopLimit);
  11000. wmm_param->acm = wmep->wmep_acm;
  11001. wmm_param->no_ack = wmep->wmep_noackPolicy;
  11002. buf_ptr += sizeof(wmi_wmm_params);
  11003. }
  11004. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  11005. WMI_PDEV_SET_WMM_PARAMS_CMDID);
  11006. if (ret != 0) {
  11007. WMI_LOGE("Sending WMM update CMD failed\n");
  11008. wmi_buf_free(buf);
  11009. }
  11010. return ret;
  11011. }
  11012. /**
  11013. * send_coex_config_cmd_tlv() - send coex config command to fw
  11014. * @wmi_handle: wmi handle
  11015. * @param: pointer to coex config param
  11016. *
  11017. * Return: 0 for success or error code
  11018. */
  11019. static QDF_STATUS
  11020. send_coex_config_cmd_tlv(wmi_unified_t wmi_handle,
  11021. struct coex_config_params *param)
  11022. {
  11023. WMI_COEX_CONFIG_CMD_fixed_param *cmd;
  11024. wmi_buf_t buf;
  11025. QDF_STATUS ret;
  11026. int32_t len;
  11027. len = sizeof(*cmd);
  11028. buf = wmi_buf_alloc(wmi_handle, len);
  11029. if (!buf) {
  11030. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  11031. return QDF_STATUS_E_FAILURE;
  11032. }
  11033. cmd = (WMI_COEX_CONFIG_CMD_fixed_param *)wmi_buf_data(buf);
  11034. WMITLV_SET_HDR(&cmd->tlv_header,
  11035. WMITLV_TAG_STRUC_WMI_COEX_CONFIG_CMD_fixed_param,
  11036. WMITLV_GET_STRUCT_TLVLEN(
  11037. WMI_COEX_CONFIG_CMD_fixed_param));
  11038. cmd->vdev_id = param->vdev_id;
  11039. cmd->config_type = param->config_type;
  11040. cmd->config_arg1 = param->config_arg1;
  11041. cmd->config_arg2 = param->config_arg2;
  11042. cmd->config_arg3 = param->config_arg3;
  11043. cmd->config_arg4 = param->config_arg4;
  11044. cmd->config_arg5 = param->config_arg5;
  11045. cmd->config_arg6 = param->config_arg6;
  11046. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  11047. WMI_COEX_CONFIG_CMDID);
  11048. if (ret != 0) {
  11049. WMI_LOGE("Sending COEX CONFIG CMD failed\n");
  11050. wmi_buf_free(buf);
  11051. }
  11052. return ret;
  11053. }
  11054. #ifdef WLAN_SUPPORT_TWT
  11055. static void wmi_copy_twt_resource_config(wmi_resource_config *resource_cfg,
  11056. target_resource_config *tgt_res_cfg)
  11057. {
  11058. resource_cfg->twt_ap_pdev_count = tgt_res_cfg->twt_ap_pdev_count;
  11059. resource_cfg->twt_ap_sta_count = tgt_res_cfg->twt_ap_sta_count;
  11060. }
  11061. #else
  11062. static void wmi_copy_twt_resource_config(wmi_resource_config *resource_cfg,
  11063. target_resource_config *tgt_res_cfg)
  11064. {
  11065. resource_cfg->twt_ap_pdev_count = 0;
  11066. resource_cfg->twt_ap_sta_count = 0;
  11067. }
  11068. #endif
  11069. static
  11070. void wmi_copy_resource_config(wmi_resource_config *resource_cfg,
  11071. target_resource_config *tgt_res_cfg)
  11072. {
  11073. resource_cfg->num_vdevs = tgt_res_cfg->num_vdevs;
  11074. resource_cfg->num_peers = tgt_res_cfg->num_peers;
  11075. resource_cfg->num_offload_peers = tgt_res_cfg->num_offload_peers;
  11076. resource_cfg->num_offload_reorder_buffs =
  11077. tgt_res_cfg->num_offload_reorder_buffs;
  11078. resource_cfg->num_peer_keys = tgt_res_cfg->num_peer_keys;
  11079. resource_cfg->num_tids = tgt_res_cfg->num_tids;
  11080. resource_cfg->ast_skid_limit = tgt_res_cfg->ast_skid_limit;
  11081. resource_cfg->tx_chain_mask = tgt_res_cfg->tx_chain_mask;
  11082. resource_cfg->rx_chain_mask = tgt_res_cfg->rx_chain_mask;
  11083. resource_cfg->rx_timeout_pri[0] = tgt_res_cfg->rx_timeout_pri[0];
  11084. resource_cfg->rx_timeout_pri[1] = tgt_res_cfg->rx_timeout_pri[1];
  11085. resource_cfg->rx_timeout_pri[2] = tgt_res_cfg->rx_timeout_pri[2];
  11086. resource_cfg->rx_timeout_pri[3] = tgt_res_cfg->rx_timeout_pri[3];
  11087. resource_cfg->rx_decap_mode = tgt_res_cfg->rx_decap_mode;
  11088. resource_cfg->scan_max_pending_req =
  11089. tgt_res_cfg->scan_max_pending_req;
  11090. resource_cfg->bmiss_offload_max_vdev =
  11091. tgt_res_cfg->bmiss_offload_max_vdev;
  11092. resource_cfg->roam_offload_max_vdev =
  11093. tgt_res_cfg->roam_offload_max_vdev;
  11094. resource_cfg->roam_offload_max_ap_profiles =
  11095. tgt_res_cfg->roam_offload_max_ap_profiles;
  11096. resource_cfg->num_mcast_groups = tgt_res_cfg->num_mcast_groups;
  11097. resource_cfg->num_mcast_table_elems =
  11098. tgt_res_cfg->num_mcast_table_elems;
  11099. resource_cfg->mcast2ucast_mode = tgt_res_cfg->mcast2ucast_mode;
  11100. resource_cfg->tx_dbg_log_size = tgt_res_cfg->tx_dbg_log_size;
  11101. resource_cfg->num_wds_entries = tgt_res_cfg->num_wds_entries;
  11102. resource_cfg->dma_burst_size = tgt_res_cfg->dma_burst_size;
  11103. resource_cfg->mac_aggr_delim = tgt_res_cfg->mac_aggr_delim;
  11104. resource_cfg->rx_skip_defrag_timeout_dup_detection_check =
  11105. tgt_res_cfg->rx_skip_defrag_timeout_dup_detection_check;
  11106. resource_cfg->vow_config = tgt_res_cfg->vow_config;
  11107. resource_cfg->gtk_offload_max_vdev = tgt_res_cfg->gtk_offload_max_vdev;
  11108. resource_cfg->num_msdu_desc = tgt_res_cfg->num_msdu_desc;
  11109. resource_cfg->max_frag_entries = tgt_res_cfg->max_frag_entries;
  11110. resource_cfg->num_tdls_vdevs = tgt_res_cfg->num_tdls_vdevs;
  11111. resource_cfg->num_tdls_conn_table_entries =
  11112. tgt_res_cfg->num_tdls_conn_table_entries;
  11113. resource_cfg->beacon_tx_offload_max_vdev =
  11114. tgt_res_cfg->beacon_tx_offload_max_vdev;
  11115. resource_cfg->num_multicast_filter_entries =
  11116. tgt_res_cfg->num_multicast_filter_entries;
  11117. resource_cfg->num_wow_filters =
  11118. tgt_res_cfg->num_wow_filters;
  11119. resource_cfg->num_keep_alive_pattern =
  11120. tgt_res_cfg->num_keep_alive_pattern;
  11121. resource_cfg->keep_alive_pattern_size =
  11122. tgt_res_cfg->keep_alive_pattern_size;
  11123. resource_cfg->max_tdls_concurrent_sleep_sta =
  11124. tgt_res_cfg->max_tdls_concurrent_sleep_sta;
  11125. resource_cfg->max_tdls_concurrent_buffer_sta =
  11126. tgt_res_cfg->max_tdls_concurrent_buffer_sta;
  11127. resource_cfg->wmi_send_separate =
  11128. tgt_res_cfg->wmi_send_separate;
  11129. resource_cfg->num_ocb_vdevs =
  11130. tgt_res_cfg->num_ocb_vdevs;
  11131. resource_cfg->num_ocb_channels =
  11132. tgt_res_cfg->num_ocb_channels;
  11133. resource_cfg->num_ocb_schedules =
  11134. tgt_res_cfg->num_ocb_schedules;
  11135. resource_cfg->bpf_instruction_size = tgt_res_cfg->apf_instruction_size;
  11136. resource_cfg->max_bssid_rx_filters = tgt_res_cfg->max_bssid_rx_filters;
  11137. resource_cfg->use_pdev_id = tgt_res_cfg->use_pdev_id;
  11138. resource_cfg->max_num_dbs_scan_duty_cycle =
  11139. tgt_res_cfg->max_num_dbs_scan_duty_cycle;
  11140. resource_cfg->sched_params = tgt_res_cfg->scheduler_params;
  11141. resource_cfg->num_packet_filters = tgt_res_cfg->num_packet_filters;
  11142. resource_cfg->num_max_sta_vdevs = tgt_res_cfg->num_max_sta_vdevs;
  11143. if (tgt_res_cfg->atf_config)
  11144. WMI_RSRC_CFG_FLAG_ATF_CONFIG_ENABLE_SET(resource_cfg->flag1, 1);
  11145. if (tgt_res_cfg->mgmt_comp_evt_bundle_support)
  11146. WMI_RSRC_CFG_FLAG_MGMT_COMP_EVT_BUNDLE_SUPPORT_SET(
  11147. resource_cfg->flag1, 1);
  11148. if (tgt_res_cfg->tx_msdu_new_partition_id_support)
  11149. WMI_RSRC_CFG_FLAG_TX_MSDU_ID_NEW_PARTITION_SUPPORT_SET(
  11150. resource_cfg->flag1, 1);
  11151. if (tgt_res_cfg->cce_disable)
  11152. WMI_RSRC_CFG_FLAG_TCL_CCE_DISABLE_SET(resource_cfg->flag1, 1);
  11153. wmi_copy_twt_resource_config(resource_cfg, tgt_res_cfg);
  11154. }
  11155. /* copy_hw_mode_id_in_init_cmd() - Helper routine to copy hw_mode in init cmd
  11156. * @wmi_handle: pointer to wmi handle
  11157. * @buf_ptr: pointer to current position in init command buffer
  11158. * @len: pointer to length. This will be updated with current length of cmd
  11159. * @param: point host parameters for init command
  11160. *
  11161. * Return: Updated pointer of buf_ptr.
  11162. */
  11163. static inline uint8_t *copy_hw_mode_in_init_cmd(struct wmi_unified *wmi_handle,
  11164. uint8_t *buf_ptr, int *len, struct wmi_init_cmd_param *param)
  11165. {
  11166. uint16_t idx;
  11167. if (param->hw_mode_id != WMI_HOST_HW_MODE_MAX) {
  11168. wmi_pdev_set_hw_mode_cmd_fixed_param *hw_mode;
  11169. wmi_pdev_band_to_mac *band_to_mac;
  11170. hw_mode = (wmi_pdev_set_hw_mode_cmd_fixed_param *)
  11171. (buf_ptr + sizeof(wmi_init_cmd_fixed_param) +
  11172. sizeof(wmi_resource_config) +
  11173. WMI_TLV_HDR_SIZE + (param->num_mem_chunks *
  11174. sizeof(wlan_host_memory_chunk)));
  11175. WMITLV_SET_HDR(&hw_mode->tlv_header,
  11176. WMITLV_TAG_STRUC_wmi_pdev_set_hw_mode_cmd_fixed_param,
  11177. (WMITLV_GET_STRUCT_TLVLEN
  11178. (wmi_pdev_set_hw_mode_cmd_fixed_param)));
  11179. hw_mode->hw_mode_index = param->hw_mode_id;
  11180. hw_mode->num_band_to_mac = param->num_band_to_mac;
  11181. buf_ptr = (uint8_t *) (hw_mode + 1);
  11182. band_to_mac = (wmi_pdev_band_to_mac *) (buf_ptr +
  11183. WMI_TLV_HDR_SIZE);
  11184. for (idx = 0; idx < param->num_band_to_mac; idx++) {
  11185. WMITLV_SET_HDR(&band_to_mac[idx].tlv_header,
  11186. WMITLV_TAG_STRUC_wmi_pdev_band_to_mac,
  11187. WMITLV_GET_STRUCT_TLVLEN
  11188. (wmi_pdev_band_to_mac));
  11189. band_to_mac[idx].pdev_id =
  11190. wmi_handle->ops->convert_pdev_id_host_to_target(
  11191. param->band_to_mac[idx].pdev_id);
  11192. band_to_mac[idx].start_freq =
  11193. param->band_to_mac[idx].start_freq;
  11194. band_to_mac[idx].end_freq =
  11195. param->band_to_mac[idx].end_freq;
  11196. }
  11197. *len += sizeof(wmi_pdev_set_hw_mode_cmd_fixed_param) +
  11198. (param->num_band_to_mac *
  11199. sizeof(wmi_pdev_band_to_mac)) +
  11200. WMI_TLV_HDR_SIZE;
  11201. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  11202. (param->num_band_to_mac *
  11203. sizeof(wmi_pdev_band_to_mac)));
  11204. }
  11205. return buf_ptr;
  11206. }
  11207. static inline void copy_fw_abi_version_tlv(wmi_unified_t wmi_handle,
  11208. wmi_init_cmd_fixed_param *cmd)
  11209. {
  11210. int num_whitelist;
  11211. wmi_abi_version my_vers;
  11212. num_whitelist = sizeof(version_whitelist) /
  11213. sizeof(wmi_whitelist_version_info);
  11214. my_vers.abi_version_0 = WMI_ABI_VERSION_0;
  11215. my_vers.abi_version_1 = WMI_ABI_VERSION_1;
  11216. my_vers.abi_version_ns_0 = WMI_ABI_VERSION_NS_0;
  11217. my_vers.abi_version_ns_1 = WMI_ABI_VERSION_NS_1;
  11218. my_vers.abi_version_ns_2 = WMI_ABI_VERSION_NS_2;
  11219. my_vers.abi_version_ns_3 = WMI_ABI_VERSION_NS_3;
  11220. wmi_cmp_and_set_abi_version(num_whitelist, version_whitelist,
  11221. &my_vers,
  11222. (struct _wmi_abi_version *)&wmi_handle->fw_abi_version,
  11223. &cmd->host_abi_vers);
  11224. qdf_print("%s: INIT_CMD version: %d, %d, 0x%x, 0x%x, 0x%x, 0x%x",
  11225. __func__,
  11226. WMI_VER_GET_MAJOR(cmd->host_abi_vers.abi_version_0),
  11227. WMI_VER_GET_MINOR(cmd->host_abi_vers.abi_version_0),
  11228. cmd->host_abi_vers.abi_version_ns_0,
  11229. cmd->host_abi_vers.abi_version_ns_1,
  11230. cmd->host_abi_vers.abi_version_ns_2,
  11231. cmd->host_abi_vers.abi_version_ns_3);
  11232. /* Save version sent from host -
  11233. * Will be used to check ready event
  11234. */
  11235. qdf_mem_copy(&wmi_handle->final_abi_vers, &cmd->host_abi_vers,
  11236. sizeof(wmi_abi_version));
  11237. }
  11238. static QDF_STATUS save_fw_version_cmd_tlv(wmi_unified_t wmi_handle, void *evt_buf)
  11239. {
  11240. WMI_SERVICE_READY_EVENTID_param_tlvs *param_buf;
  11241. wmi_service_ready_event_fixed_param *ev;
  11242. param_buf = (WMI_SERVICE_READY_EVENTID_param_tlvs *) evt_buf;
  11243. ev = (wmi_service_ready_event_fixed_param *) param_buf->fixed_param;
  11244. if (!ev)
  11245. return QDF_STATUS_E_FAILURE;
  11246. /*Save fw version from service ready message */
  11247. /*This will be used while sending INIT message */
  11248. qdf_mem_copy(&wmi_handle->fw_abi_version, &ev->fw_abi_vers,
  11249. sizeof(wmi_handle->fw_abi_version));
  11250. return QDF_STATUS_SUCCESS;
  11251. }
  11252. /**
  11253. * wmi_unified_save_fw_version_cmd() - save fw version
  11254. * @wmi_handle: pointer to wmi handle
  11255. * @res_cfg: resource config
  11256. * @num_mem_chunks: no of mem chunck
  11257. * @mem_chunk: pointer to mem chunck structure
  11258. *
  11259. * This function sends IE information to firmware
  11260. *
  11261. * Return: QDF_STATUS_SUCCESS for success otherwise failure
  11262. *
  11263. */
  11264. static QDF_STATUS check_and_update_fw_version_cmd_tlv(wmi_unified_t wmi_handle,
  11265. void *evt_buf)
  11266. {
  11267. WMI_READY_EVENTID_param_tlvs *param_buf = NULL;
  11268. wmi_ready_event_fixed_param *ev = NULL;
  11269. param_buf = (WMI_READY_EVENTID_param_tlvs *) evt_buf;
  11270. ev = param_buf->fixed_param;
  11271. if (!wmi_versions_are_compatible((struct _wmi_abi_version *)
  11272. &wmi_handle->final_abi_vers,
  11273. &ev->fw_abi_vers)) {
  11274. /*
  11275. * Error: Our host version and the given firmware version
  11276. * are incompatible.
  11277. **/
  11278. WMI_LOGD("%s: Error: Incompatible WMI version."
  11279. "Host: %d,%d,0x%x 0x%x 0x%x 0x%x, FW: %d,%d,0x%x 0x%x 0x%x 0x%x\n",
  11280. __func__,
  11281. WMI_VER_GET_MAJOR(wmi_handle->final_abi_vers.
  11282. abi_version_0),
  11283. WMI_VER_GET_MINOR(wmi_handle->final_abi_vers.
  11284. abi_version_0),
  11285. wmi_handle->final_abi_vers.abi_version_ns_0,
  11286. wmi_handle->final_abi_vers.abi_version_ns_1,
  11287. wmi_handle->final_abi_vers.abi_version_ns_2,
  11288. wmi_handle->final_abi_vers.abi_version_ns_3,
  11289. WMI_VER_GET_MAJOR(ev->fw_abi_vers.abi_version_0),
  11290. WMI_VER_GET_MINOR(ev->fw_abi_vers.abi_version_0),
  11291. ev->fw_abi_vers.abi_version_ns_0,
  11292. ev->fw_abi_vers.abi_version_ns_1,
  11293. ev->fw_abi_vers.abi_version_ns_2,
  11294. ev->fw_abi_vers.abi_version_ns_3);
  11295. return QDF_STATUS_E_FAILURE;
  11296. }
  11297. qdf_mem_copy(&wmi_handle->final_abi_vers, &ev->fw_abi_vers,
  11298. sizeof(wmi_abi_version));
  11299. qdf_mem_copy(&wmi_handle->fw_abi_version, &ev->fw_abi_vers,
  11300. sizeof(wmi_abi_version));
  11301. return QDF_STATUS_SUCCESS;
  11302. }
  11303. /**
  11304. * send_set_base_macaddr_indicate_cmd_tlv() - set base mac address in fw
  11305. * @wmi_handle: wmi handle
  11306. * @custom_addr: base mac address
  11307. *
  11308. * Return: QDF_STATUS_SUCCESS for success or error code
  11309. */
  11310. static QDF_STATUS send_set_base_macaddr_indicate_cmd_tlv(wmi_unified_t wmi_handle,
  11311. uint8_t *custom_addr)
  11312. {
  11313. wmi_pdev_set_base_macaddr_cmd_fixed_param *cmd;
  11314. wmi_buf_t buf;
  11315. int err;
  11316. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  11317. if (!buf) {
  11318. WMI_LOGE("Failed to allocate buffer to send base macaddr cmd");
  11319. return QDF_STATUS_E_NOMEM;
  11320. }
  11321. cmd = (wmi_pdev_set_base_macaddr_cmd_fixed_param *) wmi_buf_data(buf);
  11322. qdf_mem_zero(cmd, sizeof(*cmd));
  11323. WMITLV_SET_HDR(&cmd->tlv_header,
  11324. WMITLV_TAG_STRUC_wmi_pdev_set_base_macaddr_cmd_fixed_param,
  11325. WMITLV_GET_STRUCT_TLVLEN
  11326. (wmi_pdev_set_base_macaddr_cmd_fixed_param));
  11327. WMI_CHAR_ARRAY_TO_MAC_ADDR(custom_addr, &cmd->base_macaddr);
  11328. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  11329. WMI_HOST_PDEV_ID_SOC);
  11330. err = wmi_unified_cmd_send(wmi_handle, buf,
  11331. sizeof(*cmd),
  11332. WMI_PDEV_SET_BASE_MACADDR_CMDID);
  11333. if (err) {
  11334. WMI_LOGE("Failed to send set_base_macaddr cmd");
  11335. wmi_buf_free(buf);
  11336. return QDF_STATUS_E_FAILURE;
  11337. }
  11338. return 0;
  11339. }
  11340. /**
  11341. * send_log_supported_evt_cmd_tlv() - Enable/Disable FW diag/log events
  11342. * @handle: wmi handle
  11343. * @event: Event received from FW
  11344. * @len: Length of the event
  11345. *
  11346. * Enables the low frequency events and disables the high frequency
  11347. * events. Bit 17 indicates if the event if low/high frequency.
  11348. * 1 - high frequency, 0 - low frequency
  11349. *
  11350. * Return: 0 on successfully enabling/disabling the events
  11351. */
  11352. static QDF_STATUS send_log_supported_evt_cmd_tlv(wmi_unified_t wmi_handle,
  11353. uint8_t *event,
  11354. uint32_t len)
  11355. {
  11356. uint32_t num_of_diag_events_logs;
  11357. wmi_diag_event_log_config_fixed_param *cmd;
  11358. wmi_buf_t buf;
  11359. uint8_t *buf_ptr;
  11360. uint32_t *cmd_args, *evt_args;
  11361. uint32_t buf_len, i;
  11362. WMI_DIAG_EVENT_LOG_SUPPORTED_EVENTID_param_tlvs *param_buf;
  11363. wmi_diag_event_log_supported_event_fixed_params *wmi_event;
  11364. WMI_LOGI("Received WMI_DIAG_EVENT_LOG_SUPPORTED_EVENTID");
  11365. param_buf = (WMI_DIAG_EVENT_LOG_SUPPORTED_EVENTID_param_tlvs *) event;
  11366. if (!param_buf) {
  11367. WMI_LOGE("Invalid log supported event buffer");
  11368. return QDF_STATUS_E_INVAL;
  11369. }
  11370. wmi_event = param_buf->fixed_param;
  11371. num_of_diag_events_logs = wmi_event->num_of_diag_events_logs;
  11372. if (num_of_diag_events_logs >
  11373. param_buf->num_diag_events_logs_list) {
  11374. WMI_LOGE("message number of events %d is more than tlv hdr content %d",
  11375. num_of_diag_events_logs,
  11376. param_buf->num_diag_events_logs_list);
  11377. return QDF_STATUS_E_INVAL;
  11378. }
  11379. evt_args = param_buf->diag_events_logs_list;
  11380. if (!evt_args) {
  11381. WMI_LOGE("%s: Event list is empty, num_of_diag_events_logs=%d",
  11382. __func__, num_of_diag_events_logs);
  11383. return QDF_STATUS_E_INVAL;
  11384. }
  11385. WMI_LOGD("%s: num_of_diag_events_logs=%d",
  11386. __func__, num_of_diag_events_logs);
  11387. /* Free any previous allocation */
  11388. if (wmi_handle->events_logs_list)
  11389. qdf_mem_free(wmi_handle->events_logs_list);
  11390. if (num_of_diag_events_logs >
  11391. (WMI_SVC_MSG_MAX_SIZE / sizeof(uint32_t))) {
  11392. WMI_LOGE("%s: excess num of logs:%d", __func__,
  11393. num_of_diag_events_logs);
  11394. QDF_ASSERT(0);
  11395. return QDF_STATUS_E_INVAL;
  11396. }
  11397. /* Store the event list for run time enable/disable */
  11398. wmi_handle->events_logs_list = qdf_mem_malloc(num_of_diag_events_logs *
  11399. sizeof(uint32_t));
  11400. if (!wmi_handle->events_logs_list) {
  11401. WMI_LOGE("%s: event log list memory allocation failed",
  11402. __func__);
  11403. return QDF_STATUS_E_NOMEM;
  11404. }
  11405. wmi_handle->num_of_diag_events_logs = num_of_diag_events_logs;
  11406. /* Prepare the send buffer */
  11407. buf_len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  11408. (num_of_diag_events_logs * sizeof(uint32_t));
  11409. buf = wmi_buf_alloc(wmi_handle, buf_len);
  11410. if (!buf) {
  11411. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  11412. qdf_mem_free(wmi_handle->events_logs_list);
  11413. wmi_handle->events_logs_list = NULL;
  11414. return QDF_STATUS_E_NOMEM;
  11415. }
  11416. cmd = (wmi_diag_event_log_config_fixed_param *) wmi_buf_data(buf);
  11417. buf_ptr = (uint8_t *) cmd;
  11418. WMITLV_SET_HDR(&cmd->tlv_header,
  11419. WMITLV_TAG_STRUC_wmi_diag_event_log_config_fixed_param,
  11420. WMITLV_GET_STRUCT_TLVLEN(
  11421. wmi_diag_event_log_config_fixed_param));
  11422. cmd->num_of_diag_events_logs = num_of_diag_events_logs;
  11423. buf_ptr += sizeof(wmi_diag_event_log_config_fixed_param);
  11424. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  11425. (num_of_diag_events_logs * sizeof(uint32_t)));
  11426. cmd_args = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  11427. /* Populate the events */
  11428. for (i = 0; i < num_of_diag_events_logs; i++) {
  11429. /* Low freq (0) - Enable (1) the event
  11430. * High freq (1) - Disable (0) the event
  11431. */
  11432. WMI_DIAG_ID_ENABLED_DISABLED_SET(cmd_args[i],
  11433. !(WMI_DIAG_FREQUENCY_GET(evt_args[i])));
  11434. /* Set the event ID */
  11435. WMI_DIAG_ID_SET(cmd_args[i],
  11436. WMI_DIAG_ID_GET(evt_args[i]));
  11437. /* Set the type */
  11438. WMI_DIAG_TYPE_SET(cmd_args[i],
  11439. WMI_DIAG_TYPE_GET(evt_args[i]));
  11440. /* Storing the event/log list in WMI */
  11441. wmi_handle->events_logs_list[i] = evt_args[i];
  11442. }
  11443. if (wmi_unified_cmd_send(wmi_handle, buf, buf_len,
  11444. WMI_DIAG_EVENT_LOG_CONFIG_CMDID)) {
  11445. WMI_LOGE("%s: WMI_DIAG_EVENT_LOG_CONFIG_CMDID failed",
  11446. __func__);
  11447. wmi_buf_free(buf);
  11448. /* Not clearing events_logs_list, though wmi cmd failed.
  11449. * Host can still have this list
  11450. */
  11451. return QDF_STATUS_E_INVAL;
  11452. }
  11453. return 0;
  11454. }
  11455. /**
  11456. * send_enable_specific_fw_logs_cmd_tlv() - Start/Stop logging of diag log id
  11457. * @wmi_handle: wmi handle
  11458. * @start_log: Start logging related parameters
  11459. *
  11460. * Send the command to the FW based on which specific logging of diag
  11461. * event/log id can be started/stopped
  11462. *
  11463. * Return: None
  11464. */
  11465. static QDF_STATUS send_enable_specific_fw_logs_cmd_tlv(wmi_unified_t wmi_handle,
  11466. struct wmi_wifi_start_log *start_log)
  11467. {
  11468. wmi_diag_event_log_config_fixed_param *cmd;
  11469. wmi_buf_t buf;
  11470. uint8_t *buf_ptr;
  11471. uint32_t len, count, log_level, i;
  11472. uint32_t *cmd_args;
  11473. uint32_t total_len;
  11474. count = 0;
  11475. if (!wmi_handle->events_logs_list) {
  11476. WMI_LOGE("%s: Not received event/log list from FW, yet",
  11477. __func__);
  11478. return QDF_STATUS_E_NOMEM;
  11479. }
  11480. /* total_len stores the number of events where BITS 17 and 18 are set.
  11481. * i.e., events of high frequency (17) and for extended debugging (18)
  11482. */
  11483. total_len = 0;
  11484. for (i = 0; i < wmi_handle->num_of_diag_events_logs; i++) {
  11485. if ((WMI_DIAG_FREQUENCY_GET(wmi_handle->events_logs_list[i])) &&
  11486. (WMI_DIAG_EXT_FEATURE_GET(wmi_handle->events_logs_list[i])))
  11487. total_len++;
  11488. }
  11489. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  11490. (total_len * sizeof(uint32_t));
  11491. buf = wmi_buf_alloc(wmi_handle, len);
  11492. if (!buf) {
  11493. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  11494. return QDF_STATUS_E_NOMEM;
  11495. }
  11496. cmd = (wmi_diag_event_log_config_fixed_param *) wmi_buf_data(buf);
  11497. buf_ptr = (uint8_t *) cmd;
  11498. WMITLV_SET_HDR(&cmd->tlv_header,
  11499. WMITLV_TAG_STRUC_wmi_diag_event_log_config_fixed_param,
  11500. WMITLV_GET_STRUCT_TLVLEN(
  11501. wmi_diag_event_log_config_fixed_param));
  11502. cmd->num_of_diag_events_logs = total_len;
  11503. buf_ptr += sizeof(wmi_diag_event_log_config_fixed_param);
  11504. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  11505. (total_len * sizeof(uint32_t)));
  11506. cmd_args = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  11507. if (start_log->verbose_level >= WMI_LOG_LEVEL_ACTIVE)
  11508. log_level = 1;
  11509. else
  11510. log_level = 0;
  11511. WMI_LOGD("%s: Length:%d, Log_level:%d", __func__, total_len, log_level);
  11512. for (i = 0; i < wmi_handle->num_of_diag_events_logs; i++) {
  11513. uint32_t val = wmi_handle->events_logs_list[i];
  11514. if ((WMI_DIAG_FREQUENCY_GET(val)) &&
  11515. (WMI_DIAG_EXT_FEATURE_GET(val))) {
  11516. WMI_DIAG_ID_SET(cmd_args[count],
  11517. WMI_DIAG_ID_GET(val));
  11518. WMI_DIAG_TYPE_SET(cmd_args[count],
  11519. WMI_DIAG_TYPE_GET(val));
  11520. WMI_DIAG_ID_ENABLED_DISABLED_SET(cmd_args[count],
  11521. log_level);
  11522. WMI_LOGD("%s: Idx:%d, val:%x", __func__, i, val);
  11523. count++;
  11524. }
  11525. }
  11526. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  11527. WMI_DIAG_EVENT_LOG_CONFIG_CMDID)) {
  11528. WMI_LOGE("%s: WMI_DIAG_EVENT_LOG_CONFIG_CMDID failed",
  11529. __func__);
  11530. wmi_buf_free(buf);
  11531. return QDF_STATUS_E_INVAL;
  11532. }
  11533. return QDF_STATUS_SUCCESS;
  11534. }
  11535. /**
  11536. * send_flush_logs_to_fw_cmd_tlv() - Send log flush command to FW
  11537. * @wmi_handle: WMI handle
  11538. *
  11539. * This function is used to send the flush command to the FW,
  11540. * that will flush the fw logs that are residue in the FW
  11541. *
  11542. * Return: None
  11543. */
  11544. static QDF_STATUS send_flush_logs_to_fw_cmd_tlv(wmi_unified_t wmi_handle)
  11545. {
  11546. wmi_debug_mesg_flush_fixed_param *cmd;
  11547. wmi_buf_t buf;
  11548. int len = sizeof(*cmd);
  11549. QDF_STATUS ret;
  11550. buf = wmi_buf_alloc(wmi_handle, len);
  11551. if (!buf) {
  11552. WMI_LOGP("%s: wmi_buf_alloc failed", __func__);
  11553. return QDF_STATUS_E_NOMEM;
  11554. }
  11555. cmd = (wmi_debug_mesg_flush_fixed_param *) wmi_buf_data(buf);
  11556. WMITLV_SET_HDR(&cmd->tlv_header,
  11557. WMITLV_TAG_STRUC_wmi_debug_mesg_flush_fixed_param,
  11558. WMITLV_GET_STRUCT_TLVLEN(
  11559. wmi_debug_mesg_flush_fixed_param));
  11560. cmd->reserved0 = 0;
  11561. ret = wmi_unified_cmd_send(wmi_handle,
  11562. buf,
  11563. len,
  11564. WMI_DEBUG_MESG_FLUSH_CMDID);
  11565. if (QDF_IS_STATUS_ERROR(ret)) {
  11566. WMI_LOGE("Failed to send WMI_DEBUG_MESG_FLUSH_CMDID");
  11567. wmi_buf_free(buf);
  11568. return QDF_STATUS_E_INVAL;
  11569. }
  11570. WMI_LOGI("Sent WMI_DEBUG_MESG_FLUSH_CMDID to FW");
  11571. return ret;
  11572. }
  11573. /**
  11574. * send_pdev_set_pcl_cmd_tlv() - Send WMI_SOC_SET_PCL_CMDID to FW
  11575. * @wmi_handle: wmi handle
  11576. * @msg: PCL structure containing the PCL and the number of channels
  11577. *
  11578. * WMI_PDEV_SET_PCL_CMDID provides a Preferred Channel List (PCL) to the WLAN
  11579. * firmware. The DBS Manager is the consumer of this information in the WLAN
  11580. * firmware. The channel list will be used when a Virtual DEVice (VDEV) needs
  11581. * to migrate to a new channel without host driver involvement. An example of
  11582. * this behavior is Legacy Fast Roaming (LFR 3.0). Generally, the host will
  11583. * manage the channel selection without firmware involvement.
  11584. *
  11585. * WMI_PDEV_SET_PCL_CMDID will carry only the weight list and not the actual
  11586. * channel list. The weights corresponds to the channels sent in
  11587. * WMI_SCAN_CHAN_LIST_CMDID. The channels from PCL would be having a higher
  11588. * weightage compared to the non PCL channels.
  11589. *
  11590. * Return: Success if the cmd is sent successfully to the firmware
  11591. */
  11592. static QDF_STATUS send_pdev_set_pcl_cmd_tlv(wmi_unified_t wmi_handle,
  11593. struct wmi_pcl_chan_weights *msg)
  11594. {
  11595. wmi_pdev_set_pcl_cmd_fixed_param *cmd;
  11596. wmi_buf_t buf;
  11597. uint8_t *buf_ptr;
  11598. uint32_t *cmd_args, i, len;
  11599. uint32_t chan_len;
  11600. chan_len = msg->saved_num_chan;
  11601. len = sizeof(*cmd) +
  11602. WMI_TLV_HDR_SIZE + (chan_len * sizeof(uint32_t));
  11603. buf = wmi_buf_alloc(wmi_handle, len);
  11604. if (!buf) {
  11605. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  11606. return QDF_STATUS_E_NOMEM;
  11607. }
  11608. cmd = (wmi_pdev_set_pcl_cmd_fixed_param *) wmi_buf_data(buf);
  11609. buf_ptr = (uint8_t *) cmd;
  11610. WMITLV_SET_HDR(&cmd->tlv_header,
  11611. WMITLV_TAG_STRUC_wmi_pdev_set_pcl_cmd_fixed_param,
  11612. WMITLV_GET_STRUCT_TLVLEN(wmi_pdev_set_pcl_cmd_fixed_param));
  11613. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  11614. WMI_HOST_PDEV_ID_SOC);
  11615. cmd->num_chan = chan_len;
  11616. WMI_LOGD("%s: Total chan (PCL) len:%d", __func__, cmd->num_chan);
  11617. buf_ptr += sizeof(wmi_pdev_set_pcl_cmd_fixed_param);
  11618. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  11619. (chan_len * sizeof(uint32_t)));
  11620. cmd_args = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  11621. for (i = 0; i < chan_len ; i++) {
  11622. cmd_args[i] = msg->weighed_valid_list[i];
  11623. WMI_LOGD("%s: chan:%d weight:%d", __func__,
  11624. msg->saved_chan_list[i], cmd_args[i]);
  11625. }
  11626. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  11627. WMI_PDEV_SET_PCL_CMDID)) {
  11628. WMI_LOGE("%s: Failed to send WMI_PDEV_SET_PCL_CMDID", __func__);
  11629. wmi_buf_free(buf);
  11630. return QDF_STATUS_E_FAILURE;
  11631. }
  11632. return QDF_STATUS_SUCCESS;
  11633. }
  11634. /**
  11635. * send_pdev_set_hw_mode_cmd_tlv() - Send WMI_PDEV_SET_HW_MODE_CMDID to FW
  11636. * @wmi_handle: wmi handle
  11637. * @msg: Structure containing the following parameters
  11638. *
  11639. * - hw_mode_index: The HW_Mode field is a enumerated type that is selected
  11640. * from the HW_Mode table, which is returned in the WMI_SERVICE_READY_EVENTID.
  11641. *
  11642. * Provides notification to the WLAN firmware that host driver is requesting a
  11643. * HardWare (HW) Mode change. This command is needed to support iHelium in the
  11644. * configurations that include the Dual Band Simultaneous (DBS) feature.
  11645. *
  11646. * Return: Success if the cmd is sent successfully to the firmware
  11647. */
  11648. static QDF_STATUS send_pdev_set_hw_mode_cmd_tlv(wmi_unified_t wmi_handle,
  11649. uint32_t hw_mode_index)
  11650. {
  11651. wmi_pdev_set_hw_mode_cmd_fixed_param *cmd;
  11652. wmi_buf_t buf;
  11653. uint32_t len;
  11654. len = sizeof(*cmd);
  11655. buf = wmi_buf_alloc(wmi_handle, len);
  11656. if (!buf) {
  11657. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  11658. return QDF_STATUS_E_NOMEM;
  11659. }
  11660. cmd = (wmi_pdev_set_hw_mode_cmd_fixed_param *) wmi_buf_data(buf);
  11661. WMITLV_SET_HDR(&cmd->tlv_header,
  11662. WMITLV_TAG_STRUC_wmi_pdev_set_hw_mode_cmd_fixed_param,
  11663. WMITLV_GET_STRUCT_TLVLEN(wmi_pdev_set_hw_mode_cmd_fixed_param));
  11664. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  11665. WMI_HOST_PDEV_ID_SOC);
  11666. cmd->hw_mode_index = hw_mode_index;
  11667. WMI_LOGI("%s: HW mode index:%d", __func__, cmd->hw_mode_index);
  11668. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  11669. WMI_PDEV_SET_HW_MODE_CMDID)) {
  11670. WMI_LOGE("%s: Failed to send WMI_PDEV_SET_HW_MODE_CMDID",
  11671. __func__);
  11672. wmi_buf_free(buf);
  11673. return QDF_STATUS_E_FAILURE;
  11674. }
  11675. return QDF_STATUS_SUCCESS;
  11676. }
  11677. #ifdef WLAN_POLICY_MGR_ENABLE
  11678. /**
  11679. * send_pdev_set_dual_mac_config_cmd_tlv() - Set dual mac config to FW
  11680. * @wmi_handle: wmi handle
  11681. * @msg: Dual MAC config parameters
  11682. *
  11683. * Configures WLAN firmware with the dual MAC features
  11684. *
  11685. * Return: QDF_STATUS. 0 on success.
  11686. */
  11687. static
  11688. QDF_STATUS send_pdev_set_dual_mac_config_cmd_tlv(wmi_unified_t wmi_handle,
  11689. struct policy_mgr_dual_mac_config *msg)
  11690. {
  11691. wmi_pdev_set_mac_config_cmd_fixed_param *cmd;
  11692. wmi_buf_t buf;
  11693. uint32_t len;
  11694. len = sizeof(*cmd);
  11695. buf = wmi_buf_alloc(wmi_handle, len);
  11696. if (!buf) {
  11697. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  11698. return QDF_STATUS_E_FAILURE;
  11699. }
  11700. cmd = (wmi_pdev_set_mac_config_cmd_fixed_param *) wmi_buf_data(buf);
  11701. WMITLV_SET_HDR(&cmd->tlv_header,
  11702. WMITLV_TAG_STRUC_wmi_pdev_set_mac_config_cmd_fixed_param,
  11703. WMITLV_GET_STRUCT_TLVLEN(
  11704. wmi_pdev_set_mac_config_cmd_fixed_param));
  11705. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  11706. WMI_HOST_PDEV_ID_SOC);
  11707. cmd->concurrent_scan_config_bits = msg->scan_config;
  11708. cmd->fw_mode_config_bits = msg->fw_mode_config;
  11709. WMI_LOGI("%s: scan_config:%x fw_mode_config:%x",
  11710. __func__, msg->scan_config, msg->fw_mode_config);
  11711. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  11712. WMI_PDEV_SET_MAC_CONFIG_CMDID)) {
  11713. WMI_LOGE("%s: Failed to send WMI_PDEV_SET_MAC_CONFIG_CMDID",
  11714. __func__);
  11715. wmi_buf_free(buf);
  11716. }
  11717. return QDF_STATUS_SUCCESS;
  11718. }
  11719. #endif
  11720. #ifdef BIG_ENDIAN_HOST
  11721. /**
  11722. * fips_conv_data_be() - LE to BE conversion of FIPS ev data
  11723. * @param data_len - data length
  11724. * @param data - pointer to data
  11725. *
  11726. * Return: QDF_STATUS - success or error status
  11727. */
  11728. static QDF_STATUS fips_align_data_be(wmi_unified_t wmi_handle,
  11729. struct fips_params *param)
  11730. {
  11731. unsigned char *key_unaligned, *data_unaligned;
  11732. int c;
  11733. u_int8_t *key_aligned = NULL;
  11734. u_int8_t *data_aligned = NULL;
  11735. /* Assigning unaligned space to copy the key */
  11736. key_unaligned = qdf_mem_malloc(
  11737. sizeof(u_int8_t)*param->key_len + FIPS_ALIGN);
  11738. data_unaligned = qdf_mem_malloc(
  11739. sizeof(u_int8_t)*param->data_len + FIPS_ALIGN);
  11740. /* Checking if kmalloc is successful to allocate space */
  11741. if (key_unaligned == NULL)
  11742. return QDF_STATUS_SUCCESS;
  11743. /* Checking if space is aligned */
  11744. if (!FIPS_IS_ALIGNED(key_unaligned, FIPS_ALIGN)) {
  11745. /* align to 4 */
  11746. key_aligned =
  11747. (u_int8_t *)FIPS_ALIGNTO(key_unaligned,
  11748. FIPS_ALIGN);
  11749. } else {
  11750. key_aligned = (u_int8_t *)key_unaligned;
  11751. }
  11752. /* memset and copy content from key to key aligned */
  11753. OS_MEMSET(key_aligned, 0, param->key_len);
  11754. OS_MEMCPY(key_aligned, param->key, param->key_len);
  11755. /* print a hexdump for host debug */
  11756. print_hex_dump(KERN_DEBUG,
  11757. "\t Aligned and Copied Key:@@@@ ",
  11758. DUMP_PREFIX_NONE,
  11759. 16, 1, key_aligned, param->key_len, true);
  11760. /* Checking if kmalloc is successful to allocate space */
  11761. if (data_unaligned == NULL)
  11762. return QDF_STATUS_SUCCESS;
  11763. /* Checking of space is aligned */
  11764. if (!FIPS_IS_ALIGNED(data_unaligned, FIPS_ALIGN)) {
  11765. /* align to 4 */
  11766. data_aligned =
  11767. (u_int8_t *)FIPS_ALIGNTO(data_unaligned,
  11768. FIPS_ALIGN);
  11769. } else {
  11770. data_aligned = (u_int8_t *)data_unaligned;
  11771. }
  11772. /* memset and copy content from data to data aligned */
  11773. OS_MEMSET(data_aligned, 0, param->data_len);
  11774. OS_MEMCPY(data_aligned, param->data, param->data_len);
  11775. /* print a hexdump for host debug */
  11776. print_hex_dump(KERN_DEBUG,
  11777. "\t Properly Aligned and Copied Data:@@@@ ",
  11778. DUMP_PREFIX_NONE,
  11779. 16, 1, data_aligned, param->data_len, true);
  11780. /* converting to little Endian both key_aligned and
  11781. * data_aligned*/
  11782. for (c = 0; c < param->key_len/4; c++) {
  11783. *((u_int32_t *)key_aligned+c) =
  11784. qdf_cpu_to_le32(*((u_int32_t *)key_aligned+c));
  11785. }
  11786. for (c = 0; c < param->data_len/4; c++) {
  11787. *((u_int32_t *)data_aligned+c) =
  11788. qdf_cpu_to_le32(*((u_int32_t *)data_aligned+c));
  11789. }
  11790. /* update endian data to key and data vectors */
  11791. OS_MEMCPY(param->key, key_aligned, param->key_len);
  11792. OS_MEMCPY(param->data, data_aligned, param->data_len);
  11793. /* clean up allocated spaces */
  11794. qdf_mem_free(key_unaligned);
  11795. key_unaligned = NULL;
  11796. key_aligned = NULL;
  11797. qdf_mem_free(data_unaligned);
  11798. data_unaligned = NULL;
  11799. data_aligned = NULL;
  11800. return QDF_STATUS_SUCCESS;
  11801. }
  11802. #else
  11803. /**
  11804. * fips_align_data_be() - DUMMY for LE platform
  11805. *
  11806. * Return: QDF_STATUS - success
  11807. */
  11808. static QDF_STATUS fips_align_data_be(wmi_unified_t wmi_handle,
  11809. struct fips_params *param)
  11810. {
  11811. return QDF_STATUS_SUCCESS;
  11812. }
  11813. #endif
  11814. /**
  11815. * send_pdev_fips_cmd_tlv() - send pdev fips cmd to fw
  11816. * @wmi_handle: wmi handle
  11817. * @param: pointer to hold pdev fips param
  11818. *
  11819. * Return: 0 for success or error code
  11820. */
  11821. static QDF_STATUS
  11822. send_pdev_fips_cmd_tlv(wmi_unified_t wmi_handle,
  11823. struct fips_params *param)
  11824. {
  11825. wmi_pdev_fips_cmd_fixed_param *cmd;
  11826. wmi_buf_t buf;
  11827. uint8_t *buf_ptr;
  11828. uint32_t len = sizeof(wmi_pdev_fips_cmd_fixed_param);
  11829. QDF_STATUS retval = QDF_STATUS_SUCCESS;
  11830. /* Length TLV placeholder for array of bytes */
  11831. len += WMI_TLV_HDR_SIZE;
  11832. if (param->data_len)
  11833. len += (param->data_len*sizeof(uint8_t));
  11834. /*
  11835. * Data length must be multiples of 16 bytes - checked against 0xF -
  11836. * and must be less than WMI_SVC_MSG_SIZE - static size of
  11837. * wmi_pdev_fips_cmd structure
  11838. */
  11839. /* do sanity on the input */
  11840. if (!(((param->data_len & 0xF) == 0) &&
  11841. ((param->data_len > 0) &&
  11842. (param->data_len < (WMI_HOST_MAX_BUFFER_SIZE -
  11843. sizeof(wmi_pdev_fips_cmd_fixed_param)))))) {
  11844. return QDF_STATUS_E_INVAL;
  11845. }
  11846. buf = wmi_buf_alloc(wmi_handle, len);
  11847. if (!buf) {
  11848. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  11849. return QDF_STATUS_E_FAILURE;
  11850. }
  11851. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  11852. cmd = (wmi_pdev_fips_cmd_fixed_param *)buf_ptr;
  11853. WMITLV_SET_HDR(&cmd->tlv_header,
  11854. WMITLV_TAG_STRUC_wmi_pdev_fips_cmd_fixed_param,
  11855. WMITLV_GET_STRUCT_TLVLEN
  11856. (wmi_pdev_fips_cmd_fixed_param));
  11857. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  11858. param->pdev_id);
  11859. if (param->key != NULL && param->data != NULL) {
  11860. cmd->key_len = param->key_len;
  11861. cmd->data_len = param->data_len;
  11862. cmd->fips_cmd = !!(param->op);
  11863. if (fips_align_data_be(wmi_handle, param) != QDF_STATUS_SUCCESS)
  11864. return QDF_STATUS_E_FAILURE;
  11865. qdf_mem_copy(cmd->key, param->key, param->key_len);
  11866. if (param->mode == FIPS_ENGINE_AES_CTR ||
  11867. param->mode == FIPS_ENGINE_AES_MIC) {
  11868. cmd->mode = param->mode;
  11869. } else {
  11870. cmd->mode = FIPS_ENGINE_AES_CTR;
  11871. }
  11872. qdf_print(KERN_ERR "Key len = %d, Data len = %d\n",
  11873. cmd->key_len, cmd->data_len);
  11874. print_hex_dump(KERN_DEBUG, "Key: ", DUMP_PREFIX_NONE, 16, 1,
  11875. cmd->key, cmd->key_len, true);
  11876. buf_ptr += sizeof(*cmd);
  11877. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, param->data_len);
  11878. buf_ptr += WMI_TLV_HDR_SIZE;
  11879. if (param->data_len)
  11880. qdf_mem_copy(buf_ptr,
  11881. (uint8_t *) param->data, param->data_len);
  11882. print_hex_dump(KERN_DEBUG, "Plain text: ", DUMP_PREFIX_NONE,
  11883. 16, 1, buf_ptr, cmd->data_len, true);
  11884. buf_ptr += param->data_len;
  11885. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  11886. WMI_PDEV_FIPS_CMDID);
  11887. qdf_print("%s return value %d\n", __func__, retval);
  11888. } else {
  11889. qdf_print("\n%s:%d Key or Data is NULL\n", __func__, __LINE__);
  11890. wmi_buf_free(buf);
  11891. retval = -QDF_STATUS_E_BADMSG;
  11892. }
  11893. return retval;
  11894. }
  11895. #ifdef WLAN_POWER_MANAGEMENT_OFFLOAD
  11896. /**
  11897. * send_add_wow_wakeup_event_cmd_tlv() - Configures wow wakeup events.
  11898. * @wmi_handle: wmi handle
  11899. * @vdev_id: vdev id
  11900. * @bitmap: Event bitmap
  11901. * @enable: enable/disable
  11902. *
  11903. * Return: CDF status
  11904. */
  11905. static QDF_STATUS send_add_wow_wakeup_event_cmd_tlv(wmi_unified_t wmi_handle,
  11906. uint32_t vdev_id,
  11907. uint32_t *bitmap,
  11908. bool enable)
  11909. {
  11910. WMI_WOW_ADD_DEL_EVT_CMD_fixed_param *cmd;
  11911. uint16_t len;
  11912. wmi_buf_t buf;
  11913. int ret;
  11914. len = sizeof(WMI_WOW_ADD_DEL_EVT_CMD_fixed_param);
  11915. buf = wmi_buf_alloc(wmi_handle, len);
  11916. if (!buf) {
  11917. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  11918. return QDF_STATUS_E_NOMEM;
  11919. }
  11920. cmd = (WMI_WOW_ADD_DEL_EVT_CMD_fixed_param *) wmi_buf_data(buf);
  11921. WMITLV_SET_HDR(&cmd->tlv_header,
  11922. WMITLV_TAG_STRUC_WMI_WOW_ADD_DEL_EVT_CMD_fixed_param,
  11923. WMITLV_GET_STRUCT_TLVLEN
  11924. (WMI_WOW_ADD_DEL_EVT_CMD_fixed_param));
  11925. cmd->vdev_id = vdev_id;
  11926. cmd->is_add = enable;
  11927. qdf_mem_copy(&(cmd->event_bitmaps[0]), bitmap, sizeof(uint32_t) *
  11928. WMI_WOW_MAX_EVENT_BM_LEN);
  11929. WMI_LOGD("Wakeup pattern 0x%x%x%x%x %s in fw", cmd->event_bitmaps[0],
  11930. cmd->event_bitmaps[1], cmd->event_bitmaps[2],
  11931. cmd->event_bitmaps[3], enable ? "enabled" : "disabled");
  11932. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  11933. WMI_WOW_ENABLE_DISABLE_WAKE_EVENT_CMDID);
  11934. if (ret) {
  11935. WMI_LOGE("Failed to config wow wakeup event");
  11936. wmi_buf_free(buf);
  11937. return QDF_STATUS_E_FAILURE;
  11938. }
  11939. return QDF_STATUS_SUCCESS;
  11940. }
  11941. /**
  11942. * send_wow_patterns_to_fw_cmd_tlv() - Sends WOW patterns to FW.
  11943. * @wmi_handle: wmi handle
  11944. * @vdev_id: vdev id
  11945. * @ptrn_id: pattern id
  11946. * @ptrn: pattern
  11947. * @ptrn_len: pattern length
  11948. * @ptrn_offset: pattern offset
  11949. * @mask: mask
  11950. * @mask_len: mask length
  11951. * @user: true for user configured pattern and false for default pattern
  11952. * @default_patterns: default patterns
  11953. *
  11954. * Return: CDF status
  11955. */
  11956. static QDF_STATUS send_wow_patterns_to_fw_cmd_tlv(wmi_unified_t wmi_handle,
  11957. uint8_t vdev_id, uint8_t ptrn_id,
  11958. const uint8_t *ptrn, uint8_t ptrn_len,
  11959. uint8_t ptrn_offset, const uint8_t *mask,
  11960. uint8_t mask_len, bool user,
  11961. uint8_t default_patterns)
  11962. {
  11963. WMI_WOW_ADD_PATTERN_CMD_fixed_param *cmd;
  11964. WOW_BITMAP_PATTERN_T *bitmap_pattern;
  11965. wmi_buf_t buf;
  11966. uint8_t *buf_ptr;
  11967. int32_t len;
  11968. int ret;
  11969. len = sizeof(WMI_WOW_ADD_PATTERN_CMD_fixed_param) +
  11970. WMI_TLV_HDR_SIZE +
  11971. 1 * sizeof(WOW_BITMAP_PATTERN_T) +
  11972. WMI_TLV_HDR_SIZE +
  11973. 0 * sizeof(WOW_IPV4_SYNC_PATTERN_T) +
  11974. WMI_TLV_HDR_SIZE +
  11975. 0 * sizeof(WOW_IPV6_SYNC_PATTERN_T) +
  11976. WMI_TLV_HDR_SIZE +
  11977. 0 * sizeof(WOW_MAGIC_PATTERN_CMD) +
  11978. WMI_TLV_HDR_SIZE +
  11979. 0 * sizeof(uint32_t) + WMI_TLV_HDR_SIZE + 1 * sizeof(uint32_t);
  11980. buf = wmi_buf_alloc(wmi_handle, len);
  11981. if (!buf) {
  11982. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  11983. return QDF_STATUS_E_NOMEM;
  11984. }
  11985. cmd = (WMI_WOW_ADD_PATTERN_CMD_fixed_param *) wmi_buf_data(buf);
  11986. buf_ptr = (uint8_t *) cmd;
  11987. WMITLV_SET_HDR(&cmd->tlv_header,
  11988. WMITLV_TAG_STRUC_WMI_WOW_ADD_PATTERN_CMD_fixed_param,
  11989. WMITLV_GET_STRUCT_TLVLEN
  11990. (WMI_WOW_ADD_PATTERN_CMD_fixed_param));
  11991. cmd->vdev_id = vdev_id;
  11992. cmd->pattern_id = ptrn_id;
  11993. cmd->pattern_type = WOW_BITMAP_PATTERN;
  11994. buf_ptr += sizeof(WMI_WOW_ADD_PATTERN_CMD_fixed_param);
  11995. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  11996. sizeof(WOW_BITMAP_PATTERN_T));
  11997. buf_ptr += WMI_TLV_HDR_SIZE;
  11998. bitmap_pattern = (WOW_BITMAP_PATTERN_T *) buf_ptr;
  11999. WMITLV_SET_HDR(&bitmap_pattern->tlv_header,
  12000. WMITLV_TAG_STRUC_WOW_BITMAP_PATTERN_T,
  12001. WMITLV_GET_STRUCT_TLVLEN(WOW_BITMAP_PATTERN_T));
  12002. qdf_mem_copy(&bitmap_pattern->patternbuf[0], ptrn, ptrn_len);
  12003. qdf_mem_copy(&bitmap_pattern->bitmaskbuf[0], mask, mask_len);
  12004. bitmap_pattern->pattern_offset = ptrn_offset;
  12005. bitmap_pattern->pattern_len = ptrn_len;
  12006. if (bitmap_pattern->pattern_len > WOW_DEFAULT_BITMAP_PATTERN_SIZE)
  12007. bitmap_pattern->pattern_len = WOW_DEFAULT_BITMAP_PATTERN_SIZE;
  12008. if (bitmap_pattern->pattern_len > WOW_DEFAULT_BITMASK_SIZE)
  12009. bitmap_pattern->pattern_len = WOW_DEFAULT_BITMASK_SIZE;
  12010. bitmap_pattern->bitmask_len = bitmap_pattern->pattern_len;
  12011. bitmap_pattern->pattern_id = ptrn_id;
  12012. WMI_LOGI("vdev: %d, ptrn id: %d, ptrn len: %d, ptrn offset: %d user %d",
  12013. cmd->vdev_id, cmd->pattern_id, bitmap_pattern->pattern_len,
  12014. bitmap_pattern->pattern_offset, user);
  12015. WMI_LOGI("Pattern : ");
  12016. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_INFO,
  12017. &bitmap_pattern->patternbuf[0], bitmap_pattern->pattern_len);
  12018. WMI_LOGI("Mask : ");
  12019. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_INFO,
  12020. &bitmap_pattern->bitmaskbuf[0], bitmap_pattern->pattern_len);
  12021. buf_ptr += sizeof(WOW_BITMAP_PATTERN_T);
  12022. /* Fill TLV for WMITLV_TAG_STRUC_WOW_IPV4_SYNC_PATTERN_T but no data. */
  12023. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12024. buf_ptr += WMI_TLV_HDR_SIZE;
  12025. /* Fill TLV for WMITLV_TAG_STRUC_WOW_IPV6_SYNC_PATTERN_T but no data. */
  12026. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12027. buf_ptr += WMI_TLV_HDR_SIZE;
  12028. /* Fill TLV for WMITLV_TAG_STRUC_WOW_MAGIC_PATTERN_CMD but no data. */
  12029. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12030. buf_ptr += WMI_TLV_HDR_SIZE;
  12031. /* Fill TLV for pattern_info_timeout but no data. */
  12032. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, 0);
  12033. buf_ptr += WMI_TLV_HDR_SIZE;
  12034. /* Fill TLV for ratelimit_interval with dummy data as this fix elem */
  12035. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, 1 * sizeof(uint32_t));
  12036. buf_ptr += WMI_TLV_HDR_SIZE;
  12037. *(uint32_t *) buf_ptr = 0;
  12038. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  12039. WMI_WOW_ADD_WAKE_PATTERN_CMDID);
  12040. if (ret) {
  12041. WMI_LOGE("%s: Failed to send wow ptrn to fw", __func__);
  12042. wmi_buf_free(buf);
  12043. return QDF_STATUS_E_FAILURE;
  12044. }
  12045. return QDF_STATUS_SUCCESS;
  12046. }
  12047. /**
  12048. * fill_arp_offload_params_tlv() - Fill ARP offload data
  12049. * @wmi_handle: wmi handle
  12050. * @offload_req: offload request
  12051. * @buf_ptr: buffer pointer
  12052. *
  12053. * To fill ARP offload data to firmware
  12054. * when target goes to wow mode.
  12055. *
  12056. * Return: None
  12057. */
  12058. static void fill_arp_offload_params_tlv(wmi_unified_t wmi_handle,
  12059. struct pmo_arp_offload_params *offload_req, uint8_t **buf_ptr)
  12060. {
  12061. int i;
  12062. WMI_ARP_OFFLOAD_TUPLE *arp_tuple;
  12063. bool enable_or_disable = offload_req->enable;
  12064. WMITLV_SET_HDR(*buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  12065. (WMI_MAX_ARP_OFFLOADS*sizeof(WMI_ARP_OFFLOAD_TUPLE)));
  12066. *buf_ptr += WMI_TLV_HDR_SIZE;
  12067. for (i = 0; i < WMI_MAX_ARP_OFFLOADS; i++) {
  12068. arp_tuple = (WMI_ARP_OFFLOAD_TUPLE *)*buf_ptr;
  12069. WMITLV_SET_HDR(&arp_tuple->tlv_header,
  12070. WMITLV_TAG_STRUC_WMI_ARP_OFFLOAD_TUPLE,
  12071. WMITLV_GET_STRUCT_TLVLEN(WMI_ARP_OFFLOAD_TUPLE));
  12072. /* Fill data for ARP and NS in the first tupple for LA */
  12073. if ((enable_or_disable & PMO_OFFLOAD_ENABLE) && (i == 0)) {
  12074. /* Copy the target ip addr and flags */
  12075. arp_tuple->flags = WMI_ARPOFF_FLAGS_VALID;
  12076. qdf_mem_copy(&arp_tuple->target_ipaddr,
  12077. offload_req->host_ipv4_addr,
  12078. WMI_IPV4_ADDR_LEN);
  12079. WMI_LOGD("ARPOffload IP4 address: %pI4",
  12080. offload_req->host_ipv4_addr);
  12081. }
  12082. *buf_ptr += sizeof(WMI_ARP_OFFLOAD_TUPLE);
  12083. }
  12084. }
  12085. #ifdef WLAN_NS_OFFLOAD
  12086. /**
  12087. * fill_ns_offload_params_tlv() - Fill NS offload data
  12088. * @wmi|_handle: wmi handle
  12089. * @offload_req: offload request
  12090. * @buf_ptr: buffer pointer
  12091. *
  12092. * To fill NS offload data to firmware
  12093. * when target goes to wow mode.
  12094. *
  12095. * Return: None
  12096. */
  12097. static void fill_ns_offload_params_tlv(wmi_unified_t wmi_handle,
  12098. struct pmo_ns_offload_params *ns_req, uint8_t **buf_ptr)
  12099. {
  12100. int i;
  12101. WMI_NS_OFFLOAD_TUPLE *ns_tuple;
  12102. WMITLV_SET_HDR(*buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  12103. (WMI_MAX_NS_OFFLOADS * sizeof(WMI_NS_OFFLOAD_TUPLE)));
  12104. *buf_ptr += WMI_TLV_HDR_SIZE;
  12105. for (i = 0; i < WMI_MAX_NS_OFFLOADS; i++) {
  12106. ns_tuple = (WMI_NS_OFFLOAD_TUPLE *)*buf_ptr;
  12107. WMITLV_SET_HDR(&ns_tuple->tlv_header,
  12108. WMITLV_TAG_STRUC_WMI_NS_OFFLOAD_TUPLE,
  12109. (sizeof(WMI_NS_OFFLOAD_TUPLE) - WMI_TLV_HDR_SIZE));
  12110. /*
  12111. * Fill data only for NS offload in the first ARP tuple for LA
  12112. */
  12113. if ((ns_req->enable & PMO_OFFLOAD_ENABLE)) {
  12114. ns_tuple->flags |= WMI_NSOFF_FLAGS_VALID;
  12115. /* Copy the target/solicitation/remote ip addr */
  12116. if (ns_req->target_ipv6_addr_valid[i])
  12117. qdf_mem_copy(&ns_tuple->target_ipaddr[0],
  12118. &ns_req->target_ipv6_addr[i],
  12119. sizeof(WMI_IPV6_ADDR));
  12120. qdf_mem_copy(&ns_tuple->solicitation_ipaddr,
  12121. &ns_req->self_ipv6_addr[i],
  12122. sizeof(WMI_IPV6_ADDR));
  12123. if (ns_req->target_ipv6_addr_ac_type[i]) {
  12124. ns_tuple->flags |=
  12125. WMI_NSOFF_FLAGS_IS_IPV6_ANYCAST;
  12126. }
  12127. WMI_LOGD("Index %d NS solicitedIp %pI6, targetIp %pI6",
  12128. i, &ns_req->self_ipv6_addr[i],
  12129. &ns_req->target_ipv6_addr[i]);
  12130. /* target MAC is optional, check if it is valid,
  12131. * if this is not valid, the target will use the known
  12132. * local MAC address rather than the tuple
  12133. */
  12134. WMI_CHAR_ARRAY_TO_MAC_ADDR(
  12135. ns_req->self_macaddr.bytes,
  12136. &ns_tuple->target_mac);
  12137. if ((ns_tuple->target_mac.mac_addr31to0 != 0) ||
  12138. (ns_tuple->target_mac.mac_addr47to32 != 0)) {
  12139. ns_tuple->flags |= WMI_NSOFF_FLAGS_MAC_VALID;
  12140. }
  12141. }
  12142. *buf_ptr += sizeof(WMI_NS_OFFLOAD_TUPLE);
  12143. }
  12144. }
  12145. /**
  12146. * fill_nsoffload_ext_tlv() - Fill NS offload ext data
  12147. * @wmi: wmi handle
  12148. * @offload_req: offload request
  12149. * @buf_ptr: buffer pointer
  12150. *
  12151. * To fill extended NS offload extended data to firmware
  12152. * when target goes to wow mode.
  12153. *
  12154. * Return: None
  12155. */
  12156. static void fill_nsoffload_ext_tlv(wmi_unified_t wmi_handle,
  12157. struct pmo_ns_offload_params *ns_req, uint8_t **buf_ptr)
  12158. {
  12159. int i;
  12160. WMI_NS_OFFLOAD_TUPLE *ns_tuple;
  12161. uint32_t count, num_ns_ext_tuples;
  12162. count = ns_req->num_ns_offload_count;
  12163. num_ns_ext_tuples = ns_req->num_ns_offload_count -
  12164. WMI_MAX_NS_OFFLOADS;
  12165. /* Populate extended NS offload tuples */
  12166. WMITLV_SET_HDR(*buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  12167. (num_ns_ext_tuples * sizeof(WMI_NS_OFFLOAD_TUPLE)));
  12168. *buf_ptr += WMI_TLV_HDR_SIZE;
  12169. for (i = WMI_MAX_NS_OFFLOADS; i < count; i++) {
  12170. ns_tuple = (WMI_NS_OFFLOAD_TUPLE *)*buf_ptr;
  12171. WMITLV_SET_HDR(&ns_tuple->tlv_header,
  12172. WMITLV_TAG_STRUC_WMI_NS_OFFLOAD_TUPLE,
  12173. (sizeof(WMI_NS_OFFLOAD_TUPLE)-WMI_TLV_HDR_SIZE));
  12174. /*
  12175. * Fill data only for NS offload in the first ARP tuple for LA
  12176. */
  12177. if ((ns_req->enable & PMO_OFFLOAD_ENABLE)) {
  12178. ns_tuple->flags |= WMI_NSOFF_FLAGS_VALID;
  12179. /* Copy the target/solicitation/remote ip addr */
  12180. if (ns_req->target_ipv6_addr_valid[i])
  12181. qdf_mem_copy(&ns_tuple->target_ipaddr[0],
  12182. &ns_req->target_ipv6_addr[i],
  12183. sizeof(WMI_IPV6_ADDR));
  12184. qdf_mem_copy(&ns_tuple->solicitation_ipaddr,
  12185. &ns_req->self_ipv6_addr[i],
  12186. sizeof(WMI_IPV6_ADDR));
  12187. if (ns_req->target_ipv6_addr_ac_type[i]) {
  12188. ns_tuple->flags |=
  12189. WMI_NSOFF_FLAGS_IS_IPV6_ANYCAST;
  12190. }
  12191. WMI_LOGD("Index %d NS solicitedIp %pI6, targetIp %pI6",
  12192. i, &ns_req->self_ipv6_addr[i],
  12193. &ns_req->target_ipv6_addr[i]);
  12194. /* target MAC is optional, check if it is valid,
  12195. * if this is not valid, the target will use the
  12196. * known local MAC address rather than the tuple
  12197. */
  12198. WMI_CHAR_ARRAY_TO_MAC_ADDR(
  12199. ns_req->self_macaddr.bytes,
  12200. &ns_tuple->target_mac);
  12201. if ((ns_tuple->target_mac.mac_addr31to0 != 0) ||
  12202. (ns_tuple->target_mac.mac_addr47to32 != 0)) {
  12203. ns_tuple->flags |= WMI_NSOFF_FLAGS_MAC_VALID;
  12204. }
  12205. }
  12206. *buf_ptr += sizeof(WMI_NS_OFFLOAD_TUPLE);
  12207. }
  12208. }
  12209. #else
  12210. static void fill_ns_offload_params_tlv(wmi_unified_t wmi_handle,
  12211. struct pmo_ns_offload_params *ns_req, uint8_t **buf_ptr)
  12212. {
  12213. }
  12214. static void fill_nsoffload_ext_tlv(wmi_unified_t wmi_handle,
  12215. struct pmo_ns_offload_params *ns_req, uint8_t **buf_ptr)
  12216. {
  12217. }
  12218. #endif
  12219. /**
  12220. * send_enable_arp_ns_offload_cmd_tlv() - enable ARP NS offload
  12221. * @wma: wmi handle
  12222. * @arp_offload_req: arp offload request
  12223. * @ns_offload_req: ns offload request
  12224. * @arp_only: flag
  12225. *
  12226. * To configure ARP NS off load data to firmware
  12227. * when target goes to wow mode.
  12228. *
  12229. * Return: QDF Status
  12230. */
  12231. static QDF_STATUS send_enable_arp_ns_offload_cmd_tlv(wmi_unified_t wmi_handle,
  12232. struct pmo_arp_offload_params *arp_offload_req,
  12233. struct pmo_ns_offload_params *ns_offload_req,
  12234. uint8_t vdev_id)
  12235. {
  12236. int32_t res;
  12237. WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param *cmd;
  12238. uint8_t *buf_ptr;
  12239. wmi_buf_t buf;
  12240. int32_t len;
  12241. uint32_t count = 0, num_ns_ext_tuples = 0;
  12242. count = ns_offload_req->num_ns_offload_count;
  12243. /*
  12244. * TLV place holder size for array of NS tuples
  12245. * TLV place holder size for array of ARP tuples
  12246. */
  12247. len = sizeof(WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param) +
  12248. WMI_TLV_HDR_SIZE +
  12249. WMI_MAX_NS_OFFLOADS * sizeof(WMI_NS_OFFLOAD_TUPLE) +
  12250. WMI_TLV_HDR_SIZE +
  12251. WMI_MAX_ARP_OFFLOADS * sizeof(WMI_ARP_OFFLOAD_TUPLE);
  12252. /*
  12253. * If there are more than WMI_MAX_NS_OFFLOADS addresses then allocate
  12254. * extra length for extended NS offload tuples which follows ARP offload
  12255. * tuples. Host needs to fill this structure in following format:
  12256. * 2 NS ofload tuples
  12257. * 2 ARP offload tuples
  12258. * N numbers of extended NS offload tuples if HDD has given more than
  12259. * 2 NS offload addresses
  12260. */
  12261. if (count > WMI_MAX_NS_OFFLOADS) {
  12262. num_ns_ext_tuples = count - WMI_MAX_NS_OFFLOADS;
  12263. len += WMI_TLV_HDR_SIZE + num_ns_ext_tuples
  12264. * sizeof(WMI_NS_OFFLOAD_TUPLE);
  12265. }
  12266. buf = wmi_buf_alloc(wmi_handle, len);
  12267. if (!buf) {
  12268. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  12269. return QDF_STATUS_E_NOMEM;
  12270. }
  12271. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12272. cmd = (WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param *) buf_ptr;
  12273. WMITLV_SET_HDR(&cmd->tlv_header,
  12274. WMITLV_TAG_STRUC_WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param,
  12275. WMITLV_GET_STRUCT_TLVLEN
  12276. (WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param));
  12277. cmd->flags = 0;
  12278. cmd->vdev_id = vdev_id;
  12279. cmd->num_ns_ext_tuples = num_ns_ext_tuples;
  12280. WMI_LOGD("ARP NS Offload vdev_id: %d", cmd->vdev_id);
  12281. buf_ptr += sizeof(WMI_SET_ARP_NS_OFFLOAD_CMD_fixed_param);
  12282. fill_ns_offload_params_tlv(wmi_handle, ns_offload_req, &buf_ptr);
  12283. fill_arp_offload_params_tlv(wmi_handle, arp_offload_req, &buf_ptr);
  12284. if (num_ns_ext_tuples)
  12285. fill_nsoffload_ext_tlv(wmi_handle, ns_offload_req, &buf_ptr);
  12286. res = wmi_unified_cmd_send(wmi_handle, buf, len,
  12287. WMI_SET_ARP_NS_OFFLOAD_CMDID);
  12288. if (res) {
  12289. WMI_LOGE("Failed to enable ARP NDP/NSffload");
  12290. wmi_buf_free(buf);
  12291. return QDF_STATUS_E_FAILURE;
  12292. }
  12293. return QDF_STATUS_SUCCESS;
  12294. }
  12295. /**
  12296. * send_enable_enhance_multicast_offload_tlv() - send enhance multicast offload
  12297. * @wmi_handle: wmi handle
  12298. * @vdev_id: vdev id
  12299. * @action: true for enable else false
  12300. *
  12301. * To enable enhance multicast offload to firmware
  12302. * when target goes to wow mode.
