wmi_unified_ap_tlv.c 81 KB

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  1. /*
  2. * Copyright (c) 2016-2020 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 <osdep.h>
  19. #include "wmi.h"
  20. #include "wmi_unified_priv.h"
  21. #include "wmi_unified_ap_api.h"
  22. #include <wlan_utility.h>
  23. /**
  24. * send_peer_add_wds_entry_cmd_tlv() - send peer add command to fw
  25. * @wmi_handle: wmi handle
  26. * @param: pointer holding peer details
  27. *
  28. * Return: 0 for success or error code
  29. */
  30. static QDF_STATUS send_peer_add_wds_entry_cmd_tlv(wmi_unified_t wmi_handle,
  31. struct peer_add_wds_entry_params *param)
  32. {
  33. wmi_peer_add_wds_entry_cmd_fixed_param *cmd;
  34. wmi_buf_t buf;
  35. int len = sizeof(*cmd);
  36. buf = wmi_buf_alloc(wmi_handle, len);
  37. if (!buf) {
  38. qdf_print("%s: wmi_buf_alloc failed", __func__);
  39. return QDF_STATUS_E_FAILURE;
  40. }
  41. cmd = (wmi_peer_add_wds_entry_cmd_fixed_param *)wmi_buf_data(buf);
  42. WMITLV_SET_HDR(&cmd->tlv_header,
  43. WMITLV_TAG_STRUC_wmi_peer_add_wds_entry_cmd_fixed_param,
  44. WMITLV_GET_STRUCT_TLVLEN
  45. (wmi_peer_add_wds_entry_cmd_fixed_param));
  46. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->dest_addr, &cmd->wds_macaddr);
  47. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_addr, &cmd->peer_macaddr);
  48. cmd->flags = (param->flags & WMI_HOST_WDS_FLAG_STATIC) ?
  49. WMI_WDS_FLAG_STATIC : 0;
  50. cmd->vdev_id = param->vdev_id;
  51. wmi_mtrace(WMI_PEER_ADD_WDS_ENTRY_CMDID, cmd->vdev_id, 0);
  52. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  53. WMI_PEER_ADD_WDS_ENTRY_CMDID)) {
  54. WMI_LOGE("%s: peer %pM vdev_id %d wds %pM flag %d failed!\n",
  55. __func__, param->peer_addr, param->vdev_id,
  56. param->dest_addr, param->flags);
  57. wmi_buf_free(buf);
  58. return QDF_STATUS_E_FAILURE;
  59. }
  60. wmi_debug("peer_macaddr %pM vdev_id %d, wds_macaddr %pM flag %d",
  61. param->peer_addr, param->vdev_id,
  62. param->dest_addr, param->flags);
  63. return QDF_STATUS_SUCCESS;
  64. }
  65. /**
  66. * send_peer_del_wds_entry_cmd_tlv() - send peer delete command to fw
  67. * @wmi_handle: wmi handle
  68. * @param: pointer holding peer details
  69. *
  70. * Return: 0 for success or error code
  71. */
  72. static QDF_STATUS send_peer_del_wds_entry_cmd_tlv(wmi_unified_t wmi_handle,
  73. struct peer_del_wds_entry_params *param)
  74. {
  75. wmi_peer_remove_wds_entry_cmd_fixed_param *cmd;
  76. wmi_buf_t buf;
  77. int len = sizeof(*cmd);
  78. buf = wmi_buf_alloc(wmi_handle, len);
  79. if (!buf) {
  80. qdf_print("%s: wmi_buf_alloc failed", __func__);
  81. return QDF_STATUS_E_NOMEM;
  82. }
  83. cmd = (wmi_peer_remove_wds_entry_cmd_fixed_param *)wmi_buf_data(buf);
  84. WMITLV_SET_HDR(&cmd->tlv_header,
  85. WMITLV_TAG_STRUC_wmi_peer_remove_wds_entry_cmd_fixed_param,
  86. WMITLV_GET_STRUCT_TLVLEN
  87. (wmi_peer_remove_wds_entry_cmd_fixed_param));
  88. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->dest_addr, &cmd->wds_macaddr);
  89. cmd->vdev_id = param->vdev_id;
  90. wmi_mtrace(WMI_PEER_REMOVE_WDS_ENTRY_CMDID, cmd->vdev_id, 0);
  91. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  92. WMI_PEER_REMOVE_WDS_ENTRY_CMDID)) {
  93. WMI_LOGE("%s: vdev_id %d wds_addr %pM failed!\n",
  94. __func__, param->vdev_id, param->dest_addr);
  95. wmi_buf_free(buf);
  96. return QDF_STATUS_E_FAILURE;
  97. }
  98. wmi_debug("vdev_id %d wds_addr %pM",
  99. param->vdev_id, param->dest_addr);
  100. return QDF_STATUS_SUCCESS;
  101. }
  102. /**
  103. * send_peer_update_wds_entry_cmd_tlv() - send peer update command to fw
  104. * @wmi_handle: wmi handle
  105. * @param: pointer holding peer details
  106. *
  107. * Return: 0 for success or error code
  108. */
  109. static QDF_STATUS send_peer_update_wds_entry_cmd_tlv(wmi_unified_t wmi_handle,
  110. struct peer_update_wds_entry_params *param)
  111. {
  112. wmi_peer_update_wds_entry_cmd_fixed_param *cmd;
  113. wmi_buf_t buf;
  114. int len = sizeof(*cmd);
  115. buf = wmi_buf_alloc(wmi_handle, len);
  116. if (!buf) {
  117. qdf_print("%s: wmi_buf_alloc failed", __func__);
  118. return QDF_STATUS_E_NOMEM;
  119. }
  120. /* wmi_buf_alloc returns zeroed command buffer */
  121. cmd = (wmi_peer_update_wds_entry_cmd_fixed_param *)wmi_buf_data(buf);
  122. WMITLV_SET_HDR(&cmd->tlv_header,
  123. WMITLV_TAG_STRUC_wmi_peer_update_wds_entry_cmd_fixed_param,
  124. WMITLV_GET_STRUCT_TLVLEN
  125. (wmi_peer_update_wds_entry_cmd_fixed_param));
  126. cmd->flags = (param->flags & WMI_HOST_WDS_FLAG_STATIC) ? WMI_WDS_FLAG_STATIC : 0;
  127. cmd->vdev_id = param->vdev_id;
  128. if (param->wds_macaddr)
  129. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->wds_macaddr,
  130. &cmd->wds_macaddr);
  131. if (param->peer_macaddr)
  132. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_macaddr,
  133. &cmd->peer_macaddr);
  134. wmi_mtrace(WMI_PEER_UPDATE_WDS_ENTRY_CMDID, cmd->vdev_id, 0);
  135. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  136. WMI_PEER_UPDATE_WDS_ENTRY_CMDID)) {
  137. WMI_LOGE("%s: peer %pM vdev_id %d wds %pM flags %d failed!\n",
  138. __func__, param->peer_macaddr, param->vdev_id,
  139. param->wds_macaddr, param->flags);
  140. wmi_buf_free(buf);
  141. return QDF_STATUS_E_FAILURE;
  142. }
  143. wmi_debug("peer_addr %pM vdev_id %d wds_addr %pM flags %d",
  144. param->peer_macaddr, param->vdev_id,
  145. param->wds_macaddr, param->flags);
  146. return QDF_STATUS_SUCCESS;
  147. }
  148. /**
  149. * send_pdev_get_tpc_config_cmd_tlv() - send get tpc config command to fw
  150. * @wmi_handle: wmi handle
  151. * @param: pointer to get tpc config params
  152. *
  153. * Return: 0 for success or error code
  154. */
  155. static QDF_STATUS
  156. send_pdev_get_tpc_config_cmd_tlv(wmi_unified_t wmi_handle,
  157. uint32_t param)
  158. {
  159. wmi_pdev_get_tpc_config_cmd_fixed_param *cmd;
  160. wmi_buf_t buf;
  161. int32_t len = sizeof(wmi_pdev_get_tpc_config_cmd_fixed_param);
  162. buf = wmi_buf_alloc(wmi_handle, len);
  163. if (!buf) {
  164. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  165. return QDF_STATUS_E_NOMEM;
  166. }
  167. cmd = (wmi_pdev_get_tpc_config_cmd_fixed_param *)wmi_buf_data(buf);
  168. WMITLV_SET_HDR(&cmd->tlv_header,
  169. WMITLV_TAG_STRUC_wmi_pdev_get_tpc_config_cmd_fixed_param,
  170. WMITLV_GET_STRUCT_TLVLEN
  171. (wmi_pdev_get_tpc_config_cmd_fixed_param));
  172. cmd->param = param;
  173. wmi_mtrace(WMI_PDEV_GET_TPC_CONFIG_CMDID, NO_SESSION, 0);
  174. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  175. WMI_PDEV_GET_TPC_CONFIG_CMDID)) {
  176. WMI_LOGE("Send pdev get tpc config cmd failed");
  177. wmi_buf_free(buf);
  178. return QDF_STATUS_E_FAILURE;
  179. }
  180. wmi_debug("send success");
  181. return QDF_STATUS_SUCCESS;
  182. }
  183. /**
  184. * send_set_ctl_table_cmd_tlv() - send ctl table cmd to fw
  185. * @wmi_handle: wmi handle
  186. * @param: pointer to hold ctl table param
  187. *
  188. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  189. */
  190. static QDF_STATUS
  191. send_set_ctl_table_cmd_tlv(wmi_unified_t wmi_handle,
  192. struct ctl_table_params *param)
  193. {
  194. uint16_t len, ctl_tlv_len;
  195. uint8_t *buf_ptr;
  196. wmi_buf_t buf;
  197. wmi_pdev_set_ctl_table_cmd_fixed_param *cmd;
  198. uint32_t *ctl_array;
  199. if (!param->ctl_array)
  200. return QDF_STATUS_E_FAILURE;
  201. ctl_tlv_len = WMI_TLV_HDR_SIZE +
  202. roundup(param->ctl_cmd_len, sizeof(uint32_t));
  203. len = sizeof(*cmd) + ctl_tlv_len;
  204. buf = wmi_buf_alloc(wmi_handle, len);
  205. if (!buf) {
  206. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  207. return QDF_STATUS_E_FAILURE;
  208. }
  209. buf_ptr = wmi_buf_data(buf);
  210. qdf_mem_zero(buf_ptr, len);
  211. cmd = (wmi_pdev_set_ctl_table_cmd_fixed_param *)buf_ptr;
  212. WMITLV_SET_HDR(&cmd->tlv_header,
  213. WMITLV_TAG_STRUC_wmi_pdev_set_ctl_table_cmd_fixed_param,
  214. WMITLV_GET_STRUCT_TLVLEN(
  215. wmi_pdev_set_ctl_table_cmd_fixed_param));
  216. cmd->ctl_len = param->ctl_cmd_len;
  217. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  218. wmi_handle,
  219. param->pdev_id);
  220. buf_ptr += sizeof(*cmd);
  221. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  222. (cmd->ctl_len));
  223. buf_ptr += WMI_TLV_HDR_SIZE;
  224. ctl_array = (uint32_t *)buf_ptr;
  225. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&ctl_array[0], &param->ctl_band,
  226. sizeof(param->ctl_band));
  227. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&ctl_array[1], param->ctl_array,
  228. param->ctl_cmd_len -
  229. sizeof(param->ctl_band));
  230. wmi_mtrace(WMI_PDEV_SET_CTL_TABLE_CMDID, NO_SESSION, 0);
  231. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  232. WMI_PDEV_SET_CTL_TABLE_CMDID)) {
  233. WMI_LOGE("%s:Failed to send command", __func__);
  234. wmi_buf_free(buf);
  235. return QDF_STATUS_E_FAILURE;
  236. }
  237. return QDF_STATUS_SUCCESS;
  238. }
  239. /**
  240. * send_set_mimogain_table_cmd_tlv() - send mimogain table cmd to fw
  241. * @wmi_handle: wmi handle
  242. * @param: pointer to hold mimogain table param
  243. *
  244. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  245. */
  246. static QDF_STATUS
  247. send_set_mimogain_table_cmd_tlv(wmi_unified_t wmi_handle,
  248. struct mimogain_table_params *param)
  249. {
  250. uint16_t len, table_tlv_len;
  251. wmi_buf_t buf;
  252. uint8_t *buf_ptr;
  253. wmi_pdev_set_mimogain_table_cmd_fixed_param *cmd;
  254. uint32_t *gain_table;
  255. if (!param->array_gain)
  256. return QDF_STATUS_E_FAILURE;
  257. /* len must be multiple of a single array gain table */
  258. if (param->tbl_len %
  259. ((WMI_HOST_TX_NUM_CHAIN-1) * WMI_HOST_TPC_REGINDEX_MAX *
  260. WMI_HOST_ARRAY_GAIN_NUM_STREAMS) != 0) {
  261. WMI_LOGE("Array gain table len not correct");
  262. return QDF_STATUS_E_FAILURE;
  263. }
  264. table_tlv_len = WMI_TLV_HDR_SIZE +
  265. roundup(param->tbl_len, sizeof(uint32_t));
  266. len = sizeof(*cmd) + table_tlv_len;
  267. buf = wmi_buf_alloc(wmi_handle, len);
  268. if (!buf) {
  269. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  270. return QDF_STATUS_E_FAILURE;
  271. }
  272. buf_ptr = wmi_buf_data(buf);
  273. qdf_mem_zero(buf_ptr, len);
  274. cmd = (wmi_pdev_set_mimogain_table_cmd_fixed_param *)buf_ptr;
  275. WMITLV_SET_HDR(&cmd->tlv_header,
  276. WMITLV_TAG_STRUC_wmi_pdev_set_mimogain_table_cmd_fixed_param,
  277. WMITLV_GET_STRUCT_TLVLEN(
  278. wmi_pdev_set_mimogain_table_cmd_fixed_param));
  279. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  280. wmi_handle,
  281. param->pdev_id);
  282. WMI_MIMOGAIN_ARRAY_GAIN_LEN_SET(cmd->mimogain_info, param->tbl_len);
  283. WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_SET(cmd->mimogain_info,
  284. param->multichain_gain_bypass);
  285. buf_ptr += sizeof(*cmd);
  286. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_UINT32,
  287. (param->tbl_len));
  288. buf_ptr += WMI_TLV_HDR_SIZE;
  289. gain_table = (uint32_t *)buf_ptr;
  290. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(gain_table,
  291. param->array_gain,
  292. param->tbl_len);
  293. wmi_mtrace(WMI_PDEV_SET_MIMOGAIN_TABLE_CMDID, NO_SESSION, 0);
  294. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  295. WMI_PDEV_SET_MIMOGAIN_TABLE_CMDID)) {
  296. return QDF_STATUS_E_FAILURE;
  297. }
  298. return QDF_STATUS_SUCCESS;
  299. }
  300. /**
  301. * enum packet_power_tlv_flags: target defined
  302. * packet power rate flags for TLV
  303. * @WMI_TLV_FLAG_ONE_CHAIN: one chain
  304. * @WMI_TLV_FLAG_TWO_CHAIN: two chain
  305. * @WMI_TLV_FLAG_THREE_CHAIN: three chain
  306. * @WMI_TLV_FLAG_FOUR_CHAIN: four chain
  307. * @WMI_TLV_FLAG_FIVE_CHAIN: five chain
  308. * @WMI_TLV_FLAG_SIX_CHAIN: six chain
  309. * @WMI_TLV_FLAG_SEVEN_CHAIN: seven chain
  310. * @WMI_TLV_FLAG_EIGHT_CHAIN:eight chain
  311. * @WMI_TLV_FLAG_STBC: STBC is set
  312. * @WMI_TLV_FLAG_40MHZ: 40MHz chan width
  313. * @WMI_TLV_FLAG_80MHZ: 80MHz chan width
  314. * @WMI_TLV_FLAG_160MHZ: 160MHz chan width
  315. * @WMI_TLV_FLAG_TXBF: Tx Bf enabled
  316. * @WMI_TLV_FLAG_RTSENA: RTS enabled
  317. * @WMI_TLV_FLAG_CTSENA: CTS enabled
  318. * @WMI_TLV_FLAG_LDPC: LDPC is set
  319. * @WMI_TLV_FLAG_SGI: Short gaurd interval
  320. * @WMI_TLV_FLAG_SU: SU Data
  321. * @WMI_TLV_FLAG_DL_MU_MIMO_AC: DL AC MU data
  322. * @WMI_TLV_FLAG_DL_MU_MIMO_AX: DL AX MU data
  323. * @WMI_TLV_FLAG_DL_OFDMA: DL OFDMA data
  324. * @WMI_TLV_FLAG_UL_OFDMA: UL OFDMA data
  325. * @WMI_TLV_FLAG_UL_MU_MIMO: UL MU data
  326. *
  327. * @WMI_TLV_FLAG_BW_MASK: bandwidth mask
  328. * @WMI_TLV_FLAG_BW_SHIFT: bandwidth shift
  329. * @WMI_TLV_FLAG_SU_MU_OFDMA_MASK: su/mu/ofdma mask
  330. * @WMI_TLV_FLAG_SU_MU_OFDMA_shift: su/mu/ofdma shift
  331. */
  332. enum packet_power_tlv_flags {
