wmi_unified_non_tlv.c 263 KB

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  1. /*
  2. * Copyright (c) 2016 The Linux Foundation. All rights reserved.
  3. *
  4. * Previously licensed under the ISC license by Qualcomm Atheros, Inc.
  5. *
  6. *
  7. * Permission to use, copy, modify, and/or distribute this software for
  8. * any purpose with or without fee is hereby granted, provided that the
  9. * above copyright notice and this permission notice appear in all
  10. * copies.
  11. *
  12. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
  13. * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
  14. * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
  15. * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  16. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  17. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
  18. * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  19. * PERFORMANCE OF THIS SOFTWARE.
  20. */
  21. /*
  22. * This file was originally distributed by Qualcomm Atheros, Inc.
  23. * under proprietary terms before Copyright ownership was assigned
  24. * to the Linux Foundation.
  25. */
  26. #include "athdefs.h"
  27. #include "osapi_linux.h"
  28. #include "a_types.h"
  29. #include "a_debug.h"
  30. #include "wlan_defs.h"
  31. #include "ol_if_athvar.h"
  32. #include "ol_defines.h"
  33. #include "wmi_unified_api.h"
  34. #include "wmi_unified_priv.h"
  35. #if defined(WMI_NON_TLV_SUPPORT) || defined(WMI_TLV_AND_NON_TLV_SUPPORT)
  36. #include "wmi.h"
  37. #include "wmi_unified.h"
  38. /**
  39. * send_vdev_create_cmd_non_tlv() - send VDEV create command to fw
  40. * @wmi_handle: wmi handle
  41. * @param: pointer to hold vdev create parameter
  42. * @macaddr: vdev mac address
  43. *
  44. * Return: 0 for success or error code
  45. */
  46. QDF_STATUS send_vdev_create_cmd_non_tlv(wmi_unified_t wmi_handle,
  47. uint8_t macaddr[IEEE80211_ADDR_LEN],
  48. struct vdev_create_params *param)
  49. {
  50. wmi_vdev_create_cmd *cmd;
  51. wmi_buf_t buf;
  52. int32_t len = sizeof(wmi_vdev_create_cmd);
  53. buf = wmi_buf_alloc(wmi_handle, len);
  54. if (!buf) {
  55. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  56. return QDF_STATUS_E_NOMEM;
  57. }
  58. cmd = (wmi_vdev_create_cmd *)wmi_buf_data(buf);
  59. cmd->vdev_id = param->if_id;
  60. cmd->vdev_type = param->type;
  61. cmd->vdev_subtype = param->subtype;
  62. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->vdev_macaddr);
  63. qdf_print("%s: ID = %d Type = %d, Subtype = %d "
  64. "VAP Addr = %02x:%02x:%02x:%02x:%02x:%02x:\n",
  65. __func__, param->if_id, param->type, param->subtype,
  66. macaddr[0], macaddr[1], macaddr[2],
  67. macaddr[3], macaddr[4], macaddr[5]);
  68. return wmi_unified_cmd_send(wmi_handle, buf, len,
  69. WMI_VDEV_CREATE_CMDID);
  70. }
  71. /**
  72. * send_vdev_delete_cmd_non_tlv() - send VDEV delete command to fw
  73. * @wmi_handle: wmi handle
  74. * @if_id: vdev id
  75. *
  76. * Return: 0 for success or error code
  77. */
  78. QDF_STATUS send_vdev_delete_cmd_non_tlv(wmi_unified_t wmi_handle,
  79. uint8_t if_id)
  80. {
  81. wmi_vdev_delete_cmd *cmd;
  82. wmi_buf_t buf;
  83. int32_t len = sizeof(wmi_vdev_delete_cmd);
  84. buf = wmi_buf_alloc(wmi_handle, len);
  85. if (!buf) {
  86. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  87. return QDF_STATUS_E_NOMEM;
  88. }
  89. cmd = (wmi_vdev_delete_cmd *)wmi_buf_data(buf);
  90. cmd->vdev_id = if_id;
  91. qdf_print("%s for vap %d (%p)\n", __func__, if_id, wmi_handle);
  92. return wmi_unified_cmd_send(wmi_handle, buf, len,
  93. WMI_VDEV_DELETE_CMDID);
  94. }
  95. /**
  96. * send_vdev_stop_cmd_non_tlv() - send vdev stop command to fw
  97. * @wmi: wmi handle
  98. * @vdev_id: vdev id
  99. *
  100. * Return: 0 for success or erro code
  101. */
  102. QDF_STATUS send_vdev_stop_cmd_non_tlv(wmi_unified_t wmi,
  103. uint8_t vdev_id)
  104. {
  105. wmi_vdev_stop_cmd *cmd;
  106. wmi_buf_t buf;
  107. int len = sizeof(wmi_vdev_stop_cmd);
  108. buf = wmi_buf_alloc(wmi, len);
  109. if (!buf) {
  110. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  111. return QDF_STATUS_E_NOMEM;
  112. }
  113. cmd = (wmi_vdev_stop_cmd *)wmi_buf_data(buf);
  114. cmd->vdev_id = vdev_id;
  115. return wmi_unified_cmd_send(wmi, buf, len, WMI_VDEV_STOP_CMDID);
  116. }
  117. /**
  118. * send_vdev_down_cmd_non_tlv() - send vdev down command to fw
  119. * @wmi_handle: wmi handle
  120. * @vdev_id: vdev id
  121. *
  122. * Return: 0 for success or error code
  123. */
  124. QDF_STATUS send_vdev_down_cmd_non_tlv(wmi_unified_t wmi_handle,
  125. uint8_t vdev_id)
  126. {
  127. wmi_vdev_down_cmd *cmd;
  128. wmi_buf_t buf;
  129. int len = sizeof(wmi_vdev_down_cmd);
  130. buf = wmi_buf_alloc(wmi_handle, len);
  131. if (!buf) {
  132. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  133. return QDF_STATUS_E_NOMEM;
  134. }
  135. cmd = (wmi_vdev_down_cmd *)wmi_buf_data(buf);
  136. cmd->vdev_id = vdev_id;
  137. qdf_print("%s for vap %d (%p)\n", __func__, vdev_id, wmi_handle);
  138. return wmi_unified_cmd_send(wmi_handle, buf, len, WMI_VDEV_DOWN_CMDID);
  139. }
  140. /**
  141. * send_vdev_start_cmd_non_tlv() - send vdev start command to fw
  142. * @wmi: wmi handle
  143. * @vdev_id: vdev id
  144. *
  145. * Return: 0 for success or error code
  146. */
  147. QDF_STATUS send_vdev_start_cmd_non_tlv(wmi_unified_t wmi,
  148. struct vdev_start_params *param)
  149. {
  150. wmi_vdev_start_request_cmd *cmd;
  151. wmi_buf_t buf;
  152. int len = sizeof(wmi_vdev_start_request_cmd);
  153. int ret;
  154. buf = wmi_buf_alloc(wmi, len);
  155. if (!buf) {
  156. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  157. return QDF_STATUS_E_NOMEM;
  158. }
  159. cmd = (wmi_vdev_start_request_cmd *)wmi_buf_data(buf);
  160. cmd->vdev_id = param->vdev_id;
  161. cmd->chan.mhz = param->channel.mhz;
  162. WMI_SET_CHANNEL_MODE(&cmd->chan, param->channel.phy_mode);
  163. cmd->chan.band_center_freq1 = param->channel.cfreq1;
  164. cmd->chan.band_center_freq2 = param->channel.cfreq2;
  165. cmd->disable_hw_ack = param->disable_hw_ack;
  166. WMI_SET_CHANNEL_MIN_POWER(&cmd->chan, param->channel.minpower);
  167. WMI_SET_CHANNEL_MAX_POWER(&cmd->chan, param->channel.maxpower);
  168. WMI_SET_CHANNEL_REG_POWER(&cmd->chan, param->channel.maxregpower);
  169. WMI_SET_CHANNEL_ANTENNA_MAX(&cmd->chan, param->channel.antennamax);
  170. WMI_SET_CHANNEL_REG_CLASSID(&cmd->chan, param->channel.reg_class_id);
  171. if (param->channel.dfs_set)
  172. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_DFS);
  173. if (param->channel.dfs_set_cfreq2)
  174. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_DFS_CFREQ2);
  175. if (param->channel.dfs_set_agile)
  176. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_AGILE_MODE);
  177. if (param->channel.half_rate)
  178. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_HALF);
  179. if (param->channel.quarter_rate)
  180. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_QUARTER);
  181. if (param->is_restart) {
  182. qdf_print("VDEV RESTART\n");
  183. ret = wmi_unified_cmd_send(wmi, buf, len,
  184. WMI_VDEV_RESTART_REQUEST_CMDID);
  185. } else {
  186. qdf_print("VDEV START\n");
  187. ret = wmi_unified_cmd_send(wmi, buf, len,
  188. WMI_VDEV_START_REQUEST_CMDID);
  189. }
  190. return ret;
  191. /*
  192. For VDEV_RESTART command, the sequence of code remains the same except the
  193. command sent as WMI_VDEV_RESTART_REQUEST_CMDID instead of START_REQUEST.
  194. In that case, can we introduce a flag that takes in to check if start or
  195. restart and use the same function?? Currently implemented as two separate
  196. functions in OL layer
  197. */
  198. }
  199. /**
  200. * send_vdev_set_neighbour_rx_cmd_non_tlv() - set neighbour rx param in fw
  201. * @wmi_handle: wmi handle
  202. * @macaddr: vdev mac address
  203. * @param: pointer to hold neigbour rx param
  204. * Return: 0 for success or error code
  205. */
  206. QDF_STATUS send_vdev_set_neighbour_rx_cmd_non_tlv(wmi_unified_t wmi_handle,
  207. uint8_t macaddr[IEEE80211_ADDR_LEN],
  208. struct set_neighbour_rx_params *param)
  209. {
  210. wmi_vdev_filter_nrp_config_cmd *cmd;
  211. wmi_buf_t buf;
  212. int len = sizeof(wmi_vdev_filter_nrp_config_cmd);
  213. buf = wmi_buf_alloc(wmi_handle, len);
  214. if (!buf) {
  215. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  216. return QDF_STATUS_E_FAILURE;
  217. }
  218. cmd = (wmi_vdev_filter_nrp_config_cmd *)wmi_buf_data(buf);
  219. cmd->vdev_id = param->vdev_id;
  220. cmd->bssid_idx = param->idx;
  221. cmd->action = param->action;
  222. cmd->type = param->type;
  223. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->addr);
  224. return wmi_unified_cmd_send(wmi_handle, buf, len,
  225. WMI_VDEV_FILTER_NEIGHBOR_RX_PACKETS_CMDID);
  226. }
  227. /**
  228. * send_vdev_set_fwtest_param_cmd_non_tlv() - send fwtest param in fw
  229. * @wmi_handle: wmi handle
  230. * @param: pointer to hold fwtest param
  231. *
  232. * Return: 0 for success or error code
  233. */
  234. QDF_STATUS send_vdev_set_fwtest_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  235. struct set_fwtest_params *param)
  236. {
  237. wmi_fwtest_set_param_cmd *cmd;
  238. wmi_buf_t buf;
  239. int len = sizeof(wmi_fwtest_set_param_cmd);
  240. buf = wmi_buf_alloc(wmi_handle, len);
  241. if (!buf) {
  242. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  243. return QDF_STATUS_E_FAILURE;
  244. }
  245. cmd = (wmi_fwtest_set_param_cmd *)wmi_buf_data(buf);
  246. cmd->param_id = param->arg;
  247. cmd->param_value = param->value;
  248. return wmi_unified_cmd_send(wmi_handle, buf, len, WMI_FWTEST_CMDID);
  249. }
  250. /**
  251. * send_vdev_config_ratemask_cmd_non_tlv() - config ratemask param in fw
  252. * @wmi_handle: wmi handle
  253. * @param: pointer to hold config ratemask params
  254. *
  255. * Return: 0 for success or error code
  256. */
  257. QDF_STATUS send_vdev_config_ratemask_cmd_non_tlv(wmi_unified_t wmi_handle,
  258. struct config_ratemask_params *param)
  259. {
  260. wmi_vdev_config_ratemask *cmd;
  261. wmi_buf_t buf;
  262. int len = sizeof(wmi_vdev_config_ratemask);
  263. buf = wmi_buf_alloc(wmi_handle, len);
  264. if (!buf) {
  265. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  266. return QDF_STATUS_E_FAILURE;
  267. }
  268. cmd = (wmi_vdev_config_ratemask *)wmi_buf_data(buf);
  269. cmd->vdev_id = param->vdev_id;
  270. cmd->type = param->type;
  271. cmd->mask_lower32 = param->lower32;
  272. cmd->mask_higher32 = param->higher32;
  273. qdf_print("Setting vdev ratemask vdev id = 0x%X, type = 0x%X,"
  274. "mask_l32 = 0x%X mask_h32 = 0x%X\n",
  275. param->vdev_id, param->type, param->lower32, param->higher32);
  276. return wmi_unified_cmd_send(wmi_handle, buf, len,
  277. WMI_VDEV_RATEMASK_CMDID);
  278. }
  279. /**
  280. * send_vdev_install_key_cmd_non_tlv() - config security key in fw
  281. * @wmi_handle: wmi handle
  282. * @param: pointer to hold key params
  283. * @macaddr: vdev mac address
  284. *
  285. * Return: 0 for success or error code