  12303. *
  12304. * Return: QDF Status
  12305. */
  12306. static
  12307. QDF_STATUS send_enable_enhance_multicast_offload_tlv(
  12308. wmi_unified_t wmi_handle,
  12309. uint8_t vdev_id, bool action)
  12310. {
  12311. QDF_STATUS status;
  12312. wmi_buf_t buf;
  12313. wmi_config_enhanced_mcast_filter_cmd_fixed_param *cmd;
  12314. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  12315. if (!buf) {
  12316. WMI_LOGE("Failed to allocate buffer to send set key cmd");
  12317. return QDF_STATUS_E_NOMEM;
  12318. }
  12319. cmd = (wmi_config_enhanced_mcast_filter_cmd_fixed_param *)
  12320. wmi_buf_data(buf);
  12321. WMITLV_SET_HDR(&cmd->tlv_header,
  12322. WMITLV_TAG_STRUC_wmi_config_enhanced_mcast_filter_fixed_param,
  12323. WMITLV_GET_STRUCT_TLVLEN(
  12324. wmi_config_enhanced_mcast_filter_cmd_fixed_param));
  12325. cmd->vdev_id = vdev_id;
  12326. cmd->enable = ((action == 0) ? ENHANCED_MCAST_FILTER_DISABLED :
  12327. ENHANCED_MCAST_FILTER_ENABLED);
  12328. WMI_LOGD("%s: config enhance multicast offload action %d for vdev %d",
  12329. __func__, action, vdev_id);
  12330. status = wmi_unified_cmd_send(wmi_handle, buf,
  12331. sizeof(*cmd), WMI_CONFIG_ENHANCED_MCAST_FILTER_CMDID);
  12332. if (status != QDF_STATUS_SUCCESS) {
  12333. qdf_nbuf_free(buf);
  12334. WMI_LOGE("%s:Failed to send ENHANCED_MCAST_FILTER_CMDID",
  12335. __func__);
  12336. }
  12337. return status;
  12338. }
  12339. /**
  12340. * extract_gtk_rsp_event_tlv() - extract gtk rsp params from event
  12341. * @wmi_handle: wmi handle
  12342. * @param evt_buf: pointer to event buffer
  12343. * @param hdr: Pointer to hold header
  12344. * @param bufp: Pointer to hold pointer to rx param buffer
  12345. *
  12346. * Return: QDF_STATUS_SUCCESS for success or error code
  12347. */
  12348. static QDF_STATUS extract_gtk_rsp_event_tlv(wmi_unified_t wmi_handle,
  12349. void *evt_buf, struct pmo_gtk_rsp_params *gtk_rsp_param, uint32_t len)
  12350. {
  12351. WMI_GTK_OFFLOAD_STATUS_EVENT_fixed_param *fixed_param;
  12352. WMI_GTK_OFFLOAD_STATUS_EVENTID_param_tlvs *param_buf;
  12353. param_buf = (WMI_GTK_OFFLOAD_STATUS_EVENTID_param_tlvs *)evt_buf;
  12354. if (!param_buf) {
  12355. WMI_LOGE("gtk param_buf is NULL");
  12356. return QDF_STATUS_E_INVAL;
  12357. }
  12358. if (len < sizeof(WMI_GTK_OFFLOAD_STATUS_EVENT_fixed_param)) {
  12359. WMI_LOGE("Invalid length for GTK status");
  12360. return QDF_STATUS_E_INVAL;
  12361. }
  12362. fixed_param = (WMI_GTK_OFFLOAD_STATUS_EVENT_fixed_param *)
  12363. param_buf->fixed_param;
  12364. gtk_rsp_param->vdev_id = fixed_param->vdev_id;
  12365. gtk_rsp_param->status_flag = QDF_STATUS_SUCCESS;
  12366. gtk_rsp_param->refresh_cnt = fixed_param->refresh_cnt;
  12367. qdf_mem_copy(&gtk_rsp_param->replay_counter,
  12368. &fixed_param->replay_counter,
  12369. GTK_REPLAY_COUNTER_BYTES);
  12370. return QDF_STATUS_SUCCESS;
  12371. }
  12372. #ifdef FEATURE_WLAN_RA_FILTERING
  12373. /**
  12374. * send_wow_sta_ra_filter_cmd_tlv() - set RA filter pattern in fw
  12375. * @wmi_handle: wmi handle
  12376. * @vdev_id: vdev id
  12377. *
  12378. * Return: CDF status
  12379. */
  12380. static QDF_STATUS send_wow_sta_ra_filter_cmd_tlv(wmi_unified_t wmi_handle,
  12381. uint8_t vdev_id, uint8_t default_pattern,
  12382. uint16_t rate_limit_interval)
  12383. {
  12384. WMI_WOW_ADD_PATTERN_CMD_fixed_param *cmd;
  12385. wmi_buf_t buf;
  12386. uint8_t *buf_ptr;
  12387. int32_t len;
  12388. int ret;
  12389. len = sizeof(WMI_WOW_ADD_PATTERN_CMD_fixed_param) +
  12390. WMI_TLV_HDR_SIZE +
  12391. 0 * sizeof(WOW_BITMAP_PATTERN_T) +
  12392. WMI_TLV_HDR_SIZE +
  12393. 0 * sizeof(WOW_IPV4_SYNC_PATTERN_T) +
  12394. WMI_TLV_HDR_SIZE +
  12395. 0 * sizeof(WOW_IPV6_SYNC_PATTERN_T) +
  12396. WMI_TLV_HDR_SIZE +
  12397. 0 * sizeof(WOW_MAGIC_PATTERN_CMD) +
  12398. WMI_TLV_HDR_SIZE +
  12399. 0 * sizeof(uint32_t) + WMI_TLV_HDR_SIZE + 1 * sizeof(uint32_t);
  12400. buf = wmi_buf_alloc(wmi_handle, len);
  12401. if (!buf) {
  12402. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  12403. return QDF_STATUS_E_NOMEM;
  12404. }
  12405. cmd = (WMI_WOW_ADD_PATTERN_CMD_fixed_param *) wmi_buf_data(buf);
  12406. buf_ptr = (uint8_t *) cmd;
  12407. WMITLV_SET_HDR(&cmd->tlv_header,
  12408. WMITLV_TAG_STRUC_WMI_WOW_ADD_PATTERN_CMD_fixed_param,
  12409. WMITLV_GET_STRUCT_TLVLEN
  12410. (WMI_WOW_ADD_PATTERN_CMD_fixed_param));
  12411. cmd->vdev_id = vdev_id;
  12412. cmd->pattern_id = default_pattern,
  12413. cmd->pattern_type = WOW_IPV6_RA_PATTERN;
  12414. buf_ptr += sizeof(WMI_WOW_ADD_PATTERN_CMD_fixed_param);
  12415. /* Fill TLV for WMITLV_TAG_STRUC_WOW_BITMAP_PATTERN_T but no data. */
  12416. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12417. buf_ptr += WMI_TLV_HDR_SIZE;
  12418. /* Fill TLV for WMITLV_TAG_STRUC_WOW_IPV4_SYNC_PATTERN_T but no data. */
  12419. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12420. buf_ptr += WMI_TLV_HDR_SIZE;
  12421. /* Fill TLV for WMITLV_TAG_STRUC_WOW_IPV6_SYNC_PATTERN_T but no data. */
  12422. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12423. buf_ptr += WMI_TLV_HDR_SIZE;
  12424. /* Fill TLV for WMITLV_TAG_STRUC_WOW_MAGIC_PATTERN_CMD but no data. */
  12425. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, 0);
  12426. buf_ptr += WMI_TLV_HDR_SIZE;
  12427. /* Fill TLV for pattern_info_timeout but no data. */
  12428. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, 0);
  12429. buf_ptr += WMI_TLV_HDR_SIZE;
  12430. /* Fill TLV for ra_ratelimit_interval. */
  12431. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32, sizeof(uint32_t));
  12432. buf_ptr += WMI_TLV_HDR_SIZE;
  12433. *((uint32_t *) buf_ptr) = rate_limit_interval;
  12434. WMI_LOGD("%s: send RA rate limit [%d] to fw vdev = %d", __func__,
  12435. rate_limit_interval, vdev_id);
  12436. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  12437. WMI_WOW_ADD_WAKE_PATTERN_CMDID);
  12438. if (ret) {
  12439. WMI_LOGE("%s: Failed to send RA rate limit to fw", __func__);
  12440. wmi_buf_free(buf);
  12441. return QDF_STATUS_E_FAILURE;
  12442. }
  12443. return QDF_STATUS_SUCCESS;
  12444. }
  12445. #endif /* FEATURE_WLAN_RA_FILTERING */
  12446. /**
  12447. * send_add_clear_mcbc_filter_cmd_tlv() - set mcast filter command to fw
  12448. * @wmi_handle: wmi handle
  12449. * @vdev_id: vdev id
  12450. * @multicastAddr: mcast address
  12451. * @clearList: clear list flag
  12452. *
  12453. * Return: QDF_STATUS_SUCCESS for success or error code
  12454. */
  12455. static QDF_STATUS send_add_clear_mcbc_filter_cmd_tlv(wmi_unified_t wmi_handle,
  12456. uint8_t vdev_id,
  12457. struct qdf_mac_addr multicast_addr,
  12458. bool clearList)
  12459. {
  12460. WMI_SET_MCASTBCAST_FILTER_CMD_fixed_param *cmd;
  12461. wmi_buf_t buf;
  12462. int err;
  12463. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  12464. if (!buf) {
  12465. WMI_LOGE("Failed to allocate buffer to send set_param cmd");
  12466. return QDF_STATUS_E_NOMEM;
  12467. }
  12468. cmd = (WMI_SET_MCASTBCAST_FILTER_CMD_fixed_param *) wmi_buf_data(buf);
  12469. qdf_mem_zero(cmd, sizeof(*cmd));
  12470. WMITLV_SET_HDR(&cmd->tlv_header,
  12471. WMITLV_TAG_STRUC_WMI_SET_MCASTBCAST_FILTER_CMD_fixed_param,
  12472. WMITLV_GET_STRUCT_TLVLEN
  12473. (WMI_SET_MCASTBCAST_FILTER_CMD_fixed_param));
  12474. cmd->action =
  12475. (clearList ? WMI_MCAST_FILTER_DELETE : WMI_MCAST_FILTER_SET);
  12476. cmd->vdev_id = vdev_id;
  12477. WMI_CHAR_ARRAY_TO_MAC_ADDR(multicast_addr.bytes, &cmd->mcastbdcastaddr);
  12478. WMI_LOGD("Action:%d; vdev_id:%d; clearList:%d; MCBC MAC Addr: %pM",
  12479. cmd->action, vdev_id, clearList, multicast_addr.bytes);
  12480. err = wmi_unified_cmd_send(wmi_handle, buf,
  12481. sizeof(*cmd),
  12482. WMI_SET_MCASTBCAST_FILTER_CMDID);
  12483. if (err) {
  12484. WMI_LOGE("Failed to send set_param cmd");
  12485. wmi_buf_free(buf);
  12486. return QDF_STATUS_E_FAILURE;
  12487. }
  12488. return QDF_STATUS_SUCCESS;
  12489. }
  12490. /**
  12491. * send_multiple_add_clear_mcbc_filter_cmd_tlv() - send multiple mcast filter
  12492. * command to fw
  12493. * @wmi_handle: wmi handle
  12494. * @vdev_id: vdev id
  12495. * @mcast_filter_params: mcast filter params
  12496. *
  12497. * Return: QDF_STATUS_SUCCESS for success or error code
  12498. */
  12499. static QDF_STATUS send_multiple_add_clear_mcbc_filter_cmd_tlv(
  12500. wmi_unified_t wmi_handle,
  12501. uint8_t vdev_id,
  12502. struct pmo_mcast_filter_params *filter_param)
  12503. {
  12504. WMI_SET_MULTIPLE_MCAST_FILTER_CMD_fixed_param *cmd;
  12505. uint8_t *buf_ptr;
  12506. wmi_buf_t buf;
  12507. int err;
  12508. int i;
  12509. uint8_t *mac_addr_src_ptr = NULL;
  12510. wmi_mac_addr *mac_addr_dst_ptr;
  12511. uint32_t len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  12512. sizeof(wmi_mac_addr) * filter_param->multicast_addr_cnt;
  12513. buf = wmi_buf_alloc(wmi_handle, len);
  12514. if (!buf) {
  12515. WMI_LOGE("Failed to allocate memory");
  12516. return QDF_STATUS_E_NOMEM;
  12517. }
  12518. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12519. cmd = (WMI_SET_MULTIPLE_MCAST_FILTER_CMD_fixed_param *)
  12520. wmi_buf_data(buf);
  12521. qdf_mem_zero(cmd, sizeof(*cmd));
  12522. WMITLV_SET_HDR(&cmd->tlv_header,
  12523. WMITLV_TAG_STRUC_wmi_set_multiple_mcast_filter_cmd_fixed_param,
  12524. WMITLV_GET_STRUCT_TLVLEN
  12525. (WMI_SET_MULTIPLE_MCAST_FILTER_CMD_fixed_param));
  12526. cmd->operation =
  12527. ((filter_param->action == 0) ? WMI_MULTIPLE_MCAST_FILTER_DELETE
  12528. : WMI_MULTIPLE_MCAST_FILTER_ADD);
  12529. cmd->vdev_id = vdev_id;
  12530. cmd->num_mcastaddrs = filter_param->multicast_addr_cnt;
  12531. buf_ptr += sizeof(*cmd);
  12532. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_FIXED_STRUC,
  12533. sizeof(wmi_mac_addr) *
  12534. filter_param->multicast_addr_cnt);
  12535. if (filter_param->multicast_addr_cnt == 0)
  12536. goto send_cmd;
  12537. mac_addr_src_ptr = (uint8_t *)&filter_param->multicast_addr;
  12538. mac_addr_dst_ptr = (wmi_mac_addr *)
  12539. (buf_ptr + WMI_TLV_HDR_SIZE);
  12540. for (i = 0; i < filter_param->multicast_addr_cnt; i++) {
  12541. WMI_CHAR_ARRAY_TO_MAC_ADDR(mac_addr_src_ptr, mac_addr_dst_ptr);
  12542. mac_addr_src_ptr += ATH_MAC_LEN;
  12543. mac_addr_dst_ptr++;
  12544. }
  12545. send_cmd:
  12546. err = wmi_unified_cmd_send(wmi_handle, buf,
  12547. len,
  12548. WMI_SET_MULTIPLE_MCAST_FILTER_CMDID);
  12549. if (err) {
  12550. WMI_LOGE("Failed to send set_param cmd");
  12551. wmi_buf_free(buf);
  12552. return QDF_STATUS_E_FAILURE;
  12553. }
  12554. return QDF_STATUS_SUCCESS;
  12555. }
  12556. /**
  12557. * send_gtk_offload_cmd_tlv() - send GTK offload command to fw
  12558. * @wmi_handle: wmi handle
  12559. * @vdev_id: vdev id
  12560. * @params: GTK offload parameters
  12561. *
  12562. * Return: CDF status
  12563. */
  12564. static
  12565. QDF_STATUS send_gtk_offload_cmd_tlv(wmi_unified_t wmi_handle, uint8_t vdev_id,
  12566. struct pmo_gtk_req *params,
  12567. bool enable_offload,
  12568. uint32_t gtk_offload_opcode)
  12569. {
  12570. int len;
  12571. wmi_buf_t buf;
  12572. WMI_GTK_OFFLOAD_CMD_fixed_param *cmd;
  12573. wmi_gtk_offload_fils_tlv_param *ext_param;
  12574. QDF_STATUS status = QDF_STATUS_SUCCESS;
  12575. uint8_t *buf_ptr;
  12576. WMI_LOGD("%s Enter", __func__);
  12577. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE + sizeof(*ext_param);
  12578. /* alloc wmi buffer */
  12579. buf = wmi_buf_alloc(wmi_handle, len);
  12580. if (!buf) {
  12581. WMI_LOGE("wmi_buf_alloc failed for WMI_GTK_OFFLOAD_CMD");
  12582. status = QDF_STATUS_E_NOMEM;
  12583. goto out;
  12584. }
  12585. cmd = (WMI_GTK_OFFLOAD_CMD_fixed_param *) wmi_buf_data(buf);
  12586. buf_ptr = (uint8_t *)cmd;
  12587. WMITLV_SET_HDR(&cmd->tlv_header,
  12588. WMITLV_TAG_STRUC_WMI_GTK_OFFLOAD_CMD_fixed_param,
  12589. WMITLV_GET_STRUCT_TLVLEN
  12590. (WMI_GTK_OFFLOAD_CMD_fixed_param));
  12591. cmd->vdev_id = vdev_id;
  12592. /* Request target to enable GTK offload */
  12593. if (enable_offload == PMO_GTK_OFFLOAD_ENABLE) {
  12594. cmd->flags = gtk_offload_opcode;
  12595. /* Copy the keys and replay counter */
  12596. qdf_mem_copy(cmd->KCK, params->kck, PMO_KCK_LEN);
  12597. qdf_mem_copy(cmd->KEK, params->kek, PMO_KEK_LEN_LEGACY);
  12598. qdf_mem_copy(cmd->replay_counter, &params->replay_counter,
  12599. GTK_REPLAY_COUNTER_BYTES);
  12600. } else {
  12601. cmd->flags = gtk_offload_opcode;
  12602. }
  12603. buf_ptr += sizeof(*cmd);
  12604. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, sizeof(*ext_param));
  12605. buf_ptr += WMI_TLV_HDR_SIZE;
  12606. ext_param = (wmi_gtk_offload_fils_tlv_param *)buf_ptr;
  12607. WMITLV_SET_HDR(&ext_param->tlv_header,
  12608. WMITLV_TAG_STRUC_wmi_gtk_offload_extended_tlv_param,
  12609. WMITLV_GET_STRUCT_TLVLEN(
  12610. wmi_gtk_offload_fils_tlv_param));
  12611. ext_param->vdev_id = vdev_id;
  12612. ext_param->flags = cmd->flags;
  12613. ext_param->kek_len = params->kek_len;
  12614. qdf_mem_copy(ext_param->KEK, params->kek, params->kek_len);
  12615. qdf_mem_copy(ext_param->KCK, params->kck, WMI_GTK_OFFLOAD_KCK_BYTES);
  12616. qdf_mem_copy(ext_param->replay_counter, &params->replay_counter,
  12617. GTK_REPLAY_COUNTER_BYTES);
  12618. WMI_LOGD("VDEVID: %d, GTK_FLAGS: x%x kek len %d", vdev_id, cmd->flags, params->kek_len);
  12619. /* send the wmi command */
  12620. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  12621. WMI_GTK_OFFLOAD_CMDID)) {
  12622. WMI_LOGE("Failed to send WMI_GTK_OFFLOAD_CMDID");
  12623. wmi_buf_free(buf);
  12624. status = QDF_STATUS_E_FAILURE;
  12625. }
  12626. out:
  12627. WMI_LOGD("%s Exit", __func__);
  12628. return status;
  12629. }
  12630. /**
  12631. * send_process_gtk_offload_getinfo_cmd_tlv() - send GTK offload cmd to fw
  12632. * @wmi_handle: wmi handle
  12633. * @params: GTK offload params
  12634. *
  12635. * Return: CDF status
  12636. */
  12637. static QDF_STATUS send_process_gtk_offload_getinfo_cmd_tlv(
  12638. wmi_unified_t wmi_handle,
  12639. uint8_t vdev_id,
  12640. uint64_t offload_req_opcode)
  12641. {
  12642. int len;
  12643. wmi_buf_t buf;
  12644. WMI_GTK_OFFLOAD_CMD_fixed_param *cmd;
  12645. QDF_STATUS status = QDF_STATUS_SUCCESS;
  12646. len = sizeof(*cmd);
  12647. /* alloc wmi buffer */
  12648. buf = wmi_buf_alloc(wmi_handle, len);
  12649. if (!buf) {
  12650. WMI_LOGE("wmi_buf_alloc failed for WMI_GTK_OFFLOAD_CMD");
  12651. status = QDF_STATUS_E_NOMEM;
  12652. goto out;
  12653. }
  12654. cmd = (WMI_GTK_OFFLOAD_CMD_fixed_param *) wmi_buf_data(buf);
  12655. WMITLV_SET_HDR(&cmd->tlv_header,
  12656. WMITLV_TAG_STRUC_WMI_GTK_OFFLOAD_CMD_fixed_param,
  12657. WMITLV_GET_STRUCT_TLVLEN
  12658. (WMI_GTK_OFFLOAD_CMD_fixed_param));
  12659. /* Request for GTK offload status */
  12660. cmd->flags = offload_req_opcode;
  12661. cmd->vdev_id = vdev_id;
  12662. /* send the wmi command */
  12663. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  12664. WMI_GTK_OFFLOAD_CMDID)) {
  12665. WMI_LOGE("Failed to send WMI_GTK_OFFLOAD_CMDID for req info");
  12666. wmi_buf_free(buf);
  12667. status = QDF_STATUS_E_FAILURE;
  12668. }
  12669. out:
  12670. return status;
  12671. }
  12672. /**
  12673. * send_action_frame_patterns_cmd_tlv() - send wmi cmd of action filter params
  12674. * @wmi_handle: wmi handler
  12675. * @action_params: pointer to action_params
  12676. *
  12677. * Return: 0 for success, otherwise appropriate error code
  12678. */
  12679. static QDF_STATUS send_action_frame_patterns_cmd_tlv(wmi_unified_t wmi_handle,
  12680. struct pmo_action_wakeup_set_params *action_params)
  12681. {
  12682. WMI_WOW_SET_ACTION_WAKE_UP_CMD_fixed_param *cmd;
  12683. wmi_buf_t buf;
  12684. int i;
  12685. int32_t err;
  12686. uint32_t len = 0, *cmd_args;
  12687. uint8_t *buf_ptr;
  12688. len = (PMO_SUPPORTED_ACTION_CATE * sizeof(uint32_t))
  12689. + WMI_TLV_HDR_SIZE + sizeof(*cmd);
  12690. buf = wmi_buf_alloc(wmi_handle, len);
  12691. if (!buf) {
  12692. WMI_LOGE("Failed to allocate buffer to send action filter cmd");
  12693. return QDF_STATUS_E_NOMEM;
  12694. }
  12695. cmd = (WMI_WOW_SET_ACTION_WAKE_UP_CMD_fixed_param *) wmi_buf_data(buf);
  12696. buf_ptr = (uint8_t *)cmd;
  12697. WMITLV_SET_HDR(&cmd->tlv_header,
  12698. WMITLV_TAG_STRUC_wmi_wow_set_action_wake_up_cmd_fixed_param,
  12699. WMITLV_GET_STRUCT_TLVLEN(
  12700. WMI_WOW_SET_ACTION_WAKE_UP_CMD_fixed_param));
  12701. cmd->vdev_id = action_params->vdev_id;
  12702. cmd->operation = action_params->operation;
  12703. for (i = 0; i < MAX_SUPPORTED_ACTION_CATEGORY_ELE_LIST; i++)
  12704. cmd->action_category_map[i] =
  12705. action_params->action_category_map[i];
  12706. buf_ptr += sizeof(WMI_WOW_SET_ACTION_WAKE_UP_CMD_fixed_param);
  12707. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  12708. (PMO_SUPPORTED_ACTION_CATE * sizeof(uint32_t)));
  12709. buf_ptr += WMI_TLV_HDR_SIZE;
  12710. cmd_args = (uint32_t *) buf_ptr;
  12711. for (i = 0; i < PMO_SUPPORTED_ACTION_CATE; i++)
  12712. cmd_args[i] = action_params->action_per_category[i];
  12713. err = wmi_unified_cmd_send(wmi_handle, buf,
  12714. len, WMI_WOW_SET_ACTION_WAKE_UP_CMDID);
  12715. if (err) {
  12716. WMI_LOGE("Failed to send ap_ps_egap cmd");
  12717. wmi_buf_free(buf);
  12718. return QDF_STATUS_E_FAILURE;
  12719. }
  12720. return QDF_STATUS_SUCCESS;
  12721. }
  12722. #ifdef FEATURE_WLAN_LPHB
  12723. /**
  12724. * send_lphb_config_hbenable_cmd_tlv() - enable command of LPHB configuration
  12725. * @wmi_handle: wmi handle
  12726. * @lphb_conf_req: configuration info
  12727. *
  12728. * Return: CDF status
  12729. */
  12730. static QDF_STATUS send_lphb_config_hbenable_cmd_tlv(wmi_unified_t wmi_handle,
  12731. wmi_hb_set_enable_cmd_fixed_param *params)
  12732. {
  12733. QDF_STATUS status;
  12734. wmi_buf_t buf = NULL;
  12735. uint8_t *buf_ptr;
  12736. wmi_hb_set_enable_cmd_fixed_param *hb_enable_fp;
  12737. int len = sizeof(wmi_hb_set_enable_cmd_fixed_param);
  12738. buf = wmi_buf_alloc(wmi_handle, len);
  12739. if (!buf) {
  12740. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  12741. return QDF_STATUS_E_NOMEM;
  12742. }
  12743. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12744. hb_enable_fp = (wmi_hb_set_enable_cmd_fixed_param *) buf_ptr;
  12745. WMITLV_SET_HDR(&hb_enable_fp->tlv_header,
  12746. WMITLV_TAG_STRUC_wmi_hb_set_enable_cmd_fixed_param,
  12747. WMITLV_GET_STRUCT_TLVLEN
  12748. (wmi_hb_set_enable_cmd_fixed_param));
  12749. /* fill in values */
  12750. hb_enable_fp->vdev_id = params->session;
  12751. hb_enable_fp->enable = params->enable;
  12752. hb_enable_fp->item = params->item;
  12753. hb_enable_fp->session = params->session;
  12754. status = wmi_unified_cmd_send(wmi_handle, buf,
  12755. len, WMI_HB_SET_ENABLE_CMDID);
  12756. if (QDF_IS_STATUS_ERROR(status)) {
  12757. WMI_LOGE("cmd_send WMI_HB_SET_ENABLE returned Error %d",
  12758. status);
  12759. wmi_buf_free(buf);
  12760. }
  12761. return status;
  12762. }
  12763. /**
  12764. * send_lphb_config_tcp_params_cmd_tlv() - set tcp params of LPHB configuration
  12765. * @wmi_handle: wmi handle
  12766. * @lphb_conf_req: lphb config request
  12767. *
  12768. * Return: CDF status
  12769. */
  12770. static QDF_STATUS send_lphb_config_tcp_params_cmd_tlv(wmi_unified_t wmi_handle,
  12771. wmi_hb_set_tcp_params_cmd_fixed_param *lphb_conf_req)
  12772. {
  12773. QDF_STATUS status;
  12774. wmi_buf_t buf = NULL;
  12775. uint8_t *buf_ptr;
  12776. wmi_hb_set_tcp_params_cmd_fixed_param *hb_tcp_params_fp;
  12777. int len = sizeof(wmi_hb_set_tcp_params_cmd_fixed_param);
  12778. buf = wmi_buf_alloc(wmi_handle, len);
  12779. if (!buf) {
  12780. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  12781. return QDF_STATUS_E_NOMEM;
  12782. }
  12783. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12784. hb_tcp_params_fp = (wmi_hb_set_tcp_params_cmd_fixed_param *) buf_ptr;
  12785. WMITLV_SET_HDR(&hb_tcp_params_fp->tlv_header,
  12786. WMITLV_TAG_STRUC_wmi_hb_set_tcp_params_cmd_fixed_param,
  12787. WMITLV_GET_STRUCT_TLVLEN
  12788. (wmi_hb_set_tcp_params_cmd_fixed_param));
  12789. /* fill in values */
  12790. hb_tcp_params_fp->vdev_id = lphb_conf_req->vdev_id;
  12791. hb_tcp_params_fp->srv_ip = lphb_conf_req->srv_ip;
  12792. hb_tcp_params_fp->dev_ip = lphb_conf_req->dev_ip;
  12793. hb_tcp_params_fp->seq = lphb_conf_req->seq;
  12794. hb_tcp_params_fp->src_port = lphb_conf_req->src_port;
  12795. hb_tcp_params_fp->dst_port = lphb_conf_req->dst_port;
  12796. hb_tcp_params_fp->interval = lphb_conf_req->interval;
  12797. hb_tcp_params_fp->timeout = lphb_conf_req->timeout;
  12798. hb_tcp_params_fp->session = lphb_conf_req->session;
  12799. qdf_mem_copy(&hb_tcp_params_fp->gateway_mac,
  12800. &lphb_conf_req->gateway_mac,
  12801. sizeof(hb_tcp_params_fp->gateway_mac));
  12802. status = wmi_unified_cmd_send(wmi_handle, buf,
  12803. len, WMI_HB_SET_TCP_PARAMS_CMDID);
  12804. if (QDF_IS_STATUS_ERROR(status)) {
  12805. WMI_LOGE("cmd_send WMI_HB_SET_TCP_PARAMS returned Error %d",
  12806. status);
  12807. wmi_buf_free(buf);
  12808. }
  12809. return status;
  12810. }
  12811. /**
  12812. * send_lphb_config_tcp_pkt_filter_cmd_tlv() - configure tcp packet filter cmd
  12813. * @wmi_handle: wmi handle
  12814. * @lphb_conf_req: lphb config request
  12815. *
  12816. * Return: CDF status
  12817. */
  12818. static
  12819. QDF_STATUS send_lphb_config_tcp_pkt_filter_cmd_tlv(wmi_unified_t wmi_handle,
  12820. wmi_hb_set_tcp_pkt_filter_cmd_fixed_param *g_hb_tcp_filter_fp)
  12821. {
  12822. QDF_STATUS status;
  12823. wmi_buf_t buf = NULL;
  12824. uint8_t *buf_ptr;
  12825. wmi_hb_set_tcp_pkt_filter_cmd_fixed_param *hb_tcp_filter_fp;
  12826. int len = sizeof(wmi_hb_set_tcp_pkt_filter_cmd_fixed_param);
  12827. buf = wmi_buf_alloc(wmi_handle, len);
  12828. if (!buf) {
  12829. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  12830. return QDF_STATUS_E_NOMEM;
  12831. }
  12832. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12833. hb_tcp_filter_fp =
  12834. (wmi_hb_set_tcp_pkt_filter_cmd_fixed_param *) buf_ptr;
  12835. WMITLV_SET_HDR(&hb_tcp_filter_fp->tlv_header,
  12836. WMITLV_TAG_STRUC_wmi_hb_set_tcp_pkt_filter_cmd_fixed_param,
  12837. WMITLV_GET_STRUCT_TLVLEN
  12838. (wmi_hb_set_tcp_pkt_filter_cmd_fixed_param));
  12839. /* fill in values */
  12840. hb_tcp_filter_fp->vdev_id = g_hb_tcp_filter_fp->vdev_id;
  12841. hb_tcp_filter_fp->length = g_hb_tcp_filter_fp->length;
  12842. hb_tcp_filter_fp->offset = g_hb_tcp_filter_fp->offset;
  12843. hb_tcp_filter_fp->session = g_hb_tcp_filter_fp->session;
  12844. memcpy((void *)&hb_tcp_filter_fp->filter,
  12845. (void *)&g_hb_tcp_filter_fp->filter,
  12846. WMI_WLAN_HB_MAX_FILTER_SIZE);
  12847. status = wmi_unified_cmd_send(wmi_handle, buf,
  12848. len, WMI_HB_SET_TCP_PKT_FILTER_CMDID);
  12849. if (QDF_IS_STATUS_ERROR(status)) {
  12850. WMI_LOGE("cmd_send WMI_HB_SET_TCP_PKT_FILTER returned Error %d",
  12851. status);
  12852. wmi_buf_free(buf);
  12853. }
  12854. return status;
  12855. }
  12856. /**
  12857. * send_lphb_config_udp_params_cmd_tlv() - configure udp param command of LPHB
  12858. * @wmi_handle: wmi handle
  12859. * @lphb_conf_req: lphb config request
  12860. *
  12861. * Return: CDF status
  12862. */
  12863. static QDF_STATUS send_lphb_config_udp_params_cmd_tlv(wmi_unified_t wmi_handle,
  12864. wmi_hb_set_udp_params_cmd_fixed_param *lphb_conf_req)
  12865. {
  12866. QDF_STATUS status;
  12867. wmi_buf_t buf = NULL;
  12868. uint8_t *buf_ptr;
  12869. wmi_hb_set_udp_params_cmd_fixed_param *hb_udp_params_fp;
  12870. int len = sizeof(wmi_hb_set_udp_params_cmd_fixed_param);
  12871. buf = wmi_buf_alloc(wmi_handle, len);
  12872. if (!buf) {
  12873. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  12874. return QDF_STATUS_E_NOMEM;
  12875. }
  12876. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12877. hb_udp_params_fp = (wmi_hb_set_udp_params_cmd_fixed_param *) buf_ptr;
  12878. WMITLV_SET_HDR(&hb_udp_params_fp->tlv_header,
  12879. WMITLV_TAG_STRUC_wmi_hb_set_udp_params_cmd_fixed_param,
  12880. WMITLV_GET_STRUCT_TLVLEN
  12881. (wmi_hb_set_udp_params_cmd_fixed_param));
  12882. /* fill in values */
  12883. hb_udp_params_fp->vdev_id = lphb_conf_req->vdev_id;
  12884. hb_udp_params_fp->srv_ip = lphb_conf_req->srv_ip;
  12885. hb_udp_params_fp->dev_ip = lphb_conf_req->dev_ip;
  12886. hb_udp_params_fp->src_port = lphb_conf_req->src_port;
  12887. hb_udp_params_fp->dst_port = lphb_conf_req->dst_port;
  12888. hb_udp_params_fp->interval = lphb_conf_req->interval;
  12889. hb_udp_params_fp->timeout = lphb_conf_req->timeout;
  12890. hb_udp_params_fp->session = lphb_conf_req->session;
  12891. qdf_mem_copy(&hb_udp_params_fp->gateway_mac,
  12892. &lphb_conf_req->gateway_mac,
  12893. sizeof(lphb_conf_req->gateway_mac));
  12894. status = wmi_unified_cmd_send(wmi_handle, buf,
  12895. len, WMI_HB_SET_UDP_PARAMS_CMDID);
  12896. if (QDF_IS_STATUS_ERROR(status)) {
  12897. WMI_LOGE("cmd_send WMI_HB_SET_UDP_PARAMS returned Error %d",
  12898. status);
  12899. wmi_buf_free(buf);
  12900. }
  12901. return status;
  12902. }
  12903. /**
  12904. * send_lphb_config_udp_pkt_filter_cmd_tlv() - configure udp pkt filter command
  12905. * @wmi_handle: wmi handle
  12906. * @lphb_conf_req: lphb config request
  12907. *
  12908. * Return: CDF status
  12909. */
  12910. static
  12911. QDF_STATUS send_lphb_config_udp_pkt_filter_cmd_tlv(wmi_unified_t wmi_handle,
  12912. wmi_hb_set_udp_pkt_filter_cmd_fixed_param *lphb_conf_req)
  12913. {
  12914. QDF_STATUS status;
  12915. wmi_buf_t buf = NULL;
  12916. uint8_t *buf_ptr;
  12917. wmi_hb_set_udp_pkt_filter_cmd_fixed_param *hb_udp_filter_fp;
  12918. int len = sizeof(wmi_hb_set_udp_pkt_filter_cmd_fixed_param);
  12919. buf = wmi_buf_alloc(wmi_handle, len);
  12920. if (!buf) {
  12921. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  12922. return QDF_STATUS_E_NOMEM;
  12923. }
  12924. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  12925. hb_udp_filter_fp =
  12926. (wmi_hb_set_udp_pkt_filter_cmd_fixed_param *) buf_ptr;
  12927. WMITLV_SET_HDR(&hb_udp_filter_fp->tlv_header,
  12928. WMITLV_TAG_STRUC_wmi_hb_set_udp_pkt_filter_cmd_fixed_param,
  12929. WMITLV_GET_STRUCT_TLVLEN
  12930. (wmi_hb_set_udp_pkt_filter_cmd_fixed_param));
  12931. /* fill in values */
  12932. hb_udp_filter_fp->vdev_id = lphb_conf_req->vdev_id;
  12933. hb_udp_filter_fp->length = lphb_conf_req->length;
  12934. hb_udp_filter_fp->offset = lphb_conf_req->offset;
  12935. hb_udp_filter_fp->session = lphb_conf_req->session;
  12936. memcpy((void *)&hb_udp_filter_fp->filter,
  12937. (void *)&lphb_conf_req->filter,
  12938. WMI_WLAN_HB_MAX_FILTER_SIZE);
  12939. status = wmi_unified_cmd_send(wmi_handle, buf,
  12940. len, WMI_HB_SET_UDP_PKT_FILTER_CMDID);
  12941. if (QDF_IS_STATUS_ERROR(status)) {
  12942. WMI_LOGE("cmd_send WMI_HB_SET_UDP_PKT_FILTER returned Error %d",
  12943. status);
  12944. wmi_buf_free(buf);
  12945. }
  12946. return status;
  12947. }
  12948. #endif /* FEATURE_WLAN_LPHB */
  12949. static QDF_STATUS send_conf_hw_filter_cmd_tlv(wmi_unified_t wmi,
  12950. struct pmo_hw_filter_params *req)
  12951. {
  12952. QDF_STATUS status;
  12953. wmi_hw_data_filter_cmd_fixed_param *cmd;
  12954. wmi_buf_t wmi_buf;
  12955. if (!req) {
  12956. WMI_LOGE("req is null");
  12957. return QDF_STATUS_E_INVAL;
  12958. }
  12959. wmi_buf = wmi_buf_alloc(wmi, sizeof(*cmd));
  12960. if (!wmi_buf) {
  12961. WMI_LOGE(FL("Out of memory"));
  12962. return QDF_STATUS_E_NOMEM;
  12963. }
  12964. cmd = (wmi_hw_data_filter_cmd_fixed_param *)wmi_buf_data(wmi_buf);
  12965. WMITLV_SET_HDR(&cmd->tlv_header,
  12966. WMITLV_TAG_STRUC_wmi_hw_data_filter_cmd_fixed_param,
  12967. WMITLV_GET_STRUCT_TLVLEN(wmi_hw_data_filter_cmd_fixed_param));
  12968. cmd->vdev_id = req->vdev_id;
  12969. cmd->enable = req->enable;
  12970. /* Set all modes in case of disable */
  12971. if (!cmd->enable)
  12972. cmd->hw_filter_bitmap = ((uint32_t)~0U);
  12973. else
  12974. cmd->hw_filter_bitmap = req->mode_bitmap;
  12975. WMI_LOGD("Send %s hw filter mode: 0x%X for vdev id %d",
  12976. req->enable ? "enable" : "disable", req->mode_bitmap,
  12977. req->vdev_id);
  12978. status = wmi_unified_cmd_send(wmi, wmi_buf, sizeof(*cmd),
  12979. WMI_HW_DATA_FILTER_CMDID);
  12980. if (QDF_IS_STATUS_ERROR(status)) {
  12981. WMI_LOGE("Failed to configure hw filter");
  12982. wmi_buf_free(wmi_buf);
  12983. }
  12984. return status;
  12985. }
  12986. /**
  12987. * send_enable_disable_packet_filter_cmd_tlv() - enable/disable packet filter
  12988. * @wmi_handle: wmi handle
  12989. * @vdev_id: vdev id
  12990. * @enable: Flag to enable/disable packet filter
  12991. *
  12992. * Return: QDF_STATUS_SUCCESS for success or error code
  12993. */
  12994. static QDF_STATUS send_enable_disable_packet_filter_cmd_tlv(
  12995. wmi_unified_t wmi_handle, uint8_t vdev_id, bool enable)
  12996. {
  12997. int32_t len;
  12998. int ret = 0;
  12999. wmi_buf_t buf;
  13000. WMI_PACKET_FILTER_ENABLE_CMD_fixed_param *cmd;
  13001. len = sizeof(WMI_PACKET_FILTER_ENABLE_CMD_fixed_param);
  13002. buf = wmi_buf_alloc(wmi_handle, len);
  13003. if (!buf) {
  13004. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  13005. return QDF_STATUS_E_NOMEM;
  13006. }
  13007. cmd = (WMI_PACKET_FILTER_ENABLE_CMD_fixed_param *) wmi_buf_data(buf);
  13008. WMITLV_SET_HDR(&cmd->tlv_header,
  13009. WMITLV_TAG_STRUC_wmi_packet_filter_enable_fixed_param,
  13010. WMITLV_GET_STRUCT_TLVLEN(
  13011. WMI_PACKET_FILTER_ENABLE_CMD_fixed_param));
  13012. cmd->vdev_id = vdev_id;
  13013. if (enable)
  13014. cmd->enable = PACKET_FILTER_SET_ENABLE;
  13015. else
  13016. cmd->enable = PACKET_FILTER_SET_DISABLE;
  13017. WMI_LOGE("%s: Packet filter enable %d for vdev_id %d",
  13018. __func__, cmd->enable, vdev_id);
  13019. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  13020. WMI_PACKET_FILTER_ENABLE_CMDID);
  13021. if (ret) {
  13022. WMI_LOGE("Failed to send packet filter wmi cmd to fw");
  13023. wmi_buf_free(buf);
  13024. }
  13025. return ret;
  13026. }
  13027. /**
  13028. * send_config_packet_filter_cmd_tlv() - configure packet filter in target
  13029. * @wmi_handle: wmi handle
  13030. * @vdev_id: vdev id
  13031. * @rcv_filter_param: Packet filter parameters
  13032. * @filter_id: Filter id
  13033. * @enable: Flag to add/delete packet filter configuration
  13034. *
  13035. * Return: QDF_STATUS_SUCCESS for success or error code
  13036. */
  13037. static QDF_STATUS send_config_packet_filter_cmd_tlv(wmi_unified_t wmi_handle,
  13038. uint8_t vdev_id, struct pmo_rcv_pkt_fltr_cfg *rcv_filter_param,
  13039. uint8_t filter_id, bool enable)
  13040. {
  13041. int len, i;
  13042. int err = 0;
  13043. wmi_buf_t buf;
  13044. WMI_PACKET_FILTER_CONFIG_CMD_fixed_param *cmd;
  13045. /* allocate the memory */
  13046. len = sizeof(*cmd);
  13047. buf = wmi_buf_alloc(wmi_handle, len);
  13048. if (!buf) {
  13049. WMI_LOGE("Failed to allocate buffer to send set_param cmd");
  13050. return QDF_STATUS_E_NOMEM;
  13051. }
  13052. cmd = (WMI_PACKET_FILTER_CONFIG_CMD_fixed_param *)wmi_buf_data(buf);
  13053. WMITLV_SET_HDR(&cmd->tlv_header,
  13054. WMITLV_TAG_STRUC_wmi_packet_filter_config_fixed_param,
  13055. WMITLV_GET_STRUCT_TLVLEN
  13056. (WMI_PACKET_FILTER_CONFIG_CMD_fixed_param));
  13057. cmd->vdev_id = vdev_id;
  13058. cmd->filter_id = filter_id;
  13059. if (enable)
  13060. cmd->filter_action = PACKET_FILTER_SET_ACTIVE;
  13061. else
  13062. cmd->filter_action = PACKET_FILTER_SET_INACTIVE;
  13063. if (enable) {
  13064. cmd->num_params = QDF_MIN(
  13065. WMI_PACKET_FILTER_MAX_CMP_PER_PACKET_FILTER,
  13066. rcv_filter_param->num_params);
  13067. cmd->filter_type = rcv_filter_param->filter_type;
  13068. cmd->coalesce_time = rcv_filter_param->coalesce_time;
  13069. for (i = 0; i < cmd->num_params; i++) {
  13070. cmd->paramsData[i].proto_type =
  13071. rcv_filter_param->params_data[i].protocol_layer;
  13072. cmd->paramsData[i].cmp_type =
  13073. rcv_filter_param->params_data[i].compare_flag;
  13074. cmd->paramsData[i].data_length =
  13075. rcv_filter_param->params_data[i].data_length;
  13076. cmd->paramsData[i].data_offset =
  13077. rcv_filter_param->params_data[i].data_offset;
  13078. memcpy(&cmd->paramsData[i].compareData,
  13079. rcv_filter_param->params_data[i].compare_data,
  13080. sizeof(cmd->paramsData[i].compareData));
  13081. memcpy(&cmd->paramsData[i].dataMask,
  13082. rcv_filter_param->params_data[i].data_mask,
  13083. sizeof(cmd->paramsData[i].dataMask));
  13084. }
  13085. }
  13086. WMI_LOGE("Packet filter action %d filter with id: %d, num_params=%d",
  13087. cmd->filter_action, cmd->filter_id, cmd->num_params);
  13088. /* send the command along with data */
  13089. err = wmi_unified_cmd_send(wmi_handle, buf, len,
  13090. WMI_PACKET_FILTER_CONFIG_CMDID);
  13091. if (err) {
  13092. WMI_LOGE("Failed to send pkt_filter cmd");
  13093. wmi_buf_free(buf);
  13094. return QDF_STATUS_E_FAILURE;
  13095. }
  13096. return QDF_STATUS_SUCCESS;
  13097. }
  13098. #endif /* End of WLAN_POWER_MANAGEMENT_OFFLOAD */
  13099. /**
  13100. * send_set_ssid_hotlist_cmd_tlv() - Handle an SSID hotlist set request
  13101. * @wmi_handle: wmi handle
  13102. * @request: SSID hotlist set request
  13103. *
  13104. * Return: QDF_STATUS enumeration
  13105. */
  13106. static QDF_STATUS
  13107. send_set_ssid_hotlist_cmd_tlv(wmi_unified_t wmi_handle,
  13108. struct ssid_hotlist_request_params *request)
  13109. {
  13110. wmi_extscan_configure_hotlist_ssid_monitor_cmd_fixed_param *cmd;
  13111. wmi_buf_t wmi_buf;
  13112. uint32_t len;
  13113. uint32_t array_size;
  13114. uint8_t *buf_ptr;
  13115. /* length of fixed portion */
  13116. len = sizeof(*cmd);
  13117. /* length of variable portion */
  13118. array_size =
  13119. request->ssid_count * sizeof(wmi_extscan_hotlist_ssid_entry);
  13120. len += WMI_TLV_HDR_SIZE + array_size;
  13121. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  13122. if (!wmi_buf) {
  13123. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  13124. return QDF_STATUS_E_NOMEM;
  13125. }
  13126. buf_ptr = (uint8_t *) wmi_buf_data(wmi_buf);
  13127. cmd = (wmi_extscan_configure_hotlist_ssid_monitor_cmd_fixed_param *)
  13128. buf_ptr;
  13129. WMITLV_SET_HDR
  13130. (&cmd->tlv_header,
  13131. WMITLV_TAG_STRUC_wmi_extscan_configure_hotlist_ssid_monitor_cmd_fixed_param,
  13132. WMITLV_GET_STRUCT_TLVLEN
  13133. (wmi_extscan_configure_hotlist_ssid_monitor_cmd_fixed_param));
  13134. cmd->request_id = request->request_id;
  13135. cmd->requestor_id = 0;
  13136. cmd->vdev_id = request->session_id;
  13137. cmd->table_id = 0;
  13138. cmd->lost_ap_scan_count = request->lost_ssid_sample_size;
  13139. cmd->total_entries = request->ssid_count;
  13140. cmd->num_entries_in_page = request->ssid_count;
  13141. cmd->first_entry_index = 0;
  13142. buf_ptr += sizeof(*cmd);
  13143. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC, array_size);
  13144. if (request->ssid_count) {
  13145. wmi_extscan_hotlist_ssid_entry *entry;
  13146. int i;
  13147. buf_ptr += WMI_TLV_HDR_SIZE;
  13148. entry = (wmi_extscan_hotlist_ssid_entry *)buf_ptr;
  13149. for (i = 0; i < request->ssid_count; i++) {
  13150. WMITLV_SET_HDR
  13151. (entry,
  13152. WMITLV_TAG_ARRAY_STRUC,
  13153. WMITLV_GET_STRUCT_TLVLEN
  13154. (wmi_extscan_hotlist_ssid_entry));
  13155. entry->ssid.ssid_len = request->ssids[i].ssid.length;
  13156. qdf_mem_copy(entry->ssid.ssid,
  13157. request->ssids[i].ssid.mac_ssid,
  13158. request->ssids[i].ssid.length);
  13159. entry->band = request->ssids[i].band;
  13160. entry->min_rssi = request->ssids[i].rssi_low;
  13161. entry->max_rssi = request->ssids[i].rssi_high;
  13162. entry++;
  13163. }
  13164. cmd->mode = WMI_EXTSCAN_MODE_START;
  13165. } else {
  13166. cmd->mode = WMI_EXTSCAN_MODE_STOP;
  13167. }
  13168. if (wmi_unified_cmd_send
  13169. (wmi_handle, wmi_buf, len,
  13170. WMI_EXTSCAN_CONFIGURE_HOTLIST_SSID_MONITOR_CMDID)) {
  13171. WMI_LOGE("%s: failed to send command", __func__);
  13172. wmi_buf_free(wmi_buf);
  13173. return QDF_STATUS_E_FAILURE;
  13174. }
  13175. return QDF_STATUS_SUCCESS;
  13176. }
  13177. /**
  13178. * send_process_roam_synch_complete_cmd_tlv() - roam synch complete command to fw.
  13179. * @wmi_handle: wmi handle
  13180. * @vdev_id: vdev id
  13181. *
  13182. * This function sends roam synch complete event to fw.
  13183. *
  13184. * Return: CDF STATUS
  13185. */
  13186. static QDF_STATUS send_process_roam_synch_complete_cmd_tlv(wmi_unified_t wmi_handle,
  13187. uint8_t vdev_id)
  13188. {
  13189. wmi_roam_synch_complete_fixed_param *cmd;
  13190. wmi_buf_t wmi_buf;
  13191. uint8_t *buf_ptr;
  13192. uint16_t len;
  13193. len = sizeof(wmi_roam_synch_complete_fixed_param);
  13194. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  13195. if (!wmi_buf) {
  13196. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  13197. return QDF_STATUS_E_NOMEM;
  13198. }
  13199. cmd = (wmi_roam_synch_complete_fixed_param *) wmi_buf_data(wmi_buf);
  13200. buf_ptr = (uint8_t *) cmd;
  13201. WMITLV_SET_HDR(&cmd->tlv_header,
  13202. WMITLV_TAG_STRUC_wmi_roam_synch_complete_fixed_param,
  13203. WMITLV_GET_STRUCT_TLVLEN
  13204. (wmi_roam_synch_complete_fixed_param));
  13205. cmd->vdev_id = vdev_id;
  13206. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  13207. WMI_ROAM_SYNCH_COMPLETE)) {
  13208. WMI_LOGP("%s: failed to send roam synch confirmation",
  13209. __func__);
  13210. wmi_buf_free(wmi_buf);
  13211. return QDF_STATUS_E_FAILURE;
  13212. }
  13213. return QDF_STATUS_SUCCESS;
  13214. }
  13215. /**
  13216. * send_fw_test_cmd_tlv() - send fw test command to fw.
  13217. * @wmi_handle: wmi handle
  13218. * @wmi_fwtest: fw test command
  13219. *
  13220. * This function sends fw test command to fw.
  13221. *
  13222. * Return: CDF STATUS
  13223. */
  13224. static
  13225. QDF_STATUS send_fw_test_cmd_tlv(wmi_unified_t wmi_handle,
  13226. struct set_fwtest_params *wmi_fwtest)
  13227. {
  13228. wmi_fwtest_set_param_cmd_fixed_param *cmd;
  13229. wmi_buf_t wmi_buf;
  13230. uint16_t len;
  13231. len = sizeof(*cmd);
  13232. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  13233. if (!wmi_buf) {
  13234. WMI_LOGE("%s: wmai_buf_alloc failed", __func__);
  13235. return QDF_STATUS_E_NOMEM;
  13236. }
  13237. cmd = (wmi_fwtest_set_param_cmd_fixed_param *) wmi_buf_data(wmi_buf);
  13238. WMITLV_SET_HDR(&cmd->tlv_header,
  13239. WMITLV_TAG_STRUC_wmi_fwtest_set_param_cmd_fixed_param,
  13240. WMITLV_GET_STRUCT_TLVLEN(
  13241. wmi_fwtest_set_param_cmd_fixed_param));
  13242. cmd->param_id = wmi_fwtest->arg;
  13243. cmd->param_value = wmi_fwtest->value;
  13244. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  13245. WMI_FWTEST_CMDID)) {
  13246. WMI_LOGP("%s: failed to send fw test command", __func__);
  13247. qdf_nbuf_free(wmi_buf);
  13248. return QDF_STATUS_E_FAILURE;
  13249. }
  13250. return QDF_STATUS_SUCCESS;
  13251. }
  13252. /**
  13253. * send_unit_test_cmd_tlv() - send unit test command to fw.
  13254. * @wmi_handle: wmi handle
  13255. * @wmi_utest: unit test command
  13256. *
  13257. * This function send unit test command to fw.
  13258. *
  13259. * Return: CDF STATUS
  13260. */
  13261. static QDF_STATUS send_unit_test_cmd_tlv(wmi_unified_t wmi_handle,
  13262. struct wmi_unit_test_cmd *wmi_utest)
  13263. {
  13264. wmi_unit_test_cmd_fixed_param *cmd;
  13265. wmi_buf_t wmi_buf;
  13266. uint8_t *buf_ptr;
  13267. int i;
  13268. uint16_t len, args_tlv_len;
  13269. uint32_t *unit_test_cmd_args;
  13270. args_tlv_len =
  13271. WMI_TLV_HDR_SIZE + wmi_utest->num_args * sizeof(uint32_t);
  13272. len = sizeof(wmi_unit_test_cmd_fixed_param) + args_tlv_len;
  13273. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  13274. if (!wmi_buf) {
  13275. WMI_LOGE("%s: wmai_buf_alloc failed", __func__);
  13276. return QDF_STATUS_E_NOMEM;
  13277. }
  13278. cmd = (wmi_unit_test_cmd_fixed_param *) wmi_buf_data(wmi_buf);
  13279. buf_ptr = (uint8_t *) cmd;
  13280. WMITLV_SET_HDR(&cmd->tlv_header,
  13281. WMITLV_TAG_STRUC_wmi_unit_test_cmd_fixed_param,
  13282. WMITLV_GET_STRUCT_TLVLEN(wmi_unit_test_cmd_fixed_param));
  13283. cmd->vdev_id = wmi_utest->vdev_id;
  13284. cmd->module_id = wmi_utest->module_id;
  13285. cmd->num_args = wmi_utest->num_args;
  13286. cmd->diag_token = wmi_utest->diag_token;
  13287. buf_ptr += sizeof(wmi_unit_test_cmd_fixed_param);
  13288. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  13289. (wmi_utest->num_args * sizeof(uint32_t)));
  13290. unit_test_cmd_args = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  13291. WMI_LOGI("%s: VDEV ID: %d\n", __func__, cmd->vdev_id);
  13292. WMI_LOGI("%s: MODULE ID: %d\n", __func__, cmd->module_id);
  13293. WMI_LOGI("%s: TOKEN: %d\n", __func__, cmd->diag_token);
  13294. WMI_LOGI("%s: %d num of args = ", __func__, wmi_utest->num_args);
  13295. for (i = 0; (i < wmi_utest->num_args && i < WMI_UNIT_TEST_MAX_NUM_ARGS); i++) {
  13296. unit_test_cmd_args[i] = wmi_utest->args[i];
  13297. WMI_LOGI("%d,", wmi_utest->args[i]);
  13298. }
  13299. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  13300. WMI_UNIT_TEST_CMDID)) {
  13301. WMI_LOGP("%s: failed to send unit test command", __func__);
  13302. wmi_buf_free(wmi_buf);
  13303. return QDF_STATUS_E_FAILURE;
  13304. }
  13305. return QDF_STATUS_SUCCESS;
  13306. }
  13307. /**
  13308. * send_roam_invoke_cmd_tlv() - send roam invoke command to fw.
  13309. * @wmi_handle: wma handle
  13310. * @roaminvoke: roam invoke command
  13311. *
  13312. * Send roam invoke command to fw for fastreassoc.
  13313. *
  13314. * Return: CDF STATUS
  13315. */
  13316. static QDF_STATUS send_roam_invoke_cmd_tlv(wmi_unified_t wmi_handle,
  13317. struct wmi_roam_invoke_cmd *roaminvoke,
  13318. uint32_t ch_hz)
  13319. {
  13320. wmi_roam_invoke_cmd_fixed_param *cmd;
  13321. wmi_buf_t wmi_buf;
  13322. u_int8_t *buf_ptr;
  13323. u_int16_t len, args_tlv_len;
  13324. uint32_t *channel_list;
  13325. wmi_mac_addr *bssid_list;
  13326. wmi_tlv_buf_len_param *buf_len_tlv;
  13327. /* Host sends only one channel and one bssid */
  13328. args_tlv_len = (4 * WMI_TLV_HDR_SIZE) + sizeof(uint32_t) +
  13329. sizeof(wmi_mac_addr) + sizeof(wmi_tlv_buf_len_param) +
  13330. roundup(roaminvoke->frame_len, sizeof(uint32_t));
  13331. len = sizeof(wmi_roam_invoke_cmd_fixed_param) + args_tlv_len;
  13332. wmi_buf = wmi_buf_alloc(wmi_handle, len);
  13333. if (!wmi_buf) {
  13334. WMI_LOGE("%s: wmai_buf_alloc failed", __func__);
  13335. return QDF_STATUS_E_NOMEM;
  13336. }
  13337. cmd = (wmi_roam_invoke_cmd_fixed_param *)wmi_buf_data(wmi_buf);
  13338. buf_ptr = (u_int8_t *) cmd;
  13339. WMITLV_SET_HDR(&cmd->tlv_header,
  13340. WMITLV_TAG_STRUC_wmi_roam_invoke_cmd_fixed_param,
  13341. WMITLV_GET_STRUCT_TLVLEN(wmi_roam_invoke_cmd_fixed_param));
  13342. cmd->vdev_id = roaminvoke->vdev_id;
  13343. cmd->flags |= (1 << WMI_ROAM_INVOKE_FLAG_REPORT_FAILURE);
  13344. if (roaminvoke->is_same_bssid)
  13345. cmd->flags |= (1 << WMI_ROAM_INVOKE_FLAG_NO_NULL_FRAME_TO_AP);
  13346. WMI_LOGD(FL("is_same_bssid flag: %d"), roaminvoke->is_same_bssid);
  13347. if (roaminvoke->frame_len) {
  13348. cmd->roam_scan_mode = WMI_ROAM_INVOKE_SCAN_MODE_SKIP;
  13349. /* packing 1 beacon/probe_rsp frame with WMI cmd */
  13350. cmd->num_buf = 1;
  13351. } else {
  13352. cmd->roam_scan_mode = WMI_ROAM_INVOKE_SCAN_MODE_FIXED_CH;
  13353. cmd->num_buf = 0;
  13354. }
  13355. cmd->roam_ap_sel_mode = 0;
  13356. cmd->roam_delay = 0;
  13357. cmd->num_chan = 1;
  13358. cmd->num_bssid = 1;
  13359. buf_ptr += sizeof(wmi_roam_invoke_cmd_fixed_param);
  13360. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  13361. (sizeof(u_int32_t)));
  13362. channel_list = (uint32_t *)(buf_ptr + WMI_TLV_HDR_SIZE);
  13363. *channel_list = ch_hz;
  13364. buf_ptr += sizeof(uint32_t) + WMI_TLV_HDR_SIZE;
  13365. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_FIXED_STRUC,
  13366. (sizeof(wmi_mac_addr)));
  13367. bssid_list = (wmi_mac_addr *)(buf_ptr + WMI_TLV_HDR_SIZE);
  13368. WMI_CHAR_ARRAY_TO_MAC_ADDR(roaminvoke->bssid, bssid_list);
  13369. /* move to next tlv i.e. bcn_prb_buf_list */
  13370. buf_ptr += WMI_TLV_HDR_SIZE + sizeof(wmi_mac_addr);
  13371. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_FIXED_STRUC,
  13372. sizeof(wmi_tlv_buf_len_param));
  13373. buf_len_tlv = (wmi_tlv_buf_len_param *)(buf_ptr + WMI_TLV_HDR_SIZE);
  13374. buf_len_tlv->buf_len = roaminvoke->frame_len;
  13375. /* move to next tlv i.e. bcn_prb_frm */
  13376. buf_ptr += WMI_TLV_HDR_SIZE + sizeof(wmi_tlv_buf_len_param);
  13377. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE,
  13378. roundup(roaminvoke->frame_len, sizeof(uint32_t)));
  13379. /* copy frame after the header */
  13380. qdf_mem_copy(buf_ptr + WMI_TLV_HDR_SIZE,
  13381. roaminvoke->frame_buf,
  13382. roaminvoke->frame_len);
  13383. WMI_LOGD(FL("bcn/prb_rsp frame, length: %d"), roaminvoke->frame_len);
  13384. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  13385. buf_ptr + WMI_TLV_HDR_SIZE,
  13386. roaminvoke->frame_len);
  13387. WMI_LOGD(FL("flag:%d, MODE scn:%d, ap:%d, dly:%d, n_ch:%d, n_bssid:%d"),
  13388. cmd->flags, cmd->roam_scan_mode,
  13389. cmd->roam_ap_sel_mode, cmd->roam_delay,
  13390. cmd->num_chan, cmd->num_bssid);
  13391. WMI_LOGD(FL("BSSID: %pM, channel: %d"), roaminvoke->bssid, ch_hz);
  13392. if (wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  13393. WMI_ROAM_INVOKE_CMDID)) {
  13394. WMI_LOGP("%s: failed to send roam invoke command", __func__);
  13395. wmi_buf_free(wmi_buf);
  13396. return QDF_STATUS_E_FAILURE;
  13397. }
  13398. return QDF_STATUS_SUCCESS;
  13399. }
  13400. /**
  13401. * send_roam_scan_offload_cmd_tlv() - set roam offload command
  13402. * @wmi_handle: wmi handle
  13403. * @command: command
  13404. * @vdev_id: vdev id
  13405. *
  13406. * This function set roam offload command to fw.
  13407. *
  13408. * Return: CDF status
  13409. */
  13410. static QDF_STATUS send_roam_scan_offload_cmd_tlv(wmi_unified_t wmi_handle,
  13411. uint32_t command, uint32_t vdev_id)
  13412. {
  13413. QDF_STATUS status;
  13414. wmi_roam_scan_cmd_fixed_param *cmd_fp;
  13415. wmi_buf_t buf = NULL;
  13416. int len;
  13417. uint8_t *buf_ptr;
  13418. len = sizeof(wmi_roam_scan_cmd_fixed_param);
  13419. buf = wmi_buf_alloc(wmi_handle, len);
  13420. if (!buf) {
  13421. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13422. return QDF_STATUS_E_NOMEM;
  13423. }
  13424. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13425. cmd_fp = (wmi_roam_scan_cmd_fixed_param *) buf_ptr;
  13426. WMITLV_SET_HDR(&cmd_fp->tlv_header,
  13427. WMITLV_TAG_STRUC_wmi_roam_scan_cmd_fixed_param,
  13428. WMITLV_GET_STRUCT_TLVLEN(wmi_roam_scan_cmd_fixed_param));
  13429. cmd_fp->vdev_id = vdev_id;
  13430. cmd_fp->command_arg = command;
  13431. status = wmi_unified_cmd_send(wmi_handle, buf,
  13432. len, WMI_ROAM_SCAN_CMD);
  13433. if (QDF_IS_STATUS_ERROR(status)) {
  13434. WMI_LOGE("wmi_unified_cmd_send WMI_ROAM_SCAN_CMD returned Error %d",
  13435. status);
  13436. goto error;
  13437. }
  13438. WMI_LOGI("%s: WMI --> WMI_ROAM_SCAN_CMD", __func__);
  13439. return QDF_STATUS_SUCCESS;
  13440. error:
  13441. wmi_buf_free(buf);
  13442. return status;
  13443. }
  13444. /**
  13445. * send_roam_scan_offload_ap_profile_cmd_tlv() - set roam ap profile in fw
  13446. * @wmi_handle: wmi handle
  13447. * @ap_profile_p: ap profile
  13448. * @vdev_id: vdev id
  13449. *
  13450. * Send WMI_ROAM_AP_PROFILE to firmware
  13451. *
  13452. * Return: CDF status
  13453. */
  13454. static QDF_STATUS send_roam_scan_offload_ap_profile_cmd_tlv(wmi_unified_t wmi_handle,
  13455. struct ap_profile_params *ap_profile)
  13456. {
  13457. wmi_buf_t buf = NULL;
  13458. QDF_STATUS status;
  13459. int len;
  13460. uint8_t *buf_ptr;
  13461. wmi_roam_ap_profile_fixed_param *roam_ap_profile_fp;
  13462. wmi_roam_cnd_scoring_param *score_param;
  13463. wmi_ap_profile *profile;
  13464. len = sizeof(wmi_roam_ap_profile_fixed_param) + sizeof(wmi_ap_profile);
  13465. len += sizeof(*score_param);
  13466. buf = wmi_buf_alloc(wmi_handle, len);
  13467. if (!buf) {
  13468. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13469. return QDF_STATUS_E_NOMEM;
  13470. }
  13471. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13472. roam_ap_profile_fp = (wmi_roam_ap_profile_fixed_param *) buf_ptr;
  13473. WMITLV_SET_HDR(&roam_ap_profile_fp->tlv_header,
  13474. WMITLV_TAG_STRUC_wmi_roam_ap_profile_fixed_param,
  13475. WMITLV_GET_STRUCT_TLVLEN
  13476. (wmi_roam_ap_profile_fixed_param));
  13477. /* fill in threshold values */
  13478. roam_ap_profile_fp->vdev_id = ap_profile->vdev_id;
  13479. roam_ap_profile_fp->id = 0;
  13480. buf_ptr += sizeof(wmi_roam_ap_profile_fixed_param);
  13481. profile = (wmi_ap_profile *)buf_ptr;
  13482. WMITLV_SET_HDR(&profile->tlv_header,
  13483. WMITLV_TAG_STRUC_wmi_ap_profile,
  13484. WMITLV_GET_STRUCT_TLVLEN(wmi_ap_profile));
  13485. profile->flags = ap_profile->profile.flags;
  13486. profile->rssi_threshold = ap_profile->profile.rssi_threshold;
  13487. profile->ssid.ssid_len = ap_profile->profile.ssid.length;
  13488. qdf_mem_copy(profile->ssid.ssid, ap_profile->profile.ssid.mac_ssid,
  13489. profile->ssid.ssid_len);
  13490. profile->rsn_authmode = ap_profile->profile.rsn_authmode;
  13491. profile->rsn_ucastcipherset = ap_profile->profile.rsn_ucastcipherset;
  13492. profile->rsn_mcastcipherset = ap_profile->profile.rsn_mcastcipherset;
  13493. profile->rsn_mcastmgmtcipherset =
  13494. ap_profile->profile.rsn_mcastmgmtcipherset;
  13495. profile->rssi_abs_thresh = ap_profile->profile.rssi_abs_thresh;
  13496. WMI_LOGD("AP profile: flags %x rssi_threshold %d ssid:%.*s authmode %d uc cipher %d mc cipher %d mc mgmt cipher %d rssi abs thresh %d",
  13497. profile->flags, profile->rssi_threshold,
  13498. profile->ssid.ssid_len, ap_profile->profile.ssid.mac_ssid,
  13499. profile->rsn_authmode, profile->rsn_ucastcipherset,
  13500. profile->rsn_mcastcipherset, profile->rsn_mcastmgmtcipherset,
  13501. profile->rssi_abs_thresh);
  13502. buf_ptr += sizeof(wmi_ap_profile);
  13503. score_param = (wmi_roam_cnd_scoring_param *)buf_ptr;
  13504. WMITLV_SET_HDR(&score_param->tlv_header,
  13505. WMITLV_TAG_STRUC_wmi_roam_cnd_scoring_param,
  13506. WMITLV_GET_STRUCT_TLVLEN(wmi_roam_cnd_scoring_param));
  13507. score_param->disable_bitmap = ap_profile->param.disable_bitmap;
  13508. score_param->rssi_weightage_pcnt =
  13509. ap_profile->param.rssi_weightage;
  13510. score_param->ht_weightage_pcnt = ap_profile->param.ht_weightage;
  13511. score_param->vht_weightage_pcnt = ap_profile->param.vht_weightage;
  13512. score_param->he_weightage_pcnt = ap_profile->param.he_weightage;
  13513. score_param->bw_weightage_pcnt = ap_profile->param.bw_weightage;
  13514. score_param->band_weightage_pcnt = ap_profile->param.band_weightage;
  13515. score_param->nss_weightage_pcnt = ap_profile->param.nss_weightage;
  13516. score_param->esp_qbss_weightage_pcnt =
  13517. ap_profile->param.esp_qbss_weightage;
  13518. score_param->beamforming_weightage_pcnt =
  13519. ap_profile->param.beamforming_weightage;
  13520. score_param->pcl_weightage_pcnt = ap_profile->param.pcl_weightage;
  13521. score_param->oce_wan_weightage_pcnt =
  13522. ap_profile->param.oce_wan_weightage;
  13523. WMI_LOGD("Score params weightage: disable_bitmap %x rssi %d ht %d vht %d he %d BW %d band %d NSS %d ESP %d BF %d PCL %d OCE WAN %d",
  13524. score_param->disable_bitmap, score_param->rssi_weightage_pcnt,
  13525. score_param->ht_weightage_pcnt,
  13526. score_param->vht_weightage_pcnt,
  13527. score_param->he_weightage_pcnt, score_param->bw_weightage_pcnt,
  13528. score_param->band_weightage_pcnt,
  13529. score_param->nss_weightage_pcnt,
  13530. score_param->esp_qbss_weightage_pcnt,
  13531. score_param->beamforming_weightage_pcnt,
  13532. score_param->pcl_weightage_pcnt,
  13533. score_param->oce_wan_weightage_pcnt);
  13534. score_param->bw_scoring.score_pcnt = ap_profile->param.bw_index_score;
  13535. score_param->band_scoring.score_pcnt =
  13536. ap_profile->param.band_index_score;
  13537. score_param->nss_scoring.score_pcnt =
  13538. ap_profile->param.nss_index_score;
  13539. WMI_LOGD("Params index score bitmask: bw_index_score %x band_index_score %x nss_index_score %x",
  13540. score_param->bw_scoring.score_pcnt,
  13541. score_param->band_scoring.score_pcnt,
  13542. score_param->nss_scoring.score_pcnt);
  13543. score_param->rssi_scoring.best_rssi_threshold =
  13544. (-1) * ap_profile->param.rssi_scoring.best_rssi_threshold;
  13545. score_param->rssi_scoring.good_rssi_threshold =
  13546. (-1) * ap_profile->param.rssi_scoring.good_rssi_threshold;
  13547. score_param->rssi_scoring.bad_rssi_threshold =
  13548. (-1) * ap_profile->param.rssi_scoring.bad_rssi_threshold;
  13549. score_param->rssi_scoring.good_rssi_pcnt =
  13550. ap_profile->param.rssi_scoring.good_rssi_pcnt;
  13551. score_param->rssi_scoring.bad_rssi_pcnt =
  13552. ap_profile->param.rssi_scoring.bad_rssi_pcnt;
  13553. score_param->rssi_scoring.good_bucket_size =
  13554. ap_profile->param.rssi_scoring.good_bucket_size;
  13555. score_param->rssi_scoring.bad_bucket_size =
  13556. ap_profile->param.rssi_scoring.bad_bucket_size;
  13557. score_param->rssi_scoring.rssi_pref_5g_rssi_thresh =
  13558. (-1) * ap_profile->param.rssi_scoring.rssi_pref_5g_rssi_thresh;
  13559. WMI_LOGD("Rssi scoring threshold: best RSSI %d good RSSI %d bad RSSI %d prefer 5g threshold %d",
  13560. score_param->rssi_scoring.best_rssi_threshold,
  13561. score_param->rssi_scoring.good_rssi_threshold,
  13562. score_param->rssi_scoring.bad_rssi_threshold,
  13563. score_param->rssi_scoring.rssi_pref_5g_rssi_thresh);
  13564. WMI_LOGD("Good RSSI score for each slot %d bad RSSI score for each slot %d good bucket %d bad bucket %d",
  13565. score_param->rssi_scoring.good_rssi_pcnt,
  13566. score_param->rssi_scoring.bad_rssi_pcnt,
  13567. score_param->rssi_scoring.good_bucket_size,
  13568. score_param->rssi_scoring.bad_bucket_size);
  13569. score_param->esp_qbss_scoring.num_slot =
  13570. ap_profile->param.esp_qbss_scoring.num_slot;
  13571. score_param->esp_qbss_scoring.score_pcnt3_to_0 =
  13572. ap_profile->param.esp_qbss_scoring.score_pcnt3_to_0;
  13573. score_param->esp_qbss_scoring.score_pcnt7_to_4 =
  13574. ap_profile->param.esp_qbss_scoring.score_pcnt7_to_4;
  13575. score_param->esp_qbss_scoring.score_pcnt11_to_8 =
  13576. ap_profile->param.esp_qbss_scoring.score_pcnt11_to_8;
  13577. score_param->esp_qbss_scoring.score_pcnt15_to_12 =
  13578. ap_profile->param.esp_qbss_scoring.score_pcnt15_to_12;
  13579. WMI_LOGD("ESP QBSS index weight: slots %d weight 0to3 %x weight 4to7 %x weight 8to11 %x weight 12to15 %x",
  13580. score_param->esp_qbss_scoring.num_slot,
  13581. score_param->esp_qbss_scoring.score_pcnt3_to_0,
  13582. score_param->esp_qbss_scoring.score_pcnt7_to_4,
  13583. score_param->esp_qbss_scoring.score_pcnt11_to_8,
  13584. score_param->esp_qbss_scoring.score_pcnt15_to_12);
  13585. score_param->oce_wan_scoring.num_slot =
  13586. ap_profile->param.oce_wan_scoring.num_slot;
  13587. score_param->oce_wan_scoring.score_pcnt3_to_0 =
  13588. ap_profile->param.oce_wan_scoring.score_pcnt3_to_0;
  13589. score_param->oce_wan_scoring.score_pcnt7_to_4 =
  13590. ap_profile->param.oce_wan_scoring.score_pcnt7_to_4;
  13591. score_param->oce_wan_scoring.score_pcnt11_to_8 =
  13592. ap_profile->param.oce_wan_scoring.score_pcnt11_to_8;
  13593. score_param->oce_wan_scoring.score_pcnt15_to_12 =
  13594. ap_profile->param.oce_wan_scoring.score_pcnt15_to_12;
  13595. WMI_LOGD("OCE WAN index weight: slots %d weight 0to3 %x weight 4to7 %x weight 8to11 %x weight 12to15 %x",
  13596. score_param->oce_wan_scoring.num_slot,
  13597. score_param->oce_wan_scoring.score_pcnt3_to_0,
  13598. score_param->oce_wan_scoring.score_pcnt7_to_4,
  13599. score_param->oce_wan_scoring.score_pcnt11_to_8,
  13600. score_param->oce_wan_scoring.score_pcnt15_to_12);
  13601. status = wmi_unified_cmd_send(wmi_handle, buf,
  13602. len, WMI_ROAM_AP_PROFILE);
  13603. if (QDF_IS_STATUS_ERROR(status)) {
  13604. WMI_LOGE("wmi_unified_cmd_send WMI_ROAM_AP_PROFILE returned Error %d",
  13605. status);
  13606. wmi_buf_free(buf);
  13607. }
  13608. WMI_LOGI("WMI --> WMI_ROAM_AP_PROFILE and other parameters");
  13609. return status;
  13610. }
  13611. /**
  13612. * send_roam_scan_offload_scan_period_cmd_tlv() - set roam offload scan period
  13613. * @wmi_handle: wmi handle
  13614. * @scan_period: scan period
  13615. * @scan_age: scan age
  13616. * @vdev_id: vdev id
  13617. *
  13618. * Send WMI_ROAM_SCAN_PERIOD parameters to fw.