  333. WMI_TLV_FLAG_ONE_CHAIN = 0x00000001,
  334. WMI_TLV_FLAG_TWO_CHAIN = 0x00000003,
  335. WMI_TLV_FLAG_THREE_CHAIN = 0x00000007,
  336. WMI_TLV_FLAG_FOUR_CHAIN = 0x0000000F,
  337. WMI_TLV_FLAG_FIVE_CHAIN = 0x0000001F,
  338. WMI_TLV_FLAG_SIX_CHAIN = 0x0000003F,
  339. WMI_TLV_FLAG_SEVEN_CHAIN = 0x0000007F,
  340. WMI_TLV_FLAG_EIGHT_CHAIN = 0x0000008F,
  341. WMI_TLV_FLAG_STBC = 0x00000100,
  342. WMI_TLV_FLAG_40MHZ = 0x00000200,
  343. WMI_TLV_FLAG_80MHZ = 0x00000300,
  344. WMI_TLV_FLAG_160MHZ = 0x00000400,
  345. WMI_TLV_FLAG_TXBF = 0x00000800,
  346. WMI_TLV_FLAG_RTSENA = 0x00001000,
  347. WMI_TLV_FLAG_CTSENA = 0x00002000,
  348. WMI_TLV_FLAG_LDPC = 0x00004000,
  349. WMI_TLV_FLAG_SGI = 0x00008000,
  350. WMI_TLV_FLAG_SU = 0x00100000,
  351. WMI_TLV_FLAG_DL_MU_MIMO_AC = 0x00200000,
  352. WMI_TLV_FLAG_DL_MU_MIMO_AX = 0x00300000,
  353. WMI_TLV_FLAG_DL_OFDMA = 0x00400000,
  354. WMI_TLV_FLAG_UL_OFDMA = 0x00500000,
  355. WMI_TLV_FLAG_UL_MU_MIMO = 0x00600000,
  356. WMI_TLV_FLAG_CHAIN_MASK = 0xff,
  357. WMI_TLV_FLAG_BW_MASK = 0x3,
  358. WMI_TLV_FLAG_BW_SHIFT = 9,
  359. WMI_TLV_FLAG_SU_MU_OFDMA_MASK = 0x7,
  360. WMI_TLV_FLAG_SU_MU_OFDMA_SHIFT = 20,
  361. };
  362. /**
  363. * convert_to_power_info_rate_flags() - convert packet_power_info_params
  364. * to FW understandable format
  365. * @param: pointer to hold packet power info param
  366. *
  367. * @return FW understandable 32 bit rate flags
  368. */
  369. static uint32_t
  370. convert_to_power_info_rate_flags(struct packet_power_info_params *param)
  371. {
  372. uint32_t rateflags = 0;
  373. if (param->chainmask)
  374. rateflags |=
  375. (param->chainmask & WMI_TLV_FLAG_CHAIN_MASK);
  376. if (param->chan_width)
  377. rateflags |=
  378. ((param->chan_width & WMI_TLV_FLAG_BW_MASK)
  379. << WMI_TLV_FLAG_BW_SHIFT);
  380. if (param->su_mu_ofdma)
  381. rateflags |=
  382. ((param->su_mu_ofdma & WMI_TLV_FLAG_SU_MU_OFDMA_MASK)
  383. << WMI_TLV_FLAG_SU_MU_OFDMA_SHIFT);
  384. if (param->rate_flags & WMI_HOST_FLAG_STBC)
  385. rateflags |= WMI_TLV_FLAG_STBC;
  386. if (param->rate_flags & WMI_HOST_FLAG_LDPC)
  387. rateflags |= WMI_TLV_FLAG_LDPC;
  388. if (param->rate_flags & WMI_HOST_FLAG_TXBF)
  389. rateflags |= WMI_TLV_FLAG_TXBF;
  390. if (param->rate_flags & WMI_HOST_FLAG_RTSENA)
  391. rateflags |= WMI_TLV_FLAG_RTSENA;
  392. if (param->rate_flags & WMI_HOST_FLAG_CTSENA)
  393. rateflags |= WMI_TLV_FLAG_CTSENA;
  394. if (param->rate_flags & WMI_HOST_FLAG_SGI)
  395. rateflags |= WMI_TLV_FLAG_SGI;
  396. return rateflags;
  397. }
  398. /**
  399. * send_packet_power_info_get_cmd_tlv() - send request to get packet power
  400. * info to fw
  401. * @wmi_handle: wmi handle
  402. * @param: pointer to hold packet power info param
  403. *
  404. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  405. */
  406. static QDF_STATUS
  407. send_packet_power_info_get_cmd_tlv(wmi_unified_t wmi_handle,
  408. struct packet_power_info_params *param)
  409. {
  410. wmi_pdev_get_tpc_cmd_fixed_param *cmd;
  411. wmi_buf_t wmibuf;
  412. uint8_t *buf_ptr;
  413. u_int32_t len = sizeof(wmi_pdev_get_tpc_cmd_fixed_param);
  414. wmibuf = wmi_buf_alloc(wmi_handle, len);
  415. if (wmibuf == NULL)
  416. return QDF_STATUS_E_NOMEM;
  417. buf_ptr = (uint8_t *)wmi_buf_data(wmibuf);
  418. cmd = (wmi_pdev_get_tpc_cmd_fixed_param *)buf_ptr;
  419. WMITLV_SET_HDR(&cmd->tlv_header,
  420. WMITLV_TAG_STRUC_wmi_pdev_get_tpc_cmd_fixed_param,
  421. WMITLV_GET_STRUCT_TLVLEN(
  422. wmi_pdev_get_tpc_cmd_fixed_param));
  423. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  424. wmi_handle,
  425. param->pdev_id);
  426. cmd->rate_flags = convert_to_power_info_rate_flags(param);
  427. cmd->nss = param->nss;
  428. cmd->preamble = param->preamble;
  429. cmd->hw_rate = param->hw_rate;
  430. wmi_info("commandID %d, wmi_pdev_get_tpc_cmd=0x%x,"
  431. "rate_flags: 0x%x, nss: %d, preamble: %d, hw_rate: %d",
  432. WMI_PDEV_GET_TPC_CMDID, *((u_int32_t *)cmd),
  433. cmd->rate_flags, cmd->nss, cmd->preamble, cmd->hw_rate);
  434. wmi_mtrace(WMI_PDEV_GET_TPC_CMDID, NO_SESSION, 0);
  435. if (wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  436. WMI_PDEV_GET_TPC_CMDID)) {
  437. WMI_LOGE(FL("Failed to get tpc command"));
  438. wmi_buf_free(wmibuf);
  439. return QDF_STATUS_E_FAILURE;
  440. }
  441. return QDF_STATUS_SUCCESS;
  442. }
  443. /**
  444. * send_nf_dbr_dbm_info_get_cmd_tlv() - send request to get nf to fw
  445. * @wmi_handle: wmi handle
  446. * @mac_id: radio context
  447. *
  448. * Return: 0 for success or error code
  449. */
  450. static QDF_STATUS
  451. send_nf_dbr_dbm_info_get_cmd_tlv(wmi_unified_t wmi_handle, uint8_t mac_id)
  452. {
  453. wmi_buf_t buf;
  454. QDF_STATUS ret;
  455. wmi_pdev_get_nfcal_power_fixed_param *cmd;
  456. int32_t len = sizeof(*cmd);
  457. buf = wmi_buf_alloc(wmi_handle, len);
  458. if (buf == NULL)
  459. return QDF_STATUS_E_NOMEM;
  460. cmd = (wmi_pdev_get_nfcal_power_fixed_param *)wmi_buf_data(buf);
  461. WMITLV_SET_HDR(&cmd->tlv_header,
  462. WMITLV_TAG_STRUC_wmi_pdev_get_nfcal_power_fixed_param,
  463. WMITLV_GET_STRUCT_TLVLEN
  464. (wmi_pdev_get_nfcal_power_fixed_param));
  465. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  466. wmi_handle,
  467. mac_id);
  468. wmi_mtrace(WMI_PDEV_GET_NFCAL_POWER_CMDID, NO_SESSION, 0);
  469. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  470. WMI_PDEV_GET_NFCAL_POWER_CMDID);
  471. if (ret != 0) {
  472. WMI_LOGE("Sending get nfcal power cmd failed");
  473. wmi_buf_free(buf);
  474. }
  475. return ret;
  476. }
  477. /**
  478. * send_set_ht_ie_cmd_tlv() - send ht ie command to fw
  479. * @wmi_handle: wmi handle
  480. * @param: pointer to ht ie param
  481. *
  482. * Return: 0 for success or error code
  483. */
  484. static QDF_STATUS
  485. send_set_ht_ie_cmd_tlv(wmi_unified_t wmi_handle,
  486. struct ht_ie_params *param)
  487. {
  488. wmi_pdev_set_ht_ie_cmd_fixed_param *cmd;
  489. wmi_buf_t buf;
  490. QDF_STATUS ret;
  491. int32_t len;
  492. uint8_t *buf_ptr;
  493. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  494. roundup(param->ie_len, sizeof(uint32_t));
  495. buf = wmi_buf_alloc(wmi_handle, len);
  496. if (!buf) {
  497. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  498. return QDF_STATUS_E_FAILURE;
  499. }
  500. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  501. cmd = (wmi_pdev_set_ht_ie_cmd_fixed_param *)buf_ptr;
  502. WMITLV_SET_HDR(&cmd->tlv_header,
  503. WMITLV_TAG_STRUC_wmi_pdev_set_ht_ie_cmd_fixed_param,
  504. WMITLV_GET_STRUCT_TLVLEN(
  505. wmi_pdev_set_ht_ie_cmd_fixed_param));
  506. cmd->reserved0 = 0;
  507. cmd->ie_len = param->ie_len;
  508. cmd->tx_streams = param->tx_streams;
  509. cmd->rx_streams = param->rx_streams;
  510. buf_ptr += sizeof(*cmd);
  511. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, cmd->ie_len);
  512. buf_ptr += WMI_TLV_HDR_SIZE;
  513. if (param->ie_len)
  514. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(buf_ptr, param->ie_data,
  515. cmd->ie_len);
  516. wmi_mtrace(WMI_PDEV_SET_HT_CAP_IE_CMDID, NO_SESSION, 0);
  517. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  518. WMI_PDEV_SET_HT_CAP_IE_CMDID);
  519. if (ret != 0) {
  520. WMI_LOGE("Sending set ht ie cmd failed");
  521. wmi_buf_free(buf);
  522. }
  523. return ret;
  524. }
  525. /**
  526. * send_set_vht_ie_cmd_tlv() - send vht ie command to fw
  527. * @wmi_handle: wmi handle
  528. * @param: pointer to vht ie param
  529. *
  530. * Return: 0 for success or error code
  531. */
  532. static QDF_STATUS
  533. send_set_vht_ie_cmd_tlv(wmi_unified_t wmi_handle,
  534. struct vht_ie_params *param)
  535. {
  536. wmi_pdev_set_vht_ie_cmd_fixed_param *cmd;
  537. wmi_buf_t buf;
  538. QDF_STATUS ret;
  539. int32_t len;
  540. uint8_t *buf_ptr;
  541. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE +
  542. roundup(param->ie_len, sizeof(uint32_t));
  543. buf = wmi_buf_alloc(wmi_handle, len);
  544. if (!buf) {
  545. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  546. return QDF_STATUS_E_FAILURE;
  547. }
  548. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  549. cmd = (wmi_pdev_set_vht_ie_cmd_fixed_param *)buf_ptr;
  550. WMITLV_SET_HDR(&cmd->tlv_header,
  551. WMITLV_TAG_STRUC_wmi_pdev_set_vht_ie_cmd_fixed_param,
  552. WMITLV_GET_STRUCT_TLVLEN(
  553. wmi_pdev_set_vht_ie_cmd_fixed_param));
  554. cmd->reserved0 = 0;
  555. cmd->ie_len = param->ie_len;
  556. cmd->tx_streams = param->tx_streams;
  557. cmd->rx_streams = param->rx_streams;
  558. buf_ptr += sizeof(*cmd);
  559. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_BYTE, cmd->ie_len);
  560. buf_ptr += WMI_TLV_HDR_SIZE;
  561. if (param->ie_len)
  562. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(buf_ptr, param->ie_data,
  563. cmd->ie_len);
  564. wmi_mtrace(WMI_PDEV_SET_VHT_CAP_IE_CMDID, NO_SESSION, 0);
  565. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  566. WMI_PDEV_SET_VHT_CAP_IE_CMDID);
  567. if (ret != 0) {
  568. WMI_LOGE("Sending set vht ie cmd failed");
  569. wmi_buf_free(buf);
  570. }
  571. return ret;
  572. }
  573. /**
  574. * send_set_quiet_mode_cmd_tlv() - send set quiet mode command to fw
  575. * @wmi_handle: wmi handle
  576. * @param: pointer to quiet mode params
  577. *
  578. * Return: 0 for success or error code
  579. */
  580. static QDF_STATUS
  581. send_set_quiet_mode_cmd_tlv(wmi_unified_t wmi_handle,
  582. struct set_quiet_mode_params *param)
  583. {
  584. wmi_pdev_set_quiet_cmd_fixed_param *quiet_cmd;
  585. wmi_buf_t buf;
  586. QDF_STATUS ret;
  587. int32_t len;
  588. len = sizeof(*quiet_cmd);
  589. buf = wmi_buf_alloc(wmi_handle, len);
  590. if (!buf) {
  591. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  592. return QDF_STATUS_E_FAILURE;
  593. }
  594. quiet_cmd = (wmi_pdev_set_quiet_cmd_fixed_param *)wmi_buf_data(buf);
  595. WMITLV_SET_HDR(&quiet_cmd->tlv_header,
  596. WMITLV_TAG_STRUC_wmi_pdev_set_quiet_cmd_fixed_param,
  597. WMITLV_GET_STRUCT_TLVLEN(
  598. wmi_pdev_set_quiet_cmd_fixed_param));
  599. quiet_cmd = (wmi_pdev_set_quiet_cmd_fixed_param *)wmi_buf_data(buf);
  600. quiet_cmd->enabled = param->enabled;
  601. quiet_cmd->period = (param->period)*(param->intval);
  602. quiet_cmd->duration = param->duration;
  603. quiet_cmd->next_start = param->offset;
  604. quiet_cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  605. wmi_handle,
  606. WMI_HOST_PDEV_ID_SOC);
  607. wmi_mtrace(WMI_PDEV_SET_QUIET_MODE_CMDID, NO_SESSION, 0);
  608. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  609. WMI_PDEV_SET_QUIET_MODE_CMDID);
  610. if (ret != 0) {
  611. WMI_LOGE("Sending set quiet cmd failed");
  612. wmi_buf_free(buf);
  613. }
  614. return ret;
  615. }
  616. /**
  617. * send_set_bcn_offload_quiet_mode_cmd_tlv() - send set quiet mode command to fw
  618. * @wmi_handle: wmi handle
  619. * @param: pointer to quiet mode params in bcn offload mode
  620. *
  621. * Return: 0 for success or error code
  622. */
  623. static QDF_STATUS
  624. send_set_bcn_offload_quiet_mode_cmd_tlv(wmi_unified_t wmi_handle,
  625. struct set_bcn_offload_quiet_mode_params *param)
  626. {
  627. wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param *quiet_cmd;
  628. wmi_buf_t buf;
  629. QDF_STATUS ret;
  630. int32_t len;
  631. len = sizeof(*quiet_cmd);
  632. buf = wmi_buf_alloc(wmi_handle, len);
  633. if (!buf) {
  634. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  635. return QDF_STATUS_E_FAILURE;
  636. }
  637. quiet_cmd = (wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param *)
  638. wmi_buf_data(buf);
  639. WMITLV_SET_HDR(&quiet_cmd->tlv_header,
  640. WMITLV_TAG_STRUC_wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param,
  641. WMITLV_GET_STRUCT_TLVLEN(
  642. wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param));
  643. quiet_cmd = (wmi_vdev_bcn_offload_quiet_config_cmd_fixed_param *)
  644. wmi_buf_data(buf);
  645. quiet_cmd->vdev_id = param->vdev_id;
  646. quiet_cmd->period = param->period;
  647. quiet_cmd->duration = param->duration;
  648. quiet_cmd->next_start = param->next_start;
  649. quiet_cmd->flags = param->flag;
  650. wmi_mtrace(WMI_VDEV_BCN_OFFLOAD_QUIET_CONFIG_CMDID, NO_SESSION, 0);
  651. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  652. WMI_VDEV_BCN_OFFLOAD_QUIET_CONFIG_CMDID);
  653. if (ret != 0) {
  654. WMI_LOGE("Sending set quiet cmd failed");
  655. wmi_buf_free(buf);
  656. }
  657. return ret;
  658. }
  659. /**
  660. * send_bcn_offload_control_cmd_tlv - send beacon ofload control cmd to fw
  661. * @wmi_handle: wmi handle
  662. * @bcn_ctrl_param: pointer to bcn_offload_control param
  663. *
  664. * Return: QDF_STATUS_SUCCESS for success or error code
  665. */
  666. static
  667. QDF_STATUS send_bcn_offload_control_cmd_tlv(wmi_unified_t wmi_handle,