  286. */
  287. QDF_STATUS send_vdev_install_key_cmd_non_tlv(wmi_unified_t wmi_handle,
  288. uint8_t macaddr[IEEE80211_ADDR_LEN],
  289. struct vdev_install_key_params *param)
  290. {
  291. wmi_vdev_install_key_cmd *cmd;
  292. wmi_buf_t buf;
  293. /* length depends on ieee key length */
  294. int len = sizeof(wmi_vdev_install_key_cmd) + param->wk_keylen;
  295. uint8_t wmi_cipher_type;
  296. int i;
  297. /* Cipher MAP has to be in the same order as ieee80211_cipher_type */
  298. static const u_int8_t wmi_ciphermap[] = {
  299. WMI_CIPHER_WEP, /* IEEE80211_CIPHER_WEP */
  300. WMI_CIPHER_TKIP, /* IEEE80211_CIPHER_TKIP */
  301. WMI_CIPHER_AES_OCB, /* IEEE80211_CIPHER_AES_OCB */
  302. WMI_CIPHER_AES_CCM, /* IEEE80211_CIPHER_AES_CCM */
  303. #if ATH_SUPPORT_WAPI
  304. WMI_CIPHER_WAPI, /* IEEE80211_CIPHER_WAPI */
  305. #else
  306. (u_int8_t) 0xff, /* IEEE80211_CIPHER_WAPI */
  307. #endif
  308. WMI_CIPHER_CKIP, /* IEEE80211_CIPHER_CKIP */
  309. WMI_CIPHER_AES_CMAC,
  310. WMI_CIPHER_AES_CCM, /* IEEE80211_CIPHER_AES_CCM 256 */
  311. WMI_CIPHER_AES_CMAC,
  312. WMI_CIPHER_AES_GCM, /* IEEE80211_CIPHER_AES_GCM */
  313. WMI_CIPHER_AES_GCM, /* IEEE80211_CIPHER_AES_GCM 256 */
  314. WMI_CIPHER_AES_GMAC,
  315. WMI_CIPHER_AES_GMAC,
  316. WMI_CIPHER_NONE, /* IEEE80211_CIPHER_NONE */
  317. };
  318. if (param->force_none == 1) {
  319. wmi_cipher_type = WMI_CIPHER_NONE;
  320. } else if ((!param->is_host_based_crypt)) {
  321. KASSERT(param->ic_cipher <
  322. (sizeof(wmi_ciphermap)/sizeof(wmi_ciphermap[0])),
  323. ("invalid cipher type %u", param->ic_cipher));
  324. wmi_cipher_type = wmi_ciphermap[param->ic_cipher];
  325. } else
  326. wmi_cipher_type = WMI_CIPHER_NONE;
  327. /* ieee_key length does not have mic keylen */
  328. if ((wmi_cipher_type == WMI_CIPHER_TKIP) ||
  329. (wmi_cipher_type == WMI_CIPHER_WAPI))
  330. len = len + IEEE80211_MICBUF_SIZE;
  331. len = roundup(len, sizeof(u_int32_t));
  332. buf = wmi_buf_alloc(wmi_handle, len);
  333. if (!buf) {
  334. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  335. return QDF_STATUS_E_NOMEM;
  336. }
  337. cmd = (wmi_vdev_install_key_cmd *)wmi_buf_data(buf);
  338. cmd->vdev_id = param->if_id;
  339. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  340. /* Mapping ieee key flags to WMI key flags */
  341. if (param->is_group_key) {
  342. cmd->key_flags |= GROUP_USAGE;
  343. /* send the ieee keyix for multicast */
  344. cmd->key_ix = param->wk_keyix;
  345. } else if (param->is_xmit_or_recv_key) {
  346. cmd->key_flags |= PAIRWISE_USAGE;
  347. /* Target expects keyix 0 for unicast
  348. other than static wep cipher */
  349. if (param->wk_keyix >= (IEEE80211_WEP_NKID + 1))
  350. cmd->key_ix = 0;
  351. else
  352. cmd->key_ix = param->wk_keyix;
  353. }
  354. /* If this WEP key is the default xmit key, TX_USAGE flag is enabled */
  355. if (param->def_keyid == 1)
  356. cmd->key_flags |= TX_USAGE;
  357. cmd->key_len = param->wk_keylen;
  358. cmd->key_cipher = wmi_cipher_type;
  359. /* setting the mic lengths. Just Added for TKIP alone */
  360. if ((wmi_cipher_type == WMI_CIPHER_TKIP) ||
  361. (wmi_cipher_type == WMI_CIPHER_WAPI)) {
  362. cmd->key_txmic_len = 8;
  363. cmd->key_rxmic_len = 8;
  364. }
  365. /* target will use the same rsc counter for
  366. various tids from from ieee key rsc */
  367. if ((wmi_cipher_type == WMI_CIPHER_TKIP) ||
  368. (wmi_cipher_type == WMI_CIPHER_AES_OCB)
  369. || (wmi_cipher_type == WMI_CIPHER_AES_CCM)) {
  370. qdf_mem_copy(&cmd->key_rsc_counter, &param->wk_keyrsc[0],
  371. sizeof(param->wk_keyrsc[0]));
  372. qdf_mem_copy(&cmd->key_tsc_counter, &param->wk_keytsc,
  373. sizeof(param->wk_keytsc));
  374. }
  375. #ifdef ATH_SUPPORT_WAPI
  376. if (wmi_cipher_type == WMI_CIPHER_WAPI) {
  377. int j;
  378. /* For WAPI, TSC and RSC has to be initialized with predefined
  379. * value.Here, Indicating TSC, RSC to target as part of set
  380. * key message
  381. */
  382. /* since wk_recviv and wk_txiv initialized in reverse order,
  383. * Before indicating the Target FW, Reversing TSC and RSC
  384. */
  385. for (i = (WPI_IV_LEN-1), j = 0; i >= 0; i--, j++)
  386. *(((uint8_t *)&cmd->wpi_key_rsc_counter)+j) =
  387. param->wk_recviv[i];
  388. for (i = (WPI_IV_LEN/4-1), j = 0; i >= 0; i--, j++)
  389. *(((uint32_t *)&cmd->wpi_key_tsc_counter)+j) =
  390. param->wk_txiv[i];
  391. qdf_print("RSC:");
  392. for (i = 0; i < 16; i++)
  393. qdf_print("0x%x ",
  394. *(((uint8_t *)&cmd->wpi_key_rsc_counter)+i));
  395. qdf_print("\n");
  396. qdf_print("TSC:");
  397. for (i = 0; i < 16; i++)
  398. qdf_print("0x%x ",
  399. *(((uint8_t *)&cmd->wpi_key_tsc_counter)+i));
  400. qdf_print("\n");
  401. }
  402. #endif
  403. /* for big endian host, copy engine byte_swap is enabled
  404. * But the key data content is in network byte order
  405. * Need to byte swap the key data content - so when copy engine
  406. * does byte_swap - target gets key_data content in the correct order
  407. */
  408. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(cmd->key_data, param->key_data,
  409. cmd->key_len);
  410. return wmi_unified_cmd_send(wmi_handle, buf, len,
  411. WMI_VDEV_INSTALL_KEY_CMDID);
  412. }
  413. /**
  414. * send_peer_flush_tids_cmd_non_tlv() - flush peer tids packets in fw
  415. * @wmi_handle: wmi handle
  416. * @peer_addr: peer mac address
  417. * @param: pointer to hold peer flush tid parameter
  418. *
  419. * Return: 0 for sucess or error code
  420. */
  421. QDF_STATUS send_peer_flush_tids_cmd_non_tlv(wmi_unified_t wmi_handle,
  422. uint8_t peer_addr[IEEE80211_ADDR_LEN],
  423. struct peer_flush_params *param)
  424. {
  425. wmi_peer_flush_tids_cmd *cmd;
  426. wmi_buf_t buf;
  427. int len = sizeof(wmi_peer_flush_tids_cmd);
  428. buf = wmi_buf_alloc(wmi_handle, len);
  429. if (!buf) {
  430. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  431. return QDF_STATUS_E_NOMEM;
  432. }
  433. cmd = (wmi_peer_flush_tids_cmd *)wmi_buf_data(buf);
  434. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  435. cmd->peer_tid_bitmap = param->peer_tid_bitmap;
  436. cmd->vdev_id = param->vdev_id;
  437. return wmi_unified_cmd_send(wmi_handle, buf, len,
  438. WMI_PEER_FLUSH_TIDS_CMDID);
  439. }
  440. /**
  441. * send_peer_delete_cmd_non_tlv() - send PEER delete command to fw
  442. * @wmi_handle: wmi handle
  443. * @peer_addr: peer mac addr
  444. * @vdev_id: vdev id
  445. *
  446. * Return: 0 for success or error code
  447. */
  448. QDF_STATUS send_peer_delete_cmd_non_tlv(wmi_unified_t wmi_handle,
  449. uint8_t
  450. peer_addr[IEEE80211_ADDR_LEN],
  451. uint8_t vdev_id)
  452. {
  453. wmi_peer_delete_cmd *cmd;
  454. wmi_buf_t buf;
  455. int len = sizeof(wmi_peer_delete_cmd);
  456. buf = wmi_buf_alloc(wmi_handle, len);
  457. if (!buf) {
  458. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  459. return QDF_STATUS_E_NOMEM;
  460. }
  461. cmd = (wmi_peer_delete_cmd *)wmi_buf_data(buf);
  462. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  463. cmd->vdev_id = vdev_id;
  464. return wmi_unified_cmd_send(wmi_handle, buf, len,
  465. WMI_PEER_DELETE_CMDID);
  466. }
  467. /**
  468. * convert_host_peer_id_to_target_id_non_tlv - convert host peer param_id
  469. * to target id.
  470. * @targ_paramid: Target parameter id to hold the result.
  471. * @peer_param_id: host param id.
  472. *
  473. * Return: QDF_STATUS_SUCCESS for success
  474. * QDF_STATUS_E_NOSUPPORT when the param_id in not supported in tareget
  475. */
  476. static QDF_STATUS convert_host_peer_id_to_target_id_non_tlv(
  477. uint32_t *targ_paramid,
  478. uint32_t peer_param_id)
  479. {
  480. switch (peer_param_id) {
  481. case WMI_HOST_PEER_MIMO_PS_STATE:
  482. *targ_paramid = WMI_PEER_MIMO_PS_STATE;
  483. break;
  484. case WMI_HOST_PEER_AMPDU:
  485. *targ_paramid = WMI_PEER_AMPDU;
  486. break;
  487. case WMI_HOST_PEER_AUTHORIZE:
  488. *targ_paramid = WMI_PEER_AUTHORIZE;
  489. break;
  490. case WMI_HOST_PEER_CHWIDTH:
  491. *targ_paramid = WMI_PEER_CHWIDTH;
  492. break;
  493. case WMI_HOST_PEER_NSS:
  494. *targ_paramid = WMI_PEER_NSS;
  495. break;
  496. case WMI_HOST_PEER_USE_4ADDR:
  497. *targ_paramid = WMI_PEER_USE_4ADDR;
  498. break;
  499. case WMI_HOST_PEER_USE_FIXED_PWR:
  500. *targ_paramid = WMI_PEER_USE_FIXED_PWR;
  501. break;
  502. case WMI_HOST_PEER_PARAM_FIXED_RATE:
  503. *targ_paramid = WMI_PEER_PARAM_FIXED_RATE;
  504. break;
  505. case WMI_HOST_PEER_SET_MU_WHITELIST:
  506. *targ_paramid = WMI_PEER_SET_MU_WHITELIST;
  507. break;
  508. case WMI_HOST_PEER_EXT_STATS_ENABLE:
  509. *targ_paramid = WMI_PEER_EXT_STATS_ENABLE;
  510. break;
  511. default:
  512. return QDF_STATUS_E_NOSUPPORT;
  513. }
  514. return QDF_STATUS_SUCCESS;
  515. }
  516. /**
  517. * send_peer_param_cmd_non_tlv() - set peer parameter in fw
  518. * @wmi_handle: wmi handle
  519. * @peer_addr: peer mac address
  520. * @param : pointer to hold peer set parameter
  521. *
  522. * Return: 0 for success or error code
  523. */
  524. QDF_STATUS send_peer_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  525. uint8_t peer_addr[IEEE80211_ADDR_LEN],
  526. struct peer_set_params *param)
  527. {
  528. wmi_peer_set_param_cmd *cmd;
  529. wmi_buf_t buf;
  530. int len = sizeof(wmi_peer_set_param_cmd);
  531. uint32_t param_id;
  532. if (convert_host_peer_id_to_target_id_non_tlv(&param_id,
  533. param->param_id) != QDF_STATUS_SUCCESS)
  534. return QDF_STATUS_E_NOSUPPORT;
  535. buf = wmi_buf_alloc(wmi_handle, len);
  536. if (!buf) {
  537. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  538. return QDF_STATUS_E_NOMEM;
  539. }
  540. cmd = (wmi_peer_set_param_cmd *)wmi_buf_data(buf);
  541. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  542. cmd->param_id = param_id;
  543. cmd->param_value = param->param_value;
  544. cmd->vdev_id = param->vdev_id;
  545. return wmi_unified_cmd_send(wmi_handle, buf, len,
  546. WMI_PEER_SET_PARAM_CMDID);
  547. }
  548. /**
  549. * send_vdev_up_cmd_non_tlv() - send vdev up command in fw
  550. * @wmi_handle: wmi handle
  551. * @bssid: bssid
  552. * @vdev_up_params: pointer to hold vdev up parameter
  553. *
  554. * Return: 0 for success or error code
  555. */
  556. QDF_STATUS send_vdev_up_cmd_non_tlv(wmi_unified_t wmi_handle,
  557. uint8_t bssid[IEEE80211_ADDR_LEN],
  558. struct vdev_up_params *param)
  559. {
  560. wmi_vdev_up_cmd *cmd;
  561. wmi_buf_t buf;
  562. int len = sizeof(wmi_vdev_up_cmd);
  563. buf = wmi_buf_alloc(wmi_handle, len);
  564. if (!buf) {
  565. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  566. return QDF_STATUS_E_NOMEM;
  567. }
  568. cmd = (wmi_vdev_up_cmd *)wmi_buf_data(buf);
  569. cmd->vdev_id = param->vdev_id;
  570. cmd->vdev_assoc_id = param->assoc_id;
  571. WMI_CHAR_ARRAY_TO_MAC_ADDR(bssid, &cmd->vdev_bssid);
  572. qdf_print("%s for vap %d (%p)\n", __func__, param->vdev_id, wmi_handle);
  573. return wmi_unified_cmd_send(wmi_handle, buf, len, WMI_VDEV_UP_CMDID);
  574. }
  575. /**
  576. * send_peer_create_cmd_non_tlv() - send peer create command to fw
  577. * @wmi_handle: wmi handle