  13619. *
  13620. * Return: CDF status
  13621. */
  13622. static QDF_STATUS send_roam_scan_offload_scan_period_cmd_tlv(wmi_unified_t wmi_handle,
  13623. uint32_t scan_period,
  13624. uint32_t scan_age,
  13625. uint32_t vdev_id)
  13626. {
  13627. QDF_STATUS status;
  13628. wmi_buf_t buf = NULL;
  13629. int len;
  13630. uint8_t *buf_ptr;
  13631. wmi_roam_scan_period_fixed_param *scan_period_fp;
  13632. /* Send scan period values */
  13633. len = sizeof(wmi_roam_scan_period_fixed_param);
  13634. buf = wmi_buf_alloc(wmi_handle, len);
  13635. if (!buf) {
  13636. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13637. return QDF_STATUS_E_NOMEM;
  13638. }
  13639. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13640. scan_period_fp = (wmi_roam_scan_period_fixed_param *) buf_ptr;
  13641. WMITLV_SET_HDR(&scan_period_fp->tlv_header,
  13642. WMITLV_TAG_STRUC_wmi_roam_scan_period_fixed_param,
  13643. WMITLV_GET_STRUCT_TLVLEN
  13644. (wmi_roam_scan_period_fixed_param));
  13645. /* fill in scan period values */
  13646. scan_period_fp->vdev_id = vdev_id;
  13647. scan_period_fp->roam_scan_period = scan_period; /* 20 seconds */
  13648. scan_period_fp->roam_scan_age = scan_age;
  13649. status = wmi_unified_cmd_send(wmi_handle, buf,
  13650. len, WMI_ROAM_SCAN_PERIOD);
  13651. if (QDF_IS_STATUS_ERROR(status)) {
  13652. WMI_LOGE("wmi_unified_cmd_send WMI_ROAM_SCAN_PERIOD returned Error %d",
  13653. status);
  13654. goto error;
  13655. }
  13656. WMI_LOGI("%s: WMI --> WMI_ROAM_SCAN_PERIOD roam_scan_period=%d, roam_scan_age=%d",
  13657. __func__, scan_period, scan_age);
  13658. return QDF_STATUS_SUCCESS;
  13659. error:
  13660. wmi_buf_free(buf);
  13661. return status;
  13662. }
  13663. /**
  13664. * send_roam_scan_offload_chan_list_cmd_tlv() - set roam offload channel list
  13665. * @wmi_handle: wmi handle
  13666. * @chan_count: channel count
  13667. * @chan_list: channel list
  13668. * @list_type: list type
  13669. * @vdev_id: vdev id
  13670. *
  13671. * Set roam offload channel list.
  13672. *
  13673. * Return: CDF status
  13674. */
  13675. static QDF_STATUS send_roam_scan_offload_chan_list_cmd_tlv(wmi_unified_t wmi_handle,
  13676. uint8_t chan_count,
  13677. uint32_t *chan_list,
  13678. uint8_t list_type, uint32_t vdev_id)
  13679. {
  13680. wmi_buf_t buf = NULL;
  13681. QDF_STATUS status;
  13682. int len, list_tlv_len;
  13683. int i;
  13684. uint8_t *buf_ptr;
  13685. wmi_roam_chan_list_fixed_param *chan_list_fp;
  13686. uint32_t *roam_chan_list_array;
  13687. if (chan_count == 0) {
  13688. WMI_LOGD("%s : invalid number of channels %d", __func__,
  13689. chan_count);
  13690. return QDF_STATUS_E_EMPTY;
  13691. }
  13692. /* Channel list is a table of 2 TLV's */
  13693. list_tlv_len = WMI_TLV_HDR_SIZE + chan_count * sizeof(uint32_t);
  13694. len = sizeof(wmi_roam_chan_list_fixed_param) + list_tlv_len;
  13695. buf = wmi_buf_alloc(wmi_handle, len);
  13696. if (!buf) {
  13697. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13698. return QDF_STATUS_E_NOMEM;
  13699. }
  13700. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13701. chan_list_fp = (wmi_roam_chan_list_fixed_param *) buf_ptr;
  13702. WMITLV_SET_HDR(&chan_list_fp->tlv_header,
  13703. WMITLV_TAG_STRUC_wmi_roam_chan_list_fixed_param,
  13704. WMITLV_GET_STRUCT_TLVLEN
  13705. (wmi_roam_chan_list_fixed_param));
  13706. chan_list_fp->vdev_id = vdev_id;
  13707. chan_list_fp->num_chan = chan_count;
  13708. if (chan_count > 0 && list_type == WMI_CHANNEL_LIST_STATIC) {
  13709. /* external app is controlling channel list */
  13710. chan_list_fp->chan_list_type =
  13711. WMI_ROAM_SCAN_CHAN_LIST_TYPE_STATIC;
  13712. } else {
  13713. /* umac supplied occupied channel list in LFR */
  13714. chan_list_fp->chan_list_type =
  13715. WMI_ROAM_SCAN_CHAN_LIST_TYPE_DYNAMIC;
  13716. }
  13717. buf_ptr += sizeof(wmi_roam_chan_list_fixed_param);
  13718. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  13719. (chan_list_fp->num_chan * sizeof(uint32_t)));
  13720. roam_chan_list_array = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  13721. WMI_LOGD("%s: %d channels = ", __func__, chan_list_fp->num_chan);
  13722. for (i = 0; ((i < chan_list_fp->num_chan) &&
  13723. (i < WMI_ROAM_MAX_CHANNELS)); i++) {
  13724. roam_chan_list_array[i] = chan_list[i];
  13725. WMI_LOGI("%d,", roam_chan_list_array[i]);
  13726. }
  13727. status = wmi_unified_cmd_send(wmi_handle, buf,
  13728. len, WMI_ROAM_CHAN_LIST);
  13729. if (QDF_IS_STATUS_ERROR(status)) {
  13730. WMI_LOGE("wmi_unified_cmd_send WMI_ROAM_CHAN_LIST returned Error %d",
  13731. status);
  13732. goto error;
  13733. }
  13734. WMI_LOGD("%s: WMI --> WMI_ROAM_SCAN_CHAN_LIST", __func__);
  13735. return QDF_STATUS_SUCCESS;
  13736. error:
  13737. wmi_buf_free(buf);
  13738. return status;
  13739. }
  13740. /**
  13741. * send_per_roam_config_cmd_tlv() - set per roaming config to FW
  13742. * @wmi_handle: wmi handle
  13743. * @req_buf: per roam config buffer
  13744. *
  13745. * Return: QDF status
  13746. */
  13747. static QDF_STATUS send_per_roam_config_cmd_tlv(wmi_unified_t wmi_handle,
  13748. struct wmi_per_roam_config_req *req_buf)
  13749. {
  13750. wmi_buf_t buf = NULL;
  13751. QDF_STATUS status;
  13752. int len;
  13753. uint8_t *buf_ptr;
  13754. wmi_roam_per_config_fixed_param *wmi_per_config;
  13755. len = sizeof(wmi_roam_per_config_fixed_param);
  13756. buf = wmi_buf_alloc(wmi_handle, len);
  13757. if (!buf) {
  13758. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13759. return QDF_STATUS_E_NOMEM;
  13760. }
  13761. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13762. wmi_per_config =
  13763. (wmi_roam_per_config_fixed_param *) buf_ptr;
  13764. WMITLV_SET_HDR(&wmi_per_config->tlv_header,
  13765. WMITLV_TAG_STRUC_wmi_roam_per_config_fixed_param,
  13766. WMITLV_GET_STRUCT_TLVLEN
  13767. (wmi_roam_per_config_fixed_param));
  13768. /* fill in per roam config values */
  13769. wmi_per_config->vdev_id = req_buf->vdev_id;
  13770. wmi_per_config->enable = req_buf->per_config.enable;
  13771. wmi_per_config->high_rate_thresh =
  13772. (req_buf->per_config.tx_high_rate_thresh << 16) |
  13773. (req_buf->per_config.rx_high_rate_thresh & 0x0000ffff);
  13774. wmi_per_config->low_rate_thresh =
  13775. (req_buf->per_config.tx_low_rate_thresh << 16) |
  13776. (req_buf->per_config.rx_low_rate_thresh & 0x0000ffff);
  13777. wmi_per_config->pkt_err_rate_thresh_pct =
  13778. (req_buf->per_config.tx_rate_thresh_percnt << 16) |
  13779. (req_buf->per_config.rx_rate_thresh_percnt & 0x0000ffff);
  13780. wmi_per_config->per_rest_time = req_buf->per_config.per_rest_time;
  13781. wmi_per_config->pkt_err_rate_mon_time =
  13782. (req_buf->per_config.tx_per_mon_time << 16) |
  13783. (req_buf->per_config.rx_per_mon_time & 0x0000ffff);
  13784. wmi_per_config->min_candidate_rssi =
  13785. req_buf->per_config.min_candidate_rssi;
  13786. /* Send per roam config parameters */
  13787. status = wmi_unified_cmd_send(wmi_handle, buf,
  13788. len, WMI_ROAM_PER_CONFIG_CMDID);
  13789. if (QDF_IS_STATUS_ERROR(status)) {
  13790. WMI_LOGE("WMI_ROAM_PER_CONFIG_CMDID failed, Error %d",
  13791. status);
  13792. wmi_buf_free(buf);
  13793. return status;
  13794. }
  13795. WMI_LOGI(FL("per roam enable=%d, vdev=%d"),
  13796. req_buf->per_config.enable, req_buf->vdev_id);
  13797. return QDF_STATUS_SUCCESS;
  13798. }
  13799. /**
  13800. * send_roam_scan_offload_rssi_change_cmd_tlv() - set roam offload RSSI th
  13801. * @wmi_handle: wmi handle
  13802. * @rssi_change_thresh: RSSI Change threshold
  13803. * @bcn_rssi_weight: beacon RSSI weight
  13804. * @vdev_id: vdev id
  13805. *
  13806. * Send WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD parameters to fw.
  13807. *
  13808. * Return: CDF status
  13809. */
  13810. static QDF_STATUS send_roam_scan_offload_rssi_change_cmd_tlv(wmi_unified_t wmi_handle,
  13811. uint32_t vdev_id,
  13812. int32_t rssi_change_thresh,
  13813. uint32_t bcn_rssi_weight,
  13814. uint32_t hirssi_delay_btw_scans)
  13815. {
  13816. wmi_buf_t buf = NULL;
  13817. QDF_STATUS status;
  13818. int len;
  13819. uint8_t *buf_ptr;
  13820. wmi_roam_scan_rssi_change_threshold_fixed_param *rssi_change_fp;
  13821. /* Send rssi change parameters */
  13822. len = sizeof(wmi_roam_scan_rssi_change_threshold_fixed_param);
  13823. buf = wmi_buf_alloc(wmi_handle, len);
  13824. if (!buf) {
  13825. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13826. return QDF_STATUS_E_NOMEM;
  13827. }
  13828. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13829. rssi_change_fp =
  13830. (wmi_roam_scan_rssi_change_threshold_fixed_param *) buf_ptr;
  13831. WMITLV_SET_HDR(&rssi_change_fp->tlv_header,
  13832. WMITLV_TAG_STRUC_wmi_roam_scan_rssi_change_threshold_fixed_param,
  13833. WMITLV_GET_STRUCT_TLVLEN
  13834. (wmi_roam_scan_rssi_change_threshold_fixed_param));
  13835. /* fill in rssi change threshold (hysteresis) values */
  13836. rssi_change_fp->vdev_id = vdev_id;
  13837. rssi_change_fp->roam_scan_rssi_change_thresh = rssi_change_thresh;
  13838. rssi_change_fp->bcn_rssi_weight = bcn_rssi_weight;
  13839. rssi_change_fp->hirssi_delay_btw_scans = hirssi_delay_btw_scans;
  13840. status = wmi_unified_cmd_send(wmi_handle, buf,
  13841. len, WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD);
  13842. if (QDF_IS_STATUS_ERROR(status)) {
  13843. WMI_LOGE("wmi_unified_cmd_send WMI_ROAM_SCAN_RSSI_CHANGE_THRESHOLD returned Error %d",
  13844. status);
  13845. goto error;
  13846. }
  13847. WMI_LOGI(FL("roam_scan_rssi_change_thresh=%d, bcn_rssi_weight=%d"),
  13848. rssi_change_thresh, bcn_rssi_weight);
  13849. WMI_LOGI(FL("hirssi_delay_btw_scans=%d"), hirssi_delay_btw_scans);
  13850. return QDF_STATUS_SUCCESS;
  13851. error:
  13852. wmi_buf_free(buf);
  13853. return status;
  13854. }
  13855. /**
  13856. * send_power_dbg_cmd_tlv() - send power debug commands
  13857. * @wmi_handle: wmi handle
  13858. * @param: wmi power debug parameter
  13859. *
  13860. * Send WMI_POWER_DEBUG_CMDID parameters to fw.
  13861. *
  13862. * Return: QDF_STATUS_SUCCESS on success, QDF_STATUS_E_** on error
  13863. */
  13864. static QDF_STATUS send_power_dbg_cmd_tlv(wmi_unified_t wmi_handle,
  13865. struct wmi_power_dbg_params *param)
  13866. {
  13867. wmi_buf_t buf = NULL;
  13868. QDF_STATUS status;
  13869. int len, args_tlv_len;
  13870. uint8_t *buf_ptr;
  13871. uint8_t i;
  13872. wmi_pdev_wal_power_debug_cmd_fixed_param *cmd;
  13873. uint32_t *cmd_args;
  13874. /* Prepare and send power debug cmd parameters */
  13875. args_tlv_len = WMI_TLV_HDR_SIZE + param->num_args * sizeof(uint32_t);
  13876. len = sizeof(*cmd) + args_tlv_len;
  13877. buf = wmi_buf_alloc(wmi_handle, len);
  13878. if (!buf) {
  13879. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  13880. return QDF_STATUS_E_NOMEM;
  13881. }
  13882. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  13883. cmd = (wmi_pdev_wal_power_debug_cmd_fixed_param *) buf_ptr;
  13884. WMITLV_SET_HDR(&cmd->tlv_header,
  13885. WMITLV_TAG_STRUC_wmi_pdev_wal_power_debug_cmd_fixed_param,
  13886. WMITLV_GET_STRUCT_TLVLEN
  13887. (wmi_pdev_wal_power_debug_cmd_fixed_param));
  13888. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  13889. param->pdev_id);
  13890. cmd->module_id = param->module_id;
  13891. cmd->num_args = param->num_args;
  13892. buf_ptr += sizeof(*cmd);
  13893. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  13894. (param->num_args * sizeof(uint32_t)));
  13895. cmd_args = (uint32_t *) (buf_ptr + WMI_TLV_HDR_SIZE);
  13896. WMI_LOGI("%s: %d num of args = ", __func__, param->num_args);
  13897. for (i = 0; (i < param->num_args && i < WMI_MAX_POWER_DBG_ARGS); i++) {
  13898. cmd_args[i] = param->args[i];
  13899. WMI_LOGI("%d,", param->args[i]);
  13900. }
  13901. status = wmi_unified_cmd_send(wmi_handle, buf,
  13902. len, WMI_PDEV_WAL_POWER_DEBUG_CMDID);
  13903. if (QDF_IS_STATUS_ERROR(status)) {
  13904. WMI_LOGE("wmi_unified_cmd_send WMI_PDEV_WAL_POWER_DEBUG_CMDID returned Error %d",
  13905. status);
  13906. goto error;
  13907. }
  13908. return QDF_STATUS_SUCCESS;
  13909. error:
  13910. wmi_buf_free(buf);
  13911. return status;
  13912. }
  13913. /**
  13914. * send_multiple_vdev_restart_req_cmd_tlv() - send multiple vdev restart req
  13915. * @wmi_handle: wmi handle
  13916. * @param: wmi multiple vdev restart req param
  13917. *
  13918. * Send WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID parameters to fw.
  13919. *
  13920. * Return: QDF_STATUS_SUCCESS on success, QDF_STATUS_E_** on error
  13921. */
  13922. static QDF_STATUS send_multiple_vdev_restart_req_cmd_tlv(
  13923. wmi_unified_t wmi_handle,
  13924. struct multiple_vdev_restart_params *param)
  13925. {
  13926. wmi_buf_t buf;
  13927. QDF_STATUS qdf_status;
  13928. wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param *cmd;
  13929. int i;
  13930. uint8_t *buf_ptr;
  13931. uint32_t *vdev_ids;
  13932. wmi_channel *chan_info;
  13933. struct channel_param *tchan_info;
  13934. uint16_t len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  13935. len += sizeof(wmi_channel);
  13936. if (param->num_vdevs)
  13937. len += sizeof(uint32_t) * param->num_vdevs;
  13938. buf = wmi_buf_alloc(wmi_handle, len);
  13939. if (!buf) {
  13940. WMI_LOGE("Failed to allocate memory\n");
  13941. qdf_status = QDF_STATUS_E_NOMEM;
  13942. goto end;
  13943. }
  13944. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  13945. cmd = (wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param *)
  13946. buf_ptr;
  13947. WMITLV_SET_HDR(&cmd->tlv_header,
  13948. WMITLV_TAG_STRUC_wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param,
  13949. WMITLV_GET_STRUCT_TLVLEN
  13950. (wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param));
  13951. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  13952. param->pdev_id);
  13953. cmd->requestor_id = param->requestor_id;
  13954. cmd->disable_hw_ack = param->disable_hw_ack;
  13955. cmd->cac_duration_ms = param->cac_duration_ms;
  13956. cmd->num_vdevs = param->num_vdevs;
  13957. WMI_LOGI("%s:cmd->pdev_id: %d ,cmd->requestor_id: %d ,"
  13958. "cmd->disable_hw_ack: %d , cmd->cac_duration_ms:%d ,"
  13959. " cmd->num_vdevs: %d ",
  13960. __func__, cmd->pdev_id, cmd->requestor_id,
  13961. cmd->disable_hw_ack, cmd->cac_duration_ms, cmd->num_vdevs);
  13962. buf_ptr += sizeof(*cmd);
  13963. WMITLV_SET_HDR(buf_ptr,
  13964. WMITLV_TAG_ARRAY_UINT32,
  13965. sizeof(uint32_t) * param->num_vdevs);
  13966. vdev_ids = (uint32_t *)(buf_ptr + WMI_TLV_HDR_SIZE);
  13967. for (i = 0; i < param->num_vdevs; i++) {
  13968. vdev_ids[i] = param->vdev_ids[i];
  13969. }
  13970. buf_ptr += (sizeof(uint32_t) * param->num_vdevs) + WMI_TLV_HDR_SIZE;
  13971. WMITLV_SET_HDR(buf_ptr,
  13972. WMITLV_TAG_STRUC_wmi_channel,
  13973. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  13974. chan_info = (wmi_channel *)buf_ptr;
  13975. tchan_info = &(param->ch_param);
  13976. chan_info->mhz = tchan_info->mhz;
  13977. chan_info->band_center_freq1 = tchan_info->cfreq1;
  13978. chan_info->band_center_freq2 = tchan_info->cfreq2;
  13979. if (tchan_info->is_chan_passive)
  13980. WMI_SET_CHANNEL_FLAG(chan_info,
  13981. WMI_CHAN_FLAG_PASSIVE);
  13982. if (tchan_info->dfs_set)
  13983. WMI_SET_CHANNEL_FLAG(chan_info, WMI_CHAN_FLAG_DFS);
  13984. if (tchan_info->allow_vht)
  13985. WMI_SET_CHANNEL_FLAG(chan_info,
  13986. WMI_CHAN_FLAG_ALLOW_VHT);
  13987. else if (tchan_info->allow_ht)
  13988. WMI_SET_CHANNEL_FLAG(chan_info,
  13989. WMI_CHAN_FLAG_ALLOW_HT);
  13990. WMI_SET_CHANNEL_MODE(chan_info, tchan_info->phy_mode);
  13991. WMI_SET_CHANNEL_MIN_POWER(chan_info, tchan_info->minpower);
  13992. WMI_SET_CHANNEL_MAX_POWER(chan_info, tchan_info->maxpower);
  13993. WMI_SET_CHANNEL_REG_POWER(chan_info, tchan_info->maxregpower);
  13994. WMI_SET_CHANNEL_ANTENNA_MAX(chan_info, tchan_info->antennamax);
  13995. WMI_SET_CHANNEL_REG_CLASSID(chan_info, tchan_info->reg_class_id);
  13996. WMI_SET_CHANNEL_MAX_TX_POWER(chan_info, tchan_info->maxregpower);
  13997. WMI_LOGI("%s:tchan_info->is_chan_passive: %d ,"
  13998. "tchan_info->dfs_set : %d ,tchan_info->allow_vht:%d ,"
  13999. "tchan_info->allow_ht: %d ,tchan_info->antennamax: %d ,"
  14000. "tchan_info->phy_mode: %d ,tchan_info->minpower: %d,"
  14001. "tchan_info->maxpower: %d ,tchan_info->maxregpower: %d ,"
  14002. "tchan_info->reg_class_id: %d ,"
  14003. "tchan_info->maxregpower : %d ", __func__,
  14004. tchan_info->is_chan_passive, tchan_info->dfs_set,
  14005. tchan_info->allow_vht, tchan_info->allow_ht,
  14006. tchan_info->antennamax, tchan_info->phy_mode,
  14007. tchan_info->minpower, tchan_info->maxpower,
  14008. tchan_info->maxregpower, tchan_info->reg_class_id,
  14009. tchan_info->maxregpower);
  14010. qdf_status = wmi_unified_cmd_send(wmi_handle, buf, len,
  14011. WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID);
  14012. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  14013. WMI_LOGE("%s: Failed to send\n", __func__);
  14014. wmi_buf_free(buf);
  14015. }
  14016. end:
  14017. return qdf_status;
  14018. }
  14019. /**
  14020. * send_dfs_phyerr_offload_en_cmd_tlv() - send dfs phyerr offload enable cmd
  14021. * @wmi_handle: wmi handle
  14022. * @pdev_id: pdev id
  14023. *
  14024. * Send WMI_PDEV_DFS_PHYERR_OFFLOAD_ENABLE_CMDID command to firmware.
  14025. *
  14026. * Return: QDF_STATUS_SUCCESS on success, QDF_STATUS_E_** on error
  14027. */
  14028. static QDF_STATUS send_dfs_phyerr_offload_en_cmd_tlv(wmi_unified_t wmi_handle,
  14029. uint32_t pdev_id)
  14030. {
  14031. wmi_pdev_dfs_phyerr_offload_enable_cmd_fixed_param *cmd;
  14032. wmi_buf_t buf;
  14033. uint16_t len;
  14034. QDF_STATUS ret;
  14035. len = sizeof(*cmd);
  14036. buf = wmi_buf_alloc(wmi_handle, len);
  14037. WMI_LOGI("%s: pdev_id=%d", __func__, pdev_id);
  14038. if (!buf) {
  14039. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  14040. return QDF_STATUS_E_NOMEM;
  14041. }
  14042. cmd = (wmi_pdev_dfs_phyerr_offload_enable_cmd_fixed_param *)
  14043. wmi_buf_data(buf);
  14044. WMITLV_SET_HDR(&cmd->tlv_header,
  14045. WMITLV_TAG_STRUC_wmi_pdev_dfs_phyerr_offload_enable_cmd_fixed_param,
  14046. WMITLV_GET_STRUCT_TLVLEN(
  14047. wmi_pdev_dfs_phyerr_offload_enable_cmd_fixed_param));
  14048. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(pdev_id);
  14049. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  14050. WMI_PDEV_DFS_PHYERR_OFFLOAD_ENABLE_CMDID);
  14051. if (QDF_IS_STATUS_ERROR(ret)) {
  14052. WMI_LOGE("%s: Failed to send cmd to fw, ret=%d, pdev_id=%d",
  14053. __func__, ret, pdev_id);
  14054. wmi_buf_free(buf);
  14055. return QDF_STATUS_E_FAILURE;
  14056. }
  14057. return QDF_STATUS_SUCCESS;
  14058. }
  14059. /**
  14060. * send_dfs_phyerr_offload_dis_cmd_tlv() - send dfs phyerr offload disable cmd
  14061. * @wmi_handle: wmi handle
  14062. * @pdev_id: pdev id
  14063. *
  14064. * Send WMI_PDEV_DFS_PHYERR_OFFLOAD_DISABLE_CMDID command to firmware.
  14065. *
  14066. * Return: QDF_STATUS_SUCCESS on success, QDF_STATUS_E_** on error
  14067. */
  14068. static QDF_STATUS send_dfs_phyerr_offload_dis_cmd_tlv(wmi_unified_t wmi_handle,
  14069. uint32_t pdev_id)
  14070. {
  14071. wmi_pdev_dfs_phyerr_offload_disable_cmd_fixed_param *cmd;
  14072. wmi_buf_t buf;
  14073. uint16_t len;
  14074. QDF_STATUS ret;
  14075. len = sizeof(*cmd);
  14076. buf = wmi_buf_alloc(wmi_handle, len);
  14077. WMI_LOGI("%s: pdev_id=%d", __func__, pdev_id);
  14078. if (!buf) {
  14079. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  14080. return QDF_STATUS_E_NOMEM;
  14081. }
  14082. cmd = (wmi_pdev_dfs_phyerr_offload_disable_cmd_fixed_param *)
  14083. wmi_buf_data(buf);
  14084. WMITLV_SET_HDR(&cmd->tlv_header,
  14085. WMITLV_TAG_STRUC_wmi_pdev_dfs_phyerr_offload_disable_cmd_fixed_param,
  14086. WMITLV_GET_STRUCT_TLVLEN(
  14087. wmi_pdev_dfs_phyerr_offload_disable_cmd_fixed_param));
  14088. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(pdev_id);
  14089. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  14090. WMI_PDEV_DFS_PHYERR_OFFLOAD_DISABLE_CMDID);
  14091. if (QDF_IS_STATUS_ERROR(ret)) {
  14092. WMI_LOGE("%s: Failed to send cmd to fw, ret=%d, pdev_id=%d",
  14093. __func__, ret, pdev_id);
  14094. wmi_buf_free(buf);
  14095. return QDF_STATUS_E_FAILURE;
  14096. }
  14097. return QDF_STATUS_SUCCESS;
  14098. }
  14099. /**
  14100. * init_cmd_send_tlv() - send initialization cmd to fw
  14101. * @wmi_handle: wmi handle
  14102. * @param param: pointer to wmi init param
  14103. *
  14104. * Return: QDF_STATUS_SUCCESS for success or error code
  14105. */
  14106. static QDF_STATUS init_cmd_send_tlv(wmi_unified_t wmi_handle,
  14107. struct wmi_init_cmd_param *param)
  14108. {
  14109. wmi_buf_t buf;
  14110. wmi_init_cmd_fixed_param *cmd;
  14111. uint8_t *buf_ptr;
  14112. wmi_resource_config *resource_cfg;
  14113. wlan_host_memory_chunk *host_mem_chunks;
  14114. uint32_t mem_chunk_len = 0, hw_mode_len = 0;
  14115. uint16_t idx;
  14116. int len;
  14117. QDF_STATUS ret;
  14118. len = sizeof(*cmd) + sizeof(wmi_resource_config) +
  14119. WMI_TLV_HDR_SIZE;
  14120. mem_chunk_len = (sizeof(wlan_host_memory_chunk) * MAX_MEM_CHUNKS);
  14121. if (param->hw_mode_id != WMI_HOST_HW_MODE_MAX)
  14122. hw_mode_len = sizeof(wmi_pdev_set_hw_mode_cmd_fixed_param) +
  14123. WMI_TLV_HDR_SIZE +
  14124. (param->num_band_to_mac * sizeof(wmi_pdev_band_to_mac));
  14125. buf = wmi_buf_alloc(wmi_handle, len + mem_chunk_len + hw_mode_len);
  14126. if (!buf) {
  14127. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  14128. return QDF_STATUS_E_FAILURE;
  14129. }
  14130. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  14131. cmd = (wmi_init_cmd_fixed_param *) buf_ptr;
  14132. resource_cfg = (wmi_resource_config *) (buf_ptr + sizeof(*cmd));
  14133. host_mem_chunks = (wlan_host_memory_chunk *)
  14134. (buf_ptr + sizeof(*cmd) + sizeof(wmi_resource_config)
  14135. + WMI_TLV_HDR_SIZE);
  14136. WMITLV_SET_HDR(&cmd->tlv_header,
  14137. WMITLV_TAG_STRUC_wmi_init_cmd_fixed_param,
  14138. WMITLV_GET_STRUCT_TLVLEN(wmi_init_cmd_fixed_param));
  14139. wmi_copy_resource_config(resource_cfg, param->res_cfg);
  14140. WMITLV_SET_HDR(&resource_cfg->tlv_header,
  14141. WMITLV_TAG_STRUC_wmi_resource_config,
  14142. WMITLV_GET_STRUCT_TLVLEN(wmi_resource_config));
  14143. for (idx = 0; idx < param->num_mem_chunks; ++idx) {
  14144. WMITLV_SET_HDR(&(host_mem_chunks[idx].tlv_header),
  14145. WMITLV_TAG_STRUC_wlan_host_memory_chunk,
  14146. WMITLV_GET_STRUCT_TLVLEN
  14147. (wlan_host_memory_chunk));
  14148. host_mem_chunks[idx].ptr = param->mem_chunks[idx].paddr;
  14149. host_mem_chunks[idx].size = param->mem_chunks[idx].len;
  14150. host_mem_chunks[idx].req_id = param->mem_chunks[idx].req_id;
  14151. QDF_TRACE(QDF_MODULE_ID_ANY, QDF_TRACE_LEVEL_DEBUG,
  14152. "chunk %d len %d requested ,ptr 0x%x ",
  14153. idx, host_mem_chunks[idx].size,
  14154. host_mem_chunks[idx].ptr);
  14155. }
  14156. cmd->num_host_mem_chunks = param->num_mem_chunks;
  14157. len += (param->num_mem_chunks * sizeof(wlan_host_memory_chunk));
  14158. WMITLV_SET_HDR((buf_ptr + sizeof(*cmd) + sizeof(wmi_resource_config)),
  14159. WMITLV_TAG_ARRAY_STRUC,
  14160. (sizeof(wlan_host_memory_chunk) *
  14161. param->num_mem_chunks));
  14162. /* Fill hw mode id config */
  14163. buf_ptr = copy_hw_mode_in_init_cmd(wmi_handle, buf_ptr, &len, param);
  14164. /* Fill fw_abi_vers */
  14165. copy_fw_abi_version_tlv(wmi_handle, cmd);
  14166. ret = wmi_unified_cmd_send(wmi_handle, buf, len, WMI_INIT_CMDID);
  14167. if (QDF_IS_STATUS_ERROR(ret)) {
  14168. WMI_LOGE("wmi_unified_cmd_send WMI_INIT_CMDID returned Error %d",
  14169. ret);
  14170. wmi_buf_free(buf);
  14171. }
  14172. return ret;
  14173. }
  14174. /**
  14175. * send_addba_send_cmd_tlv() - send addba send command to fw
  14176. * @wmi_handle: wmi handle
  14177. * @param: pointer to delba send params
  14178. * @macaddr: peer mac address
  14179. *
  14180. * Send WMI_ADDBA_SEND_CMDID command to firmware
  14181. * Return: QDF_STATUS_SUCCESS on success. QDF_STATUS_E** on error
  14182. */
  14183. static QDF_STATUS
  14184. send_addba_send_cmd_tlv(wmi_unified_t wmi_handle,
  14185. uint8_t macaddr[IEEE80211_ADDR_LEN],
  14186. struct addba_send_params *param)
  14187. {
  14188. wmi_addba_send_cmd_fixed_param *cmd;
  14189. wmi_buf_t buf;
  14190. uint16_t len;
  14191. QDF_STATUS ret;
  14192. len = sizeof(*cmd);
  14193. buf = wmi_buf_alloc(wmi_handle, len);
  14194. if (!buf) {
  14195. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  14196. return QDF_STATUS_E_NOMEM;
  14197. }
  14198. cmd = (wmi_addba_send_cmd_fixed_param *)wmi_buf_data(buf);
  14199. WMITLV_SET_HDR(&cmd->tlv_header,
  14200. WMITLV_TAG_STRUC_wmi_addba_send_cmd_fixed_param,
  14201. WMITLV_GET_STRUCT_TLVLEN(wmi_addba_send_cmd_fixed_param));
  14202. cmd->vdev_id = param->vdev_id;
  14203. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  14204. cmd->tid = param->tidno;
  14205. cmd->buffersize = param->buffersize;
  14206. ret = wmi_unified_cmd_send(wmi_handle, buf, len, WMI_ADDBA_SEND_CMDID);
  14207. if (QDF_IS_STATUS_ERROR(ret)) {
  14208. WMI_LOGE("%s: Failed to send cmd to fw, ret=%d", __func__, ret);
  14209. wmi_buf_free(buf);
  14210. return QDF_STATUS_E_FAILURE;
  14211. }
  14212. return QDF_STATUS_SUCCESS;
  14213. }
  14214. /**
  14215. * send_delba_send_cmd_tlv() - send delba send command to fw
  14216. * @wmi_handle: wmi handle
  14217. * @param: pointer to delba send params
  14218. * @macaddr: peer mac address
  14219. *
  14220. * Send WMI_DELBA_SEND_CMDID command to firmware
  14221. * Return: QDF_STATUS_SUCCESS on success. QDF_STATUS_E** on error
  14222. */
  14223. static QDF_STATUS
  14224. send_delba_send_cmd_tlv(wmi_unified_t wmi_handle,
  14225. uint8_t macaddr[IEEE80211_ADDR_LEN],
  14226. struct delba_send_params *param)
  14227. {
  14228. wmi_delba_send_cmd_fixed_param *cmd;
  14229. wmi_buf_t buf;
  14230. uint16_t len;
  14231. QDF_STATUS ret;
  14232. len = sizeof(*cmd);
  14233. buf = wmi_buf_alloc(wmi_handle, len);
  14234. if (!buf) {
  14235. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  14236. return QDF_STATUS_E_NOMEM;
  14237. }
  14238. cmd = (wmi_delba_send_cmd_fixed_param *)wmi_buf_data(buf);
  14239. WMITLV_SET_HDR(&cmd->tlv_header,
  14240. WMITLV_TAG_STRUC_wmi_delba_send_cmd_fixed_param,
  14241. WMITLV_GET_STRUCT_TLVLEN(wmi_delba_send_cmd_fixed_param));
  14242. cmd->vdev_id = param->vdev_id;
  14243. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  14244. cmd->tid = param->tidno;
  14245. cmd->initiator = param->initiator;
  14246. cmd->reasoncode = param->reasoncode;
  14247. ret = wmi_unified_cmd_send(wmi_handle, buf, len, WMI_DELBA_SEND_CMDID);
  14248. if (QDF_IS_STATUS_ERROR(ret)) {
  14249. WMI_LOGE("%s: Failed to send cmd to fw, ret=%d", __func__, ret);
  14250. wmi_buf_free(buf);
  14251. return QDF_STATUS_E_FAILURE;
  14252. }
  14253. return QDF_STATUS_SUCCESS;
  14254. }
  14255. /**
  14256. * send_addba_clearresponse_cmd_tlv() - send addba clear response command
  14257. * to fw
  14258. * @wmi_handle: wmi handle
  14259. * @param: pointer to addba clearresp params
  14260. * @macaddr: peer mac address
  14261. * Return: 0 for success or error code
  14262. */
  14263. static QDF_STATUS
  14264. send_addba_clearresponse_cmd_tlv(wmi_unified_t wmi_handle,
  14265. uint8_t macaddr[IEEE80211_ADDR_LEN],
  14266. struct addba_clearresponse_params *param)
  14267. {
  14268. wmi_addba_clear_resp_cmd_fixed_param *cmd;
  14269. wmi_buf_t buf;
  14270. uint16_t len;
  14271. QDF_STATUS ret;
  14272. len = sizeof(*cmd);
  14273. buf = wmi_buf_alloc(wmi_handle, len);
  14274. if (!buf) {
  14275. WMI_LOGE("%s: wmi_buf_alloc failed\n", __func__);
  14276. return QDF_STATUS_E_FAILURE;
  14277. }
  14278. cmd = (wmi_addba_clear_resp_cmd_fixed_param *)wmi_buf_data(buf);
  14279. WMITLV_SET_HDR(&cmd->tlv_header,
  14280. WMITLV_TAG_STRUC_wmi_addba_clear_resp_cmd_fixed_param,
  14281. WMITLV_GET_STRUCT_TLVLEN(wmi_addba_clear_resp_cmd_fixed_param));
  14282. cmd->vdev_id = param->vdev_id;
  14283. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  14284. ret = wmi_unified_cmd_send(wmi_handle,
  14285. buf, len, WMI_ADDBA_CLEAR_RESP_CMDID);
  14286. if (QDF_IS_STATUS_ERROR(ret)) {
  14287. WMI_LOGE("%s: Failed to send cmd to fw, ret=%d", __func__, ret);
  14288. wmi_buf_free(buf);
  14289. return QDF_STATUS_E_FAILURE;
  14290. }
  14291. return QDF_STATUS_SUCCESS;
  14292. }
  14293. /**
  14294. * send_bcn_offload_control_cmd_tlv - send beacon ofload control cmd to fw
  14295. * @wmi_handle: wmi handle
  14296. * @bcn_ctrl_param: pointer to bcn_offload_control param
  14297. *
  14298. * Return: QDF_STATUS_SUCCESS for success or error code
  14299. */
  14300. static
  14301. QDF_STATUS send_bcn_offload_control_cmd_tlv(wmi_unified_t wmi_handle,
  14302. struct bcn_offload_control *bcn_ctrl_param)
  14303. {
  14304. wmi_buf_t buf;
  14305. wmi_bcn_offload_ctrl_cmd_fixed_param *cmd;
  14306. QDF_STATUS ret;
  14307. uint32_t len;
  14308. len = sizeof(*cmd);
  14309. buf = wmi_buf_alloc(wmi_handle, len);
  14310. if (!buf) {
  14311. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  14312. return QDF_STATUS_E_FAILURE;
  14313. }
  14314. cmd = (wmi_bcn_offload_ctrl_cmd_fixed_param *) wmi_buf_data(buf);
  14315. WMITLV_SET_HDR(&cmd->tlv_header,
  14316. WMITLV_TAG_STRUC_wmi_bcn_offload_ctrl_cmd_fixed_param,
  14317. WMITLV_GET_STRUCT_TLVLEN
  14318. (wmi_bcn_offload_ctrl_cmd_fixed_param));
  14319. cmd->vdev_id = bcn_ctrl_param->vdev_id;
  14320. switch (bcn_ctrl_param->bcn_ctrl_op) {
  14321. case BCN_OFFLD_CTRL_TX_DISABLE:
  14322. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_TX_DISABLE;
  14323. break;
  14324. case BCN_OFFLD_CTRL_TX_ENABLE:
  14325. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_TX_ENABLE;
  14326. break;
  14327. case BCN_OFFLD_CTRL_SWBA_DISABLE:
  14328. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_SWBA_EVENT_DISABLE;
  14329. break;
  14330. case BCN_OFFLD_CTRL_SWBA_ENABLE:
  14331. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_SWBA_EVENT_ENABLE;
  14332. break;
  14333. default:
  14334. WMI_LOGE("WMI_BCN_OFFLOAD_CTRL_CMDID unknown CTRL Operation %d",
  14335. bcn_ctrl_param->bcn_ctrl_op);
  14336. wmi_buf_free(buf);
  14337. return QDF_STATUS_E_FAILURE;
  14338. break;
  14339. }
  14340. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  14341. WMI_BCN_OFFLOAD_CTRL_CMDID);
  14342. if (QDF_IS_STATUS_ERROR(ret)) {
  14343. WMI_LOGE("WMI_BCN_OFFLOAD_CTRL_CMDID send returned Error %d",
  14344. ret);
  14345. wmi_buf_free(buf);
  14346. }
  14347. return ret;
  14348. }
  14349. #ifdef WLAN_FEATURE_NAN_CONVERGENCE
  14350. static QDF_STATUS nan_ndp_initiator_req_tlv(wmi_unified_t wmi_handle,
  14351. struct nan_datapath_initiator_req *ndp_req)
  14352. {
  14353. uint16_t len;
  14354. wmi_buf_t buf;
  14355. uint8_t *tlv_ptr;
  14356. QDF_STATUS status;
  14357. wmi_channel *ch_tlv;
  14358. wmi_ndp_initiator_req_fixed_param *cmd;
  14359. uint32_t passphrase_len, service_name_len;
  14360. uint32_t ndp_cfg_len, ndp_app_info_len, pmk_len;
  14361. wmi_ndp_transport_ip_param *tcp_ip_param;
  14362. /*
  14363. * WMI command expects 4 byte alligned len:
  14364. * round up ndp_cfg_len and ndp_app_info_len to 4 bytes
  14365. */
  14366. ndp_cfg_len = qdf_roundup(ndp_req->ndp_config.ndp_cfg_len, 4);
  14367. ndp_app_info_len = qdf_roundup(ndp_req->ndp_info.ndp_app_info_len, 4);
  14368. pmk_len = qdf_roundup(ndp_req->pmk.pmk_len, 4);
  14369. passphrase_len = qdf_roundup(ndp_req->passphrase.passphrase_len, 4);
  14370. service_name_len =
  14371. qdf_roundup(ndp_req->service_name.service_name_len, 4);
  14372. /* allocated memory for fixed params as well as variable size data */
  14373. len = sizeof(*cmd) + sizeof(*ch_tlv) + (5 * WMI_TLV_HDR_SIZE)
  14374. + ndp_cfg_len + ndp_app_info_len + pmk_len
  14375. + passphrase_len + service_name_len;
  14376. if (ndp_req->is_ipv6_addr_present)
  14377. len += sizeof(*tcp_ip_param);
  14378. buf = wmi_buf_alloc(wmi_handle, len);
  14379. if (!buf) {
  14380. WMI_LOGE("wmi_buf_alloc failed");
  14381. return QDF_STATUS_E_NOMEM;
  14382. }
  14383. cmd = (wmi_ndp_initiator_req_fixed_param *) wmi_buf_data(buf);
  14384. WMITLV_SET_HDR(&cmd->tlv_header,
  14385. WMITLV_TAG_STRUC_wmi_ndp_initiator_req_fixed_param,
  14386. WMITLV_GET_STRUCT_TLVLEN(
  14387. wmi_ndp_initiator_req_fixed_param));
  14388. cmd->vdev_id = wlan_vdev_get_id(ndp_req->vdev);
  14389. cmd->transaction_id = ndp_req->transaction_id;
  14390. cmd->service_instance_id = ndp_req->service_instance_id;
  14391. WMI_CHAR_ARRAY_TO_MAC_ADDR(ndp_req->peer_discovery_mac_addr.bytes,
  14392. &cmd->peer_discovery_mac_addr);
  14393. cmd->ndp_cfg_len = ndp_req->ndp_config.ndp_cfg_len;
  14394. cmd->ndp_app_info_len = ndp_req->ndp_info.ndp_app_info_len;
  14395. cmd->ndp_channel_cfg = ndp_req->channel_cfg;
  14396. cmd->nan_pmk_len = ndp_req->pmk.pmk_len;
  14397. cmd->nan_csid = ndp_req->ncs_sk_type;
  14398. cmd->nan_passphrase_len = ndp_req->passphrase.passphrase_len;
  14399. cmd->nan_servicename_len = ndp_req->service_name.service_name_len;
  14400. ch_tlv = (wmi_channel *)&cmd[1];
  14401. WMITLV_SET_HDR(ch_tlv, WMITLV_TAG_STRUC_wmi_channel,
  14402. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  14403. ch_tlv->mhz = ndp_req->channel;
  14404. tlv_ptr = (uint8_t *)&ch_tlv[1];
  14405. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, ndp_cfg_len);
  14406. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14407. ndp_req->ndp_config.ndp_cfg, cmd->ndp_cfg_len);
  14408. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + ndp_cfg_len;
  14409. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, ndp_app_info_len);
  14410. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14411. ndp_req->ndp_info.ndp_app_info, cmd->ndp_app_info_len);
  14412. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + ndp_app_info_len;
  14413. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, pmk_len);
  14414. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE], ndp_req->pmk.pmk,
  14415. cmd->nan_pmk_len);
  14416. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + pmk_len;
  14417. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, passphrase_len);
  14418. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE], ndp_req->passphrase.passphrase,
  14419. cmd->nan_passphrase_len);
  14420. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + passphrase_len;
  14421. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, service_name_len);
  14422. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14423. ndp_req->service_name.service_name,
  14424. cmd->nan_servicename_len);
  14425. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + service_name_len;
  14426. if (ndp_req->is_ipv6_addr_present) {
  14427. tcp_ip_param = (wmi_ndp_transport_ip_param *)tlv_ptr;
  14428. WMITLV_SET_HDR(tcp_ip_param,
  14429. WMITLV_TAG_STRUC_wmi_ndp_transport_ip_param,
  14430. WMITLV_GET_STRUCT_TLVLEN(
  14431. wmi_ndp_transport_ip_param));
  14432. tcp_ip_param->ipv6_addr_present = true;
  14433. qdf_mem_copy(tcp_ip_param->ipv6_intf_addr,
  14434. ndp_req->ipv6_addr, WMI_NDP_IPV6_INTF_ADDR_LEN);
  14435. }
  14436. WMI_LOGD(FL("IPv6 addr present: %d, addr: %pI6"),
  14437. ndp_req->is_ipv6_addr_present, ndp_req->ipv6_addr);
  14438. WMI_LOGD("vdev_id = %d, transaction_id: %d, service_instance_id: %d, ch: %d, ch_cfg: %d, csid: %d",
  14439. cmd->vdev_id, cmd->transaction_id, cmd->service_instance_id,
  14440. ch_tlv->mhz, cmd->ndp_channel_cfg, cmd->nan_csid);
  14441. WMI_LOGD("peer mac addr: mac_addr31to0: 0x%x, mac_addr47to32: 0x%x",
  14442. cmd->peer_discovery_mac_addr.mac_addr31to0,
  14443. cmd->peer_discovery_mac_addr.mac_addr47to32);
  14444. WMI_LOGD("ndp_config len: %d", cmd->ndp_cfg_len);
  14445. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14446. ndp_req->ndp_config.ndp_cfg,
  14447. ndp_req->ndp_config.ndp_cfg_len);
  14448. WMI_LOGD("ndp_app_info len: %d", cmd->ndp_app_info_len);
  14449. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14450. ndp_req->ndp_info.ndp_app_info,
  14451. ndp_req->ndp_info.ndp_app_info_len);
  14452. WMI_LOGD("pmk len: %d", cmd->nan_pmk_len);
  14453. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14454. ndp_req->pmk.pmk, cmd->nan_pmk_len);
  14455. WMI_LOGD("pass phrase len: %d", cmd->nan_passphrase_len);
  14456. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14457. ndp_req->passphrase.passphrase,
  14458. cmd->nan_passphrase_len);
  14459. WMI_LOGD("service name len: %d", cmd->nan_servicename_len);
  14460. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14461. ndp_req->service_name.service_name,
  14462. cmd->nan_servicename_len);
  14463. WMI_LOGD("sending WMI_NDP_INITIATOR_REQ_CMDID(0x%X)",
  14464. WMI_NDP_INITIATOR_REQ_CMDID);
  14465. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  14466. WMI_NDP_INITIATOR_REQ_CMDID);
  14467. if (QDF_IS_STATUS_ERROR(status)) {
  14468. WMI_LOGE("WMI_NDP_INITIATOR_REQ_CMDID failed, ret: %d", status);
  14469. wmi_buf_free(buf);
  14470. }
  14471. return status;
  14472. }
  14473. static QDF_STATUS nan_ndp_responder_req_tlv(wmi_unified_t wmi_handle,
  14474. struct nan_datapath_responder_req *req)
  14475. {
  14476. uint16_t len;
  14477. wmi_buf_t buf;
  14478. uint8_t *tlv_ptr;
  14479. QDF_STATUS status;
  14480. wmi_ndp_responder_req_fixed_param *cmd;
  14481. wmi_ndp_transport_ip_param *tcp_ip_param;
  14482. uint32_t passphrase_len, service_name_len;
  14483. uint32_t vdev_id = 0, ndp_cfg_len, ndp_app_info_len, pmk_len;
  14484. vdev_id = wlan_vdev_get_id(req->vdev);
  14485. WMI_LOGD("vdev_id: %d, transaction_id: %d, ndp_rsp %d, ndp_instance_id: %d, ndp_app_info_len: %d",
  14486. vdev_id, req->transaction_id,
  14487. req->ndp_rsp,
  14488. req->ndp_instance_id,
  14489. req->ndp_info.ndp_app_info_len);
  14490. /*
  14491. * WMI command expects 4 byte alligned len:
  14492. * round up ndp_cfg_len and ndp_app_info_len to 4 bytes
  14493. */
  14494. ndp_cfg_len = qdf_roundup(req->ndp_config.ndp_cfg_len, 4);
  14495. ndp_app_info_len = qdf_roundup(req->ndp_info.ndp_app_info_len, 4);
  14496. pmk_len = qdf_roundup(req->pmk.pmk_len, 4);
  14497. passphrase_len = qdf_roundup(req->passphrase.passphrase_len, 4);
  14498. service_name_len =
  14499. qdf_roundup(req->service_name.service_name_len, 4);
  14500. /* allocated memory for fixed params as well as variable size data */
  14501. len = sizeof(*cmd) + 5*WMI_TLV_HDR_SIZE + ndp_cfg_len + ndp_app_info_len
  14502. + pmk_len + passphrase_len + service_name_len;
  14503. if (req->is_ipv6_addr_present || req->is_port_present ||
  14504. req->is_protocol_present)
  14505. len += sizeof(*tcp_ip_param);
  14506. buf = wmi_buf_alloc(wmi_handle, len);
  14507. if (!buf) {
  14508. WMI_LOGE("wmi_buf_alloc failed");
  14509. return QDF_STATUS_E_NOMEM;
  14510. }
  14511. cmd = (wmi_ndp_responder_req_fixed_param *) wmi_buf_data(buf);
  14512. WMITLV_SET_HDR(&cmd->tlv_header,
  14513. WMITLV_TAG_STRUC_wmi_ndp_responder_req_fixed_param,
  14514. WMITLV_GET_STRUCT_TLVLEN(
  14515. wmi_ndp_responder_req_fixed_param));
  14516. cmd->vdev_id = vdev_id;
  14517. cmd->transaction_id = req->transaction_id;
  14518. cmd->ndp_instance_id = req->ndp_instance_id;
  14519. cmd->rsp_code = req->ndp_rsp;
  14520. cmd->ndp_cfg_len = req->ndp_config.ndp_cfg_len;
  14521. cmd->ndp_app_info_len = req->ndp_info.ndp_app_info_len;
  14522. cmd->nan_pmk_len = req->pmk.pmk_len;
  14523. cmd->nan_csid = req->ncs_sk_type;
  14524. cmd->nan_passphrase_len = req->passphrase.passphrase_len;
  14525. cmd->nan_servicename_len = req->service_name.service_name_len;
  14526. tlv_ptr = (uint8_t *)&cmd[1];
  14527. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, ndp_cfg_len);
  14528. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14529. req->ndp_config.ndp_cfg, cmd->ndp_cfg_len);
  14530. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + ndp_cfg_len;
  14531. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, ndp_app_info_len);
  14532. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14533. req->ndp_info.ndp_app_info,
  14534. req->ndp_info.ndp_app_info_len);
  14535. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + ndp_app_info_len;
  14536. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, pmk_len);
  14537. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE], req->pmk.pmk,
  14538. cmd->nan_pmk_len);
  14539. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + pmk_len;
  14540. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, passphrase_len);
  14541. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14542. req->passphrase.passphrase,
  14543. cmd->nan_passphrase_len);
  14544. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + passphrase_len;
  14545. WMITLV_SET_HDR(tlv_ptr, WMITLV_TAG_ARRAY_BYTE, service_name_len);
  14546. qdf_mem_copy(&tlv_ptr[WMI_TLV_HDR_SIZE],
  14547. req->service_name.service_name,
  14548. cmd->nan_servicename_len);
  14549. tlv_ptr = tlv_ptr + WMI_TLV_HDR_SIZE + service_name_len;
  14550. if (req->is_ipv6_addr_present || req->is_port_present ||
  14551. req->is_protocol_present) {
  14552. tcp_ip_param = (wmi_ndp_transport_ip_param *)tlv_ptr;
  14553. WMITLV_SET_HDR(tcp_ip_param,
  14554. WMITLV_TAG_STRUC_wmi_ndp_transport_ip_param,
  14555. WMITLV_GET_STRUCT_TLVLEN(
  14556. wmi_ndp_transport_ip_param));
  14557. tcp_ip_param->ipv6_addr_present = req->is_ipv6_addr_present;
  14558. qdf_mem_copy(tcp_ip_param->ipv6_intf_addr,
  14559. req->ipv6_addr, WMI_NDP_IPV6_INTF_ADDR_LEN);
  14560. tcp_ip_param->trans_port_present = req->is_port_present;
  14561. tcp_ip_param->transport_port = req->port;
  14562. tcp_ip_param->trans_proto_present = req->is_protocol_present;
  14563. tcp_ip_param->transport_protocol = req->protocol;
  14564. }
  14565. WMI_LOGD(FL("IPv6 addr present: %d, addr: %pI6"),
  14566. req->is_ipv6_addr_present, req->ipv6_addr);
  14567. WMI_LOGD(FL("port: %d present: %d"), req->is_port_present, req->port);
  14568. WMI_LOGD(FL("protocol: %d present: %d"),
  14569. req->is_protocol_present, req->protocol);
  14570. WMI_LOGD("vdev_id = %d, transaction_id: %d, csid: %d",
  14571. cmd->vdev_id, cmd->transaction_id, cmd->nan_csid);
  14572. WMI_LOGD("ndp_config len: %d",
  14573. req->ndp_config.ndp_cfg_len);
  14574. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14575. req->ndp_config.ndp_cfg,
  14576. req->ndp_config.ndp_cfg_len);
  14577. WMI_LOGD("ndp_app_info len: %d",
  14578. req->ndp_info.ndp_app_info_len);
  14579. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14580. req->ndp_info.ndp_app_info,
  14581. req->ndp_info.ndp_app_info_len);
  14582. WMI_LOGD("pmk len: %d", cmd->nan_pmk_len);
  14583. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14584. req->pmk.pmk, cmd->nan_pmk_len);
  14585. WMI_LOGD("pass phrase len: %d", cmd->nan_passphrase_len);
  14586. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14587. req->passphrase.passphrase,
  14588. cmd->nan_passphrase_len);
  14589. WMI_LOGD("service name len: %d", cmd->nan_servicename_len);
  14590. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14591. req->service_name.service_name,
  14592. cmd->nan_servicename_len);
  14593. WMI_LOGD("sending WMI_NDP_RESPONDER_REQ_CMDID(0x%X)",
  14594. WMI_NDP_RESPONDER_REQ_CMDID);
  14595. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  14596. WMI_NDP_RESPONDER_REQ_CMDID);
  14597. if (QDF_IS_STATUS_ERROR(status)) {
  14598. WMI_LOGE("WMI_NDP_RESPONDER_REQ_CMDID failed, ret: %d", status);
  14599. wmi_buf_free(buf);
  14600. }
  14601. return status;
  14602. }
  14603. static QDF_STATUS nan_ndp_end_req_tlv(wmi_unified_t wmi_handle,
  14604. struct nan_datapath_end_req *req)
  14605. {
  14606. uint16_t len;
  14607. wmi_buf_t buf;
  14608. QDF_STATUS status;
  14609. uint32_t ndp_end_req_len, i;
  14610. wmi_ndp_end_req *ndp_end_req_lst;
  14611. wmi_ndp_end_req_fixed_param *cmd;
  14612. /* len of tlv following fixed param */
  14613. ndp_end_req_len = sizeof(wmi_ndp_end_req) * req->num_ndp_instances;
  14614. /* above comes out to 4 byte alligned already, no need of padding */
  14615. len = sizeof(*cmd) + ndp_end_req_len + WMI_TLV_HDR_SIZE;
  14616. buf = wmi_buf_alloc(wmi_handle, len);
  14617. if (!buf) {
  14618. WMI_LOGE("Malloc failed");
  14619. return QDF_STATUS_E_NOMEM;
  14620. }
  14621. cmd = (wmi_ndp_end_req_fixed_param *) wmi_buf_data(buf);
  14622. WMITLV_SET_HDR(&cmd->tlv_header,
  14623. WMITLV_TAG_STRUC_wmi_ndp_end_req_fixed_param,
  14624. WMITLV_GET_STRUCT_TLVLEN(wmi_ndp_end_req_fixed_param));
  14625. cmd->transaction_id = req->transaction_id;
  14626. /* set tlv pointer to end of fixed param */
  14627. WMITLV_SET_HDR((uint8_t *)&cmd[1], WMITLV_TAG_ARRAY_STRUC,
  14628. ndp_end_req_len);
  14629. ndp_end_req_lst = (wmi_ndp_end_req *)((uint8_t *)&cmd[1] +
  14630. WMI_TLV_HDR_SIZE);
  14631. for (i = 0; i < req->num_ndp_instances; i++) {
  14632. WMITLV_SET_HDR(&ndp_end_req_lst[i],
  14633. WMITLV_TAG_ARRAY_FIXED_STRUC,
  14634. (sizeof(*ndp_end_req_lst) - WMI_TLV_HDR_SIZE));
  14635. ndp_end_req_lst[i].ndp_instance_id = req->ndp_ids[i];
  14636. }
  14637. WMI_LOGD("Sending WMI_NDP_END_REQ_CMDID to FW");
  14638. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  14639. WMI_NDP_END_REQ_CMDID);
  14640. if (QDF_IS_STATUS_ERROR(status)) {
  14641. WMI_LOGE("WMI_NDP_END_REQ_CMDID failed, ret: %d", status);
  14642. wmi_buf_free(buf);
  14643. }
  14644. return status;
  14645. }
  14646. static QDF_STATUS extract_ndp_initiator_rsp_tlv(wmi_unified_t wmi_handle,
  14647. uint8_t *data, struct nan_datapath_initiator_rsp *rsp)
  14648. {
  14649. WMI_NDP_INITIATOR_RSP_EVENTID_param_tlvs *event;
  14650. wmi_ndp_initiator_rsp_event_fixed_param *fixed_params;
  14651. event = (WMI_NDP_INITIATOR_RSP_EVENTID_param_tlvs *)data;
  14652. fixed_params = event->fixed_param;
  14653. rsp->vdev =
  14654. wlan_objmgr_get_vdev_by_id_from_psoc(wmi_handle->soc->wmi_psoc,
  14655. fixed_params->vdev_id,
  14656. WLAN_NAN_ID);
  14657. if (!rsp->vdev) {
  14658. WMI_LOGE("vdev is null");
  14659. return QDF_STATUS_E_INVAL;
  14660. }
  14661. rsp->transaction_id = fixed_params->transaction_id;
  14662. rsp->ndp_instance_id = fixed_params->ndp_instance_id;
  14663. rsp->status = fixed_params->rsp_status;
  14664. rsp->reason = fixed_params->reason_code;
  14665. return QDF_STATUS_SUCCESS;
  14666. }
  14667. static QDF_STATUS extract_ndp_ind_tlv(wmi_unified_t wmi_handle,
  14668. uint8_t *data, struct nan_datapath_indication_event *rsp)
  14669. {
  14670. WMI_NDP_INDICATION_EVENTID_param_tlvs *event;
  14671. wmi_ndp_indication_event_fixed_param *fixed_params;
  14672. size_t total_array_len;
  14673. event = (WMI_NDP_INDICATION_EVENTID_param_tlvs *)data;
  14674. fixed_params =
  14675. (wmi_ndp_indication_event_fixed_param *)event->fixed_param;
  14676. if (fixed_params->ndp_cfg_len > event->num_ndp_cfg) {
  14677. WMI_LOGE("FW message ndp cfg length %d larger than TLV hdr %d",
  14678. fixed_params->ndp_cfg_len, event->num_ndp_cfg);
  14679. return QDF_STATUS_E_INVAL;
  14680. }
  14681. if (fixed_params->ndp_app_info_len > event->num_ndp_app_info) {
  14682. WMI_LOGE("FW message ndp app info length %d more than TLV hdr %d",
  14683. fixed_params->ndp_app_info_len,
  14684. event->num_ndp_app_info);
  14685. return QDF_STATUS_E_INVAL;
  14686. }
  14687. if (fixed_params->ndp_cfg_len >
  14688. (WMI_SVC_MSG_MAX_SIZE - sizeof(*fixed_params))) {
  14689. WMI_LOGE("%s: excess wmi buffer: ndp_cfg_len %d",
  14690. __func__, fixed_params->ndp_cfg_len);
  14691. return QDF_STATUS_E_INVAL;
  14692. }
  14693. total_array_len = fixed_params->ndp_cfg_len +
  14694. sizeof(*fixed_params);
  14695. if (fixed_params->ndp_app_info_len >
  14696. (WMI_SVC_MSG_MAX_SIZE - total_array_len)) {
  14697. WMI_LOGE("%s: excess wmi buffer: ndp_cfg_len %d",
  14698. __func__, fixed_params->ndp_app_info_len);
  14699. return QDF_STATUS_E_INVAL;
  14700. }
  14701. total_array_len += fixed_params->ndp_app_info_len;
  14702. if (fixed_params->nan_scid_len >
  14703. (WMI_SVC_MSG_MAX_SIZE - total_array_len)) {
  14704. WMI_LOGE("%s: excess wmi buffer: ndp_cfg_len %d",
  14705. __func__, fixed_params->nan_scid_len);
  14706. return QDF_STATUS_E_INVAL;
  14707. }
  14708. rsp->vdev =
  14709. wlan_objmgr_get_vdev_by_id_from_psoc(wmi_handle->soc->wmi_psoc,
  14710. fixed_params->vdev_id,
  14711. WLAN_NAN_ID);
  14712. if (!rsp->vdev) {
  14713. WMI_LOGE("vdev is null");
  14714. return QDF_STATUS_E_INVAL;
  14715. }
  14716. rsp->service_instance_id = fixed_params->service_instance_id;
  14717. rsp->ndp_instance_id = fixed_params->ndp_instance_id;
  14718. rsp->role = fixed_params->self_ndp_role;
  14719. rsp->policy = fixed_params->accept_policy;
  14720. WMI_MAC_ADDR_TO_CHAR_ARRAY(&fixed_params->peer_ndi_mac_addr,
  14721. rsp->peer_mac_addr.bytes);
  14722. WMI_MAC_ADDR_TO_CHAR_ARRAY(&fixed_params->peer_discovery_mac_addr,
  14723. rsp->peer_discovery_mac_addr.bytes);
  14724. WMI_LOGD("WMI_NDP_INDICATION_EVENTID(0x%X) received. vdev %d,\n"
  14725. "service_instance %d, ndp_instance %d, role %d, policy %d,\n"
  14726. "csid: %d, scid_len: %d, peer_addr: %pM, peer_disc_addr: %pM",
  14727. WMI_NDP_INDICATION_EVENTID, fixed_params->vdev_id,
  14728. fixed_params->service_instance_id,
  14729. fixed_params->ndp_instance_id, fixed_params->self_ndp_role,
  14730. fixed_params->accept_policy,
  14731. fixed_params->nan_csid, fixed_params->nan_scid_len,
  14732. rsp->peer_mac_addr.bytes,
  14733. rsp->peer_discovery_mac_addr.bytes);
  14734. WMI_LOGD("ndp_cfg - %d bytes", fixed_params->ndp_cfg_len);
  14735. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14736. &event->ndp_cfg, fixed_params->ndp_cfg_len);
  14737. WMI_LOGD("ndp_app_info - %d bytes",
  14738. fixed_params->ndp_app_info_len);
  14739. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14740. &event->ndp_app_info, fixed_params->ndp_app_info_len);
  14741. rsp->ndp_config.ndp_cfg_len = fixed_params->ndp_cfg_len;
  14742. rsp->ndp_info.ndp_app_info_len = fixed_params->ndp_app_info_len;
  14743. rsp->ncs_sk_type = fixed_params->nan_csid;
  14744. rsp->scid.scid_len = fixed_params->nan_scid_len;
  14745. if (rsp->ndp_config.ndp_cfg_len > NDP_QOS_INFO_LEN)
  14746. rsp->ndp_config.ndp_cfg_len = NDP_QOS_INFO_LEN;
  14747. qdf_mem_copy(rsp->ndp_config.ndp_cfg, event->ndp_cfg,
  14748. rsp->ndp_config.ndp_cfg_len);
  14749. if (rsp->ndp_info.ndp_app_info_len > NDP_APP_INFO_LEN)
  14750. rsp->ndp_info.ndp_app_info_len = NDP_APP_INFO_LEN;
  14751. qdf_mem_copy(rsp->ndp_info.ndp_app_info, event->ndp_app_info,
  14752. rsp->ndp_info.ndp_app_info_len);
  14753. if (rsp->scid.scid_len > NDP_SCID_BUF_LEN)
  14754. rsp->scid.scid_len = NDP_SCID_BUF_LEN;
  14755. qdf_mem_copy(rsp->scid.scid, event->ndp_scid, rsp->scid.scid_len);
  14756. if (event->ndp_transport_ip_param &&
  14757. event->num_ndp_transport_ip_param) {
  14758. if (event->ndp_transport_ip_param->ipv6_addr_present) {
  14759. rsp->is_ipv6_addr_present = true;
  14760. qdf_mem_copy(rsp->ipv6_addr,
  14761. event->ndp_transport_ip_param->ipv6_intf_addr,
  14762. WMI_NDP_IPV6_INTF_ADDR_LEN);
  14763. }
  14764. }
  14765. WMI_LOGD(FL("IPv6 addr present: %d, addr: %pI6"),
  14766. rsp->is_ipv6_addr_present, rsp->ipv6_addr);
  14767. WMI_LOGD("scid hex dump:");
  14768. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14769. rsp->scid.scid, rsp->scid.scid_len);
  14770. return QDF_STATUS_SUCCESS;
  14771. }
  14772. static QDF_STATUS extract_ndp_confirm_tlv(wmi_unified_t wmi_handle,
  14773. uint8_t *data, struct nan_datapath_confirm_event *rsp)
  14774. {
  14775. uint8_t i;
  14776. WMI_HOST_WLAN_PHY_MODE ch_mode;
  14777. WMI_NDP_CONFIRM_EVENTID_param_tlvs *event;
  14778. wmi_ndp_confirm_event_fixed_param *fixed_params;
  14779. size_t total_array_len;
  14780. event = (WMI_NDP_CONFIRM_EVENTID_param_tlvs *) data;
  14781. fixed_params = (wmi_ndp_confirm_event_fixed_param *)event->fixed_param;
  14782. WMI_LOGD("WMI_NDP_CONFIRM_EVENTID(0x%X) received. vdev %d, ndp_instance %d, rsp_code %d, reason_code: %d, num_active_ndps_on_peer: %d",
  14783. WMI_NDP_CONFIRM_EVENTID, fixed_params->vdev_id,
  14784. fixed_params->ndp_instance_id, fixed_params->rsp_code,
  14785. fixed_params->reason_code,
  14786. fixed_params->num_active_ndps_on_peer);
  14787. WMI_LOGE("num_ch: %d", fixed_params->num_ndp_channels);
  14788. if (fixed_params->ndp_cfg_len > event->num_ndp_cfg) {
  14789. WMI_LOGE("FW message ndp cfg length %d larger than TLV hdr %d",
  14790. fixed_params->ndp_cfg_len, event->num_ndp_cfg);
  14791. return QDF_STATUS_E_INVAL;
  14792. }
  14793. WMI_LOGD("ndp_cfg - %d bytes", fixed_params->ndp_cfg_len);
  14794. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14795. &event->ndp_cfg, fixed_params->ndp_cfg_len);
  14796. if (fixed_params->ndp_app_info_len > event->num_ndp_app_info) {
  14797. WMI_LOGE("FW message ndp app info length %d more than TLV hdr %d",
  14798. fixed_params->ndp_app_info_len,
  14799. event->num_ndp_app_info);
  14800. return QDF_STATUS_E_INVAL;
  14801. }
  14802. WMI_LOGD("ndp_app_info - %d bytes",
  14803. fixed_params->ndp_app_info_len);
  14804. QDF_TRACE_HEX_DUMP(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  14805. &event->ndp_app_info, fixed_params->ndp_app_info_len);
  14806. if (fixed_params->ndp_cfg_len >
  14807. (WMI_SVC_MSG_MAX_SIZE - sizeof(*fixed_params))) {
  14808. WMI_LOGE("%s: excess wmi buffer: ndp_cfg_len %d",
  14809. __func__, fixed_params->ndp_cfg_len);
  14810. return QDF_STATUS_E_INVAL;
  14811. }
  14812. total_array_len = fixed_params->ndp_cfg_len +
  14813. sizeof(*fixed_params);
  14814. if (fixed_params->ndp_app_info_len >
  14815. (WMI_SVC_MSG_MAX_SIZE - total_array_len)) {
  14816. WMI_LOGE("%s: excess wmi buffer: ndp_cfg_len %d",
  14817. __func__, fixed_params->ndp_app_info_len);
  14818. return QDF_STATUS_E_INVAL;
  14819. }
  14820. rsp->vdev =
  14821. wlan_objmgr_get_vdev_by_id_from_psoc(wmi_handle->soc->wmi_psoc,
  14822. fixed_params->vdev_id,
  14823. WLAN_NAN_ID);
  14824. if (!rsp->vdev) {
  14825. WMI_LOGE("vdev is null");
  14826. return QDF_STATUS_E_INVAL;
  14827. }
  14828. rsp->ndp_instance_id = fixed_params->ndp_instance_id;
  14829. rsp->rsp_code = fixed_params->rsp_code;
  14830. rsp->reason_code = fixed_params->reason_code;
  14831. rsp->num_active_ndps_on_peer = fixed_params->num_active_ndps_on_peer;
  14832. rsp->num_channels = fixed_params->num_ndp_channels;
  14833. WMI_MAC_ADDR_TO_CHAR_ARRAY(&fixed_params->peer_ndi_mac_addr,
  14834. rsp->peer_ndi_mac_addr.bytes);
  14835. rsp->ndp_info.ndp_app_info_len = fixed_params->ndp_app_info_len;
  14836. qdf_mem_copy(rsp->ndp_info.ndp_app_info, event->ndp_app_info,
  14837. rsp->ndp_info.ndp_app_info_len);
  14838. if (rsp->num_channels > NAN_CH_INFO_MAX_CHANNELS) {
  14839. WMI_LOGE(FL("too many channels"));
  14840. rsp->num_channels = NAN_CH_INFO_MAX_CHANNELS;
  14841. }
  14842. for (i = 0; i < rsp->num_channels; i++) {
  14843. rsp->ch[i].channel = event->ndp_channel_list[i].mhz;
  14844. rsp->ch[i].nss = event->nss_list[i];
  14845. ch_mode = WMI_GET_CHANNEL_MODE(&event->ndp_channel_list[i]);
  14846. rsp->ch[i].ch_width = wmi_get_ch_width_from_phy_mode(wmi_handle,
  14847. ch_mode);
  14848. WMI_LOGD(FL("ch: %d, ch_mode: %d, nss: %d"),
  14849. rsp->ch[i].channel,
  14850. rsp->ch[i].ch_width,
  14851. rsp->ch[i].nss);
  14852. }
  14853. if (event->ndp_transport_ip_param &&
  14854. event->num_ndp_transport_ip_param) {
  14855. if (event->ndp_transport_ip_param->ipv6_addr_present) {
  14856. rsp->is_ipv6_addr_present = true;
  14857. qdf_mem_copy(rsp->ipv6_addr,
  14858. event->ndp_transport_ip_param->ipv6_intf_addr,
  14859. WMI_NDP_IPV6_INTF_ADDR_LEN);
  14860. }
  14861. if (event->ndp_transport_ip_param->trans_port_present) {
  14862. rsp->is_port_present = true;
  14863. rsp->port =
  14864. event->ndp_transport_ip_param->transport_port;
  14865. }
  14866. if (event->ndp_transport_ip_param->trans_proto_present) {
  14867. rsp->is_protocol_present = true;
  14868. rsp->protocol =
  14869. event->ndp_transport_ip_param->transport_protocol;
  14870. }
  14871. }
  14872. WMI_LOGD(FL("IPv6 addr present: %d, addr: %pI6"),
  14873. rsp->is_ipv6_addr_present, rsp->ipv6_addr);
  14874. WMI_LOGD(FL("port: %d present: %d"), rsp->port, rsp->is_port_present);
  14875. WMI_LOGD(FL("protocol: %d present: %d"),
  14876. rsp->protocol, rsp->is_protocol_present);
  14877. return QDF_STATUS_SUCCESS;
  14878. }
  14879. static QDF_STATUS extract_ndp_responder_rsp_tlv(wmi_unified_t wmi_handle,
  14880. uint8_t *data, struct nan_datapath_responder_rsp *rsp)
  14881. {
  14882. WMI_NDP_RESPONDER_RSP_EVENTID_param_tlvs *event;
  14883. wmi_ndp_responder_rsp_event_fixed_param *fixed_params;
  14884. event = (WMI_NDP_RESPONDER_RSP_EVENTID_param_tlvs *)data;
  14885. fixed_params = event->fixed_param;
  14886. WMI_LOGD("WMI_NDP_RESPONDER_RSP_EVENTID(0x%X) received. vdev_id: %d, peer_mac_addr: %pM,transaction_id: %d, status_code %d, reason_code: %d, create_peer: %d",
  14887. WMI_NDP_RESPONDER_RSP_EVENTID, fixed_params->vdev_id,
  14888. rsp->peer_mac_addr.bytes, rsp->transaction_id,
  14889. rsp->status, rsp->reason, rsp->create_peer);
  14890. rsp->vdev =
  14891. wlan_objmgr_get_vdev_by_id_from_psoc(wmi_handle->soc->wmi_psoc,
  14892. fixed_params->vdev_id,
  14893. WLAN_NAN_ID);
  14894. if (!rsp->vdev) {
  14895. WMI_LOGE("vdev is null");
  14896. return QDF_STATUS_E_INVAL;
  14897. }
  14898. rsp->transaction_id = fixed_params->transaction_id;
  14899. rsp->reason = fixed_params->reason_code;
  14900. rsp->status = fixed_params->rsp_status;
  14901. rsp->create_peer = fixed_params->create_peer;
  14902. WMI_MAC_ADDR_TO_CHAR_ARRAY(&fixed_params->peer_ndi_mac_addr,
  14903. rsp->peer_mac_addr.bytes);
  14904. return QDF_STATUS_SUCCESS;
  14905. }
  14906. static QDF_STATUS extract_ndp_end_rsp_tlv(wmi_unified_t wmi_handle,
  14907. uint8_t *data, struct nan_datapath_end_rsp_event *rsp)
  14908. {
  14909. WMI_NDP_END_RSP_EVENTID_param_tlvs *event;
  14910. wmi_ndp_end_rsp_event_fixed_param *fixed_params = NULL;
  14911. event = (WMI_NDP_END_RSP_EVENTID_param_tlvs *) data;
  14912. fixed_params = (wmi_ndp_end_rsp_event_fixed_param *)event->fixed_param;
  14913. WMI_LOGD("WMI_NDP_END_RSP_EVENTID(0x%X) received. transaction_id: %d, rsp_status: %d, reason_code: %d",
  14914. WMI_NDP_END_RSP_EVENTID, fixed_params->transaction_id,
  14915. fixed_params->rsp_status, fixed_params->reason_code);
  14916. rsp->vdev = wlan_objmgr_get_vdev_by_opmode_from_psoc(
  14917. wmi_handle->soc->wmi_psoc, QDF_NDI_MODE, WLAN_NAN_ID);
  14918. if (!rsp->vdev) {
  14919. WMI_LOGE("vdev is null");
  14920. return QDF_STATUS_E_INVAL;
  14921. }
  14922. rsp->transaction_id = fixed_params->transaction_id;
  14923. rsp->reason = fixed_params->reason_code;
  14924. rsp->status = fixed_params->rsp_status;
  14925. return QDF_STATUS_SUCCESS;
  14926. }
  14927. static QDF_STATUS extract_ndp_end_ind_tlv(wmi_unified_t wmi_handle,
  14928. uint8_t *data, struct nan_datapath_end_indication_event **rsp)
  14929. {
  14930. uint32_t i, buf_size;
  14931. wmi_ndp_end_indication *ind;
  14932. struct qdf_mac_addr peer_addr;
  14933. WMI_NDP_END_INDICATION_EVENTID_param_tlvs *event;
  14934. event = (WMI_NDP_END_INDICATION_EVENTID_param_tlvs *) data;
  14935. ind = event->ndp_end_indication_list;
  14936. if (event->num_ndp_end_indication_list == 0) {
  14937. WMI_LOGE("Error: Event ignored, 0 ndp instances");
  14938. return QDF_STATUS_E_INVAL;
  14939. }
  14940. WMI_LOGD("number of ndp instances = %d",
  14941. event->num_ndp_end_indication_list);
  14942. if (event->num_ndp_end_indication_list > ((UINT_MAX - sizeof(**rsp))/
  14943. sizeof((*rsp)->ndp_map[0]))) {
  14944. WMI_LOGE("num_ndp_end_ind_list %d too large",
  14945. event->num_ndp_end_indication_list);
  14946. return QDF_STATUS_E_INVAL;
  14947. }
  14948. buf_size = sizeof(**rsp) + event->num_ndp_end_indication_list *
  14949. sizeof((*rsp)->ndp_map[0]);
  14950. *rsp = qdf_mem_malloc(buf_size);
  14951. if (!(*rsp)) {
  14952. WMI_LOGE("Failed to allocate memory");
  14953. return QDF_STATUS_E_NOMEM;
  14954. }
  14955. (*rsp)->vdev = wlan_objmgr_get_vdev_by_opmode_from_psoc(
  14956. wmi_handle->soc->wmi_psoc, QDF_NDI_MODE, WLAN_NAN_ID);
  14957. if (!(*rsp)->vdev) {
  14958. WMI_LOGE("vdev is null");
  14959. qdf_mem_free(*rsp);
  14960. *rsp = NULL;
  14961. return QDF_STATUS_E_INVAL;
  14962. }
  14963. (*rsp)->num_ndp_ids = event->num_ndp_end_indication_list;
  14964. for (i = 0; i < (*rsp)->num_ndp_ids; i++) {
  14965. WMI_MAC_ADDR_TO_CHAR_ARRAY(&ind[i].peer_ndi_mac_addr,
  14966. peer_addr.bytes);
  14967. WMI_LOGD("ind[%d]: type %d, reason_code %d, instance_id %d num_active %d ",
  14968. i, ind[i].type, ind[i].reason_code,
  14969. ind[i].ndp_instance_id,
  14970. ind[i].num_active_ndps_on_peer);
  14971. /* Add each instance entry to the list */
  14972. (*rsp)->ndp_map[i].ndp_instance_id = ind[i].ndp_instance_id;
  14973. (*rsp)->ndp_map[i].vdev_id = ind[i].vdev_id;
  14974. WMI_MAC_ADDR_TO_CHAR_ARRAY(&ind[i].peer_ndi_mac_addr,
  14975. (*rsp)->ndp_map[i].peer_ndi_mac_addr.bytes);
  14976. (*rsp)->ndp_map[i].num_active_ndp_sessions =
  14977. ind[i].num_active_ndps_on_peer;
  14978. (*rsp)->ndp_map[i].type = ind[i].type;
  14979. (*rsp)->ndp_map[i].reason_code = ind[i].reason_code;
  14980. }
  14981. return QDF_STATUS_SUCCESS;
  14982. }
  14983. static QDF_STATUS extract_ndp_sch_update_tlv(wmi_unified_t wmi_handle,
  14984. uint8_t *data, struct nan_datapath_sch_update_event *ind)
  14985. {
  14986. uint8_t i;
  14987. WMI_HOST_WLAN_PHY_MODE ch_mode;
  14988. WMI_NDL_SCHEDULE_UPDATE_EVENTID_param_tlvs *event;
  14989. wmi_ndl_schedule_update_fixed_param *fixed_params;
  14990. event = (WMI_NDL_SCHEDULE_UPDATE_EVENTID_param_tlvs *)data;
  14991. fixed_params = event->fixed_param;
  14992. WMI_LOGD(FL("flags: %d, num_ch: %d, num_ndp_instances: %d"),
  14993. fixed_params->flags, fixed_params->num_channels,
  14994. fixed_params->num_ndp_instances);
  14995. ind->vdev =
  14996. wlan_objmgr_get_vdev_by_id_from_psoc(wmi_handle->soc->wmi_psoc,
  14997. fixed_params->vdev_id,
  14998. WLAN_NAN_ID);
  14999. if (!ind->vdev) {
  15000. WMI_LOGE("vdev is null");
  15001. return QDF_STATUS_E_INVAL;
  15002. }
  15003. ind->flags = fixed_params->flags;
  15004. ind->num_channels = fixed_params->num_channels;
  15005. ind->num_ndp_instances = fixed_params->num_ndp_instances;
  15006. WMI_MAC_ADDR_TO_CHAR_ARRAY(&fixed_params->peer_macaddr,
  15007. ind->peer_addr.bytes);
  15008. if (ind->num_ndp_instances > NDP_NUM_INSTANCE_ID) {
  15009. WMI_LOGE(FL("uint32 overflow"));
  15010. wlan_objmgr_vdev_release_ref(ind->vdev, WLAN_NAN_ID);
  15011. return QDF_STATUS_E_INVAL;
  15012. }
  15013. qdf_mem_copy(ind->ndp_instances, event->ndp_instance_list,
  15014. sizeof(uint32_t) * ind->num_ndp_instances);
  15015. if (ind->num_channels > NAN_CH_INFO_MAX_CHANNELS) {
  15016. WMI_LOGE(FL("too many channels"));
  15017. ind->num_channels = NAN_CH_INFO_MAX_CHANNELS;
  15018. }
  15019. for (i = 0; i < ind->num_channels; i++) {
  15020. ind->ch[i].channel = event->ndl_channel_list[i].mhz;
  15021. ind->ch[i].nss = event->nss_list[i];
  15022. ch_mode = WMI_GET_CHANNEL_MODE(&event->ndl_channel_list[i]);
  15023. ind->ch[i].ch_width = wmi_get_ch_width_from_phy_mode(wmi_handle,
  15024. ch_mode);
  15025. WMI_LOGD(FL("ch: %d, ch_mode: %d, nss: %d"),
  15026. ind->ch[i].channel,
  15027. ind->ch[i].ch_width,
  15028. ind->ch[i].nss);
  15029. }
  15030. for (i = 0; i < fixed_params->num_ndp_instances; i++)
  15031. WMI_LOGD(FL("instance_id[%d]: %d"),
  15032. i, event->ndp_instance_list[i]);
  15033. return QDF_STATUS_SUCCESS;
  15034. }
  15035. #endif
  15036. #ifdef QCA_SUPPORT_CP_STATS
  15037. /**
  15038. * extract_cca_stats_tlv - api to extract congestion stats from event buffer
  15039. * @wmi_handle: wma handle
  15040. * @evt_buf: event buffer
  15041. * @out_buff: buffer to populated after stats extraction
  15042. *
  15043. * Return: status of operation
  15044. */
  15045. static QDF_STATUS extract_cca_stats_tlv(wmi_unified_t wmi_handle,
  15046. void *evt_buf, struct wmi_host_congestion_stats *out_buff)
  15047. {
  15048. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  15049. wmi_congestion_stats *congestion_stats;
  15050. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *)evt_buf;
  15051. congestion_stats = param_buf->congestion_stats;
  15052. if (!congestion_stats) {
  15053. WMI_LOGD("%s: no cca stats in event buffer", __func__);
  15054. return QDF_STATUS_E_INVAL;
  15055. }
  15056. out_buff->vdev_id = congestion_stats->vdev_id;
  15057. out_buff->congestion = congestion_stats->congestion;
  15058. WMI_LOGD("%s: cca stats event processed", __func__);
  15059. return QDF_STATUS_SUCCESS;
  15060. }
  15061. #endif /* QCA_SUPPORT_CP_STATS */
  15062. /**
  15063. * save_service_bitmap_tlv() - save service bitmap
  15064. * @wmi_handle: wmi handle
  15065. * @param evt_buf: pointer to event buffer
  15066. * @param bitmap_buf: bitmap buffer, for converged legacy support
  15067. *
  15068. * Return: QDF_STATUS
  15069. */
  15070. static
  15071. QDF_STATUS save_service_bitmap_tlv(wmi_unified_t wmi_handle, void *evt_buf,
  15072. void *bitmap_buf)
  15073. {
  15074. WMI_SERVICE_READY_EVENTID_param_tlvs *param_buf;
  15075. struct wmi_soc *soc = wmi_handle->soc;
  15076. param_buf = (WMI_SERVICE_READY_EVENTID_param_tlvs *) evt_buf;
  15077. /* If it is already allocated, use that buffer. This can happen
  15078. * during target stop/start scenarios where host allocation is skipped.