  668. struct bcn_offload_control *bcn_ctrl_param)
  669. {
  670. wmi_buf_t buf;
  671. wmi_bcn_offload_ctrl_cmd_fixed_param *cmd;
  672. QDF_STATUS ret;
  673. uint32_t len;
  674. len = sizeof(*cmd);
  675. buf = wmi_buf_alloc(wmi_handle, len);
  676. if (!buf) {
  677. qdf_print("%s: wmi_buf_alloc failed", __func__);
  678. return QDF_STATUS_E_FAILURE;
  679. }
  680. cmd = (wmi_bcn_offload_ctrl_cmd_fixed_param *) wmi_buf_data(buf);
  681. WMITLV_SET_HDR(&cmd->tlv_header,
  682. WMITLV_TAG_STRUC_wmi_bcn_offload_ctrl_cmd_fixed_param,
  683. WMITLV_GET_STRUCT_TLVLEN
  684. (wmi_bcn_offload_ctrl_cmd_fixed_param));
  685. cmd->vdev_id = bcn_ctrl_param->vdev_id;
  686. switch (bcn_ctrl_param->bcn_ctrl_op) {
  687. case BCN_OFFLD_CTRL_TX_DISABLE:
  688. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_TX_DISABLE;
  689. break;
  690. case BCN_OFFLD_CTRL_TX_ENABLE:
  691. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_TX_ENABLE;
  692. break;
  693. case BCN_OFFLD_CTRL_SWBA_DISABLE:
  694. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_SWBA_EVENT_DISABLE;
  695. break;
  696. case BCN_OFFLD_CTRL_SWBA_ENABLE:
  697. cmd->bcn_ctrl_op = WMI_BEACON_CTRL_SWBA_EVENT_ENABLE;
  698. break;
  699. default:
  700. WMI_LOGE("WMI_BCN_OFFLOAD_CTRL_CMDID unknown CTRL Operation %d",
  701. bcn_ctrl_param->bcn_ctrl_op);
  702. wmi_buf_free(buf);
  703. return QDF_STATUS_E_FAILURE;
  704. break;
  705. }
  706. wmi_mtrace(WMI_BCN_OFFLOAD_CTRL_CMDID, cmd->vdev_id, 0);
  707. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  708. WMI_BCN_OFFLOAD_CTRL_CMDID);
  709. if (QDF_IS_STATUS_ERROR(ret)) {
  710. WMI_LOGE("WMI_BCN_OFFLOAD_CTRL_CMDID send returned Error %d",
  711. ret);
  712. wmi_buf_free(buf);
  713. }
  714. return ret;
  715. }
  716. /**
  717. * extract_swba_num_vdevs_tlv() - extract swba num vdevs from event
  718. * @wmi_handle: wmi handle
  719. * @param evt_buf: pointer to event buffer
  720. * @param num_vdevs: Pointer to hold num vdevs
  721. *
  722. * Return: QDF_STATUS_SUCCESS for success or error code
  723. */
  724. static QDF_STATUS extract_swba_num_vdevs_tlv(wmi_unified_t wmi_handle,
  725. void *evt_buf, uint32_t *num_vdevs)
  726. {
  727. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  728. wmi_host_swba_event_fixed_param *swba_event;
  729. uint32_t vdev_map;
  730. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *) evt_buf;
  731. if (!param_buf) {
  732. WMI_LOGE("Invalid swba event buffer");
  733. return QDF_STATUS_E_INVAL;
  734. }
  735. swba_event = param_buf->fixed_param;
  736. *num_vdevs = swba_event->num_vdevs;
  737. if (!(*num_vdevs)) {
  738. vdev_map = swba_event->vdev_map;
  739. *num_vdevs = wmi_vdev_map_to_num_vdevs(vdev_map);
  740. }
  741. return QDF_STATUS_SUCCESS;
  742. }
  743. /**
  744. * extract_swba_tim_info_tlv() - extract swba tim info from event
  745. * @wmi_handle: wmi handle
  746. * @param evt_buf: pointer to event buffer
  747. * @param idx: Index to bcn info
  748. * @param tim_info: Pointer to hold tim info
  749. *
  750. * Return: QDF_STATUS_SUCCESS for success or error code
  751. */
  752. static QDF_STATUS extract_swba_tim_info_tlv(wmi_unified_t wmi_handle,
  753. void *evt_buf, uint32_t idx, wmi_host_tim_info *tim_info)
  754. {
  755. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  756. wmi_tim_info *tim_info_ev;
  757. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *) evt_buf;
  758. if (!param_buf) {
  759. WMI_LOGE("Invalid swba event buffer");
  760. return QDF_STATUS_E_INVAL;
  761. }
  762. tim_info_ev = &param_buf->tim_info[idx];
  763. if (tim_info_ev->tim_len != 0) {
  764. tim_info->tim_len = tim_info_ev->tim_len;
  765. tim_info->tim_mcast = tim_info_ev->tim_mcast;
  766. qdf_mem_copy(tim_info->tim_bitmap, tim_info_ev->tim_bitmap,
  767. (sizeof(uint32_t) * WMI_TIM_BITMAP_ARRAY_SIZE));
  768. tim_info->tim_changed = tim_info_ev->tim_changed;
  769. tim_info->tim_num_ps_pending = tim_info_ev->tim_num_ps_pending;
  770. tim_info->vdev_id = tim_info_ev->vdev_id;
  771. }
  772. return QDF_STATUS_SUCCESS;
  773. }
  774. /**
  775. * extract_swba_noa_info_tlv() - extract swba NoA information from event
  776. * @wmi_handle: wmi handle
  777. * @param evt_buf: pointer to event buffer
  778. * @param idx: Index to bcn info
  779. * @param p2p_desc: Pointer to hold p2p NoA info
  780. *
  781. * Return: QDF_STATUS_SUCCESS for success or error code
  782. */
  783. static QDF_STATUS extract_swba_noa_info_tlv(wmi_unified_t wmi_handle,
  784. void *evt_buf, uint32_t idx, wmi_host_p2p_noa_info *p2p_desc)
  785. {
  786. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  787. wmi_p2p_noa_info *p2p_noa_info;
  788. uint8_t i = 0;
  789. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *) evt_buf;
  790. if (!param_buf) {
  791. WMI_LOGE("Invalid swba event buffer");
  792. return QDF_STATUS_E_INVAL;
  793. }
  794. p2p_noa_info = &param_buf->p2p_noa_info[idx];
  795. p2p_desc->modified = false;
  796. p2p_desc->num_descriptors = 0;
  797. if (WMI_UNIFIED_NOA_ATTR_IS_MODIFIED(p2p_noa_info)) {
  798. p2p_desc->modified = true;
  799. p2p_desc->index =
  800. (uint8_t) WMI_UNIFIED_NOA_ATTR_INDEX_GET(p2p_noa_info);
  801. p2p_desc->oppPS =
  802. (uint8_t) WMI_UNIFIED_NOA_ATTR_OPP_PS_GET(p2p_noa_info);
  803. p2p_desc->ctwindow =
  804. (uint8_t) WMI_UNIFIED_NOA_ATTR_CTWIN_GET(p2p_noa_info);
  805. p2p_desc->num_descriptors =
  806. (uint8_t) WMI_UNIFIED_NOA_ATTR_NUM_DESC_GET
  807. (p2p_noa_info);
  808. for (i = 0; i < p2p_desc->num_descriptors; i++) {
  809. p2p_desc->noa_descriptors[i].type_count =
  810. (uint8_t) p2p_noa_info->noa_descriptors[i].
  811. type_count;
  812. p2p_desc->noa_descriptors[i].duration =
  813. p2p_noa_info->noa_descriptors[i].duration;
  814. p2p_desc->noa_descriptors[i].interval =
  815. p2p_noa_info->noa_descriptors[i].interval;
  816. p2p_desc->noa_descriptors[i].start_time =
  817. p2p_noa_info->noa_descriptors[i].start_time;
  818. }
  819. p2p_desc->vdev_id = p2p_noa_info->vdev_id;
  820. }
  821. return QDF_STATUS_SUCCESS;
  822. }
  823. /**
  824. * extract_swba_quiet_info_tlv() - extract swba quiet info from event
  825. * @wmi_handle: wmi handle
  826. * @param evt_buf: pointer to event buffer
  827. * @param idx: Index to bcn info
  828. * @param quiet_info: Pointer to hold quiet info
  829. *
  830. * Return: QDF_STATUS_SUCCESS for success or error code
  831. */
  832. static QDF_STATUS extract_swba_quiet_info_tlv(wmi_unified_t wmi_handle,
  833. void *evt_buf, uint32_t idx,
  834. wmi_host_quiet_info *quiet_info)
  835. {
  836. WMI_HOST_SWBA_EVENTID_param_tlvs *param_buf;
  837. wmi_quiet_offload_info *quiet_info_ev;
  838. param_buf = (WMI_HOST_SWBA_EVENTID_param_tlvs *)evt_buf;
  839. if (!param_buf) {
  840. WMI_LOGE("Invalid swba event buffer");
  841. return QDF_STATUS_E_INVAL;
  842. }
  843. if (!param_buf->quiet_offload_info)
  844. return QDF_STATUS_E_NULL_VALUE;
  845. quiet_info_ev = &param_buf->quiet_offload_info[idx];
  846. if (quiet_info_ev->tbttcount != 0) {
  847. quiet_info->vdev_id = quiet_info_ev->vdev_id;
  848. quiet_info->tbttcount = quiet_info_ev->tbttcount;
  849. quiet_info->period = quiet_info_ev->period;
  850. quiet_info->duration = quiet_info_ev->duration;
  851. quiet_info->offset = quiet_info_ev->offset;
  852. }
  853. return QDF_STATUS_SUCCESS;
  854. }
  855. /**
  856. * extract_offchan_data_tx_compl_param_tlv() -
  857. * extract Offchan data tx completion event params
  858. * @wmi_handle: wmi handle
  859. * @param evt_buf: pointer to event buffer
  860. * @param param: Pointer to hold offchan data TX completion params
  861. *
  862. * Return: QDF_STATUS_SUCCESS for success or error code
  863. */
  864. static QDF_STATUS extract_offchan_data_tx_compl_param_tlv(
  865. wmi_unified_t wmi_handle, void *evt_buf,
  866. struct wmi_host_offchan_data_tx_compl_event *param)
  867. {
  868. WMI_OFFCHAN_DATA_TX_COMPLETION_EVENTID_param_tlvs *param_buf;
  869. wmi_offchan_data_tx_compl_event_fixed_param *cmpl_params;
  870. param_buf = (WMI_OFFCHAN_DATA_TX_COMPLETION_EVENTID_param_tlvs *)
  871. evt_buf;
  872. if (!param_buf) {
  873. WMI_LOGE("%s: Invalid offchan data Tx compl event", __func__);
  874. return QDF_STATUS_E_INVAL;
  875. }
  876. cmpl_params = param_buf->fixed_param;
  877. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  878. wmi_handle,
  879. cmpl_params->pdev_id);
  880. param->desc_id = cmpl_params->desc_id;
  881. param->status = cmpl_params->status;
  882. return QDF_STATUS_SUCCESS;
  883. }
  884. /**
  885. * extract_pdev_csa_switch_count_status_tlv() - extract pdev csa switch count
  886. * status tlv
  887. * @wmi_handle: wmi handle
  888. * @param evt_buf: pointer to event buffer
  889. * @param param: Pointer to hold csa switch count status event param
  890. *
  891. * Return: QDF_STATUS_SUCCESS for success or error code
  892. */
  893. static QDF_STATUS extract_pdev_csa_switch_count_status_tlv(
  894. wmi_unified_t wmi_handle,
  895. void *evt_buf,
  896. struct pdev_csa_switch_count_status *param)
  897. {
  898. WMI_PDEV_CSA_SWITCH_COUNT_STATUS_EVENTID_param_tlvs *param_buf;
  899. wmi_pdev_csa_switch_count_status_event_fixed_param *csa_status;
  900. param_buf = (WMI_PDEV_CSA_SWITCH_COUNT_STATUS_EVENTID_param_tlvs *)
  901. evt_buf;
  902. if (!param_buf) {
  903. WMI_LOGE("%s: Invalid CSA status event", __func__);
  904. return QDF_STATUS_E_INVAL;
  905. }
  906. csa_status = param_buf->fixed_param;
  907. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  908. wmi_handle,
  909. csa_status->pdev_id);
  910. param->current_switch_count = csa_status->current_switch_count;
  911. param->num_vdevs = csa_status->num_vdevs;
  912. param->vdev_ids = param_buf->vdev_ids;
  913. return QDF_STATUS_SUCCESS;
  914. }
  915. /**
  916. * extract_pdev_tpc_config_ev_param_tlv() - extract pdev tpc configuration
  917. * param from event
  918. * @wmi_handle: wmi handle
  919. * @param evt_buf: pointer to event buffer
  920. * @param param: Pointer to hold tpc configuration
  921. *
  922. * Return: 0 for success or error code
  923. */
  924. static QDF_STATUS extract_pdev_tpc_config_ev_param_tlv(wmi_unified_t wmi_handle,
  925. void *evt_buf,
  926. wmi_host_pdev_tpc_config_event *param)
  927. {
  928. wmi_pdev_tpc_config_event_fixed_param *event =
  929. (wmi_pdev_tpc_config_event_fixed_param *)evt_buf;
  930. if (!event) {
  931. WMI_LOGE("Invalid event buffer");
  932. return QDF_STATUS_E_INVAL;
  933. }
  934. param->pdev_id = event->pdev_id;
  935. param->regDomain = event->regDomain;
  936. param->chanFreq = event->chanFreq;
  937. param->phyMode = event->phyMode;
  938. param->twiceAntennaReduction = event->twiceAntennaReduction;
  939. param->twiceAntennaGain = event->twiceAntennaGain;
  940. param->twiceMaxRDPower = event->twiceMaxRDPower;
  941. param->powerLimit = event->powerLimit;
  942. param->rateMax = event->rateMax;
  943. param->numTxChain = event->numTxChain;
  944. param->ctl = event->ctl;
  945. param->flags = event->flags;
  946. qdf_mem_copy(param->maxRegAllowedPower, event->maxRegAllowedPower,
  947. sizeof(param->maxRegAllowedPower));
  948. qdf_mem_copy(param->maxRegAllowedPowerAGCDD,
  949. event->maxRegAllowedPowerAGCDD,
  950. sizeof(param->maxRegAllowedPowerAGCDD));
  951. qdf_mem_copy(param->maxRegAllowedPowerAGSTBC,
  952. event->maxRegAllowedPowerAGSTBC,
  953. sizeof(param->maxRegAllowedPowerAGSTBC));
  954. qdf_mem_copy(param->maxRegAllowedPowerAGTXBF,
  955. event->maxRegAllowedPowerAGTXBF,
  956. sizeof(param->maxRegAllowedPowerAGTXBF));
  957. wmi_debug("extract success");
  958. return QDF_STATUS_SUCCESS;
  959. }
  960. /**
  961. * extract_peer_sta_kickout_ev_tlv() - extract peer sta kickout event
  962. * @wmi_handle: wmi handle
  963. * @param evt_buf: pointer to event buffer
  964. * @param ev: Pointer to hold peer param
  965. *
  966. * Return: QDF_STATUS_SUCCESS for success or error code
  967. */
  968. static QDF_STATUS extract_peer_sta_kickout_ev_tlv(wmi_unified_t wmi_handle,
  969. void *evt_buf, wmi_host_peer_sta_kickout_event *ev)
  970. {
  971. WMI_PEER_STA_KICKOUT_EVENTID_param_tlvs *param_buf = NULL;
  972. wmi_peer_sta_kickout_event_fixed_param *kickout_event = NULL;
  973. param_buf = (WMI_PEER_STA_KICKOUT_EVENTID_param_tlvs *) evt_buf;
  974. kickout_event = param_buf->fixed_param;
  975. WMI_MAC_ADDR_TO_CHAR_ARRAY(&kickout_event->peer_macaddr,
  976. ev->peer_macaddr);
  977. ev->reason = kickout_event->reason;
  978. ev->rssi = kickout_event->rssi;
  979. return QDF_STATUS_SUCCESS;
  980. }
  981. /**
  982. * send_multiple_vdev_restart_req_cmd_tlv() - send multiple vdev restart req
  983. * @wmi_handle: wmi handle
  984. * @param: wmi multiple vdev restart req param
  985. *
  986. * Send WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID parameters to fw.