  578. * @param: pointer to hold peer create parameter
  579. *
  580. * Return: 0 for success or error code
  581. */
  582. QDF_STATUS send_peer_create_cmd_non_tlv(wmi_unified_t wmi_handle,
  583. struct peer_create_params *param)
  584. {
  585. wmi_peer_create_cmd *cmd;
  586. wmi_buf_t buf;
  587. int len = sizeof(wmi_peer_create_cmd);
  588. buf = wmi_buf_alloc(wmi_handle, len);
  589. if (!buf) {
  590. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  591. return QDF_STATUS_E_NOMEM;
  592. }
  593. cmd = (wmi_peer_create_cmd *)wmi_buf_data(buf);
  594. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_addr, &cmd->peer_macaddr);
  595. cmd->vdev_id = param->vdev_id;
  596. return wmi_unified_cmd_send(wmi_handle, buf, len,
  597. WMI_PEER_CREATE_CMDID);
  598. }
  599. /**
  600. * send_peer_add_wds_entry_cmd_non_tlv() - send peer add command to fw
  601. * @wmi_handle: wmi handle
  602. * @param: pointer holding peer details
  603. *
  604. * Return: 0 for success or error code
  605. */
  606. QDF_STATUS send_peer_add_wds_entry_cmd_non_tlv(wmi_unified_t wmi_handle,
  607. struct peer_add_wds_entry_params *param)
  608. {
  609. wmi_peer_add_wds_entry_cmd *cmd;
  610. wmi_buf_t buf;
  611. int len = sizeof(wmi_peer_add_wds_entry_cmd);
  612. buf = wmi_buf_alloc(wmi_handle, len);
  613. if (!buf) {
  614. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  615. return QDF_STATUS_E_FAILURE;
  616. }
  617. cmd = (wmi_peer_add_wds_entry_cmd *)wmi_buf_data(buf);
  618. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->dest_addr, &cmd->wds_macaddr);
  619. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_addr, &cmd->peer_macaddr);
  620. cmd->flags = param->flags;
  621. return wmi_unified_cmd_send(wmi_handle, buf, len,
  622. WMI_PEER_ADD_WDS_ENTRY_CMDID);
  623. }
  624. /**
  625. * send_peer_del_wds_entry_cmd_non_tlv() - send peer delete command to fw
  626. * @wmi_handle: wmi handle
  627. * @param: pointer holding peer details
  628. *
  629. * Return: 0 for success or error code
  630. */
  631. QDF_STATUS send_peer_del_wds_entry_cmd_non_tlv(wmi_unified_t wmi_handle,
  632. struct peer_del_wds_entry_params *param)
  633. {
  634. wmi_peer_remove_wds_entry_cmd *cmd;
  635. wmi_buf_t buf;
  636. int len = sizeof(wmi_peer_remove_wds_entry_cmd);
  637. buf = wmi_buf_alloc(wmi_handle, len);
  638. if (!buf) {
  639. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  640. return QDF_STATUS_E_NOMEM;
  641. }
  642. cmd = (wmi_peer_remove_wds_entry_cmd *)wmi_buf_data(buf);
  643. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->dest_addr, &cmd->wds_macaddr);
  644. return wmi_unified_cmd_send(wmi_handle, buf, len,
  645. WMI_PEER_REMOVE_WDS_ENTRY_CMDID);
  646. }
  647. /**
  648. * send_peer_update_wds_entry_cmd_non_tlv() - send peer update command to fw
  649. * @wmi_handle: wmi handle
  650. * @param: pointer holding peer details
  651. *
  652. * Return: 0 for success or error code
  653. */
  654. QDF_STATUS send_peer_update_wds_entry_cmd_non_tlv(wmi_unified_t wmi_handle,
  655. struct peer_update_wds_entry_params *param)
  656. {
  657. wmi_peer_update_wds_entry_cmd *cmd;
  658. wmi_buf_t buf;
  659. int len = sizeof(wmi_peer_update_wds_entry_cmd);
  660. buf = wmi_buf_alloc(wmi_handle, len);
  661. if (!buf) {
  662. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  663. return QDF_STATUS_E_NOMEM;
  664. }
  665. /* wmi_buf_alloc returns zeroed command buffer */
  666. cmd = (wmi_peer_update_wds_entry_cmd *)wmi_buf_data(buf);
  667. cmd->flags = (param->flags) ? WMI_WDS_FLAG_STATIC : 0;
  668. if (param->wds_macaddr)
  669. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->wds_macaddr,
  670. &cmd->wds_macaddr);
  671. if (param->peer_macaddr)
  672. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_macaddr,
  673. &cmd->peer_macaddr);
  674. return wmi_unified_cmd_send(wmi_handle, buf, len,
  675. WMI_PEER_UPDATE_WDS_ENTRY_CMDID);
  676. }
  677. /**
  678. * send_green_ap_ps_cmd_non_tlv() - enable green ap powersave command
  679. * @wmi_handle: wmi handle
  680. * @value: value
  681. * @mac_id: mac id to have radio context
  682. *
  683. * Return: 0 for success or error code
  684. */
  685. QDF_STATUS send_green_ap_ps_cmd_non_tlv(wmi_unified_t wmi_handle,
  686. uint32_t value, uint8_t mac_id)
  687. {
  688. wmi_pdev_green_ap_ps_enable_cmd *cmd;
  689. wmi_buf_t buf;
  690. int len = 0;
  691. int ret;
  692. len = sizeof(wmi_pdev_green_ap_ps_enable_cmd);
  693. buf = wmi_buf_alloc(wmi_handle, len);
  694. if (!buf) {
  695. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  696. return QDF_STATUS_E_NOMEM;
  697. }
  698. cmd = (wmi_pdev_green_ap_ps_enable_cmd *)wmi_buf_data(buf);
  699. cmd->enable = value;
  700. ret = wmi_unified_cmd_send(wmi_handle,
  701. buf,
  702. len,
  703. WMI_PDEV_GREEN_AP_PS_ENABLE_CMDID);
  704. #ifdef OL_GREEN_AP_DEBUG_CONFIG_INTERACTIONS
  705. qdf_print("%s: Sent WMI_PDEV_GREEN_AP_PS_ENABLE_CMDID.\n"
  706. "enable=%u status=%d\n",
  707. __func__,
  708. value,
  709. ret);
  710. #endif /* OL_GREEN_AP_DEBUG_CONFIG_INTERACTIONS */
  711. return ret;
  712. }
  713. /**
  714. * send_pdev_utf_cmd_non_tlv() - send utf command to fw
  715. * @wmi_handle: wmi handle
  716. * @param: pointer to pdev_utf_params
  717. * @mac_id: mac id to have radio context
  718. *
  719. * Return: 0 for success or error code
  720. */
  721. QDF_STATUS
  722. send_pdev_utf_cmd_non_tlv(wmi_unified_t wmi_handle,
  723. struct pdev_utf_params *param,
  724. uint8_t mac_id)
  725. {
  726. wmi_buf_t buf;
  727. u_int8_t *cmd;
  728. int ret = 0;
  729. /* We can initialize the value and increment.*/
  730. static uint8_t msgref = 1;
  731. uint8_t segNumber = 0, segInfo, numSegments;
  732. uint16_t chunkLen, totalBytes;
  733. uint8_t *bufpos;
  734. struct seg_hdr_info segHdrInfo;
  735. bufpos = param->utf_payload;
  736. totalBytes = param->len;
  737. numSegments = (uint8_t) (totalBytes / MAX_WMI_UTF_LEN);
  738. if (param->len - (numSegments * MAX_WMI_UTF_LEN))
  739. numSegments++;
  740. while (param->len) {
  741. if (param->len > MAX_WMI_UTF_LEN)
  742. chunkLen = MAX_WMI_UTF_LEN; /* MAX messsage.. */
  743. else
  744. chunkLen = param->len;
  745. buf = wmi_buf_alloc(wmi_handle,
  746. (chunkLen + sizeof(segHdrInfo)));
  747. if (!buf) {
  748. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  749. return QDF_STATUS_E_FAILURE;
  750. }
  751. cmd = (uint8_t *)wmi_buf_data(buf);
  752. segHdrInfo.len = totalBytes;
  753. segHdrInfo.msgref = msgref;
  754. segInfo = ((numSegments << 4) & 0xF0) | (segNumber & 0xF);
  755. segHdrInfo.segmentInfo = segInfo;
  756. segNumber++;
  757. qdf_mem_copy(cmd, &segHdrInfo, sizeof(segHdrInfo));
  758. #ifdef BIG_ENDIAN_HOST
  759. if (param->is_ar900b) {
  760. /* for big endian host, copy engine byte_swap is
  761. * enable But this ART command frame buffer content is
  762. * in network byte order.
  763. * Need to byte swap the mgmt frame buffer content - so
  764. * when copy engine does byte_swap - target gets buffer
  765. * content in the correct order
  766. */
  767. int i;
  768. uint32_t *destp, *srcp;
  769. destp = (uint32_t *)(&(cmd[sizeof(segHdrInfo)]));
  770. srcp = (uint32_t *)bufpos;
  771. for (i = 0; i < (roundup(chunkLen,
  772. sizeof(uint32_t)) / 4); i++) {
  773. *destp = qdf_le32_to_cpu(*srcp);
  774. destp++; srcp++;
  775. }
  776. } else {
  777. qdf_mem_copy(&cmd[sizeof(segHdrInfo)],
  778. bufpos, chunkLen);
  779. }
  780. #else
  781. qdf_mem_copy(&cmd[sizeof(segHdrInfo)], bufpos, chunkLen);
  782. #endif
  783. ret = wmi_unified_cmd_send(wmi_handle, buf,
  784. (chunkLen + sizeof(segHdrInfo)),
  785. WMI_PDEV_UTF_CMDID);
  786. if (ret != 0)
  787. break;
  788. param->len -= chunkLen;
  789. bufpos += chunkLen;
  790. }
  791. msgref++;
  792. return ret;
  793. }
  794. /**
  795. * send_pdev_qvit_cmd_non_tlv() - send qvit command to fw
  796. * @wmi_handle: wmi handle
  797. * @param: pointer to pdev_qvit_params
  798. *
  799. * Return: 0 for success or error code
  800. */
  801. QDF_STATUS
  802. send_pdev_qvit_cmd_non_tlv(wmi_unified_t wmi_handle,
  803. struct pdev_qvit_params *param)
  804. {
  805. wmi_buf_t buf;
  806. u_int8_t *cmd;
  807. int ret = 0;
  808. /* We can initialize the value and increment.*/
  809. static u_int8_t msgref = 1;
  810. u_int8_t segNumber = 0, segInfo, numSegments;
  811. u_int16_t chunkLen, totalBytes;
  812. u_int8_t *bufpos;
  813. QVIT_SEG_HDR_INFO_STRUCT segHdrInfo;
  814. /*
  815. #ifdef QVIT_DEBUG
  816. qdf_print(KERN_INFO "QVIT: %s: called\n", __func__);
  817. #endif
  818. */
  819. bufpos = param->utf_payload;
  820. totalBytes = param->len;
  821. numSegments = (totalBytes / MAX_WMI_QVIT_LEN);
  822. if (param->len - (numSegments * MAX_WMI_QVIT_LEN))
  823. numSegments++;
  824. while (param->len) {
  825. if (param->len > MAX_WMI_QVIT_LEN)
  826. chunkLen = MAX_WMI_QVIT_LEN; /* MAX messsage.. */
  827. else
  828. chunkLen = param->len;
  829. buf = wmi_buf_alloc(wmi_handle,
  830. (chunkLen + sizeof(segHdrInfo)));
  831. if (!buf) {
  832. qdf_print(KERN_ERR "QVIT: %s: wmi_buf_alloc failed\n",
  833. __func__);
  834. return QDF_STATUS_E_FAILURE;
  835. }
  836. cmd = (u_int8_t *)wmi_buf_data(buf);
  837. segHdrInfo.len = totalBytes;
  838. segHdrInfo.msgref = msgref;
  839. segInfo = ((numSegments << 4) & 0xF0) | (segNumber & 0xF);
  840. segHdrInfo.segmentInfo = segInfo;
  841. segNumber++;
  842. qdf_mem_copy(cmd, &segHdrInfo, sizeof(segHdrInfo));
  843. qdf_mem_copy(&cmd[sizeof(segHdrInfo)], bufpos, chunkLen);
  844. ret = wmi_unified_cmd_send(wmi_handle, buf,
  845. (chunkLen + sizeof(segHdrInfo)),
  846. WMI_PDEV_QVIT_CMDID);
  847. if (ret != 0) {
  848. qdf_print
  849. (KERN_ERR "QVIT: %s: wmi_unified_cmd_send failed\n",
  850. __func__);
  851. break;
  852. }
  853. param->len -= chunkLen;
  854. bufpos += chunkLen;
  855. }
  856. msgref++;
  857. return ret;
  858. }
  859. /**
  860. * send_pdev_param_cmd_non_tlv() - set pdev parameters
  861. * @wmi_handle: wmi handle
  862. * @param: pointer to pdev parameter
  863. * @mac_id: radio context
  864. *
  865. * Return: 0 on success, errno on failure
  866. */
  867. QDF_STATUS
  868. send_pdev_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  869. struct pdev_params *param, uint8_t mac_id)
  870. {
  871. wmi_pdev_set_param_cmd *cmd;
  872. wmi_buf_t buf;
  873. int len = sizeof(wmi_pdev_set_param_cmd);
  874. if ((param->param_id < wmi_pdev_param_max) &&
  875. (wmi_handle->pdev_param[param->param_id]
  876. != WMI_UNAVAILABLE_PARAM)) {
  877. buf = wmi_buf_alloc(wmi_handle, len);
  878. if (!buf) {
  879. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  880. return QDF_STATUS_E_FAILURE;
  881. }
  882. cmd = (wmi_pdev_set_param_cmd *)wmi_buf_data(buf);
  883. cmd->param_id = wmi_handle->pdev_param[param->param_id];
  884. cmd->param_value = param->param_value;
  885. return wmi_unified_cmd_send(wmi_handle, buf, len,
  886. WMI_PDEV_SET_PARAM_CMDID);
  887. }
  888. return QDF_STATUS_E_FAILURE;
  889. }
  890. /**
  891. * send_suspend_cmd_non_tlv() - WMI suspend function
  892. *
  893. * @param wmi_handle : handle to WMI.