  15079. */
  15080. if (!soc->wmi_service_bitmap) {
  15081. soc->wmi_service_bitmap =
  15082. qdf_mem_malloc(WMI_SERVICE_BM_SIZE * sizeof(uint32_t));
  15083. if (!soc->wmi_service_bitmap) {
  15084. WMI_LOGE("Failed memory allocation for service bitmap");
  15085. return QDF_STATUS_E_NOMEM;
  15086. }
  15087. }
  15088. qdf_mem_copy(soc->wmi_service_bitmap,
  15089. param_buf->wmi_service_bitmap,
  15090. (WMI_SERVICE_BM_SIZE * sizeof(uint32_t)));
  15091. if (bitmap_buf)
  15092. qdf_mem_copy(bitmap_buf,
  15093. param_buf->wmi_service_bitmap,
  15094. (WMI_SERVICE_BM_SIZE * sizeof(uint32_t)));
  15095. return QDF_STATUS_SUCCESS;
  15096. }
  15097. /**
  15098. * save_ext_service_bitmap_tlv() - save extendend service bitmap
  15099. * @wmi_handle: wmi handle
  15100. * @param evt_buf: pointer to event buffer
  15101. * @param bitmap_buf: bitmap buffer, for converged legacy support
  15102. *
  15103. * Return: QDF_STATUS
  15104. */
  15105. static
  15106. QDF_STATUS save_ext_service_bitmap_tlv(wmi_unified_t wmi_handle, void *evt_buf,
  15107. void *bitmap_buf)
  15108. {
  15109. WMI_SERVICE_AVAILABLE_EVENTID_param_tlvs *param_buf;
  15110. wmi_service_available_event_fixed_param *ev;
  15111. struct wmi_soc *soc = wmi_handle->soc;
  15112. param_buf = (WMI_SERVICE_AVAILABLE_EVENTID_param_tlvs *) evt_buf;
  15113. ev = param_buf->fixed_param;
  15114. /* If it is already allocated, use that buffer. This can happen
  15115. * during target stop/start scenarios where host allocation is skipped.
  15116. */
  15117. if (!soc->wmi_ext_service_bitmap) {
  15118. soc->wmi_ext_service_bitmap = qdf_mem_malloc(
  15119. WMI_SERVICE_SEGMENT_BM_SIZE32 * sizeof(uint32_t));
  15120. if (!soc->wmi_ext_service_bitmap) {
  15121. WMI_LOGE("Failed memory allocation for service bitmap");
  15122. return QDF_STATUS_E_NOMEM;
  15123. }
  15124. }
  15125. qdf_mem_copy(soc->wmi_ext_service_bitmap,
  15126. ev->wmi_service_segment_bitmap,
  15127. (WMI_SERVICE_SEGMENT_BM_SIZE32 * sizeof(uint32_t)));
  15128. WMI_LOGD("wmi_ext_service_bitmap 0:0x%x, 1:0x%x, 2:0x%x, 3:0x%x\n",
  15129. soc->wmi_ext_service_bitmap[0], soc->wmi_ext_service_bitmap[1],
  15130. soc->wmi_ext_service_bitmap[2], soc->wmi_ext_service_bitmap[3]);
  15131. if (bitmap_buf)
  15132. qdf_mem_copy(bitmap_buf,
  15133. soc->wmi_ext_service_bitmap,
  15134. (WMI_SERVICE_SEGMENT_BM_SIZE32 * sizeof(uint32_t)));
  15135. return QDF_STATUS_SUCCESS;
  15136. }
  15137. /**
  15138. * is_service_enabled_tlv() - Check if service enabled
  15139. * @param wmi_handle: wmi handle
  15140. * @param service_id: service identifier
  15141. *
  15142. * Return: 1 enabled, 0 disabled
  15143. */
  15144. static bool is_service_enabled_tlv(wmi_unified_t wmi_handle,
  15145. uint32_t service_id)
  15146. {
  15147. struct wmi_soc *soc = wmi_handle->soc;
  15148. if (!soc->wmi_service_bitmap) {
  15149. WMI_LOGE("WMI service bit map is not saved yet\n");
  15150. return false;
  15151. }
  15152. /* if wmi_service_enabled was received with extended bitmap,
  15153. * use WMI_SERVICE_EXT_IS_ENABLED to check the services.
  15154. */
  15155. if (soc->wmi_ext_service_bitmap)
  15156. return WMI_SERVICE_EXT_IS_ENABLED(soc->wmi_service_bitmap,
  15157. soc->wmi_ext_service_bitmap,
  15158. service_id);
  15159. if (service_id >= WMI_MAX_SERVICE) {
  15160. WMI_LOGE("Service id %d but WMI ext service bitmap is NULL",
  15161. service_id);
  15162. return false;
  15163. }
  15164. return WMI_SERVICE_IS_ENABLED(soc->wmi_service_bitmap,
  15165. service_id);
  15166. }
  15167. static inline void copy_ht_cap_info(uint32_t ev_target_cap,
  15168. struct wlan_psoc_target_capability_info *cap)
  15169. {
  15170. /* except LDPC all flags are common betwen legacy and here
  15171. * also IBFEER is not defined for TLV
  15172. */
  15173. cap->ht_cap_info |= ev_target_cap & (
  15174. WMI_HT_CAP_ENABLED
  15175. | WMI_HT_CAP_HT20_SGI
  15176. | WMI_HT_CAP_DYNAMIC_SMPS
  15177. | WMI_HT_CAP_TX_STBC
  15178. | WMI_HT_CAP_TX_STBC_MASK_SHIFT
  15179. | WMI_HT_CAP_RX_STBC
  15180. | WMI_HT_CAP_RX_STBC_MASK_SHIFT
  15181. | WMI_HT_CAP_LDPC
  15182. | WMI_HT_CAP_L_SIG_TXOP_PROT
  15183. | WMI_HT_CAP_MPDU_DENSITY
  15184. | WMI_HT_CAP_MPDU_DENSITY_MASK_SHIFT
  15185. | WMI_HT_CAP_HT40_SGI);
  15186. if (ev_target_cap & WMI_HT_CAP_LDPC)
  15187. cap->ht_cap_info |= WMI_HOST_HT_CAP_RX_LDPC |
  15188. WMI_HOST_HT_CAP_TX_LDPC;
  15189. }
  15190. /**
  15191. * extract_service_ready_tlv() - extract service ready event
  15192. * @wmi_handle: wmi handle
  15193. * @param evt_buf: pointer to received event buffer
  15194. * @param cap: pointer to hold target capability information extracted from even
  15195. *
  15196. * Return: QDF_STATUS_SUCCESS for success or error code
  15197. */
  15198. static QDF_STATUS extract_service_ready_tlv(wmi_unified_t wmi_handle,
  15199. void *evt_buf, struct wlan_psoc_target_capability_info *cap)
  15200. {
  15201. WMI_SERVICE_READY_EVENTID_param_tlvs *param_buf;
  15202. wmi_service_ready_event_fixed_param *ev;
  15203. param_buf = (WMI_SERVICE_READY_EVENTID_param_tlvs *) evt_buf;
  15204. ev = (wmi_service_ready_event_fixed_param *) param_buf->fixed_param;
  15205. if (!ev) {
  15206. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  15207. return QDF_STATUS_E_FAILURE;
  15208. }
  15209. cap->phy_capability = ev->phy_capability;
  15210. cap->max_frag_entry = ev->max_frag_entry;
  15211. cap->num_rf_chains = ev->num_rf_chains;
  15212. copy_ht_cap_info(ev->ht_cap_info, cap);
  15213. cap->vht_cap_info = ev->vht_cap_info;
  15214. cap->vht_supp_mcs = ev->vht_supp_mcs;
  15215. cap->hw_min_tx_power = ev->hw_min_tx_power;
  15216. cap->hw_max_tx_power = ev->hw_max_tx_power;
  15217. cap->sys_cap_info = ev->sys_cap_info;
  15218. cap->min_pkt_size_enable = ev->min_pkt_size_enable;
  15219. cap->max_bcn_ie_size = ev->max_bcn_ie_size;
  15220. cap->max_num_scan_channels = ev->max_num_scan_channels;
  15221. cap->max_supported_macs = ev->max_supported_macs;
  15222. cap->wmi_fw_sub_feat_caps = ev->wmi_fw_sub_feat_caps;
  15223. cap->txrx_chainmask = ev->txrx_chainmask;
  15224. cap->default_dbs_hw_mode_index = ev->default_dbs_hw_mode_index;
  15225. cap->num_msdu_desc = ev->num_msdu_desc;
  15226. cap->fw_version = ev->fw_build_vers;
  15227. /* fw_version_1 is not available in TLV. */
  15228. cap->fw_version_1 = 0;
  15229. return QDF_STATUS_SUCCESS;
  15230. }
  15231. /* convert_wireless_modes_tlv() - Convert REGDMN_MODE values sent by target
  15232. * to host internal WMI_HOST_REGDMN_MODE values.
  15233. * REGULATORY TODO : REGDMN_MODE_11AC_VHT*_2G values are not used by the
  15234. * host currently. Add this in the future if required.
  15235. * 11AX (Phase II) : 11ax related values are not currently
  15236. * advertised separately by FW. As part of phase II regulatory bring-up,
  15237. * finalize the advertisement mechanism.
  15238. * @target_wireless_mode: target wireless mode received in message
  15239. *
  15240. * Return: returns the host internal wireless mode.
  15241. */
  15242. static inline uint32_t convert_wireless_modes_tlv(uint32_t target_wireless_mode)
  15243. {
  15244. uint32_t wireless_modes = 0;
  15245. if (target_wireless_mode & REGDMN_MODE_11A)
  15246. wireless_modes |= WMI_HOST_REGDMN_MODE_11A;
  15247. if (target_wireless_mode & REGDMN_MODE_TURBO)
  15248. wireless_modes |= WMI_HOST_REGDMN_MODE_TURBO;
  15249. if (target_wireless_mode & REGDMN_MODE_11B)
  15250. wireless_modes |= WMI_HOST_REGDMN_MODE_11B;
  15251. if (target_wireless_mode & REGDMN_MODE_PUREG)
  15252. wireless_modes |= WMI_HOST_REGDMN_MODE_PUREG;
  15253. if (target_wireless_mode & REGDMN_MODE_11G)
  15254. wireless_modes |= WMI_HOST_REGDMN_MODE_11G;
  15255. if (target_wireless_mode & REGDMN_MODE_108G)
  15256. wireless_modes |= WMI_HOST_REGDMN_MODE_108G;
  15257. if (target_wireless_mode & REGDMN_MODE_108A)
  15258. wireless_modes |= WMI_HOST_REGDMN_MODE_108A;
  15259. if (target_wireless_mode & REGDMN_MODE_XR)
  15260. wireless_modes |= WMI_HOST_REGDMN_MODE_XR;
  15261. if (target_wireless_mode & REGDMN_MODE_11A_HALF_RATE)
  15262. wireless_modes |= WMI_HOST_REGDMN_MODE_11A_HALF_RATE;
  15263. if (target_wireless_mode & REGDMN_MODE_11A_QUARTER_RATE)
  15264. wireless_modes |= WMI_HOST_REGDMN_MODE_11A_QUARTER_RATE;
  15265. if (target_wireless_mode & REGDMN_MODE_11NG_HT20)
  15266. wireless_modes |= WMI_HOST_REGDMN_MODE_11NG_HT20;
  15267. if (target_wireless_mode & REGDMN_MODE_11NA_HT20)
  15268. wireless_modes |= WMI_HOST_REGDMN_MODE_11NA_HT20;
  15269. if (target_wireless_mode & REGDMN_MODE_11NG_HT40PLUS)
  15270. wireless_modes |= WMI_HOST_REGDMN_MODE_11NG_HT40PLUS;
  15271. if (target_wireless_mode & REGDMN_MODE_11NG_HT40MINUS)
  15272. wireless_modes |= WMI_HOST_REGDMN_MODE_11NG_HT40MINUS;
  15273. if (target_wireless_mode & REGDMN_MODE_11NA_HT40PLUS)
  15274. wireless_modes |= WMI_HOST_REGDMN_MODE_11NA_HT40PLUS;
  15275. if (target_wireless_mode & REGDMN_MODE_11NA_HT40MINUS)
  15276. wireless_modes |= WMI_HOST_REGDMN_MODE_11NA_HT40MINUS;
  15277. if (target_wireless_mode & REGDMN_MODE_11AC_VHT20)
  15278. wireless_modes |= WMI_HOST_REGDMN_MODE_11AC_VHT20;
  15279. if (target_wireless_mode & REGDMN_MODE_11AC_VHT40PLUS)
  15280. wireless_modes |= WMI_HOST_REGDMN_MODE_11AC_VHT40PLUS;
  15281. if (target_wireless_mode & REGDMN_MODE_11AC_VHT40MINUS)
  15282. wireless_modes |= WMI_HOST_REGDMN_MODE_11AC_VHT40MINUS;
  15283. if (target_wireless_mode & REGDMN_MODE_11AC_VHT80)
  15284. wireless_modes |= WMI_HOST_REGDMN_MODE_11AC_VHT80;
  15285. if (target_wireless_mode & REGDMN_MODE_11AC_VHT160)
  15286. wireless_modes |= WMI_HOST_REGDMN_MODE_11AC_VHT160;
  15287. if (target_wireless_mode & REGDMN_MODE_11AC_VHT80_80)
  15288. wireless_modes |= WMI_HOST_REGDMN_MODE_11AC_VHT80_80;
  15289. return wireless_modes;
  15290. }
  15291. /**
  15292. * extract_hal_reg_cap_tlv() - extract HAL registered capabilities
  15293. * @wmi_handle: wmi handle
  15294. * @param evt_buf: Pointer to event buffer
  15295. * @param cap: pointer to hold HAL reg capabilities
  15296. *
  15297. * Return: QDF_STATUS_SUCCESS for success or error code
  15298. */
  15299. static QDF_STATUS extract_hal_reg_cap_tlv(wmi_unified_t wmi_handle,
  15300. void *evt_buf, struct wlan_psoc_hal_reg_capability *cap)
  15301. {
  15302. WMI_SERVICE_READY_EVENTID_param_tlvs *param_buf;
  15303. param_buf = (WMI_SERVICE_READY_EVENTID_param_tlvs *) evt_buf;
  15304. qdf_mem_copy(cap, (((uint8_t *)param_buf->hal_reg_capabilities) +
  15305. sizeof(uint32_t)),
  15306. sizeof(struct wlan_psoc_hal_reg_capability));
  15307. cap->wireless_modes = convert_wireless_modes_tlv(
  15308. param_buf->hal_reg_capabilities->wireless_modes);
  15309. return QDF_STATUS_SUCCESS;
  15310. }
  15311. /**
  15312. * extract_host_mem_req_tlv() - Extract host memory request event
  15313. * @wmi_handle: wmi handle
  15314. * @param evt_buf: pointer to event buffer
  15315. * @param num_entries: pointer to hold number of entries requested
  15316. *
  15317. * Return: Number of entries requested
  15318. */
  15319. static host_mem_req *extract_host_mem_req_tlv(wmi_unified_t wmi_handle,
  15320. void *evt_buf, uint8_t *num_entries)
  15321. {
  15322. WMI_SERVICE_READY_EVENTID_param_tlvs *param_buf;
  15323. wmi_service_ready_event_fixed_param *ev;
  15324. param_buf = (WMI_SERVICE_READY_EVENTID_param_tlvs *) evt_buf;
  15325. ev = (wmi_service_ready_event_fixed_param *) param_buf->fixed_param;
  15326. if (!ev) {
  15327. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  15328. return NULL;
  15329. }
  15330. *num_entries = ev->num_mem_reqs;
  15331. return (host_mem_req *)param_buf->mem_reqs;
  15332. }
  15333. /**
  15334. * save_fw_version_in_service_ready_tlv() - Save fw version in service
  15335. * ready function
  15336. * @wmi_handle: wmi handle
  15337. * @param evt_buf: pointer to event buffer
  15338. *
  15339. * Return: QDF_STATUS_SUCCESS for success or error code
  15340. */
  15341. static QDF_STATUS
  15342. save_fw_version_in_service_ready_tlv(wmi_unified_t wmi_handle, void *evt_buf)
  15343. {
  15344. WMI_SERVICE_READY_EVENTID_param_tlvs *param_buf;
  15345. wmi_service_ready_event_fixed_param *ev;
  15346. param_buf = (WMI_SERVICE_READY_EVENTID_param_tlvs *) evt_buf;
  15347. ev = (wmi_service_ready_event_fixed_param *) param_buf->fixed_param;
  15348. if (!ev) {
  15349. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  15350. return QDF_STATUS_E_FAILURE;
  15351. }
  15352. /*Save fw version from service ready message */
  15353. /*This will be used while sending INIT message */
  15354. qdf_mem_copy(&wmi_handle->fw_abi_version, &ev->fw_abi_vers,
  15355. sizeof(wmi_handle->fw_abi_version));
  15356. return QDF_STATUS_SUCCESS;
  15357. }
  15358. /**
  15359. * ready_extract_init_status_tlv() - Extract init status from ready event
  15360. * @wmi_handle: wmi handle
  15361. * @param evt_buf: Pointer to event buffer
  15362. *
  15363. * Return: ready status
  15364. */
  15365. static uint32_t ready_extract_init_status_tlv(wmi_unified_t wmi_handle,
  15366. void *evt_buf)
  15367. {
  15368. WMI_READY_EVENTID_param_tlvs *param_buf = NULL;
  15369. wmi_ready_event_fixed_param *ev = NULL;
  15370. param_buf = (WMI_READY_EVENTID_param_tlvs *) evt_buf;
  15371. ev = param_buf->fixed_param;
  15372. qdf_print("%s:%d\n", __func__, ev->status);
  15373. return ev->status;
  15374. }
  15375. /**
  15376. * ready_extract_mac_addr_tlv() - extract mac address from ready event
  15377. * @wmi_handle: wmi handle
  15378. * @param evt_buf: pointer to event buffer
  15379. * @param macaddr: Pointer to hold MAC address
  15380. *
  15381. * Return: QDF_STATUS_SUCCESS for success or error code
  15382. */
  15383. static QDF_STATUS ready_extract_mac_addr_tlv(wmi_unified_t wmi_hamdle,
  15384. void *evt_buf, uint8_t *macaddr)
  15385. {
  15386. WMI_READY_EVENTID_param_tlvs *param_buf = NULL;
  15387. wmi_ready_event_fixed_param *ev = NULL;
  15388. param_buf = (WMI_READY_EVENTID_param_tlvs *) evt_buf;
  15389. ev = param_buf->fixed_param;
  15390. WMI_MAC_ADDR_TO_CHAR_ARRAY(&ev->mac_addr, macaddr);
  15391. return QDF_STATUS_SUCCESS;
  15392. }
  15393. /**
  15394. * ready_extract_mac_addr_list_tlv() - extract MAC address list from ready event
  15395. * @wmi_handle: wmi handle
  15396. * @param evt_buf: pointer to event buffer
  15397. * @param macaddr: Pointer to hold number of MAC addresses
  15398. *
  15399. * Return: Pointer to addr list
  15400. */
  15401. static wmi_host_mac_addr *ready_extract_mac_addr_list_tlv(wmi_unified_t wmi_hamdle,
  15402. void *evt_buf, uint8_t *num_mac)
  15403. {
  15404. WMI_READY_EVENTID_param_tlvs *param_buf = NULL;
  15405. wmi_ready_event_fixed_param *ev = NULL;
  15406. param_buf = (WMI_READY_EVENTID_param_tlvs *) evt_buf;
  15407. ev = param_buf->fixed_param;
  15408. *num_mac = ev->num_extra_mac_addr;
  15409. return (wmi_host_mac_addr *) param_buf->mac_addr_list;
  15410. }
  15411. /**
  15412. * extract_ready_params_tlv() - Extract data from ready event apart from
  15413. * status, macaddr and version.
  15414. * @wmi_handle: Pointer to WMI handle.
  15415. * @evt_buf: Pointer to Ready event buffer.
  15416. * @ev_param: Pointer to host defined struct to copy the data from event.
  15417. *
  15418. * Return: QDF_STATUS_SUCCESS on success.
  15419. */
  15420. static QDF_STATUS extract_ready_event_params_tlv(wmi_unified_t wmi_handle,
  15421. void *evt_buf, struct wmi_host_ready_ev_param *ev_param)
  15422. {
  15423. WMI_READY_EVENTID_param_tlvs *param_buf = NULL;
  15424. wmi_ready_event_fixed_param *ev = NULL;
  15425. param_buf = (WMI_READY_EVENTID_param_tlvs *) evt_buf;
  15426. ev = param_buf->fixed_param;
  15427. ev_param->status = ev->status;
  15428. ev_param->num_dscp_table = ev->num_dscp_table;
  15429. ev_param->num_extra_mac_addr = ev->num_extra_mac_addr;
  15430. ev_param->num_total_peer = ev->num_total_peers;
  15431. ev_param->num_extra_peer = ev->num_extra_peers;
  15432. /* Agile_cap in ready event is not supported in TLV target */
  15433. ev_param->agile_capability = false;
  15434. return QDF_STATUS_SUCCESS;
  15435. }
  15436. /**
  15437. * extract_dbglog_data_len_tlv() - extract debuglog data length
  15438. * @wmi_handle: wmi handle
  15439. * @param evt_buf: pointer to event buffer
  15440. *
  15441. * Return: length
  15442. */
  15443. static uint8_t *extract_dbglog_data_len_tlv(wmi_unified_t wmi_handle,
  15444. void *evt_buf, uint32_t *len)
  15445. {
  15446. WMI_DEBUG_MESG_EVENTID_param_tlvs *param_buf;
  15447. param_buf = (WMI_DEBUG_MESG_EVENTID_param_tlvs *) evt_buf;
  15448. *len = param_buf->num_bufp;
  15449. return param_buf->bufp;
  15450. }
  15451. /**
  15452. * extract_vdev_start_resp_tlv() - extract vdev start response
  15453. * @wmi_handle: wmi handle
  15454. * @param evt_buf: pointer to event buffer
  15455. * @param vdev_rsp: Pointer to hold vdev response
  15456. *
  15457. * Return: QDF_STATUS_SUCCESS for success or error code
  15458. */
  15459. static QDF_STATUS extract_vdev_start_resp_tlv(wmi_unified_t wmi_handle,
  15460. void *evt_buf, wmi_host_vdev_start_resp *vdev_rsp)
  15461. {
  15462. WMI_VDEV_START_RESP_EVENTID_param_tlvs *param_buf;
  15463. wmi_vdev_start_response_event_fixed_param *ev;
  15464. param_buf = (WMI_VDEV_START_RESP_EVENTID_param_tlvs *) evt_buf;
  15465. if (!param_buf) {
  15466. qdf_print("Invalid start response event buffer\n");
  15467. return QDF_STATUS_E_INVAL;
  15468. }
  15469. ev = param_buf->fixed_param;
  15470. if (!ev) {
  15471. qdf_print("Invalid start response event buffer\n");
  15472. return QDF_STATUS_E_INVAL;
  15473. }
  15474. qdf_mem_zero(vdev_rsp, sizeof(*vdev_rsp));
  15475. vdev_rsp->vdev_id = ev->vdev_id;
  15476. vdev_rsp->requestor_id = ev->requestor_id;
  15477. switch (ev->resp_type) {
  15478. case WMI_VDEV_START_RESP_EVENT:
  15479. vdev_rsp->resp_type = WMI_HOST_VDEV_START_RESP_EVENT;
  15480. break;
  15481. case WMI_VDEV_RESTART_RESP_EVENT:
  15482. vdev_rsp->resp_type = WMI_HOST_VDEV_RESTART_RESP_EVENT;
  15483. break;
  15484. default:
  15485. qdf_print("Invalid start response event buffer\n");
  15486. break;
  15487. };
  15488. vdev_rsp->status = ev->status;
  15489. vdev_rsp->chain_mask = ev->chain_mask;
  15490. vdev_rsp->smps_mode = ev->smps_mode;
  15491. vdev_rsp->mac_id = ev->mac_id;
  15492. vdev_rsp->cfgd_tx_streams = ev->cfgd_tx_streams;
  15493. vdev_rsp->cfgd_rx_streams = ev->cfgd_rx_streams;
  15494. return QDF_STATUS_SUCCESS;
  15495. }
  15496. /**
  15497. * extract_vdev_delete_resp_tlv() - extract vdev delete response
  15498. * @wmi_handle: wmi handle
  15499. * @param evt_buf: pointer to event buffer
  15500. * @param delete_rsp: Pointer to hold vdev delete response
  15501. *
  15502. * Return: QDF_STATUS_SUCCESS for success or error code
  15503. */
  15504. static QDF_STATUS extract_vdev_delete_resp_tlv(wmi_unified_t wmi_handle,
  15505. void *evt_buf, struct wmi_host_vdev_delete_resp *delete_rsp)
  15506. {
  15507. WMI_VDEV_DELETE_RESP_EVENTID_param_tlvs *param_buf;
  15508. wmi_vdev_delete_resp_event_fixed_param *ev;
  15509. param_buf = (WMI_VDEV_DELETE_RESP_EVENTID_param_tlvs *) evt_buf;
  15510. if (!param_buf) {
  15511. WMI_LOGE("Invalid vdev delete response event buffer\n");
  15512. return QDF_STATUS_E_INVAL;
  15513. }
  15514. ev = param_buf->fixed_param;
  15515. if (!ev) {
  15516. WMI_LOGE("Invalid vdev delete response event\n");
  15517. return QDF_STATUS_E_INVAL;
  15518. }
  15519. qdf_mem_zero(delete_rsp, sizeof(*delete_rsp));
  15520. delete_rsp->vdev_id = ev->vdev_id;
  15521. return QDF_STATUS_SUCCESS;
  15522. }
  15523. /**
  15524. * extract_tbttoffset_num_vdevs_tlv() - extract tbtt offset num vdev
  15525. * @wmi_handle: wmi handle
  15526. * @param evt_buf: pointer to event buffer
  15527. * @param num_vdevs: Pointer to hold num vdev
  15528. *
  15529. * Return: QDF_STATUS_SUCCESS for success or error code
  15530. */
  15531. static QDF_STATUS extract_tbttoffset_num_vdevs_tlv(void *wmi_hdl,
  15532. void *evt_buf, uint32_t *num_vdevs)
  15533. {
  15534. WMI_TBTTOFFSET_UPDATE_EVENTID_param_tlvs *param_buf;
  15535. wmi_tbtt_offset_event_fixed_param *tbtt_offset_event;
  15536. uint32_t vdev_map;
  15537. param_buf = (WMI_TBTTOFFSET_UPDATE_EVENTID_param_tlvs *)evt_buf;
  15538. if (!param_buf) {
  15539. qdf_print("Invalid tbtt update ext event buffer\n");
  15540. return QDF_STATUS_E_INVAL;
  15541. }
  15542. tbtt_offset_event = param_buf->fixed_param;
  15543. vdev_map = tbtt_offset_event->vdev_map;
  15544. *num_vdevs = wmi_vdev_map_to_num_vdevs(vdev_map);
  15545. return QDF_STATUS_SUCCESS;
  15546. }
  15547. /**
  15548. * extract_ext_tbttoffset_num_vdevs_tlv() - extract ext tbtt offset num vdev
  15549. * @wmi_handle: wmi handle
  15550. * @param evt_buf: pointer to event buffer
  15551. * @param num_vdevs: Pointer to hold num vdev
  15552. *
  15553. * Return: QDF_STATUS_SUCCESS for success or error code
  15554. */
  15555. static QDF_STATUS extract_ext_tbttoffset_num_vdevs_tlv(void *wmi_hdl,
  15556. void *evt_buf, uint32_t *num_vdevs)
  15557. {
  15558. WMI_TBTTOFFSET_EXT_UPDATE_EVENTID_param_tlvs *param_buf;
  15559. wmi_tbtt_offset_ext_event_fixed_param *tbtt_offset_ext_event;
  15560. param_buf = (WMI_TBTTOFFSET_EXT_UPDATE_EVENTID_param_tlvs *)evt_buf;
  15561. if (!param_buf) {
  15562. qdf_print("Invalid tbtt update ext event buffer\n");
  15563. return QDF_STATUS_E_INVAL;
  15564. }
  15565. tbtt_offset_ext_event = param_buf->fixed_param;
  15566. *num_vdevs = tbtt_offset_ext_event->num_vdevs;
  15567. return QDF_STATUS_SUCCESS;
  15568. }
  15569. /**
  15570. * extract_tbttoffset_update_params_tlv() - extract tbtt offset param
  15571. * @wmi_handle: wmi handle
  15572. * @param evt_buf: pointer to event buffer
  15573. * @param idx: Index referring to a vdev
  15574. * @param tbtt_param: Pointer to tbttoffset event param
  15575. *
  15576. * Return: QDF_STATUS_SUCCESS for success or error code
  15577. */
  15578. static QDF_STATUS extract_tbttoffset_update_params_tlv(void *wmi_hdl,
  15579. void *evt_buf, uint8_t idx,
  15580. struct tbttoffset_params *tbtt_param)
  15581. {
  15582. WMI_TBTTOFFSET_UPDATE_EVENTID_param_tlvs *param_buf;
  15583. wmi_tbtt_offset_event_fixed_param *tbtt_offset_event;
  15584. uint32_t vdev_map;
  15585. param_buf = (WMI_TBTTOFFSET_UPDATE_EVENTID_param_tlvs *) evt_buf;
  15586. if (!param_buf) {
  15587. qdf_print("Invalid tbtt update event buffer\n");
  15588. return QDF_STATUS_E_INVAL;
  15589. }
  15590. tbtt_offset_event = param_buf->fixed_param;
  15591. vdev_map = tbtt_offset_event->vdev_map;
  15592. tbtt_param->vdev_id = wmi_vdev_map_to_vdev_id(vdev_map, idx);
  15593. if (tbtt_param->vdev_id == WLAN_INVALID_VDEV_ID)
  15594. return QDF_STATUS_E_INVAL;
  15595. tbtt_param->tbttoffset =
  15596. param_buf->tbttoffset_list[tbtt_param->vdev_id];
  15597. return QDF_STATUS_SUCCESS;
  15598. }
  15599. /**
  15600. * extract_ext_tbttoffset_update_params_tlv() - extract ext tbtt offset param
  15601. * @wmi_handle: wmi handle
  15602. * @param evt_buf: pointer to event buffer
  15603. * @param idx: Index referring to a vdev
  15604. * @param tbtt_param: Pointer to tbttoffset event param
  15605. *
  15606. * Return: QDF_STATUS_SUCCESS for success or error code
  15607. */
  15608. static QDF_STATUS extract_ext_tbttoffset_update_params_tlv(void *wmi_hdl,
  15609. void *evt_buf, uint8_t idx,
  15610. struct tbttoffset_params *tbtt_param)
  15611. {
  15612. WMI_TBTTOFFSET_EXT_UPDATE_EVENTID_param_tlvs *param_buf;
  15613. wmi_tbtt_offset_info *tbtt_offset_info;
  15614. param_buf = (WMI_TBTTOFFSET_EXT_UPDATE_EVENTID_param_tlvs *)evt_buf;
  15615. if (!param_buf) {
  15616. qdf_print("Invalid tbtt update event buffer\n");
  15617. return QDF_STATUS_E_INVAL;
  15618. }
  15619. tbtt_offset_info = &param_buf->tbtt_offset_info[idx];
  15620. tbtt_param->vdev_id = tbtt_offset_info->vdev_id;
  15621. tbtt_param->tbttoffset = tbtt_offset_info->tbttoffset;
  15622. return QDF_STATUS_SUCCESS;
  15623. }
  15624. /**
  15625. * extract_mgmt_rx_params_tlv() - extract management rx params from event
  15626. * @wmi_handle: wmi handle
  15627. * @param evt_buf: pointer to event buffer
  15628. * @param hdr: Pointer to hold header
  15629. * @param bufp: Pointer to hold pointer to rx param buffer
  15630. *
  15631. * Return: QDF_STATUS_SUCCESS for success or error code
  15632. */
  15633. static QDF_STATUS extract_mgmt_rx_params_tlv(wmi_unified_t wmi_handle,
  15634. void *evt_buf, struct mgmt_rx_event_params *hdr,
  15635. uint8_t **bufp)
  15636. {
  15637. WMI_MGMT_RX_EVENTID_param_tlvs *param_tlvs = NULL;
  15638. wmi_mgmt_rx_hdr *ev_hdr = NULL;
  15639. int i;
  15640. param_tlvs = (WMI_MGMT_RX_EVENTID_param_tlvs *) evt_buf;
  15641. if (!param_tlvs) {
  15642. WMI_LOGE("Get NULL point message from FW");
  15643. return QDF_STATUS_E_INVAL;
  15644. }
  15645. ev_hdr = param_tlvs->hdr;
  15646. if (!hdr) {
  15647. WMI_LOGE("Rx event is NULL");
  15648. return QDF_STATUS_E_INVAL;
  15649. }
  15650. hdr->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  15651. ev_hdr->pdev_id);
  15652. hdr->channel = ev_hdr->channel;
  15653. hdr->snr = ev_hdr->snr;
  15654. hdr->rate = ev_hdr->rate;
  15655. hdr->phy_mode = ev_hdr->phy_mode;
  15656. hdr->buf_len = ev_hdr->buf_len;
  15657. hdr->status = ev_hdr->status;
  15658. hdr->flags = ev_hdr->flags;
  15659. hdr->rssi = ev_hdr->rssi;
  15660. hdr->tsf_delta = ev_hdr->tsf_delta;
  15661. for (i = 0; i < ATH_MAX_ANTENNA; i++)
  15662. hdr->rssi_ctl[i] = ev_hdr->rssi_ctl[i];
  15663. *bufp = param_tlvs->bufp;
  15664. return QDF_STATUS_SUCCESS;
  15665. }
  15666. /**
  15667. * extract_vdev_stopped_param_tlv() - extract vdev stop param from event
  15668. * @wmi_handle: wmi handle
  15669. * @param evt_buf: pointer to event buffer
  15670. * @param vdev_id: Pointer to hold vdev identifier
  15671. *
  15672. * Return: QDF_STATUS_SUCCESS for success or error code
  15673. */
  15674. static QDF_STATUS extract_vdev_stopped_param_tlv(wmi_unified_t wmi_handle,
  15675. void *evt_buf, uint32_t *vdev_id)
  15676. {
  15677. WMI_VDEV_STOPPED_EVENTID_param_tlvs *param_buf;
  15678. wmi_vdev_stopped_event_fixed_param *resp_event;
  15679. param_buf = (WMI_VDEV_STOPPED_EVENTID_param_tlvs *) evt_buf;
  15680. if (!param_buf) {
  15681. WMI_LOGE("Invalid event buffer");
  15682. return QDF_STATUS_E_INVAL;
  15683. }
  15684. resp_event = param_buf->fixed_param;
  15685. *vdev_id = resp_event->vdev_id;
  15686. return QDF_STATUS_SUCCESS;
  15687. }
  15688. /**
  15689. * extract_vdev_roam_param_tlv() - extract vdev roam param from event
  15690. * @wmi_handle: wmi handle
  15691. * @param evt_buf: pointer to event buffer
  15692. * @param param: Pointer to hold roam param
  15693. *
  15694. * Return: QDF_STATUS_SUCCESS for success or error code
  15695. */
  15696. static QDF_STATUS extract_vdev_roam_param_tlv(wmi_unified_t wmi_handle,
  15697. void *evt_buf, wmi_host_roam_event *param)
  15698. {
  15699. WMI_ROAM_EVENTID_param_tlvs *param_buf;
  15700. wmi_roam_event_fixed_param *evt;
  15701. param_buf = (WMI_ROAM_EVENTID_param_tlvs *) evt_buf;
  15702. if (!param_buf) {
  15703. WMI_LOGE("Invalid roam event buffer");
  15704. return QDF_STATUS_E_INVAL;
  15705. }
  15706. evt = param_buf->fixed_param;
  15707. qdf_mem_zero(param, sizeof(*param));
  15708. param->vdev_id = evt->vdev_id;
  15709. param->reason = evt->reason;
  15710. param->rssi = evt->rssi;
  15711. return QDF_STATUS_SUCCESS;
  15712. }
  15713. /**
  15714. * extract_vdev_scan_ev_param_tlv() - extract vdev scan param from event
  15715. * @wmi_handle: wmi handle
  15716. * @param evt_buf: pointer to event buffer
  15717. * @param param: Pointer to hold vdev scan param
  15718. *
  15719. * Return: QDF_STATUS_SUCCESS for success or error code
  15720. */
  15721. static QDF_STATUS extract_vdev_scan_ev_param_tlv(wmi_unified_t wmi_handle,
  15722. void *evt_buf, struct scan_event *param)
  15723. {
  15724. WMI_SCAN_EVENTID_param_tlvs *param_buf = NULL;
  15725. wmi_scan_event_fixed_param *evt = NULL;
  15726. param_buf = (WMI_SCAN_EVENTID_param_tlvs *) evt_buf;
  15727. evt = param_buf->fixed_param;
  15728. qdf_mem_zero(param, sizeof(*param));
  15729. switch (evt->event) {
  15730. case WMI_SCAN_EVENT_STARTED:
  15731. param->type = SCAN_EVENT_TYPE_STARTED;
  15732. break;
  15733. case WMI_SCAN_EVENT_COMPLETED:
  15734. param->type = SCAN_EVENT_TYPE_COMPLETED;
  15735. break;
  15736. case WMI_SCAN_EVENT_BSS_CHANNEL:
  15737. param->type = SCAN_EVENT_TYPE_BSS_CHANNEL;
  15738. break;
  15739. case WMI_SCAN_EVENT_FOREIGN_CHANNEL:
  15740. param->type = SCAN_EVENT_TYPE_FOREIGN_CHANNEL;
  15741. break;
  15742. case WMI_SCAN_EVENT_DEQUEUED:
  15743. param->type = SCAN_EVENT_TYPE_DEQUEUED;
  15744. break;
  15745. case WMI_SCAN_EVENT_PREEMPTED:
  15746. param->type = SCAN_EVENT_TYPE_PREEMPTED;
  15747. break;
  15748. case WMI_SCAN_EVENT_START_FAILED:
  15749. param->type = SCAN_EVENT_TYPE_START_FAILED;
  15750. break;
  15751. case WMI_SCAN_EVENT_RESTARTED:
  15752. param->type = SCAN_EVENT_TYPE_RESTARTED;
  15753. break;
  15754. case WMI_SCAN_EVENT_FOREIGN_CHANNEL_EXIT:
  15755. param->type = SCAN_EVENT_TYPE_FOREIGN_CHANNEL_EXIT;
  15756. break;
  15757. case WMI_SCAN_EVENT_MAX:
  15758. default:
  15759. param->type = SCAN_EVENT_TYPE_MAX;
  15760. break;
  15761. };
  15762. switch (evt->reason) {
  15763. case WMI_SCAN_REASON_NONE:
  15764. param->reason = SCAN_REASON_NONE;
  15765. break;
  15766. case WMI_SCAN_REASON_COMPLETED:
  15767. param->reason = SCAN_REASON_COMPLETED;
  15768. break;
  15769. case WMI_SCAN_REASON_CANCELLED:
  15770. param->reason = SCAN_REASON_CANCELLED;
  15771. break;
  15772. case WMI_SCAN_REASON_PREEMPTED:
  15773. param->reason = SCAN_REASON_PREEMPTED;
  15774. break;
  15775. case WMI_SCAN_REASON_TIMEDOUT:
  15776. param->reason = SCAN_REASON_TIMEDOUT;
  15777. break;
  15778. case WMI_SCAN_REASON_INTERNAL_FAILURE:
  15779. param->reason = SCAN_REASON_INTERNAL_FAILURE;
  15780. break;
  15781. case WMI_SCAN_REASON_SUSPENDED:
  15782. param->reason = SCAN_REASON_SUSPENDED;
  15783. break;
  15784. case WMI_SCAN_REASON_MAX:
  15785. param->reason = SCAN_REASON_MAX;
  15786. break;
  15787. default:
  15788. param->reason = SCAN_REASON_MAX;
  15789. break;
  15790. };
  15791. param->chan_freq = evt->channel_freq;
  15792. param->requester = evt->requestor;
  15793. param->scan_id = evt->scan_id;
  15794. param->vdev_id = evt->vdev_id;
  15795. param->timestamp = evt->tsf_timestamp;
  15796. return QDF_STATUS_SUCCESS;
  15797. }
  15798. #ifdef CONVERGED_TDLS_ENABLE
  15799. /**
  15800. * extract_vdev_tdls_ev_param_tlv() - extract vdev tdls param from event
  15801. * @wmi_handle: wmi handle
  15802. * @param evt_buf: pointer to event buffer
  15803. * @param param: Pointer to hold vdev tdls param
  15804. *
  15805. * Return: QDF_STATUS_SUCCESS for success or error code
  15806. */
  15807. static QDF_STATUS extract_vdev_tdls_ev_param_tlv(wmi_unified_t wmi_handle,
  15808. void *evt_buf, struct tdls_event_info *param)
  15809. {
  15810. WMI_TDLS_PEER_EVENTID_param_tlvs *param_buf;
  15811. wmi_tdls_peer_event_fixed_param *evt;
  15812. param_buf = (WMI_TDLS_PEER_EVENTID_param_tlvs *)evt_buf;
  15813. if (!param_buf) {
  15814. WMI_LOGE("%s: NULL param_buf", __func__);
  15815. return QDF_STATUS_E_NULL_VALUE;
  15816. }
  15817. evt = param_buf->fixed_param;
  15818. qdf_mem_zero(param, sizeof(*param));
  15819. param->vdev_id = evt->vdev_id;
  15820. WMI_MAC_ADDR_TO_CHAR_ARRAY(&evt->peer_macaddr,
  15821. param->peermac.bytes);
  15822. switch (evt->peer_status) {
  15823. case WMI_TDLS_SHOULD_DISCOVER:
  15824. param->message_type = TDLS_SHOULD_DISCOVER;
  15825. break;
  15826. case WMI_TDLS_SHOULD_TEARDOWN:
  15827. param->message_type = TDLS_SHOULD_TEARDOWN;
  15828. break;
  15829. case WMI_TDLS_PEER_DISCONNECTED:
  15830. param->message_type = TDLS_PEER_DISCONNECTED;
  15831. break;
  15832. case WMI_TDLS_CONNECTION_TRACKER_NOTIFICATION:
  15833. param->message_type = TDLS_CONNECTION_TRACKER_NOTIFY;
  15834. break;
  15835. default:
  15836. WMI_LOGE("%s: Discarding unknown tdls event %d from target",
  15837. __func__, evt->peer_status);
  15838. return QDF_STATUS_E_INVAL;
  15839. };
  15840. switch (evt->peer_reason) {
  15841. case WMI_TDLS_TEARDOWN_REASON_TX:
  15842. param->peer_reason = TDLS_TEARDOWN_TX;
  15843. break;
  15844. case WMI_TDLS_TEARDOWN_REASON_RSSI:
  15845. param->peer_reason = TDLS_TEARDOWN_RSSI;
  15846. break;
  15847. case WMI_TDLS_TEARDOWN_REASON_SCAN:
  15848. param->peer_reason = TDLS_TEARDOWN_SCAN;
  15849. break;
  15850. case WMI_TDLS_DISCONNECTED_REASON_PEER_DELETE:
  15851. param->peer_reason = TDLS_DISCONNECTED_PEER_DELETE;
  15852. break;
  15853. case WMI_TDLS_TEARDOWN_REASON_PTR_TIMEOUT:
  15854. param->peer_reason = TDLS_TEARDOWN_PTR_TIMEOUT;
  15855. break;
  15856. case WMI_TDLS_TEARDOWN_REASON_BAD_PTR:
  15857. param->peer_reason = TDLS_TEARDOWN_BAD_PTR;
  15858. break;
  15859. case WMI_TDLS_TEARDOWN_REASON_NO_RESPONSE:
  15860. param->peer_reason = TDLS_TEARDOWN_NO_RSP;
  15861. break;
  15862. case WMI_TDLS_ENTER_BUF_STA:
  15863. param->peer_reason = TDLS_PEER_ENTER_BUF_STA;
  15864. break;
  15865. case WMI_TDLS_EXIT_BUF_STA:
  15866. param->peer_reason = TDLS_PEER_EXIT_BUF_STA;
  15867. break;
  15868. case WMI_TDLS_ENTER_BT_BUSY_MODE:
  15869. param->peer_reason = TDLS_ENTER_BT_BUSY;
  15870. break;
  15871. case WMI_TDLS_EXIT_BT_BUSY_MODE:
  15872. param->peer_reason = TDLS_EXIT_BT_BUSY;
  15873. break;
  15874. case WMI_TDLS_SCAN_STARTED_EVENT:
  15875. param->peer_reason = TDLS_SCAN_STARTED;
  15876. break;
  15877. case WMI_TDLS_SCAN_COMPLETED_EVENT:
  15878. param->peer_reason = TDLS_SCAN_COMPLETED;
  15879. break;
  15880. default:
  15881. WMI_LOGE("%s: unknown reason %d in tdls event %d from target",
  15882. __func__, evt->peer_reason, evt->peer_status);
  15883. return QDF_STATUS_E_INVAL;
  15884. };
  15885. WMI_LOGD("%s: tdls event, peer: %pM, type: 0x%x, reason: %d, vdev: %d",
  15886. __func__, param->peermac.bytes, param->message_type,
  15887. param->peer_reason, param->vdev_id);
  15888. return QDF_STATUS_SUCCESS;
  15889. }
  15890. #endif
  15891. /**
  15892. * extract_mgmt_tx_compl_param_tlv() - extract MGMT tx completion event params
  15893. * @wmi_handle: wmi handle
  15894. * @param evt_buf: pointer to event buffer
  15895. * @param param: Pointer to hold MGMT TX completion params
  15896. *
  15897. * Return: QDF_STATUS_SUCCESS for success or error code
  15898. */
  15899. static QDF_STATUS extract_mgmt_tx_compl_param_tlv(wmi_unified_t wmi_handle,
  15900. void *evt_buf, wmi_host_mgmt_tx_compl_event *param)
  15901. {
  15902. WMI_MGMT_TX_COMPLETION_EVENTID_param_tlvs *param_buf;
  15903. wmi_mgmt_tx_compl_event_fixed_param *cmpl_params;
  15904. param_buf = (WMI_MGMT_TX_COMPLETION_EVENTID_param_tlvs *)
  15905. evt_buf;
  15906. if (!param_buf) {
  15907. WMI_LOGE("%s: Invalid mgmt Tx completion event", __func__);
  15908. return QDF_STATUS_E_INVAL;
  15909. }
  15910. cmpl_params = param_buf->fixed_param;
  15911. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  15912. cmpl_params->pdev_id);
  15913. param->desc_id = cmpl_params->desc_id;
  15914. param->status = cmpl_params->status;
  15915. param->ppdu_id = cmpl_params->ppdu_id;
  15916. return QDF_STATUS_SUCCESS;
  15917. }
  15918. /**
  15919. * extract_offchan_data_tx_compl_param_tlv() -
  15920. * extract Offchan data tx completion event params
  15921. * @wmi_handle: wmi handle
  15922. * @param evt_buf: pointer to event buffer
  15923. * @param param: Pointer to hold offchan data TX completion params
  15924. *
  15925. * Return: QDF_STATUS_SUCCESS for success or error code
  15926. */
  15927. static QDF_STATUS extract_offchan_data_tx_compl_param_tlv(
  15928. wmi_unified_t wmi_handle, void *evt_buf,
  15929. struct wmi_host_offchan_data_tx_compl_event *param)
  15930. {
  15931. WMI_OFFCHAN_DATA_TX_COMPLETION_EVENTID_param_tlvs *param_buf;
  15932. wmi_offchan_data_tx_compl_event_fixed_param *cmpl_params;
  15933. param_buf = (WMI_OFFCHAN_DATA_TX_COMPLETION_EVENTID_param_tlvs *)
  15934. evt_buf;
  15935. if (!param_buf) {
  15936. WMI_LOGE("%s: Invalid offchan data Tx compl event", __func__);
  15937. return QDF_STATUS_E_INVAL;
  15938. }
  15939. cmpl_params = param_buf->fixed_param;
  15940. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  15941. cmpl_params->pdev_id);
  15942. param->desc_id = cmpl_params->desc_id;
  15943. param->status = cmpl_params->status;
  15944. return QDF_STATUS_SUCCESS;
  15945. }
  15946. /**
  15947. * extract_pdev_csa_switch_count_status_tlv() - extract pdev csa switch count
  15948. * status tlv
  15949. * @wmi_handle: wmi handle
  15950. * @param evt_buf: pointer to event buffer
  15951. * @param param: Pointer to hold csa switch count status event param
  15952. *
  15953. * Return: QDF_STATUS_SUCCESS for success or error code
  15954. */
  15955. static QDF_STATUS extract_pdev_csa_switch_count_status_tlv(
  15956. wmi_unified_t wmi_handle,
  15957. void *evt_buf,
  15958. struct pdev_csa_switch_count_status *param)
  15959. {
  15960. WMI_PDEV_CSA_SWITCH_COUNT_STATUS_EVENTID_param_tlvs *param_buf;
  15961. wmi_pdev_csa_switch_count_status_event_fixed_param *csa_status;
  15962. param_buf = (WMI_PDEV_CSA_SWITCH_COUNT_STATUS_EVENTID_param_tlvs *)
  15963. evt_buf;
  15964. if (!param_buf) {
  15965. WMI_LOGE("%s: Invalid CSA status event\n", __func__);
  15966. return QDF_STATUS_E_INVAL;
  15967. }
  15968. csa_status = param_buf->fixed_param;
  15969. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  15970. csa_status->pdev_id);
  15971. param->current_switch_count = csa_status->current_switch_count;
  15972. param->num_vdevs = csa_status->num_vdevs;
  15973. param->vdev_ids = param_buf->vdev_ids;
  15974. return QDF_STATUS_SUCCESS;
  15975. }
  15976. /**
  15977. * extract_pdev_tpc_config_ev_param_tlv() - extract pdev tpc configuration
  15978. * param from event
  15979. * @wmi_handle: wmi handle
  15980. * @param evt_buf: pointer to event buffer
  15981. * @param param: Pointer to hold tpc configuration
  15982. *
  15983. * Return: 0 for success or error code
  15984. */
  15985. static QDF_STATUS extract_pdev_tpc_config_ev_param_tlv(wmi_unified_t wmi_handle,
  15986. void *evt_buf,
  15987. wmi_host_pdev_tpc_config_event *param)
  15988. {
  15989. wmi_pdev_tpc_config_event_fixed_param *event =
  15990. (wmi_pdev_tpc_config_event_fixed_param *)evt_buf;
  15991. if (!event) {
  15992. WMI_LOGE("Invalid event buffer");
  15993. return QDF_STATUS_E_INVAL;
  15994. }
  15995. param->pdev_id = event->pdev_id;
  15996. param->regDomain = event->regDomain;
  15997. param->chanFreq = event->chanFreq;
  15998. param->phyMode = event->phyMode;
  15999. param->twiceAntennaReduction = event->twiceAntennaReduction;
  16000. param->twiceMaxRDPower = event->twiceMaxRDPower;
  16001. param->powerLimit = event->powerLimit;
  16002. param->rateMax = event->rateMax;
  16003. param->numTxChain = event->numTxChain;
  16004. param->ctl = event->ctl;
  16005. param->flags = event->flags;
  16006. qdf_mem_copy(param->maxRegAllowedPower, event->maxRegAllowedPower,
  16007. sizeof(param->maxRegAllowedPower));
  16008. qdf_mem_copy(param->maxRegAllowedPowerAGCDD,
  16009. event->maxRegAllowedPowerAGCDD,
  16010. sizeof(param->maxRegAllowedPowerAGCDD));
  16011. qdf_mem_copy(param->maxRegAllowedPowerAGSTBC,
  16012. event->maxRegAllowedPowerAGSTBC,
  16013. sizeof(param->maxRegAllowedPowerAGSTBC));
  16014. qdf_mem_copy(param->maxRegAllowedPowerAGTXBF,
  16015. event->maxRegAllowedPowerAGTXBF,
  16016. sizeof(param->maxRegAllowedPowerAGTXBF));
  16017. WMI_LOGD("%s:extract success", __func__);
  16018. return QDF_STATUS_SUCCESS;
  16019. }
  16020. /**
  16021. * extract_swba_num_vdevs_tlv() - extract swba num vdevs from event
  16022. * @wmi_handle: wmi handle
  16023. * @param evt_buf: pointer to event buffer
  16024. * @param num_vdevs: Pointer to hold num vdevs
  16025. *
  16026. * Return: QDF_STATUS_SUCCESS for success or error code
  16027. */
  16028. static QDF_STATUS extract_swba_num_vdevs_tlv(wmi_unified_t wmi_handle,
  16029. void *evt_buf, uint32_t *num_vdevs)
  16030. {
  16031. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  16032. wmi_host_swba_event_fixed_param *swba_event;
  16033. uint32_t vdev_map;
  16034. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *) evt_buf;
  16035. if (!param_buf) {
  16036. WMI_LOGE("Invalid swba event buffer");
  16037. return QDF_STATUS_E_INVAL;
  16038. }
  16039. swba_event = param_buf->fixed_param;
  16040. *num_vdevs = swba_event->num_vdevs;
  16041. if (!(*num_vdevs)) {
  16042. vdev_map = swba_event->vdev_map;
  16043. *num_vdevs = wmi_vdev_map_to_num_vdevs(vdev_map);
  16044. }
  16045. return QDF_STATUS_SUCCESS;
  16046. }
  16047. /**
  16048. * extract_swba_tim_info_tlv() - extract swba tim info from event
  16049. * @wmi_handle: wmi handle
  16050. * @param evt_buf: pointer to event buffer
  16051. * @param idx: Index to bcn info
  16052. * @param tim_info: Pointer to hold tim info
  16053. *
  16054. * Return: QDF_STATUS_SUCCESS for success or error code
  16055. */
  16056. static QDF_STATUS extract_swba_tim_info_tlv(wmi_unified_t wmi_handle,
  16057. void *evt_buf, uint32_t idx, wmi_host_tim_info *tim_info)
  16058. {
  16059. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  16060. wmi_tim_info *tim_info_ev;
  16061. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *) evt_buf;
  16062. if (!param_buf) {
  16063. WMI_LOGE("Invalid swba event buffer");
  16064. return QDF_STATUS_E_INVAL;
  16065. }
  16066. tim_info_ev = &param_buf->tim_info[idx];
  16067. tim_info->tim_len = tim_info_ev->tim_len;
  16068. tim_info->tim_mcast = tim_info_ev->tim_mcast;
  16069. qdf_mem_copy(tim_info->tim_bitmap, tim_info_ev->tim_bitmap,
  16070. (sizeof(uint32_t) * WMI_TIM_BITMAP_ARRAY_SIZE));
  16071. tim_info->tim_changed = tim_info_ev->tim_changed;
  16072. tim_info->tim_num_ps_pending = tim_info_ev->tim_num_ps_pending;
  16073. tim_info->vdev_id = tim_info_ev->vdev_id;
  16074. return QDF_STATUS_SUCCESS;
  16075. }
  16076. /**
  16077. * extract_swba_noa_info_tlv() - extract swba NoA information from event
  16078. * @wmi_handle: wmi handle
  16079. * @param evt_buf: pointer to event buffer
  16080. * @param idx: Index to bcn info
  16081. * @param p2p_desc: Pointer to hold p2p NoA info
  16082. *
  16083. * Return: QDF_STATUS_SUCCESS for success or error code
  16084. */
  16085. static QDF_STATUS extract_swba_noa_info_tlv(wmi_unified_t wmi_handle,
  16086. void *evt_buf, uint32_t idx, wmi_host_p2p_noa_info *p2p_desc)
  16087. {
  16088. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  16089. wmi_p2p_noa_info *p2p_noa_info;
  16090. uint8_t i = 0;
  16091. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *) evt_buf;
  16092. if (!param_buf) {
  16093. WMI_LOGE("Invalid swba event buffer");
  16094. return QDF_STATUS_E_INVAL;
  16095. }
  16096. p2p_noa_info = &param_buf->p2p_noa_info[idx];
  16097. p2p_desc->modified = false;
  16098. p2p_desc->num_descriptors = 0;
  16099. if (WMI_UNIFIED_NOA_ATTR_IS_MODIFIED(p2p_noa_info)) {
  16100. p2p_desc->modified = true;
  16101. p2p_desc->index =
  16102. (uint8_t) WMI_UNIFIED_NOA_ATTR_INDEX_GET(p2p_noa_info);
  16103. p2p_desc->oppPS =
  16104. (uint8_t) WMI_UNIFIED_NOA_ATTR_OPP_PS_GET(p2p_noa_info);
  16105. p2p_desc->ctwindow =
  16106. (uint8_t) WMI_UNIFIED_NOA_ATTR_CTWIN_GET(p2p_noa_info);
  16107. p2p_desc->num_descriptors =
  16108. (uint8_t) WMI_UNIFIED_NOA_ATTR_NUM_DESC_GET
  16109. (p2p_noa_info);
  16110. for (i = 0; i < p2p_desc->num_descriptors; i++) {
  16111. p2p_desc->noa_descriptors[i].type_count =
  16112. (uint8_t) p2p_noa_info->noa_descriptors[i].