  987. *
  988. * Return: QDF_STATUS_SUCCESS on success, QDF_STATUS_E_** on error
  989. */
  990. static QDF_STATUS send_multiple_vdev_restart_req_cmd_tlv(
  991. wmi_unified_t wmi_handle,
  992. struct multiple_vdev_restart_params *param)
  993. {
  994. wmi_buf_t buf;
  995. QDF_STATUS qdf_status;
  996. wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param *cmd;
  997. int i;
  998. uint8_t *buf_ptr;
  999. uint32_t *vdev_ids, *phymode;
  1000. wmi_channel *chan_info;
  1001. struct mlme_channel_param *tchan_info;
  1002. uint16_t len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  1003. if (!param->num_vdevs) {
  1004. WMI_LOGE("vdev's not found for MVR cmd");
  1005. qdf_status = QDF_STATUS_E_FAULT;
  1006. goto end;
  1007. }
  1008. len += sizeof(wmi_channel);
  1009. if (param->num_vdevs) {
  1010. len += sizeof(uint32_t) * param->num_vdevs + WMI_TLV_HDR_SIZE;
  1011. /* for phymode */
  1012. len += sizeof(uint32_t) * param->num_vdevs;
  1013. }
  1014. buf = wmi_buf_alloc(wmi_handle, len);
  1015. if (!buf) {
  1016. WMI_LOGE("Failed to allocate memory");
  1017. qdf_status = QDF_STATUS_E_NOMEM;
  1018. goto end;
  1019. }
  1020. buf_ptr = (uint8_t *)wmi_buf_data(buf);
  1021. cmd = (wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param *)
  1022. buf_ptr;
  1023. WMITLV_SET_HDR(&cmd->tlv_header,
  1024. WMITLV_TAG_STRUC_wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param,
  1025. WMITLV_GET_STRUCT_TLVLEN
  1026. (wmi_pdev_multiple_vdev_restart_request_cmd_fixed_param));
  1027. cmd->pdev_id = wmi_handle->ops->convert_pdev_id_host_to_target(
  1028. wmi_handle,
  1029. param->pdev_id);
  1030. cmd->requestor_id = param->requestor_id;
  1031. cmd->disable_hw_ack = param->disable_hw_ack;
  1032. cmd->cac_duration_ms = param->cac_duration_ms;
  1033. cmd->num_vdevs = param->num_vdevs;
  1034. wmi_info("cmd->pdev_id: %d ,cmd->requestor_id: %d ,"
  1035. "cmd->disable_hw_ack: %d , cmd->cac_duration_ms:%d ,"
  1036. " cmd->num_vdevs: %d ",
  1037. cmd->pdev_id, cmd->requestor_id,
  1038. cmd->disable_hw_ack, cmd->cac_duration_ms, cmd->num_vdevs);
  1039. buf_ptr += sizeof(*cmd);
  1040. WMITLV_SET_HDR(buf_ptr,
  1041. WMITLV_TAG_ARRAY_UINT32,
  1042. sizeof(uint32_t) * param->num_vdevs);
  1043. vdev_ids = (uint32_t *)(buf_ptr + WMI_TLV_HDR_SIZE);
  1044. for (i = 0; i < param->num_vdevs; i++)
  1045. vdev_ids[i] = param->vdev_ids[i];
  1046. buf_ptr += (sizeof(uint32_t) * param->num_vdevs) + WMI_TLV_HDR_SIZE;
  1047. WMITLV_SET_HDR(buf_ptr,
  1048. WMITLV_TAG_STRUC_wmi_channel,
  1049. WMITLV_GET_STRUCT_TLVLEN(wmi_channel));
  1050. chan_info = (wmi_channel *)buf_ptr;
  1051. tchan_info = &(param->ch_param);
  1052. chan_info->mhz = tchan_info->mhz;
  1053. chan_info->band_center_freq1 = tchan_info->cfreq1;
  1054. chan_info->band_center_freq2 = tchan_info->cfreq2;
  1055. if (tchan_info->is_chan_passive)
  1056. WMI_SET_CHANNEL_FLAG(chan_info,
  1057. WMI_CHAN_FLAG_PASSIVE);
  1058. if (tchan_info->dfs_set)
  1059. WMI_SET_CHANNEL_FLAG(chan_info, WMI_CHAN_FLAG_DFS);
  1060. if (tchan_info->dfs_set_cfreq2)
  1061. WMI_SET_CHANNEL_FLAG(chan_info, WMI_CHAN_FLAG_DFS_CFREQ2);
  1062. if (tchan_info->allow_vht)
  1063. WMI_SET_CHANNEL_FLAG(chan_info,
  1064. WMI_CHAN_FLAG_ALLOW_VHT);
  1065. else if (tchan_info->allow_ht)
  1066. WMI_SET_CHANNEL_FLAG(chan_info,
  1067. WMI_CHAN_FLAG_ALLOW_HT);
  1068. WMI_SET_CHANNEL_MODE(chan_info, tchan_info->phy_mode);
  1069. WMI_SET_CHANNEL_MIN_POWER(chan_info, tchan_info->minpower);
  1070. WMI_SET_CHANNEL_MAX_POWER(chan_info, tchan_info->maxpower);
  1071. WMI_SET_CHANNEL_REG_POWER(chan_info, tchan_info->maxregpower);
  1072. WMI_SET_CHANNEL_ANTENNA_MAX(chan_info, tchan_info->antennamax);
  1073. WMI_SET_CHANNEL_REG_CLASSID(chan_info, tchan_info->reg_class_id);
  1074. WMI_SET_CHANNEL_MAX_TX_POWER(chan_info, tchan_info->maxregpower);
  1075. wmi_info("tchan_info->is_chan_passive: %d ,"
  1076. "tchan_info->dfs_set : %d ,tchan_info->allow_vht:%d ,"
  1077. "tchan_info->allow_ht: %d ,tchan_info->antennamax: %d ,"
  1078. "tchan_info->phy_mode: %d ,tchan_info->minpower: %d,"
  1079. "tchan_info->maxpower: %d ,tchan_info->maxregpower: %d ,"
  1080. "tchan_info->reg_class_id: %d ,"
  1081. "tchan_info->maxregpower : %d ",
  1082. tchan_info->is_chan_passive, tchan_info->dfs_set,
  1083. tchan_info->allow_vht, tchan_info->allow_ht,
  1084. tchan_info->antennamax, tchan_info->phy_mode,
  1085. tchan_info->minpower, tchan_info->maxpower,
  1086. tchan_info->maxregpower, tchan_info->reg_class_id,
  1087. tchan_info->maxregpower);
  1088. buf_ptr += sizeof(*chan_info);
  1089. WMITLV_SET_HDR(buf_ptr,
  1090. WMITLV_TAG_ARRAY_UINT32,
  1091. sizeof(uint32_t) * param->num_vdevs);
  1092. phymode = (uint32_t *)(buf_ptr + WMI_TLV_HDR_SIZE);
  1093. for (i = 0; i < param->num_vdevs; i++)
  1094. WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_PHYMODE(
  1095. phymode[i], param->mvr_param[i].phymode);
  1096. /* Target expects flag for phymode processing */
  1097. WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_PHYMODE_PRESENT(cmd->flags, 1);
  1098. /*
  1099. * Target expects to be informed that MVR response is
  1100. * expected by host corresponding to this request.
  1101. */
  1102. WMI_MULTIPLE_VDEV_RESTART_FLAG_SET_MVRR_EVENT_SUPPORT(cmd->flags, 1);
  1103. wmi_mtrace(WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID, NO_SESSION, 0);
  1104. qdf_status = wmi_unified_cmd_send(wmi_handle, buf, len,
  1105. WMI_PDEV_MULTIPLE_VDEV_RESTART_REQUEST_CMDID);
  1106. if (QDF_IS_STATUS_ERROR(qdf_status)) {
  1107. WMI_LOGE("%s: Failed to send", __func__);
  1108. wmi_buf_free(buf);
  1109. }
  1110. end:
  1111. return qdf_status;
  1112. }
  1113. /**
  1114. * extract_dcs_interference_type_tlv() - extract dcs interference type
  1115. * from event
  1116. * @wmi_handle: wmi handle
  1117. * @param evt_buf: pointer to event buffer
  1118. * @param param: Pointer to hold dcs interference param
  1119. *
  1120. * Return: 0 for success or error code
  1121. */
  1122. static QDF_STATUS extract_dcs_interference_type_tlv(
  1123. wmi_unified_t wmi_handle,
  1124. void *evt_buf, struct wmi_host_dcs_interference_param *param)
  1125. {
  1126. WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *param_buf;
  1127. param_buf = (WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *) evt_buf;
  1128. if (!param_buf)
  1129. return QDF_STATUS_E_INVAL;
  1130. param->interference_type = param_buf->fixed_param->interference_type;
  1131. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  1132. wmi_handle,
  1133. param_buf->fixed_param->pdev_id);
  1134. return QDF_STATUS_SUCCESS;
  1135. }
  1136. /*
  1137. * extract_dcs_cw_int_tlv() - extract dcs cw interference from event
  1138. * @wmi_handle: wmi handle
  1139. * @param evt_buf: pointer to event buffer
  1140. * @param cw_int: Pointer to hold cw interference
  1141. *
  1142. * Return: 0 for success or error code
  1143. */
  1144. static QDF_STATUS extract_dcs_cw_int_tlv(wmi_unified_t wmi_handle,
  1145. void *evt_buf,
  1146. wmi_host_ath_dcs_cw_int *cw_int)
  1147. {
  1148. WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *param_buf;
  1149. wlan_dcs_cw_int *ev;
  1150. param_buf = (WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *) evt_buf;
  1151. if (!param_buf)
  1152. return QDF_STATUS_E_INVAL;
  1153. ev = param_buf->cw_int;
  1154. cw_int->channel = ev->channel;
  1155. return QDF_STATUS_SUCCESS;
  1156. }
  1157. /**
  1158. * extract_dcs_im_tgt_stats_tlv() - extract dcs im target stats from event
  1159. * @wmi_handle: wmi handle
  1160. * @param evt_buf: pointer to event buffer
  1161. * @param wlan_stat: Pointer to hold wlan stats
  1162. *
  1163. * Return: 0 for success or error code
  1164. */
  1165. static QDF_STATUS extract_dcs_im_tgt_stats_tlv(wmi_unified_t wmi_handle,
  1166. void *evt_buf,
  1167. wmi_host_dcs_im_tgt_stats_t *wlan_stat)
  1168. {
  1169. WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *param_buf;
  1170. wlan_dcs_im_tgt_stats_t *ev;
  1171. param_buf = (WMI_DCS_INTERFERENCE_EVENTID_param_tlvs *) evt_buf;
  1172. if (!param_buf)
  1173. return QDF_STATUS_E_INVAL;
  1174. ev = param_buf->wlan_stat;
  1175. wlan_stat->reg_tsf32 = ev->reg_tsf32;
  1176. wlan_stat->last_ack_rssi = ev->last_ack_rssi;
  1177. wlan_stat->tx_waste_time = ev->tx_waste_time;
  1178. wlan_stat->rx_time = ev->rx_time;
  1179. wlan_stat->phyerr_cnt = ev->phyerr_cnt;
  1180. wlan_stat->mib_stats.listen_time = ev->listen_time;
  1181. wlan_stat->mib_stats.reg_tx_frame_cnt = ev->reg_tx_frame_cnt;
  1182. wlan_stat->mib_stats.reg_rx_frame_cnt = ev->reg_rx_frame_cnt;
  1183. wlan_stat->mib_stats.reg_rxclr_cnt = ev->reg_rxclr_cnt;
  1184. wlan_stat->mib_stats.reg_cycle_cnt = ev->reg_cycle_cnt;
  1185. wlan_stat->mib_stats.reg_rxclr_ext_cnt = ev->reg_rxclr_ext_cnt;
  1186. wlan_stat->mib_stats.reg_ofdm_phyerr_cnt = ev->reg_ofdm_phyerr_cnt;
  1187. wlan_stat->mib_stats.reg_cck_phyerr_cnt = ev->reg_cck_phyerr_cnt;
  1188. wlan_stat->chan_nf = ev->chan_nf;
  1189. wlan_stat->my_bss_rx_cycle_count = ev->my_bss_rx_cycle_count;
  1190. return QDF_STATUS_SUCCESS;
  1191. }
  1192. /*
  1193. * extract_peer_delete_response_event_tlv() - extract peer delete response event
  1194. * @wmi_handle: wmi handle
  1195. * @param evt_buf: pointer to event buffer
  1196. * @param vdev_id: Pointer to hold vdev_id
  1197. * @param mac_addr: Pointer to hold peer mac address
  1198. *
  1199. * Return: QDF_STATUS_SUCCESS for success or error code
  1200. */
  1201. static QDF_STATUS extract_peer_delete_response_event_tlv(wmi_unified_t wmi_hdl,
  1202. void *evt_buf, struct wmi_host_peer_delete_response_event *param)
  1203. {
  1204. WMI_PEER_DELETE_RESP_EVENTID_param_tlvs *param_buf;
  1205. wmi_peer_delete_resp_event_fixed_param *ev;
  1206. param_buf = (WMI_PEER_DELETE_RESP_EVENTID_param_tlvs *)evt_buf;
  1207. ev = (wmi_peer_delete_resp_event_fixed_param *) param_buf->fixed_param;
  1208. if (!ev) {
  1209. WMI_LOGE("%s: Invalid peer_delete response", __func__);
  1210. return QDF_STATUS_E_FAILURE;
  1211. }
  1212. param->vdev_id = ev->vdev_id;
  1213. WMI_MAC_ADDR_TO_CHAR_ARRAY(&ev->peer_macaddr,
  1214. &param->mac_address.bytes[0]);
  1215. return QDF_STATUS_SUCCESS;
  1216. }
  1217. /**
  1218. * extract_pdev_tpc_ev_param_tlv() - extract tpc param from event
  1219. * @wmi_handle: wmi handle
  1220. * @param evt_buf: pointer to event buffer
  1221. * @param param: Pointer to hold tpc param
  1222. *
  1223. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1224. */
  1225. static QDF_STATUS extract_pdev_tpc_ev_param_tlv(wmi_unified_t wmi_handle,
  1226. void *evt_buf,
  1227. wmi_host_pdev_tpc_event *param)
  1228. {
  1229. WMI_PDEV_TPC_EVENTID_param_tlvs *param_buf;
  1230. wmi_pdev_tpc_event_fixed_param *event;
  1231. param_buf = (WMI_PDEV_TPC_EVENTID_param_tlvs *)evt_buf;
  1232. event = (wmi_pdev_tpc_event_fixed_param *)param_buf->fixed_param;
  1233. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  1234. wmi_handle,
  1235. event->pdev_id);
  1236. qdf_mem_copy(param->tpc, param_buf->tpc, sizeof(param->tpc));
  1237. return QDF_STATUS_SUCCESS;
  1238. }
  1239. /**
  1240. * extract_nfcal_power_ev_param_tlv() - extract noise floor calibration
  1241. * power param from event
  1242. * @wmi_handle: wmi handle
  1243. * @param evt_buf: pointer to event buffer
  1244. * @param param: Pointer to hold nf cal power param