  894. * @param param : pointer to hold suspend parameter
  895. * @mac_id: radio context
  896. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  897. */
  898. QDF_STATUS send_suspend_cmd_non_tlv(wmi_unified_t wmi_handle,
  899. struct suspend_params *param,
  900. uint8_t mac_id)
  901. {
  902. wmi_pdev_suspend_cmd *cmd;
  903. wmi_buf_t wmibuf;
  904. uint32_t len = sizeof(wmi_pdev_suspend_cmd);
  905. /*send the comand to Target to ignore the
  906. * PCIE reset so as to ensure that Host and target
  907. * states are in sync*/
  908. wmibuf = wmi_buf_alloc(wmi_handle, len);
  909. if (wmibuf == NULL)
  910. return QDF_STATUS_E_FAILURE;
  911. cmd = (wmi_pdev_suspend_cmd *)wmi_buf_data(wmibuf);
  912. if (param->disable_target_intr)
  913. cmd->suspend_opt = WMI_PDEV_SUSPEND_AND_DISABLE_INTR;
  914. else
  915. cmd->suspend_opt = WMI_PDEV_SUSPEND;
  916. /*
  917. * Flush pending packets in HTC endpoint queue
  918. *
  919. */
  920. wmi_flush_endpoint(wmi_handle);
  921. return wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  922. WMI_PDEV_SUSPEND_CMDID);
  923. }
  924. /**
  925. * send_resume_cmd_non_tlv() - WMI resume function
  926. *
  927. * @param wmi_handle : handle to WMI.
  928. * @mac_id: radio context
  929. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  930. */
  931. QDF_STATUS send_resume_cmd_non_tlv(wmi_unified_t wmi_handle,
  932. uint8_t mac_id)
  933. {
  934. wmi_buf_t wmibuf;
  935. wmibuf = wmi_buf_alloc(wmi_handle, 0);
  936. if (wmibuf == NULL)
  937. return QDF_STATUS_E_NOMEM;
  938. return wmi_unified_cmd_send(wmi_handle, wmibuf, 0,
  939. WMI_PDEV_RESUME_CMDID);
  940. }
  941. /**
  942. * send_wow_enable_cmd_non_tlv() - WMI wow enable function
  943. *
  944. * @param wmi_handle : handle to WMI.
  945. * @param param : pointer to hold wow enable parameter
  946. * @mac_id: radio context
  947. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  948. */
  949. QDF_STATUS send_wow_enable_cmd_non_tlv(wmi_unified_t wmi_handle,
  950. struct wow_cmd_params *param, uint8_t mac_id)
  951. {
  952. QDF_STATUS res;
  953. wmi_buf_t buf = NULL;
  954. buf = wmi_buf_alloc(wmi_handle, 4);
  955. if (!buf) {
  956. qdf_print("buf alloc failed\n");
  957. return QDF_STATUS_E_NOMEM;
  958. }
  959. res = wmi_unified_cmd_send(wmi_handle, buf, 4, WMI_WOW_ENABLE_CMDID);
  960. qdf_print("send_wow_enable result: %d\n", res);
  961. return (res == QDF_STATUS_SUCCESS) ?
  962. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  963. }
  964. /**
  965. * send_wow_wakeup_cmd_non_tlv() - WMI wow wakeup function
  966. *
  967. * @param wmi_handle : handle to WMI.
  968. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  969. */
  970. QDF_STATUS send_wow_wakeup_cmd_non_tlv(wmi_unified_t wmi_handle)
  971. {
  972. QDF_STATUS res;
  973. wmi_buf_t buf = NULL;
  974. buf = wmi_buf_alloc(wmi_handle, 4);
  975. if (!buf) {
  976. qdf_print("buf alloc failed\n");
  977. return QDF_STATUS_E_NOMEM;
  978. }
  979. res = wmi_unified_cmd_send(wmi_handle, buf, 4,
  980. WMI_WOW_HOSTWAKEUP_FROM_SLEEP_CMDID);
  981. qdf_print("ol_wow_wakeup result: %d\n", res);
  982. return (res == QDF_STATUS_SUCCESS) ?
  983. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  984. }
  985. /**
  986. * send_wow_add_wakeup_event_cmd_non_tlv() - WMI wow add wakeup event function
  987. *
  988. * @param wmi_handle : handle to WMI.
  989. * @param param : pointer to hold wow wakeup event parameter
  990. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  991. */
  992. QDF_STATUS send_wow_add_wakeup_event_cmd_non_tlv(wmi_unified_t wmi_handle,
  993. struct wow_add_wakeup_params *param)
  994. {
  995. QDF_STATUS res;
  996. WMI_WOW_ADD_DEL_EVT_CMD *cmd;
  997. wmi_buf_t buf = NULL;
  998. int len = sizeof(WMI_WOW_ADD_DEL_EVT_CMD);
  999. buf = wmi_buf_alloc(wmi_handle, len);
  1000. if (!buf) {
  1001. qdf_print("buf alloc failed\n");
  1002. return QDF_STATUS_E_NOMEM;
  1003. }
  1004. cmd = (WMI_WOW_ADD_DEL_EVT_CMD *)wmi_buf_data(buf);
  1005. cmd->is_add = 1;
  1006. cmd->event_bitmap = param->type;
  1007. res = wmi_unified_cmd_send(wmi_handle, buf, len,
  1008. WMI_WOW_ENABLE_DISABLE_WAKE_EVENT_CMDID);
  1009. return (res == QDF_STATUS_SUCCESS) ?
  1010. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  1011. }
  1012. /**
  1013. * send_wow_add_wakeup_pattern_cmd_non_tlv() - WMI wow add wakeup pattern function
  1014. *
  1015. * @param wmi_handle : handle to WMI.
  1016. * @param param : pointer to hold wow wakeup pattern parameter
  1017. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1018. */
  1019. QDF_STATUS send_wow_add_wakeup_pattern_cmd_non_tlv(wmi_unified_t wmi_handle,
  1020. struct wow_add_wakeup_pattern_params *param)
  1021. {
  1022. WOW_BITMAP_PATTERN_T bitmap_pattern;
  1023. uint32_t j;
  1024. /*
  1025. struct ol_wow_info *wowInfo;
  1026. OL_WOW_PATTERN *pattern;
  1027. struct ol_ath_softc_net80211 *scn = OL_ATH_SOFTC_NET80211(ic);
  1028. */
  1029. QDF_STATUS res;
  1030. WMI_WOW_ADD_PATTERN_CMD *cmd;
  1031. wmi_buf_t buf = NULL;
  1032. int len = sizeof(WMI_WOW_ADD_PATTERN_CMD);
  1033. buf = wmi_buf_alloc(wmi_handle, len);
  1034. if (!buf) {
  1035. qdf_print("buf alloc failed\n");
  1036. return QDF_STATUS_E_NOMEM;
  1037. }
  1038. cmd = (WMI_WOW_ADD_PATTERN_CMD *)wmi_buf_data(buf);
  1039. cmd->pattern_id = param->pattern_id;
  1040. cmd->pattern_type = WOW_BITMAP_PATTERN;
  1041. for (j = 0; j < WOW_DEFAULT_BITMAP_PATTERN_SIZE; j++)
  1042. bitmap_pattern.patternbuf[j] = param->pattern_bytes[j];
  1043. for (j = 0; j < WOW_DEFAULT_BITMASK_SIZE; j++)
  1044. bitmap_pattern.bitmaskbuf[j] = param->mask_bytes[j];
  1045. bitmap_pattern.pattern_offset = 0;
  1046. cmd->pattern_info.bitmap = bitmap_pattern;
  1047. res = wmi_unified_cmd_send(wmi_handle, buf, len,
  1048. WMI_WOW_ADD_WAKE_PATTERN_CMDID);
  1049. return (res == QDF_STATUS_SUCCESS) ?
  1050. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  1051. }
  1052. /**
  1053. * send_wow_remove_wakeup_pattern_cmd_non_tlv() - WMI wow remove wakeup
  1054. * pattern function
  1055. *
  1056. * @param wmi_handle : handle to WMI.
  1057. * @param param : pointer to hold wow wakeup pattern parameter
  1058. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1059. */
  1060. QDF_STATUS send_wow_remove_wakeup_pattern_cmd_non_tlv(wmi_unified_t wmi_handle,
  1061. struct wow_remove_wakeup_pattern_params *param)
  1062. {
  1063. WMI_WOW_DEL_PATTERN_CMD *cmd;
  1064. QDF_STATUS res;
  1065. wmi_buf_t buf = NULL;
  1066. int len = sizeof(WMI_WOW_DEL_PATTERN_CMD);
  1067. buf = wmi_buf_alloc(wmi_handle, len);
  1068. if (!buf) {
  1069. qdf_print("buf alloc failed\n");
  1070. return QDF_STATUS_E_NOMEM;
  1071. }
  1072. cmd = (WMI_WOW_DEL_PATTERN_CMD *)wmi_buf_data(buf);
  1073. cmd->pattern_id = param->pattern_id;
  1074. cmd->pattern_type = WOW_BITMAP_PATTERN;
  1075. res = wmi_unified_cmd_send(wmi_handle, buf, len,
  1076. WMI_WOW_DEL_WAKE_PATTERN_CMDID);
  1077. return (res == QDF_STATUS_SUCCESS) ?
  1078. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  1079. }
  1080. /**
  1081. * send_set_ap_ps_param_cmd_non_tlv() - set ap powersave parameters
  1082. * @param wmi_handle : handle to WMI.
  1083. * @peer_addr: peer mac address
  1084. * @param: pointer to ap_ps parameter structure
  1085. *
  1086. * Return: 0 for success or error code
  1087. */
  1088. QDF_STATUS send_set_ap_ps_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  1089. uint8_t *peer_addr,
  1090. struct ap_ps_params *param)
  1091. {
  1092. wmi_ap_ps_peer_cmd *cmd;
  1093. wmi_buf_t buf;
  1094. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1095. if (!buf) {
  1096. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1097. return QDF_STATUS_E_FAILURE;
  1098. }
  1099. cmd = (wmi_ap_ps_peer_cmd *)wmi_buf_data(buf);
  1100. cmd->vdev_id = param->vdev_id;
  1101. WMI_CHAR_ARRAY_TO_MAC_ADDR(peer_addr, &cmd->peer_macaddr);
  1102. cmd->param = param->param;
  1103. cmd->value = param->value;
  1104. return wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  1105. WMI_AP_PS_PEER_PARAM_CMDID);
  1106. }
  1107. /**
  1108. * send_set_sta_ps_param_cmd_non_tlv() - set sta powersave parameters
  1109. * @param wmi_handle : handle to WMI.
  1110. * @param: pointer to sta_ps parameter structure
  1111. *
  1112. * Return: 0 for success or error code
  1113. */
  1114. QDF_STATUS send_set_sta_ps_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  1115. struct sta_ps_params *param)
  1116. {
  1117. wmi_sta_powersave_param_cmd *cmd;
  1118. wmi_buf_t buf;
  1119. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1120. if (!buf) {
  1121. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1122. return QDF_STATUS_E_FAILURE;
  1123. }
  1124. cmd = (wmi_sta_powersave_param_cmd *)wmi_buf_data(buf);
  1125. cmd->vdev_id = param->vdev_id;
  1126. cmd->param = param->param;
  1127. cmd->value = param->value;
  1128. return wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  1129. WMI_STA_POWERSAVE_PARAM_CMDID);
  1130. }
  1131. /**
  1132. * send_set_ps_mode_cmd_non_tlv() - set powersave mode
  1133. * @wmi_handle: wmi handle
  1134. * @param: pointer to ps_mode parameter structure
  1135. *
  1136. * Return: 0 for success or error code
  1137. */
  1138. QDF_STATUS send_set_ps_mode_cmd_non_tlv(wmi_unified_t wmi_handle,
  1139. struct set_ps_mode_params *param)
  1140. {
  1141. wmi_sta_powersave_mode_cmd *cmd;
  1142. wmi_buf_t buf;
  1143. int ret;
  1144. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1145. if (!buf) {
  1146. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1147. return QDF_STATUS_E_FAILURE;
  1148. }
  1149. qdf_print("%s:set psmode=%d\n", __func__, param->psmode);
  1150. cmd = (wmi_sta_powersave_mode_cmd *)wmi_buf_data(buf);
  1151. cmd->vdev_id = param->vdev_id;
  1152. cmd->sta_ps_mode = param->psmode;
  1153. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  1154. WMI_STA_POWERSAVE_MODE_CMDID);
  1155. return ret;
  1156. }
  1157. /**
  1158. * send_crash_inject_cmd_non_tlv() - inject fw crash
  1159. * @param wmi_handle : handle to WMI.
  1160. * @param: ponirt to crash inject paramter structure
  1161. *
  1162. * Return: 0 for success or return error
  1163. */
  1164. QDF_STATUS send_crash_inject_cmd_non_tlv(wmi_unified_t wmi_handle,
  1165. struct crash_inject *param)
  1166. {
  1167. WMI_FORCE_FW_HANG_CMD *cmd;
  1168. wmi_buf_t buf;
  1169. int32_t len = sizeof(WMI_FORCE_FW_HANG_CMD);
  1170. buf = wmi_buf_alloc(wmi_handle, len);
  1171. if (!buf) {
  1172. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1173. return QDF_STATUS_E_FAILURE;
  1174. }
  1175. cmd = (WMI_FORCE_FW_HANG_CMD *)wmi_buf_data(buf);
  1176. cmd->type = 1;
  1177. /* Should this be param->type ? */
  1178. cmd->delay_time_ms = param->delay_time_ms;
  1179. return wmi_unified_cmd_send(wmi_handle, buf, len,
  1180. WMI_FORCE_FW_HANG_CMDID);
  1181. }
  1182. /**
  1183. * send_dbglog_cmd_non_tlv() - set debug log level
  1184. *
  1185. * @param wmi_handle : handle to WMI.