  16113. type_count;
  16114. p2p_desc->noa_descriptors[i].duration =
  16115. p2p_noa_info->noa_descriptors[i].duration;
  16116. p2p_desc->noa_descriptors[i].interval =
  16117. p2p_noa_info->noa_descriptors[i].interval;
  16118. p2p_desc->noa_descriptors[i].start_time =
  16119. p2p_noa_info->noa_descriptors[i].start_time;
  16120. }
  16121. p2p_desc->vdev_id = p2p_noa_info->vdev_id;
  16122. }
  16123. return QDF_STATUS_SUCCESS;
  16124. }
  16125. #ifdef CONVERGED_P2P_ENABLE
  16126. /**
  16127. * extract_p2p_noa_ev_param_tlv() - extract p2p noa information from event
  16128. * @wmi_handle: wmi handle
  16129. * @param evt_buf: pointer to event buffer
  16130. * @param param: Pointer to hold p2p noa info
  16131. *
  16132. * Return: QDF_STATUS_SUCCESS for success or error code
  16133. */
  16134. static QDF_STATUS extract_p2p_noa_ev_param_tlv(
  16135. wmi_unified_t wmi_handle, void *evt_buf,
  16136. struct p2p_noa_info *param)
  16137. {
  16138. WMI_P2P_NOA_EVENTID_param_tlvs *param_tlvs;
  16139. wmi_p2p_noa_event_fixed_param *fixed_param;
  16140. uint8_t i;
  16141. wmi_p2p_noa_info *wmi_noa_info;
  16142. uint8_t *buf_ptr;
  16143. uint32_t descriptors;
  16144. param_tlvs = (WMI_P2P_NOA_EVENTID_param_tlvs *) evt_buf;
  16145. if (!param_tlvs) {
  16146. WMI_LOGE("%s: Invalid P2P NoA event buffer", __func__);
  16147. return QDF_STATUS_E_INVAL;
  16148. }
  16149. if (!param) {
  16150. WMI_LOGE("noa information param is null");
  16151. return QDF_STATUS_E_INVAL;
  16152. }
  16153. fixed_param = param_tlvs->fixed_param;
  16154. buf_ptr = (uint8_t *) fixed_param;
  16155. buf_ptr += sizeof(wmi_p2p_noa_event_fixed_param);
  16156. wmi_noa_info = (wmi_p2p_noa_info *) (buf_ptr);
  16157. if (!WMI_UNIFIED_NOA_ATTR_IS_MODIFIED(wmi_noa_info)) {
  16158. WMI_LOGE("%s: noa attr is not modified", __func__);
  16159. return QDF_STATUS_E_INVAL;
  16160. }
  16161. param->vdev_id = fixed_param->vdev_id;
  16162. param->index =
  16163. (uint8_t) WMI_UNIFIED_NOA_ATTR_INDEX_GET(wmi_noa_info);
  16164. param->opps_ps =
  16165. (uint8_t) WMI_UNIFIED_NOA_ATTR_OPP_PS_GET(wmi_noa_info);
  16166. param->ct_window =
  16167. (uint8_t) WMI_UNIFIED_NOA_ATTR_CTWIN_GET(wmi_noa_info);
  16168. descriptors = WMI_UNIFIED_NOA_ATTR_NUM_DESC_GET(wmi_noa_info);
  16169. param->num_desc = (uint8_t) descriptors;
  16170. WMI_LOGD("%s:index %u, opps_ps %u, ct_window %u, num_descriptors = %u", __func__,
  16171. param->index, param->opps_ps, param->ct_window,
  16172. param->num_desc);
  16173. for (i = 0; i < param->num_desc; i++) {
  16174. param->noa_desc[i].type_count =
  16175. (uint8_t) wmi_noa_info->noa_descriptors[i].
  16176. type_count;
  16177. param->noa_desc[i].duration =
  16178. wmi_noa_info->noa_descriptors[i].duration;
  16179. param->noa_desc[i].interval =
  16180. wmi_noa_info->noa_descriptors[i].interval;
  16181. param->noa_desc[i].start_time =
  16182. wmi_noa_info->noa_descriptors[i].start_time;
  16183. WMI_LOGD("%s:NoA descriptor[%d] type_count %u, duration %u, interval %u, start_time = %u",
  16184. __func__, i, param->noa_desc[i].type_count,
  16185. param->noa_desc[i].duration,
  16186. param->noa_desc[i].interval,
  16187. param->noa_desc[i].start_time);
  16188. }
  16189. return QDF_STATUS_SUCCESS;
  16190. }
  16191. /**
  16192. * extract_p2p_lo_stop_ev_param_tlv() - extract p2p lo stop
  16193. * information from event
  16194. * @wmi_handle: wmi handle
  16195. * @param evt_buf: pointer to event buffer
  16196. * @param param: Pointer to hold p2p lo stop event information
  16197. *
  16198. * Return: QDF_STATUS_SUCCESS for success or error code
  16199. */
  16200. static QDF_STATUS extract_p2p_lo_stop_ev_param_tlv(
  16201. wmi_unified_t wmi_handle, void *evt_buf,
  16202. struct p2p_lo_event *param)
  16203. {
  16204. WMI_P2P_LISTEN_OFFLOAD_STOPPED_EVENTID_param_tlvs *param_tlvs;
  16205. wmi_p2p_lo_stopped_event_fixed_param *lo_param;
  16206. param_tlvs = (WMI_P2P_LISTEN_OFFLOAD_STOPPED_EVENTID_param_tlvs *)
  16207. evt_buf;
  16208. if (!param_tlvs) {
  16209. WMI_LOGE("%s: Invalid P2P lo stop event buffer", __func__);
  16210. return QDF_STATUS_E_INVAL;
  16211. }
  16212. if (!param) {
  16213. WMI_LOGE("lo stop event param is null");
  16214. return QDF_STATUS_E_INVAL;
  16215. }
  16216. lo_param = param_tlvs->fixed_param;
  16217. param->vdev_id = lo_param->vdev_id;
  16218. param->reason_code = lo_param->reason;
  16219. WMI_LOGD("%s: vdev_id:%d, reason:%d", __func__,
  16220. param->vdev_id, param->reason_code);
  16221. return QDF_STATUS_SUCCESS;
  16222. }
  16223. #endif /* End of CONVERGED_P2P_ENABLE */
  16224. /**
  16225. * extract_peer_sta_kickout_ev_tlv() - extract peer sta kickout event
  16226. * @wmi_handle: wmi handle
  16227. * @param evt_buf: pointer to event buffer
  16228. * @param ev: Pointer to hold peer param
  16229. *
  16230. * Return: QDF_STATUS_SUCCESS for success or error code
  16231. */
  16232. static QDF_STATUS extract_peer_sta_kickout_ev_tlv(wmi_unified_t wmi_handle,
  16233. void *evt_buf, wmi_host_peer_sta_kickout_event *ev)
  16234. {
  16235. WMI_PEER_STA_KICKOUT_EVENTID_param_tlvs *param_buf = NULL;
  16236. wmi_peer_sta_kickout_event_fixed_param *kickout_event = NULL;
  16237. param_buf = (WMI_PEER_STA_KICKOUT_EVENTID_param_tlvs *) evt_buf;
  16238. kickout_event = param_buf->fixed_param;
  16239. WMI_MAC_ADDR_TO_CHAR_ARRAY(&kickout_event->peer_macaddr,
  16240. ev->peer_macaddr);
  16241. ev->reason = kickout_event->reason;
  16242. ev->rssi = kickout_event->rssi;
  16243. return QDF_STATUS_SUCCESS;
  16244. }
  16245. /**
  16246. * extract_all_stats_counts_tlv() - extract all stats count from event
  16247. * @wmi_handle: wmi handle
  16248. * @param evt_buf: pointer to event buffer
  16249. * @param stats_param: Pointer to hold stats count
  16250. *
  16251. * Return: QDF_STATUS_SUCCESS for success or error code
  16252. */
  16253. static QDF_STATUS extract_all_stats_counts_tlv(wmi_unified_t wmi_handle,
  16254. void *evt_buf, wmi_host_stats_event *stats_param)
  16255. {
  16256. wmi_stats_event_fixed_param *ev;
  16257. wmi_per_chain_rssi_stats *rssi_event;
  16258. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16259. qdf_mem_zero(stats_param, sizeof(*stats_param));
  16260. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16261. ev = (wmi_stats_event_fixed_param *) param_buf->fixed_param;
  16262. rssi_event = param_buf->chain_stats;
  16263. if (!ev) {
  16264. WMI_LOGE("%s: event fixed param NULL\n", __func__);
  16265. return QDF_STATUS_E_FAILURE;
  16266. }
  16267. switch (ev->stats_id) {
  16268. case WMI_REQUEST_PEER_STAT:
  16269. stats_param->stats_id = WMI_HOST_REQUEST_PEER_STAT;
  16270. break;
  16271. case WMI_REQUEST_AP_STAT:
  16272. stats_param->stats_id = WMI_HOST_REQUEST_AP_STAT;
  16273. break;
  16274. case WMI_REQUEST_PDEV_STAT:
  16275. stats_param->stats_id = WMI_HOST_REQUEST_PDEV_STAT;
  16276. break;
  16277. case WMI_REQUEST_VDEV_STAT:
  16278. stats_param->stats_id = WMI_HOST_REQUEST_VDEV_STAT;
  16279. break;
  16280. case WMI_REQUEST_BCNFLT_STAT:
  16281. stats_param->stats_id = WMI_HOST_REQUEST_BCNFLT_STAT;
  16282. break;
  16283. case WMI_REQUEST_VDEV_RATE_STAT:
  16284. stats_param->stats_id = WMI_HOST_REQUEST_VDEV_RATE_STAT;
  16285. break;
  16286. case WMI_REQUEST_BCN_STAT:
  16287. stats_param->stats_id |= WMI_HOST_REQUEST_BCN_STAT;
  16288. break;
  16289. default:
  16290. stats_param->stats_id = 0;
  16291. break;
  16292. }
  16293. stats_param->num_pdev_stats = ev->num_pdev_stats;
  16294. stats_param->num_pdev_ext_stats = 0;
  16295. stats_param->num_vdev_stats = ev->num_vdev_stats;
  16296. stats_param->num_peer_stats = ev->num_peer_stats;
  16297. stats_param->num_bcnflt_stats = ev->num_bcnflt_stats;
  16298. stats_param->num_chan_stats = ev->num_chan_stats;
  16299. stats_param->num_bcn_stats = ev->num_bcn_stats;
  16300. stats_param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  16301. ev->pdev_id);
  16302. /* if chain_stats is not populated */
  16303. if (!param_buf->chain_stats || !param_buf->num_chain_stats)
  16304. return QDF_STATUS_SUCCESS;
  16305. if (WMITLV_TAG_STRUC_wmi_per_chain_rssi_stats !=
  16306. WMITLV_GET_TLVTAG(rssi_event->tlv_header))
  16307. return QDF_STATUS_SUCCESS;
  16308. if (WMITLV_GET_STRUCT_TLVLEN(wmi_per_chain_rssi_stats) !=
  16309. WMITLV_GET_TLVLEN(rssi_event->tlv_header))
  16310. return QDF_STATUS_SUCCESS;
  16311. stats_param->num_rssi_stats = rssi_event->num_per_chain_rssi_stats;
  16312. return QDF_STATUS_SUCCESS;
  16313. }
  16314. /**
  16315. * extract_pdev_tx_stats() - extract pdev tx stats from event
  16316. */
  16317. static void extract_pdev_tx_stats(wmi_host_dbg_tx_stats *tx, struct wlan_dbg_tx_stats *tx_stats)
  16318. {
  16319. /* Tx Stats */
  16320. tx->comp_queued = tx_stats->comp_queued;
  16321. tx->comp_delivered = tx_stats->comp_delivered;
  16322. tx->msdu_enqued = tx_stats->msdu_enqued;
  16323. tx->mpdu_enqued = tx_stats->mpdu_enqued;
  16324. tx->wmm_drop = tx_stats->wmm_drop;
  16325. tx->local_enqued = tx_stats->local_enqued;
  16326. tx->local_freed = tx_stats->local_freed;
  16327. tx->hw_queued = tx_stats->hw_queued;
  16328. tx->hw_reaped = tx_stats->hw_reaped;
  16329. tx->underrun = tx_stats->underrun;
  16330. tx->tx_abort = tx_stats->tx_abort;
  16331. tx->mpdus_requed = tx_stats->mpdus_requed;
  16332. tx->data_rc = tx_stats->data_rc;
  16333. tx->self_triggers = tx_stats->self_triggers;
  16334. tx->sw_retry_failure = tx_stats->sw_retry_failure;
  16335. tx->illgl_rate_phy_err = tx_stats->illgl_rate_phy_err;
  16336. tx->pdev_cont_xretry = tx_stats->pdev_cont_xretry;
  16337. tx->pdev_tx_timeout = tx_stats->pdev_tx_timeout;
  16338. tx->pdev_resets = tx_stats->pdev_resets;
  16339. tx->stateless_tid_alloc_failure = tx_stats->stateless_tid_alloc_failure;
  16340. tx->phy_underrun = tx_stats->phy_underrun;
  16341. tx->txop_ovf = tx_stats->txop_ovf;
  16342. return;
  16343. }
  16344. /**
  16345. * extract_pdev_rx_stats() - extract pdev rx stats from event
  16346. */
  16347. static void extract_pdev_rx_stats(wmi_host_dbg_rx_stats *rx, struct wlan_dbg_rx_stats *rx_stats)
  16348. {
  16349. /* Rx Stats */
  16350. rx->mid_ppdu_route_change = rx_stats->mid_ppdu_route_change;
  16351. rx->status_rcvd = rx_stats->status_rcvd;
  16352. rx->r0_frags = rx_stats->r0_frags;
  16353. rx->r1_frags = rx_stats->r1_frags;
  16354. rx->r2_frags = rx_stats->r2_frags;
  16355. /* Only TLV */
  16356. rx->r3_frags = 0;
  16357. rx->htt_msdus = rx_stats->htt_msdus;
  16358. rx->htt_mpdus = rx_stats->htt_mpdus;
  16359. rx->loc_msdus = rx_stats->loc_msdus;
  16360. rx->loc_mpdus = rx_stats->loc_mpdus;
  16361. rx->oversize_amsdu = rx_stats->oversize_amsdu;
  16362. rx->phy_errs = rx_stats->phy_errs;
  16363. rx->phy_err_drop = rx_stats->phy_err_drop;
  16364. rx->mpdu_errs = rx_stats->mpdu_errs;
  16365. return;
  16366. }
  16367. /**
  16368. * extract_pdev_stats_tlv() - extract pdev stats from event
  16369. * @wmi_handle: wmi handle
  16370. * @param evt_buf: pointer to event buffer
  16371. * @param index: Index into pdev stats
  16372. * @param pdev_stats: Pointer to hold pdev stats
  16373. *
  16374. * Return: QDF_STATUS_SUCCESS for success or error code
  16375. */
  16376. static QDF_STATUS extract_pdev_stats_tlv(wmi_unified_t wmi_handle,
  16377. void *evt_buf, uint32_t index, wmi_host_pdev_stats *pdev_stats)
  16378. {
  16379. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16380. wmi_stats_event_fixed_param *ev_param;
  16381. uint8_t *data;
  16382. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16383. ev_param = (wmi_stats_event_fixed_param *) param_buf->fixed_param;
  16384. data = param_buf->data;
  16385. if (index < ev_param->num_pdev_stats) {
  16386. wmi_pdev_stats *ev = (wmi_pdev_stats *) ((data) +
  16387. (index * sizeof(wmi_pdev_stats)));
  16388. pdev_stats->chan_nf = ev->chan_nf;
  16389. pdev_stats->tx_frame_count = ev->tx_frame_count;
  16390. pdev_stats->rx_frame_count = ev->rx_frame_count;
  16391. pdev_stats->rx_clear_count = ev->rx_clear_count;
  16392. pdev_stats->cycle_count = ev->cycle_count;
  16393. pdev_stats->phy_err_count = ev->phy_err_count;
  16394. pdev_stats->chan_tx_pwr = ev->chan_tx_pwr;
  16395. extract_pdev_tx_stats(&(pdev_stats->pdev_stats.tx),
  16396. &(ev->pdev_stats.tx));
  16397. extract_pdev_rx_stats(&(pdev_stats->pdev_stats.rx),
  16398. &(ev->pdev_stats.rx));
  16399. }
  16400. return QDF_STATUS_SUCCESS;
  16401. }
  16402. /**
  16403. * extract_unit_test_tlv() - extract unit test data
  16404. * @wmi_handle: wmi handle
  16405. * @param evt_buf: pointer to event buffer
  16406. * @param unit_test: pointer to hold unit test data
  16407. * @param maxspace: Amount of space in evt_buf
  16408. *
  16409. * Return: QDF_STATUS_SUCCESS for success or error code
  16410. */
  16411. static QDF_STATUS extract_unit_test_tlv(wmi_unified_t wmi_handle,
  16412. void *evt_buf, wmi_unit_test_event *unit_test, uint32_t maxspace)
  16413. {
  16414. WMI_UNIT_TEST_EVENTID_param_tlvs *param_buf;
  16415. wmi_unit_test_event_fixed_param *ev_param;
  16416. uint32_t num_bufp;
  16417. uint32_t copy_size;
  16418. uint8_t *bufp;
  16419. param_buf = (WMI_UNIT_TEST_EVENTID_param_tlvs *) evt_buf;
  16420. ev_param = param_buf->fixed_param;
  16421. bufp = param_buf->bufp;
  16422. num_bufp = param_buf->num_bufp;
  16423. unit_test->vdev_id = ev_param->vdev_id;
  16424. unit_test->module_id = ev_param->module_id;
  16425. unit_test->diag_token = ev_param->diag_token;
  16426. unit_test->flag = ev_param->flag;
  16427. unit_test->payload_len = ev_param->payload_len;
  16428. WMI_LOGI("%s:vdev_id:%d mod_id:%d diag_token:%d flag:%d\n", __func__,
  16429. ev_param->vdev_id,
  16430. ev_param->module_id,
  16431. ev_param->diag_token,
  16432. ev_param->flag);
  16433. WMI_LOGD("%s: Unit-test data given below %d", __func__, num_bufp);
  16434. qdf_trace_hex_dump(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  16435. bufp, num_bufp);
  16436. copy_size = (num_bufp < maxspace) ? num_bufp : maxspace;
  16437. qdf_mem_copy(unit_test->buffer, bufp, copy_size);
  16438. unit_test->buffer_len = copy_size;
  16439. return QDF_STATUS_SUCCESS;
  16440. }
  16441. /**
  16442. * extract_pdev_ext_stats_tlv() - extract extended pdev stats from event
  16443. * @wmi_handle: wmi handle
  16444. * @param evt_buf: pointer to event buffer
  16445. * @param index: Index into extended pdev stats
  16446. * @param pdev_ext_stats: Pointer to hold extended pdev stats
  16447. *
  16448. * Return: QDF_STATUS_SUCCESS for success or error code
  16449. */
  16450. static QDF_STATUS extract_pdev_ext_stats_tlv(wmi_unified_t wmi_handle,
  16451. void *evt_buf, uint32_t index, wmi_host_pdev_ext_stats *pdev_ext_stats)
  16452. {
  16453. return QDF_STATUS_SUCCESS;
  16454. }
  16455. /**
  16456. * extract_vdev_stats_tlv() - extract vdev stats from event
  16457. * @wmi_handle: wmi handle
  16458. * @param evt_buf: pointer to event buffer
  16459. * @param index: Index into vdev stats
  16460. * @param vdev_stats: Pointer to hold vdev stats
  16461. *
  16462. * Return: QDF_STATUS_SUCCESS for success or error code
  16463. */
  16464. static QDF_STATUS extract_vdev_stats_tlv(wmi_unified_t wmi_handle,
  16465. void *evt_buf, uint32_t index, wmi_host_vdev_stats *vdev_stats)
  16466. {
  16467. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16468. wmi_stats_event_fixed_param *ev_param;
  16469. uint8_t *data;
  16470. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16471. ev_param = (wmi_stats_event_fixed_param *) param_buf->fixed_param;
  16472. data = (uint8_t *) param_buf->data;
  16473. if (index < ev_param->num_vdev_stats) {
  16474. wmi_vdev_stats *ev = (wmi_vdev_stats *) ((data) +
  16475. ((ev_param->num_pdev_stats) *
  16476. sizeof(wmi_pdev_stats)) +
  16477. (index * sizeof(wmi_vdev_stats)));
  16478. vdev_stats->vdev_id = ev->vdev_id;
  16479. vdev_stats->vdev_snr.bcn_snr = ev->vdev_snr.bcn_snr;
  16480. vdev_stats->vdev_snr.dat_snr = ev->vdev_snr.dat_snr;
  16481. OS_MEMCPY(vdev_stats->tx_frm_cnt, ev->tx_frm_cnt,
  16482. sizeof(ev->tx_frm_cnt));
  16483. vdev_stats->rx_frm_cnt = ev->rx_frm_cnt;
  16484. OS_MEMCPY(vdev_stats->multiple_retry_cnt,
  16485. ev->multiple_retry_cnt,
  16486. sizeof(ev->multiple_retry_cnt));
  16487. OS_MEMCPY(vdev_stats->fail_cnt, ev->fail_cnt,
  16488. sizeof(ev->fail_cnt));
  16489. vdev_stats->rts_fail_cnt = ev->rts_fail_cnt;
  16490. vdev_stats->rts_succ_cnt = ev->rts_succ_cnt;
  16491. vdev_stats->rx_err_cnt = ev->rx_err_cnt;
  16492. vdev_stats->rx_discard_cnt = ev->rx_discard_cnt;
  16493. vdev_stats->ack_fail_cnt = ev->ack_fail_cnt;
  16494. OS_MEMCPY(vdev_stats->tx_rate_history, ev->tx_rate_history,
  16495. sizeof(ev->tx_rate_history));
  16496. OS_MEMCPY(vdev_stats->bcn_rssi_history, ev->bcn_rssi_history,
  16497. sizeof(ev->bcn_rssi_history));
  16498. }
  16499. return QDF_STATUS_SUCCESS;
  16500. }
  16501. /**
  16502. * extract_per_chain_rssi_stats_tlv() - api to extract rssi stats from event
  16503. * buffer
  16504. * @wmi_handle: wmi handle
  16505. * @evt_buf: pointer to event buffer
  16506. * @index: Index into vdev stats
  16507. * @rssi_stats: Pointer to hold rssi stats
  16508. *
  16509. * Return: QDF_STATUS_SUCCESS for success or error code
  16510. */
  16511. static QDF_STATUS extract_per_chain_rssi_stats_tlv(wmi_unified_t wmi_handle,
  16512. void *evt_buf, uint32_t index,
  16513. struct wmi_host_per_chain_rssi_stats *rssi_stats)
  16514. {
  16515. uint8_t *data;
  16516. wmi_rssi_stats *fw_rssi_stats;
  16517. wmi_per_chain_rssi_stats *rssi_event;
  16518. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16519. if (!evt_buf) {
  16520. WMI_LOGE("evt_buf is null");
  16521. return QDF_STATUS_E_NULL_VALUE;
  16522. }
  16523. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16524. rssi_event = param_buf->chain_stats;
  16525. if (index >= rssi_event->num_per_chain_rssi_stats) {
  16526. WMI_LOGE("invalid index");
  16527. return QDF_STATUS_E_INVAL;
  16528. }
  16529. data = ((uint8_t *)(&rssi_event[1])) + WMI_TLV_HDR_SIZE;
  16530. fw_rssi_stats = &((wmi_rssi_stats *)data)[index];
  16531. rssi_stats->vdev_id = fw_rssi_stats->vdev_id;
  16532. qdf_mem_copy(rssi_stats->rssi_avg_beacon,
  16533. fw_rssi_stats->rssi_avg_beacon,
  16534. sizeof(fw_rssi_stats->rssi_avg_beacon));
  16535. qdf_mem_copy(rssi_stats->rssi_avg_data,
  16536. fw_rssi_stats->rssi_avg_data,
  16537. sizeof(fw_rssi_stats->rssi_avg_data));
  16538. qdf_mem_copy(&rssi_stats->peer_macaddr,
  16539. &fw_rssi_stats->peer_macaddr,
  16540. sizeof(fw_rssi_stats->peer_macaddr));
  16541. return QDF_STATUS_SUCCESS;
  16542. }
  16543. /**
  16544. * extract_bcn_stats_tlv() - extract bcn stats from event
  16545. * @wmi_handle: wmi handle
  16546. * @param evt_buf: pointer to event buffer
  16547. * @param index: Index into vdev stats
  16548. * @param bcn_stats: Pointer to hold bcn stats
  16549. *
  16550. * Return: QDF_STATUS_SUCCESS for success or error code
  16551. */
  16552. static QDF_STATUS extract_bcn_stats_tlv(wmi_unified_t wmi_handle,
  16553. void *evt_buf, uint32_t index, wmi_host_bcn_stats *bcn_stats)
  16554. {
  16555. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16556. wmi_stats_event_fixed_param *ev_param;
  16557. uint8_t *data;
  16558. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16559. ev_param = (wmi_stats_event_fixed_param *) param_buf->fixed_param;
  16560. data = (uint8_t *) param_buf->data;
  16561. if (index < ev_param->num_bcn_stats) {
  16562. wmi_bcn_stats *ev = (wmi_bcn_stats *) ((data) +
  16563. ((ev_param->num_pdev_stats) * sizeof(wmi_pdev_stats)) +
  16564. ((ev_param->num_vdev_stats) * sizeof(wmi_vdev_stats)) +
  16565. ((ev_param->num_peer_stats) * sizeof(wmi_peer_stats)) +
  16566. ((ev_param->num_chan_stats) * sizeof(wmi_chan_stats)) +
  16567. ((ev_param->num_mib_stats) * sizeof(wmi_mib_stats)) +
  16568. (index * sizeof(wmi_bcn_stats)));
  16569. bcn_stats->vdev_id = ev->vdev_id;
  16570. bcn_stats->tx_bcn_succ_cnt = ev->tx_bcn_succ_cnt;
  16571. bcn_stats->tx_bcn_outage_cnt = ev->tx_bcn_outage_cnt;
  16572. }
  16573. return QDF_STATUS_SUCCESS;
  16574. }
  16575. /**
  16576. * extract_peer_stats_tlv() - extract peer stats from event
  16577. * @wmi_handle: wmi handle
  16578. * @param evt_buf: pointer to event buffer
  16579. * @param index: Index into peer stats
  16580. * @param peer_stats: Pointer to hold peer stats
  16581. *
  16582. * Return: QDF_STATUS_SUCCESS for success or error code
  16583. */
  16584. static QDF_STATUS extract_peer_stats_tlv(wmi_unified_t wmi_handle,
  16585. void *evt_buf, uint32_t index, wmi_host_peer_stats *peer_stats)
  16586. {
  16587. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16588. wmi_stats_event_fixed_param *ev_param;
  16589. uint8_t *data;
  16590. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16591. ev_param = (wmi_stats_event_fixed_param *) param_buf->fixed_param;
  16592. data = (uint8_t *) param_buf->data;
  16593. if (index < ev_param->num_peer_stats) {
  16594. wmi_peer_stats *ev = (wmi_peer_stats *) ((data) +
  16595. ((ev_param->num_pdev_stats) * sizeof(wmi_pdev_stats)) +
  16596. ((ev_param->num_vdev_stats) * sizeof(wmi_vdev_stats)) +
  16597. (index * sizeof(wmi_peer_stats)));
  16598. OS_MEMSET(peer_stats, 0, sizeof(wmi_host_peer_stats));
  16599. OS_MEMCPY(&(peer_stats->peer_macaddr),
  16600. &(ev->peer_macaddr), sizeof(wmi_mac_addr));
  16601. peer_stats->peer_rssi = ev->peer_rssi;
  16602. peer_stats->peer_tx_rate = ev->peer_tx_rate;
  16603. peer_stats->peer_rx_rate = ev->peer_rx_rate;
  16604. }
  16605. return QDF_STATUS_SUCCESS;
  16606. }
  16607. /**
  16608. * extract_bcnflt_stats_tlv() - extract bcn fault stats from event
  16609. * @wmi_handle: wmi handle
  16610. * @param evt_buf: pointer to event buffer
  16611. * @param index: Index into bcn fault stats
  16612. * @param bcnflt_stats: Pointer to hold bcn fault stats
  16613. *
  16614. * Return: QDF_STATUS_SUCCESS for success or error code
  16615. */
  16616. static QDF_STATUS extract_bcnflt_stats_tlv(wmi_unified_t wmi_handle,
  16617. void *evt_buf, uint32_t index, wmi_host_bcnflt_stats *peer_stats)
  16618. {
  16619. return QDF_STATUS_SUCCESS;
  16620. }
  16621. /**
  16622. * extract_peer_extd_stats_tlv() - extract extended peer stats from event
  16623. * @wmi_handle: wmi handle
  16624. * @param evt_buf: pointer to event buffer
  16625. * @param index: Index into extended peer stats
  16626. * @param peer_extd_stats: Pointer to hold extended peer stats
  16627. *
  16628. * Return: QDF_STATUS_SUCCESS for success or error code
  16629. */
  16630. static QDF_STATUS extract_peer_extd_stats_tlv(wmi_unified_t wmi_handle,
  16631. void *evt_buf, uint32_t index,
  16632. wmi_host_peer_extd_stats *peer_extd_stats)
  16633. {
  16634. return QDF_STATUS_SUCCESS;
  16635. }
  16636. /**
  16637. * extract_chan_stats_tlv() - extract chan stats from event
  16638. * @wmi_handle: wmi handle
  16639. * @param evt_buf: pointer to event buffer
  16640. * @param index: Index into chan stats
  16641. * @param vdev_extd_stats: Pointer to hold chan stats
  16642. *
  16643. * Return: QDF_STATUS_SUCCESS for success or error code
  16644. */
  16645. static QDF_STATUS extract_chan_stats_tlv(wmi_unified_t wmi_handle,
  16646. void *evt_buf, uint32_t index, wmi_host_chan_stats *chan_stats)
  16647. {
  16648. WMI_UPDATE_STATS_EVENTID_param_tlvs *param_buf;
  16649. wmi_stats_event_fixed_param *ev_param;
  16650. uint8_t *data;
  16651. param_buf = (WMI_UPDATE_STATS_EVENTID_param_tlvs *) evt_buf;
  16652. ev_param = (wmi_stats_event_fixed_param *) param_buf->fixed_param;
  16653. data = (uint8_t *) param_buf->data;
  16654. if (index < ev_param->num_chan_stats) {
  16655. wmi_chan_stats *ev = (wmi_chan_stats *) ((data) +
  16656. ((ev_param->num_pdev_stats) * sizeof(wmi_pdev_stats)) +
  16657. ((ev_param->num_vdev_stats) * sizeof(wmi_vdev_stats)) +
  16658. ((ev_param->num_peer_stats) * sizeof(wmi_peer_stats)) +
  16659. (index * sizeof(wmi_chan_stats)));
  16660. /* Non-TLV doesn't have num_chan_stats */
  16661. chan_stats->chan_mhz = ev->chan_mhz;
  16662. chan_stats->sampling_period_us = ev->sampling_period_us;
  16663. chan_stats->rx_clear_count = ev->rx_clear_count;
  16664. chan_stats->tx_duration_us = ev->tx_duration_us;
  16665. chan_stats->rx_duration_us = ev->rx_duration_us;
  16666. }
  16667. return QDF_STATUS_SUCCESS;
  16668. }
  16669. /**
  16670. * extract_profile_ctx_tlv() - extract profile context from event
  16671. * @wmi_handle: wmi handle
  16672. * @param evt_buf: pointer to event buffer
  16673. * @idx: profile stats index to extract
  16674. * @param profile_ctx: Pointer to hold profile context
  16675. *
  16676. * Return: QDF_STATUS_SUCCESS for success or error code
  16677. */
  16678. static QDF_STATUS extract_profile_ctx_tlv(wmi_unified_t wmi_handle,
  16679. void *evt_buf, wmi_host_wlan_profile_ctx_t *profile_ctx)
  16680. {
  16681. return QDF_STATUS_SUCCESS;
  16682. }
  16683. /**
  16684. * extract_profile_data_tlv() - extract profile data from event
  16685. * @wmi_handle: wmi handle
  16686. * @param evt_buf: pointer to event buffer
  16687. * @param profile_data: Pointer to hold profile data
  16688. *
  16689. * Return: QDF_STATUS_SUCCESS for success or error code
  16690. */
  16691. static QDF_STATUS extract_profile_data_tlv(wmi_unified_t wmi_handle,
  16692. void *evt_buf, uint8_t idx, wmi_host_wlan_profile_t *profile_data)
  16693. {
  16694. return QDF_STATUS_SUCCESS;
  16695. }
  16696. /**
  16697. * extract_chan_info_event_tlv() - extract chan information from event
  16698. * @wmi_handle: wmi handle
  16699. * @param evt_buf: pointer to event buffer
  16700. * @param chan_info: Pointer to hold chan information
  16701. *
  16702. * Return: QDF_STATUS_SUCCESS for success or error code
  16703. */
  16704. static QDF_STATUS extract_chan_info_event_tlv(wmi_unified_t wmi_handle,
  16705. void *evt_buf, wmi_host_chan_info_event *chan_info)
  16706. {
  16707. WMI_CHAN_INFO_EVENTID_param_tlvs *param_buf;
  16708. wmi_chan_info_event_fixed_param *ev;
  16709. param_buf = (WMI_CHAN_INFO_EVENTID_param_tlvs *) evt_buf;
  16710. ev = (wmi_chan_info_event_fixed_param *) param_buf->fixed_param;
  16711. if (!ev) {
  16712. WMI_LOGE("%s: Failed to allocmemory\n", __func__);
  16713. return QDF_STATUS_E_FAILURE;
  16714. }
  16715. chan_info->err_code = ev->err_code;
  16716. chan_info->freq = ev->freq;
  16717. chan_info->cmd_flags = ev->cmd_flags;
  16718. chan_info->noise_floor = ev->noise_floor;
  16719. chan_info->rx_clear_count = ev->rx_clear_count;
  16720. chan_info->cycle_count = ev->cycle_count;
  16721. chan_info->tx_frame_cnt = ev->tx_frame_cnt;
  16722. chan_info->mac_clk_mhz = ev->mac_clk_mhz;
  16723. chan_info->pdev_id = wlan_get_pdev_id_from_vdev_id(
  16724. (struct wlan_objmgr_psoc *)wmi_handle->soc->wmi_psoc,
  16725. ev->vdev_id, WLAN_SCAN_ID);
  16726. chan_info->chan_tx_pwr_range = ev->chan_tx_pwr_range;
  16727. chan_info->chan_tx_pwr_tp = ev->chan_tx_pwr_tp;
  16728. chan_info->my_bss_rx_cycle_count = ev->my_bss_rx_cycle_count;
  16729. chan_info->rx_11b_mode_data_duration = ev->rx_11b_mode_data_duration;
  16730. chan_info->tx_frame_cnt = ev->tx_frame_cnt;
  16731. chan_info->rx_frame_count = ev->rx_frame_count;
  16732. chan_info->mac_clk_mhz = ev->mac_clk_mhz;
  16733. chan_info->vdev_id = ev->vdev_id;
  16734. return QDF_STATUS_SUCCESS;
  16735. }
  16736. /**
  16737. * extract_pdev_utf_event_tlv() - extract UTF data info from event
  16738. * @wmi_handle: WMI handle
  16739. * @param evt_buf: Pointer to event buffer
  16740. * @param param: Pointer to hold data
  16741. *
  16742. * Return : QDF_STATUS_SUCCESS for success or error code
  16743. */
  16744. static QDF_STATUS extract_pdev_utf_event_tlv(wmi_unified_t wmi_handle,
  16745. uint8_t *evt_buf,
  16746. struct wmi_host_pdev_utf_event *event)
  16747. {
  16748. WMI_PDEV_UTF_EVENTID_param_tlvs *param_buf;
  16749. struct wmi_host_utf_seg_header_info *seg_hdr;
  16750. param_buf = (WMI_PDEV_UTF_EVENTID_param_tlvs *)evt_buf;
  16751. event->data = param_buf->data;
  16752. event->datalen = param_buf->num_data;
  16753. seg_hdr = (struct wmi_host_utf_seg_header_info *)param_buf->data;
  16754. /* Set pdev_id=1 until FW adds support to include pdev_id */
  16755. event->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  16756. seg_hdr->pdev_id);
  16757. return QDF_STATUS_SUCCESS;
  16758. }
  16759. /**
  16760. * extract_chainmask_tables_tlv() - extract chain mask tables from event
  16761. * @wmi_handle: wmi handle
  16762. * @param evt_buf: pointer to event buffer
  16763. * @param param: Pointer to hold evt buf
  16764. *
  16765. * Return: QDF_STATUS_SUCCESS for success or error code
  16766. */
  16767. static QDF_STATUS extract_chainmask_tables_tlv(wmi_unified_t wmi_handle,
  16768. uint8_t *event, struct wlan_psoc_host_chainmask_table *chainmask_table)
  16769. {
  16770. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  16771. WMI_MAC_PHY_CHAINMASK_CAPABILITY *chainmask_caps;
  16772. WMI_SOC_MAC_PHY_HW_MODE_CAPS *hw_caps;
  16773. uint8_t i = 0, j = 0;
  16774. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *) event;
  16775. if (!param_buf)
  16776. return QDF_STATUS_E_INVAL;
  16777. hw_caps = param_buf->soc_hw_mode_caps;
  16778. if (!hw_caps)
  16779. return QDF_STATUS_E_INVAL;
  16780. if (!hw_caps->num_chainmask_tables)
  16781. return QDF_STATUS_E_INVAL;
  16782. chainmask_caps = param_buf->mac_phy_chainmask_caps;
  16783. if (chainmask_caps == NULL)
  16784. return QDF_STATUS_E_INVAL;
  16785. for (i = 0; i < hw_caps->num_chainmask_tables; i++) {
  16786. qdf_print("Dumping chain mask combo data for table : %d\n", i);
  16787. for (j = 0; j < chainmask_table[i].num_valid_chainmasks; j++) {
  16788. chainmask_table[i].cap_list[j].chainmask =
  16789. chainmask_caps->chainmask;
  16790. chainmask_table[i].cap_list[j].supports_chan_width_20 =
  16791. WMI_SUPPORT_CHAN_WIDTH_20_GET(chainmask_caps->supported_flags);
  16792. chainmask_table[i].cap_list[j].supports_chan_width_40 =
  16793. WMI_SUPPORT_CHAN_WIDTH_40_GET(chainmask_caps->supported_flags);
  16794. chainmask_table[i].cap_list[j].supports_chan_width_80 =
  16795. WMI_SUPPORT_CHAN_WIDTH_80_GET(chainmask_caps->supported_flags);
  16796. chainmask_table[i].cap_list[j].supports_chan_width_160 =
  16797. WMI_SUPPORT_CHAN_WIDTH_160_GET(chainmask_caps->supported_flags);
  16798. chainmask_table[i].cap_list[j].supports_chan_width_80P80 =
  16799. WMI_SUPPORT_CHAN_WIDTH_80P80_GET(chainmask_caps->supported_flags);
  16800. chainmask_table[i].cap_list[j].chain_mask_2G =
  16801. WMI_SUPPORT_CHAIN_MASK_2G_GET(chainmask_caps->supported_flags);
  16802. chainmask_table[i].cap_list[j].chain_mask_5G =
  16803. WMI_SUPPORT_CHAIN_MASK_5G_GET(chainmask_caps->supported_flags);
  16804. chainmask_table[i].cap_list[j].chain_mask_tx =
  16805. WMI_SUPPORT_CHAIN_MASK_TX_GET(chainmask_caps->supported_flags);
  16806. chainmask_table[i].cap_list[j].chain_mask_rx =
  16807. WMI_SUPPORT_CHAIN_MASK_RX_GET(chainmask_caps->supported_flags);
  16808. chainmask_table[i].cap_list[j].supports_aDFS =
  16809. WMI_SUPPORT_CHAIN_MASK_ADFS_GET(chainmask_caps->supported_flags);
  16810. qdf_print("supported_flags: 0x%08x chainmasks: 0x%08x\n",
  16811. chainmask_caps->supported_flags,
  16812. chainmask_caps->chainmask
  16813. );
  16814. chainmask_caps++;
  16815. }
  16816. }
  16817. return QDF_STATUS_SUCCESS;
  16818. }
  16819. /**
  16820. * extract_service_ready_ext_tlv() - extract basic extended service ready params
  16821. * from event
  16822. * @wmi_handle: wmi handle
  16823. * @param evt_buf: pointer to event buffer
  16824. * @param param: Pointer to hold evt buf
  16825. *
  16826. * Return: QDF_STATUS_SUCCESS for success or error code
  16827. */
  16828. static QDF_STATUS extract_service_ready_ext_tlv(wmi_unified_t wmi_handle,
  16829. uint8_t *event, struct wlan_psoc_host_service_ext_param *param)
  16830. {
  16831. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  16832. wmi_service_ready_ext_event_fixed_param *ev;
  16833. WMI_SOC_MAC_PHY_HW_MODE_CAPS *hw_caps;
  16834. WMI_SOC_HAL_REG_CAPABILITIES *reg_caps;
  16835. WMI_MAC_PHY_CHAINMASK_COMBO *chain_mask_combo;
  16836. uint8_t i = 0;
  16837. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *) event;
  16838. if (!param_buf)
  16839. return QDF_STATUS_E_INVAL;
  16840. ev = param_buf->fixed_param;
  16841. if (!ev)
  16842. return QDF_STATUS_E_INVAL;
  16843. /* Move this to host based bitmap */
  16844. param->default_conc_scan_config_bits =
  16845. ev->default_conc_scan_config_bits;
  16846. param->default_fw_config_bits = ev->default_fw_config_bits;
  16847. param->he_cap_info = ev->he_cap_info;
  16848. param->mpdu_density = ev->mpdu_density;
  16849. param->max_bssid_rx_filters = ev->max_bssid_rx_filters;
  16850. param->fw_build_vers_ext = ev->fw_build_vers_ext;
  16851. param->num_dbr_ring_caps = param_buf->num_dma_ring_caps;
  16852. qdf_mem_copy(&param->ppet, &ev->ppet, sizeof(param->ppet));
  16853. hw_caps = param_buf->soc_hw_mode_caps;
  16854. if (hw_caps)
  16855. param->num_hw_modes = hw_caps->num_hw_modes;
  16856. else
  16857. param->num_hw_modes = 0;
  16858. reg_caps = param_buf->soc_hal_reg_caps;
  16859. if (reg_caps)
  16860. param->num_phy = reg_caps->num_phy;
  16861. else
  16862. param->num_phy = 0;
  16863. if (hw_caps) {
  16864. param->num_chainmask_tables = hw_caps->num_chainmask_tables;
  16865. qdf_print("Num chain mask tables: %d\n", hw_caps->num_chainmask_tables);
  16866. } else
  16867. param->num_chainmask_tables = 0;
  16868. chain_mask_combo = param_buf->mac_phy_chainmask_combo;
  16869. if (chain_mask_combo == NULL)
  16870. return QDF_STATUS_SUCCESS;
  16871. qdf_print("Dumping chain mask combo data\n");
  16872. for (i = 0; i < param->num_chainmask_tables; i++) {
  16873. qdf_print("table_id : %d Num valid chainmasks: %d\n",
  16874. chain_mask_combo->chainmask_table_id,
  16875. chain_mask_combo->num_valid_chainmask
  16876. );
  16877. param->chainmask_table[i].table_id =
  16878. chain_mask_combo->chainmask_table_id;
  16879. param->chainmask_table[i].num_valid_chainmasks =
  16880. chain_mask_combo->num_valid_chainmask;
  16881. chain_mask_combo++;
  16882. }
  16883. qdf_print("chain mask combo end\n");
  16884. return QDF_STATUS_SUCCESS;
  16885. }
  16886. /**
  16887. * extract_sar_cap_service_ready_ext_tlv() -
  16888. * extract SAR cap from service ready event
  16889. * @wmi_handle: wmi handle
  16890. * @event: pointer to event buffer
  16891. * @ext_param: extended target info
  16892. *
  16893. * Return: QDF_STATUS_SUCCESS for success or error code
  16894. */
  16895. static QDF_STATUS extract_sar_cap_service_ready_ext_tlv(
  16896. wmi_unified_t wmi_handle,
  16897. uint8_t *event,
  16898. struct wlan_psoc_host_service_ext_param *ext_param)
  16899. {
  16900. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  16901. WMI_SAR_CAPABILITIES *sar_caps;
  16902. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *)event;
  16903. sar_caps = param_buf->sar_caps;
  16904. if (!sar_caps)
  16905. return QDF_STATUS_E_INVAL;
  16906. ext_param->sar_version = sar_caps->active_version;
  16907. return QDF_STATUS_SUCCESS;
  16908. }
  16909. /**
  16910. * extract_hw_mode_cap_service_ready_ext_tlv() -
  16911. * extract HW mode cap from service ready event
  16912. * @wmi_handle: wmi handle
  16913. * @param evt_buf: pointer to event buffer
  16914. * @param param: Pointer to hold evt buf
  16915. * @param hw_mode_idx: hw mode idx should be less than num_mode
  16916. *
  16917. * Return: QDF_STATUS_SUCCESS for success or error code
  16918. */
  16919. static QDF_STATUS extract_hw_mode_cap_service_ready_ext_tlv(
  16920. wmi_unified_t wmi_handle,
  16921. uint8_t *event, uint8_t hw_mode_idx,
  16922. struct wlan_psoc_host_hw_mode_caps *param)
  16923. {
  16924. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  16925. WMI_SOC_MAC_PHY_HW_MODE_CAPS *hw_caps;
  16926. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *) event;
  16927. if (!param_buf)
  16928. return QDF_STATUS_E_INVAL;
  16929. hw_caps = param_buf->soc_hw_mode_caps;
  16930. if (!hw_caps)
  16931. return QDF_STATUS_E_INVAL;
  16932. if (hw_mode_idx >= hw_caps->num_hw_modes)
  16933. return QDF_STATUS_E_INVAL;
  16934. param->hw_mode_id = param_buf->hw_mode_caps[hw_mode_idx].hw_mode_id;
  16935. param->phy_id_map = param_buf->hw_mode_caps[hw_mode_idx].phy_id_map;
  16936. param->hw_mode_config_type =
  16937. param_buf->hw_mode_caps[hw_mode_idx].hw_mode_config_type;
  16938. return QDF_STATUS_SUCCESS;
  16939. }
  16940. /**
  16941. * extract_mac_phy_cap_service_ready_ext_tlv() -
  16942. * extract MAC phy cap from service ready event
  16943. * @wmi_handle: wmi handle
  16944. * @param evt_buf: pointer to event buffer
  16945. * @param param: Pointer to hold evt buf
  16946. * @param hw_mode_idx: hw mode idx should be less than num_mode
  16947. * @param phy_id: phy id within hw_mode
  16948. *
  16949. * Return: QDF_STATUS_SUCCESS for success or error code
  16950. */
  16951. static QDF_STATUS extract_mac_phy_cap_service_ready_ext_tlv(
  16952. wmi_unified_t wmi_handle,
  16953. uint8_t *event, uint8_t hw_mode_id, uint8_t phy_id,
  16954. struct wlan_psoc_host_mac_phy_caps *param)
  16955. {
  16956. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  16957. WMI_MAC_PHY_CAPABILITIES *mac_phy_caps;
  16958. WMI_SOC_MAC_PHY_HW_MODE_CAPS *hw_caps;
  16959. uint32_t phy_map;
  16960. uint8_t hw_idx, phy_idx = 0;
  16961. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *) event;
  16962. if (!param_buf)
  16963. return QDF_STATUS_E_INVAL;
  16964. hw_caps = param_buf->soc_hw_mode_caps;
  16965. if (!hw_caps)
  16966. return QDF_STATUS_E_INVAL;
  16967. for (hw_idx = 0; hw_idx < hw_caps->num_hw_modes; hw_idx++) {
  16968. if (hw_mode_id == param_buf->hw_mode_caps[hw_idx].hw_mode_id)
  16969. break;
  16970. phy_map = param_buf->hw_mode_caps[hw_idx].phy_id_map;
  16971. while (phy_map) {
  16972. phy_map >>= 1;
  16973. phy_idx++;
  16974. }
  16975. }
  16976. if (hw_idx == hw_caps->num_hw_modes)
  16977. return QDF_STATUS_E_INVAL;
  16978. phy_idx += phy_id;
  16979. if (phy_idx >= param_buf->num_mac_phy_caps)
  16980. return QDF_STATUS_E_INVAL;
  16981. mac_phy_caps = &param_buf->mac_phy_caps[phy_idx];
  16982. param->hw_mode_id = mac_phy_caps->hw_mode_id;
  16983. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  16984. mac_phy_caps->pdev_id);
  16985. param->phy_id = mac_phy_caps->phy_id;
  16986. param->supports_11b =
  16987. WMI_SUPPORT_11B_GET(mac_phy_caps->supported_flags);
  16988. param->supports_11g =
  16989. WMI_SUPPORT_11G_GET(mac_phy_caps->supported_flags);
  16990. param->supports_11a =
  16991. WMI_SUPPORT_11A_GET(mac_phy_caps->supported_flags);
  16992. param->supports_11n =
  16993. WMI_SUPPORT_11N_GET(mac_phy_caps->supported_flags);
  16994. param->supports_11ac =
  16995. WMI_SUPPORT_11AC_GET(mac_phy_caps->supported_flags);
  16996. param->supports_11ax =
  16997. WMI_SUPPORT_11AX_GET(mac_phy_caps->supported_flags);
  16998. param->supported_bands = mac_phy_caps->supported_bands;
  16999. param->ampdu_density = mac_phy_caps->ampdu_density;
  17000. param->max_bw_supported_2G = mac_phy_caps->max_bw_supported_2G;
  17001. param->ht_cap_info_2G = mac_phy_caps->ht_cap_info_2G;
  17002. param->vht_cap_info_2G = mac_phy_caps->vht_cap_info_2G;
  17003. param->vht_supp_mcs_2G = mac_phy_caps->vht_supp_mcs_2G;
  17004. param->he_cap_info_2G = mac_phy_caps->he_cap_info_2G;
  17005. param->he_supp_mcs_2G = mac_phy_caps->he_supp_mcs_2G;
  17006. param->tx_chain_mask_2G = mac_phy_caps->tx_chain_mask_2G;
  17007. param->rx_chain_mask_2G = mac_phy_caps->rx_chain_mask_2G;
  17008. param->max_bw_supported_5G = mac_phy_caps->max_bw_supported_5G;
  17009. param->ht_cap_info_5G = mac_phy_caps->ht_cap_info_5G;
  17010. param->vht_cap_info_5G = mac_phy_caps->vht_cap_info_5G;
  17011. param->vht_supp_mcs_5G = mac_phy_caps->vht_supp_mcs_5G;
  17012. param->he_cap_info_5G = mac_phy_caps->he_cap_info_5G;
  17013. param->he_supp_mcs_5G = mac_phy_caps->he_supp_mcs_5G;
  17014. param->tx_chain_mask_5G = mac_phy_caps->tx_chain_mask_5G;
  17015. param->rx_chain_mask_5G = mac_phy_caps->rx_chain_mask_5G;
  17016. qdf_mem_copy(&param->he_cap_phy_info_2G,
  17017. &mac_phy_caps->he_cap_phy_info_2G,
  17018. sizeof(param->he_cap_phy_info_2G));
  17019. qdf_mem_copy(&param->he_cap_phy_info_5G,
  17020. &mac_phy_caps->he_cap_phy_info_5G,
  17021. sizeof(param->he_cap_phy_info_5G));
  17022. qdf_mem_copy(&param->he_ppet2G, &mac_phy_caps->he_ppet2G,
  17023. sizeof(param->he_ppet2G));
  17024. qdf_mem_copy(&param->he_ppet5G, &mac_phy_caps->he_ppet5G,
  17025. sizeof(param->he_ppet5G));
  17026. param->chainmask_table_id = mac_phy_caps->chainmask_table_id;
  17027. return QDF_STATUS_SUCCESS;
  17028. }
  17029. /**
  17030. * extract_reg_cap_service_ready_ext_tlv() -
  17031. * extract REG cap from service ready event
  17032. * @wmi_handle: wmi handle
  17033. * @param evt_buf: pointer to event buffer
  17034. * @param param: Pointer to hold evt buf
  17035. * @param phy_idx: phy idx should be less than num_mode
  17036. *
  17037. * Return: QDF_STATUS_SUCCESS for success or error code
  17038. */
  17039. static QDF_STATUS extract_reg_cap_service_ready_ext_tlv(
  17040. wmi_unified_t wmi_handle,
  17041. uint8_t *event, uint8_t phy_idx,
  17042. struct wlan_psoc_host_hal_reg_capabilities_ext *param)
  17043. {
  17044. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  17045. WMI_SOC_HAL_REG_CAPABILITIES *reg_caps;
  17046. WMI_HAL_REG_CAPABILITIES_EXT *ext_reg_cap;
  17047. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *) event;
  17048. if (!param_buf)
  17049. return QDF_STATUS_E_INVAL;
  17050. reg_caps = param_buf->soc_hal_reg_caps;
  17051. if (!reg_caps)
  17052. return QDF_STATUS_E_INVAL;
  17053. if (phy_idx >= reg_caps->num_phy)
  17054. return QDF_STATUS_E_INVAL;
  17055. ext_reg_cap = &param_buf->hal_reg_caps[phy_idx];
  17056. param->phy_id = ext_reg_cap->phy_id;
  17057. param->eeprom_reg_domain = ext_reg_cap->eeprom_reg_domain;
  17058. param->eeprom_reg_domain_ext = ext_reg_cap->eeprom_reg_domain_ext;
  17059. param->regcap1 = ext_reg_cap->regcap1;
  17060. param->regcap2 = ext_reg_cap->regcap2;
  17061. param->wireless_modes = convert_wireless_modes_tlv(
  17062. ext_reg_cap->wireless_modes);
  17063. param->low_2ghz_chan = ext_reg_cap->low_2ghz_chan;
  17064. param->high_2ghz_chan = ext_reg_cap->high_2ghz_chan;
  17065. param->low_5ghz_chan = ext_reg_cap->low_5ghz_chan;
  17066. param->high_5ghz_chan = ext_reg_cap->high_5ghz_chan;
  17067. return QDF_STATUS_SUCCESS;
  17068. }
  17069. static QDF_STATUS extract_dbr_ring_cap_service_ready_ext_tlv(
  17070. wmi_unified_t wmi_handle,
  17071. uint8_t *event, uint8_t idx,
  17072. struct wlan_psoc_host_dbr_ring_caps *param)
  17073. {
  17074. WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *param_buf;
  17075. WMI_DMA_RING_CAPABILITIES *dbr_ring_caps;
  17076. param_buf = (WMI_SERVICE_READY_EXT_EVENTID_param_tlvs *)event;
  17077. if (!param_buf)
  17078. return QDF_STATUS_E_INVAL;
  17079. dbr_ring_caps = &param_buf->dma_ring_caps[idx];
  17080. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17081. dbr_ring_caps->pdev_id);
  17082. param->mod_id = dbr_ring_caps->mod_id;
  17083. param->ring_elems_min = dbr_ring_caps->ring_elems_min;
  17084. param->min_buf_size = dbr_ring_caps->min_buf_size;
  17085. param->min_buf_align = dbr_ring_caps->min_buf_align;
  17086. return QDF_STATUS_SUCCESS;
  17087. }
  17088. static QDF_STATUS extract_dbr_buf_release_fixed_tlv(wmi_unified_t wmi_handle,
  17089. uint8_t *event, struct direct_buf_rx_rsp *param)
  17090. {
  17091. WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID_param_tlvs *param_buf;
  17092. wmi_dma_buf_release_fixed_param *ev;
  17093. param_buf = (WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID_param_tlvs *)event;
  17094. if (!param_buf)
  17095. return QDF_STATUS_E_INVAL;
  17096. ev = param_buf->fixed_param;
  17097. if (!ev)
  17098. return QDF_STATUS_E_INVAL;
  17099. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17100. ev->pdev_id);
  17101. param->mod_id = ev->mod_id;
  17102. param->num_buf_release_entry = ev->num_buf_release_entry;
  17103. param->num_meta_data_entry = ev->num_meta_data_entry;
  17104. WMI_LOGD("%s:pdev id %d mod id %d num buf release entry %d\n", __func__,
  17105. param->pdev_id, param->mod_id, param->num_buf_release_entry);
  17106. return QDF_STATUS_SUCCESS;
  17107. }
  17108. static QDF_STATUS extract_dbr_buf_release_entry_tlv(wmi_unified_t wmi_handle,
  17109. uint8_t *event, uint8_t idx, struct direct_buf_rx_entry *param)
  17110. {
  17111. WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID_param_tlvs *param_buf;
  17112. wmi_dma_buf_release_entry *entry;
  17113. param_buf = (WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID_param_tlvs *)event;
  17114. if (!param_buf)
  17115. return QDF_STATUS_E_INVAL;
  17116. entry = &param_buf->entries[idx];
  17117. if (!entry) {
  17118. WMI_LOGE("%s: Entry is NULL\n", __func__);
  17119. return QDF_STATUS_E_FAILURE;
  17120. }
  17121. WMI_LOGD("%s: paddr_lo[%d] = %x\n", __func__, idx, entry->paddr_lo);
  17122. param->paddr_lo = entry->paddr_lo;
  17123. param->paddr_hi = entry->paddr_hi;
  17124. return QDF_STATUS_SUCCESS;
  17125. }
  17126. static QDF_STATUS extract_dbr_buf_metadata_tlv(
  17127. wmi_unified_t wmi_handle, uint8_t *event,
  17128. uint8_t idx, struct direct_buf_rx_metadata *param)
  17129. {
  17130. WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID_param_tlvs *param_buf;
  17131. wmi_dma_buf_release_spectral_meta_data *entry;
  17132. param_buf = (WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID_param_tlvs *)event;
  17133. if (!param_buf)
  17134. return QDF_STATUS_E_INVAL;
  17135. entry = &param_buf->meta_data[idx];
  17136. if (!entry) {
  17137. WMI_LOGE("%s: Entry is NULL\n", __func__);
  17138. return QDF_STATUS_E_FAILURE;
  17139. }
  17140. qdf_mem_copy(param->noisefloor, entry->noise_floor,
  17141. sizeof(entry->noise_floor));
  17142. return QDF_STATUS_SUCCESS;
  17143. }
  17144. /**
  17145. * extract_dcs_interference_type_tlv() - extract dcs interference type
  17146. * from event
  17147. * @wmi_handle: wmi handle
  17148. * @param evt_buf: pointer to event buffer
  17149. * @param param: Pointer to hold dcs interference param
  17150. *
  17151. * Return: 0 for success or error code
  17152. */
  17153. static QDF_STATUS extract_dcs_interference_type_tlv(
  17154. wmi_unified_t wmi_handle,
  17155. void *evt_buf, struct wmi_host_dcs_interference_param *param)
  17156. {
  17157. WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *param_buf;
  17158. param_buf = (WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *) evt_buf;
  17159. if (!param_buf)
  17160. return QDF_STATUS_E_INVAL;
  17161. param->interference_type = param_buf->fixed_param->interference_type;
  17162. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17163. param_buf->fixed_param->pdev_id);
  17164. return QDF_STATUS_SUCCESS;
  17165. }
  17166. /*
  17167. * extract_dcs_cw_int_tlv() - extract dcs cw interference from event
  17168. * @wmi_handle: wmi handle
  17169. * @param evt_buf: pointer to event buffer
  17170. * @param cw_int: Pointer to hold cw interference
  17171. *
  17172. * Return: 0 for success or error code
  17173. */
  17174. static QDF_STATUS extract_dcs_cw_int_tlv(wmi_unified_t wmi_handle,
  17175. void *evt_buf,
  17176. wmi_host_ath_dcs_cw_int *cw_int)
  17177. {
  17178. WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *param_buf;
  17179. wlan_dcs_cw_int *ev;
  17180. param_buf = (WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *) evt_buf;
  17181. if (!param_buf)
  17182. return QDF_STATUS_E_INVAL;
  17183. ev = param_buf->cw_int;
  17184. cw_int->channel = ev->channel;
  17185. return QDF_STATUS_SUCCESS;
  17186. }
  17187. /**
  17188. * extract_dcs_im_tgt_stats_tlv() - extract dcs im target stats from event
  17189. * @wmi_handle: wmi handle
  17190. * @param evt_buf: pointer to event buffer
  17191. * @param wlan_stat: Pointer to hold wlan stats
  17192. *
  17193. * Return: 0 for success or error code
  17194. */
  17195. static QDF_STATUS extract_dcs_im_tgt_stats_tlv(wmi_unified_t wmi_handle,
  17196. void *evt_buf,
  17197. wmi_host_dcs_im_tgt_stats_t *wlan_stat)
  17198. {
  17199. WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *param_buf;
  17200. wlan_dcs_im_tgt_stats_t *ev;
  17201. param_buf = (WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *) evt_buf;
  17202. if (!param_buf)
  17203. return QDF_STATUS_E_INVAL;
  17204. ev = param_buf->wlan_stat;
  17205. wlan_stat->reg_tsf32 = ev->reg_tsf32;
  17206. wlan_stat->last_ack_rssi = ev->last_ack_rssi;
  17207. wlan_stat->tx_waste_time = ev->tx_waste_time;
  17208. wlan_stat->rx_time = ev->rx_time;
  17209. wlan_stat->phyerr_cnt = ev->phyerr_cnt;
  17210. wlan_stat->mib_stats.listen_time = ev->listen_time;
  17211. wlan_stat->mib_stats.reg_tx_frame_cnt = ev->reg_tx_frame_cnt;
  17212. wlan_stat->mib_stats.reg_rx_frame_cnt = ev->reg_rx_frame_cnt;
  17213. wlan_stat->mib_stats.reg_rxclr_cnt = ev->reg_rxclr_cnt;
  17214. wlan_stat->mib_stats.reg_cycle_cnt = ev->reg_cycle_cnt;
  17215. wlan_stat->mib_stats.reg_rxclr_ext_cnt = ev->reg_rxclr_ext_cnt;
  17216. wlan_stat->mib_stats.reg_ofdm_phyerr_cnt = ev->reg_ofdm_phyerr_cnt;
  17217. wlan_stat->mib_stats.reg_cck_phyerr_cnt = ev->reg_cck_phyerr_cnt;
  17218. wlan_stat->chan_nf = ev->chan_nf;
  17219. wlan_stat->my_bss_rx_cycle_count = ev->my_bss_rx_cycle_count;
  17220. return QDF_STATUS_SUCCESS;
  17221. }
  17222. /**
  17223. * extract_thermal_stats_tlv() - extract thermal stats from event
  17224. * @wmi_handle: wmi handle
  17225. * @param evt_buf: Pointer to event buffer
  17226. * @param temp: Pointer to hold extracted temperature
  17227. * @param level: Pointer to hold extracted level
  17228. *
  17229. * Return: 0 for success or error code
  17230. */
  17231. static QDF_STATUS
  17232. extract_thermal_stats_tlv(wmi_unified_t wmi_handle,
  17233. void *evt_buf, uint32_t *temp,
  17234. uint32_t *level, uint32_t *pdev_id)
  17235. {
  17236. WMI_THERM_THROT_STATS_EVENTID_param_tlvs *param_buf;
  17237. wmi_therm_throt_stats_event_fixed_param *tt_stats_event;
  17238. param_buf =
  17239. (WMI_THERM_THROT_STATS_EVENTID_param_tlvs *) evt_buf;
  17240. if (!param_buf)
  17241. return QDF_STATUS_E_INVAL;
  17242. tt_stats_event = param_buf->fixed_param;
  17243. *pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17244. tt_stats_event->pdev_id);
  17245. *temp = tt_stats_event->temp;
  17246. *level = tt_stats_event->level;
  17247. return QDF_STATUS_SUCCESS;
  17248. }
  17249. /**
  17250. * extract_thermal_level_stats_tlv() - extract thermal level stats from event
  17251. * @wmi_handle: wmi handle
  17252. * @param evt_buf: pointer to event buffer
  17253. * @param idx: Index to level stats
  17254. * @param levelcount: Pointer to hold levelcount
  17255. * @param dccount: Pointer to hold dccount
  17256. *
  17257. * Return: 0 for success or error code
  17258. */
  17259. static QDF_STATUS
  17260. extract_thermal_level_stats_tlv(wmi_unified_t wmi_handle,
  17261. void *evt_buf, uint8_t idx, uint32_t *levelcount,
  17262. uint32_t *dccount)
  17263. {
  17264. WMI_THERM_THROT_STATS_EVENTID_param_tlvs *param_buf;
  17265. wmi_therm_throt_level_stats_info *tt_level_info;
  17266. param_buf =
  17267. (WMI_THERM_THROT_STATS_EVENTID_param_tlvs *) evt_buf;
  17268. if (!param_buf)
  17269. return QDF_STATUS_E_INVAL;
  17270. tt_level_info = param_buf->therm_throt_level_stats_info;
  17271. if (idx < THERMAL_LEVELS) {
  17272. *levelcount = tt_level_info[idx].level_count;
  17273. *dccount = tt_level_info[idx].dc_count;
  17274. return QDF_STATUS_SUCCESS;
  17275. }
  17276. return QDF_STATUS_E_FAILURE;
  17277. }
  17278. #ifdef BIG_ENDIAN_HOST
  17279. /**
  17280. * fips_conv_data_be() - LE to BE conversion of FIPS ev data
  17281. * @param data_len - data length
  17282. * @param data - pointer to data
  17283. *
  17284. * Return: QDF_STATUS - success or error status
  17285. */
  17286. static QDF_STATUS fips_conv_data_be(uint32_t data_len, uint8_t *data)
  17287. {
  17288. uint8_t *data_aligned = NULL;
  17289. int c;
  17290. unsigned char *data_unaligned;
  17291. data_unaligned = qdf_mem_malloc(((sizeof(uint8_t) * data_len) +
  17292. FIPS_ALIGN));
  17293. /* Assigning unaligned space to copy the data */
  17294. /* Checking if kmalloc does successful allocation */
  17295. if (data_unaligned == NULL)
  17296. return QDF_STATUS_E_FAILURE;
  17297. /* Checking if space is alligned */
  17298. if (!FIPS_IS_ALIGNED(data_unaligned, FIPS_ALIGN)) {
  17299. /* align the data space */
  17300. data_aligned =
  17301. (uint8_t *)FIPS_ALIGNTO(data_unaligned, FIPS_ALIGN);
  17302. } else {
  17303. data_aligned = (u_int8_t *)data_unaligned;
  17304. }
  17305. /* memset and copy content from data to data aligned */
  17306. OS_MEMSET(data_aligned, 0, data_len);
  17307. OS_MEMCPY(data_aligned, data, data_len);
  17308. /* Endianness to LE */
  17309. for (c = 0; c < data_len/4; c++) {
  17310. *((u_int32_t *)data_aligned + c) =
  17311. qdf_le32_to_cpu(*((u_int32_t *)data_aligned + c));
  17312. }
  17313. /* Copy content to event->data */
  17314. OS_MEMCPY(data, data_aligned, data_len);
  17315. /* clean up allocated space */