  1245. *
  1246. * Return: 0 for success or error code
  1247. */
  1248. static QDF_STATUS
  1249. extract_nfcal_power_ev_param_tlv(wmi_unified_t wmi_handle,
  1250. void *evt_buf,
  1251. wmi_host_pdev_nfcal_power_all_channels_event *param)
  1252. {
  1253. WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID_param_tlvs *param_buf;
  1254. wmi_pdev_nfcal_power_all_channels_event_fixed_param *event;
  1255. wmi_pdev_nfcal_power_all_channels_nfdBr *ch_nfdbr;
  1256. wmi_pdev_nfcal_power_all_channels_nfdBm *ch_nfdbm;
  1257. wmi_pdev_nfcal_power_all_channels_freqNum *ch_freqnum;
  1258. uint32_t i;
  1259. param_buf =
  1260. (WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID_param_tlvs *)evt_buf;
  1261. event = param_buf->fixed_param;
  1262. ch_nfdbr = param_buf->nfdbr;
  1263. ch_nfdbm = param_buf->nfdbm;
  1264. ch_freqnum = param_buf->freqnum;
  1265. wmi_debug("pdev_id[%x], num_nfdbr[%d], num_nfdbm[%d] num_freqnum[%d]",
  1266. event->pdev_id, param_buf->num_nfdbr,
  1267. param_buf->num_nfdbm, param_buf->num_freqnum);
  1268. if (param_buf->num_nfdbr >
  1269. WMI_HOST_RXG_CAL_CHAN_MAX * WMI_HOST_MAX_NUM_CHAINS) {
  1270. WMI_LOGE("invalid number of nfdBr");
  1271. return QDF_STATUS_E_FAILURE;
  1272. }
  1273. if (param_buf->num_nfdbm >
  1274. WMI_HOST_RXG_CAL_CHAN_MAX * WMI_HOST_MAX_NUM_CHAINS) {
  1275. WMI_LOGE("invalid number of nfdBm");
  1276. return QDF_STATUS_E_FAILURE;
  1277. }
  1278. if (param_buf->num_freqnum > WMI_HOST_RXG_CAL_CHAN_MAX) {
  1279. WMI_LOGE("invalid number of freqNum");
  1280. return QDF_STATUS_E_FAILURE;
  1281. }
  1282. for (i = 0; i < param_buf->num_nfdbr; i++) {
  1283. param->nfdbr[i] = (int8_t)ch_nfdbr->nfdBr;
  1284. param->nfdbm[i] = (int8_t)ch_nfdbm->nfdBm;
  1285. ch_nfdbr++;
  1286. ch_nfdbm++;
  1287. }
  1288. param->num_nfdbr_dbm = (uint16_t)param_buf->num_nfdbr;
  1289. for (i = 0; i < param_buf->num_freqnum; i++) {
  1290. param->freqnum[i] = ch_freqnum->freqNum;
  1291. ch_freqnum++;
  1292. }
  1293. param->num_freq = (uint16_t)param_buf->num_freqnum;
  1294. param->pdev_id = wmi_handle->ops->
  1295. convert_pdev_id_target_to_host(wmi_handle,
  1296. event->pdev_id);
  1297. return QDF_STATUS_SUCCESS;
  1298. }
  1299. #ifdef BIG_ENDIAN_HOST
  1300. /**
  1301. * wds_addr_ev_conv_data_be() - LE to BE conversion of wds addr event
  1302. * @param data_len - data length
  1303. * @param data - pointer to data
  1304. *
  1305. * Return: QDF_STATUS - success or error status
  1306. */
  1307. static QDF_STATUS wds_addr_ev_conv_data_be(uint16_t data_len, uint8_t *ev)
  1308. {
  1309. uint8_t *datap = (uint8_t *)ev;
  1310. int i;
  1311. /* Skip swapping the first word */
  1312. datap += sizeof(uint32_t);
  1313. for (i = 0; i < ((data_len / sizeof(uint32_t))-1);
  1314. i++, datap += sizeof(uint32_t)) {
  1315. *(uint32_t *)datap = qdf_le32_to_cpu(*(uint32_t *)datap);
  1316. }
  1317. return QDF_STATUS_SUCCESS;
  1318. }
  1319. #else
  1320. /**
  1321. * wds_addr_ev_conv_data_be() - Dummy operation for LE platforms
  1322. * @param data_len - data length
  1323. * @param data - pointer to data
  1324. *
  1325. * Return: QDF_STATUS - success or error status
  1326. */
  1327. static QDF_STATUS wds_addr_ev_conv_data_be(uint32_t data_len, uint8_t *ev)
  1328. {
  1329. return QDF_STATUS_SUCCESS;
  1330. }
  1331. #endif
  1332. /**
  1333. * extract_wds_addr_event_tlv() - extract wds address from event
  1334. * @wmi_handle: wmi handle
  1335. * @param evt_buf: pointer to event buffer
  1336. * @param wds_ev: Pointer to hold wds address
  1337. *
  1338. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1339. */
  1340. static QDF_STATUS extract_wds_addr_event_tlv(wmi_unified_t wmi_handle,
  1341. void *evt_buf,
  1342. uint16_t len, wds_addr_event_t *wds_ev)
  1343. {
  1344. WMI_WDS_PEER_EVENTID_param_tlvs *param_buf;
  1345. wmi_wds_addr_event_fixed_param *ev;
  1346. int i;
  1347. param_buf = (WMI_WDS_PEER_EVENTID_param_tlvs *)evt_buf;
  1348. ev = (wmi_wds_addr_event_fixed_param *)param_buf->fixed_param;
  1349. if (wds_addr_ev_conv_data_be(len, (uint8_t *)ev) != QDF_STATUS_SUCCESS)
  1350. return QDF_STATUS_E_FAILURE;
  1351. qdf_mem_copy(wds_ev->event_type, ev->event_type,
  1352. sizeof(wds_ev->event_type));
  1353. for (i = 0; i < 4; i++) {
  1354. wds_ev->peer_mac[i] =
  1355. ((u_int8_t *)&(ev->peer_mac.mac_addr31to0))[i];
  1356. wds_ev->dest_mac[i] =
  1357. ((u_int8_t *)&(ev->dest_mac.mac_addr31to0))[i];
  1358. }
  1359. for (i = 0; i < 2; i++) {
  1360. wds_ev->peer_mac[4+i] =
  1361. ((u_int8_t *)&(ev->peer_mac.mac_addr47to32))[i];
  1362. wds_ev->dest_mac[4+i] =
  1363. ((u_int8_t *)&(ev->dest_mac.mac_addr47to32))[i];
  1364. }
  1365. wds_ev->vdev_id = ev->vdev_id;
  1366. return QDF_STATUS_SUCCESS;
  1367. }
  1368. /**
  1369. * extract_peer_sta_ps_statechange_ev_tlv() - extract peer sta ps state
  1370. * from event
  1371. * @wmi_handle: wmi handle
  1372. * @param evt_buf: pointer to event buffer
  1373. * @param ev: Pointer to hold peer param and ps state
  1374. *
  1375. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1376. */
  1377. static QDF_STATUS extract_peer_sta_ps_statechange_ev_tlv(wmi_unified_t wmi_handle,
  1378. void *evt_buf, wmi_host_peer_sta_ps_statechange_event *ev)
  1379. {
  1380. WMI_PEER_STA_PS_STATECHG_EVENTID_param_tlvs *param_buf;
  1381. wmi_peer_sta_ps_statechange_event_fixed_param *event;
  1382. param_buf = (WMI_PEER_STA_PS_STATECHG_EVENTID_param_tlvs *)evt_buf;
  1383. event = (wmi_peer_sta_ps_statechange_event_fixed_param *)
  1384. param_buf->fixed_param;
  1385. WMI_MAC_ADDR_TO_CHAR_ARRAY(&event->peer_macaddr, ev->peer_macaddr);
  1386. ev->peer_ps_state = event->peer_ps_state;
  1387. return QDF_STATUS_SUCCESS;
  1388. }
  1389. /**
  1390. * extract_inst_rssi_stats_event_tlv() - extract inst rssi stats from event
  1391. * @wmi_handle: wmi handle
  1392. * @param evt_buf: pointer to event buffer
  1393. * @param inst_rssi_resp: Pointer to hold inst rssi response
  1394. *
  1395. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1396. */
  1397. static QDF_STATUS extract_inst_rssi_stats_event_tlv(
  1398. wmi_unified_t wmi_handle, void *evt_buf,
  1399. wmi_host_inst_stats_resp *inst_rssi_resp)
  1400. {
  1401. WMI_INST_RSSI_STATS_EVENTID_param_tlvs *param_buf;
  1402. wmi_inst_rssi_stats_resp_fixed_param *event;
  1403. param_buf = (WMI_INST_RSSI_STATS_EVENTID_param_tlvs *)evt_buf;
  1404. event = (wmi_inst_rssi_stats_resp_fixed_param *)param_buf->fixed_param;
  1405. qdf_mem_copy(&(inst_rssi_resp->peer_macaddr),
  1406. &(event->peer_macaddr), sizeof(wmi_mac_addr));
  1407. inst_rssi_resp->iRSSI = event->iRSSI;
  1408. return QDF_STATUS_SUCCESS;
  1409. }
  1410. /**
  1411. * send_pdev_caldata_version_check_cmd_tlv() - send caldata check cmd to fw
  1412. * @wmi_handle: wmi handle
  1413. * @param: reserved param
  1414. *
  1415. * Return: 0 for success or error code
  1416. */
  1417. static QDF_STATUS
  1418. send_pdev_caldata_version_check_cmd_tlv(wmi_unified_t wmi_handle,
  1419. uint32_t param)
  1420. {
  1421. wmi_pdev_check_cal_version_cmd_fixed_param *cmd;
  1422. wmi_buf_t buf;
  1423. int32_t len = sizeof(wmi_pdev_check_cal_version_cmd_fixed_param);
  1424. buf = wmi_buf_alloc(wmi_handle, len);
  1425. if (!buf) {
  1426. qdf_print("%s:wmi_buf_alloc failed", __func__);
  1427. return QDF_STATUS_E_FAILURE;
  1428. }
  1429. cmd = (wmi_pdev_check_cal_version_cmd_fixed_param *)wmi_buf_data(buf);
  1430. WMITLV_SET_HDR(&cmd->tlv_header,
  1431. WMITLV_TAG_STRUC_wmi_pdev_check_cal_version_cmd_fixed_param,
  1432. WMITLV_GET_STRUCT_TLVLEN
  1433. (wmi_pdev_check_cal_version_cmd_fixed_param));
  1434. cmd->pdev_id = param; /* set to 0x0 as expected from FW */
  1435. wmi_mtrace(WMI_PDEV_CHECK_CAL_VERSION_CMDID, NO_SESSION, 0);
  1436. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1437. WMI_PDEV_CHECK_CAL_VERSION_CMDID)) {
  1438. wmi_buf_free(buf);
  1439. return QDF_STATUS_E_FAILURE;
  1440. }
  1441. return QDF_STATUS_SUCCESS;
  1442. }
  1443. /**
  1444. * extract_pdev_caldata_version_check_ev_param_tlv() - extract caldata from event
  1445. * @wmi_handle: wmi handle
  1446. * @param evt_buf: pointer to event buffer
  1447. * @param param: Pointer to hold peer caldata version data
  1448. *
  1449. * Return: 0 for success or error code
  1450. */
  1451. static QDF_STATUS extract_pdev_caldata_version_check_ev_param_tlv(
  1452. wmi_unified_t wmi_handle,
  1453. void *evt_buf,
  1454. wmi_host_pdev_check_cal_version_event *param)
  1455. {
  1456. WMI_PDEV_CHECK_CAL_VERSION_EVENTID_param_tlvs *param_tlvs;
  1457. wmi_pdev_check_cal_version_event_fixed_param *event;
  1458. param_tlvs = (WMI_PDEV_CHECK_CAL_VERSION_EVENTID_param_tlvs *) evt_buf;
  1459. if (!param_tlvs) {
  1460. WMI_LOGE("invalid cal version event buf");
  1461. return QDF_STATUS_E_FAILURE;
  1462. }
  1463. event = param_tlvs->fixed_param;
  1464. if (event->board_mcn_detail[WMI_BOARD_MCN_STRING_MAX_SIZE] != '\0')
  1465. event->board_mcn_detail[WMI_BOARD_MCN_STRING_MAX_SIZE] = '\0';
  1466. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(param->board_mcn_detail,
  1467. event->board_mcn_detail, WMI_BOARD_MCN_STRING_BUF_SIZE);
  1468. param->software_cal_version = event->software_cal_version;
  1469. param->board_cal_version = event->board_cal_version;
  1470. param->cal_ok = event->cal_status;
  1471. return QDF_STATUS_SUCCESS;
  1472. }
  1473. #ifdef WLAN_SUPPORT_RX_PROTOCOL_TYPE_TAG
  1474. /**
  1475. * set_rx_pkt_type_routing_tag_update_tlv() - add/delete protocol tag in CCE
  1476. * @wmi_handle: wmi handle
  1477. * @param evt_buf: pointer to event buffer
  1478. * @param param: pointer to protocol tag/routing struct
  1479. *
  1480. * @return:QDF_STATUS_SUCCESS for success or
  1481. * QDF_STATUS_E_NOMEM/QDF_STATUS_E_FAILURE on failure
  1482. */
  1483. static QDF_STATUS set_rx_pkt_type_routing_tag_update_tlv(
  1484. wmi_unified_t wmi_hdl,
  1485. struct wmi_rx_pkt_protocol_routing_info *param)
  1486. {
  1487. wmi_pdev_update_pkt_routing_cmd_fixed_param *cmd;
  1488. wmi_buf_t buf;
  1489. QDF_STATUS status;
  1490. uint32_t len = sizeof(wmi_pdev_update_pkt_routing_cmd_fixed_param);
  1491. buf = wmi_buf_alloc(wmi_hdl, len);
  1492. if (!buf) {
  1493. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  1494. return QDF_STATUS_E_NOMEM;
  1495. }
  1496. cmd = (wmi_pdev_update_pkt_routing_cmd_fixed_param *)wmi_buf_data(buf);
  1497. WMITLV_SET_HDR(&cmd->tlv_header,
  1498. WMITLV_TAG_STRUC_wmi_pdev_update_pkt_routing_cmd_fixed_param,
  1499. WMITLV_GET_STRUCT_TLVLEN(
  1500. wmi_pdev_update_pkt_routing_cmd_fixed_param));
  1501. cmd->pdev_id = wmi_hdl->ops->convert_pdev_id_host_to_target(wmi_hdl,
  1502. param->pdev_id);
  1503. cmd->op_code = (A_UINT32) param->op_code;
  1504. cmd->routing_type_bitmap = param->routing_type_bitmap;
  1505. cmd->dest_ring = param->dest_ring;
  1506. cmd->meta_data = param->meta_data;
  1507. cmd->dest_ring_handler = param->dest_ring_handler;
  1508. wmi_info("Set RX PKT ROUTING TYPE TAG - opcode: %u", param->op_code);
  1509. wmi_info("routing_bitmap: %u, dest_ring: %u",
  1510. param->routing_type_bitmap, param->dest_ring);
  1511. wmi_info("dest_ring_handler: %u, meta_data: 0x%x",
  1512. param->dest_ring_handler, param->meta_data);
  1513. wmi_mtrace(WMI_PDEV_UPDATE_PKT_ROUTING_CMDID, cmd->pdev_id, 0);