  1186. * @param param : pointer to hold dbglog level parameter
  1187. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1188. */
  1189. QDF_STATUS
  1190. send_dbglog_cmd_non_tlv(wmi_unified_t wmi_handle,
  1191. struct dbglog_params *dbglog_param)
  1192. {
  1193. wmi_buf_t osbuf;
  1194. WMI_DBGLOG_CFG_CMD *cmd;
  1195. QDF_STATUS status;
  1196. osbuf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  1197. if (osbuf == NULL)
  1198. return QDF_STATUS_E_NOMEM;
  1199. qdf_nbuf_put_tail(osbuf, sizeof(*cmd));
  1200. cmd = (WMI_DBGLOG_CFG_CMD *)(wmi_buf_data(osbuf));
  1201. qdf_print("wmi_dbg_cfg_send: mod[0]%08x dbgcfg%08x cfgvalid[0] %08x"
  1202. " cfgvalid[1] %08x\n",
  1203. dbglog_param->module_id_bitmap[0],
  1204. dbglog_param->val, dbglog_param->cfgvalid[0],
  1205. dbglog_param->cfgvalid[1]);
  1206. cmd->config.cfgvalid[0] = dbglog_param->cfgvalid[0];
  1207. cmd->config.cfgvalid[1] = dbglog_param->cfgvalid[1];
  1208. qdf_mem_copy(&cmd->config.config.mod_id[0],
  1209. dbglog_param->module_id_bitmap,
  1210. sizeof(cmd->config.config.mod_id));
  1211. cmd->config.config.dbg_config = dbglog_param->val;
  1212. status = wmi_unified_cmd_send(wmi_handle, osbuf,
  1213. sizeof(WMI_DBGLOG_CFG_CMD),
  1214. WMI_DBGLOG_CFG_CMDID);
  1215. return status;
  1216. }
  1217. /**
  1218. * send_vdev_set_param_cmd_non_tlv() - WMI vdev set parameter function
  1219. *
  1220. * @param wmi_handle : handle to WMI.
  1221. * @param param : pointer to hold vdev set parameter
  1222. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1223. */
  1224. QDF_STATUS send_vdev_set_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  1225. struct vdev_set_params *param)
  1226. {
  1227. wmi_vdev_set_param_cmd *cmd;
  1228. wmi_buf_t buf;
  1229. int len = sizeof(wmi_vdev_set_param_cmd);
  1230. if ((param->param_id < wmi_vdev_param_max) &&
  1231. (wmi_handle->vdev_param[param->param_id] !=
  1232. WMI_UNAVAILABLE_PARAM)) {
  1233. buf = wmi_buf_alloc(wmi_handle, len);
  1234. if (!buf) {
  1235. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1236. return QDF_STATUS_E_FAILURE;
  1237. }
  1238. cmd = (wmi_vdev_set_param_cmd *)wmi_buf_data(buf);
  1239. cmd->vdev_id = param->if_id;
  1240. cmd->param_id = wmi_handle->vdev_param[param->param_id];
  1241. cmd->param_value = param->param_value;
  1242. return wmi_unified_cmd_send(wmi_handle, buf, len,
  1243. WMI_VDEV_SET_PARAM_CMDID);
  1244. }
  1245. return QDF_STATUS_E_FAILURE;
  1246. }
  1247. /**
  1248. * get_stats_id_non_tlv() - Get stats identifier function
  1249. *
  1250. * @param host_stats_id: host stats identifier value
  1251. * @return stats_id based on host_stats_id
  1252. */
  1253. static uint32_t get_stats_id_non_tlv(wmi_host_stats_id host_stats_id)
  1254. {
  1255. uint32_t stats_id = 0;
  1256. if (host_stats_id & WMI_HOST_REQUEST_PEER_STAT)
  1257. stats_id |= WMI_REQUEST_PEER_STAT;
  1258. if (host_stats_id & WMI_HOST_REQUEST_AP_STAT)
  1259. stats_id |= WMI_REQUEST_AP_STAT;
  1260. if (host_stats_id & WMI_HOST_REQUEST_INST_STAT)
  1261. stats_id |= WMI_REQUEST_INST_STAT;
  1262. if (host_stats_id & WMI_HOST_REQUEST_PEER_EXTD_STAT)
  1263. stats_id |= WMI_REQUEST_PEER_EXTD_STAT;
  1264. return stats_id;
  1265. }
  1266. /**
  1267. * send_stats_request_cmd_non_tlv() - WMI request stats function
  1268. *
  1269. * @param wmi_handle : handle to WMI.
  1270. * @param macaddr : MAC address
  1271. * @param param : pointer to hold stats request parameter
  1272. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1273. */
  1274. QDF_STATUS send_stats_request_cmd_non_tlv(wmi_unified_t wmi_handle,
  1275. uint8_t macaddr[IEEE80211_ADDR_LEN],
  1276. struct stats_request_params *param)
  1277. {
  1278. wmi_buf_t buf;
  1279. wmi_request_stats_cmd *cmd;
  1280. uint8_t len = sizeof(wmi_request_stats_cmd);
  1281. buf = wmi_buf_alloc(wmi_handle, len);
  1282. if (!buf) {
  1283. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1284. return QDF_STATUS_E_INVAL;
  1285. }
  1286. cmd = (wmi_request_stats_cmd *)wmi_buf_data(buf);
  1287. cmd->stats_id = get_stats_id_non_tlv(param->stats_id);
  1288. cmd->vdev_id = param->vdev_id;
  1289. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  1290. cmd->inst_rssi_args.cfg_retry_count = param->rssi_args.cfg_retry_count;
  1291. cmd->inst_rssi_args.retry_count = param->rssi_args.retry_count;
  1292. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1293. WMI_REQUEST_STATS_CMDID)) {
  1294. return QDF_STATUS_E_INVAL;
  1295. }
  1296. return QDF_STATUS_SUCCESS;
  1297. }
  1298. /**
  1299. * send_bss_chan_info_request_cmd_non_tlv() - WMI request bss chan info
  1300. *
  1301. * @param wmi_handle : handle to WMI.
  1302. * @param param : pointer to hold bss chan info request parameter
  1303. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1304. */
  1305. QDF_STATUS send_bss_chan_info_request_cmd_non_tlv(wmi_unified_t wmi_handle,
  1306. struct bss_chan_info_request_params *param)
  1307. {
  1308. wmi_buf_t buf;
  1309. wmi_pdev_bss_chan_info_request *cmd;
  1310. u_int8_t len = sizeof(wmi_pdev_bss_chan_info_request);
  1311. buf = wmi_buf_alloc(wmi_handle, len);
  1312. if (!buf) {
  1313. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1314. return QDF_STATUS_E_INVAL;
  1315. }
  1316. cmd = (wmi_pdev_bss_chan_info_request *)wmi_buf_data(buf);
  1317. cmd->param = param->param;
  1318. cmd->reserved = 0;
  1319. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1320. WMI_PDEV_BSS_CHAN_INFO_REQUEST_CMDID)) {
  1321. return QDF_STATUS_E_INVAL;
  1322. }
  1323. return QDF_STATUS_SUCCESS;
  1324. }
  1325. /**
  1326. * send_packet_log_enable_cmd_non_tlv() - WMI request stats function
  1327. *
  1328. * @param wmi_handle : handle to WMI.
  1329. * @param PKTLOG_EVENT : packet log event
  1330. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1331. */
  1332. QDF_STATUS send_packet_log_enable_cmd_non_tlv(wmi_unified_t wmi_handle,
  1333. WMI_HOST_PKTLOG_EVENT PKTLOG_EVENT)
  1334. {
  1335. wmi_pdev_pktlog_enable_cmd *cmd;
  1336. int len = 0;
  1337. wmi_buf_t buf;
  1338. len = sizeof(wmi_pdev_pktlog_enable_cmd);
  1339. buf = wmi_buf_alloc(wmi_handle, len);
  1340. if (!buf) {
  1341. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1342. return QDF_STATUS_E_NOMEM;
  1343. }
  1344. cmd = (wmi_pdev_pktlog_enable_cmd *)wmi_buf_data(buf);
  1345. cmd->evlist = PKTLOG_EVENT;
  1346. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1347. WMI_PDEV_PKTLOG_ENABLE_CMDID)) {
  1348. return QDF_STATUS_E_FAILURE;
  1349. }
  1350. return QDF_STATUS_SUCCESS;
  1351. }
  1352. /**
  1353. * send_packet_log_disable_cmd_non_tlv() - WMI disable packet log send function
  1354. *
  1355. * @param wmi_handle : handle to WMI.
  1356. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1357. */
  1358. QDF_STATUS send_packet_log_disable_cmd_non_tlv(wmi_unified_t wmi_handle)
  1359. {
  1360. int len = 0;
  1361. wmi_buf_t buf;
  1362. buf = wmi_buf_alloc(wmi_handle, 0);
  1363. if (!buf) {
  1364. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1365. return QDF_STATUS_E_NOMEM;
  1366. }
  1367. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  1368. WMI_PDEV_PKTLOG_DISABLE_CMDID)) {
  1369. return QDF_STATUS_E_FAILURE;
  1370. }
  1371. return QDF_STATUS_SUCCESS;
  1372. }
  1373. /**
  1374. * send_beacon_send_cmd_non_tlv() - WMI beacon send function
  1375. *
  1376. * @param wmi_handle : handle to WMI.
  1377. * @param param : pointer to hold beacon send cmd parameter
  1378. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1379. */
  1380. QDF_STATUS send_beacon_send_cmd_non_tlv(wmi_unified_t wmi_handle,
  1381. struct beacon_params *param)
  1382. {
  1383. if (param->is_high_latency) {
  1384. wmi_bcn_tx_cmd *cmd;
  1385. wmi_buf_t wmi_buf;
  1386. int bcn_len = qdf_nbuf_len(param->wbuf);
  1387. int len = sizeof(wmi_bcn_tx_hdr) + bcn_len;
  1388. /*************************************************************
  1389. * TODO: Once we have the host target transport framework for
  1390. * sending management frames this wmi function will be replaced
  1391. * with calls to HTT. The buffer will changed to match the right
  1392. * format to be used with HTT.
  1393. *************************************************************/
  1394. wmi_buf = wmi_buf_alloc(wmi_handle, roundup(len,
  1395. sizeof(u_int32_t)));
  1396. if (!wmi_buf) {
  1397. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1398. return QDF_STATUS_E_NOMEM;
  1399. }
  1400. cmd = (wmi_bcn_tx_cmd *)wmi_buf_data(wmi_buf);
  1401. cmd->hdr.vdev_id = param->vdev_id;
  1402. cmd->hdr.buf_len = bcn_len;
  1403. #ifdef BIG_ENDIAN_HOST
  1404. {
  1405. /* for big endian host, copy engine byte_swap is enabled
  1406. * But the beacon buffer content is in network byte
  1407. * order Need to byte swap the beacon buffer content -
  1408. * so when copy engine does byte_swap - target gets
  1409. * buffer content in the correct order
  1410. */
  1411. int i;
  1412. u_int32_t *destp, *srcp;
  1413. destp = (u_int32_t *)cmd->bufp;
  1414. srcp = (u_int32_t *)wmi_buf_data(param->wbuf);
  1415. for (i = 0; i < (roundup(bcn_len,
  1416. sizeof(u_int32_t))/4); i++) {
  1417. *destp = qdf_le32_to_cpu(*srcp);
  1418. destp++; srcp++;
  1419. }
  1420. }
  1421. #else
  1422. qdf_mem_copy(cmd->bufp, wmi_buf_data(param->wbuf), bcn_len);
  1423. #endif
  1424. #ifdef DEBUG_BEACON
  1425. qdf_print("%s frm length %d\n", __func__, bcn_len);
  1426. #endif
  1427. wmi_unified_cmd_send(wmi_handle, wmi_buf,
  1428. roundup(len, sizeof(u_int32_t)), WMI_BCN_TX_CMDID);
  1429. } else {
  1430. wmi_bcn_send_from_host_cmd_t *cmd;
  1431. wmi_buf_t wmi_buf;
  1432. int bcn_len = qdf_nbuf_len(param->wbuf);
  1433. int len = sizeof(wmi_bcn_send_from_host_cmd_t);
  1434. A_UINT32 dtim_flag = 0;
  1435. /* get the DTIM count */
  1436. if (param->is_dtim_count_zero) {
  1437. dtim_flag |= WMI_BCN_SEND_DTIM_ZERO;
  1438. if (param->is_bitctl_reqd) {
  1439. /* deliver CAB traffic in next DTIM beacon */
  1440. dtim_flag |= WMI_BCN_SEND_DTIM_BITCTL_SET;
  1441. }
  1442. }
  1443. /* Map the beacon buffer to DMA region */
  1444. wmi_buf = wmi_buf_alloc(wmi_handle, roundup(len,
  1445. sizeof(u_int32_t)));
  1446. if (!wmi_buf) {
  1447. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1448. return QDF_STATUS_E_NOMEM;
  1449. }
  1450. cmd = (wmi_bcn_send_from_host_cmd_t *)wmi_buf_data(wmi_buf);
  1451. cmd->vdev_id = param->vdev_id;
  1452. cmd->data_len = bcn_len;
  1453. cmd->frame_ctrl = param->frame_ctrl;
  1454. cmd->dtim_flag = dtim_flag;
  1455. cmd->frag_ptr = qdf_nbuf_get_frag_paddr(param->wbuf, 0);
  1456. #if SUPPORT_64BIT_CHANGES
  1457. cmd->virt_addr = (uintptr_t)param->wbuf;
  1458. #else
  1459. cmd->virt_addr = (A_UINT32)param->wbuf;
  1460. #endif
  1461. cmd->bcn_antenna = param->bcn_txant;
  1462. wmi_unified_cmd_send(wmi_handle, wmi_buf, len,
  1463. WMI_PDEV_SEND_BCN_CMDID);
  1464. }
  1465. return QDF_STATUS_SUCCESS;
  1466. }
  1467. #if 0
  1468. /**
  1469. * send_bcn_prb_template_cmd_non_tlv() - WMI beacon probe template function
  1470. *
  1471. * @param wmi_handle : handle to WMI.