  17316. qdf_mem_free(data_unaligned);
  17317. data_aligned = NULL;
  17318. data_unaligned = NULL;
  17319. /*************************************************************/
  17320. return QDF_STATUS_SUCCESS;
  17321. }
  17322. #else
  17323. /**
  17324. * fips_conv_data_be() - DUMMY for LE platform
  17325. *
  17326. * Return: QDF_STATUS - success
  17327. */
  17328. static QDF_STATUS fips_conv_data_be(uint32_t data_len, uint8_t *data)
  17329. {
  17330. return QDF_STATUS_SUCCESS;
  17331. }
  17332. #endif
  17333. /**
  17334. * extract_fips_event_data_tlv() - extract fips event data
  17335. * @wmi_handle: wmi handle
  17336. * @param evt_buf: pointer to event buffer
  17337. * @param param: pointer FIPS event params
  17338. *
  17339. * Return: 0 for success or error code
  17340. */
  17341. static QDF_STATUS extract_fips_event_data_tlv(wmi_unified_t wmi_handle,
  17342. void *evt_buf, struct wmi_host_fips_event_param *param)
  17343. {
  17344. WMI_PDEV_FIPS_EVENTID_param_tlvs *param_buf;
  17345. wmi_pdev_fips_event_fixed_param *event;
  17346. param_buf = (WMI_PDEV_FIPS_EVENTID_param_tlvs *) evt_buf;
  17347. event = (wmi_pdev_fips_event_fixed_param *) param_buf->fixed_param;
  17348. if (fips_conv_data_be(event->data_len, param_buf->data) !=
  17349. QDF_STATUS_SUCCESS)
  17350. return QDF_STATUS_E_FAILURE;
  17351. param->data = (uint32_t *)param_buf->data;
  17352. param->data_len = event->data_len;
  17353. param->error_status = event->error_status;
  17354. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17355. event->pdev_id);
  17356. return QDF_STATUS_SUCCESS;
  17357. }
  17358. /*
  17359. * extract_peer_delete_response_event_tlv() - extract peer delete response event
  17360. * @wmi_handle: wmi handle
  17361. * @param evt_buf: pointer to event buffer
  17362. * @param vdev_id: Pointer to hold vdev_id
  17363. * @param mac_addr: Pointer to hold peer mac address
  17364. *
  17365. * Return: QDF_STATUS_SUCCESS for success or error code
  17366. */
  17367. static QDF_STATUS extract_peer_delete_response_event_tlv(wmi_unified_t wmi_hdl,
  17368. void *evt_buf, struct wmi_host_peer_delete_response_event *param)
  17369. {
  17370. WMI_PEER_DELETE_RESP_EVENTID_param_tlvs *param_buf;
  17371. wmi_peer_delete_resp_event_fixed_param *ev;
  17372. param_buf = (WMI_PEER_DELETE_RESP_EVENTID_param_tlvs *)evt_buf;
  17373. ev = (wmi_peer_delete_resp_event_fixed_param *) param_buf->fixed_param;
  17374. if (!ev) {
  17375. WMI_LOGE("%s: Invalid peer_delete response\n", __func__);
  17376. return QDF_STATUS_E_FAILURE;
  17377. }
  17378. param->vdev_id = ev->vdev_id;
  17379. WMI_MAC_ADDR_TO_CHAR_ARRAY(&ev->peer_macaddr,
  17380. &param->mac_address.bytes[0]);
  17381. return QDF_STATUS_SUCCESS;
  17382. }
  17383. static bool is_management_record_tlv(uint32_t cmd_id)
  17384. {
  17385. if ((cmd_id == WMI_MGMT_TX_COMPLETION_EVENTID) ||
  17386. (cmd_id == WMI_MGMT_TX_SEND_CMDID) ||
  17387. (cmd_id == WMI_OFFCHAN_DATA_TX_SEND_CMDID)) {
  17388. return true;
  17389. }
  17390. return false;
  17391. }
  17392. static uint16_t wmi_tag_vdev_set_cmd(wmi_unified_t wmi_hdl, wmi_buf_t buf)
  17393. {
  17394. wmi_vdev_set_param_cmd_fixed_param *set_cmd;
  17395. set_cmd = (wmi_vdev_set_param_cmd_fixed_param *)wmi_buf_data(buf);
  17396. switch (set_cmd->param_id) {
  17397. case WMI_VDEV_PARAM_LISTEN_INTERVAL:
  17398. case WMI_VDEV_PARAM_DTIM_POLICY:
  17399. return HTC_TX_PACKET_TAG_AUTO_PM;
  17400. default:
  17401. break;
  17402. }
  17403. return 0;
  17404. }
  17405. static uint16_t wmi_tag_sta_powersave_cmd(wmi_unified_t wmi_hdl, wmi_buf_t buf)
  17406. {
  17407. wmi_sta_powersave_param_cmd_fixed_param *ps_cmd;
  17408. ps_cmd = (wmi_sta_powersave_param_cmd_fixed_param *)wmi_buf_data(buf);
  17409. switch (ps_cmd->param) {
  17410. case WMI_STA_PS_PARAM_TX_WAKE_THRESHOLD:
  17411. case WMI_STA_PS_PARAM_INACTIVITY_TIME:
  17412. case WMI_STA_PS_ENABLE_QPOWER:
  17413. return HTC_TX_PACKET_TAG_AUTO_PM;
  17414. default:
  17415. break;
  17416. }
  17417. return 0;
  17418. }
  17419. static uint16_t wmi_tag_common_cmd(wmi_unified_t wmi_hdl, wmi_buf_t buf,
  17420. uint32_t cmd_id)
  17421. {
  17422. if (qdf_atomic_read(&wmi_hdl->is_wow_bus_suspended))
  17423. return 0;
  17424. switch (cmd_id) {
  17425. case WMI_VDEV_SET_PARAM_CMDID:
  17426. return wmi_tag_vdev_set_cmd(wmi_hdl, buf);
  17427. case WMI_STA_POWERSAVE_PARAM_CMDID:
  17428. return wmi_tag_sta_powersave_cmd(wmi_hdl, buf);
  17429. default:
  17430. break;
  17431. }
  17432. return 0;
  17433. }
  17434. static uint16_t wmi_tag_fw_hang_cmd(wmi_unified_t wmi_handle)
  17435. {
  17436. uint16_t tag = 0;
  17437. if (qdf_atomic_read(&wmi_handle->is_target_suspended)) {
  17438. pr_err("%s: Target is already suspended, Ignore FW Hang Command\n",
  17439. __func__);
  17440. return tag;
  17441. }
  17442. if (wmi_handle->tag_crash_inject)
  17443. tag = HTC_TX_PACKET_TAG_AUTO_PM;
  17444. wmi_handle->tag_crash_inject = false;
  17445. return tag;
  17446. }
  17447. /**
  17448. * wmi_set_htc_tx_tag_tlv() - set HTC TX tag for WMI commands
  17449. * @wmi_handle: WMI handle
  17450. * @buf: WMI buffer
  17451. * @cmd_id: WMI command Id
  17452. *
  17453. * Return htc_tx_tag
  17454. */
  17455. static uint16_t wmi_set_htc_tx_tag_tlv(wmi_unified_t wmi_handle,
  17456. wmi_buf_t buf,
  17457. uint32_t cmd_id)
  17458. {
  17459. uint16_t htc_tx_tag = 0;
  17460. switch (cmd_id) {
  17461. case WMI_WOW_ENABLE_CMDID:
  17462. case WMI_PDEV_SUSPEND_CMDID:
  17463. case WMI_WOW_ENABLE_DISABLE_WAKE_EVENT_CMDID:
  17464. case WMI_WOW_ADD_WAKE_PATTERN_CMDID:
  17465. case WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID:
  17466. case WMI_PDEV_RESUME_CMDID:
  17467. case WMI_WOW_DEL_WAKE_PATTERN_CMDID:
  17468. case WMI_WOW_SET_ACTION_WAKE_UP_CMDID:
  17469. #ifdef FEATURE_WLAN_D0WOW
  17470. case WMI_D0_WOW_ENABLE_DISABLE_CMDID:
  17471. #endif
  17472. htc_tx_tag = HTC_TX_PACKET_TAG_AUTO_PM;
  17473. break;
  17474. case WMI_FORCE_FW_HANG_CMDID:
  17475. htc_tx_tag = wmi_tag_fw_hang_cmd(wmi_handle);
  17476. break;
  17477. case WMI_VDEV_SET_PARAM_CMDID:
  17478. case WMI_STA_POWERSAVE_PARAM_CMDID:
  17479. htc_tx_tag = wmi_tag_common_cmd(wmi_handle, buf, cmd_id);
  17480. default:
  17481. break;
  17482. }
  17483. return htc_tx_tag;
  17484. }
  17485. /**
  17486. * extract_channel_hopping_event_tlv() - extract channel hopping param
  17487. * from event
  17488. * @wmi_handle: wmi handle
  17489. * @param evt_buf: pointer to event buffer
  17490. * @param ch_hopping: Pointer to hold channel hopping param
  17491. *
  17492. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  17493. */
  17494. static QDF_STATUS extract_channel_hopping_event_tlv(
  17495. wmi_unified_t wmi_handle, void *evt_buf,
  17496. wmi_host_pdev_channel_hopping_event *ch_hopping)
  17497. {
  17498. WMI_PDEV_CHANNEL_HOPPING_EVENTID_param_tlvs *param_buf;
  17499. wmi_pdev_channel_hopping_event_fixed_param *event;
  17500. param_buf = (WMI_PDEV_CHANNEL_HOPPING_EVENTID_param_tlvs *)evt_buf;
  17501. event = (wmi_pdev_channel_hopping_event_fixed_param *)
  17502. param_buf->fixed_param;
  17503. ch_hopping->noise_floor_report_iter = event->noise_floor_report_iter;
  17504. ch_hopping->noise_floor_total_iter = event->noise_floor_total_iter;
  17505. ch_hopping->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17506. event->pdev_id);
  17507. return QDF_STATUS_SUCCESS;
  17508. }
  17509. /**
  17510. * extract_pdev_tpc_ev_param_tlv() - extract tpc param from event
  17511. * @wmi_handle: wmi handle
  17512. * @param evt_buf: pointer to event buffer
  17513. * @param param: Pointer to hold tpc param
  17514. *
  17515. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  17516. */
  17517. static QDF_STATUS extract_pdev_tpc_ev_param_tlv(wmi_unified_t wmi_handle,
  17518. void *evt_buf,
  17519. wmi_host_pdev_tpc_event *param)
  17520. {
  17521. WMI_PDEV_TPC_EVENTID_param_tlvs *param_buf;
  17522. wmi_pdev_tpc_event_fixed_param *event;
  17523. param_buf = (WMI_PDEV_TPC_EVENTID_param_tlvs *)evt_buf;
  17524. event = (wmi_pdev_tpc_event_fixed_param *)param_buf->fixed_param;
  17525. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  17526. event->pdev_id);
  17527. qdf_mem_copy(param->tpc, param_buf->tpc, sizeof(param->tpc));
  17528. return QDF_STATUS_SUCCESS;
  17529. }
  17530. /**
  17531. * extract_nfcal_power_ev_param_tlv() - extract noise floor calibration
  17532. * power param from event
  17533. * @wmi_handle: wmi handle
  17534. * @param evt_buf: pointer to event buffer
  17535. * @param param: Pointer to hold nf cal power param
  17536. *
  17537. * Return: 0 for success or error code
  17538. */
  17539. static QDF_STATUS
  17540. extract_nfcal_power_ev_param_tlv(wmi_unified_t wmi_handle,
  17541. void *evt_buf,
  17542. wmi_host_pdev_nfcal_power_all_channels_event *param)
  17543. {
  17544. WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID_param_tlvs *param_buf;
  17545. wmi_pdev_nfcal_power_all_channels_event_fixed_param *event;
  17546. wmi_pdev_nfcal_power_all_channels_nfdBr *ch_nfdbr;
  17547. wmi_pdev_nfcal_power_all_channels_nfdBm *ch_nfdbm;
  17548. wmi_pdev_nfcal_power_all_channels_freqNum *ch_freqnum;
  17549. uint32_t i;
  17550. param_buf =
  17551. (WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID_param_tlvs *)evt_buf;
  17552. event = param_buf->fixed_param;
  17553. ch_nfdbr = param_buf->nfdbr;
  17554. ch_nfdbm = param_buf->nfdbm;
  17555. ch_freqnum = param_buf->freqnum;
  17556. WMI_LOGD("pdev_id[%x], num_nfdbr[%d], num_nfdbm[%d] num_freqnum[%d]\n",
  17557. event->pdev_id, param_buf->num_nfdbr,
  17558. param_buf->num_nfdbm, param_buf->num_freqnum);
  17559. if (param_buf->num_nfdbr >
  17560. WMI_HOST_RXG_CAL_CHAN_MAX * WMI_HOST_MAX_NUM_CHAINS) {
  17561. WMI_LOGE("invalid number of nfdBr");
  17562. return QDF_STATUS_E_FAILURE;
  17563. }
  17564. if (param_buf->num_nfdbm >
  17565. WMI_HOST_RXG_CAL_CHAN_MAX * WMI_HOST_MAX_NUM_CHAINS) {
  17566. WMI_LOGE("invalid number of nfdBm");
  17567. return QDF_STATUS_E_FAILURE;
  17568. }
  17569. if (param_buf->num_freqnum > WMI_HOST_RXG_CAL_CHAN_MAX) {
  17570. WMI_LOGE("invalid number of freqNum");
  17571. return QDF_STATUS_E_FAILURE;
  17572. }
  17573. for (i = 0; i < param_buf->num_nfdbr; i++) {
  17574. param->nfdbr[i] = (int8_t)ch_nfdbr->nfdBr;
  17575. param->nfdbm[i] = (int8_t)ch_nfdbm->nfdBm;
  17576. ch_nfdbr++;
  17577. ch_nfdbm++;
  17578. }
  17579. for (i = 0; i < param_buf->num_freqnum; i++) {
  17580. param->freqnum[i] = ch_freqnum->freqNum;
  17581. ch_freqnum++;
  17582. }
  17583. param->pdev_id = wmi_handle->ops->
  17584. convert_pdev_id_target_to_host(event->pdev_id);
  17585. return QDF_STATUS_SUCCESS;
  17586. }
  17587. #ifdef BIG_ENDIAN_HOST
  17588. /**
  17589. * wds_addr_ev_conv_data_be() - LE to BE conversion of wds addr event
  17590. * @param data_len - data length
  17591. * @param data - pointer to data
  17592. *
  17593. * Return: QDF_STATUS - success or error status
  17594. */
  17595. static QDF_STATUS wds_addr_ev_conv_data_be(uint16_t data_len, uint8_t *ev)
  17596. {
  17597. uint8_t *datap = (uint8_t *)ev;
  17598. int i;
  17599. /* Skip swapping the first word */
  17600. datap += sizeof(uint32_t);
  17601. for (i = 0; i < ((data_len / sizeof(uint32_t))-1);
  17602. i++, datap += sizeof(uint32_t)) {
  17603. *(uint32_t *)datap = qdf_le32_to_cpu(*(uint32_t *)datap);
  17604. }
  17605. return QDF_STATUS_SUCCESS;
  17606. }
  17607. #else
  17608. /**
  17609. * wds_addr_ev_conv_data_be() - Dummy operation for LE platforms
  17610. * @param data_len - data length
  17611. * @param data - pointer to data
  17612. *
  17613. * Return: QDF_STATUS - success or error status
  17614. */
  17615. static QDF_STATUS wds_addr_ev_conv_data_be(uint32_t data_len, uint8_t *ev)
  17616. {
  17617. return QDF_STATUS_SUCCESS;
  17618. }
  17619. #endif
  17620. /**
  17621. * extract_wds_addr_event_tlv() - extract wds address from event
  17622. * @wmi_handle: wmi handle
  17623. * @param evt_buf: pointer to event buffer
  17624. * @param wds_ev: Pointer to hold wds address
  17625. *
  17626. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  17627. */
  17628. static QDF_STATUS extract_wds_addr_event_tlv(wmi_unified_t wmi_handle,
  17629. void *evt_buf,
  17630. uint16_t len, wds_addr_event_t *wds_ev)
  17631. {
  17632. WMI_WDS_PEER_EVENTID_param_tlvs *param_buf;
  17633. wmi_wds_addr_event_fixed_param *ev;
  17634. int i;
  17635. param_buf = (WMI_WDS_PEER_EVENTID_param_tlvs *)evt_buf;
  17636. ev = (wmi_wds_addr_event_fixed_param *)param_buf->fixed_param;
  17637. if (wds_addr_ev_conv_data_be(len, (uint8_t *)ev) != QDF_STATUS_SUCCESS)
  17638. return QDF_STATUS_E_FAILURE;
  17639. qdf_mem_copy(wds_ev->event_type, ev->event_type,
  17640. sizeof(wds_ev->event_type));
  17641. for (i = 0; i < 4; i++) {
  17642. wds_ev->peer_mac[i] =
  17643. ((u_int8_t *)&(ev->peer_mac.mac_addr31to0))[i];
  17644. wds_ev->dest_mac[i] =
  17645. ((u_int8_t *)&(ev->dest_mac.mac_addr31to0))[i];
  17646. }
  17647. for (i = 0; i < 2; i++) {
  17648. wds_ev->peer_mac[4+i] =
  17649. ((u_int8_t *)&(ev->peer_mac.mac_addr47to32))[i];
  17650. wds_ev->dest_mac[4+i] =
  17651. ((u_int8_t *)&(ev->dest_mac.mac_addr47to32))[i];
  17652. }
  17653. return QDF_STATUS_SUCCESS;
  17654. }
  17655. /**
  17656. * extract_peer_sta_ps_statechange_ev_tlv() - extract peer sta ps state
  17657. * from event
  17658. * @wmi_handle: wmi handle
  17659. * @param evt_buf: pointer to event buffer
  17660. * @param ev: Pointer to hold peer param and ps state
  17661. *
  17662. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  17663. */
  17664. static QDF_STATUS extract_peer_sta_ps_statechange_ev_tlv(wmi_unified_t wmi_handle,
  17665. void *evt_buf, wmi_host_peer_sta_ps_statechange_event *ev)
  17666. {
  17667. WMI_PEER_STA_PS_STATECHG_EVENTID_param_tlvs *param_buf;
  17668. wmi_peer_sta_ps_statechange_event_fixed_param *event;
  17669. param_buf = (WMI_PEER_STA_PS_STATECHG_EVENTID_param_tlvs *)evt_buf;
  17670. event = (wmi_peer_sta_ps_statechange_event_fixed_param *)
  17671. param_buf->fixed_param;
  17672. WMI_MAC_ADDR_TO_CHAR_ARRAY(&event->peer_macaddr, ev->peer_macaddr);
  17673. ev->peer_ps_state = event->peer_ps_state;
  17674. return QDF_STATUS_SUCCESS;
  17675. }
  17676. /**
  17677. * extract_inst_rssi_stats_event_tlv() - extract inst rssi stats from event
  17678. * @wmi_handle: wmi handle
  17679. * @param evt_buf: pointer to event buffer
  17680. * @param inst_rssi_resp: Pointer to hold inst rssi response
  17681. *
  17682. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  17683. */
  17684. static QDF_STATUS extract_inst_rssi_stats_event_tlv(
  17685. wmi_unified_t wmi_handle, void *evt_buf,
  17686. wmi_host_inst_stats_resp *inst_rssi_resp)
  17687. {
  17688. WMI_INST_RSSI_STATS_EVENTID_param_tlvs *param_buf;
  17689. wmi_inst_rssi_stats_resp_fixed_param *event;
  17690. param_buf = (WMI_INST_RSSI_STATS_EVENTID_param_tlvs *)evt_buf;
  17691. event = (wmi_inst_rssi_stats_resp_fixed_param *)param_buf->fixed_param;
  17692. qdf_mem_copy(&(inst_rssi_resp->peer_macaddr),
  17693. &(event->peer_macaddr), sizeof(wmi_mac_addr));
  17694. inst_rssi_resp->iRSSI = event->iRSSI;
  17695. return QDF_STATUS_SUCCESS;
  17696. }
  17697. static struct cur_reg_rule
  17698. *create_reg_rules_from_wmi(uint32_t num_reg_rules,
  17699. wmi_regulatory_rule_struct *wmi_reg_rule)
  17700. {
  17701. struct cur_reg_rule *reg_rule_ptr;
  17702. uint32_t count;
  17703. reg_rule_ptr = qdf_mem_malloc(num_reg_rules * sizeof(*reg_rule_ptr));
  17704. if (NULL == reg_rule_ptr) {
  17705. WMI_LOGE("memory allocation failure");
  17706. return NULL;
  17707. }
  17708. for (count = 0; count < num_reg_rules; count++) {
  17709. reg_rule_ptr[count].start_freq =
  17710. WMI_REG_RULE_START_FREQ_GET(
  17711. wmi_reg_rule[count].freq_info);
  17712. reg_rule_ptr[count].end_freq =
  17713. WMI_REG_RULE_END_FREQ_GET(
  17714. wmi_reg_rule[count].freq_info);
  17715. reg_rule_ptr[count].max_bw =
  17716. WMI_REG_RULE_MAX_BW_GET(
  17717. wmi_reg_rule[count].bw_pwr_info);
  17718. reg_rule_ptr[count].reg_power =
  17719. WMI_REG_RULE_REG_POWER_GET(
  17720. wmi_reg_rule[count].bw_pwr_info);
  17721. reg_rule_ptr[count].ant_gain =
  17722. WMI_REG_RULE_ANTENNA_GAIN_GET(
  17723. wmi_reg_rule[count].bw_pwr_info);
  17724. reg_rule_ptr[count].flags =
  17725. WMI_REG_RULE_FLAGS_GET(
  17726. wmi_reg_rule[count].flag_info);
  17727. }
  17728. return reg_rule_ptr;
  17729. }
  17730. static QDF_STATUS extract_reg_chan_list_update_event_tlv(
  17731. wmi_unified_t wmi_handle, uint8_t *evt_buf,
  17732. struct cur_regulatory_info *reg_info, uint32_t len)
  17733. {
  17734. WMI_REG_CHAN_LIST_CC_EVENTID_param_tlvs *param_buf;
  17735. wmi_reg_chan_list_cc_event_fixed_param *chan_list_event_hdr;
  17736. wmi_regulatory_rule_struct *wmi_reg_rule;
  17737. uint32_t num_2g_reg_rules, num_5g_reg_rules;
  17738. WMI_LOGD("processing regulatory channel list");
  17739. param_buf = (WMI_REG_CHAN_LIST_CC_EVENTID_param_tlvs *)evt_buf;
  17740. if (!param_buf) {
  17741. WMI_LOGE("invalid channel list event buf");
  17742. return QDF_STATUS_E_FAILURE;
  17743. }
  17744. chan_list_event_hdr = param_buf->fixed_param;
  17745. reg_info->num_2g_reg_rules = chan_list_event_hdr->num_2g_reg_rules;
  17746. reg_info->num_5g_reg_rules = chan_list_event_hdr->num_5g_reg_rules;
  17747. qdf_mem_copy(reg_info->alpha2, &(chan_list_event_hdr->alpha2),
  17748. REG_ALPHA2_LEN);
  17749. reg_info->dfs_region = chan_list_event_hdr->dfs_region;
  17750. reg_info->phybitmap = chan_list_event_hdr->phybitmap;
  17751. reg_info->offload_enabled = true;
  17752. reg_info->num_phy = chan_list_event_hdr->num_phy;
  17753. reg_info->phy_id = chan_list_event_hdr->phy_id;
  17754. reg_info->ctry_code = chan_list_event_hdr->country_id;
  17755. reg_info->reg_dmn_pair = chan_list_event_hdr->domain_code;
  17756. if (chan_list_event_hdr->status_code == WMI_REG_SET_CC_STATUS_PASS)
  17757. reg_info->status_code = REG_SET_CC_STATUS_PASS;
  17758. else if (chan_list_event_hdr->status_code ==
  17759. WMI_REG_CURRENT_ALPHA2_NOT_FOUND)
  17760. reg_info->status_code = REG_CURRENT_ALPHA2_NOT_FOUND;
  17761. else if (chan_list_event_hdr->status_code ==
  17762. WMI_REG_INIT_ALPHA2_NOT_FOUND)
  17763. reg_info->status_code = REG_INIT_ALPHA2_NOT_FOUND;
  17764. else if (chan_list_event_hdr->status_code ==
  17765. WMI_REG_SET_CC_CHANGE_NOT_ALLOWED)
  17766. reg_info->status_code = REG_SET_CC_CHANGE_NOT_ALLOWED;
  17767. else if (chan_list_event_hdr->status_code ==
  17768. WMI_REG_SET_CC_STATUS_NO_MEMORY)
  17769. reg_info->status_code = REG_SET_CC_STATUS_NO_MEMORY;
  17770. else if (chan_list_event_hdr->status_code ==
  17771. WMI_REG_SET_CC_STATUS_FAIL)
  17772. reg_info->status_code = REG_SET_CC_STATUS_FAIL;
  17773. reg_info->min_bw_2g = chan_list_event_hdr->min_bw_2g;
  17774. reg_info->max_bw_2g = chan_list_event_hdr->max_bw_2g;
  17775. reg_info->min_bw_5g = chan_list_event_hdr->min_bw_5g;
  17776. reg_info->max_bw_5g = chan_list_event_hdr->max_bw_5g;
  17777. num_2g_reg_rules = reg_info->num_2g_reg_rules;
  17778. num_5g_reg_rules = reg_info->num_5g_reg_rules;
  17779. WMI_LOGD("%s:cc %s dsf %d BW: min_2g %d max_2g %d min_5g %d max_5g %d",
  17780. __func__, reg_info->alpha2, reg_info->dfs_region,
  17781. reg_info->min_bw_2g, reg_info->max_bw_2g,
  17782. reg_info->min_bw_5g, reg_info->max_bw_5g);
  17783. WMI_LOGD("%s: num_2g_reg_rules %d num_5g_reg_rules %d", __func__,
  17784. num_2g_reg_rules, num_5g_reg_rules);
  17785. wmi_reg_rule =
  17786. (wmi_regulatory_rule_struct *)((uint8_t *)chan_list_event_hdr
  17787. + sizeof(wmi_reg_chan_list_cc_event_fixed_param)
  17788. + WMI_TLV_HDR_SIZE);
  17789. reg_info->reg_rules_2g_ptr = create_reg_rules_from_wmi(num_2g_reg_rules,
  17790. wmi_reg_rule);
  17791. wmi_reg_rule += num_2g_reg_rules;
  17792. reg_info->reg_rules_5g_ptr = create_reg_rules_from_wmi(num_5g_reg_rules,
  17793. wmi_reg_rule);
  17794. WMI_LOGD("processed regulatory channel list");
  17795. return QDF_STATUS_SUCCESS;
  17796. }
  17797. static QDF_STATUS extract_reg_11d_new_country_event_tlv(
  17798. wmi_unified_t wmi_handle, uint8_t *evt_buf,
  17799. struct reg_11d_new_country *reg_11d_country, uint32_t len)
  17800. {
  17801. wmi_11d_new_country_event_fixed_param *reg_11d_country_event;
  17802. WMI_11D_NEW_COUNTRY_EVENTID_param_tlvs *param_buf;
  17803. param_buf = (WMI_11D_NEW_COUNTRY_EVENTID_param_tlvs *)evt_buf;
  17804. if (!param_buf) {
  17805. WMI_LOGE("invalid 11d country event buf");
  17806. return QDF_STATUS_E_FAILURE;
  17807. }
  17808. reg_11d_country_event = param_buf->fixed_param;
  17809. qdf_mem_copy(reg_11d_country->alpha2,
  17810. &reg_11d_country_event->new_alpha2, REG_ALPHA2_LEN);
  17811. WMI_LOGD("processed 11d country event, new cc %s",
  17812. reg_11d_country->alpha2);
  17813. return QDF_STATUS_SUCCESS;
  17814. }
  17815. static QDF_STATUS extract_reg_ch_avoid_event_tlv(
  17816. wmi_unified_t wmi_handle, uint8_t *evt_buf,
  17817. struct ch_avoid_ind_type *ch_avoid_ind, uint32_t len)
  17818. {
  17819. wmi_avoid_freq_ranges_event_fixed_param *afr_fixed_param;
  17820. wmi_avoid_freq_range_desc *afr_desc;
  17821. uint32_t num_freq_ranges, freq_range_idx;
  17822. WMI_WLAN_FREQ_AVOID_EVENTID_param_tlvs *param_buf =
  17823. (WMI_WLAN_FREQ_AVOID_EVENTID_param_tlvs *) evt_buf;
  17824. if (!param_buf) {
  17825. WMI_LOGE("Invalid channel avoid event buffer");
  17826. return QDF_STATUS_E_INVAL;
  17827. }
  17828. afr_fixed_param = param_buf->fixed_param;
  17829. if (!afr_fixed_param) {
  17830. WMI_LOGE("Invalid channel avoid event fixed param buffer");
  17831. return QDF_STATUS_E_INVAL;
  17832. }
  17833. if (!ch_avoid_ind) {
  17834. WMI_LOGE("Invalid channel avoid indication buffer");
  17835. return QDF_STATUS_E_INVAL;
  17836. }
  17837. num_freq_ranges = (afr_fixed_param->num_freq_ranges >
  17838. CH_AVOID_MAX_RANGE) ? CH_AVOID_MAX_RANGE :
  17839. afr_fixed_param->num_freq_ranges;
  17840. WMI_LOGD("Channel avoid event received with %d ranges",
  17841. num_freq_ranges);
  17842. ch_avoid_ind->ch_avoid_range_cnt = num_freq_ranges;
  17843. afr_desc = (wmi_avoid_freq_range_desc *)(param_buf->avd_freq_range);
  17844. for (freq_range_idx = 0; freq_range_idx < num_freq_ranges;
  17845. freq_range_idx++) {
  17846. ch_avoid_ind->avoid_freq_range[freq_range_idx].start_freq =
  17847. afr_desc->start_freq;
  17848. ch_avoid_ind->avoid_freq_range[freq_range_idx].end_freq =
  17849. afr_desc->end_freq;
  17850. WMI_LOGD("range %d tlv id %u, start freq %u, end freq %u",
  17851. freq_range_idx, afr_desc->tlv_header,
  17852. afr_desc->start_freq, afr_desc->end_freq);
  17853. afr_desc++;
  17854. }
  17855. return QDF_STATUS_SUCCESS;
  17856. }
  17857. #ifdef DFS_COMPONENT_ENABLE
  17858. /**
  17859. * extract_dfs_cac_complete_event_tlv() - extract cac complete event
  17860. * @wmi_handle: wma handle
  17861. * @evt_buf: event buffer
  17862. * @vdev_id: vdev id
  17863. * @len: length of buffer
  17864. *
  17865. * Return: 0 for success or error code
  17866. */
  17867. static QDF_STATUS extract_dfs_cac_complete_event_tlv(wmi_unified_t wmi_handle,
  17868. uint8_t *evt_buf,
  17869. uint32_t *vdev_id,
  17870. uint32_t len)
  17871. {
  17872. WMI_VDEV_DFS_CAC_COMPLETE_EVENTID_param_tlvs *param_tlvs;
  17873. wmi_vdev_dfs_cac_complete_event_fixed_param *cac_event;
  17874. param_tlvs = (WMI_VDEV_DFS_CAC_COMPLETE_EVENTID_param_tlvs *) evt_buf;
  17875. if (!param_tlvs) {
  17876. WMI_LOGE("invalid cac complete event buf");
  17877. return QDF_STATUS_E_FAILURE;
  17878. }
  17879. cac_event = param_tlvs->fixed_param;
  17880. *vdev_id = cac_event->vdev_id;
  17881. WMI_LOGD("processed cac complete event vdev %d", *vdev_id);
  17882. return QDF_STATUS_SUCCESS;
  17883. }
  17884. /**
  17885. * extract_dfs_radar_detection_event_tlv() - extract radar found event
  17886. * @wmi_handle: wma handle
  17887. * @evt_buf: event buffer
  17888. * @radar_found: radar found event info
  17889. * @len: length of buffer
  17890. *
  17891. * Return: 0 for success or error code
  17892. */
  17893. static QDF_STATUS extract_dfs_radar_detection_event_tlv(
  17894. wmi_unified_t wmi_handle,
  17895. uint8_t *evt_buf,
  17896. struct radar_found_info *radar_found,
  17897. uint32_t len)
  17898. {
  17899. WMI_PDEV_DFS_RADAR_DETECTION_EVENTID_param_tlvs *param_tlv;
  17900. wmi_pdev_dfs_radar_detection_event_fixed_param *radar_event;
  17901. param_tlv = (WMI_PDEV_DFS_RADAR_DETECTION_EVENTID_param_tlvs *) evt_buf;
  17902. if (!param_tlv) {
  17903. WMI_LOGE("invalid radar detection event buf");
  17904. return QDF_STATUS_E_FAILURE;
  17905. }
  17906. radar_event = param_tlv->fixed_param;
  17907. radar_found->pdev_id = convert_target_pdev_id_to_host_pdev_id(
  17908. radar_event->pdev_id);
  17909. radar_found->detection_mode = radar_event->detection_mode;
  17910. radar_found->chan_freq = radar_event->chan_freq;
  17911. radar_found->chan_width = radar_event->chan_width;
  17912. radar_found->detector_id = radar_event->detector_id;
  17913. radar_found->segment_id = radar_event->segment_id;
  17914. radar_found->timestamp = radar_event->timestamp;
  17915. radar_found->is_chirp = radar_event->is_chirp;
  17916. radar_found->freq_offset = radar_event->freq_offset;
  17917. radar_found->sidx = radar_event->sidx;
  17918. WMI_LOGI("processed radar found event pdev %d,"
  17919. "Radar Event Info:pdev_id %d,timestamp %d,chan_freq (dur) %d,"
  17920. "chan_width (RSSI) %d,detector_id (false_radar) %d,"
  17921. "freq_offset (radar_check) %d,segment_id %d,sidx %d,"
  17922. "is_chirp %d,detection mode %d\n",
  17923. radar_event->pdev_id, radar_found->pdev_id,
  17924. radar_event->timestamp, radar_event->chan_freq,
  17925. radar_event->chan_width, radar_event->detector_id,
  17926. radar_event->freq_offset, radar_event->segment_id,
  17927. radar_event->sidx, radar_event->is_chirp,
  17928. radar_event->detection_mode);
  17929. return QDF_STATUS_SUCCESS;
  17930. }
  17931. #ifdef QCA_MCL_DFS_SUPPORT
  17932. /**
  17933. * extract_wlan_radar_event_info_tlv() - extract radar pulse event
  17934. * @wmi_handle: wma handle
  17935. * @evt_buf: event buffer
  17936. * @wlan_radar_event: Pointer to struct radar_event_info
  17937. * @len: length of buffer
  17938. *
  17939. * Return: QDF_STATUS
  17940. */
  17941. static QDF_STATUS extract_wlan_radar_event_info_tlv(
  17942. wmi_unified_t wmi_handle,
  17943. uint8_t *evt_buf,
  17944. struct radar_event_info *wlan_radar_event,
  17945. uint32_t len)
  17946. {
  17947. WMI_DFS_RADAR_EVENTID_param_tlvs *param_tlv;
  17948. wmi_dfs_radar_event_fixed_param *radar_event;
  17949. param_tlv = (WMI_DFS_RADAR_EVENTID_param_tlvs *)evt_buf;
  17950. if (!param_tlv) {
  17951. WMI_LOGE("invalid wlan radar event buf");
  17952. return QDF_STATUS_E_FAILURE;
  17953. }
  17954. radar_event = param_tlv->fixed_param;
  17955. wlan_radar_event->pulse_is_chirp = radar_event->pulse_is_chirp;
  17956. wlan_radar_event->pulse_center_freq = radar_event->pulse_center_freq;
  17957. wlan_radar_event->pulse_duration = radar_event->pulse_duration;
  17958. wlan_radar_event->rssi = radar_event->rssi;
  17959. wlan_radar_event->pulse_detect_ts = radar_event->pulse_detect_ts;
  17960. wlan_radar_event->upload_fullts_high = radar_event->upload_fullts_high;
  17961. wlan_radar_event->upload_fullts_low = radar_event->upload_fullts_low;
  17962. wlan_radar_event->peak_sidx = radar_event->peak_sidx;
  17963. wlan_radar_event->delta_peak = radar_event->pulse_delta_peak;
  17964. wlan_radar_event->delta_diff = radar_event->pulse_delta_diff;
  17965. if (radar_event->pulse_flags &
  17966. WMI_DFS_RADAR_PULSE_FLAG_MASK_PSIDX_DIFF_VALID) {
  17967. wlan_radar_event->is_psidx_diff_valid = true;
  17968. wlan_radar_event->psidx_diff = radar_event->psidx_diff;
  17969. } else {
  17970. wlan_radar_event->is_psidx_diff_valid = false;
  17971. }
  17972. wlan_radar_event->pdev_id = radar_event->pdev_id;
  17973. return QDF_STATUS_SUCCESS;
  17974. }
  17975. #else
  17976. static QDF_STATUS extract_wlan_radar_event_info_tlv(
  17977. wmi_unified_t wmi_handle,
  17978. uint8_t *evt_buf,
  17979. struct radar_event_info *wlan_radar_event,
  17980. uint32_t len)
  17981. {
  17982. return QDF_STATUS_SUCCESS;
  17983. }
  17984. #endif
  17985. #endif
  17986. /**
  17987. * send_get_rcpi_cmd_tlv() - send request for rcpi value
  17988. * @wmi_handle: wmi handle
  17989. * @get_rcpi_param: rcpi params
  17990. *
  17991. * Return: QDF status
  17992. */
  17993. static QDF_STATUS send_get_rcpi_cmd_tlv(wmi_unified_t wmi_handle,
  17994. struct rcpi_req *get_rcpi_param)
  17995. {
  17996. wmi_buf_t buf;
  17997. wmi_request_rcpi_cmd_fixed_param *cmd;
  17998. uint8_t len = sizeof(wmi_request_rcpi_cmd_fixed_param);
  17999. buf = wmi_buf_alloc(wmi_handle, len);
  18000. if (!buf) {
  18001. WMI_LOGE("%s: Failed to allocate wmi buffer", __func__);
  18002. return QDF_STATUS_E_NOMEM;
  18003. }
  18004. cmd = (wmi_request_rcpi_cmd_fixed_param *) wmi_buf_data(buf);
  18005. WMITLV_SET_HDR(&cmd->tlv_header,
  18006. WMITLV_TAG_STRUC_wmi_request_rcpi_cmd_fixed_param,
  18007. WMITLV_GET_STRUCT_TLVLEN
  18008. (wmi_request_rcpi_cmd_fixed_param));
  18009. cmd->vdev_id = get_rcpi_param->vdev_id;
  18010. WMI_CHAR_ARRAY_TO_MAC_ADDR(get_rcpi_param->mac_addr,
  18011. &cmd->peer_macaddr);
  18012. switch (get_rcpi_param->measurement_type) {
  18013. case RCPI_MEASUREMENT_TYPE_AVG_MGMT:
  18014. cmd->measurement_type = WMI_RCPI_MEASUREMENT_TYPE_AVG_MGMT;
  18015. break;
  18016. case RCPI_MEASUREMENT_TYPE_AVG_DATA:
  18017. cmd->measurement_type = WMI_RCPI_MEASUREMENT_TYPE_AVG_DATA;
  18018. break;
  18019. case RCPI_MEASUREMENT_TYPE_LAST_MGMT:
  18020. cmd->measurement_type = WMI_RCPI_MEASUREMENT_TYPE_LAST_MGMT;
  18021. break;
  18022. case RCPI_MEASUREMENT_TYPE_LAST_DATA:
  18023. cmd->measurement_type = WMI_RCPI_MEASUREMENT_TYPE_LAST_DATA;
  18024. break;
  18025. default:
  18026. /*
  18027. * invalid rcpi measurement type, fall back to
  18028. * RCPI_MEASUREMENT_TYPE_AVG_MGMT
  18029. */
  18030. cmd->measurement_type = WMI_RCPI_MEASUREMENT_TYPE_AVG_MGMT;
  18031. break;
  18032. }
  18033. WMI_LOGD("RCPI REQ VDEV_ID:%d-->", cmd->vdev_id);
  18034. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  18035. WMI_REQUEST_RCPI_CMDID)) {
  18036. WMI_LOGE("%s: Failed to send WMI_REQUEST_RCPI_CMDID",
  18037. __func__);
  18038. wmi_buf_free(buf);
  18039. return QDF_STATUS_E_FAILURE;
  18040. }
  18041. return QDF_STATUS_SUCCESS;
  18042. }
  18043. /**
  18044. * extract_rcpi_response_event_tlv() - Extract RCPI event params
  18045. * @wmi_handle: wmi handle
  18046. * @evt_buf: pointer to event buffer
  18047. * @res: pointer to hold rcpi response from firmware
  18048. *
  18049. * Return: QDF_STATUS_SUCCESS for successful event parse
  18050. * else QDF_STATUS_E_INVAL or QDF_STATUS_E_FAILURE
  18051. */
  18052. static QDF_STATUS
  18053. extract_rcpi_response_event_tlv(wmi_unified_t wmi_handle,
  18054. void *evt_buf, struct rcpi_res *res)
  18055. {
  18056. WMI_UPDATE_RCPI_EVENTID_param_tlvs *param_buf;
  18057. wmi_update_rcpi_event_fixed_param *event;
  18058. param_buf = (WMI_UPDATE_RCPI_EVENTID_param_tlvs *)evt_buf;
  18059. if (!param_buf) {
  18060. WMI_LOGE(FL("Invalid rcpi event"));
  18061. return QDF_STATUS_E_INVAL;
  18062. }
  18063. event = param_buf->fixed_param;
  18064. res->vdev_id = event->vdev_id;
  18065. WMI_MAC_ADDR_TO_CHAR_ARRAY(&event->peer_macaddr, res->mac_addr);
  18066. switch (event->measurement_type) {
  18067. case WMI_RCPI_MEASUREMENT_TYPE_AVG_MGMT:
  18068. res->measurement_type = RCPI_MEASUREMENT_TYPE_AVG_MGMT;
  18069. break;
  18070. case WMI_RCPI_MEASUREMENT_TYPE_AVG_DATA:
  18071. res->measurement_type = RCPI_MEASUREMENT_TYPE_AVG_DATA;
  18072. break;
  18073. case WMI_RCPI_MEASUREMENT_TYPE_LAST_MGMT:
  18074. res->measurement_type = RCPI_MEASUREMENT_TYPE_LAST_MGMT;
  18075. break;
  18076. case WMI_RCPI_MEASUREMENT_TYPE_LAST_DATA:
  18077. res->measurement_type = RCPI_MEASUREMENT_TYPE_LAST_DATA;
  18078. break;
  18079. default:
  18080. WMI_LOGE(FL("Invalid rcpi measurement type from firmware"));
  18081. res->measurement_type = RCPI_MEASUREMENT_TYPE_INVALID;
  18082. return QDF_STATUS_E_FAILURE;
  18083. }
  18084. if (event->status)
  18085. return QDF_STATUS_E_FAILURE;
  18086. else
  18087. return QDF_STATUS_SUCCESS;
  18088. }
  18089. /**
  18090. * convert_host_pdev_id_to_target_pdev_id_legacy() - Convert pdev_id from
  18091. * host to target defines. For legacy there is not conversion
  18092. * required. Just return pdev_id as it is.
  18093. * @param pdev_id: host pdev_id to be converted.
  18094. * Return: target pdev_id after conversion.
  18095. */
  18096. static uint32_t convert_host_pdev_id_to_target_pdev_id_legacy(
  18097. uint32_t pdev_id)
  18098. {
  18099. if (pdev_id == WMI_HOST_PDEV_ID_SOC)
  18100. return WMI_PDEV_ID_SOC;
  18101. /*No conversion required*/
  18102. return pdev_id;
  18103. }
  18104. /**
  18105. * convert_target_pdev_id_to_host_pdev_id_legacy() - Convert pdev_id from
  18106. * target to host defines. For legacy there is not conversion
  18107. * required. Just return pdev_id as it is.
  18108. * @param pdev_id: target pdev_id to be converted.
  18109. * Return: host pdev_id after conversion.
  18110. */
  18111. static uint32_t convert_target_pdev_id_to_host_pdev_id_legacy(
  18112. uint32_t pdev_id)
  18113. {
  18114. /*No conversion required*/
  18115. return pdev_id;
  18116. }
  18117. /**
  18118. * send_set_country_cmd_tlv() - WMI scan channel list function
  18119. * @param wmi_handle : handle to WMI.
  18120. * @param param : pointer to hold scan channel list parameter
  18121. *
  18122. * Return: 0 on success and -ve on failure.
  18123. */
  18124. static QDF_STATUS send_set_country_cmd_tlv(wmi_unified_t wmi_handle,
  18125. struct set_country *params)
  18126. {
  18127. wmi_buf_t buf;
  18128. QDF_STATUS qdf_status;
  18129. wmi_set_current_country_cmd_fixed_param *cmd;
  18130. uint16_t len = sizeof(*cmd);
  18131. buf = wmi_buf_alloc(wmi_handle, len);
  18132. if (!buf) {
  18133. WMI_LOGE("Failed to allocate memory");
  18134. qdf_status = QDF_STATUS_E_NOMEM;
  18135. goto end;
  18136. }
  18137. cmd = (wmi_set_current_country_cmd_fixed_param *)wmi_buf_data(buf);
  18138. WMITLV_SET_HDR(&cmd->tlv_header,
  18139. WMITLV_TAG_STRUC_wmi_set_current_country_cmd_fixed_param,
  18140. WMITLV_GET_STRUCT_TLVLEN
  18141. (wmi_set_current_country_cmd_fixed_param));
  18142. WMI_LOGD("setting cuurnet country to %s", params->country);
  18143. qdf_mem_copy((uint8_t *)&cmd->new_alpha2, params->country, 3);
  18144. cmd->pdev_id = params->pdev_id;
  18145. qdf_status = wmi_unified_cmd_send(wmi_handle,
  18146. buf, len, WMI_SET_CURRENT_COUNTRY_CMDID);
  18147. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  18148. WMI_LOGE("Failed to send WMI_SET_CURRENT_COUNTRY_CMDID");
  18149. wmi_buf_free(buf);
  18150. }
  18151. end:
  18152. return qdf_status;
  18153. }
  18154. #define WMI_REG_COUNTRY_ALPHA_SET(alpha, val0, val1, val2) do { \
  18155. WMI_SET_BITS(alpha, 0, 8, val0); \
  18156. WMI_SET_BITS(alpha, 8, 8, val1); \
  18157. WMI_SET_BITS(alpha, 16, 8, val2); \
  18158. } while (0)
  18159. static QDF_STATUS send_user_country_code_cmd_tlv(wmi_unified_t wmi_handle,
  18160. uint8_t pdev_id, struct cc_regdmn_s *rd)
  18161. {
  18162. wmi_set_init_country_cmd_fixed_param *cmd;
  18163. uint16_t len;
  18164. wmi_buf_t buf;
  18165. int ret;
  18166. len = sizeof(wmi_set_init_country_cmd_fixed_param);
  18167. buf = wmi_buf_alloc(wmi_handle, len);
  18168. if (!buf) {
  18169. WMI_LOGE("%s: Failed allocate wmi buffer", __func__);
  18170. return QDF_STATUS_E_NOMEM;
  18171. }
  18172. cmd = (wmi_set_init_country_cmd_fixed_param *) wmi_buf_data(buf);
  18173. WMITLV_SET_HDR(&cmd->tlv_header,
  18174. WMITLV_TAG_STRUC_wmi_set_init_country_cmd_fixed_param,
  18175. WMITLV_GET_STRUCT_TLVLEN
  18176. (wmi_set_init_country_cmd_fixed_param));
  18177. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(pdev_id);
  18178. if (rd->flags == CC_IS_SET) {
  18179. cmd->countrycode_type = WMI_COUNTRYCODE_COUNTRY_ID;
  18180. cmd->country_code.country_id = rd->cc.country_code;
  18181. } else if (rd->flags == ALPHA_IS_SET) {
  18182. cmd->countrycode_type = WMI_COUNTRYCODE_ALPHA2;
  18183. WMI_REG_COUNTRY_ALPHA_SET(cmd->country_code.alpha2,
  18184. rd->cc.alpha[0],
  18185. rd->cc.alpha[1],
  18186. rd->cc.alpha[2]);
  18187. } else if (rd->flags == REGDMN_IS_SET) {
  18188. cmd->countrycode_type = WMI_COUNTRYCODE_DOMAIN_CODE;
  18189. cmd->country_code.domain_code = rd->cc.regdmn_id;
  18190. }
  18191. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  18192. WMI_SET_INIT_COUNTRY_CMDID);
  18193. if (ret) {
  18194. WMI_LOGE("Failed to config wow wakeup event");
  18195. wmi_buf_free(buf);
  18196. return QDF_STATUS_E_FAILURE;
  18197. }
  18198. return QDF_STATUS_SUCCESS;
  18199. }
  18200. /**
  18201. * send_limit_off_chan_cmd_tlv() - send wmi cmd of limit off chan
  18202. * configuration params
  18203. * @wmi_handle: wmi handler
  18204. * @limit_off_chan_param: pointer to wmi_off_chan_param
  18205. *
  18206. * Return: 0 for success and non zero for failure
  18207. */
  18208. static
  18209. QDF_STATUS send_limit_off_chan_cmd_tlv(wmi_unified_t wmi_handle,
  18210. struct wmi_limit_off_chan_param *limit_off_chan_param)
  18211. {
  18212. wmi_vdev_limit_offchan_cmd_fixed_param *cmd;
  18213. wmi_buf_t buf;
  18214. uint32_t len = sizeof(*cmd);
  18215. int err;
  18216. buf = wmi_buf_alloc(wmi_handle, len);
  18217. if (!buf) {
  18218. WMI_LOGP("%s: failed to allocate memory for limit off chan cmd",
  18219. __func__);
  18220. return QDF_STATUS_E_NOMEM;
  18221. }
  18222. cmd = (wmi_vdev_limit_offchan_cmd_fixed_param *)wmi_buf_data(buf);
  18223. WMITLV_SET_HDR(&cmd->tlv_header,
  18224. WMITLV_TAG_STRUC_wmi_vdev_limit_offchan_cmd_fixed_param,
  18225. WMITLV_GET_STRUCT_TLVLEN(
  18226. wmi_vdev_limit_offchan_cmd_fixed_param));
  18227. cmd->vdev_id = limit_off_chan_param->vdev_id;
  18228. cmd->flags &= 0;
  18229. if (limit_off_chan_param->status)
  18230. cmd->flags |= WMI_VDEV_LIMIT_OFFCHAN_ENABLE;
  18231. if (limit_off_chan_param->skip_dfs_chans)
  18232. cmd->flags |= WMI_VDEV_LIMIT_OFFCHAN_SKIP_DFS;
  18233. cmd->max_offchan_time = limit_off_chan_param->max_offchan_time;
  18234. cmd->rest_time = limit_off_chan_param->rest_time;
  18235. WMI_LOGE("%s: vdev_id=%d, flags =%x, max_offchan_time=%d, rest_time=%d",
  18236. __func__, cmd->vdev_id, cmd->flags, cmd->max_offchan_time,
  18237. cmd->rest_time);
  18238. err = wmi_unified_cmd_send(wmi_handle, buf,
  18239. len, WMI_VDEV_LIMIT_OFFCHAN_CMDID);
  18240. if (QDF_IS_STATUS_ERROR(err)) {
  18241. WMI_LOGE("Failed to send limit off chan cmd err=%d", err);
  18242. wmi_buf_free(buf);
  18243. return QDF_STATUS_E_FAILURE;
  18244. }
  18245. return QDF_STATUS_SUCCESS;
  18246. }
  18247. /**
  18248. * send_set_arp_stats_req_cmd_tlv() - send wmi cmd to set arp stats request
  18249. * @wmi_handle: wmi handler
  18250. * @req_buf: set arp stats request buffer
  18251. *
  18252. * Return: 0 for success and non zero for failure
  18253. */
  18254. static QDF_STATUS send_set_arp_stats_req_cmd_tlv(wmi_unified_t wmi_handle,
  18255. struct set_arp_stats *req_buf)
  18256. {
  18257. wmi_buf_t buf = NULL;
  18258. QDF_STATUS status;
  18259. int len;
  18260. uint8_t *buf_ptr;
  18261. wmi_vdev_set_arp_stats_cmd_fixed_param *wmi_set_arp;
  18262. len = sizeof(wmi_vdev_set_arp_stats_cmd_fixed_param);
  18263. if (req_buf->pkt_type_bitmap) {
  18264. len += WMI_TLV_HDR_SIZE;
  18265. len += sizeof(wmi_vdev_set_connectivity_check_stats);
  18266. }
  18267. buf = wmi_buf_alloc(wmi_handle, len);
  18268. if (!buf) {
  18269. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  18270. return QDF_STATUS_E_NOMEM;
  18271. }
  18272. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  18273. wmi_set_arp =
  18274. (wmi_vdev_set_arp_stats_cmd_fixed_param *) buf_ptr;
  18275. WMITLV_SET_HDR(&wmi_set_arp->tlv_header,
  18276. WMITLV_TAG_STRUC_wmi_vdev_set_arp_stats_cmd_fixed_param,
  18277. WMITLV_GET_STRUCT_TLVLEN
  18278. (wmi_vdev_set_arp_stats_cmd_fixed_param));
  18279. /* fill in per roam config values */
  18280. wmi_set_arp->vdev_id = req_buf->vdev_id;
  18281. wmi_set_arp->set_clr = req_buf->flag;
  18282. wmi_set_arp->pkt_type = req_buf->pkt_type;
  18283. wmi_set_arp->ipv4 = req_buf->ip_addr;
  18284. WMI_LOGD("NUD Stats: vdev_id %u set_clr %u pkt_type:%u ipv4 %u",
  18285. wmi_set_arp->vdev_id, wmi_set_arp->set_clr,
  18286. wmi_set_arp->pkt_type, wmi_set_arp->ipv4);
  18287. /*
  18288. * pkt_type_bitmap should be non-zero to ensure
  18289. * presence of additional stats.
  18290. */
  18291. if (req_buf->pkt_type_bitmap) {
  18292. wmi_vdev_set_connectivity_check_stats *wmi_set_connect_stats;
  18293. buf_ptr += sizeof(wmi_vdev_set_arp_stats_cmd_fixed_param);
  18294. WMITLV_SET_HDR(buf_ptr,
  18295. WMITLV_TAG_ARRAY_STRUC,
  18296. sizeof(wmi_vdev_set_connectivity_check_stats));
  18297. buf_ptr += WMI_TLV_HDR_SIZE;
  18298. wmi_set_connect_stats =
  18299. (wmi_vdev_set_connectivity_check_stats *)buf_ptr;
  18300. WMITLV_SET_HDR(&wmi_set_connect_stats->tlv_header,
  18301. WMITLV_TAG_STRUC_wmi_vdev_set_connectivity_check_stats,
  18302. WMITLV_GET_STRUCT_TLVLEN(
  18303. wmi_vdev_set_connectivity_check_stats));
  18304. wmi_set_connect_stats->pkt_type_bitmap =
  18305. req_buf->pkt_type_bitmap;
  18306. wmi_set_connect_stats->tcp_src_port = req_buf->tcp_src_port;
  18307. wmi_set_connect_stats->tcp_dst_port = req_buf->tcp_dst_port;
  18308. wmi_set_connect_stats->icmp_ipv4 = req_buf->icmp_ipv4;
  18309. WMI_LOGD("Connectivity Stats: pkt_type_bitmap %u tcp_src_port:%u tcp_dst_port %u icmp_ipv4 %u",
  18310. wmi_set_connect_stats->pkt_type_bitmap,
  18311. wmi_set_connect_stats->tcp_src_port,
  18312. wmi_set_connect_stats->tcp_dst_port,
  18313. wmi_set_connect_stats->icmp_ipv4);
  18314. }
  18315. /* Send per roam config parameters */
  18316. status = wmi_unified_cmd_send(wmi_handle, buf,
  18317. len, WMI_VDEV_SET_ARP_STAT_CMDID);
  18318. if (QDF_IS_STATUS_ERROR(status)) {
  18319. WMI_LOGE("WMI_SET_ARP_STATS_CMDID failed, Error %d",
  18320. status);
  18321. goto error;
  18322. }
  18323. WMI_LOGI(FL("set arp stats flag=%d, vdev=%d"),
  18324. req_buf->flag, req_buf->vdev_id);
  18325. return QDF_STATUS_SUCCESS;
  18326. error:
  18327. wmi_buf_free(buf);
  18328. return status;
  18329. }
  18330. /**
  18331. * send_get_arp_stats_req_cmd_tlv() - send wmi cmd to get arp stats request
  18332. * @wmi_handle: wmi handler
  18333. * @req_buf: get arp stats request buffer
  18334. *
  18335. * Return: 0 for success and non zero for failure
  18336. */
  18337. static QDF_STATUS send_get_arp_stats_req_cmd_tlv(wmi_unified_t wmi_handle,
  18338. struct get_arp_stats *req_buf)
  18339. {
  18340. wmi_buf_t buf = NULL;
  18341. QDF_STATUS status;
  18342. int len;
  18343. uint8_t *buf_ptr;
  18344. wmi_vdev_get_arp_stats_cmd_fixed_param *get_arp_stats;
  18345. len = sizeof(wmi_vdev_get_arp_stats_cmd_fixed_param);
  18346. buf = wmi_buf_alloc(wmi_handle, len);
  18347. if (!buf) {
  18348. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  18349. return QDF_STATUS_E_NOMEM;
  18350. }
  18351. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  18352. get_arp_stats =
  18353. (wmi_vdev_get_arp_stats_cmd_fixed_param *) buf_ptr;
  18354. WMITLV_SET_HDR(&get_arp_stats->tlv_header,
  18355. WMITLV_TAG_STRUC_wmi_vdev_get_arp_stats_cmd_fixed_param,
  18356. WMITLV_GET_STRUCT_TLVLEN
  18357. (wmi_vdev_get_arp_stats_cmd_fixed_param));
  18358. /* fill in arp stats req cmd values */
  18359. get_arp_stats->vdev_id = req_buf->vdev_id;
  18360. WMI_LOGI(FL("vdev=%d"), req_buf->vdev_id);
  18361. /* Send per roam config parameters */
  18362. status = wmi_unified_cmd_send(wmi_handle, buf,
  18363. len, WMI_VDEV_GET_ARP_STAT_CMDID);
  18364. if (QDF_IS_STATUS_ERROR(status)) {
  18365. WMI_LOGE("WMI_GET_ARP_STATS_CMDID failed, Error %d",
  18366. status);
  18367. goto error;
  18368. }
  18369. return QDF_STATUS_SUCCESS;
  18370. error:
  18371. wmi_buf_free(buf);
  18372. return status;
  18373. }
  18374. /**
  18375. * send_set_del_pmkid_cache_cmd_tlv() - send wmi cmd of set del pmkid
  18376. * @wmi_handle: wmi handler
  18377. * @pmk_info: pointer to PMK cache entry
  18378. * @vdev_id: vdev id
  18379. *
  18380. * Return: 0 for success and non zero for failure
  18381. */
  18382. static QDF_STATUS send_set_del_pmkid_cache_cmd_tlv(wmi_unified_t wmi_handle,
  18383. struct wmi_unified_pmk_cache *pmk_info)
  18384. {
  18385. wmi_pdev_update_pmk_cache_cmd_fixed_param *cmd;
  18386. wmi_buf_t buf;
  18387. QDF_STATUS status;
  18388. uint8_t *buf_ptr;
  18389. wmi_pmk_cache *pmksa;
  18390. uint32_t len = sizeof(*cmd);
  18391. if (pmk_info->pmk_len)
  18392. len += WMI_TLV_HDR_SIZE + sizeof(*pmksa);
  18393. buf = wmi_buf_alloc(wmi_handle, len);
  18394. if (!buf) {
  18395. WMI_LOGP("%s: failed to allocate memory for set del pmkid cache",
  18396. __func__);
  18397. return QDF_STATUS_E_NOMEM;
  18398. }
  18399. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  18400. cmd = (wmi_pdev_update_pmk_cache_cmd_fixed_param *) buf_ptr;
  18401. WMITLV_SET_HDR(&cmd->tlv_header,
  18402. WMITLV_TAG_STRUC_wmi_pdev_update_pmk_cache_cmd_fixed_param,
  18403. WMITLV_GET_STRUCT_TLVLEN(
  18404. wmi_pdev_update_pmk_cache_cmd_fixed_param));
  18405. cmd->vdev_id = pmk_info->session_id;
  18406. /* If pmk_info->pmk_len is 0, this is a flush request */
  18407. if (!pmk_info->pmk_len) {
  18408. cmd->op_flag = WMI_PMK_CACHE_OP_FLAG_FLUSH_ALL;
  18409. cmd->num_cache = 0;
  18410. goto send_cmd;
  18411. }
  18412. cmd->num_cache = 1;
  18413. buf_ptr += sizeof(*cmd);
  18414. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  18415. sizeof(*pmksa));
  18416. buf_ptr += WMI_TLV_HDR_SIZE;
  18417. pmksa = (wmi_pmk_cache *)buf_ptr;
  18418. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_STRUC_wmi_pmk_cache,
  18419. WMITLV_GET_STRUCT_TLVLEN
  18420. (wmi_pmk_cache));
  18421. pmksa->pmk_len = pmk_info->pmk_len;
  18422. qdf_mem_copy(pmksa->pmk, pmk_info->pmk, pmksa->pmk_len);
  18423. pmksa->pmkid_len = pmk_info->pmkid_len;
  18424. qdf_mem_copy(pmksa->pmkid, pmk_info->pmkid, pmksa->pmkid_len);
  18425. qdf_mem_copy(&(pmksa->bssid), &(pmk_info->bssid), sizeof(wmi_mac_addr));
  18426. pmksa->ssid.ssid_len = pmk_info->ssid.length;
  18427. qdf_mem_copy(&(pmksa->ssid.ssid), &(pmk_info->ssid.mac_ssid),
  18428. pmksa->ssid.ssid_len);
  18429. pmksa->cache_id = pmk_info->cache_id;
  18430. pmksa->cat_flag = pmk_info->cat_flag;
  18431. pmksa->action_flag = pmk_info->action_flag;
  18432. send_cmd:
  18433. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  18434. WMI_PDEV_UPDATE_PMK_CACHE_CMDID);
  18435. if (status != QDF_STATUS_SUCCESS) {
  18436. WMI_LOGE("%s: failed to send set del pmkid cache command %d",
  18437. __func__, status);
  18438. wmi_buf_free(buf);
  18439. }
  18440. return status;
  18441. }
  18442. /**
  18443. * send_pdev_caldata_version_check_cmd_tlv() - send caldata check cmd to fw
  18444. * @wmi_handle: wmi handle
  18445. * @param: reserved param
  18446. *
  18447. * Return: 0 for success or error code
  18448. */
  18449. static QDF_STATUS
  18450. send_pdev_caldata_version_check_cmd_tlv(wmi_unified_t wmi_handle,
  18451. uint32_t param)
  18452. {
  18453. wmi_pdev_check_cal_version_cmd_fixed_param *cmd;
  18454. wmi_buf_t buf;
  18455. int32_t len = sizeof(wmi_pdev_check_cal_version_cmd_fixed_param);
  18456. buf = wmi_buf_alloc(wmi_handle, len);
  18457. if (!buf) {
  18458. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  18459. return QDF_STATUS_E_FAILURE;
  18460. }
  18461. cmd = (wmi_pdev_check_cal_version_cmd_fixed_param *)wmi_buf_data(buf);
  18462. WMITLV_SET_HDR(&cmd->tlv_header,
  18463. WMITLV_TAG_STRUC_wmi_pdev_check_cal_version_cmd_fixed_param,
  18464. WMITLV_GET_STRUCT_TLVLEN
  18465. (wmi_pdev_check_cal_version_cmd_fixed_param));
  18466. cmd->pdev_id = param; /* set to 0x0 as expected from FW */
  18467. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  18468. WMI_PDEV_CHECK_CAL_VERSION_CMDID)) {
  18469. wmi_buf_free(buf);
  18470. return QDF_STATUS_E_FAILURE;
  18471. }
  18472. return QDF_STATUS_SUCCESS;
  18473. }
  18474. /**
  18475. * extract_pdev_caldata_version_check_ev_param_tlv() - extract caldata from event
  18476. * @wmi_handle: wmi handle
  18477. * @param evt_buf: pointer to event buffer
  18478. * @param param: Pointer to hold peer caldata version data
  18479. *
  18480. * Return: 0 for success or error code
  18481. */
  18482. static QDF_STATUS extract_pdev_caldata_version_check_ev_param_tlv(
  18483. wmi_unified_t wmi_handle,
  18484. void *evt_buf,
  18485. wmi_host_pdev_check_cal_version_event *param)
  18486. {
  18487. WMI_PDEV_CHECK_CAL_VERSION_EVENTID_param_tlvs *param_tlvs;
  18488. wmi_pdev_check_cal_version_event_fixed_param *event;
  18489. param_tlvs = (WMI_PDEV_CHECK_CAL_VERSION_EVENTID_param_tlvs *) evt_buf;
  18490. if (!param_tlvs) {
  18491. WMI_LOGE("invalid cal version event buf");
  18492. return QDF_STATUS_E_FAILURE;
  18493. }
  18494. event = param_tlvs->fixed_param;
  18495. if (event->board_mcn_detail[WMI_BOARD_MCN_STRING_MAX_SIZE] != '\0')
  18496. event->board_mcn_detail[WMI_BOARD_MCN_STRING_MAX_SIZE] = '\0';
  18497. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(param->board_mcn_detail,
  18498. event->board_mcn_detail, WMI_BOARD_MCN_STRING_BUF_SIZE);
  18499. param->software_cal_version = event->software_cal_version;
  18500. param->board_cal_version = event->board_cal_version;
  18501. param->cal_ok = event->cal_status;
  18502. return QDF_STATUS_SUCCESS;
  18503. }
  18504. /*
  18505. * send_btm_config_cmd_tlv() - Send wmi cmd for BTM config
  18506. * @wmi_handle: wmi handle
  18507. * @params: pointer to wmi_btm_config
  18508. *
  18509. * Return: QDF_STATUS
  18510. */
  18511. static QDF_STATUS send_btm_config_cmd_tlv(wmi_unified_t wmi_handle,
  18512. struct wmi_btm_config *params)
  18513. {
  18514. wmi_btm_config_fixed_param *cmd;
  18515. wmi_buf_t buf;
  18516. uint32_t len;
  18517. len = sizeof(*cmd);
  18518. buf = wmi_buf_alloc(wmi_handle, len);
  18519. if (!buf) {
  18520. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  18521. return QDF_STATUS_E_NOMEM;
  18522. }
  18523. cmd = (wmi_btm_config_fixed_param *)wmi_buf_data(buf);
  18524. WMITLV_SET_HDR(&cmd->tlv_header,
  18525. WMITLV_TAG_STRUC_wmi_btm_config_fixed_param,
  18526. WMITLV_GET_STRUCT_TLVLEN(wmi_btm_config_fixed_param));
  18527. cmd->vdev_id = params->vdev_id;
  18528. cmd->flags = params->btm_offload_config;
  18529. cmd->max_attempt_cnt = params->btm_max_attempt_cnt;
  18530. cmd->solicited_timeout_ms = params->btm_solicited_timeout;
  18531. cmd->stick_time_seconds = params->btm_sticky_time;
  18532. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  18533. WMI_ROAM_BTM_CONFIG_CMDID)) {
  18534. WMI_LOGE("%s: failed to send WMI_ROAM_BTM_CONFIG_CMDID",
  18535. __func__);
  18536. wmi_buf_free(buf);
  18537. return QDF_STATUS_E_FAILURE;
  18538. }
  18539. return QDF_STATUS_SUCCESS;
  18540. }
  18541. /**
  18542. * send_obss_detection_cfg_cmd_tlv() - send obss detection
  18543. * configurations to firmware.
  18544. * @wmi_handle: wmi handle
  18545. * @obss_cfg_param: obss detection configurations
  18546. *
  18547. * Send WMI_SAP_OBSS_DETECTION_CFG_CMDID parameters to fw.
  18548. *
  18549. * Return: QDF_STATUS
  18550. */
  18551. static QDF_STATUS send_obss_detection_cfg_cmd_tlv(wmi_unified_t wmi_handle,
  18552. struct wmi_obss_detection_cfg_param *obss_cfg_param)
  18553. {
  18554. wmi_buf_t buf;
  18555. wmi_sap_obss_detection_cfg_cmd_fixed_param *cmd;
  18556. uint8_t len = sizeof(wmi_sap_obss_detection_cfg_cmd_fixed_param);
  18557. buf = wmi_buf_alloc(wmi_handle, len);
  18558. if (!buf) {
  18559. WMI_LOGE("%s: Failed to allocate wmi buffer", __func__);
  18560. return QDF_STATUS_E_NOMEM;
  18561. }
  18562. cmd = (wmi_sap_obss_detection_cfg_cmd_fixed_param *)wmi_buf_data(buf);
  18563. WMITLV_SET_HDR(&cmd->tlv_header,
  18564. WMITLV_TAG_STRUC_wmi_sap_obss_detection_cfg_cmd_fixed_param,
  18565. WMITLV_GET_STRUCT_TLVLEN
  18566. (wmi_sap_obss_detection_cfg_cmd_fixed_param));
  18567. cmd->vdev_id = obss_cfg_param->vdev_id;
  18568. cmd->detect_period_ms = obss_cfg_param->obss_detect_period_ms;
  18569. cmd->b_ap_detect_mode = obss_cfg_param->obss_11b_ap_detect_mode;
  18570. cmd->b_sta_detect_mode = obss_cfg_param->obss_11b_sta_detect_mode;
  18571. cmd->g_ap_detect_mode = obss_cfg_param->obss_11g_ap_detect_mode;
  18572. cmd->a_detect_mode = obss_cfg_param->obss_11a_detect_mode;
  18573. cmd->ht_legacy_detect_mode = obss_cfg_param->obss_ht_legacy_detect_mode;
  18574. cmd->ht_mixed_detect_mode = obss_cfg_param->obss_ht_mixed_detect_mode;
  18575. cmd->ht_20mhz_detect_mode = obss_cfg_param->obss_ht_20mhz_detect_mode;
  18576. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  18577. WMI_SAP_OBSS_DETECTION_CFG_CMDID)) {
  18578. WMI_LOGE("Failed to send WMI_SAP_OBSS_DETECTION_CFG_CMDID");
  18579. wmi_buf_free(buf);
  18580. return QDF_STATUS_E_FAILURE;
  18581. }
  18582. return QDF_STATUS_SUCCESS;
  18583. }
  18584. /**
  18585. * extract_obss_detection_info_tlv() - Extract obss detection info
  18586. * received from firmware.