  1514. status = wmi_unified_cmd_send(wmi_hdl, buf, len,
  1515. WMI_PDEV_UPDATE_PKT_ROUTING_CMDID);
  1516. if (status != QDF_STATUS_SUCCESS) {
  1517. wmi_buf_free(buf);
  1518. return QDF_STATUS_E_FAILURE;
  1519. }
  1520. return QDF_STATUS_SUCCESS;
  1521. }
  1522. #endif /* WLAN_SUPPORT_RX_PROTOCOL_TYPE_TAG */
  1523. /**
  1524. * send_peer_vlan_config_cmd_tlv() - Send PEER vlan hw acceleration cmd to fw
  1525. * @wmi: wmi handle
  1526. * @peer_addr: peer mac addr
  1527. * @param: struct peer_vlan_config_param *
  1528. *
  1529. * Return: QDF_STATUS_SUCCESS for success or error code
  1530. */
  1531. static QDF_STATUS send_peer_vlan_config_cmd_tlv(wmi_unified_t wmi,
  1532. uint8_t peer_addr[QDF_MAC_ADDR_SIZE],
  1533. struct peer_vlan_config_param *param)
  1534. {
  1535. wmi_peer_config_vlan_cmd_fixed_param *cmd;
  1536. wmi_buf_t buf;
  1537. uint32_t len = sizeof(*cmd);
  1538. buf = wmi_buf_alloc(wmi, len);
  1539. if (!buf)
  1540. return QDF_STATUS_E_NOMEM;
  1541. cmd = (wmi_peer_config_vlan_cmd_fixed_param *)wmi_buf_data(buf);
  1542. WMITLV_SET_HDR(&cmd->tlv_header,
  1543. WMITLV_TAG_STRUC_wmi_peer_config_vlan_cmd_fixed_param,
  1544. WMITLV_GET_STRUCT_TLVLEN
  1545. (wmi_peer_config_vlan_cmd_fixed_param));
  1546. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  1547. /* vdev id */
  1548. cmd->vdev_id = param->vdev_id;
  1549. /* Tx command - Check if cmd is Tx then configure Tx cmd */
  1550. if (param->tx_cmd) {
  1551. WMI_VLAN_TX_SET(cmd->peer_vlan_config_mask, param->tx_cmd);
  1552. /* Setting insert_or_strip bit for Tx */
  1553. WMI_TX_INSERT_OR_STRIP_SET(cmd->peer_vlan_config_mask,
  1554. param->tx_strip_insert);
  1555. if (param->tx_strip_insert_inner && param->tx_strip_insert) {
  1556. /* Setting the strip_insert_vlan_inner bit fo Tx */
  1557. WMI_TX_STRIP_INSERT_VLAN_INNER_SET(cmd->peer_vlan_config_mask,
  1558. param->tx_strip_insert_inner);
  1559. /* If Insert inner tag bit is set, then fill inner_tci */
  1560. WMI_TX_INSERT_VLAN_INNER_TCI_SET(cmd->insert_vlan_tci,
  1561. param->insert_vlan_inner_tci);
  1562. }
  1563. if (param->tx_strip_insert_outer && param->tx_strip_insert) {
  1564. /* Setting the strip_insert_vlan_outer bit fo Tx */
  1565. WMI_TX_STRIP_INSERT_VLAN_OUTER_SET(cmd->peer_vlan_config_mask,
  1566. param->tx_strip_insert_outer);
  1567. /* If Insert outer tag bit is set, then fill outer_tci */
  1568. WMI_TX_INSERT_VLAN_OUTER_TCI_SET(cmd->insert_vlan_tci,
  1569. param->insert_vlan_outer_tci);
  1570. }
  1571. }
  1572. /* Rx command - Check if cmd is Rx then configure Rx cmd */
  1573. if (param->rx_cmd) {
  1574. WMI_VLAN_RX_SET(cmd->peer_vlan_config_mask, param->rx_cmd);
  1575. /* Setting the strip_vlan_c_tag_decap bit in RX */
  1576. WMI_RX_STRIP_VLAN_C_TAG_SET(cmd->peer_vlan_config_mask,
  1577. param->rx_strip_c_tag);
  1578. /* Setting the strip_vlan_s_tag_decap bit in RX */
  1579. WMI_RX_STRIP_VLAN_S_TAG_SET(cmd->peer_vlan_config_mask,
  1580. param->rx_strip_s_tag);
  1581. /* Setting the insert_vlan_c_tag_decap bit in RX */
  1582. WMI_RX_INSERT_VLAN_C_TAG_SET(cmd->peer_vlan_config_mask,
  1583. param->rx_insert_c_tag);
  1584. /* Setting the insert_vlan_s_tag_decap bit in RX */
  1585. WMI_RX_INSERT_VLAN_S_TAG_SET(cmd->peer_vlan_config_mask,
  1586. param->rx_insert_s_tag);
  1587. }
  1588. if (wmi_unified_cmd_send(wmi, buf, len, WMI_PEER_CONFIG_VLAN_CMDID)) {
  1589. WMI_LOGE("%s: Failed to send peer hw vlan acceleration command", __func__);
  1590. wmi_buf_free(buf);
  1591. return QDF_STATUS_E_FAILURE;
  1592. }
  1593. return QDF_STATUS_SUCCESS;
  1594. }
  1595. #ifdef WLAN_SUPPORT_FILS
  1596. /**
  1597. * send_vdev_fils_enable_cmd_tlv() - enable/Disable FD Frame command to fw
  1598. * @wmi_handle: wmi handle
  1599. * @param: pointer to hold FILS discovery enable param
  1600. *
  1601. * Return: QDF_STATUS_SUCCESS on success and QDF_STATUS_E_FAILURE on failure
  1602. */
  1603. static QDF_STATUS
  1604. send_vdev_fils_enable_cmd_tlv(wmi_unified_t wmi_handle,
  1605. struct config_fils_params *param)
  1606. {
  1607. wmi_enable_fils_cmd_fixed_param *cmd;
  1608. wmi_buf_t buf;
  1609. QDF_STATUS status;
  1610. uint32_t len = sizeof(wmi_enable_fils_cmd_fixed_param);
  1611. buf = wmi_buf_alloc(wmi_handle, len);
  1612. if (!buf) {
  1613. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  1614. return QDF_STATUS_E_NOMEM;
  1615. }
  1616. cmd = (wmi_enable_fils_cmd_fixed_param *)wmi_buf_data(buf);
  1617. WMITLV_SET_HDR(&cmd->tlv_header,
  1618. WMITLV_TAG_STRUC_wmi_enable_fils_cmd_fixed_param,
  1619. WMITLV_GET_STRUCT_TLVLEN(
  1620. wmi_enable_fils_cmd_fixed_param));
  1621. cmd->vdev_id = param->vdev_id;
  1622. cmd->fd_period = param->fd_period;
  1623. cmd->flags = param->send_prb_rsp_frame;
  1624. wmi_info("Setting FD period to %d vdev id : %d",
  1625. param->fd_period, param->vdev_id);
  1626. wmi_mtrace(WMI_ENABLE_FILS_CMDID, cmd->vdev_id, 0);
  1627. status = wmi_unified_cmd_send(wmi_handle, buf, len,
  1628. WMI_ENABLE_FILS_CMDID);
  1629. if (status != QDF_STATUS_SUCCESS) {
  1630. wmi_buf_free(buf);
  1631. return QDF_STATUS_E_FAILURE;
  1632. }
  1633. return QDF_STATUS_SUCCESS;
  1634. }
  1635. /**
  1636. * extract_swfda_vdev_id_tlv() - extract swfda vdev id from event
  1637. * @wmi_handle: wmi handle
  1638. * @evt_buf: pointer to event buffer
  1639. * @vdev_id: pointer to hold vdev id
  1640. *
  1641. * Return: QDF_STATUS_SUCCESS on success and QDF_STATUS_E_INVAL on failure
  1642. */
  1643. static QDF_STATUS
  1644. extract_swfda_vdev_id_tlv(wmi_unified_t wmi_handle,
  1645. void *evt_buf, uint32_t *vdev_id)
  1646. {
  1647. WMI_HOST_SWFDA_EVENTID_param_tlvs *param_buf;
  1648. wmi_host_swfda_event_fixed_param *swfda_event;
  1649. param_buf = (WMI_HOST_SWFDA_EVENTID_param_tlvs *)evt_buf;
  1650. if (!param_buf) {
  1651. WMI_LOGE("Invalid swfda event buffer");
  1652. return QDF_STATUS_E_INVAL;
  1653. }
  1654. swfda_event = param_buf->fixed_param;
  1655. *vdev_id = swfda_event->vdev_id;
  1656. return QDF_STATUS_SUCCESS;
  1657. }
  1658. /**
  1659. * send_fils_discovery_send_cmd_tlv() - WMI FILS Discovery send function
  1660. * @wmi_handle: wmi handle
  1661. * @param: pointer to hold FD send cmd parameter
  1662. *
  1663. * Return : QDF_STATUS_SUCCESS on success and QDF_STATUS_E_NOMEM on failure.
  1664. */
  1665. static QDF_STATUS
  1666. send_fils_discovery_send_cmd_tlv(wmi_unified_t wmi_handle,
  1667. struct fd_params *param)
  1668. {
  1669. QDF_STATUS ret;
  1670. wmi_fd_send_from_host_cmd_fixed_param *cmd;
  1671. wmi_buf_t wmi_buf;
  1672. qdf_dma_addr_t dma_addr;
  1673. wmi_buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1674. if (!wmi_buf) {
  1675. WMI_LOGE("%s : wmi_buf_alloc failed", __func__);
  1676. return QDF_STATUS_E_NOMEM;
  1677. }
  1678. cmd = (wmi_fd_send_from_host_cmd_fixed_param *)wmi_buf_data(wmi_buf);
  1679. WMITLV_SET_HDR(&cmd->tlv_header,
  1680. WMITLV_TAG_STRUC_wmi_fd_send_from_host_cmd_fixed_param,
  1681. WMITLV_GET_STRUCT_TLVLEN(
  1682. wmi_fd_send_from_host_cmd_fixed_param));
  1683. cmd->vdev_id = param->vdev_id;
  1684. cmd->data_len = qdf_nbuf_len(param->wbuf);
  1685. dma_addr = qdf_nbuf_get_frag_paddr(param->wbuf, 0);
  1686. qdf_dmaaddr_to_32s(dma_addr, &cmd->frag_ptr_lo, &cmd->frag_ptr_hi);
  1687. cmd->frame_ctrl = param->frame_ctrl;
  1688. wmi_mtrace(WMI_PDEV_SEND_FD_CMDID, cmd->vdev_id, 0);
  1689. ret = wmi_unified_cmd_send(wmi_handle, wmi_buf, sizeof(*cmd),
  1690. WMI_PDEV_SEND_FD_CMDID);
  1691. if (ret != QDF_STATUS_SUCCESS) {
  1692. WMI_LOGE("%s: Failed to send fils discovery frame: %d",
  1693. __func__, ret);
  1694. wmi_buf_free(wmi_buf);
  1695. }
  1696. return ret;
  1697. }
  1698. #endif /* WLAN_SUPPORT_FILS */
  1699. /**
  1700. * send_set_qboost_param_cmd_tlv() - send set qboost command to fw
  1701. * @wmi_handle: wmi handle
  1702. * @param: pointer to qboost params
  1703. * @macaddr: vdev mac address
  1704. *
  1705. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1706. */
  1707. static QDF_STATUS
  1708. send_set_qboost_param_cmd_tlv(wmi_unified_t wmi_handle,
  1709. uint8_t macaddr[QDF_MAC_ADDR_SIZE],
  1710. struct set_qboost_params *param)
  1711. {
  1712. WMI_QBOOST_CFG_CMD_fixed_param *cmd;
  1713. wmi_buf_t buf;
  1714. int32_t len;
  1715. QDF_STATUS ret;
  1716. len = sizeof(*cmd);
  1717. buf = wmi_buf_alloc(wmi_handle, len);
  1718. if (!buf) {
  1719. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  1720. return QDF_STATUS_E_FAILURE;
  1721. }
  1722. cmd = (WMI_QBOOST_CFG_CMD_fixed_param *)wmi_buf_data(buf);
  1723. WMITLV_SET_HDR(&cmd->tlv_header,
  1724. WMITLV_TAG_STRUC_WMI_QBOOST_CFG_CMD_fixed_param,
  1725. WMITLV_GET_STRUCT_TLVLEN(
  1726. WMI_QBOOST_CFG_CMD_fixed_param));
  1727. cmd->vdev_id = param->vdev_id;
  1728. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  1729. cmd->qb_enable = param->value;
  1730. wmi_mtrace(WMI_QBOOST_CFG_CMDID, cmd->vdev_id, 0);
  1731. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  1732. WMI_QBOOST_CFG_CMDID);
  1733. if (ret != 0) {
  1734. WMI_LOGE("Setting qboost cmd failed");
  1735. wmi_buf_free(buf);
  1736. }
  1737. return ret;
  1738. }
  1739. /**
  1740. * send_mcast_group_update_cmd_tlv() - send mcast group update cmd to fw
  1741. * @wmi_handle: wmi handle
  1742. * @param: pointer to hold mcast update param
  1743. *
  1744. * Return: 0 for success or error code
  1745. */
  1746. static QDF_STATUS
  1747. send_mcast_group_update_cmd_tlv(wmi_unified_t wmi_handle,
  1748. struct mcast_group_update_params *param)
  1749. {
  1750. wmi_peer_mcast_group_cmd_fixed_param *cmd;
  1751. wmi_buf_t buf;
  1752. QDF_STATUS ret;
  1753. int32_t len;
  1754. int offset = 0;
  1755. static char dummymask[4] = { 0xFF, 0xFF, 0xFF, 0xFF};
  1756. len = sizeof(*cmd);
  1757. buf = wmi_buf_alloc(wmi_handle, len);
  1758. if (!buf) {
  1759. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  1760. return QDF_STATUS_E_FAILURE;
  1761. }
  1762. cmd = (wmi_peer_mcast_group_cmd_fixed_param *)wmi_buf_data(buf);
  1763. WMITLV_SET_HDR(&cmd->tlv_header,
  1764. WMITLV_TAG_STRUC_wmi_peer_mcast_group_cmd_fixed_param,
  1765. WMITLV_GET_STRUCT_TLVLEN(
  1766. wmi_peer_mcast_group_cmd_fixed_param));
  1767. /* confirm the buffer is 4-byte aligned */
  1768. QDF_ASSERT((((size_t) cmd) & 0x3) == 0);
  1769. qdf_mem_zero(cmd, sizeof(*cmd));
  1770. cmd->vdev_id = param->vap_id;
  1771. /* construct the message assuming our endianness matches the target */
  1772. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_ACTION_M &
  1773. (param->action << WMI_PEER_MCAST_GROUP_FLAG_ACTION_S);
  1774. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_M &
  1775. (param->wildcard << WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_S);
  1776. if (param->is_action_delete)
  1777. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_DELETEALL_M;
  1778. if (param->is_mcast_addr_len)
  1779. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_IPV6_M;
  1780. if (param->is_filter_mode_snoop)
  1781. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_SRC_FILTER_EXCLUDE_M;
  1782. /* unicast address spec only applies for non-wildcard cases */
  1783. if (!param->wildcard && param->ucast_mac_addr) {
  1784. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->ucast_mac_addr,
  1785. &cmd->ucast_mac_addr);
  1786. }
  1787. if (param->mcast_ip_addr) {
  1788. QDF_ASSERT(param->mcast_ip_addr_bytes <=