  1472. * @param macaddr : MAC address
  1473. * @param param : pointer to hold beacon prb template cmd parameter
  1474. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1475. */
  1476. QDF_STATUS send_bcn_prb_template_cmd_non_tlv(wmi_unified_t wmi_handle,
  1477. struct bcn_prb_template_params *param)
  1478. {
  1479. wmi_bcn_prb_tmpl_cmd *cmd;
  1480. wmi_buf_t buf;
  1481. wmi_bcn_prb_info *template;
  1482. int len = sizeof(wmi_bcn_prb_tmpl_cmd);
  1483. int ret;
  1484. /*
  1485. * The target will store this information for use with
  1486. * the beacons and probes.
  1487. */
  1488. buf = wmi_buf_alloc(wmi_handle, len);
  1489. if (!buf) {
  1490. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1491. return QDF_STATUS_E_NOMEM;
  1492. }
  1493. cmd = (wmi_bcn_prb_tmpl_cmd *)wmi_buf_data(buf);
  1494. cmd->vdev_id = param->vdev_id;
  1495. cmd->buf_len = param->buf_len;
  1496. template = &cmd->bcn_prb_info;
  1497. template->caps = param->caps;
  1498. template->erp = param->erp;
  1499. /* TODO: Few more elements to be added and copied to the template
  1500. * buffer */
  1501. /* Send the beacon probe template to the target */
  1502. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  1503. WMI_BCN_PRB_TMPL_CMDID);
  1504. return ret;
  1505. }
  1506. #endif
  1507. /**
  1508. * send_peer_assoc_cmd_non_tlv() - WMI peer assoc function
  1509. *
  1510. * @param wmi_handle : handle to WMI.
  1511. * @param param : pointer to peer assoc parameter
  1512. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1513. */
  1514. QDF_STATUS send_peer_assoc_cmd_non_tlv(wmi_unified_t wmi_handle,
  1515. struct peer_assoc_params *param)
  1516. {
  1517. wmi_peer_assoc_complete_cmd *cmd;
  1518. int len = sizeof(wmi_peer_assoc_complete_cmd);
  1519. #ifdef BIG_ENDIAN_HOST
  1520. int i;
  1521. #endif
  1522. wmi_buf_t buf;
  1523. buf = wmi_buf_alloc(wmi_handle, len);
  1524. if (!buf) {
  1525. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1526. return QDF_STATUS_E_FAILURE;
  1527. }
  1528. cmd = (wmi_peer_assoc_complete_cmd *)wmi_buf_data(buf);
  1529. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->peer_mac, &cmd->peer_macaddr);
  1530. cmd->vdev_id = param->vdev_id;
  1531. cmd->peer_new_assoc = param->peer_new_assoc;
  1532. cmd->peer_associd = param->peer_associd;
  1533. cmd->peer_bw_rxnss_override = 0;
  1534. /*
  1535. * The target only needs a subset of the flags maintained in the host.
  1536. * Just populate those flags and send it down
  1537. */
  1538. cmd->peer_flags = 0;
  1539. if (param->is_pmf_enabled)
  1540. cmd->peer_flags |= WMI_PEER_PMF_ENABLED;
  1541. /*
  1542. * Do not enable HT/VHT if WMM/wme is disabled for vap.
  1543. */
  1544. if (param->is_wme_set) {
  1545. if (param->qos_flag)
  1546. cmd->peer_flags |= WMI_PEER_QOS;
  1547. if (param->apsd_flag)
  1548. cmd->peer_flags |= WMI_PEER_APSD;
  1549. if (param->ht_flag)
  1550. cmd->peer_flags |= WMI_PEER_HT;
  1551. if (param->bw_40)
  1552. cmd->peer_flags |= WMI_PEER_40MHZ;
  1553. if (param->bw_80)
  1554. cmd->peer_flags |= WMI_PEER_80MHZ;
  1555. if (param->bw_160)
  1556. cmd->peer_flags |= WMI_PEER_160MHZ;
  1557. /* Typically if STBC is enabled for VHT it should be enabled
  1558. * for HT as well */
  1559. if (param->stbc_flag)
  1560. cmd->peer_flags |= WMI_PEER_STBC;
  1561. /* Typically if LDPC is enabled for VHT it should be enabled
  1562. * for HT as well */
  1563. if (param->ldpc_flag)
  1564. cmd->peer_flags |= WMI_PEER_LDPC;
  1565. if (param->static_mimops_flag)
  1566. cmd->peer_flags |= WMI_PEER_STATIC_MIMOPS;
  1567. if (param->dynamic_mimops_flag)
  1568. cmd->peer_flags |= WMI_PEER_DYN_MIMOPS;
  1569. if (param->spatial_mux_flag)
  1570. cmd->peer_flags |= WMI_PEER_SPATIAL_MUX;
  1571. if (param->vht_flag)
  1572. cmd->peer_flags |= WMI_PEER_VHT;
  1573. if (param->vht_ng_flag)
  1574. cmd->peer_flags |= WMI_PEER_VHT_2G;
  1575. }
  1576. /*
  1577. * Suppress authorization for all AUTH modes that need 4-way handshake
  1578. * (during re-association).
  1579. * Authorization will be done for these modes on key installation.
  1580. */
  1581. if (param->auth_flag)
  1582. cmd->peer_flags |= WMI_PEER_AUTH;
  1583. if (param->need_ptk_4_way)
  1584. cmd->peer_flags |= WMI_PEER_NEED_PTK_4_WAY;
  1585. else
  1586. cmd->peer_flags &= ~WMI_PEER_NEED_PTK_4_WAY;
  1587. if (param->need_gtk_2_way)
  1588. cmd->peer_flags |= WMI_PEER_NEED_GTK_2_WAY;
  1589. /* safe mode bypass the 4-way handshake */
  1590. if (param->safe_mode_enabled)
  1591. cmd->peer_flags &=
  1592. ~(WMI_PEER_NEED_PTK_4_WAY | WMI_PEER_NEED_GTK_2_WAY);
  1593. /* Disable AMSDU for station transmit, if user configures it */
  1594. /* Disable AMSDU for AP transmit to 11n Stations, if user configures
  1595. * it */
  1596. if (param->amsdu_disable)
  1597. cmd->peer_flags |= WMI_PEER_AMSDU_DISABLE;
  1598. cmd->peer_caps = param->peer_caps;
  1599. cmd->peer_listen_intval = param->peer_listen_intval;
  1600. cmd->peer_ht_caps = param->peer_ht_caps;
  1601. cmd->peer_max_mpdu = param->peer_max_mpdu;
  1602. cmd->peer_mpdu_density = param->peer_mpdu_density;
  1603. cmd->peer_vht_caps = param->peer_vht_caps;
  1604. /* Update peer rate information */
  1605. cmd->peer_rate_caps = param->peer_rate_caps;
  1606. cmd->peer_legacy_rates.num_rates = param->peer_legacy_rates.num_rates;
  1607. /* NOTE: cmd->peer_legacy_rates.rates is of type A_UINT32 */
  1608. /* ni->ni_rates.rs_rates is of type u_int8_t */
  1609. /**
  1610. * for cmd->peer_legacy_rates.rates:
  1611. * rates (each 8bit value) packed into a 32 bit word.
  1612. * the rates are filled from least significant byte to most
  1613. * significant byte.
  1614. */
  1615. qdf_mem_copy(cmd->peer_legacy_rates.rates,
  1616. param->peer_legacy_rates.rates,
  1617. param->peer_legacy_rates.num_rates);
  1618. #ifdef BIG_ENDIAN_HOST
  1619. for (i = 0;
  1620. i < param->peer_legacy_rates.num_rates/sizeof(A_UINT32) + 1;
  1621. i++)
  1622. cmd->peer_legacy_rates.rates[i] =
  1623. qdf_le32_to_cpu(cmd->peer_legacy_rates.rates[i]);
  1624. #endif
  1625. cmd->peer_ht_rates.num_rates = param->peer_ht_rates.num_rates;
  1626. qdf_mem_copy(cmd->peer_ht_rates.rates, param->peer_ht_rates.rates,
  1627. param->peer_ht_rates.num_rates);
  1628. #ifdef BIG_ENDIAN_HOST
  1629. for (i = 0; i < param->peer_ht_rates.num_rates/sizeof(A_UINT32) + 1;
  1630. i++)
  1631. cmd->peer_ht_rates.rates[i] =
  1632. qdf_le32_to_cpu(cmd->peer_ht_rates.rates[i]);
  1633. #endif
  1634. if (param->ht_flag &&
  1635. (param->peer_ht_rates.num_rates == 0)) {
  1636. /* Workaround for EV 116382: The node is marked HT but with
  1637. * supported rx mcs set is set to 0. 11n spec mandates MCS0-7
  1638. * for a HT STA. So forcing the supported rx mcs rate to MCS
  1639. * 0-7.
  1640. * This workaround will be removed once we get clarification
  1641. * from WFA regarding this STA behavior
  1642. */
  1643. u_int8_t temp_ni_rates[8] = {
  1644. 0x0, 0x1, 0x2, 0x3, 0x4, 0x5, 0x6, 0x7};
  1645. cmd->peer_ht_rates.num_rates = 8;
  1646. qdf_mem_copy(cmd->peer_ht_rates.rates, temp_ni_rates,
  1647. cmd->peer_ht_rates.num_rates);
  1648. }
  1649. /* Target asserts if node is marked HT and all MCS is set to 0.
  1650. Mark the node as non-HT if all the mcs rates are disabled through
  1651. iwpriv */
  1652. if (cmd->peer_ht_rates.num_rates == 0)
  1653. cmd->peer_flags &= ~WMI_PEER_HT;
  1654. cmd->peer_nss = param->peer_nss;
  1655. if (param->vht_capable) {
  1656. wmi_vht_rate_set *mcs;
  1657. mcs = &cmd->peer_vht_rates;
  1658. mcs->rx_max_rate = param->rx_max_rate;
  1659. mcs->rx_mcs_set = param->rx_mcs_set;
  1660. mcs->tx_max_rate = param->tx_max_rate;
  1661. mcs->tx_mcs_set = param->tx_mcs_set;
  1662. mcs->tx_max_mcs_nss = param->tx_max_mcs_nss;
  1663. }
  1664. cmd->peer_phymode = param->peer_phymode;
  1665. /*Send bandwidth-NSS mapping to FW*/
  1666. cmd->peer_bw_rxnss_override |= param->peer_bw_rxnss_override;
  1667. return wmi_unified_cmd_send(wmi_handle, buf, len, WMI_PEER_ASSOC_CMDID);
  1668. }
  1669. /**
  1670. * send_scan_start_cmd_non_tlv() - WMI scan start function
  1671. *
  1672. * @param wmi_handle : handle to WMI.
  1673. * @param param : pointer to hold scan start cmd parameter
  1674. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1675. */
  1676. QDF_STATUS send_scan_start_cmd_non_tlv(wmi_unified_t wmi_handle,
  1677. struct scan_start_params *param)
  1678. {
  1679. wmi_start_scan_cmd *cmd;
  1680. wmi_buf_t buf;
  1681. wmi_chan_list *chan_list;
  1682. wmi_bssid_list *bssid_list;
  1683. wmi_ssid_list *ssid_list;
  1684. wmi_ie_data *ie_data;
  1685. A_UINT32 *tmp_ptr;
  1686. int i, len = sizeof(wmi_start_scan_cmd);
  1687. #ifdef TEST_CODE
  1688. len += sizeof(wmi_chan_list) + 3 * sizeof(A_UINT32);
  1689. #else
  1690. if (param->num_chan) {
  1691. len += sizeof(wmi_chan_list) + (param->num_chan - 1)
  1692. * sizeof(A_UINT32);
  1693. }
  1694. #endif
  1695. if (param->num_ssids) {
  1696. len += sizeof(wmi_ssid_list) + (param->num_ssids - 1)
  1697. * sizeof(wmi_ssid);
  1698. }
  1699. if (param->num_bssid) {
  1700. len += sizeof(wmi_bssid_list) + (param->num_bssid - 1)
  1701. * sizeof(wmi_mac_addr);
  1702. }
  1703. if (param->ie_len) {
  1704. i = param->ie_len % sizeof(A_UINT32);
  1705. if (i)
  1706. len += sizeof(A_UINT32) - i;
  1707. len += 2 * sizeof(A_UINT32) + param->ie_len;
  1708. }
  1709. buf = wmi_buf_alloc(wmi_handle, len);
  1710. if (!buf) {
  1711. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1712. return QDF_STATUS_E_NOMEM;
  1713. }
  1714. cmd = (wmi_start_scan_cmd *)wmi_buf_data(buf);
  1715. OS_MEMZERO(cmd, len);
  1716. cmd->vdev_id = param->vdev_id;
  1717. cmd->scan_priority = param->scan_priority;
  1718. cmd->scan_id = param->scan_id;
  1719. cmd->scan_req_id = param->scan_req_id;
  1720. /** Scan events subscription */
  1721. cmd->notify_scan_events = WMI_SCAN_EVENT_STARTED |
  1722. WMI_SCAN_EVENT_COMPLETED |
  1723. WMI_SCAN_EVENT_BSS_CHANNEL |
  1724. WMI_SCAN_EVENT_FOREIGN_CHANNEL |
  1725. WMI_SCAN_EVENT_DEQUEUED
  1726. #if QCA_LTEU_SUPPORT
  1727. | WMI_SCAN_EVENT_GPIO_TIMEOUT;
  1728. #endif
  1729. ;
  1730. /** Max. active channel dwell time */
  1731. cmd->dwell_time_active = param->dwell_time_active;
  1732. /** Passive channel dwell time */
  1733. cmd->dwell_time_passive = param->dwell_time_passive;
  1734. /** Scan control flags */
  1735. cmd->scan_ctrl_flags = (param->passive_flag) ?