  18587. * @evt_buf: pointer to event buffer
  18588. * @obss_detection: Pointer to hold obss detection info
  18589. *
  18590. * Return: QDF_STATUS
  18591. */
  18592. static QDF_STATUS extract_obss_detection_info_tlv(uint8_t *evt_buf,
  18593. struct wmi_obss_detect_info
  18594. *obss_detection)
  18595. {
  18596. WMI_SAP_OBSS_DETECTION_REPORT_EVENTID_param_tlvs *param_buf;
  18597. wmi_sap_obss_detection_info_evt_fixed_param *fix_param;
  18598. if (!obss_detection) {
  18599. WMI_LOGE("%s: Invalid obss_detection event buffer", __func__);
  18600. return QDF_STATUS_E_INVAL;
  18601. }
  18602. param_buf = (WMI_SAP_OBSS_DETECTION_REPORT_EVENTID_param_tlvs *)evt_buf;
  18603. if (!param_buf) {
  18604. WMI_LOGE("%s: Invalid evt_buf", __func__);
  18605. return QDF_STATUS_E_INVAL;
  18606. }
  18607. fix_param = param_buf->fixed_param;
  18608. obss_detection->vdev_id = fix_param->vdev_id;
  18609. obss_detection->matched_detection_masks =
  18610. fix_param->matched_detection_masks;
  18611. WMI_MAC_ADDR_TO_CHAR_ARRAY(&fix_param->matched_bssid_addr,
  18612. &obss_detection->matched_bssid_addr[0]);
  18613. switch (fix_param->reason) {
  18614. case WMI_SAP_OBSS_DETECTION_EVENT_REASON_NOT_SUPPORT:
  18615. obss_detection->reason = OBSS_OFFLOAD_DETECTION_DISABLED;
  18616. break;
  18617. case WMI_SAP_OBSS_DETECTION_EVENT_REASON_PRESENT_NOTIFY:
  18618. obss_detection->reason = OBSS_OFFLOAD_DETECTION_PRESENT;
  18619. break;
  18620. case WMI_SAP_OBSS_DETECTION_EVENT_REASON_ABSENT_TIMEOUT:
  18621. obss_detection->reason = OBSS_OFFLOAD_DETECTION_ABSENT;
  18622. break;
  18623. default:
  18624. WMI_LOGE("%s: Invalid reason %d", __func__, fix_param->reason);
  18625. return QDF_STATUS_E_INVAL;
  18626. }
  18627. return QDF_STATUS_SUCCESS;
  18628. }
  18629. /**
  18630. * send_offload_11k_cmd_tlv() - send wmi cmd with 11k offload params
  18631. * @wmi_handle: wmi handler
  18632. * @params: pointer to 11k offload params
  18633. *
  18634. * Return: 0 for success and non zero for failure
  18635. */
  18636. static QDF_STATUS send_offload_11k_cmd_tlv(wmi_unified_t wmi_handle,
  18637. struct wmi_11k_offload_params *params)
  18638. {
  18639. wmi_11k_offload_report_fixed_param *cmd;
  18640. wmi_buf_t buf;
  18641. QDF_STATUS status;
  18642. uint8_t *buf_ptr;
  18643. wmi_neighbor_report_11k_offload_tlv_param
  18644. *neighbor_report_offload_params;
  18645. wmi_neighbor_report_offload *neighbor_report_offload;
  18646. uint32_t len = sizeof(*cmd);
  18647. if (params->offload_11k_bitmask &
  18648. WMI_11K_OFFLOAD_BITMAP_NEIGHBOR_REPORT_REQ)
  18649. len += WMI_TLV_HDR_SIZE +
  18650. sizeof(wmi_neighbor_report_11k_offload_tlv_param);
  18651. buf = wmi_buf_alloc(wmi_handle, len);
  18652. if (!buf) {
  18653. WMI_LOGP("%s: failed to allocate memory for 11k offload params",
  18654. __func__);
  18655. return QDF_STATUS_E_NOMEM;
  18656. }
  18657. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  18658. cmd = (wmi_11k_offload_report_fixed_param *) buf_ptr;
  18659. WMITLV_SET_HDR(&cmd->tlv_header,
  18660. WMITLV_TAG_STRUC_wmi_offload_11k_report_fixed_param,
  18661. WMITLV_GET_STRUCT_TLVLEN(
  18662. wmi_11k_offload_report_fixed_param));
  18663. cmd->vdev_id = params->vdev_id;
  18664. cmd->offload_11k = params->offload_11k_bitmask;
  18665. if (params->offload_11k_bitmask &
  18666. WMI_11K_OFFLOAD_BITMAP_NEIGHBOR_REPORT_REQ) {
  18667. buf_ptr += sizeof(wmi_11k_offload_report_fixed_param);
  18668. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  18669. sizeof(wmi_neighbor_report_11k_offload_tlv_param));
  18670. buf_ptr += WMI_TLV_HDR_SIZE;
  18671. neighbor_report_offload_params =
  18672. (wmi_neighbor_report_11k_offload_tlv_param *)buf_ptr;
  18673. WMITLV_SET_HDR(&neighbor_report_offload_params->tlv_header,
  18674. WMITLV_TAG_STRUC_wmi_neighbor_report_offload_tlv_param,
  18675. WMITLV_GET_STRUCT_TLVLEN(
  18676. wmi_neighbor_report_11k_offload_tlv_param));
  18677. neighbor_report_offload = &neighbor_report_offload_params->
  18678. neighbor_rep_ofld_params;
  18679. neighbor_report_offload->time_offset =
  18680. params->neighbor_report_params.time_offset;
  18681. neighbor_report_offload->low_rssi_offset =
  18682. params->neighbor_report_params.low_rssi_offset;
  18683. neighbor_report_offload->bmiss_count_trigger =
  18684. params->neighbor_report_params.bmiss_count_trigger;
  18685. neighbor_report_offload->per_threshold_offset =
  18686. params->neighbor_report_params.per_threshold_offset;
  18687. neighbor_report_offload->neighbor_report_cache_timeout =
  18688. params->neighbor_report_params.
  18689. neighbor_report_cache_timeout;
  18690. neighbor_report_offload->max_neighbor_report_req_cap =
  18691. params->neighbor_report_params.
  18692. max_neighbor_report_req_cap;
  18693. neighbor_report_offload->ssid.ssid_len =
  18694. params->neighbor_report_params.ssid.length;
  18695. qdf_mem_copy(neighbor_report_offload->ssid.ssid,
  18696. &params->neighbor_report_params.ssid.mac_ssid,
  18697. neighbor_report_offload->ssid.ssid_len);
  18698. }
  18699. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  18700. WMI_11K_OFFLOAD_REPORT_CMDID);
  18701. if (status != QDF_STATUS_SUCCESS) {
  18702. WMI_LOGE("%s: failed to send 11k offload command %d",
  18703. __func__, status);
  18704. wmi_buf_free(buf);
  18705. }
  18706. return status;
  18707. }
  18708. /**
  18709. * send_invoke_neighbor_report_cmd_tlv() - send invoke 11k neighbor report
  18710. * command
  18711. * @wmi_handle: wmi handler
  18712. * @params: pointer to neighbor report invoke params
  18713. *
  18714. * Return: 0 for success and non zero for failure
  18715. */
  18716. static QDF_STATUS send_invoke_neighbor_report_cmd_tlv(wmi_unified_t wmi_handle,
  18717. struct wmi_invoke_neighbor_report_params *params)
  18718. {
  18719. wmi_11k_offload_invoke_neighbor_report_fixed_param *cmd;
  18720. wmi_buf_t buf;
  18721. QDF_STATUS status;
  18722. uint8_t *buf_ptr;
  18723. uint32_t len = sizeof(*cmd);
  18724. buf = wmi_buf_alloc(wmi_handle, len);
  18725. if (!buf) {
  18726. WMI_LOGP("%s:failed to allocate memory for neighbor invoke cmd",
  18727. __func__);
  18728. return QDF_STATUS_E_NOMEM;
  18729. }
  18730. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  18731. cmd = (wmi_11k_offload_invoke_neighbor_report_fixed_param *) buf_ptr;
  18732. WMITLV_SET_HDR(&cmd->tlv_header,
  18733. WMITLV_TAG_STRUC_wmi_invoke_neighbor_report_fixed_param,
  18734. WMITLV_GET_STRUCT_TLVLEN(
  18735. wmi_11k_offload_invoke_neighbor_report_fixed_param));
  18736. cmd->vdev_id = params->vdev_id;
  18737. cmd->flags = params->send_resp_to_host;
  18738. cmd->ssid.ssid_len = params->ssid.length;
  18739. qdf_mem_copy(cmd->ssid.ssid,
  18740. &params->ssid.mac_ssid,
  18741. cmd->ssid.ssid_len);
  18742. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  18743. WMI_11K_INVOKE_NEIGHBOR_REPORT_CMDID);
  18744. if (status != QDF_STATUS_SUCCESS) {
  18745. WMI_LOGE("%s: failed to send invoke neighbor report command %d",
  18746. __func__, status);
  18747. wmi_buf_free(buf);
  18748. }
  18749. return status;
  18750. }
  18751. #ifdef WLAN_SUPPORT_GREEN_AP
  18752. static QDF_STATUS extract_green_ap_egap_status_info_tlv(
  18753. uint8_t *evt_buf,
  18754. struct wlan_green_ap_egap_status_info *egap_status_info_params)
  18755. {
  18756. WMI_AP_PS_EGAP_INFO_EVENTID_param_tlvs *param_buf;
  18757. wmi_ap_ps_egap_info_event_fixed_param *egap_info_event;
  18758. wmi_ap_ps_egap_info_chainmask_list *chainmask_event;
  18759. param_buf = (WMI_AP_PS_EGAP_INFO_EVENTID_param_tlvs *)evt_buf;
  18760. if (!param_buf) {
  18761. WMI_LOGE("Invalid EGAP Info status event buffer");
  18762. return QDF_STATUS_E_INVAL;
  18763. }
  18764. egap_info_event = (wmi_ap_ps_egap_info_event_fixed_param *)
  18765. param_buf->fixed_param;
  18766. chainmask_event = (wmi_ap_ps_egap_info_chainmask_list *)
  18767. param_buf->chainmask_list;
  18768. egap_status_info_params->status = egap_info_event->status;
  18769. egap_status_info_params->mac_id = chainmask_event->mac_id;
  18770. egap_status_info_params->tx_chainmask = chainmask_event->tx_chainmask;
  18771. egap_status_info_params->rx_chainmask = chainmask_event->rx_chainmask;
  18772. return QDF_STATUS_SUCCESS;
  18773. }
  18774. #endif
  18775. /*
  18776. * send_bss_color_change_enable_cmd_tlv() - Send command to enable or disable of
  18777. * updating bss color change within firmware when AP announces bss color change.
  18778. * @wmi_handle: wmi handle
  18779. * @vdev_id: vdev ID
  18780. * @enable: enable bss color change within firmware
  18781. *
  18782. * Send WMI_BSS_COLOR_CHANGE_ENABLE_CMDID parameters to fw.
  18783. *
  18784. * Return: QDF_STATUS
  18785. */
  18786. static QDF_STATUS send_bss_color_change_enable_cmd_tlv(wmi_unified_t wmi_handle,
  18787. uint32_t vdev_id,
  18788. bool enable)
  18789. {
  18790. wmi_buf_t buf;
  18791. wmi_bss_color_change_enable_fixed_param *cmd;
  18792. uint8_t len = sizeof(wmi_bss_color_change_enable_fixed_param);
  18793. buf = wmi_buf_alloc(wmi_handle, len);
  18794. if (!buf) {
  18795. WMI_LOGE("%s: Failed to allocate wmi buffer", __func__);
  18796. return QDF_STATUS_E_NOMEM;
  18797. }
  18798. cmd = (wmi_bss_color_change_enable_fixed_param *)wmi_buf_data(buf);
  18799. WMITLV_SET_HDR(&cmd->tlv_header,
  18800. WMITLV_TAG_STRUC_wmi_bss_color_change_enable_fixed_param,
  18801. WMITLV_GET_STRUCT_TLVLEN
  18802. (wmi_bss_color_change_enable_fixed_param));
  18803. cmd->vdev_id = vdev_id;
  18804. cmd->enable = enable;
  18805. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  18806. WMI_BSS_COLOR_CHANGE_ENABLE_CMDID)) {
  18807. WMI_LOGE("Failed to send WMI_BSS_COLOR_CHANGE_ENABLE_CMDID");
  18808. wmi_buf_free(buf);
  18809. return QDF_STATUS_E_FAILURE;
  18810. }
  18811. return QDF_STATUS_SUCCESS;
  18812. }
  18813. /**
  18814. * send_obss_color_collision_cfg_cmd_tlv() - send bss color detection
  18815. * configurations to firmware.
  18816. * @wmi_handle: wmi handle
  18817. * @cfg_param: obss detection configurations
  18818. *
  18819. * Send WMI_OBSS_COLOR_COLLISION_DET_CONFIG_CMDID parameters to fw.
  18820. *
  18821. * Return: QDF_STATUS
  18822. */
  18823. static QDF_STATUS send_obss_color_collision_cfg_cmd_tlv(
  18824. wmi_unified_t wmi_handle,
  18825. struct wmi_obss_color_collision_cfg_param *cfg_param)
  18826. {
  18827. wmi_buf_t buf;
  18828. wmi_obss_color_collision_det_config_fixed_param *cmd;
  18829. uint8_t len = sizeof(wmi_obss_color_collision_det_config_fixed_param);
  18830. buf = wmi_buf_alloc(wmi_handle, len);
  18831. if (!buf) {
  18832. WMI_LOGE("%s: Failed to allocate wmi buffer", __func__);
  18833. return QDF_STATUS_E_NOMEM;
  18834. }
  18835. cmd = (wmi_obss_color_collision_det_config_fixed_param *)wmi_buf_data(
  18836. buf);
  18837. WMITLV_SET_HDR(&cmd->tlv_header,
  18838. WMITLV_TAG_STRUC_wmi_obss_color_collision_det_config_fixed_param,
  18839. WMITLV_GET_STRUCT_TLVLEN
  18840. (wmi_obss_color_collision_det_config_fixed_param));
  18841. cmd->vdev_id = cfg_param->vdev_id;
  18842. cmd->flags = cfg_param->flags;
  18843. cmd->current_bss_color = cfg_param->current_bss_color;
  18844. cmd->detection_period_ms = cfg_param->detection_period_ms;
  18845. cmd->scan_period_ms = cfg_param->scan_period_ms;
  18846. cmd->free_slot_expiry_time_ms = cfg_param->free_slot_expiry_time_ms;
  18847. switch (cfg_param->evt_type) {
  18848. case OBSS_COLOR_COLLISION_DETECTION_DISABLE:
  18849. cmd->evt_type = WMI_BSS_COLOR_COLLISION_DISABLE;
  18850. break;
  18851. case OBSS_COLOR_COLLISION_DETECTION:
  18852. cmd->evt_type = WMI_BSS_COLOR_COLLISION_DETECTION;
  18853. break;
  18854. case OBSS_COLOR_FREE_SLOT_TIMER_EXPIRY:
  18855. cmd->evt_type = WMI_BSS_COLOR_FREE_SLOT_TIMER_EXPIRY;
  18856. break;
  18857. case OBSS_COLOR_FREE_SLOT_AVAILABLE:
  18858. cmd->evt_type = WMI_BSS_COLOR_FREE_SLOT_AVAILABLE;
  18859. break;
  18860. default:
  18861. WMI_LOGE("%s: invalid event type: %d",
  18862. __func__, cfg_param->evt_type);
  18863. wmi_buf_free(buf);
  18864. return QDF_STATUS_E_FAILURE;
  18865. }
  18866. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  18867. WMI_OBSS_COLOR_COLLISION_DET_CONFIG_CMDID)) {
  18868. WMI_LOGE("%s: Sending OBSS color det cmd failed, vdev_id: %d",
  18869. __func__, cfg_param->vdev_id);
  18870. wmi_buf_free(buf);
  18871. return QDF_STATUS_E_FAILURE;
  18872. }
  18873. return QDF_STATUS_SUCCESS;
  18874. }
  18875. /**
  18876. * extract_obss_color_collision_info_tlv() - Extract bss color collision info
  18877. * received from firmware.
  18878. * @evt_buf: pointer to event buffer
  18879. * @info: Pointer to hold bss collision info
  18880. *
  18881. * Return: QDF_STATUS
  18882. */
  18883. static QDF_STATUS extract_obss_color_collision_info_tlv(uint8_t *evt_buf,
  18884. struct wmi_obss_color_collision_info *info)
  18885. {
  18886. WMI_OBSS_COLOR_COLLISION_DETECTION_EVENTID_param_tlvs *param_buf;
  18887. wmi_obss_color_collision_evt_fixed_param *fix_param;
  18888. if (!info) {
  18889. WMI_LOGE("%s: Invalid obss color buffer", __func__);
  18890. return QDF_STATUS_E_INVAL;
  18891. }
  18892. param_buf = (WMI_OBSS_COLOR_COLLISION_DETECTION_EVENTID_param_tlvs *)
  18893. evt_buf;
  18894. if (!param_buf) {
  18895. WMI_LOGE("%s: Invalid evt_buf", __func__);
  18896. return QDF_STATUS_E_INVAL;
  18897. }
  18898. fix_param = param_buf->fixed_param;
  18899. info->vdev_id = fix_param->vdev_id;
  18900. info->obss_color_bitmap_bit0to31 = fix_param->bss_color_bitmap_bit0to31;
  18901. info->obss_color_bitmap_bit32to63 =
  18902. fix_param->bss_color_bitmap_bit32to63;
  18903. switch (fix_param->evt_type) {
  18904. case WMI_BSS_COLOR_COLLISION_DISABLE:
  18905. info->evt_type = OBSS_COLOR_COLLISION_DETECTION_DISABLE;
  18906. break;
  18907. case WMI_BSS_COLOR_COLLISION_DETECTION:
  18908. info->evt_type = OBSS_COLOR_COLLISION_DETECTION;
  18909. break;
  18910. case WMI_BSS_COLOR_FREE_SLOT_TIMER_EXPIRY:
  18911. info->evt_type = OBSS_COLOR_FREE_SLOT_TIMER_EXPIRY;
  18912. break;
  18913. case WMI_BSS_COLOR_FREE_SLOT_AVAILABLE:
  18914. info->evt_type = OBSS_COLOR_FREE_SLOT_AVAILABLE;
  18915. break;
  18916. default:
  18917. WMI_LOGE("%s: invalid event type: %d, vdev_id: %d",
  18918. __func__, fix_param->evt_type, fix_param->vdev_id);
  18919. return QDF_STATUS_E_FAILURE;
  18920. }
  18921. return QDF_STATUS_SUCCESS;
  18922. }
  18923. /*
  18924. * extract_comb_phyerr_tlv() - extract comb phy error from event
  18925. * @wmi_handle: wmi handle
  18926. * @evt_buf: pointer to event buffer
  18927. * @datalen: data length of event buffer
  18928. * @buf_offset: Pointer to hold value of current event buffer offset
  18929. * post extraction
  18930. * @phyerr: Pointer to hold phyerr
  18931. *
  18932. * Return: QDF_STATUS
  18933. */
  18934. static QDF_STATUS extract_comb_phyerr_tlv(wmi_unified_t wmi_handle,
  18935. void *evt_buf,
  18936. uint16_t datalen,
  18937. uint16_t *buf_offset,
  18938. wmi_host_phyerr_t *phyerr)
  18939. {
  18940. WMI_PHYERR_EVENTID_param_tlvs *param_tlvs;
  18941. wmi_comb_phyerr_rx_hdr *pe_hdr;
  18942. param_tlvs = (WMI_PHYERR_EVENTID_param_tlvs *)evt_buf;
  18943. if (!param_tlvs) {
  18944. WMI_LOGD("%s: Received null data from FW", __func__);
  18945. return QDF_STATUS_E_FAILURE;
  18946. }
  18947. pe_hdr = param_tlvs->hdr;
  18948. if (!pe_hdr) {
  18949. WMI_LOGD("%s: Received Data PE Header is NULL", __func__);
  18950. return QDF_STATUS_E_FAILURE;
  18951. }
  18952. /* Ensure it's at least the size of the header */
  18953. if (datalen < sizeof(*pe_hdr)) {
  18954. WMI_LOGD("%s: Expected minimum size %zu, received %d",
  18955. __func__, sizeof(*pe_hdr), datalen);
  18956. return QDF_STATUS_E_FAILURE;
  18957. }
  18958. phyerr->pdev_id = wmi_handle->ops->
  18959. convert_pdev_id_target_to_host(pe_hdr->pdev_id);
  18960. phyerr->tsf64 = pe_hdr->tsf_l32;
  18961. phyerr->tsf64 |= (((uint64_t)pe_hdr->tsf_u32) << 32);
  18962. phyerr->bufp = param_tlvs->bufp;
  18963. phyerr->buf_len = pe_hdr->buf_len;
  18964. phyerr->phy_err_mask0 = pe_hdr->rsPhyErrMask0;
  18965. phyerr->phy_err_mask1 = pe_hdr->rsPhyErrMask1;
  18966. *buf_offset = sizeof(*pe_hdr) + sizeof(uint32_t);
  18967. return QDF_STATUS_SUCCESS;
  18968. }
  18969. /**
  18970. * extract_single_phyerr_tlv() - extract single phy error from event
  18971. * @wmi_handle: wmi handle
  18972. * @evt_buf: pointer to event buffer
  18973. * @datalen: data length of event buffer
  18974. * @buf_offset: Pointer to hold value of current event buffer offset
  18975. * post extraction
  18976. * @phyerr: Pointer to hold phyerr
  18977. *
  18978. * Return: QDF_STATUS
  18979. */
  18980. static QDF_STATUS extract_single_phyerr_tlv(wmi_unified_t wmi_handle,
  18981. void *evt_buf,
  18982. uint16_t datalen,
  18983. uint16_t *buf_offset,
  18984. wmi_host_phyerr_t *phyerr)
  18985. {
  18986. wmi_single_phyerr_rx_event *ev;
  18987. uint16_t n = *buf_offset;
  18988. uint8_t *data = (uint8_t *)evt_buf;
  18989. if (n < datalen) {
  18990. if ((datalen - n) < sizeof(ev->hdr)) {
  18991. WMI_LOGD("%s: Not enough space. len=%d, n=%d, hdr=%zu",
  18992. __func__, datalen, n, sizeof(ev->hdr));
  18993. return QDF_STATUS_E_FAILURE;
  18994. }
  18995. /*
  18996. * Obtain a pointer to the beginning of the current event.
  18997. * data[0] is the beginning of the WMI payload.
  18998. */
  18999. ev = (wmi_single_phyerr_rx_event *)&data[n];
  19000. /*
  19001. * Sanity check the buffer length of the event against
  19002. * what we currently have.
  19003. *
  19004. * Since buf_len is 32 bits, we check if it overflows
  19005. * a large 32 bit value. It's not 0x7fffffff because
  19006. * we increase n by (buf_len + sizeof(hdr)), which would
  19007. * in itself cause n to overflow.
  19008. *
  19009. * If "int" is 64 bits then this becomes a moot point.
  19010. */
  19011. if (ev->hdr.buf_len > PHYERROR_MAX_BUFFER_LENGTH) {
  19012. WMI_LOGD("%s: buf_len is garbage 0x%x",
  19013. __func__, ev->hdr.buf_len);
  19014. return QDF_STATUS_E_FAILURE;
  19015. }
  19016. if ((n + ev->hdr.buf_len) > datalen) {
  19017. WMI_LOGD("%s: len exceeds n=%d, buf_len=%d, datalen=%d",
  19018. __func__, n, ev->hdr.buf_len, datalen);
  19019. return QDF_STATUS_E_FAILURE;
  19020. }
  19021. phyerr->phy_err_code = WMI_UNIFIED_PHYERRCODE_GET(&ev->hdr);
  19022. phyerr->tsf_timestamp = ev->hdr.tsf_timestamp;
  19023. phyerr->bufp = &ev->bufp[0];
  19024. phyerr->buf_len = ev->hdr.buf_len;
  19025. phyerr->rf_info.rssi_comb = WMI_UNIFIED_RSSI_COMB_GET(&ev->hdr);
  19026. /*
  19027. * Advance the buffer pointer to the next PHY error.
  19028. * buflen is the length of this payload, so we need to
  19029. * advance past the current header _AND_ the payload.
  19030. */
  19031. n += sizeof(*ev) + ev->hdr.buf_len;
  19032. }
  19033. *buf_offset = n;
  19034. return QDF_STATUS_SUCCESS;
  19035. }
  19036. struct wmi_ops tlv_ops = {
  19037. .send_vdev_create_cmd = send_vdev_create_cmd_tlv,
  19038. .send_vdev_delete_cmd = send_vdev_delete_cmd_tlv,
  19039. .send_vdev_down_cmd = send_vdev_down_cmd_tlv,
  19040. .send_vdev_start_cmd = send_vdev_start_cmd_tlv,
  19041. .send_hidden_ssid_vdev_restart_cmd =
  19042. send_hidden_ssid_vdev_restart_cmd_tlv,
  19043. .send_peer_flush_tids_cmd = send_peer_flush_tids_cmd_tlv,
  19044. .send_peer_param_cmd = send_peer_param_cmd_tlv,
  19045. .send_vdev_up_cmd = send_vdev_up_cmd_tlv,
  19046. .send_vdev_stop_cmd = send_vdev_stop_cmd_tlv,
  19047. .send_peer_create_cmd = send_peer_create_cmd_tlv,
  19048. .send_peer_delete_cmd = send_peer_delete_cmd_tlv,
  19049. .send_peer_rx_reorder_queue_setup_cmd =
  19050. send_peer_rx_reorder_queue_setup_cmd_tlv,
  19051. .send_peer_rx_reorder_queue_remove_cmd =
  19052. send_peer_rx_reorder_queue_remove_cmd_tlv,
  19053. .send_peer_add_wds_entry_cmd = send_peer_add_wds_entry_cmd_tlv,
  19054. .send_peer_del_wds_entry_cmd = send_peer_del_wds_entry_cmd_tlv,
  19055. .send_peer_update_wds_entry_cmd = send_peer_update_wds_entry_cmd_tlv,
  19056. .send_pdev_utf_cmd = send_pdev_utf_cmd_tlv,
  19057. .send_pdev_param_cmd = send_pdev_param_cmd_tlv,
  19058. .send_pdev_get_tpc_config_cmd = send_pdev_get_tpc_config_cmd_tlv,
  19059. .send_suspend_cmd = send_suspend_cmd_tlv,
  19060. .send_resume_cmd = send_resume_cmd_tlv,
  19061. #ifdef FEATURE_WLAN_D0WOW
  19062. .send_d0wow_enable_cmd = send_d0wow_enable_cmd_tlv,
  19063. .send_d0wow_disable_cmd = send_d0wow_disable_cmd_tlv,
  19064. #endif
  19065. .send_wow_enable_cmd = send_wow_enable_cmd_tlv,
  19066. .send_set_ap_ps_param_cmd = send_set_ap_ps_param_cmd_tlv,
  19067. .send_set_sta_ps_param_cmd = send_set_sta_ps_param_cmd_tlv,
  19068. .send_crash_inject_cmd = send_crash_inject_cmd_tlv,
  19069. #ifdef FEATURE_FW_LOG_PARSING
  19070. .send_dbglog_cmd = send_dbglog_cmd_tlv,
  19071. #endif
  19072. .send_vdev_set_param_cmd = send_vdev_set_param_cmd_tlv,
  19073. .send_stats_request_cmd = send_stats_request_cmd_tlv,
  19074. .send_packet_log_enable_cmd = send_packet_log_enable_cmd_tlv,
  19075. .send_time_stamp_sync_cmd = send_time_stamp_sync_cmd_tlv,
  19076. .send_packet_log_disable_cmd = send_packet_log_disable_cmd_tlv,
  19077. .send_beacon_send_cmd = send_beacon_send_cmd_tlv,
  19078. .send_beacon_tmpl_send_cmd = send_beacon_tmpl_send_cmd_tlv,
  19079. .send_peer_assoc_cmd = send_peer_assoc_cmd_tlv,
  19080. .send_scan_start_cmd = send_scan_start_cmd_tlv,
  19081. .send_scan_stop_cmd = send_scan_stop_cmd_tlv,
  19082. .send_scan_chan_list_cmd = send_scan_chan_list_cmd_tlv,
  19083. .send_mgmt_cmd = send_mgmt_cmd_tlv,
  19084. .send_offchan_data_tx_cmd = send_offchan_data_tx_cmd_tlv,
  19085. .send_modem_power_state_cmd = send_modem_power_state_cmd_tlv,
  19086. .send_set_sta_ps_mode_cmd = send_set_sta_ps_mode_cmd_tlv,
  19087. .send_set_sta_uapsd_auto_trig_cmd =
  19088. send_set_sta_uapsd_auto_trig_cmd_tlv,
  19089. .send_get_temperature_cmd = send_get_temperature_cmd_tlv,
  19090. .send_set_p2pgo_oppps_req_cmd = send_set_p2pgo_oppps_req_cmd_tlv,
  19091. .send_set_p2pgo_noa_req_cmd = send_set_p2pgo_noa_req_cmd_tlv,
  19092. #ifdef CONVERGED_P2P_ENABLE
  19093. .send_p2p_lo_start_cmd = send_p2p_lo_start_cmd_tlv,
  19094. .send_p2p_lo_stop_cmd = send_p2p_lo_stop_cmd_tlv,
  19095. #endif
  19096. .send_set_smps_params_cmd = send_set_smps_params_cmd_tlv,
  19097. .send_set_mimops_cmd = send_set_mimops_cmd_tlv,
  19098. #ifdef WLAN_FEATURE_DSRC
  19099. .send_ocb_set_utc_time_cmd = send_ocb_set_utc_time_cmd_tlv,
  19100. .send_ocb_get_tsf_timer_cmd = send_ocb_get_tsf_timer_cmd_tlv,
  19101. .send_dcc_clear_stats_cmd = send_dcc_clear_stats_cmd_tlv,
  19102. .send_dcc_get_stats_cmd = send_dcc_get_stats_cmd_tlv,
  19103. .send_dcc_update_ndl_cmd = send_dcc_update_ndl_cmd_tlv,
  19104. .send_ocb_set_config_cmd = send_ocb_set_config_cmd_tlv,
  19105. .send_ocb_stop_timing_advert_cmd = send_ocb_stop_timing_advert_cmd_tlv,
  19106. .send_ocb_start_timing_advert_cmd =
  19107. send_ocb_start_timing_advert_cmd_tlv,
  19108. .extract_ocb_chan_config_resp = extract_ocb_channel_config_resp_tlv,
  19109. .extract_ocb_tsf_timer = extract_ocb_tsf_timer_tlv,
  19110. .extract_dcc_update_ndl_resp = extract_ocb_ndl_resp_tlv,
  19111. .extract_dcc_stats = extract_ocb_dcc_stats_tlv,
  19112. #endif
  19113. .send_set_enable_disable_mcc_adaptive_scheduler_cmd =
  19114. send_set_enable_disable_mcc_adaptive_scheduler_cmd_tlv,
  19115. .send_set_mcc_channel_time_latency_cmd =
  19116. send_set_mcc_channel_time_latency_cmd_tlv,
  19117. .send_set_mcc_channel_time_quota_cmd =
  19118. send_set_mcc_channel_time_quota_cmd_tlv,
  19119. .send_set_thermal_mgmt_cmd = send_set_thermal_mgmt_cmd_tlv,
  19120. .send_lro_config_cmd = send_lro_config_cmd_tlv,
  19121. .send_peer_rate_report_cmd = send_peer_rate_report_cmd_tlv,
  19122. .send_set_sta_sa_query_param_cmd = send_set_sta_sa_query_param_cmd_tlv,
  19123. .send_set_sta_keep_alive_cmd = send_set_sta_keep_alive_cmd_tlv,
  19124. .send_vdev_set_gtx_cfg_cmd = send_vdev_set_gtx_cfg_cmd_tlv,
  19125. .send_probe_rsp_tmpl_send_cmd =
  19126. send_probe_rsp_tmpl_send_cmd_tlv,
  19127. .send_p2p_go_set_beacon_ie_cmd =
  19128. send_p2p_go_set_beacon_ie_cmd_tlv,
  19129. .send_setup_install_key_cmd =
  19130. send_setup_install_key_cmd_tlv,
  19131. .send_set_gateway_params_cmd =
  19132. send_set_gateway_params_cmd_tlv,
  19133. .send_set_rssi_monitoring_cmd =
  19134. send_set_rssi_monitoring_cmd_tlv,
  19135. .send_scan_probe_setoui_cmd =
  19136. send_scan_probe_setoui_cmd_tlv,
  19137. .send_roam_scan_offload_rssi_thresh_cmd =
  19138. send_roam_scan_offload_rssi_thresh_cmd_tlv,
  19139. .send_roam_mawc_params_cmd = send_roam_mawc_params_cmd_tlv,
  19140. .send_roam_scan_filter_cmd =
  19141. send_roam_scan_filter_cmd_tlv,
  19142. #ifdef IPA_OFFLOAD
  19143. .send_ipa_offload_control_cmd =
  19144. send_ipa_offload_control_cmd_tlv,
  19145. #endif
  19146. .send_plm_stop_cmd = send_plm_stop_cmd_tlv,
  19147. .send_plm_start_cmd = send_plm_start_cmd_tlv,
  19148. .send_pno_stop_cmd = send_pno_stop_cmd_tlv,
  19149. .send_pno_start_cmd = send_pno_start_cmd_tlv,
  19150. .send_nlo_mawc_cmd = send_nlo_mawc_cmd_tlv,
  19151. .send_set_ric_req_cmd = send_set_ric_req_cmd_tlv,
  19152. #ifdef WLAN_FEATURE_LINK_LAYER_STATS
  19153. .send_process_ll_stats_clear_cmd = send_process_ll_stats_clear_cmd_tlv,
  19154. .send_process_ll_stats_set_cmd = send_process_ll_stats_set_cmd_tlv,
  19155. .send_process_ll_stats_get_cmd = send_process_ll_stats_get_cmd_tlv,
  19156. #endif /* WLAN_FEATURE_LINK_LAYER_STATS*/
  19157. .send_congestion_cmd = send_congestion_cmd_tlv,
  19158. .send_snr_request_cmd = send_snr_request_cmd_tlv,
  19159. .send_snr_cmd = send_snr_cmd_tlv,
  19160. .send_link_status_req_cmd = send_link_status_req_cmd_tlv,
  19161. #ifdef WLAN_POWER_MANAGEMENT_OFFLOAD
  19162. .send_add_wow_wakeup_event_cmd = send_add_wow_wakeup_event_cmd_tlv,
  19163. .send_wow_patterns_to_fw_cmd = send_wow_patterns_to_fw_cmd_tlv,
  19164. .send_enable_arp_ns_offload_cmd = send_enable_arp_ns_offload_cmd_tlv,
  19165. .send_add_clear_mcbc_filter_cmd = send_add_clear_mcbc_filter_cmd_tlv,
  19166. .send_multiple_add_clear_mcbc_filter_cmd =
  19167. send_multiple_add_clear_mcbc_filter_cmd_tlv,
  19168. .send_conf_hw_filter_cmd = send_conf_hw_filter_cmd_tlv,
  19169. .send_gtk_offload_cmd = send_gtk_offload_cmd_tlv,
  19170. .send_process_gtk_offload_getinfo_cmd =
  19171. send_process_gtk_offload_getinfo_cmd_tlv,
  19172. .send_enable_enhance_multicast_offload_cmd =
  19173. send_enable_enhance_multicast_offload_tlv,
  19174. .extract_gtk_rsp_event = extract_gtk_rsp_event_tlv,
  19175. #ifdef FEATURE_WLAN_RA_FILTERING
  19176. .send_wow_sta_ra_filter_cmd = send_wow_sta_ra_filter_cmd_tlv,
  19177. #endif
  19178. .send_action_frame_patterns_cmd = send_action_frame_patterns_cmd_tlv,
  19179. .send_lphb_config_hbenable_cmd = send_lphb_config_hbenable_cmd_tlv,
  19180. .send_lphb_config_tcp_params_cmd = send_lphb_config_tcp_params_cmd_tlv,
  19181. .send_lphb_config_tcp_pkt_filter_cmd =
  19182. send_lphb_config_tcp_pkt_filter_cmd_tlv,
  19183. .send_lphb_config_udp_params_cmd = send_lphb_config_udp_params_cmd_tlv,
  19184. .send_lphb_config_udp_pkt_filter_cmd =
  19185. send_lphb_config_udp_pkt_filter_cmd_tlv,
  19186. .send_enable_disable_packet_filter_cmd =
  19187. send_enable_disable_packet_filter_cmd_tlv,
  19188. .send_config_packet_filter_cmd = send_config_packet_filter_cmd_tlv,
  19189. #endif /* End of WLAN_POWER_MANAGEMENT_OFFLOAD */
  19190. #ifdef CONFIG_MCL
  19191. .send_process_dhcp_ind_cmd = send_process_dhcp_ind_cmd_tlv,
  19192. .send_get_link_speed_cmd = send_get_link_speed_cmd_tlv,
  19193. .send_bcn_buf_ll_cmd = send_bcn_buf_ll_cmd_tlv,
  19194. .send_roam_scan_offload_mode_cmd =
  19195. send_roam_scan_offload_mode_cmd_tlv,
  19196. #ifndef REMOVE_PKT_LOG
  19197. .send_pktlog_wmi_send_cmd = send_pktlog_wmi_send_cmd_tlv,
  19198. #endif
  19199. .send_roam_scan_offload_ap_profile_cmd =
  19200. send_roam_scan_offload_ap_profile_cmd_tlv,
  19201. #endif
  19202. #ifdef WLAN_SUPPORT_GREEN_AP
  19203. .send_egap_conf_params_cmd = send_egap_conf_params_cmd_tlv,
  19204. .send_green_ap_ps_cmd = send_green_ap_ps_cmd_tlv,
  19205. .extract_green_ap_egap_status_info =
  19206. extract_green_ap_egap_status_info_tlv,
  19207. #endif
  19208. .send_fw_profiling_cmd = send_fw_profiling_cmd_tlv,
  19209. .send_csa_offload_enable_cmd = send_csa_offload_enable_cmd_tlv,
  19210. .send_nat_keepalive_en_cmd = send_nat_keepalive_en_cmd_tlv,
  19211. .send_wlm_latency_level_cmd = send_wlm_latency_level_cmd_tlv,
  19212. .send_start_oem_data_cmd = send_start_oem_data_cmd_tlv,
  19213. #ifdef WLAN_FEATURE_CIF_CFR
  19214. .send_oem_dma_cfg_cmd = send_oem_dma_cfg_cmd_tlv,
  19215. #endif
  19216. .send_dbr_cfg_cmd = send_dbr_cfg_cmd_tlv,
  19217. .send_dfs_phyerr_filter_offload_en_cmd =
  19218. send_dfs_phyerr_filter_offload_en_cmd_tlv,
  19219. .send_wow_delete_pattern_cmd = send_wow_delete_pattern_cmd_tlv,
  19220. .send_host_wakeup_ind_to_fw_cmd = send_host_wakeup_ind_to_fw_cmd_tlv,
  19221. .send_del_ts_cmd = send_del_ts_cmd_tlv,
  19222. .send_aggr_qos_cmd = send_aggr_qos_cmd_tlv,
  19223. .send_add_ts_cmd = send_add_ts_cmd_tlv,
  19224. .send_process_add_periodic_tx_ptrn_cmd =
  19225. send_process_add_periodic_tx_ptrn_cmd_tlv,
  19226. .send_process_del_periodic_tx_ptrn_cmd =
  19227. send_process_del_periodic_tx_ptrn_cmd_tlv,
  19228. .send_stats_ext_req_cmd = send_stats_ext_req_cmd_tlv,
  19229. .send_enable_ext_wow_cmd = send_enable_ext_wow_cmd_tlv,
  19230. .send_set_app_type2_params_in_fw_cmd =
  19231. send_set_app_type2_params_in_fw_cmd_tlv,
  19232. .send_set_auto_shutdown_timer_cmd =
  19233. send_set_auto_shutdown_timer_cmd_tlv,
  19234. .send_nan_req_cmd = send_nan_req_cmd_tlv,
  19235. .send_process_dhcpserver_offload_cmd =
  19236. send_process_dhcpserver_offload_cmd_tlv,
  19237. .send_set_led_flashing_cmd = send_set_led_flashing_cmd_tlv,
  19238. .send_process_ch_avoid_update_cmd =
  19239. send_process_ch_avoid_update_cmd_tlv,
  19240. .send_pdev_set_regdomain_cmd =
  19241. send_pdev_set_regdomain_cmd_tlv,
  19242. .send_regdomain_info_to_fw_cmd = send_regdomain_info_to_fw_cmd_tlv,
  19243. .send_set_tdls_offchan_mode_cmd = send_set_tdls_offchan_mode_cmd_tlv,
  19244. .send_update_fw_tdls_state_cmd = send_update_fw_tdls_state_cmd_tlv,
  19245. .send_update_tdls_peer_state_cmd = send_update_tdls_peer_state_cmd_tlv,
  19246. .send_process_set_ie_info_cmd = send_process_set_ie_info_cmd_tlv,
  19247. .save_fw_version_cmd = save_fw_version_cmd_tlv,
  19248. .check_and_update_fw_version =
  19249. check_and_update_fw_version_cmd_tlv,
  19250. .send_set_base_macaddr_indicate_cmd =
  19251. send_set_base_macaddr_indicate_cmd_tlv,
  19252. .send_log_supported_evt_cmd = send_log_supported_evt_cmd_tlv,
  19253. .send_enable_specific_fw_logs_cmd =
  19254. send_enable_specific_fw_logs_cmd_tlv,
  19255. .send_flush_logs_to_fw_cmd = send_flush_logs_to_fw_cmd_tlv,
  19256. .send_pdev_set_pcl_cmd = send_pdev_set_pcl_cmd_tlv,
  19257. .send_pdev_set_hw_mode_cmd = send_pdev_set_hw_mode_cmd_tlv,
  19258. #ifdef WLAN_POLICY_MGR_ENABLE
  19259. .send_pdev_set_dual_mac_config_cmd =
  19260. send_pdev_set_dual_mac_config_cmd_tlv,
  19261. #endif
  19262. .send_app_type1_params_in_fw_cmd =
  19263. send_app_type1_params_in_fw_cmd_tlv,
  19264. .send_set_ssid_hotlist_cmd = send_set_ssid_hotlist_cmd_tlv,
  19265. .send_process_roam_synch_complete_cmd =
  19266. send_process_roam_synch_complete_cmd_tlv,
  19267. .send_unit_test_cmd = send_unit_test_cmd_tlv,
  19268. .send_roam_invoke_cmd = send_roam_invoke_cmd_tlv,
  19269. .send_roam_scan_offload_cmd = send_roam_scan_offload_cmd_tlv,
  19270. .send_roam_scan_offload_scan_period_cmd =
  19271. send_roam_scan_offload_scan_period_cmd_tlv,
  19272. .send_roam_scan_offload_chan_list_cmd =
  19273. send_roam_scan_offload_chan_list_cmd_tlv,
  19274. .send_roam_scan_offload_rssi_change_cmd =
  19275. send_roam_scan_offload_rssi_change_cmd_tlv,
  19276. #ifdef FEATURE_WLAN_APF
  19277. .send_set_active_apf_mode_cmd = wmi_send_set_active_apf_mode_cmd_tlv,
  19278. .send_apf_enable_cmd = wmi_send_apf_enable_cmd_tlv,
  19279. .send_apf_write_work_memory_cmd =
  19280. wmi_send_apf_write_work_memory_cmd_tlv,
  19281. .send_apf_read_work_memory_cmd =
  19282. wmi_send_apf_read_work_memory_cmd_tlv,
  19283. .extract_apf_read_memory_resp_event =
  19284. wmi_extract_apf_read_memory_resp_event_tlv,
  19285. #endif /* FEATURE_WLAN_APF */
  19286. .send_adapt_dwelltime_params_cmd =
  19287. send_adapt_dwelltime_params_cmd_tlv,
  19288. .send_dbs_scan_sel_params_cmd =
  19289. send_dbs_scan_sel_params_cmd_tlv,
  19290. .init_cmd_send = init_cmd_send_tlv,
  19291. .send_smart_ant_enable_cmd = send_smart_ant_enable_cmd_tlv,
  19292. .send_smart_ant_set_rx_ant_cmd = send_smart_ant_set_rx_ant_cmd_tlv,
  19293. .send_set_ctl_table_cmd = send_set_ctl_table_cmd_tlv,
  19294. .send_set_mimogain_table_cmd = send_set_mimogain_table_cmd_tlv,
  19295. .send_packet_power_info_get_cmd = send_packet_power_info_get_cmd_tlv,
  19296. .send_vdev_config_ratemask_cmd = send_vdev_config_ratemask_cmd_tlv,
  19297. .send_vdev_set_custom_aggr_size_cmd =
  19298. send_vdev_set_custom_aggr_size_cmd_tlv,
  19299. .send_vdev_set_qdepth_thresh_cmd =
  19300. send_vdev_set_qdepth_thresh_cmd_tlv,
  19301. .send_set_vap_dscp_tid_map_cmd = send_set_vap_dscp_tid_map_cmd_tlv,
  19302. .send_vdev_set_neighbour_rx_cmd = send_vdev_set_neighbour_rx_cmd_tlv,
  19303. .send_smart_ant_set_tx_ant_cmd = send_smart_ant_set_tx_ant_cmd_tlv,
  19304. .send_set_ant_switch_tbl_cmd = send_set_ant_switch_tbl_cmd_tlv,
  19305. .send_smart_ant_set_training_info_cmd =
  19306. send_smart_ant_set_training_info_cmd_tlv,
  19307. .send_smart_ant_set_node_config_cmd =
  19308. send_smart_ant_set_node_config_cmd_tlv,
  19309. .send_set_atf_cmd = send_set_atf_cmd_tlv,
  19310. .send_vdev_set_fwtest_param_cmd = send_vdev_set_fwtest_param_cmd_tlv,
  19311. .send_set_qboost_param_cmd = send_set_qboost_param_cmd_tlv,
  19312. .send_gpio_config_cmd = send_gpio_config_cmd_tlv,
  19313. .send_gpio_output_cmd = send_gpio_output_cmd_tlv,
  19314. .send_phyerr_disable_cmd = send_phyerr_disable_cmd_tlv,
  19315. .send_phyerr_enable_cmd = send_phyerr_enable_cmd_tlv,
  19316. .send_periodic_chan_stats_config_cmd =
  19317. send_periodic_chan_stats_config_cmd_tlv,
  19318. .send_nf_dbr_dbm_info_get_cmd = send_nf_dbr_dbm_info_get_cmd_tlv,
  19319. .send_set_ht_ie_cmd = send_set_ht_ie_cmd_tlv,
  19320. .send_set_vht_ie_cmd = send_set_vht_ie_cmd_tlv,
  19321. .send_set_quiet_mode_cmd = send_set_quiet_mode_cmd_tlv,
  19322. .send_set_bwf_cmd = send_set_bwf_cmd_tlv,
  19323. .send_mcast_group_update_cmd = send_mcast_group_update_cmd_tlv,
  19324. .send_vdev_spectral_configure_cmd =
  19325. send_vdev_spectral_configure_cmd_tlv,
  19326. .send_vdev_spectral_enable_cmd =
  19327. send_vdev_spectral_enable_cmd_tlv,
  19328. .send_thermal_mitigation_param_cmd =
  19329. send_thermal_mitigation_param_cmd_tlv,
  19330. .send_pdev_qvit_cmd = send_pdev_qvit_cmd_tlv,
  19331. .send_wmm_update_cmd = send_wmm_update_cmd_tlv,
  19332. .send_process_update_edca_param_cmd =
  19333. send_process_update_edca_param_cmd_tlv,
  19334. .send_coex_config_cmd = send_coex_config_cmd_tlv,
  19335. .send_set_country_cmd = send_set_country_cmd_tlv,
  19336. .send_bcn_offload_control_cmd = send_bcn_offload_control_cmd_tlv,
  19337. .send_addba_send_cmd = send_addba_send_cmd_tlv,
  19338. .send_delba_send_cmd = send_delba_send_cmd_tlv,
  19339. .send_addba_clearresponse_cmd = send_addba_clearresponse_cmd_tlv,
  19340. .get_target_cap_from_service_ready = extract_service_ready_tlv,
  19341. .extract_hal_reg_cap = extract_hal_reg_cap_tlv,
  19342. .extract_host_mem_req = extract_host_mem_req_tlv,
  19343. .save_service_bitmap = save_service_bitmap_tlv,
  19344. .save_ext_service_bitmap = save_ext_service_bitmap_tlv,
  19345. .is_service_enabled = is_service_enabled_tlv,
  19346. .save_fw_version = save_fw_version_in_service_ready_tlv,
  19347. .ready_extract_init_status = ready_extract_init_status_tlv,
  19348. .ready_extract_mac_addr = ready_extract_mac_addr_tlv,
  19349. .ready_extract_mac_addr_list = ready_extract_mac_addr_list_tlv,
  19350. .extract_ready_event_params = extract_ready_event_params_tlv,
  19351. .extract_dbglog_data_len = extract_dbglog_data_len_tlv,
  19352. .extract_vdev_start_resp = extract_vdev_start_resp_tlv,
  19353. .extract_vdev_delete_resp = extract_vdev_delete_resp_tlv,
  19354. .extract_tbttoffset_update_params =
  19355. extract_tbttoffset_update_params_tlv,
  19356. .extract_ext_tbttoffset_update_params =
  19357. extract_ext_tbttoffset_update_params_tlv,
  19358. .extract_tbttoffset_num_vdevs =
  19359. extract_tbttoffset_num_vdevs_tlv,
  19360. .extract_ext_tbttoffset_num_vdevs =
  19361. extract_ext_tbttoffset_num_vdevs_tlv,
  19362. .extract_mgmt_rx_params = extract_mgmt_rx_params_tlv,
  19363. .extract_vdev_stopped_param = extract_vdev_stopped_param_tlv,
  19364. .extract_vdev_roam_param = extract_vdev_roam_param_tlv,
  19365. .extract_vdev_scan_ev_param = extract_vdev_scan_ev_param_tlv,
  19366. #ifdef CONVERGED_TDLS_ENABLE
  19367. .extract_vdev_tdls_ev_param = extract_vdev_tdls_ev_param_tlv,
  19368. #endif
  19369. .extract_mgmt_tx_compl_param = extract_mgmt_tx_compl_param_tlv,
  19370. .extract_swba_num_vdevs = extract_swba_num_vdevs_tlv,
  19371. .extract_swba_tim_info = extract_swba_tim_info_tlv,
  19372. .extract_swba_noa_info = extract_swba_noa_info_tlv,
  19373. #ifdef CONVERGED_P2P_ENABLE
  19374. .extract_p2p_noa_ev_param = extract_p2p_noa_ev_param_tlv,
  19375. .extract_p2p_lo_stop_ev_param =
  19376. extract_p2p_lo_stop_ev_param_tlv,
  19377. #endif
  19378. .extract_offchan_data_tx_compl_param =
  19379. extract_offchan_data_tx_compl_param_tlv,
  19380. .extract_peer_sta_kickout_ev = extract_peer_sta_kickout_ev_tlv,
  19381. .extract_all_stats_count = extract_all_stats_counts_tlv,
  19382. .extract_pdev_stats = extract_pdev_stats_tlv,
  19383. .extract_unit_test = extract_unit_test_tlv,
  19384. .extract_pdev_ext_stats = extract_pdev_ext_stats_tlv,
  19385. .extract_vdev_stats = extract_vdev_stats_tlv,
  19386. .extract_per_chain_rssi_stats = extract_per_chain_rssi_stats_tlv,
  19387. .extract_peer_stats = extract_peer_stats_tlv,
  19388. .extract_bcn_stats = extract_bcn_stats_tlv,
  19389. .extract_bcnflt_stats = extract_bcnflt_stats_tlv,
  19390. .extract_peer_extd_stats = extract_peer_extd_stats_tlv,
  19391. .extract_chan_stats = extract_chan_stats_tlv,
  19392. .extract_profile_ctx = extract_profile_ctx_tlv,
  19393. .extract_profile_data = extract_profile_data_tlv,
  19394. .extract_chan_info_event = extract_chan_info_event_tlv,
  19395. .extract_channel_hopping_event = extract_channel_hopping_event_tlv,
  19396. .send_fw_test_cmd = send_fw_test_cmd_tlv,
  19397. #ifdef WLAN_FEATURE_DISA
  19398. .send_encrypt_decrypt_send_cmd =
  19399. send_encrypt_decrypt_send_cmd_tlv,
  19400. .extract_encrypt_decrypt_resp_event =
  19401. extract_encrypt_decrypt_resp_event_tlv,
  19402. #endif
  19403. .send_sar_limit_cmd = send_sar_limit_cmd_tlv,
  19404. .get_sar_limit_cmd = get_sar_limit_cmd_tlv,
  19405. .extract_sar_limit_event = extract_sar_limit_event_tlv,
  19406. .extract_sar2_result_event = extract_sar2_result_event_tlv,
  19407. .send_power_dbg_cmd = send_power_dbg_cmd_tlv,
  19408. .send_multiple_vdev_restart_req_cmd =
  19409. send_multiple_vdev_restart_req_cmd_tlv,
  19410. .extract_service_ready_ext = extract_service_ready_ext_tlv,
  19411. .extract_hw_mode_cap_service_ready_ext =
  19412. extract_hw_mode_cap_service_ready_ext_tlv,
  19413. .extract_mac_phy_cap_service_ready_ext =
  19414. extract_mac_phy_cap_service_ready_ext_tlv,
  19415. .extract_reg_cap_service_ready_ext =
  19416. extract_reg_cap_service_ready_ext_tlv,
  19417. .extract_dbr_ring_cap_service_ready_ext =
  19418. extract_dbr_ring_cap_service_ready_ext_tlv,
  19419. .extract_sar_cap_service_ready_ext =
  19420. extract_sar_cap_service_ready_ext_tlv,
  19421. .extract_dbr_buf_release_fixed = extract_dbr_buf_release_fixed_tlv,
  19422. .extract_dbr_buf_release_entry = extract_dbr_buf_release_entry_tlv,
  19423. .extract_dbr_buf_metadata = extract_dbr_buf_metadata_tlv,
  19424. .extract_pdev_utf_event = extract_pdev_utf_event_tlv,
  19425. .wmi_set_htc_tx_tag = wmi_set_htc_tx_tag_tlv,
  19426. .extract_dcs_interference_type = extract_dcs_interference_type_tlv,
  19427. .extract_dcs_cw_int = extract_dcs_cw_int_tlv,
  19428. .extract_dcs_im_tgt_stats = extract_dcs_im_tgt_stats_tlv,
  19429. .extract_fips_event_data = extract_fips_event_data_tlv,
  19430. .send_pdev_fips_cmd = send_pdev_fips_cmd_tlv,
  19431. .extract_peer_delete_response_event =
  19432. extract_peer_delete_response_event_tlv,
  19433. .is_management_record = is_management_record_tlv,
  19434. .extract_pdev_csa_switch_count_status =
  19435. extract_pdev_csa_switch_count_status_tlv,
  19436. .extract_pdev_tpc_ev_param = extract_pdev_tpc_ev_param_tlv,
  19437. .extract_pdev_tpc_config_ev_param =
  19438. extract_pdev_tpc_config_ev_param_tlv,
  19439. .extract_nfcal_power_ev_param = extract_nfcal_power_ev_param_tlv,
  19440. .extract_wds_addr_event = extract_wds_addr_event_tlv,
  19441. .extract_peer_sta_ps_statechange_ev =
  19442. extract_peer_sta_ps_statechange_ev_tlv,
  19443. .extract_inst_rssi_stats_event = extract_inst_rssi_stats_event_tlv,
  19444. .send_per_roam_config_cmd = send_per_roam_config_cmd_tlv,
  19445. .send_dfs_phyerr_offload_en_cmd = send_dfs_phyerr_offload_en_cmd_tlv,
  19446. .send_dfs_phyerr_offload_dis_cmd = send_dfs_phyerr_offload_dis_cmd_tlv,
  19447. .extract_reg_chan_list_update_event =
  19448. extract_reg_chan_list_update_event_tlv,
  19449. .extract_chainmask_tables =
  19450. extract_chainmask_tables_tlv,
  19451. .extract_thermal_stats = extract_thermal_stats_tlv,
  19452. .extract_thermal_level_stats = extract_thermal_level_stats_tlv,
  19453. .send_get_rcpi_cmd = send_get_rcpi_cmd_tlv,
  19454. .extract_rcpi_response_event = extract_rcpi_response_event_tlv,
  19455. #ifdef DFS_COMPONENT_ENABLE
  19456. .extract_dfs_cac_complete_event = extract_dfs_cac_complete_event_tlv,
  19457. .extract_dfs_radar_detection_event =
  19458. extract_dfs_radar_detection_event_tlv,
  19459. .extract_wlan_radar_event_info = extract_wlan_radar_event_info_tlv,
  19460. #endif
  19461. .convert_pdev_id_host_to_target =
  19462. convert_host_pdev_id_to_target_pdev_id_legacy,
  19463. .convert_pdev_id_target_to_host =
  19464. convert_target_pdev_id_to_host_pdev_id_legacy,
  19465. .send_start_11d_scan_cmd = send_start_11d_scan_cmd_tlv,
  19466. .send_stop_11d_scan_cmd = send_stop_11d_scan_cmd_tlv,
  19467. .extract_reg_11d_new_country_event =
  19468. extract_reg_11d_new_country_event_tlv,
  19469. .send_user_country_code_cmd = send_user_country_code_cmd_tlv,
  19470. .send_limit_off_chan_cmd =
  19471. send_limit_off_chan_cmd_tlv,
  19472. .extract_reg_ch_avoid_event =
  19473. extract_reg_ch_avoid_event_tlv,
  19474. .send_pdev_caldata_version_check_cmd =
  19475. send_pdev_caldata_version_check_cmd_tlv,
  19476. .extract_pdev_caldata_version_check_ev_param =
  19477. extract_pdev_caldata_version_check_ev_param_tlv,
  19478. .send_set_arp_stats_req_cmd = send_set_arp_stats_req_cmd_tlv,
  19479. .send_get_arp_stats_req_cmd = send_get_arp_stats_req_cmd_tlv,
  19480. .send_set_del_pmkid_cache_cmd = send_set_del_pmkid_cache_cmd_tlv,
  19481. #if defined(WLAN_FEATURE_FILS_SK)
  19482. .send_roam_scan_hlp_cmd = send_roam_scan_send_hlp_cmd_tlv,
  19483. #endif
  19484. .send_wow_timer_pattern_cmd = send_wow_timer_pattern_cmd_tlv,
  19485. #ifdef WLAN_FEATURE_NAN_CONVERGENCE
  19486. .send_ndp_initiator_req_cmd = nan_ndp_initiator_req_tlv,
  19487. .send_ndp_responder_req_cmd = nan_ndp_responder_req_tlv,
  19488. .send_ndp_end_req_cmd = nan_ndp_end_req_tlv,
  19489. .extract_ndp_initiator_rsp = extract_ndp_initiator_rsp_tlv,
  19490. .extract_ndp_ind = extract_ndp_ind_tlv,
  19491. .extract_ndp_confirm = extract_ndp_confirm_tlv,
  19492. .extract_ndp_responder_rsp = extract_ndp_responder_rsp_tlv,
  19493. .extract_ndp_end_rsp = extract_ndp_end_rsp_tlv,
  19494. .extract_ndp_end_ind = extract_ndp_end_ind_tlv,
  19495. .extract_ndp_sch_update = extract_ndp_sch_update_tlv,
  19496. #endif
  19497. .send_btm_config = send_btm_config_cmd_tlv,
  19498. .send_obss_detection_cfg_cmd = send_obss_detection_cfg_cmd_tlv,
  19499. .extract_obss_detection_info = extract_obss_detection_info_tlv,
  19500. #ifdef WLAN_SUPPORT_FILS
  19501. .send_vdev_fils_enable_cmd = send_vdev_fils_enable_cmd_tlv,
  19502. .extract_swfda_vdev_id = extract_swfda_vdev_id_tlv,
  19503. .send_fils_discovery_send_cmd = send_fils_discovery_send_cmd_tlv,
  19504. #endif /* WLAN_SUPPORT_FILS */
  19505. .send_offload_11k_cmd = send_offload_11k_cmd_tlv,
  19506. .send_invoke_neighbor_report_cmd = send_invoke_neighbor_report_cmd_tlv,
  19507. .wmi_pdev_id_conversion_enable = wmi_tlv_pdev_id_conversion_enable,
  19508. .wmi_free_allocated_event = wmitlv_free_allocated_event_tlvs,
  19509. .wmi_check_and_pad_event = wmitlv_check_and_pad_event_tlvs,
  19510. .wmi_check_command_params = wmitlv_check_command_tlv_params,
  19511. .send_bss_color_change_enable_cmd =
  19512. send_bss_color_change_enable_cmd_tlv,
  19513. .send_obss_color_collision_cfg_cmd =
  19514. send_obss_color_collision_cfg_cmd_tlv,
  19515. .extract_obss_color_collision_info =
  19516. extract_obss_color_collision_info_tlv,
  19517. .extract_comb_phyerr = extract_comb_phyerr_tlv,
  19518. .extract_single_phyerr = extract_single_phyerr_tlv,
  19519. #ifdef QCA_SUPPORT_CP_STATS
  19520. .extract_cca_stats = extract_cca_stats_tlv,
  19521. #endif
  19522. };
  19523. /**
  19524. * populate_tlv_event_id() - populates wmi event ids
  19525. *
  19526. * @param event_ids: Pointer to hold event ids
  19527. * Return: None
  19528. */
  19529. static void populate_tlv_events_id(uint32_t *event_ids)
  19530. {
  19531. event_ids[wmi_service_ready_event_id] = WMI_SERVICE_READY_EVENTID;
  19532. event_ids[wmi_ready_event_id] = WMI_READY_EVENTID;
  19533. event_ids[wmi_scan_event_id] = WMI_SCAN_EVENTID;
  19534. event_ids[wmi_pdev_tpc_config_event_id] = WMI_PDEV_TPC_CONFIG_EVENTID;
  19535. event_ids[wmi_chan_info_event_id] = WMI_CHAN_INFO_EVENTID;
  19536. event_ids[wmi_phyerr_event_id] = WMI_PHYERR_EVENTID;
  19537. event_ids[wmi_pdev_dump_event_id] = WMI_PDEV_DUMP_EVENTID;
  19538. event_ids[wmi_tx_pause_event_id] = WMI_TX_PAUSE_EVENTID;
  19539. event_ids[wmi_dfs_radar_event_id] = WMI_DFS_RADAR_EVENTID;
  19540. event_ids[wmi_pdev_l1ss_track_event_id] = WMI_PDEV_L1SS_TRACK_EVENTID;
  19541. event_ids[wmi_pdev_temperature_event_id] = WMI_PDEV_TEMPERATURE_EVENTID;
  19542. event_ids[wmi_service_ready_ext_event_id] =
  19543. WMI_SERVICE_READY_EXT_EVENTID;
  19544. event_ids[wmi_vdev_start_resp_event_id] = WMI_VDEV_START_RESP_EVENTID;
  19545. event_ids[wmi_vdev_stopped_event_id] = WMI_VDEV_STOPPED_EVENTID;
  19546. event_ids[wmi_vdev_install_key_complete_event_id] =
  19547. WMI_VDEV_INSTALL_KEY_COMPLETE_EVENTID;
  19548. event_ids[wmi_vdev_mcc_bcn_intvl_change_req_event_id] =
  19549. WMI_VDEV_MCC_BCN_INTERVAL_CHANGE_REQ_EVENTID;
  19550. event_ids[wmi_vdev_tsf_report_event_id] = WMI_VDEV_TSF_REPORT_EVENTID;
  19551. event_ids[wmi_peer_sta_kickout_event_id] = WMI_PEER_STA_KICKOUT_EVENTID;
  19552. event_ids[wmi_peer_info_event_id] = WMI_PEER_INFO_EVENTID;
  19553. event_ids[wmi_peer_tx_fail_cnt_thr_event_id] =
  19554. WMI_PEER_TX_FAIL_CNT_THR_EVENTID;
  19555. event_ids[wmi_peer_estimated_linkspeed_event_id] =
  19556. WMI_PEER_ESTIMATED_LINKSPEED_EVENTID;
  19557. event_ids[wmi_peer_state_event_id] = WMI_PEER_STATE_EVENTID;
  19558. event_ids[wmi_peer_delete_response_event_id] =
  19559. WMI_PEER_DELETE_RESP_EVENTID;
  19560. event_ids[wmi_mgmt_rx_event_id] = WMI_MGMT_RX_EVENTID;
  19561. event_ids[wmi_host_swba_event_id] = WMI_HOST_SWBA_EVENTID;
  19562. event_ids[wmi_tbttoffset_update_event_id] =
  19563. WMI_TBTTOFFSET_UPDATE_EVENTID;
  19564. event_ids[wmi_ext_tbttoffset_update_event_id] =
  19565. WMI_TBTTOFFSET_EXT_UPDATE_EVENTID;
  19566. event_ids[wmi_offload_bcn_tx_status_event_id] =
  19567. WMI_OFFLOAD_BCN_TX_STATUS_EVENTID;
  19568. event_ids[wmi_offload_prob_resp_tx_status_event_id] =
  19569. WMI_OFFLOAD_PROB_RESP_TX_STATUS_EVENTID;
  19570. event_ids[wmi_mgmt_tx_completion_event_id] =
  19571. WMI_MGMT_TX_COMPLETION_EVENTID;
  19572. event_ids[wmi_pdev_nfcal_power_all_channels_event_id] =
  19573. WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID;
  19574. event_ids[wmi_tx_delba_complete_event_id] =
  19575. WMI_TX_DELBA_COMPLETE_EVENTID;
  19576. event_ids[wmi_tx_addba_complete_event_id] =
  19577. WMI_TX_ADDBA_COMPLETE_EVENTID;
  19578. event_ids[wmi_ba_rsp_ssn_event_id] = WMI_BA_RSP_SSN_EVENTID;
  19579. event_ids[wmi_aggr_state_trig_event_id] = WMI_AGGR_STATE_TRIG_EVENTID;
  19580. event_ids[wmi_roam_event_id] = WMI_ROAM_EVENTID;
  19581. event_ids[wmi_profile_match] = WMI_PROFILE_MATCH;
  19582. event_ids[wmi_roam_synch_event_id] = WMI_ROAM_SYNCH_EVENTID;
  19583. event_ids[wmi_roam_synch_frame_event_id] = WMI_ROAM_SYNCH_FRAME_EVENTID;
  19584. event_ids[wmi_p2p_disc_event_id] = WMI_P2P_DISC_EVENTID;
  19585. event_ids[wmi_p2p_noa_event_id] = WMI_P2P_NOA_EVENTID;
  19586. event_ids[wmi_p2p_lo_stop_event_id] =
  19587. WMI_P2P_LISTEN_OFFLOAD_STOPPED_EVENTID;