  1789. sizeof(cmd->mcast_ip_addr));
  1790. offset = sizeof(cmd->mcast_ip_addr) -
  1791. param->mcast_ip_addr_bytes;
  1792. qdf_mem_copy(((uint8_t *)&cmd->mcast_ip_addr) + offset,
  1793. param->mcast_ip_addr,
  1794. param->mcast_ip_addr_bytes);
  1795. }
  1796. if (!param->mask)
  1797. param->mask = &dummymask[0];
  1798. qdf_mem_copy(((uint8_t *)&cmd->mcast_ip_mask) + offset,
  1799. param->mask,
  1800. param->mcast_ip_addr_bytes);
  1801. if (param->srcs && param->nsrcs) {
  1802. cmd->num_filter_addr = param->nsrcs;
  1803. QDF_ASSERT((param->nsrcs * param->mcast_ip_addr_bytes) <=
  1804. sizeof(cmd->filter_addr));
  1805. qdf_mem_copy(((uint8_t *) &cmd->filter_addr), param->srcs,
  1806. param->nsrcs * param->mcast_ip_addr_bytes);
  1807. }
  1808. wmi_mtrace(WMI_PEER_MCAST_GROUP_CMDID, cmd->vdev_id, 0);
  1809. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1810. WMI_PEER_MCAST_GROUP_CMDID);
  1811. if (ret != QDF_STATUS_SUCCESS) {
  1812. WMI_LOGE("%s : WMI Failed", __func__);
  1813. wmi_buf_free(buf);
  1814. }
  1815. return ret;
  1816. }
  1817. /**
  1818. * send_pdev_qvit_cmd_tlv() - send qvit command to fw
  1819. * @wmi_handle: wmi handle
  1820. * @param: pointer to pdev_qvit_params
  1821. *
  1822. * Return: 0 for success or error code
  1823. */
  1824. static QDF_STATUS
  1825. send_pdev_qvit_cmd_tlv(wmi_unified_t wmi_handle,
  1826. struct pdev_qvit_params *param)
  1827. {
  1828. wmi_buf_t buf;
  1829. QDF_STATUS ret = QDF_STATUS_E_INVAL;
  1830. uint8_t *cmd;
  1831. static uint8_t msgref = 1;
  1832. uint8_t segnumber = 0, seginfo, numsegments;
  1833. uint16_t chunk_len, total_bytes;
  1834. uint8_t *bufpos;
  1835. QVIT_SEG_HDR_INFO_STRUCT seghdrinfo;
  1836. bufpos = param->utf_payload;
  1837. total_bytes = param->len;
  1838. ASSERT(total_bytes / MAX_WMI_QVIT_LEN ==
  1839. (uint8_t) (total_bytes / MAX_WMI_QVIT_LEN));
  1840. numsegments = (uint8_t) (total_bytes / MAX_WMI_QVIT_LEN);
  1841. if (param->len - (numsegments * MAX_WMI_QVIT_LEN))
  1842. numsegments++;
  1843. while (param->len) {
  1844. if (param->len > MAX_WMI_QVIT_LEN)
  1845. chunk_len = MAX_WMI_QVIT_LEN; /* MAX message */
  1846. else
  1847. chunk_len = param->len;
  1848. buf = wmi_buf_alloc(wmi_handle,
  1849. (chunk_len + sizeof(seghdrinfo) +
  1850. WMI_TLV_HDR_SIZE));
  1851. if (!buf) {
  1852. WMI_LOGE("%s:wmi_buf_alloc failed", __func__);
  1853. return QDF_STATUS_E_NOMEM;
  1854. }
  1855. cmd = (uint8_t *) wmi_buf_data(buf);
  1856. seghdrinfo.len = total_bytes;
  1857. seghdrinfo.msgref = msgref;
  1858. seginfo = ((numsegments << 4) & 0xF0) | (segnumber & 0xF);
  1859. seghdrinfo.segmentInfo = seginfo;
  1860. segnumber++;
  1861. WMITLV_SET_HDR(cmd, WMITLV_TAG_ARRAY_BYTE,
  1862. (chunk_len + sizeof(seghdrinfo)));
  1863. cmd += WMI_TLV_HDR_SIZE;
  1864. qdf_mem_copy(cmd, &seghdrinfo, sizeof(seghdrinfo));
  1865. qdf_mem_copy(&cmd[sizeof(seghdrinfo)], bufpos, chunk_len);
  1866. wmi_mtrace(WMI_PDEV_QVIT_CMDID, NO_SESSION, 0);
  1867. ret = wmi_unified_cmd_send(wmi_handle, buf,
  1868. (chunk_len + sizeof(seghdrinfo) +
  1869. WMI_TLV_HDR_SIZE),
  1870. WMI_PDEV_QVIT_CMDID);
  1871. if (ret != 0) {
  1872. WMI_LOGE("Failed to send WMI_PDEV_QVIT_CMDID command");
  1873. wmi_buf_free(buf);
  1874. break;
  1875. }
  1876. param->len -= chunk_len;
  1877. bufpos += chunk_len;
  1878. }
  1879. msgref++;
  1880. return ret;
  1881. }
  1882. /**
  1883. * send_wmm_update_cmd_tlv() - send wmm update command to fw
  1884. * @wmi_handle: wmi handle
  1885. * @param: pointer to wmm update param
  1886. *
  1887. * Return: 0 for success or error code
  1888. */
  1889. static QDF_STATUS
  1890. send_wmm_update_cmd_tlv(wmi_unified_t wmi_handle,
  1891. struct wmm_update_params *param)
  1892. {
  1893. wmi_pdev_set_wmm_params_cmd_fixed_param *cmd;
  1894. wmi_wmm_params *wmm_param;
  1895. wmi_buf_t buf;
  1896. QDF_STATUS ret;
  1897. int32_t len;
  1898. int ac = 0;
  1899. struct wmi_host_wmeParams *wmep;
  1900. uint8_t *buf_ptr;
  1901. len = sizeof(*cmd) + (WME_NUM_AC * sizeof(*wmm_param));
  1902. buf = wmi_buf_alloc(wmi_handle, len);
  1903. if (!buf) {
  1904. WMI_LOGE("%s: wmi_buf_alloc failed", __func__);
  1905. return QDF_STATUS_E_FAILURE;
  1906. }
  1907. buf_ptr = (uint8_t *) wmi_buf_data(buf);
  1908. cmd = (wmi_pdev_set_wmm_params_cmd_fixed_param *) buf_ptr;
  1909. WMITLV_SET_HDR(&cmd->tlv_header,
  1910. WMITLV_TAG_STRUC_wmi_pdev_set_wmm_params_cmd_fixed_param,
  1911. WMITLV_GET_STRUCT_TLVLEN
  1912. (wmi_pdev_set_wmm_params_cmd_fixed_param));
  1913. cmd->reserved0 = WMI_HOST_PDEV_ID_SOC;
  1914. buf_ptr += sizeof(wmi_pdev_set_wmm_params_cmd_fixed_param);
  1915. for (ac = 0; ac < WME_NUM_AC; ac++) {
  1916. wmep = &param->wmep_array[ac];
  1917. wmm_param = (wmi_wmm_params *)buf_ptr;
  1918. WMITLV_SET_HDR(&wmm_param->tlv_header,
  1919. WMITLV_TAG_STRUC_wmi_wmm_params,
  1920. WMITLV_GET_STRUCT_TLVLEN(wmi_wmm_params));
  1921. wmm_param->aifs = wmep->wmep_aifsn;
  1922. wmm_param->cwmin = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmin);
  1923. wmm_param->cwmax = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmax);
  1924. wmm_param->txoplimit = ATH_TXOP_TO_US(wmep->wmep_txopLimit);
  1925. wmm_param->acm = wmep->wmep_acm;
  1926. wmm_param->no_ack = wmep->wmep_noackPolicy;
  1927. buf_ptr += sizeof(wmi_wmm_params);
  1928. }
  1929. wmi_mtrace(WMI_PDEV_SET_WMM_PARAMS_CMDID, NO_SESSION, 0);
  1930. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1931. WMI_PDEV_SET_WMM_PARAMS_CMDID);
  1932. if (ret != 0) {
  1933. WMI_LOGE("Sending WMM update CMD failed");
  1934. wmi_buf_free(buf);
  1935. }
  1936. return ret;
  1937. }
  1938. #define WMI_TSF_SHIFT_UPPER 32
  1939. #define WMI_TSF_MASK_UPPER_32 0xFFFFFFFF00000000
  1940. /**
  1941. * extract_mgmt_tx_compl_param_tlv() - extract MGMT tx completion event params
  1942. * @wmi_handle: wmi handle
  1943. * @param evt_buf: pointer to event buffer
  1944. * @param param: Pointer to hold MGMT TX completion params
  1945. *
  1946. * Return: QDF_STATUS_SUCCESS for success or error code
  1947. */
  1948. static QDF_STATUS extract_mgmt_tx_compl_param_tlv(wmi_unified_t wmi_handle,
  1949. void *evt_buf, wmi_host_mgmt_tx_compl_event *param)
  1950. {
  1951. WMI_MGMT_TX_COMPLETION_EVENTID_param_tlvs *param_buf;
  1952. wmi_mgmt_tx_compl_event_fixed_param *cmpl_params;
  1953. param_buf = (WMI_MGMT_TX_COMPLETION_EVENTID_param_tlvs *)
  1954. evt_buf;
  1955. if (!param_buf) {
  1956. WMI_LOGE("%s: Invalid mgmt Tx completion event", __func__);
  1957. return QDF_STATUS_E_INVAL;
  1958. }
  1959. cmpl_params = param_buf->fixed_param;
  1960. param->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  1961. wmi_handle,
  1962. cmpl_params->pdev_id);
  1963. param->desc_id = cmpl_params->desc_id;
  1964. param->status = cmpl_params->status;
  1965. param->ppdu_id = cmpl_params->ppdu_id;
  1966. param->retries_count = cmpl_params->retries_count;
  1967. param->tx_tsf = cmpl_params->tx_tsf_u32;
  1968. param->tx_tsf = ((param->tx_tsf << WMI_TSF_SHIFT_UPPER) &
  1969. WMI_TSF_MASK_UPPER_32) |
  1970. cmpl_params->tx_tsf_l32;
  1971. return QDF_STATUS_SUCCESS;
  1972. }
  1973. /**
  1974. * extract_chan_info_event_tlv() - extract chan information from event
  1975. * @wmi_handle: wmi handle
  1976. * @param evt_buf: pointer to event buffer
  1977. * @param chan_info: Pointer to hold chan information
  1978. *
  1979. * Return: QDF_STATUS_SUCCESS for success or error code
  1980. */
  1981. static QDF_STATUS extract_chan_info_event_tlv(wmi_unified_t wmi_handle,
  1982. void *evt_buf, wmi_host_chan_info_event *chan_info)
  1983. {
  1984. WMI_CHAN_INFO_EVENTID_param_tlvs *param_buf;
  1985. wmi_chan_info_event_fixed_param *ev;
  1986. param_buf = (WMI_CHAN_INFO_EVENTID_param_tlvs *) evt_buf;
  1987. ev = (wmi_chan_info_event_fixed_param *) param_buf->fixed_param;
  1988. if (!ev) {
  1989. WMI_LOGE("%s: Failed to allocmemory", __func__);
  1990. return QDF_STATUS_E_FAILURE;
  1991. }
  1992. chan_info->err_code = ev->err_code;
  1993. chan_info->freq = ev->freq;
  1994. chan_info->cmd_flags = ev->cmd_flags;
  1995. chan_info->noise_floor = ev->noise_floor;
  1996. chan_info->rx_clear_count = ev->rx_clear_count;
  1997. chan_info->cycle_count = ev->cycle_count;
  1998. chan_info->tx_frame_cnt = ev->tx_frame_cnt;
  1999. chan_info->mac_clk_mhz = ev->mac_clk_mhz;
  2000. chan_info->pdev_id = wlan_get_pdev_id_from_vdev_id(
  2001. (struct wlan_objmgr_psoc *)wmi_handle->soc->wmi_psoc,
  2002. ev->vdev_id, WLAN_SCAN_ID);
  2003. chan_info->chan_tx_pwr_range = ev->chan_tx_pwr_range;
  2004. chan_info->chan_tx_pwr_tp = ev->chan_tx_pwr_tp;
  2005. chan_info->my_bss_rx_cycle_count = ev->my_bss_rx_cycle_count;
  2006. chan_info->rx_11b_mode_data_duration = ev->rx_11b_mode_data_duration;
  2007. chan_info->tx_frame_cnt = ev->tx_frame_cnt;
  2008. chan_info->rx_frame_count = ev->rx_frame_count;
  2009. chan_info->mac_clk_mhz = ev->mac_clk_mhz;
  2010. chan_info->vdev_id = ev->vdev_id;
  2011. qdf_mem_copy(chan_info->per_chain_noise_floor,
  2012. ev->per_chain_noise_floor,
  2013. sizeof(chan_info->per_chain_noise_floor));
  2014. return QDF_STATUS_SUCCESS;
  2015. }
  2016. /**
  2017. * extract_channel_hopping_event_tlv() - extract channel hopping param
  2018. * from event
  2019. * @wmi_handle: wmi handle
  2020. * @param evt_buf: pointer to event buffer
  2021. * @param ch_hopping: Pointer to hold channel hopping param
  2022. *
  2023. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2024. */
  2025. static QDF_STATUS extract_channel_hopping_event_tlv(
  2026. wmi_unified_t wmi_handle, void *evt_buf,
  2027. wmi_host_pdev_channel_hopping_event *ch_hopping)
  2028. {
  2029. WMI_PDEV_CHANNEL_HOPPING_EVENTID_param_tlvs *param_buf;
  2030. wmi_pdev_channel_hopping_event_fixed_param *event;
  2031. param_buf = (WMI_PDEV_CHANNEL_HOPPING_EVENTID_param_tlvs *)evt_buf;
  2032. event = (wmi_pdev_channel_hopping_event_fixed_param *)
  2033. param_buf->fixed_param;
  2034. ch_hopping->noise_floor_report_iter = event->noise_floor_report_iter;
  2035. ch_hopping->noise_floor_total_iter = event->noise_floor_total_iter;
  2036. ch_hopping->pdev_id = wmi_handle->ops->convert_pdev_id_target_to_host(
  2037. wmi_handle,
  2038. event->pdev_id);
  2039. return QDF_STATUS_SUCCESS;
  2040. }
  2041. /**
  2042. * send_peer_chan_width_switch_cmd_tlv() - send peer channel width params
  2043. * @wmi_handle: WMI handle
  2044. * @param: Peer channel width switching params
  2045. *
  2046. * Return: QDF_STATUS_SUCCESS on success or error code
  2047. */
  2048. static QDF_STATUS
  2049. send_peer_chan_width_switch_cmd_tlv(wmi_unified_t wmi_handle,
  2050. struct peer_chan_width_switch_params *param)
  2051. {
  2052. wmi_buf_t buf;
  2053. wmi_peer_chan_width_switch_cmd_fixed_param *cmd;
  2054. int32_t len;
  2055. uint32_t max_peers_per_command, max_peers_per_buf;
  2056. wmi_chan_width_peer_list *cmd_peer_list;
  2057. int16_t pending_peers = param->num_peers;
  2058. struct peer_chan_width_switch_info *param_peer_list =
  2059. param->chan_width_peer_list;
  2060. uint8_t ix;
  2061. /* Max peers per WMI buffer */
  2062. max_peers_per_buf = (wmi_get_max_msg_len(wmi_handle) -
  2063. sizeof(*cmd) - WMI_TLV_HDR_SIZE) /
  2064. sizeof(*cmd_peer_list);
  2065. /*
  2066. * Use param value only if it's greater than 0 and less than
  2067. * the max peers per WMI buf.