  1736. WMI_SCAN_FLAG_PASSIVE : 0;
  1737. if (param->is_strict_pscan_en) {
  1738. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_STRICT_PASSIVE_ON_PCHN;
  1739. }
  1740. if (param->is_promiscous_mode)
  1741. cmd->scan_ctrl_flags |= WMI_SCAN_PROMISCOUS_MODE;
  1742. if (param->is_phy_error)
  1743. cmd->scan_ctrl_flags |= WMI_SCAN_CAPTURE_PHY_ERROR;
  1744. if (param->half_rate)
  1745. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_HALF_RATE_SUPPORT;
  1746. if (param->quarter_rate)
  1747. cmd->scan_ctrl_flags |= WMI_SCAN_FLAG_QUARTER_RATE_SUPPORT;
  1748. /** send multiple braodcast probe req with this delay in between */
  1749. cmd->repeat_probe_time = param->repeat_probe_time;
  1750. cmd->probe_spacing_time = param->probe_spacing_time;
  1751. /** delay between channel change and first probe request */
  1752. cmd->probe_delay = param->probe_delay;
  1753. /** idle time on channel for which if no traffic is seen
  1754. then scanner can switch to off channel */
  1755. cmd->idle_time = param->idle_time;
  1756. cmd->min_rest_time = param->min_rest_time;
  1757. /** maximum rest time allowed on bss channel, overwrites
  1758. * other conditions and changes channel to off channel
  1759. * even if min beacon count, idle time requirements are not met.
  1760. */
  1761. cmd->max_rest_time = param->max_rest_time;
  1762. /** maxmimum scan time allowed */
  1763. #if IPQ4019_EMU
  1764. cmd->max_scan_time = 0xffffffff;
  1765. #else
  1766. cmd->max_scan_time = param->max_scan_time;
  1767. #endif
  1768. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_OFDM_RATES;
  1769. /* add cck rates if required */
  1770. if (param->add_cck_rates)
  1771. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_CCK_RATES;
  1772. /** It enables the Channel stat event indication to host */
  1773. if (param->chan_stat_enable)
  1774. cmd->scan_ctrl_flags |= WMI_SCAN_CHAN_STAT_EVENT;
  1775. if (param->add_bcast_probe_reqd)
  1776. cmd->scan_ctrl_flags |= WMI_SCAN_ADD_BCAST_PROBE_REQ;
  1777. /* off channel TX control */
  1778. if (param->offchan_tx_mgmt)
  1779. cmd->scan_ctrl_flags |= WMI_SCAN_OFFCHAN_MGMT_TX;
  1780. if (param->offchan_tx_data)
  1781. cmd->scan_ctrl_flags |= WMI_SCAN_OFFCHAN_DATA_TX;
  1782. tmp_ptr = (A_UINT32 *) (cmd + 1);
  1783. #ifdef TEST_CODE
  1784. #define DEFAULT_TIME 150
  1785. cmd->min_rest_time = DEFAULT_TIME;
  1786. cmd->idle_time = 10*DEFAULT_TIME;
  1787. cmd->max_rest_time = 30*DEFAULT_TIME;
  1788. chan_list = (wmi_chan_list *) tmp_ptr;
  1789. chan_list->tag = WMI_CHAN_LIST_TAG;
  1790. chan_list->num_chan = 4;
  1791. chan_list->channel_list[0] = 2412; /* 1 */
  1792. chan_list->channel_list[1] = 2437; /* 6 */
  1793. chan_list->channel_list[2] = 5180; /* 36 */-
  1794. chan_list->channel_list[3] = 5680; /* 136 */
  1795. tmp_ptr += (2 + chan_list->num_chan); /* increase by words */-
  1796. #else
  1797. #define FREQUENCY_THRESH 1000
  1798. if (param->num_chan) {
  1799. chan_list = (wmi_chan_list *) tmp_ptr;
  1800. chan_list->tag = WMI_CHAN_LIST_TAG;
  1801. chan_list->num_chan = param->num_chan;
  1802. qdf_mem_copy(chan_list->channel_list, param->chan_list,
  1803. ((param->num_chan) * sizeof(uint32_t)));
  1804. tmp_ptr += (2 + param->num_chan); /* increase by words */
  1805. }
  1806. #endif
  1807. if (param->num_ssids) {
  1808. ssid_list = (wmi_ssid_list *) tmp_ptr;
  1809. ssid_list->tag = WMI_SSID_LIST_TAG;
  1810. ssid_list->num_ssids = param->num_ssids;
  1811. for (i = 0; i < param->num_ssids; ++i) {
  1812. ssid_list->ssids[i].ssid_len = param->ssid[i].length;
  1813. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(
  1814. ssid_list->ssids[i].ssid,
  1815. param->ssid[i].mac_ssid,
  1816. param->ssid[i].length);
  1817. }
  1818. tmp_ptr += (2 + (sizeof(wmi_ssid) *
  1819. param->num_ssids)/sizeof(A_UINT32));
  1820. }
  1821. if (param->num_bssid) {
  1822. bssid_list = (wmi_bssid_list *) tmp_ptr;
  1823. bssid_list->tag = WMI_BSSID_LIST_TAG;
  1824. bssid_list->num_bssid = param->num_bssid;
  1825. for (i = 0; i < param->num_bssid; ++i) {
  1826. WMI_CHAR_ARRAY_TO_MAC_ADDR(&(param->bssid_list[i][0]),
  1827. &bssid_list->bssid_list[i]);
  1828. }
  1829. tmp_ptr += (2 + (sizeof(wmi_mac_addr) *
  1830. param->num_bssid)/sizeof(A_UINT32));
  1831. }
  1832. if (param->ie_len) {
  1833. ie_data = (wmi_ie_data *) tmp_ptr;
  1834. ie_data->tag = WMI_IE_TAG;
  1835. ie_data->ie_len = param->ie_len;
  1836. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(ie_data->ie_data,
  1837. param->ie_data, param->ie_len);
  1838. }
  1839. qdf_print("Sending SCAN START cmd\n");
  1840. return wmi_unified_cmd_send(wmi_handle, buf, len, WMI_START_SCAN_CMDID);
  1841. }
  1842. /**
  1843. * send_scan_stop_cmd_non_tlv() - WMI scan stop function
  1844. *
  1845. * @param wmi_handle : handle to WMI.
  1846. * @param param : pointer to hold scan start cmd parameter
  1847. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1848. */
  1849. QDF_STATUS send_scan_stop_cmd_non_tlv(wmi_unified_t wmi_handle,
  1850. struct scan_stop_params *param)
  1851. {
  1852. wmi_stop_scan_cmd *cmd = NULL;
  1853. wmi_buf_t buf;
  1854. u_int32_t len = sizeof(wmi_stop_scan_cmd);
  1855. wmi_scan_event wmi_scn_event;
  1856. buf = wmi_buf_alloc(wmi_handle, len);
  1857. if (!buf) {
  1858. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  1859. return QDF_STATUS_E_NOMEM;
  1860. }
  1861. cmd = (wmi_stop_scan_cmd *)wmi_buf_data(buf);
  1862. OS_MEMZERO(cmd, len);
  1863. /* scan scheduler is not supportd yet */
  1864. cmd->scan_id = param->scan_id;
  1865. cmd->requestor = param->requestor;
  1866. cmd->vdev_id = param->vdev_id;
  1867. if (param->all_scans) {
  1868. /* Cancelling all scans - always match scan id */
  1869. cmd->req_type = WMI_SCAN_STOP_ALL;
  1870. } else if (param->vap_scans) {
  1871. /*-
  1872. * Cancelling VAP scans - report a match if scan was requested
  1873. * by the same VAP trying to cancel it.
  1874. */
  1875. cmd->req_type = WMI_SCN_STOP_VAP_ALL;
  1876. } else if (param->specific_scan) {
  1877. /*-
  1878. * Cancelling specific scan - report a match if specified scan
  1879. * id matches the request's scan id.
  1880. */
  1881. cmd->req_type = WMI_SCAN_STOP_ONE;
  1882. }
  1883. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_STOP_SCAN_CMDID);
  1884. /* send a synchronous cancel command */
  1885. if (param->flags) {
  1886. OS_MEMZERO(&wmi_scn_event, sizeof(wmi_scn_event));
  1887. wmi_scn_event.event = WMI_SCAN_EVENT_COMPLETED;
  1888. wmi_scn_event.reason = WMI_SCAN_REASON_CANCELLED;
  1889. wmi_scn_event.requestor = param->requestor;
  1890. wmi_scn_event.scan_id = param->ss_scan_id;
  1891. }
  1892. return QDF_STATUS_SUCCESS;
  1893. }
  1894. /**
  1895. * send_scan_chan_list_cmd_non_tlv() - WMI scan channel list function
  1896. *
  1897. * @param wmi_handle : handle to WMI.
  1898. * @param param : pointer to hold scan channel list parameter
  1899. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1900. */
  1901. QDF_STATUS send_scan_chan_list_cmd_non_tlv(wmi_unified_t wmi_handle,
  1902. struct scan_chan_list_params *param)
  1903. {
  1904. uint32_t i;
  1905. wmi_buf_t buf;
  1906. wmi_scan_chan_list_cmd *cmd;
  1907. int len = sizeof(wmi_scan_chan_list_cmd);
  1908. len = sizeof(wmi_scan_chan_list_cmd) +
  1909. sizeof(wmi_channel)*param->nallchans;
  1910. buf = wmi_buf_alloc(wmi_handle, len);
  1911. if (!buf) {
  1912. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1913. return QDF_STATUS_E_NOMEM;
  1914. }
  1915. cmd = (wmi_scan_chan_list_cmd *)wmi_buf_data(buf);
  1916. cmd->num_scan_chans = param->nallchans;
  1917. OS_MEMZERO(cmd->chan_info, sizeof(wmi_channel)*cmd->num_scan_chans);
  1918. for (i = 0; i < param->nallchans; ++i) {
  1919. cmd->chan_info[i].mhz = param->ch_param[i].mhz;
  1920. if (param->ch_param[i].is_chan_passive)
  1921. WMI_SET_CHANNEL_FLAG(&(cmd->chan_info[i]),
  1922. WMI_CHAN_FLAG_PASSIVE);
  1923. if (param->ch_param[i].allow_vht)
  1924. WMI_SET_CHANNEL_FLAG(&(cmd->chan_info[i]),
  1925. WMI_CHAN_FLAG_ALLOW_VHT);
  1926. else if (param->ch_param[i].allow_ht)
  1927. WMI_SET_CHANNEL_FLAG(&(cmd->chan_info[i]),
  1928. WMI_CHAN_FLAG_ALLOW_HT);
  1929. cmd->chan_info[i].band_center_freq1 =
  1930. param->ch_param[i].cfreq1;
  1931. cmd->chan_info[i].band_center_freq2 =
  1932. param->ch_param[i].cfreq2;
  1933. WMI_SET_CHANNEL_MODE(&cmd->chan_info[i],
  1934. param->ch_param[i].phy_mode);
  1935. if (param->ch_param[i].half_rate)
  1936. WMI_SET_CHANNEL_FLAG(&(cmd->chan_info[i]),
  1937. WMI_CHAN_FLAG_HALF);
  1938. if (param->ch_param[i].quarter_rate)
  1939. WMI_SET_CHANNEL_FLAG(&(cmd->chan_info[i]),
  1940. WMI_CHAN_FLAG_QUARTER);
  1941. /* also fill in power information */
  1942. WMI_SET_CHANNEL_MIN_POWER(&cmd->chan_info[i],
  1943. param->ch_param[i].minpower);
  1944. WMI_SET_CHANNEL_MAX_POWER(&cmd->chan_info[i],
  1945. param->ch_param[i].maxpower);
  1946. WMI_SET_CHANNEL_REG_POWER(&cmd->chan_info[i],
  1947. param->ch_param[i].maxregpower);
  1948. WMI_SET_CHANNEL_ANTENNA_MAX(&cmd->chan_info[i],
  1949. param->ch_param[i].antennamax);
  1950. WMI_SET_CHANNEL_REG_CLASSID(&cmd->chan_info[i],
  1951. param->ch_param[i].reg_class_id);
  1952. }
  1953. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_SCAN_CHAN_LIST_CMDID);
  1954. return QDF_STATUS_SUCCESS;
  1955. }
  1956. /**
  1957. * send_thermal_mitigation_param_cmd_non_tlv() - WMI scan channel list function
  1958. *
  1959. * @param wmi_handle : handle to WMI.
  1960. * @param param : pointer to hold thermal mitigation param
  1961. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1962. */
  1963. QDF_STATUS send_thermal_mitigation_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  1964. struct thermal_mitigation_params *param)
  1965. {
  1966. wmi_buf_t buf = NULL;
  1967. tt_config_t *cmd = NULL;
  1968. int error = 0;
  1969. int32_t len = 0;
  1970. int i = 0;
  1971. len = sizeof(tt_config_t);
  1972. buf = wmi_buf_alloc(wmi_handle, len);
  1973. if (!buf) {
  1974. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  1975. return QDF_STATUS_E_NOMEM;
  1976. }
  1977. cmd = (tt_config_t *) wmi_buf_data(buf);
  1978. cmd->enable = param->enable;
  1979. cmd->dc = param->dc;
  1980. cmd->dc_per_event = param->dc_per_event;
  1981. for (i = 0; i < THERMAL_LEVELS; i++) {
  1982. cmd->levelconf[i].tmplwm = param->levelconf[i].tmplwm;
  1983. cmd->levelconf[i].tmphwm = param->levelconf[i].tmphwm;
  1984. cmd->levelconf[i].dcoffpercent =
  1985. param->levelconf[i].dcoffpercent;
  1986. cmd->levelconf[i].prio = param->levelconf[i].priority;
  1987. }
  1988. error = wmi_unified_cmd_send(wmi_handle, buf, len,
  1989. WMI_TT_SET_CONF_CMDID);
  1990. return error;
  1991. }
  1992. /**
  1993. * send_phyerr_enable_cmd_non_tlv() - WMI phyerr enable function
  1994. *
  1995. * @param wmi_handle : handle to WMI.