  19588. event_ids[wmi_pdev_resume_event_id] = WMI_PDEV_RESUME_EVENTID;
  19589. event_ids[wmi_wow_wakeup_host_event_id] = WMI_WOW_WAKEUP_HOST_EVENTID;
  19590. event_ids[wmi_d0_wow_disable_ack_event_id] =
  19591. WMI_D0_WOW_DISABLE_ACK_EVENTID;
  19592. event_ids[wmi_wow_initial_wakeup_event_id] =
  19593. WMI_WOW_INITIAL_WAKEUP_EVENTID;
  19594. event_ids[wmi_rtt_meas_report_event_id] =
  19595. WMI_RTT_MEASUREMENT_REPORT_EVENTID;
  19596. event_ids[wmi_tsf_meas_report_event_id] =
  19597. WMI_TSF_MEASUREMENT_REPORT_EVENTID;
  19598. event_ids[wmi_rtt_error_report_event_id] = WMI_RTT_ERROR_REPORT_EVENTID;
  19599. event_ids[wmi_stats_ext_event_id] = WMI_STATS_EXT_EVENTID;
  19600. event_ids[wmi_iface_link_stats_event_id] = WMI_IFACE_LINK_STATS_EVENTID;
  19601. event_ids[wmi_peer_link_stats_event_id] = WMI_PEER_LINK_STATS_EVENTID;
  19602. event_ids[wmi_radio_link_stats_link] = WMI_RADIO_LINK_STATS_EVENTID;
  19603. event_ids[wmi_diag_event_id_log_supported_event_id] =
  19604. WMI_DIAG_EVENT_LOG_SUPPORTED_EVENTID;
  19605. event_ids[wmi_nlo_match_event_id] = WMI_NLO_MATCH_EVENTID;
  19606. event_ids[wmi_nlo_scan_complete_event_id] =
  19607. WMI_NLO_SCAN_COMPLETE_EVENTID;
  19608. event_ids[wmi_apfind_event_id] = WMI_APFIND_EVENTID;
  19609. event_ids[wmi_passpoint_match_event_id] = WMI_PASSPOINT_MATCH_EVENTID;
  19610. event_ids[wmi_gtk_offload_status_event_id] =
  19611. WMI_GTK_OFFLOAD_STATUS_EVENTID;
  19612. event_ids[wmi_gtk_rekey_fail_event_id] = WMI_GTK_REKEY_FAIL_EVENTID;
  19613. event_ids[wmi_csa_handling_event_id] = WMI_CSA_HANDLING_EVENTID;
  19614. event_ids[wmi_chatter_pc_query_event_id] = WMI_CHATTER_PC_QUERY_EVENTID;
  19615. event_ids[wmi_echo_event_id] = WMI_ECHO_EVENTID;
  19616. event_ids[wmi_pdev_utf_event_id] = WMI_PDEV_UTF_EVENTID;
  19617. event_ids[wmi_dbg_msg_event_id] = WMI_DEBUG_MESG_EVENTID;
  19618. event_ids[wmi_update_stats_event_id] = WMI_UPDATE_STATS_EVENTID;
  19619. event_ids[wmi_debug_print_event_id] = WMI_DEBUG_PRINT_EVENTID;
  19620. event_ids[wmi_dcs_interference_event_id] = WMI_DCS_INTERFERENCE_EVENTID;
  19621. event_ids[wmi_pdev_qvit_event_id] = WMI_PDEV_QVIT_EVENTID;
  19622. event_ids[wmi_wlan_profile_data_event_id] =
  19623. WMI_WLAN_PROFILE_DATA_EVENTID;
  19624. event_ids[wmi_pdev_ftm_intg_event_id] = WMI_PDEV_FTM_INTG_EVENTID;
  19625. event_ids[wmi_wlan_freq_avoid_event_id] = WMI_WLAN_FREQ_AVOID_EVENTID;
  19626. event_ids[wmi_vdev_get_keepalive_event_id] =
  19627. WMI_VDEV_GET_KEEPALIVE_EVENTID;
  19628. event_ids[wmi_thermal_mgmt_event_id] = WMI_THERMAL_MGMT_EVENTID;
  19629. event_ids[wmi_diag_container_event_id] =
  19630. WMI_DIAG_DATA_CONTAINER_EVENTID;
  19631. event_ids[wmi_host_auto_shutdown_event_id] =
  19632. WMI_HOST_AUTO_SHUTDOWN_EVENTID;
  19633. event_ids[wmi_update_whal_mib_stats_event_id] =
  19634. WMI_UPDATE_WHAL_MIB_STATS_EVENTID;
  19635. /*update ht/vht info based on vdev (rx and tx NSS and preamble) */
  19636. event_ids[wmi_update_vdev_rate_stats_event_id] =
  19637. WMI_UPDATE_VDEV_RATE_STATS_EVENTID;
  19638. event_ids[wmi_diag_event_id] = WMI_DIAG_EVENTID;
  19639. event_ids[wmi_unit_test_event_id] = WMI_UNIT_TEST_EVENTID;
  19640. /** Set OCB Sched Response, deprecated */
  19641. event_ids[wmi_ocb_set_sched_event_id] = WMI_OCB_SET_SCHED_EVENTID;
  19642. event_ids[wmi_dbg_mesg_flush_complete_event_id] =
  19643. WMI_DEBUG_MESG_FLUSH_COMPLETE_EVENTID;
  19644. event_ids[wmi_rssi_breach_event_id] = WMI_RSSI_BREACH_EVENTID;
  19645. /* GPIO Event */
  19646. event_ids[wmi_gpio_input_event_id] = WMI_GPIO_INPUT_EVENTID;
  19647. event_ids[wmi_uploadh_event_id] = WMI_UPLOADH_EVENTID;
  19648. event_ids[wmi_captureh_event_id] = WMI_CAPTUREH_EVENTID;
  19649. event_ids[wmi_rfkill_state_change_event_id] =
  19650. WMI_RFKILL_STATE_CHANGE_EVENTID;
  19651. /* TDLS Event */
  19652. event_ids[wmi_tdls_peer_event_id] = WMI_TDLS_PEER_EVENTID;
  19653. event_ids[wmi_batch_scan_enabled_event_id] =
  19654. WMI_BATCH_SCAN_ENABLED_EVENTID;
  19655. event_ids[wmi_batch_scan_result_event_id] =
  19656. WMI_BATCH_SCAN_RESULT_EVENTID;
  19657. /* OEM Event */
  19658. event_ids[wmi_oem_cap_event_id] = WMI_OEM_CAPABILITY_EVENTID;
  19659. event_ids[wmi_oem_meas_report_event_id] =
  19660. WMI_OEM_MEASUREMENT_REPORT_EVENTID;
  19661. event_ids[wmi_oem_report_event_id] = WMI_OEM_ERROR_REPORT_EVENTID;
  19662. /* NAN Event */
  19663. event_ids[wmi_nan_event_id] = WMI_NAN_EVENTID;
  19664. /* LPI Event */
  19665. event_ids[wmi_lpi_result_event_id] = WMI_LPI_RESULT_EVENTID;
  19666. event_ids[wmi_lpi_status_event_id] = WMI_LPI_STATUS_EVENTID;
  19667. event_ids[wmi_lpi_handoff_event_id] = WMI_LPI_HANDOFF_EVENTID;
  19668. /* ExtScan events */
  19669. event_ids[wmi_extscan_start_stop_event_id] =
  19670. WMI_EXTSCAN_START_STOP_EVENTID;
  19671. event_ids[wmi_extscan_operation_event_id] =
  19672. WMI_EXTSCAN_OPERATION_EVENTID;
  19673. event_ids[wmi_extscan_table_usage_event_id] =
  19674. WMI_EXTSCAN_TABLE_USAGE_EVENTID;
  19675. event_ids[wmi_extscan_cached_results_event_id] =
  19676. WMI_EXTSCAN_CACHED_RESULTS_EVENTID;
  19677. event_ids[wmi_extscan_wlan_change_results_event_id] =
  19678. WMI_EXTSCAN_WLAN_CHANGE_RESULTS_EVENTID;
  19679. event_ids[wmi_extscan_hotlist_match_event_id] =
  19680. WMI_EXTSCAN_HOTLIST_MATCH_EVENTID;
  19681. event_ids[wmi_extscan_capabilities_event_id] =
  19682. WMI_EXTSCAN_CAPABILITIES_EVENTID;
  19683. event_ids[wmi_extscan_hotlist_ssid_match_event_id] =
  19684. WMI_EXTSCAN_HOTLIST_SSID_MATCH_EVENTID;
  19685. /* mDNS offload events */
  19686. event_ids[wmi_mdns_stats_event_id] = WMI_MDNS_STATS_EVENTID;
  19687. /* SAP Authentication offload events */
  19688. event_ids[wmi_sap_ofl_add_sta_event_id] = WMI_SAP_OFL_ADD_STA_EVENTID;
  19689. event_ids[wmi_sap_ofl_del_sta_event_id] = WMI_SAP_OFL_DEL_STA_EVENTID;
  19690. /** Out-of-context-of-bss (OCB) events */
  19691. event_ids[wmi_ocb_set_config_resp_event_id] =
  19692. WMI_OCB_SET_CONFIG_RESP_EVENTID;
  19693. event_ids[wmi_ocb_get_tsf_timer_resp_event_id] =
  19694. WMI_OCB_GET_TSF_TIMER_RESP_EVENTID;
  19695. event_ids[wmi_dcc_get_stats_resp_event_id] =
  19696. WMI_DCC_GET_STATS_RESP_EVENTID;
  19697. event_ids[wmi_dcc_update_ndl_resp_event_id] =
  19698. WMI_DCC_UPDATE_NDL_RESP_EVENTID;
  19699. event_ids[wmi_dcc_stats_event_id] = WMI_DCC_STATS_EVENTID;
  19700. /* System-On-Chip events */
  19701. event_ids[wmi_soc_set_hw_mode_resp_event_id] =
  19702. WMI_SOC_SET_HW_MODE_RESP_EVENTID;
  19703. event_ids[wmi_soc_hw_mode_transition_event_id] =
  19704. WMI_SOC_HW_MODE_TRANSITION_EVENTID;
  19705. event_ids[wmi_soc_set_dual_mac_config_resp_event_id] =
  19706. WMI_SOC_SET_DUAL_MAC_CONFIG_RESP_EVENTID;
  19707. event_ids[wmi_pdev_fips_event_id] = WMI_PDEV_FIPS_EVENTID;
  19708. event_ids[wmi_pdev_csa_switch_count_status_event_id] =
  19709. WMI_PDEV_CSA_SWITCH_COUNT_STATUS_EVENTID;
  19710. event_ids[wmi_reg_chan_list_cc_event_id] = WMI_REG_CHAN_LIST_CC_EVENTID;
  19711. event_ids[wmi_inst_rssi_stats_event_id] = WMI_INST_RSSI_STATS_EVENTID;
  19712. event_ids[wmi_pdev_tpc_config_event_id] = WMI_PDEV_TPC_CONFIG_EVENTID;
  19713. event_ids[wmi_peer_sta_ps_statechg_event_id] =
  19714. WMI_PEER_STA_PS_STATECHG_EVENTID;
  19715. event_ids[wmi_pdev_channel_hopping_event_id] =
  19716. WMI_PDEV_CHANNEL_HOPPING_EVENTID;
  19717. event_ids[wmi_offchan_data_tx_completion_event] =
  19718. WMI_OFFCHAN_DATA_TX_COMPLETION_EVENTID;
  19719. event_ids[wmi_dfs_cac_complete_id] = WMI_VDEV_DFS_CAC_COMPLETE_EVENTID;
  19720. event_ids[wmi_dfs_radar_detection_event_id] =
  19721. WMI_PDEV_DFS_RADAR_DETECTION_EVENTID;
  19722. event_ids[wmi_tt_stats_event_id] = WMI_THERM_THROT_STATS_EVENTID;
  19723. event_ids[wmi_11d_new_country_event_id] = WMI_11D_NEW_COUNTRY_EVENTID;
  19724. event_ids[wmi_pdev_tpc_event_id] = WMI_PDEV_TPC_EVENTID;
  19725. event_ids[wmi_get_arp_stats_req_id] = WMI_VDEV_GET_ARP_STAT_EVENTID;
  19726. event_ids[wmi_service_available_event_id] =
  19727. WMI_SERVICE_AVAILABLE_EVENTID;
  19728. event_ids[wmi_update_rcpi_event_id] = WMI_UPDATE_RCPI_EVENTID;
  19729. event_ids[wmi_pdev_check_cal_version_event_id] = WMI_PDEV_CHECK_CAL_VERSION_EVENTID;
  19730. /* NDP events */
  19731. event_ids[wmi_ndp_initiator_rsp_event_id] =
  19732. WMI_NDP_INITIATOR_RSP_EVENTID;
  19733. event_ids[wmi_ndp_indication_event_id] = WMI_NDP_INDICATION_EVENTID;
  19734. event_ids[wmi_ndp_confirm_event_id] = WMI_NDP_CONFIRM_EVENTID;
  19735. event_ids[wmi_ndp_responder_rsp_event_id] =
  19736. WMI_NDP_RESPONDER_RSP_EVENTID;
  19737. event_ids[wmi_ndp_end_indication_event_id] =
  19738. WMI_NDP_END_INDICATION_EVENTID;
  19739. event_ids[wmi_ndp_end_rsp_event_id] = WMI_NDP_END_RSP_EVENTID;
  19740. event_ids[wmi_ndl_schedule_update_event_id] =
  19741. WMI_NDL_SCHEDULE_UPDATE_EVENTID;
  19742. event_ids[wmi_oem_response_event_id] = WMI_OEM_RESPONSE_EVENTID;
  19743. event_ids[wmi_peer_stats_info_event_id] = WMI_PEER_STATS_INFO_EVENTID;
  19744. event_ids[wmi_pdev_chip_power_stats_event_id] =
  19745. WMI_PDEV_CHIP_POWER_STATS_EVENTID;
  19746. event_ids[wmi_ap_ps_egap_info_event_id] = WMI_AP_PS_EGAP_INFO_EVENTID;
  19747. event_ids[wmi_peer_assoc_conf_event_id] = WMI_PEER_ASSOC_CONF_EVENTID;
  19748. event_ids[wmi_vdev_delete_resp_event_id] = WMI_VDEV_DELETE_RESP_EVENTID;
  19749. event_ids[wmi_apf_capability_info_event_id] =
  19750. WMI_BPF_CAPABILIY_INFO_EVENTID;
  19751. event_ids[wmi_vdev_encrypt_decrypt_data_rsp_event_id] =
  19752. WMI_VDEV_ENCRYPT_DECRYPT_DATA_RESP_EVENTID;
  19753. event_ids[wmi_report_rx_aggr_failure_event_id] =
  19754. WMI_REPORT_RX_AGGR_FAILURE_EVENTID;
  19755. event_ids[wmi_pdev_chip_pwr_save_failure_detect_event_id] =
  19756. WMI_PDEV_CHIP_POWER_SAVE_FAILURE_DETECTED_EVENTID;
  19757. event_ids[wmi_peer_antdiv_info_event_id] = WMI_PEER_ANTDIV_INFO_EVENTID;
  19758. event_ids[wmi_pdev_set_hw_mode_rsp_event_id] =
  19759. WMI_PDEV_SET_HW_MODE_RESP_EVENTID;
  19760. event_ids[wmi_pdev_hw_mode_transition_event_id] =
  19761. WMI_PDEV_HW_MODE_TRANSITION_EVENTID;
  19762. event_ids[wmi_pdev_set_mac_config_resp_event_id] =
  19763. WMI_PDEV_SET_MAC_CONFIG_RESP_EVENTID;
  19764. event_ids[wmi_coex_bt_activity_event_id] =
  19765. WMI_WLAN_COEX_BT_ACTIVITY_EVENTID;
  19766. event_ids[wmi_mgmt_tx_bundle_completion_event_id] =
  19767. WMI_MGMT_TX_BUNDLE_COMPLETION_EVENTID;
  19768. event_ids[wmi_radio_tx_power_level_stats_event_id] =
  19769. WMI_RADIO_TX_POWER_LEVEL_STATS_EVENTID;
  19770. event_ids[wmi_report_stats_event_id] = WMI_REPORT_STATS_EVENTID;
  19771. event_ids[wmi_dma_buf_release_event_id] =
  19772. WMI_PDEV_DMA_RING_BUF_RELEASE_EVENTID;
  19773. event_ids[wmi_sap_obss_detection_report_event_id] =
  19774. WMI_SAP_OBSS_DETECTION_REPORT_EVENTID;
  19775. event_ids[wmi_host_swfda_event_id] = WMI_HOST_SWFDA_EVENTID;
  19776. event_ids[wmi_sar_get_limits_event_id] = WMI_SAR_GET_LIMITS_EVENTID;
  19777. event_ids[wmi_obss_color_collision_report_event_id] =
  19778. WMI_OBSS_COLOR_COLLISION_DETECTION_EVENTID;
  19779. event_ids[wmi_pdev_div_rssi_antid_event_id] =
  19780. WMI_PDEV_DIV_RSSI_ANTID_EVENTID;
  19781. event_ids[wmi_twt_enable_complete_event_id] =
  19782. WMI_TWT_ENABLE_COMPLETE_EVENTID;
  19783. event_ids[wmi_apf_get_vdev_work_memory_resp_event_id] =
  19784. WMI_BPF_GET_VDEV_WORK_MEMORY_RESP_EVENTID;
  19785. event_ids[wmi_wlan_sar2_result_event_id] = WMI_SAR2_RESULT_EVENTID;
  19786. }
  19787. /**
  19788. * populate_tlv_service() - populates wmi services
  19789. *
  19790. * @param wmi_service: Pointer to hold wmi_service
  19791. * Return: None
  19792. */
  19793. static void populate_tlv_service(uint32_t *wmi_service)
  19794. {
  19795. wmi_service[wmi_service_beacon_offload] = WMI_SERVICE_BEACON_OFFLOAD;
  19796. wmi_service[wmi_service_ack_timeout] = WMI_SERVICE_ACK_TIMEOUT;
  19797. wmi_service[wmi_service_scan_offload] = WMI_SERVICE_SCAN_OFFLOAD;
  19798. wmi_service[wmi_service_roam_scan_offload] =
  19799. WMI_SERVICE_ROAM_SCAN_OFFLOAD;
  19800. wmi_service[wmi_service_bcn_miss_offload] =
  19801. WMI_SERVICE_BCN_MISS_OFFLOAD;
  19802. wmi_service[wmi_service_sta_pwrsave] = WMI_SERVICE_STA_PWRSAVE;
  19803. wmi_service[wmi_service_sta_advanced_pwrsave] =
  19804. WMI_SERVICE_STA_ADVANCED_PWRSAVE;
  19805. wmi_service[wmi_service_ap_uapsd] = WMI_SERVICE_AP_UAPSD;
  19806. wmi_service[wmi_service_ap_dfs] = WMI_SERVICE_AP_DFS;
  19807. wmi_service[wmi_service_11ac] = WMI_SERVICE_11AC;
  19808. wmi_service[wmi_service_blockack] = WMI_SERVICE_BLOCKACK;
  19809. wmi_service[wmi_service_phyerr] = WMI_SERVICE_PHYERR;
  19810. wmi_service[wmi_service_bcn_filter] = WMI_SERVICE_BCN_FILTER;
  19811. wmi_service[wmi_service_rtt] = WMI_SERVICE_RTT;
  19812. wmi_service[wmi_service_wow] = WMI_SERVICE_WOW;
  19813. wmi_service[wmi_service_ratectrl_cache] = WMI_SERVICE_RATECTRL_CACHE;
  19814. wmi_service[wmi_service_iram_tids] = WMI_SERVICE_IRAM_TIDS;
  19815. wmi_service[wmi_service_arpns_offload] = WMI_SERVICE_ARPNS_OFFLOAD;
  19816. wmi_service[wmi_service_nlo] = WMI_SERVICE_NLO;
  19817. wmi_service[wmi_service_gtk_offload] = WMI_SERVICE_GTK_OFFLOAD;
  19818. wmi_service[wmi_service_scan_sch] = WMI_SERVICE_SCAN_SCH;
  19819. wmi_service[wmi_service_csa_offload] = WMI_SERVICE_CSA_OFFLOAD;
  19820. wmi_service[wmi_service_chatter] = WMI_SERVICE_CHATTER;
  19821. wmi_service[wmi_service_coex_freqavoid] = WMI_SERVICE_COEX_FREQAVOID;
  19822. wmi_service[wmi_service_packet_power_save] =
  19823. WMI_SERVICE_PACKET_POWER_SAVE;
  19824. wmi_service[wmi_service_force_fw_hang] = WMI_SERVICE_FORCE_FW_HANG;
  19825. wmi_service[wmi_service_gpio] = WMI_SERVICE_GPIO;
  19826. wmi_service[wmi_service_sta_dtim_ps_modulated_dtim] =
  19827. WMI_SERVICE_STA_DTIM_PS_MODULATED_DTIM;
  19828. wmi_service[wmi_sta_uapsd_basic_auto_trig] =
  19829. WMI_STA_UAPSD_BASIC_AUTO_TRIG;
  19830. wmi_service[wmi_sta_uapsd_var_auto_trig] = WMI_STA_UAPSD_VAR_AUTO_TRIG;
  19831. wmi_service[wmi_service_sta_keep_alive] = WMI_SERVICE_STA_KEEP_ALIVE;
  19832. wmi_service[wmi_service_tx_encap] = WMI_SERVICE_TX_ENCAP;
  19833. wmi_service[wmi_service_ap_ps_detect_out_of_sync] =
  19834. WMI_SERVICE_AP_PS_DETECT_OUT_OF_SYNC;
  19835. wmi_service[wmi_service_early_rx] = WMI_SERVICE_EARLY_RX;
  19836. wmi_service[wmi_service_sta_smps] = WMI_SERVICE_STA_SMPS;
  19837. wmi_service[wmi_service_fwtest] = WMI_SERVICE_FWTEST;
  19838. wmi_service[wmi_service_sta_wmmac] = WMI_SERVICE_STA_WMMAC;
  19839. wmi_service[wmi_service_tdls] = WMI_SERVICE_TDLS;
  19840. wmi_service[wmi_service_burst] = WMI_SERVICE_BURST;
  19841. wmi_service[wmi_service_mcc_bcn_interval_change] =
  19842. WMI_SERVICE_MCC_BCN_INTERVAL_CHANGE;
  19843. wmi_service[wmi_service_adaptive_ocs] = WMI_SERVICE_ADAPTIVE_OCS;
  19844. wmi_service[wmi_service_ba_ssn_support] = WMI_SERVICE_BA_SSN_SUPPORT;
  19845. wmi_service[wmi_service_filter_ipsec_natkeepalive] =
  19846. WMI_SERVICE_FILTER_IPSEC_NATKEEPALIVE;
  19847. wmi_service[wmi_service_wlan_hb] = WMI_SERVICE_WLAN_HB;
  19848. wmi_service[wmi_service_lte_ant_share_support] =
  19849. WMI_SERVICE_LTE_ANT_SHARE_SUPPORT;
  19850. wmi_service[wmi_service_batch_scan] = WMI_SERVICE_BATCH_SCAN;
  19851. wmi_service[wmi_service_qpower] = WMI_SERVICE_QPOWER;
  19852. wmi_service[wmi_service_plmreq] = WMI_SERVICE_PLMREQ;
  19853. wmi_service[wmi_service_thermal_mgmt] = WMI_SERVICE_THERMAL_MGMT;
  19854. wmi_service[wmi_service_rmc] = WMI_SERVICE_RMC;
  19855. wmi_service[wmi_service_mhf_offload] = WMI_SERVICE_MHF_OFFLOAD;
  19856. wmi_service[wmi_service_coex_sar] = WMI_SERVICE_COEX_SAR;
  19857. wmi_service[wmi_service_bcn_txrate_override] =
  19858. WMI_SERVICE_BCN_TXRATE_OVERRIDE;
  19859. wmi_service[wmi_service_nan] = WMI_SERVICE_NAN;
  19860. wmi_service[wmi_service_l1ss_stat] = WMI_SERVICE_L1SS_STAT;
  19861. wmi_service[wmi_service_estimate_linkspeed] =
  19862. WMI_SERVICE_ESTIMATE_LINKSPEED;
  19863. wmi_service[wmi_service_obss_scan] = WMI_SERVICE_OBSS_SCAN;
  19864. wmi_service[wmi_service_tdls_offchan] = WMI_SERVICE_TDLS_OFFCHAN;
  19865. wmi_service[wmi_service_tdls_uapsd_buffer_sta] =
  19866. WMI_SERVICE_TDLS_UAPSD_BUFFER_STA;
  19867. wmi_service[wmi_service_tdls_uapsd_sleep_sta] =
  19868. WMI_SERVICE_TDLS_UAPSD_SLEEP_STA;
  19869. wmi_service[wmi_service_ibss_pwrsave] = WMI_SERVICE_IBSS_PWRSAVE;
  19870. wmi_service[wmi_service_lpass] = WMI_SERVICE_LPASS;
  19871. wmi_service[wmi_service_extscan] = WMI_SERVICE_EXTSCAN;
  19872. wmi_service[wmi_service_d0wow] = WMI_SERVICE_D0WOW;
  19873. wmi_service[wmi_service_hsoffload] = WMI_SERVICE_HSOFFLOAD;
  19874. wmi_service[wmi_service_roam_ho_offload] = WMI_SERVICE_ROAM_HO_OFFLOAD;
  19875. wmi_service[wmi_service_rx_full_reorder] = WMI_SERVICE_RX_FULL_REORDER;
  19876. wmi_service[wmi_service_dhcp_offload] = WMI_SERVICE_DHCP_OFFLOAD;
  19877. wmi_service[wmi_service_sta_rx_ipa_offload_support] =
  19878. WMI_SERVICE_STA_RX_IPA_OFFLOAD_SUPPORT;
  19879. wmi_service[wmi_service_mdns_offload] = WMI_SERVICE_MDNS_OFFLOAD;
  19880. wmi_service[wmi_service_sap_auth_offload] =
  19881. WMI_SERVICE_SAP_AUTH_OFFLOAD;
  19882. wmi_service[wmi_service_dual_band_simultaneous_support] =
  19883. WMI_SERVICE_DUAL_BAND_SIMULTANEOUS_SUPPORT;
  19884. wmi_service[wmi_service_ocb] = WMI_SERVICE_OCB;
  19885. wmi_service[wmi_service_ap_arpns_offload] =
  19886. WMI_SERVICE_AP_ARPNS_OFFLOAD;
  19887. wmi_service[wmi_service_per_band_chainmask_support] =
  19888. WMI_SERVICE_PER_BAND_CHAINMASK_SUPPORT;
  19889. wmi_service[wmi_service_packet_filter_offload] =
  19890. WMI_SERVICE_PACKET_FILTER_OFFLOAD;
  19891. wmi_service[wmi_service_mgmt_tx_htt] = WMI_SERVICE_MGMT_TX_HTT;
  19892. wmi_service[wmi_service_mgmt_tx_wmi] = WMI_SERVICE_MGMT_TX_WMI;
  19893. wmi_service[wmi_service_ext_msg] = WMI_SERVICE_EXT_MSG;
  19894. wmi_service[wmi_service_mawc] = WMI_SERVICE_MAWC;
  19895. wmi_service[wmi_service_multiple_vdev_restart] =
  19896. WMI_SERVICE_MULTIPLE_VDEV_RESTART;
  19897. wmi_service[wmi_service_roam_offload] = WMI_SERVICE_UNAVAILABLE;
  19898. wmi_service[wmi_service_ratectrl] = WMI_SERVICE_UNAVAILABLE;
  19899. wmi_service[wmi_service_smart_antenna_sw_support] =
  19900. WMI_SERVICE_UNAVAILABLE;
  19901. wmi_service[wmi_service_smart_antenna_hw_support] =
  19902. WMI_SERVICE_UNAVAILABLE;
  19903. wmi_service[wmi_service_enhanced_proxy_sta] = WMI_SERVICE_UNAVAILABLE;
  19904. wmi_service[wmi_service_tt] = WMI_SERVICE_THERM_THROT;
  19905. wmi_service[wmi_service_atf] = WMI_SERVICE_ATF;
  19906. wmi_service[wmi_service_peer_caching] = WMI_SERVICE_UNAVAILABLE;
  19907. wmi_service[wmi_service_coex_gpio] = WMI_SERVICE_UNAVAILABLE;
  19908. wmi_service[wmi_service_aux_spectral_intf] = WMI_SERVICE_UNAVAILABLE;
  19909. wmi_service[wmi_service_aux_chan_load_intf] = WMI_SERVICE_UNAVAILABLE;
  19910. wmi_service[wmi_service_bss_channel_info_64] = WMI_SERVICE_UNAVAILABLE;
  19911. wmi_service[wmi_service_ext_res_cfg_support] = WMI_SERVICE_UNAVAILABLE;
  19912. wmi_service[wmi_service_mesh] = WMI_SERVICE_UNAVAILABLE;
  19913. wmi_service[wmi_service_restrt_chnl_support] = WMI_SERVICE_UNAVAILABLE;
  19914. wmi_service[wmi_service_peer_stats] = WMI_SERVICE_UNAVAILABLE;
  19915. wmi_service[wmi_service_mesh_11s] = WMI_SERVICE_UNAVAILABLE;
  19916. wmi_service[wmi_service_periodic_chan_stat_support] =
  19917. WMI_SERVICE_PERIODIC_CHAN_STAT_SUPPORT;
  19918. wmi_service[wmi_service_tx_mode_push_only] = WMI_SERVICE_UNAVAILABLE;
  19919. wmi_service[wmi_service_tx_mode_push_pull] = WMI_SERVICE_UNAVAILABLE;
  19920. wmi_service[wmi_service_tx_mode_dynamic] = WMI_SERVICE_UNAVAILABLE;
  19921. wmi_service[wmi_service_btcoex_duty_cycle] = WMI_SERVICE_UNAVAILABLE;
  19922. wmi_service[wmi_service_4_wire_coex_support] = WMI_SERVICE_UNAVAILABLE;
  19923. wmi_service[wmi_service_mesh] = WMI_SERVICE_ENTERPRISE_MESH;
  19924. wmi_service[wmi_service_peer_assoc_conf] = WMI_SERVICE_PEER_ASSOC_CONF;
  19925. wmi_service[wmi_service_egap] = WMI_SERVICE_EGAP;
  19926. wmi_service[wmi_service_sta_pmf_offload] = WMI_SERVICE_STA_PMF_OFFLOAD;
  19927. wmi_service[wmi_service_unified_wow_capability] =
  19928. WMI_SERVICE_UNIFIED_WOW_CAPABILITY;
  19929. wmi_service[wmi_service_enterprise_mesh] = WMI_SERVICE_ENTERPRISE_MESH;
  19930. wmi_service[wmi_service_apf_offload] = WMI_SERVICE_BPF_OFFLOAD;
  19931. wmi_service[wmi_service_sync_delete_cmds] =
  19932. WMI_SERVICE_SYNC_DELETE_CMDS;
  19933. wmi_service[wmi_service_ratectrl_limit_max_min_rates] =
  19934. WMI_SERVICE_RATECTRL_LIMIT_MAX_MIN_RATES;
  19935. wmi_service[wmi_service_nan_data] = WMI_SERVICE_NAN_DATA;
  19936. wmi_service[wmi_service_nan_rtt] = WMI_SERVICE_NAN_RTT;
  19937. wmi_service[wmi_service_11ax] = WMI_SERVICE_11AX;
  19938. wmi_service[wmi_service_deprecated_replace] =
  19939. WMI_SERVICE_DEPRECATED_REPLACE;
  19940. wmi_service[wmi_service_tdls_conn_tracker_in_host_mode] =
  19941. WMI_SERVICE_TDLS_CONN_TRACKER_IN_HOST_MODE;
  19942. wmi_service[wmi_service_enhanced_mcast_filter] =
  19943. WMI_SERVICE_ENHANCED_MCAST_FILTER;
  19944. wmi_service[wmi_service_half_rate_quarter_rate_support] =
  19945. WMI_SERVICE_HALF_RATE_QUARTER_RATE_SUPPORT;
  19946. wmi_service[wmi_service_vdev_rx_filter] = WMI_SERVICE_VDEV_RX_FILTER;
  19947. wmi_service[wmi_service_p2p_listen_offload_support] =
  19948. WMI_SERVICE_P2P_LISTEN_OFFLOAD_SUPPORT;
  19949. wmi_service[wmi_service_mark_first_wakeup_packet] =
  19950. WMI_SERVICE_MARK_FIRST_WAKEUP_PACKET;
  19951. wmi_service[wmi_service_multiple_mcast_filter_set] =
  19952. WMI_SERVICE_MULTIPLE_MCAST_FILTER_SET;
  19953. wmi_service[wmi_service_host_managed_rx_reorder] =
  19954. WMI_SERVICE_HOST_MANAGED_RX_REORDER;
  19955. wmi_service[wmi_service_flash_rdwr_support] =
  19956. WMI_SERVICE_FLASH_RDWR_SUPPORT;
  19957. wmi_service[wmi_service_wlan_stats_report] =
  19958. WMI_SERVICE_WLAN_STATS_REPORT;
  19959. wmi_service[wmi_service_tx_msdu_id_new_partition_support] =
  19960. WMI_SERVICE_TX_MSDU_ID_NEW_PARTITION_SUPPORT;
  19961. wmi_service[wmi_service_dfs_phyerr_offload] =
  19962. WMI_SERVICE_DFS_PHYERR_OFFLOAD;
  19963. wmi_service[wmi_service_rcpi_support] = WMI_SERVICE_RCPI_SUPPORT;
  19964. wmi_service[wmi_service_fw_mem_dump_support] =
  19965. WMI_SERVICE_FW_MEM_DUMP_SUPPORT;
  19966. wmi_service[wmi_service_peer_stats_info] = WMI_SERVICE_PEER_STATS_INFO;
  19967. wmi_service[wmi_service_regulatory_db] = WMI_SERVICE_REGULATORY_DB;
  19968. wmi_service[wmi_service_11d_offload] = WMI_SERVICE_11D_OFFLOAD;
  19969. wmi_service[wmi_service_hw_data_filtering] =
  19970. WMI_SERVICE_HW_DATA_FILTERING;
  19971. wmi_service[wmi_service_pkt_routing] = WMI_SERVICE_PKT_ROUTING;
  19972. wmi_service[wmi_service_offchan_tx_wmi] = WMI_SERVICE_OFFCHAN_TX_WMI;
  19973. wmi_service[wmi_service_chan_load_info] = WMI_SERVICE_CHAN_LOAD_INFO;
  19974. wmi_service[wmi_service_extended_nss_support] =
  19975. WMI_SERVICE_EXTENDED_NSS_SUPPORT;
  19976. wmi_service[wmi_service_widebw_scan] = WMI_SERVICE_SCAN_PHYMODE_SUPPORT;
  19977. wmi_service[wmi_service_bcn_offload_start_stop_support] =
  19978. WMI_SERVICE_BCN_OFFLOAD_START_STOP_SUPPORT;
  19979. wmi_service[wmi_service_offchan_data_tid_support] =
  19980. WMI_SERVICE_OFFCHAN_DATA_TID_SUPPORT;
  19981. wmi_service[wmi_service_support_dma] =
  19982. WMI_SERVICE_SUPPORT_DIRECT_DMA;
  19983. wmi_service[wmi_service_8ss_tx_bfee] = WMI_SERVICE_8SS_TX_BFEE;
  19984. wmi_service[wmi_service_fils_support] = WMI_SERVICE_FILS_SUPPORT;
  19985. wmi_service[wmi_service_mawc_support] = WMI_SERVICE_MAWC_SUPPORT;
  19986. wmi_service[wmi_service_wow_wakeup_by_timer_pattern] =
  19987. WMI_SERVICE_WOW_WAKEUP_BY_TIMER_PATTERN;
  19988. wmi_service[wmi_service_11k_neighbour_report_support] =
  19989. WMI_SERVICE_11K_NEIGHBOUR_REPORT_SUPPORT;
  19990. wmi_service[wmi_service_ap_obss_detection_offload] =
  19991. WMI_SERVICE_AP_OBSS_DETECTION_OFFLOAD;
  19992. wmi_service[wmi_service_bss_color_offload] =
  19993. WMI_SERVICE_BSS_COLOR_OFFLOAD;
  19994. wmi_service[wmi_service_gmac_offload_support] =
  19995. WMI_SERVICE_GMAC_OFFLOAD_SUPPORT;
  19996. wmi_service[wmi_service_dual_beacon_on_single_mac_scc_support] =
  19997. WMI_SERVICE_DUAL_BEACON_ON_SINGLE_MAC_SCC_SUPPORT;
  19998. wmi_service[wmi_service_dual_beacon_on_single_mac_mcc_support] =
  19999. WMI_SERVICE_DUAL_BEACON_ON_SINGLE_MAC_MCC_SUPPORT;
  20000. wmi_service[wmi_service_twt_requestor] = WMI_SERVICE_STA_TWT;
  20001. wmi_service[wmi_service_twt_responder] = WMI_SERVICE_AP_TWT;
  20002. wmi_service[wmi_service_listen_interval_offload_support] =
  20003. WMI_SERVICE_LISTEN_INTERVAL_OFFLOAD_SUPPORT;
  20004. }
  20005. #ifndef CONFIG_MCL
  20006. /**
  20007. * populate_pdev_param_tlv() - populates pdev params
  20008. *
  20009. * @param pdev_param: Pointer to hold pdev params
  20010. * Return: None
  20011. */
  20012. static void populate_pdev_param_tlv(uint32_t *pdev_param)
  20013. {
  20014. pdev_param[wmi_pdev_param_tx_chain_mask] = WMI_PDEV_PARAM_TX_CHAIN_MASK;
  20015. pdev_param[wmi_pdev_param_rx_chain_mask] = WMI_PDEV_PARAM_RX_CHAIN_MASK;
  20016. pdev_param[wmi_pdev_param_txpower_limit2g] =
  20017. WMI_PDEV_PARAM_TXPOWER_LIMIT2G;
  20018. pdev_param[wmi_pdev_param_txpower_limit5g] =
  20019. WMI_PDEV_PARAM_TXPOWER_LIMIT5G;
  20020. pdev_param[wmi_pdev_param_txpower_scale] = WMI_PDEV_PARAM_TXPOWER_SCALE;
  20021. pdev_param[wmi_pdev_param_beacon_gen_mode] =
  20022. WMI_PDEV_PARAM_BEACON_GEN_MODE;
  20023. pdev_param[wmi_pdev_param_beacon_tx_mode] =
  20024. WMI_PDEV_PARAM_BEACON_TX_MODE;
  20025. pdev_param[wmi_pdev_param_resmgr_offchan_mode] =
  20026. WMI_PDEV_PARAM_RESMGR_OFFCHAN_MODE;
  20027. pdev_param[wmi_pdev_param_protection_mode] =
  20028. WMI_PDEV_PARAM_PROTECTION_MODE;
  20029. pdev_param[wmi_pdev_param_dynamic_bw] = WMI_PDEV_PARAM_DYNAMIC_BW;
  20030. pdev_param[wmi_pdev_param_non_agg_sw_retry_th] =
  20031. WMI_PDEV_PARAM_NON_AGG_SW_RETRY_TH;
  20032. pdev_param[wmi_pdev_param_agg_sw_retry_th] =
  20033. WMI_PDEV_PARAM_AGG_SW_RETRY_TH;
  20034. pdev_param[wmi_pdev_param_sta_kickout_th] =
  20035. WMI_PDEV_PARAM_STA_KICKOUT_TH;
  20036. pdev_param[wmi_pdev_param_ac_aggrsize_scaling] =
  20037. WMI_PDEV_PARAM_AC_AGGRSIZE_SCALING;
  20038. pdev_param[wmi_pdev_param_ltr_enable] = WMI_PDEV_PARAM_LTR_ENABLE;
  20039. pdev_param[wmi_pdev_param_ltr_ac_latency_be] =
  20040. WMI_PDEV_PARAM_LTR_AC_LATENCY_BE;
  20041. pdev_param[wmi_pdev_param_ltr_ac_latency_bk] =
  20042. WMI_PDEV_PARAM_LTR_AC_LATENCY_BK;
  20043. pdev_param[wmi_pdev_param_ltr_ac_latency_vi] =
  20044. WMI_PDEV_PARAM_LTR_AC_LATENCY_VI;
  20045. pdev_param[wmi_pdev_param_ltr_ac_latency_vo] =
  20046. WMI_PDEV_PARAM_LTR_AC_LATENCY_VO;
  20047. pdev_param[wmi_pdev_param_ltr_ac_latency_timeout] =
  20048. WMI_PDEV_PARAM_LTR_AC_LATENCY_TIMEOUT;
  20049. pdev_param[wmi_pdev_param_ltr_sleep_override] =
  20050. WMI_PDEV_PARAM_LTR_SLEEP_OVERRIDE;
  20051. pdev_param[wmi_pdev_param_ltr_rx_override] =
  20052. WMI_PDEV_PARAM_LTR_RX_OVERRIDE;
  20053. pdev_param[wmi_pdev_param_ltr_tx_activity_timeout] =
  20054. WMI_PDEV_PARAM_LTR_TX_ACTIVITY_TIMEOUT;
  20055. pdev_param[wmi_pdev_param_l1ss_enable] = WMI_PDEV_PARAM_L1SS_ENABLE;
  20056. pdev_param[wmi_pdev_param_dsleep_enable] = WMI_PDEV_PARAM_DSLEEP_ENABLE;
  20057. pdev_param[wmi_pdev_param_pcielp_txbuf_flush] =
  20058. WMI_PDEV_PARAM_PCIELP_TXBUF_FLUSH;
  20059. pdev_param[wmi_pdev_param_pcielp_txbuf_watermark] =
  20060. WMI_PDEV_PARAM_PCIELP_TXBUF_WATERMARK;
  20061. pdev_param[wmi_pdev_param_pcielp_txbuf_tmo_en] =
  20062. WMI_PDEV_PARAM_PCIELP_TXBUF_TMO_EN;
  20063. pdev_param[wmi_pdev_param_pcielp_txbuf_tmo_value] =
  20064. WMI_PDEV_PARAM_PCIELP_TXBUF_TMO_VALUE;
  20065. pdev_param[wmi_pdev_param_pdev_stats_update_period] =
  20066. WMI_PDEV_PARAM_PDEV_STATS_UPDATE_PERIOD;
  20067. pdev_param[wmi_pdev_param_vdev_stats_update_period] =
  20068. WMI_PDEV_PARAM_VDEV_STATS_UPDATE_PERIOD;
  20069. pdev_param[wmi_pdev_param_peer_stats_update_period] =
  20070. WMI_PDEV_PARAM_PEER_STATS_UPDATE_PERIOD;
  20071. pdev_param[wmi_pdev_param_bcnflt_stats_update_period] =
  20072. WMI_PDEV_PARAM_BCNFLT_STATS_UPDATE_PERIOD;
  20073. pdev_param[wmi_pdev_param_pmf_qos] = WMI_PDEV_PARAM_PMF_QOS;
  20074. pdev_param[wmi_pdev_param_arp_ac_override] =
  20075. WMI_PDEV_PARAM_ARP_AC_OVERRIDE;
  20076. pdev_param[wmi_pdev_param_dcs] = WMI_PDEV_PARAM_DCS;
  20077. pdev_param[wmi_pdev_param_ani_enable] = WMI_PDEV_PARAM_ANI_ENABLE;
  20078. pdev_param[wmi_pdev_param_ani_poll_period] =
  20079. WMI_PDEV_PARAM_ANI_POLL_PERIOD;
  20080. pdev_param[wmi_pdev_param_ani_listen_period] =
  20081. WMI_PDEV_PARAM_ANI_LISTEN_PERIOD;
  20082. pdev_param[wmi_pdev_param_ani_ofdm_level] =
  20083. WMI_PDEV_PARAM_ANI_OFDM_LEVEL;
  20084. pdev_param[wmi_pdev_param_ani_cck_level] = WMI_PDEV_PARAM_ANI_CCK_LEVEL;
  20085. pdev_param[wmi_pdev_param_dyntxchain] = WMI_PDEV_PARAM_DYNTXCHAIN;
  20086. pdev_param[wmi_pdev_param_proxy_sta] = WMI_PDEV_PARAM_PROXY_STA;
  20087. pdev_param[wmi_pdev_param_idle_ps_config] =
  20088. WMI_PDEV_PARAM_IDLE_PS_CONFIG;
  20089. pdev_param[wmi_pdev_param_power_gating_sleep] =
  20090. WMI_PDEV_PARAM_POWER_GATING_SLEEP;
  20091. pdev_param[wmi_pdev_param_rfkill_enable] = WMI_PDEV_PARAM_RFKILL_ENABLE;
  20092. pdev_param[wmi_pdev_param_burst_dur] = WMI_PDEV_PARAM_BURST_DUR;
  20093. pdev_param[wmi_pdev_param_burst_enable] = WMI_PDEV_PARAM_BURST_ENABLE;
  20094. pdev_param[wmi_pdev_param_hw_rfkill_config] =
  20095. WMI_PDEV_PARAM_HW_RFKILL_CONFIG;
  20096. pdev_param[wmi_pdev_param_low_power_rf_enable] =
  20097. WMI_PDEV_PARAM_LOW_POWER_RF_ENABLE;
  20098. pdev_param[wmi_pdev_param_l1ss_track] = WMI_PDEV_PARAM_L1SS_TRACK;
  20099. pdev_param[wmi_pdev_param_hyst_en] = WMI_PDEV_PARAM_HYST_EN;
  20100. pdev_param[wmi_pdev_param_power_collapse_enable] =
  20101. WMI_PDEV_PARAM_POWER_COLLAPSE_ENABLE;
  20102. pdev_param[wmi_pdev_param_led_sys_state] = WMI_PDEV_PARAM_LED_SYS_STATE;
  20103. pdev_param[wmi_pdev_param_led_enable] = WMI_PDEV_PARAM_LED_ENABLE;
  20104. pdev_param[wmi_pdev_param_audio_over_wlan_latency] =
  20105. WMI_PDEV_PARAM_AUDIO_OVER_WLAN_LATENCY;
  20106. pdev_param[wmi_pdev_param_audio_over_wlan_enable] =
  20107. WMI_PDEV_PARAM_AUDIO_OVER_WLAN_ENABLE;
  20108. pdev_param[wmi_pdev_param_whal_mib_stats_update_enable] =
  20109. WMI_PDEV_PARAM_WHAL_MIB_STATS_UPDATE_ENABLE;
  20110. pdev_param[wmi_pdev_param_vdev_rate_stats_update_period] =
  20111. WMI_PDEV_PARAM_VDEV_RATE_STATS_UPDATE_PERIOD;
  20112. pdev_param[wmi_pdev_param_cts_cbw] = WMI_PDEV_PARAM_CTS_CBW;
  20113. pdev_param[wmi_pdev_param_wnts_config] = WMI_PDEV_PARAM_WNTS_CONFIG;
  20114. pdev_param[wmi_pdev_param_adaptive_early_rx_enable] =
  20115. WMI_PDEV_PARAM_ADAPTIVE_EARLY_RX_ENABLE;
  20116. pdev_param[wmi_pdev_param_adaptive_early_rx_min_sleep_slop] =
  20117. WMI_PDEV_PARAM_ADAPTIVE_EARLY_RX_MIN_SLEEP_SLOP;
  20118. pdev_param[wmi_pdev_param_adaptive_early_rx_inc_dec_step] =
  20119. WMI_PDEV_PARAM_ADAPTIVE_EARLY_RX_INC_DEC_STEP;
  20120. pdev_param[wmi_pdev_param_early_rx_fix_sleep_slop] =
  20121. WMI_PDEV_PARAM_EARLY_RX_FIX_SLEEP_SLOP;
  20122. pdev_param[wmi_pdev_param_bmiss_based_adaptive_bto_enable] =
  20123. WMI_PDEV_PARAM_BMISS_BASED_ADAPTIVE_BTO_ENABLE;
  20124. pdev_param[wmi_pdev_param_bmiss_bto_min_bcn_timeout] =
  20125. WMI_PDEV_PARAM_BMISS_BTO_MIN_BCN_TIMEOUT;
  20126. pdev_param[wmi_pdev_param_bmiss_bto_inc_dec_step] =
  20127. WMI_PDEV_PARAM_BMISS_BTO_INC_DEC_STEP;
  20128. pdev_param[wmi_pdev_param_bto_fix_bcn_timeout] =
  20129. WMI_PDEV_PARAM_BTO_FIX_BCN_TIMEOUT;
  20130. pdev_param[wmi_pdev_param_ce_based_adaptive_bto_enable] =
  20131. WMI_PDEV_PARAM_CE_BASED_ADAPTIVE_BTO_ENABLE;
  20132. pdev_param[wmi_pdev_param_ce_bto_combo_ce_value] =
  20133. WMI_PDEV_PARAM_CE_BTO_COMBO_CE_VALUE;
  20134. pdev_param[wmi_pdev_param_tx_chain_mask_2g] =
  20135. WMI_PDEV_PARAM_TX_CHAIN_MASK_2G;
  20136. pdev_param[wmi_pdev_param_rx_chain_mask_2g] =
  20137. WMI_PDEV_PARAM_RX_CHAIN_MASK_2G;
  20138. pdev_param[wmi_pdev_param_tx_chain_mask_5g] =
  20139. WMI_PDEV_PARAM_TX_CHAIN_MASK_5G;
  20140. pdev_param[wmi_pdev_param_rx_chain_mask_5g] =
  20141. WMI_PDEV_PARAM_RX_CHAIN_MASK_5G;
  20142. pdev_param[wmi_pdev_param_tx_chain_mask_cck] =
  20143. WMI_PDEV_PARAM_TX_CHAIN_MASK_CCK;
  20144. pdev_param[wmi_pdev_param_tx_chain_mask_1ss] =
  20145. WMI_PDEV_PARAM_TX_CHAIN_MASK_1SS;
  20146. pdev_param[wmi_pdev_param_rx_filter] = WMI_PDEV_PARAM_RX_FILTER;
  20147. pdev_param[wmi_pdev_set_mcast_to_ucast_tid] =
  20148. WMI_PDEV_SET_MCAST_TO_UCAST_TID;
  20149. pdev_param[wmi_pdev_param_mgmt_retry_limit] =
  20150. WMI_PDEV_PARAM_MGMT_RETRY_LIMIT;
  20151. pdev_param[wmi_pdev_param_aggr_burst] = WMI_PDEV_PARAM_AGGR_BURST;
  20152. pdev_param[wmi_pdev_peer_sta_ps_statechg_enable] =
  20153. WMI_PDEV_PEER_STA_PS_STATECHG_ENABLE;
  20154. pdev_param[wmi_pdev_param_proxy_sta_mode] =
  20155. WMI_PDEV_PARAM_PROXY_STA_MODE;
  20156. pdev_param[wmi_pdev_param_mu_group_policy] =
  20157. WMI_PDEV_PARAM_MU_GROUP_POLICY;
  20158. pdev_param[wmi_pdev_param_noise_detection] =
  20159. WMI_PDEV_PARAM_NOISE_DETECTION;
  20160. pdev_param[wmi_pdev_param_noise_threshold] =
  20161. WMI_PDEV_PARAM_NOISE_THRESHOLD;
  20162. pdev_param[wmi_pdev_param_dpd_enable] = WMI_PDEV_PARAM_DPD_ENABLE;
  20163. pdev_param[wmi_pdev_param_set_mcast_bcast_echo] =
  20164. WMI_PDEV_PARAM_SET_MCAST_BCAST_ECHO;
  20165. pdev_param[wmi_pdev_param_atf_strict_sch] =
  20166. WMI_PDEV_PARAM_ATF_STRICT_SCH;
  20167. pdev_param[wmi_pdev_param_atf_sched_duration] =
  20168. WMI_PDEV_PARAM_ATF_SCHED_DURATION;
  20169. pdev_param[wmi_pdev_param_ant_plzn] = WMI_PDEV_PARAM_ANT_PLZN;
  20170. pdev_param[wmi_pdev_param_sensitivity_level] =
  20171. WMI_PDEV_PARAM_SENSITIVITY_LEVEL;
  20172. pdev_param[wmi_pdev_param_signed_txpower_2g] =
  20173. WMI_PDEV_PARAM_SIGNED_TXPOWER_2G;
  20174. pdev_param[wmi_pdev_param_signed_txpower_5g] =
  20175. WMI_PDEV_PARAM_SIGNED_TXPOWER_5G;
  20176. pdev_param[wmi_pdev_param_enable_per_tid_amsdu] =
  20177. WMI_PDEV_PARAM_ENABLE_PER_TID_AMSDU;
  20178. pdev_param[wmi_pdev_param_enable_per_tid_ampdu] =
  20179. WMI_PDEV_PARAM_ENABLE_PER_TID_AMPDU;
  20180. pdev_param[wmi_pdev_param_cca_threshold] =
  20181. WMI_PDEV_PARAM_CCA_THRESHOLD;
  20182. pdev_param[wmi_pdev_param_rts_fixed_rate] =
  20183. WMI_PDEV_PARAM_RTS_FIXED_RATE;
  20184. pdev_param[wmi_pdev_param_cal_period] = WMI_UNAVAILABLE_PARAM;
  20185. pdev_param[wmi_pdev_param_pdev_reset] = WMI_PDEV_PARAM_PDEV_RESET;
  20186. pdev_param[wmi_pdev_param_wapi_mbssid_offset] =
  20187. WMI_PDEV_PARAM_WAPI_MBSSID_OFFSET;
  20188. pdev_param[wmi_pdev_param_arp_srcaddr] =
  20189. WMI_PDEV_PARAM_ARP_DBG_SRCADDR;
  20190. pdev_param[wmi_pdev_param_arp_dstaddr] =
  20191. WMI_PDEV_PARAM_ARP_DBG_DSTADDR;
  20192. pdev_param[wmi_pdev_param_txpower_decr_db] =
  20193. WMI_PDEV_PARAM_TXPOWER_DECR_DB;
  20194. pdev_param[wmi_pdev_param_rx_batchmode] = WMI_UNAVAILABLE_PARAM;
  20195. pdev_param[wmi_pdev_param_packet_aggr_delay] = WMI_UNAVAILABLE_PARAM;
  20196. pdev_param[wmi_pdev_param_atf_obss_noise_sch] =
  20197. WMI_PDEV_PARAM_ATF_OBSS_NOISE_SCH;
  20198. pdev_param[wmi_pdev_param_atf_obss_noise_scaling_factor] =
  20199. WMI_PDEV_PARAM_ATF_OBSS_NOISE_SCALING_FACTOR;
  20200. pdev_param[wmi_pdev_param_cust_txpower_scale] =
  20201. WMI_PDEV_PARAM_CUST_TXPOWER_SCALE;
  20202. pdev_param[wmi_pdev_param_atf_dynamic_enable] =
  20203. WMI_PDEV_PARAM_ATF_DYNAMIC_ENABLE;
  20204. pdev_param[wmi_pdev_param_atf_ssid_group_policy] =
  20205. WMI_UNAVAILABLE_PARAM;
  20206. pdev_param[wmi_pdev_param_igmpmld_override] =
  20207. WMI_PDEV_PARAM_IGMPMLD_AC_OVERRIDE;
  20208. pdev_param[wmi_pdev_param_igmpmld_tid] =
  20209. WMI_PDEV_PARAM_IGMPMLD_AC_OVERRIDE;
  20210. pdev_param[wmi_pdev_param_antenna_gain] = WMI_PDEV_PARAM_ANTENNA_GAIN;
  20211. pdev_param[wmi_pdev_param_block_interbss] =
  20212. WMI_PDEV_PARAM_BLOCK_INTERBSS;
  20213. pdev_param[wmi_pdev_param_set_disable_reset_cmdid] =
  20214. WMI_PDEV_PARAM_SET_DISABLE_RESET_CMDID;
  20215. pdev_param[wmi_pdev_param_set_msdu_ttl_cmdid] =
  20216. WMI_PDEV_PARAM_SET_MSDU_TTL_CMDID;
  20217. pdev_param[wmi_pdev_param_txbf_sound_period_cmdid] =
  20218. WMI_PDEV_PARAM_TXBF_SOUND_PERIOD_CMDID;
  20219. pdev_param[wmi_pdev_param_set_burst_mode_cmdid] =
  20220. WMI_PDEV_PARAM_SET_BURST_MODE_CMDID;
  20221. pdev_param[wmi_pdev_param_en_stats] = WMI_PDEV_PARAM_EN_STATS;
  20222. pdev_param[wmi_pdev_param_mesh_mcast_enable] =
  20223. WMI_PDEV_PARAM_MESH_MCAST_ENABLE;
  20224. pdev_param[wmi_pdev_param_set_promisc_mode_cmdid] =
  20225. WMI_PDEV_PARAM_SET_PROMISC_MODE_CMDID;
  20226. pdev_param[wmi_pdev_param_set_ppdu_duration_cmdid] =
  20227. WMI_PDEV_PARAM_SET_PPDU_DURATION_CMDID;
  20228. pdev_param[wmi_pdev_param_remove_mcast2ucast_buffer] =
  20229. WMI_PDEV_PARAM_REMOVE_MCAST2UCAST_BUFFER;
  20230. pdev_param[wmi_pdev_param_set_mcast2ucast_buffer] =
  20231. WMI_PDEV_PARAM_SET_MCAST2UCAST_BUFFER;
  20232. pdev_param[wmi_pdev_param_set_mcast2ucast_mode] =
  20233. WMI_PDEV_PARAM_SET_MCAST2UCAST_MODE;
  20234. pdev_param[wmi_pdev_param_smart_antenna_default_antenna] =
  20235. WMI_PDEV_PARAM_SMART_ANTENNA_DEFAULT_ANTENNA;
  20236. pdev_param[wmi_pdev_param_fast_channel_reset] =
  20237. WMI_PDEV_PARAM_FAST_CHANNEL_RESET;
  20238. pdev_param[wmi_pdev_param_rx_decap_mode] = WMI_PDEV_PARAM_RX_DECAP_MODE;
  20239. pdev_param[wmi_pdev_param_tx_ack_timeout] = WMI_PDEV_PARAM_ACK_TIMEOUT;
  20240. pdev_param[wmi_pdev_param_cck_tx_enable] = WMI_PDEV_PARAM_CCK_TX_ENABLE;
  20241. }
  20242. /**
  20243. * populate_vdev_param_tlv() - populates vdev params
  20244. *
  20245. * @param vdev_param: Pointer to hold vdev params
  20246. * Return: None
  20247. */
  20248. static void populate_vdev_param_tlv(uint32_t *vdev_param)
  20249. {
  20250. vdev_param[wmi_vdev_param_rts_threshold] = WMI_VDEV_PARAM_RTS_THRESHOLD;
  20251. vdev_param[wmi_vdev_param_fragmentation_threshold] =
  20252. WMI_VDEV_PARAM_FRAGMENTATION_THRESHOLD;
  20253. vdev_param[wmi_vdev_param_beacon_interval] =
  20254. WMI_VDEV_PARAM_BEACON_INTERVAL;
  20255. vdev_param[wmi_vdev_param_listen_interval] =
  20256. WMI_VDEV_PARAM_LISTEN_INTERVAL;
  20257. vdev_param[wmi_vdev_param_multicast_rate] =
  20258. WMI_VDEV_PARAM_MULTICAST_RATE;
  20259. vdev_param[wmi_vdev_param_mgmt_tx_rate] = WMI_VDEV_PARAM_MGMT_TX_RATE;
  20260. vdev_param[wmi_vdev_param_slot_time] = WMI_VDEV_PARAM_SLOT_TIME;
  20261. vdev_param[wmi_vdev_param_preamble] = WMI_VDEV_PARAM_PREAMBLE;
  20262. vdev_param[wmi_vdev_param_swba_time] = WMI_VDEV_PARAM_SWBA_TIME;
  20263. vdev_param[wmi_vdev_stats_update_period] = WMI_VDEV_STATS_UPDATE_PERIOD;
  20264. vdev_param[wmi_vdev_pwrsave_ageout_time] = WMI_VDEV_PWRSAVE_AGEOUT_TIME;
  20265. vdev_param[wmi_vdev_host_swba_interval] = WMI_VDEV_HOST_SWBA_INTERVAL;
  20266. vdev_param[wmi_vdev_param_dtim_period] = WMI_VDEV_PARAM_DTIM_PERIOD;
  20267. vdev_param[wmi_vdev_oc_scheduler_air_time_limit] =
  20268. WMI_VDEV_OC_SCHEDULER_AIR_TIME_LIMIT;
  20269. vdev_param[wmi_vdev_param_wds] = WMI_VDEV_PARAM_WDS;
  20270. vdev_param[wmi_vdev_param_atim_window] = WMI_VDEV_PARAM_ATIM_WINDOW;
  20271. vdev_param[wmi_vdev_param_bmiss_count_max] =
  20272. WMI_VDEV_PARAM_BMISS_COUNT_MAX;
  20273. vdev_param[wmi_vdev_param_bmiss_first_bcnt] =
  20274. WMI_VDEV_PARAM_BMISS_FIRST_BCNT;
  20275. vdev_param[wmi_vdev_param_bmiss_final_bcnt] =
  20276. WMI_VDEV_PARAM_BMISS_FINAL_BCNT;
  20277. vdev_param[wmi_vdev_param_feature_wmm] = WMI_VDEV_PARAM_FEATURE_WMM;
  20278. vdev_param[wmi_vdev_param_chwidth] = WMI_VDEV_PARAM_CHWIDTH;
  20279. vdev_param[wmi_vdev_param_chextoffset] = WMI_VDEV_PARAM_CHEXTOFFSET;
  20280. vdev_param[wmi_vdev_param_disable_htprotection] =
  20281. WMI_VDEV_PARAM_DISABLE_HTPROTECTION;
  20282. vdev_param[wmi_vdev_param_sta_quickkickout] =
  20283. WMI_VDEV_PARAM_STA_QUICKKICKOUT;
  20284. vdev_param[wmi_vdev_param_mgmt_rate] = WMI_VDEV_PARAM_MGMT_RATE;
  20285. vdev_param[wmi_vdev_param_protection_mode] =
  20286. WMI_VDEV_PARAM_PROTECTION_MODE;
  20287. vdev_param[wmi_vdev_param_fixed_rate] = WMI_VDEV_PARAM_FIXED_RATE;
  20288. vdev_param[wmi_vdev_param_sgi] = WMI_VDEV_PARAM_SGI;
  20289. vdev_param[wmi_vdev_param_ldpc] = WMI_VDEV_PARAM_LDPC;
  20290. vdev_param[wmi_vdev_param_tx_stbc] = WMI_VDEV_PARAM_TX_STBC;
  20291. vdev_param[wmi_vdev_param_rx_stbc] = WMI_VDEV_PARAM_RX_STBC;
  20292. vdev_param[wmi_vdev_param_intra_bss_fwd] = WMI_VDEV_PARAM_INTRA_BSS_FWD;
  20293. vdev_param[wmi_vdev_param_def_keyid] = WMI_VDEV_PARAM_DEF_KEYID;
  20294. vdev_param[wmi_vdev_param_nss] = WMI_VDEV_PARAM_NSS;
  20295. vdev_param[wmi_vdev_param_bcast_data_rate] =
  20296. WMI_VDEV_PARAM_BCAST_DATA_RATE;
  20297. vdev_param[wmi_vdev_param_mcast_data_rate] =
  20298. WMI_VDEV_PARAM_MCAST_DATA_RATE;
  20299. vdev_param[wmi_vdev_param_mcast_indicate] =
  20300. WMI_VDEV_PARAM_MCAST_INDICATE;
  20301. vdev_param[wmi_vdev_param_dhcp_indicate] =
  20302. WMI_VDEV_PARAM_DHCP_INDICATE;
  20303. vdev_param[wmi_vdev_param_unknown_dest_indicate] =
  20304. WMI_VDEV_PARAM_UNKNOWN_DEST_INDICATE;
  20305. vdev_param[wmi_vdev_param_ap_keepalive_min_idle_inactive_time_secs] =
  20306. WMI_VDEV_PARAM_AP_KEEPALIVE_MIN_IDLE_INACTIVE_TIME_SECS;
  20307. vdev_param[wmi_vdev_param_ap_keepalive_max_idle_inactive_time_secs] =
  20308. WMI_VDEV_PARAM_AP_KEEPALIVE_MAX_IDLE_INACTIVE_TIME_SECS;
  20309. vdev_param[wmi_vdev_param_ap_keepalive_max_unresponsive_time_secs] =
  20310. WMI_VDEV_PARAM_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS;
  20311. vdev_param[wmi_vdev_param_ap_enable_nawds] =
  20312. WMI_VDEV_PARAM_AP_ENABLE_NAWDS;
  20313. vdev_param[wmi_vdev_param_enable_rtscts] = WMI_VDEV_PARAM_ENABLE_RTSCTS;
  20314. vdev_param[wmi_vdev_param_txbf] = WMI_VDEV_PARAM_TXBF;
  20315. vdev_param[wmi_vdev_param_packet_powersave] =
  20316. WMI_VDEV_PARAM_PACKET_POWERSAVE;
  20317. vdev_param[wmi_vdev_param_drop_unencry] = WMI_VDEV_PARAM_DROP_UNENCRY;
  20318. vdev_param[wmi_vdev_param_tx_encap_type] = WMI_VDEV_PARAM_TX_ENCAP_TYPE;
  20319. vdev_param[wmi_vdev_param_ap_detect_out_of_sync_sleeping_sta_time_secs] =
  20320. WMI_VDEV_PARAM_AP_DETECT_OUT_OF_SYNC_SLEEPING_STA_TIME_SECS;
  20321. vdev_param[wmi_vdev_param_early_rx_adjust_enable] =
  20322. WMI_VDEV_PARAM_EARLY_RX_ADJUST_ENABLE;
  20323. vdev_param[wmi_vdev_param_early_rx_tgt_bmiss_num] =
  20324. WMI_VDEV_PARAM_EARLY_RX_TGT_BMISS_NUM;
  20325. vdev_param[wmi_vdev_param_early_rx_bmiss_sample_cycle] =
  20326. WMI_VDEV_PARAM_EARLY_RX_BMISS_SAMPLE_CYCLE;
  20327. vdev_param[wmi_vdev_param_early_rx_slop_step] =
  20328. WMI_VDEV_PARAM_EARLY_RX_SLOP_STEP;
  20329. vdev_param[wmi_vdev_param_early_rx_init_slop] =
  20330. WMI_VDEV_PARAM_EARLY_RX_INIT_SLOP;
  20331. vdev_param[wmi_vdev_param_early_rx_adjust_pause] =
  20332. WMI_VDEV_PARAM_EARLY_RX_ADJUST_PAUSE;
  20333. vdev_param[wmi_vdev_param_tx_pwrlimit] = WMI_VDEV_PARAM_TX_PWRLIMIT;
  20334. vdev_param[wmi_vdev_param_snr_num_for_cal] =
  20335. WMI_VDEV_PARAM_SNR_NUM_FOR_CAL;
  20336. vdev_param[wmi_vdev_param_roam_fw_offload] =
  20337. WMI_VDEV_PARAM_ROAM_FW_OFFLOAD;
  20338. vdev_param[wmi_vdev_param_enable_rmc] = WMI_VDEV_PARAM_ENABLE_RMC;
  20339. vdev_param[wmi_vdev_param_ibss_max_bcn_lost_ms] =
  20340. WMI_VDEV_PARAM_IBSS_MAX_BCN_LOST_MS;
  20341. vdev_param[wmi_vdev_param_max_rate] = WMI_VDEV_PARAM_MAX_RATE;
  20342. vdev_param[wmi_vdev_param_early_rx_drift_sample] =
  20343. WMI_VDEV_PARAM_EARLY_RX_DRIFT_SAMPLE;
  20344. vdev_param[wmi_vdev_param_set_ibss_tx_fail_cnt_thr] =
  20345. WMI_VDEV_PARAM_SET_IBSS_TX_FAIL_CNT_THR;
  20346. vdev_param[wmi_vdev_param_ebt_resync_timeout] =
  20347. WMI_VDEV_PARAM_EBT_RESYNC_TIMEOUT;
  20348. vdev_param[wmi_vdev_param_aggr_trig_event_enable] =
  20349. WMI_VDEV_PARAM_AGGR_TRIG_EVENT_ENABLE;
  20350. vdev_param[wmi_vdev_param_is_ibss_power_save_allowed] =
  20351. WMI_VDEV_PARAM_IS_IBSS_POWER_SAVE_ALLOWED;
  20352. vdev_param[wmi_vdev_param_is_power_collapse_allowed] =
  20353. WMI_VDEV_PARAM_IS_POWER_COLLAPSE_ALLOWED;
  20354. vdev_param[wmi_vdev_param_is_awake_on_txrx_enabled] =
  20355. WMI_VDEV_PARAM_IS_AWAKE_ON_TXRX_ENABLED;
  20356. vdev_param[wmi_vdev_param_inactivity_cnt] =
  20357. WMI_VDEV_PARAM_INACTIVITY_CNT;
  20358. vdev_param[wmi_vdev_param_txsp_end_inactivity_time_ms] =
  20359. WMI_VDEV_PARAM_TXSP_END_INACTIVITY_TIME_MS;
  20360. vdev_param[wmi_vdev_param_dtim_policy] = WMI_VDEV_PARAM_DTIM_POLICY;
  20361. vdev_param[wmi_vdev_param_ibss_ps_warmup_time_secs] =
  20362. WMI_VDEV_PARAM_IBSS_PS_WARMUP_TIME_SECS;
  20363. vdev_param[wmi_vdev_param_ibss_ps_1rx_chain_in_atim_window_enable] =
  20364. WMI_VDEV_PARAM_IBSS_PS_1RX_CHAIN_IN_ATIM_WINDOW_ENABLE;
  20365. vdev_param[wmi_vdev_param_rx_leak_window] =
  20366. WMI_VDEV_PARAM_RX_LEAK_WINDOW;
  20367. vdev_param[wmi_vdev_param_stats_avg_factor] =
  20368. WMI_VDEV_PARAM_STATS_AVG_FACTOR;
  20369. vdev_param[wmi_vdev_param_disconnect_th] = WMI_VDEV_PARAM_DISCONNECT_TH;
  20370. vdev_param[wmi_vdev_param_rtscts_rate] = WMI_VDEV_PARAM_RTSCTS_RATE;
  20371. vdev_param[wmi_vdev_param_mcc_rtscts_protection_enable] =
  20372. WMI_VDEV_PARAM_MCC_RTSCTS_PROTECTION_ENABLE;
  20373. vdev_param[wmi_vdev_param_mcc_broadcast_probe_enable] =
  20374. WMI_VDEV_PARAM_MCC_BROADCAST_PROBE_ENABLE;
  20375. vdev_param[wmi_vdev_param_mgmt_tx_power] = WMI_VDEV_PARAM_MGMT_TX_POWER;
  20376. vdev_param[wmi_vdev_param_beacon_rate] = WMI_VDEV_PARAM_BEACON_RATE;
  20377. vdev_param[wmi_vdev_param_rx_decap_type] = WMI_VDEV_PARAM_RX_DECAP_TYPE;
  20378. vdev_param[wmi_vdev_param_he_dcm_enable] = WMI_VDEV_PARAM_HE_DCM;
  20379. vdev_param[wmi_vdev_param_he_range_ext_enable] =
  20380. WMI_VDEV_PARAM_HE_RANGE_EXT;
  20381. vdev_param[wmi_vdev_param_he_bss_color] = WMI_VDEV_PARAM_BSS_COLOR;
  20382. vdev_param[wmi_vdev_param_set_hemu_mode] = WMI_VDEV_PARAM_SET_HEMU_MODE;
  20383. vdev_param[wmi_vdev_param_set_heop] = WMI_VDEV_PARAM_HEOPS_0_31;
  20384. vdev_param[wmi_vdev_param_sensor_ap] = WMI_VDEV_PARAM_SENSOR_AP;
  20385. vdev_param[wmi_vdev_param_dtim_enable_cts] =
  20386. WMI_VDEV_PARAM_DTIM_ENABLE_CTS;
  20387. vdev_param[wmi_vdev_param_atf_ssid_sched_policy] =
  20388. WMI_VDEV_PARAM_ATF_SSID_SCHED_POLICY;
  20389. vdev_param[wmi_vdev_param_disable_dyn_bw_rts] =
  20390. WMI_VDEV_PARAM_DISABLE_DYN_BW_RTS;
  20391. vdev_param[wmi_vdev_param_mcast2ucast_set] =
  20392. WMI_VDEV_PARAM_MCAST2UCAST_SET;
  20393. vdev_param[wmi_vdev_param_rc_num_retries] =
  20394. WMI_VDEV_PARAM_RC_NUM_RETRIES;
  20395. vdev_param[wmi_vdev_param_cabq_maxdur] = WMI_VDEV_PARAM_CABQ_MAXDUR;
  20396. vdev_param[wmi_vdev_param_mfptest_set] = WMI_VDEV_PARAM_MFPTEST_SET;
  20397. vdev_param[wmi_vdev_param_rts_fixed_rate] =
  20398. WMI_VDEV_PARAM_RTS_FIXED_RATE;
  20399. vdev_param[wmi_vdev_param_vht_sgimask] = WMI_VDEV_PARAM_VHT_SGIMASK;
  20400. vdev_param[wmi_vdev_param_vht80_ratemask] =
  20401. WMI_VDEV_PARAM_VHT80_RATEMASK;
  20402. vdev_param[wmi_vdev_param_proxy_sta] = WMI_VDEV_PARAM_PROXY_STA;
  20403. vdev_param[wmi_vdev_param_bw_nss_ratemask] =
  20404. WMI_VDEV_PARAM_BW_NSS_RATEMASK;
  20405. vdev_param[wmi_vdev_param_set_he_ltf] =
  20406. WMI_VDEV_PARAM_HE_LTF;
  20407. vdev_param[wmi_vdev_param_disable_cabq] =
  20408. WMI_VDEV_PARAM_DISABLE_CABQ;
  20409. vdev_param[wmi_vdev_param_rate_dropdown_bmap] =
  20410. WMI_VDEV_PARAM_RATE_DROPDOWN_BMAP;
  20411. vdev_param[wmi_vdev_param_set_ba_mode] =
  20412. WMI_VDEV_PARAM_BA_MODE;
  20413. vdev_param[wmi_vdev_param_capabilities] =
  20414. WMI_VDEV_PARAM_CAPABILITIES;
  20415. vdev_param[wmi_vdev_param_autorate_misc_cfg] =
  20416. WMI_VDEV_PARAM_AUTORATE_MISC_CFG;
  20417. }
  20418. #endif
  20419. /**
  20420. * populate_target_defines_tlv() - Populate target defines and params
  20421. * @wmi_handle: pointer to wmi handle
  20422. *
  20423. * Return: None
  20424. */
  20425. #ifndef CONFIG_MCL
  20426. static void populate_target_defines_tlv(struct wmi_unified *wmi_handle)
  20427. {
  20428. populate_pdev_param_tlv(wmi_handle->pdev_param);
  20429. populate_vdev_param_tlv(wmi_handle->vdev_param);
  20430. }
  20431. #else
  20432. static void populate_target_defines_tlv(struct wmi_unified *wmi_handle)
  20433. { }
  20434. #endif
  20435. /**
  20436. * wmi_ocb_ut_attach() - Attach OCB test framework
  20437. * @wmi_handle: wmi handle
  20438. *
  20439. * Return: None
  20440. */
  20441. #ifdef WLAN_OCB_UT
  20442. void wmi_ocb_ut_attach(struct wmi_unified *wmi_handle);
  20443. #else
  20444. static inline void wmi_ocb_ut_attach(struct wmi_unified *wmi_handle)
  20445. {
  20446. return;
  20447. }
  20448. #endif
  20449. /**
  20450. * wmi_tlv_attach() - Attach TLV APIs
  20451. *
  20452. * Return: None
  20453. */
  20454. void wmi_tlv_attach(wmi_unified_t wmi_handle)
  20455. {
  20456. wmi_handle->ops = &tlv_ops;
  20457. wmi_ocb_ut_attach(wmi_handle);
  20458. wmi_handle->soc->svc_ids = &multi_svc_ids[0];
  20459. #ifdef WMI_INTERFACE_EVENT_LOGGING
  20460. /* Skip saving WMI_CMD_HDR and TLV HDR */
  20461. wmi_handle->log_info.buf_offset_command = 8;
  20462. /* WMI_CMD_HDR is already stripped, skip saving TLV HDR */
  20463. wmi_handle->log_info.buf_offset_event = 4;
  20464. #endif
  20465. populate_tlv_events_id(wmi_handle->wmi_events);
  20466. populate_tlv_service(wmi_handle->services);
  20467. populate_target_defines_tlv(wmi_handle);
  20468. wmi_twt_attach_tlv(wmi_handle);
  20469. wmi_extscan_attach_tlv(wmi_handle);
  20470. }
  20471. qdf_export_symbol(wmi_tlv_attach);
  20472. /**
  20473. * wmi_tlv_init() - Initialize WMI TLV module by registering TLV attach routine
  20474. *
  20475. * Return: None
  20476. */
  20477. void wmi_tlv_init(void)
  20478. {
  20479. wmi_unified_register_module(WMI_TLV_TARGET, &wmi_tlv_attach);
  20480. }