  2068. */
  2069. if (param->max_peers_per_cmd &&
  2070. (param->max_peers_per_cmd <= max_peers_per_buf)) {
  2071. max_peers_per_command = param->max_peers_per_cmd;
  2072. } else {
  2073. max_peers_per_command = max_peers_per_buf;
  2074. }
  2075. wmi_debug("Setting peer limit as %u", max_peers_per_command);
  2076. while (pending_peers > 0) {
  2077. len = sizeof(*cmd) + WMI_TLV_HDR_SIZE;
  2078. if (pending_peers >= max_peers_per_command) {
  2079. len += (max_peers_per_command * sizeof(*cmd_peer_list));
  2080. } else {
  2081. len += (pending_peers * sizeof(*cmd_peer_list));
  2082. }
  2083. buf = wmi_buf_alloc(wmi_handle, len);
  2084. if (!buf) {
  2085. WMI_LOGE("wmi_buf_alloc failed");
  2086. return QDF_STATUS_E_FAILURE;
  2087. }
  2088. cmd = (wmi_peer_chan_width_switch_cmd_fixed_param *)
  2089. wmi_buf_data(buf);
  2090. WMITLV_SET_HDR(&cmd->tlv_header,
  2091. WMITLV_TAG_STRUC_wmi_peer_chan_width_switch_cmd_fixed_param,
  2092. WMITLV_GET_STRUCT_TLVLEN(
  2093. wmi_peer_chan_width_switch_cmd_fixed_param));
  2094. cmd->num_peers = (pending_peers >= max_peers_per_command) ?
  2095. max_peers_per_command : pending_peers;
  2096. WMITLV_SET_HDR(((void *)cmd + sizeof(*cmd)),
  2097. WMITLV_TAG_ARRAY_STRUC,
  2098. cmd->num_peers *
  2099. sizeof(wmi_chan_width_peer_list));
  2100. cmd_peer_list = (wmi_chan_width_peer_list *)
  2101. ((void *)cmd + sizeof(*cmd) +
  2102. WMI_TLV_HDR_SIZE);
  2103. for (ix = 0; ix < cmd->num_peers; ix++) {
  2104. WMITLV_SET_HDR(&cmd_peer_list[ix].tlv_header,
  2105. WMITLV_TAG_STRUC_wmi_chan_width_peer_list,
  2106. WMITLV_GET_STRUCT_TLVLEN(
  2107. wmi_chan_width_peer_list));
  2108. WMI_CHAR_ARRAY_TO_MAC_ADDR(param_peer_list[ix].mac_addr,
  2109. &cmd_peer_list[ix].peer_macaddr);
  2110. cmd_peer_list[ix].chan_width =
  2111. param_peer_list[ix].chan_width;
  2112. wmi_debug("Peer[%u]: chan_width = %u", ix,
  2113. cmd_peer_list[ix].chan_width);
  2114. }
  2115. pending_peers -= cmd->num_peers;
  2116. param_peer_list += cmd->num_peers;
  2117. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  2118. WMI_PEER_CHAN_WIDTH_SWITCH_CMDID)) {
  2119. WMI_LOGE("Sending peers for chwidth switch failed");
  2120. wmi_buf_free(buf);
  2121. return QDF_STATUS_E_FAILURE;
  2122. }
  2123. }
  2124. return QDF_STATUS_SUCCESS;
  2125. }
  2126. static QDF_STATUS extract_multi_vdev_restart_resp_event_tlv(
  2127. wmi_unified_t wmi_hdl, void *evt_buf,
  2128. struct multi_vdev_restart_resp *param)
  2129. {
  2130. WMI_PDEV_MULTIPLE_VDEV_RESTART_RESP_EVENTID_param_tlvs *param_buf;
  2131. wmi_pdev_multiple_vdev_restart_resp_event_fixed_param *ev;
  2132. param_buf =
  2133. (WMI_PDEV_MULTIPLE_VDEV_RESTART_RESP_EVENTID_param_tlvs *)evt_buf;
  2134. if (!param_buf) {
  2135. WMI_LOGE("Invalid buf multi_vdev restart response");
  2136. return QDF_STATUS_E_INVAL;
  2137. }
  2138. ev = (wmi_pdev_multiple_vdev_restart_resp_event_fixed_param *)
  2139. param_buf->fixed_param;
  2140. if (!ev) {
  2141. WMI_LOGE("Invalid ev multi_vdev restart response");
  2142. return QDF_STATUS_E_INVAL;
  2143. }
  2144. param->pdev_id = wmi_hdl->ops->convert_target_pdev_id_to_host(
  2145. wmi_hdl,
  2146. ev->pdev_id);
  2147. param->status = ev->status;
  2148. if (!param_buf->num_vdev_ids_bitmap)
  2149. return QDF_STATUS_E_FAILURE;
  2150. qdf_mem_copy(param->vdev_id_bmap, param_buf->vdev_ids_bitmap,
  2151. sizeof(param->vdev_id_bmap));
  2152. wmi_debug("vdev_id_bmap is as follows");
  2153. qdf_trace_hex_dump(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  2154. param->vdev_id_bmap, sizeof(param->vdev_id_bmap));
  2155. return QDF_STATUS_SUCCESS;
  2156. }
  2157. static QDF_STATUS send_multisoc_tbtt_sync_cmd_tlv(wmi_unified_t wmi,
  2158. struct rnr_tbtt_multisoc_sync_param *param)
  2159. {
  2160. wmi_pdev_tbtt_offset_sync_cmd_fixed_param *tbtt_sync_cmd;
  2161. struct rnr_bss_tbtt_info_param *tmp_bss;
  2162. wmi_buf_t buf;
  2163. wmi_pdev_rnr_bss_tbtt_info *bss_tbtt_info;
  2164. int32_t len = 0;
  2165. int idx;
  2166. uint8_t *buf_ptr = NULL;
  2167. switch (param->cmd_type) {
  2168. case WMI_PDEV_GET_TBTT_OFFSET:
  2169. len = sizeof(wmi_pdev_tbtt_offset_sync_cmd_fixed_param);
  2170. break;
  2171. case WMI_PDEV_SET_TBTT_OFFSET:
  2172. len = sizeof(wmi_pdev_tbtt_offset_sync_cmd_fixed_param) +
  2173. WMI_TLV_HDR_SIZE +
  2174. (param->rnr_vap_count *
  2175. sizeof(wmi_pdev_rnr_bss_tbtt_info));
  2176. break;
  2177. default:
  2178. wmi_err("cmd_type: %d invalid", param->cmd_type);
  2179. return QDF_STATUS_E_FAILURE;
  2180. }
  2181. tmp_bss = param->rnr_bss_tbtt;
  2182. buf = wmi_buf_alloc(wmi, len);
  2183. if (!buf) {
  2184. wmi_err("wmi_buf_alloc failed");
  2185. return QDF_STATUS_E_NOMEM;
  2186. }
  2187. buf_ptr = wmi_buf_data(buf);
  2188. tbtt_sync_cmd = (wmi_pdev_tbtt_offset_sync_cmd_fixed_param *)wmi_buf_data(buf);
  2189. WMITLV_SET_HDR(&tbtt_sync_cmd->tlv_header,
  2190. WMITLV_TAG_STRUC_wmi_pdev_tbtt_offset_sync_cmd_fixed_param,
  2191. WMITLV_GET_STRUCT_TLVLEN(wmi_pdev_tbtt_offset_sync_cmd_fixed_param));
  2192. tbtt_sync_cmd->cmd_type = param->cmd_type;
  2193. tbtt_sync_cmd->pdev_id = wmi->ops->convert_host_pdev_id_to_target(
  2194. wmi,
  2195. param->pdev_id);
  2196. if (tbtt_sync_cmd->cmd_type == WMI_PDEV_SET_TBTT_OFFSET &&
  2197. param->rnr_vap_count) {
  2198. buf_ptr += sizeof(wmi_pdev_tbtt_offset_sync_cmd_fixed_param);
  2199. WMITLV_SET_HDR(buf_ptr, WMITLV_TAG_ARRAY_STRUC,
  2200. (param->rnr_vap_count *
  2201. sizeof(wmi_pdev_rnr_bss_tbtt_info)));
  2202. bss_tbtt_info = (wmi_pdev_rnr_bss_tbtt_info *)(buf_ptr +
  2203. WMI_TLV_HDR_SIZE);
  2204. for (idx = 0; idx < param->rnr_vap_count; idx++) {
  2205. WMITLV_SET_HDR(&bss_tbtt_info->tlv_header,
  2206. WMITLV_TAG_STRUC_wmi_pdev_rnr_bss_tbtt_info,
  2207. WMITLV_GET_STRUCT_TLVLEN(wmi_pdev_rnr_bss_tbtt_info));
  2208. WMI_CHAR_ARRAY_TO_MAC_ADDR(tmp_bss->bss_mac,
  2209. &bss_tbtt_info->bss_mac);
  2210. bss_tbtt_info->beacon_intval =
  2211. tmp_bss->beacon_intval;
  2212. bss_tbtt_info->opclass = tmp_bss->opclass;
  2213. bss_tbtt_info->chan_idx =
  2214. tmp_bss->chan_idx;
  2215. bss_tbtt_info->next_qtime_tbtt_high =
  2216. tmp_bss->next_qtime_tbtt_high;
  2217. bss_tbtt_info->next_qtime_tbtt_low =
  2218. tmp_bss->next_qtime_tbtt_low;
  2219. QDF_TRACE(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  2220. "Beacon Intval: %d, Chan: %d, opclass: %d",
  2221. bss_tbtt_info->beacon_intval,
  2222. bss_tbtt_info->chan_idx,
  2223. bss_tbtt_info->opclass);
  2224. bss_tbtt_info++;
  2225. tmp_bss++;
  2226. }
  2227. }
  2228. QDF_TRACE(QDF_MODULE_ID_WMI, QDF_TRACE_LEVEL_DEBUG,
  2229. "Cmd Type: %d, Pdev id: %d Vap count: %d", tbtt_sync_cmd->cmd_type,
  2230. tbtt_sync_cmd->pdev_id, param->rnr_vap_count);
  2231. if (wmi_unified_cmd_send(wmi, buf, len, WMI_PDEV_TBTT_OFFSET_SYNC_CMDID)) {
  2232. wmi_err("Failed to send multisoc tbtt sync command");
  2233. wmi_buf_free(buf);
  2234. return QDF_STATUS_E_FAILURE;
  2235. }
  2236. return QDF_STATUS_SUCCESS;
  2237. }
  2238. void wmi_ap_attach_tlv(wmi_unified_t wmi_handle)
  2239. {
  2240. struct wmi_ops *ops = wmi_handle->ops;
  2241. ops->send_peer_add_wds_entry_cmd = send_peer_add_wds_entry_cmd_tlv;
  2242. ops->send_peer_del_wds_entry_cmd = send_peer_del_wds_entry_cmd_tlv;
  2243. ops->send_peer_update_wds_entry_cmd =
  2244. send_peer_update_wds_entry_cmd_tlv;
  2245. ops->send_pdev_get_tpc_config_cmd = send_pdev_get_tpc_config_cmd_tlv;
  2246. ops->send_set_ctl_table_cmd = send_set_ctl_table_cmd_tlv;
  2247. ops->send_set_mimogain_table_cmd = send_set_mimogain_table_cmd_tlv;
  2248. ops->send_packet_power_info_get_cmd =
  2249. send_packet_power_info_get_cmd_tlv;
  2250. ops->send_nf_dbr_dbm_info_get_cmd = send_nf_dbr_dbm_info_get_cmd_tlv;
  2251. ops->send_set_ht_ie_cmd = send_set_ht_ie_cmd_tlv;
  2252. ops->send_set_vht_ie_cmd = send_set_vht_ie_cmd_tlv;
  2253. ops->send_set_quiet_mode_cmd = send_set_quiet_mode_cmd_tlv;
  2254. ops->send_set_bcn_offload_quiet_mode_cmd =
  2255. send_set_bcn_offload_quiet_mode_cmd_tlv;
  2256. ops->send_bcn_offload_control_cmd = send_bcn_offload_control_cmd_tlv;
  2257. ops->extract_swba_num_vdevs = extract_swba_num_vdevs_tlv;
  2258. ops->extract_swba_tim_info = extract_swba_tim_info_tlv;
  2259. ops->extract_swba_quiet_info = extract_swba_quiet_info_tlv;
  2260. ops->extract_swba_noa_info = extract_swba_noa_info_tlv;
  2261. ops->extract_offchan_data_tx_compl_param =
  2262. extract_offchan_data_tx_compl_param_tlv;
  2263. ops->extract_peer_sta_kickout_ev = extract_peer_sta_kickout_ev_tlv;
  2264. ops->send_multiple_vdev_restart_req_cmd =
  2265. send_multiple_vdev_restart_req_cmd_tlv;
  2266. ops->extract_dcs_interference_type = extract_dcs_interference_type_tlv;
  2267. ops->extract_dcs_cw_int = extract_dcs_cw_int_tlv;
  2268. ops->extract_dcs_im_tgt_stats = extract_dcs_im_tgt_stats_tlv;
  2269. ops->extract_peer_delete_response_event =
  2270. extract_peer_delete_response_event_tlv;
  2271. ops->extract_pdev_csa_switch_count_status =
  2272. extract_pdev_csa_switch_count_status_tlv;
  2273. ops->extract_pdev_tpc_ev_param = extract_pdev_tpc_ev_param_tlv;
  2274. ops->extract_pdev_tpc_config_ev_param =
  2275. extract_pdev_tpc_config_ev_param_tlv;
  2276. ops->extract_nfcal_power_ev_param = extract_nfcal_power_ev_param_tlv;
  2277. ops->extract_wds_addr_event = extract_wds_addr_event_tlv;
  2278. ops->extract_peer_sta_ps_statechange_ev =
  2279. extract_peer_sta_ps_statechange_ev_tlv;
  2280. ops->extract_inst_rssi_stats_event = extract_inst_rssi_stats_event_tlv;
  2281. ops->send_pdev_caldata_version_check_cmd =
  2282. send_pdev_caldata_version_check_cmd_tlv;
  2283. ops->extract_pdev_caldata_version_check_ev_param =
  2284. extract_pdev_caldata_version_check_ev_param_tlv;
  2285. #ifdef WLAN_SUPPORT_FILS
  2286. ops->send_vdev_fils_enable_cmd = send_vdev_fils_enable_cmd_tlv;
  2287. ops->extract_swfda_vdev_id = extract_swfda_vdev_id_tlv;
  2288. ops->send_fils_discovery_send_cmd = send_fils_discovery_send_cmd_tlv;
  2289. #endif /* WLAN_SUPPORT_FILS */
  2290. ops->send_set_qboost_param_cmd = send_set_qboost_param_cmd_tlv;
  2291. ops->send_mcast_group_update_cmd = send_mcast_group_update_cmd_tlv;
  2292. ops->send_pdev_qvit_cmd = send_pdev_qvit_cmd_tlv;
  2293. ops->send_wmm_update_cmd = send_wmm_update_cmd_tlv;
  2294. ops->extract_mgmt_tx_compl_param = extract_mgmt_tx_compl_param_tlv;
  2295. ops->extract_chan_info_event = extract_chan_info_event_tlv;
  2296. ops->extract_channel_hopping_event = extract_channel_hopping_event_tlv;
  2297. ops->send_peer_chan_width_switch_cmd =
  2298. send_peer_chan_width_switch_cmd_tlv;
  2299. #ifdef WLAN_SUPPORT_RX_PROTOCOL_TYPE_TAG
  2300. ops->set_rx_pkt_type_routing_tag_cmd =
  2301. set_rx_pkt_type_routing_tag_update_tlv;
  2302. #endif /* WLAN_SUPPORT_RX_PROTOCOL_TYPE_TAG */
  2303. ops->send_peer_vlan_config_cmd = send_peer_vlan_config_cmd_tlv;
  2304. ops->extract_multi_vdev_restart_resp_event =
  2305. extract_multi_vdev_restart_resp_event_tlv;
  2306. ops->multisoc_tbtt_sync_cmd = send_multisoc_tbtt_sync_cmd_tlv;
  2307. }