  1996. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  1997. */
  1998. QDF_STATUS send_phyerr_enable_cmd_non_tlv(wmi_unified_t wmi_handle)
  1999. {
  2000. wmi_buf_t buf;
  2001. /*
  2002. * Passing a NULL pointer to wmi_unified_cmd_send() panics it,
  2003. * so let's just use a 32 byte fake array for now.
  2004. */
  2005. buf = wmi_buf_alloc(wmi_handle, 32);
  2006. if (buf == NULL) {
  2007. /* XXX error? */
  2008. return QDF_STATUS_E_NOMEM;
  2009. }
  2010. qdf_print("%s: about to send\n", __func__);
  2011. if (wmi_unified_cmd_send(wmi_handle, buf, 32,
  2012. WMI_PDEV_DFS_ENABLE_CMDID) != QDF_STATUS_SUCCESS) {
  2013. qdf_print("%s: send failed\n", __func__);
  2014. return QDF_STATUS_E_FAILURE;
  2015. }
  2016. return QDF_STATUS_SUCCESS;
  2017. }
  2018. /**
  2019. * send_phyerr_disable_cmd_non_tlv() - WMI phyerr disable function
  2020. *
  2021. * @param wmi_handle : handle to WMI.
  2022. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2023. */
  2024. QDF_STATUS send_phyerr_disable_cmd_non_tlv(wmi_unified_t wmi_handle)
  2025. {
  2026. wmi_buf_t buf;
  2027. /*
  2028. * Passing a NULL pointer to wmi_unified_cmd_send() panics it,
  2029. * so let's just use a 32 byte fake array for now.
  2030. */
  2031. buf = wmi_buf_alloc(wmi_handle, 32);
  2032. if (buf == NULL) {
  2033. /* XXX error? */
  2034. return QDF_STATUS_E_NOMEM;
  2035. }
  2036. qdf_print("%s: about to send\n", __func__);
  2037. if (wmi_unified_cmd_send(wmi_handle, buf, 32,
  2038. WMI_PDEV_DFS_DISABLE_CMDID) != QDF_STATUS_SUCCESS) {
  2039. qdf_print("%s: send failed\n", __func__);
  2040. return QDF_STATUS_E_FAILURE;
  2041. }
  2042. return QDF_STATUS_SUCCESS;
  2043. }
  2044. /**
  2045. * send_smart_ant_enable_cmd_non_tlv() - WMI smart ant enable function
  2046. *
  2047. * @param wmi_handle : handle to WMI.
  2048. * @param param : pointer to antenna param
  2049. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2050. */
  2051. QDF_STATUS send_smart_ant_enable_cmd_non_tlv(wmi_unified_t wmi_handle,
  2052. struct smart_ant_enable_params *param)
  2053. {
  2054. /* Send WMI COMMAND to Enable */
  2055. wmi_pdev_smart_ant_enable_cmd *cmd;
  2056. wmi_buf_t buf;
  2057. int len = 0;
  2058. int ret;
  2059. len = sizeof(wmi_pdev_smart_ant_enable_cmd);
  2060. buf = wmi_buf_alloc(wmi_handle, len);
  2061. if (!buf) {
  2062. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2063. return QDF_STATUS_E_NOMEM;
  2064. }
  2065. cmd = (wmi_pdev_smart_ant_enable_cmd *)wmi_buf_data(buf);
  2066. cmd->enable = param->enable;
  2067. cmd->mode = param->mode;
  2068. cmd->rx_antenna = param->rx_antenna;
  2069. cmd->tx_default_antenna = param->rx_antenna;
  2070. if (param->mode == SMART_ANT_MODE_SERIAL) {
  2071. cmd->gpio_pin[0] = param->gpio_pin[0];
  2072. cmd->gpio_pin[1] = param->gpio_pin[1];
  2073. cmd->gpio_pin[2] = 0;
  2074. cmd->gpio_pin[3] = 0;
  2075. cmd->gpio_func[0] = param->gpio_func[0];
  2076. cmd->gpio_func[1] = param->gpio_func[1];
  2077. cmd->gpio_func[2] = 0;
  2078. cmd->gpio_func[3] = 0;
  2079. } else if (param->mode == SMART_ANT_MODE_PARALLEL) {
  2080. cmd->gpio_pin[0] = param->gpio_pin[0];
  2081. cmd->gpio_pin[1] = param->gpio_pin[1];
  2082. cmd->gpio_pin[2] = param->gpio_pin[2];
  2083. cmd->gpio_pin[3] = param->gpio_pin[3];
  2084. cmd->gpio_func[0] = param->gpio_func[0];
  2085. cmd->gpio_func[1] = param->gpio_func[1];
  2086. cmd->gpio_func[2] = param->gpio_func[2];
  2087. cmd->gpio_func[3] = param->gpio_func[3];
  2088. }
  2089. ret = wmi_unified_cmd_send(wmi_handle,
  2090. buf,
  2091. len,
  2092. WMI_PDEV_SMART_ANT_ENABLE_CMDID);
  2093. if (ret != 0) {
  2094. qdf_print(" %s :WMI Failed\n", __func__);
  2095. qdf_print("%s: Failed to send WMI_PDEV_SMART_ANT_ENABLE_CMDID.\n"
  2096. "enable:%d mode:%d rx_antenna: 0x%08x PINS: "
  2097. "[%d %d %d %d] Func[%d %d %d %d] cmdstatus=%d\n",
  2098. __func__,
  2099. cmd->enable,
  2100. cmd->mode,
  2101. cmd->rx_antenna,
  2102. cmd->gpio_pin[0],
  2103. cmd->gpio_pin[1],
  2104. cmd->gpio_pin[2],
  2105. cmd->gpio_pin[3],
  2106. cmd->gpio_func[0],
  2107. cmd->gpio_func[1],
  2108. cmd->gpio_func[2],
  2109. cmd->gpio_func[3],
  2110. ret);
  2111. wmi_buf_free(buf);
  2112. }
  2113. return ret;
  2114. }
  2115. /**
  2116. * send_smart_ant_set_rx_ant_cmd_non_tlv() - WMI set rx antenna function
  2117. *
  2118. * @param wmi_handle : handle to WMI.
  2119. * @param param : pointer to rx antenna param
  2120. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2121. */
  2122. QDF_STATUS send_smart_ant_set_rx_ant_cmd_non_tlv(wmi_unified_t wmi_handle,
  2123. struct smart_ant_rx_ant_params *param)
  2124. {
  2125. wmi_pdev_smart_ant_set_rx_antenna_cmd *cmd;
  2126. wmi_buf_t buf;
  2127. int len = 0;
  2128. int ret;
  2129. len = sizeof(wmi_pdev_smart_ant_set_rx_antenna_cmd);
  2130. buf = wmi_buf_alloc(wmi_handle, len);
  2131. if (!buf) {
  2132. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2133. return QDF_STATUS_E_NOMEM;
  2134. }
  2135. cmd = (wmi_pdev_smart_ant_set_rx_antenna_cmd *)wmi_buf_data(buf);
  2136. cmd->rx_antenna = param->antenna;
  2137. ret = wmi_unified_cmd_send(wmi_handle,
  2138. buf,
  2139. len,
  2140. WMI_PDEV_SMART_ANT_SET_RX_ANTENNA_CMDID);
  2141. if (ret != 0) {
  2142. qdf_print(" %s :WMI Failed\n", __func__);
  2143. qdf_print("%s: Failed to send WMI_PDEV_SMART_ANT_SET_RX_ANTENNA_CMDID.\n"
  2144. " rx_antenna: 0x%08x cmdstatus=%d\n",
  2145. __func__,
  2146. cmd->rx_antenna,
  2147. ret);
  2148. wmi_buf_free(buf);
  2149. }
  2150. return ret;
  2151. }
  2152. /**
  2153. * send_smart_ant_set_tx_ant_cmd_non_tlv() - WMI set tx antenna function
  2154. * @param wmi_handle : handle to WMI.
  2155. * @param macaddr : vdev mac address
  2156. * @param param : pointer to tx antenna param
  2157. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2158. */
  2159. QDF_STATUS send_smart_ant_set_tx_ant_cmd_non_tlv(wmi_unified_t wmi_handle,
  2160. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2161. struct smart_ant_tx_ant_params *param)
  2162. {
  2163. wmi_peer_sant_set_tx_antenna_cmd *cmd;
  2164. wmi_buf_t buf;
  2165. int len = 0;
  2166. int ret;
  2167. len = sizeof(wmi_peer_sant_set_tx_antenna_cmd);
  2168. buf = wmi_buf_alloc(wmi_handle, len);
  2169. if (!buf) {
  2170. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2171. return QDF_STATUS_E_NOMEM;
  2172. }
  2173. cmd = (wmi_peer_sant_set_tx_antenna_cmd *)wmi_buf_data(buf);
  2174. cmd->vdev_id = param->vdev_id;
  2175. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2176. cmd->antenna_series[0] = param->antenna_array[0];
  2177. cmd->antenna_series[1] = param->antenna_array[1];
  2178. ret = wmi_unified_cmd_send(wmi_handle,
  2179. buf,
  2180. len,
  2181. WMI_PEER_SMART_ANT_SET_TX_ANTENNA_CMDID);
  2182. if (ret != 0) {
  2183. qdf_print(" %s :WMI Failed\n", __func__);
  2184. qdf_print("%s: Failed to send WMI_PEER_SMART_ANT_SET_TX_ANTENNA_CMDID.\n"
  2185. " Node: %s tx_antennas: [0x%08x 0x%08x] cmdstatus=%d\n",
  2186. __func__,
  2187. ether_sprintf(macaddr),
  2188. cmd->antenna_series[0],
  2189. cmd->antenna_series[1],
  2190. ret);
  2191. wmi_buf_free(buf);
  2192. }
  2193. return ret;
  2194. }
  2195. /**
  2196. * send_smart_ant_set_training_info_cmd_non_tlv() - WMI set smart antenna
  2197. * training information function
  2198. * @param wmi_handle : handle to WMI.
  2199. * @macaddr : vdev mac address
  2200. * @param param : pointer to tx antenna param
  2201. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2202. */
  2203. QDF_STATUS send_smart_ant_set_training_info_cmd_non_tlv(
  2204. wmi_unified_t wmi_handle,
  2205. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2206. struct smart_ant_training_info_params *param)
  2207. {
  2208. wmi_peer_sant_set_train_antenna_cmd *cmd;
  2209. wmi_buf_t buf;
  2210. int len = 0;
  2211. int ret;
  2212. len = sizeof(wmi_peer_sant_set_train_antenna_cmd);
  2213. buf = wmi_buf_alloc(wmi_handle, len);
  2214. if (!buf) {
  2215. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2216. return QDF_STATUS_E_NOMEM;
  2217. }
  2218. cmd = (wmi_peer_sant_set_train_antenna_cmd *)wmi_buf_data(buf);
  2219. cmd->vdev_id = param->vdev_id;
  2220. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2221. qdf_mem_copy(&cmd->train_rate_series[0], &param->rate_array[0],
  2222. (sizeof(uint32_t)*SMART_ANT_MAX_RATE_SERIES));
  2223. qdf_mem_copy(&cmd->train_antenna_series[0], &param->antenna_array[0],
  2224. (sizeof(uint32_t)*SMART_ANT_MAX_RATE_SERIES));
  2225. cmd->num_pkts = param->numpkts;
  2226. ret = wmi_unified_cmd_send(wmi_handle,
  2227. buf,
  2228. len,
  2229. WMI_PEER_SMART_ANT_SET_TRAIN_INFO_CMDID);
  2230. if (ret != 0) {
  2231. qdf_print(" %s :WMI Failed\n", __func__);
  2232. qdf_print("%s: Failed to Send WMI_PEER_SMART_ANT_SET_TRAIN_INFO_CMDID.\n"
  2233. " Train Node: %s rate_array[0x%02x 0x%02x] "
  2234. "tx_antennas: [0x%08x 0x%08x] cmdstatus=%d\n",
  2235. __func__,
  2236. ether_sprintf(macaddr),
  2237. cmd->train_rate_series[0],
  2238. cmd->train_rate_series[1],
  2239. cmd->train_antenna_series[0],
  2240. cmd->train_antenna_series[1],
  2241. ret);
  2242. wmi_buf_free(buf);
  2243. }
  2244. return ret;
  2245. }
  2246. /**
  2247. * send_smart_ant_set_node_config_cmd_non_tlv() - WMI set node
  2248. * configuration function
  2249. * @param wmi_handle : handle to WMI.
  2250. * @macaddr : vdev mad address
  2251. * @param param : pointer to tx antenna param
  2252. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2253. */
  2254. QDF_STATUS send_smart_ant_set_node_config_cmd_non_tlv(wmi_unified_t wmi_handle,
  2255. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2256. struct smart_ant_node_config_params *param)
  2257. {
  2258. wmi_peer_sant_set_node_config_ops_cmd *cmd;
  2259. wmi_buf_t buf;
  2260. int len = 0;
  2261. int ret;
  2262. int i = 0;
  2263. len = sizeof(wmi_peer_sant_set_node_config_ops_cmd);
  2264. if ((param->args_count == 0) || (param->args_count >
  2265. (sizeof(cmd->args) / sizeof(cmd->args[0])))) {
  2266. qdf_print("%s: Can't send a command with %d arguments\n",
  2267. __func__, param->args_count);
  2268. return QDF_STATUS_E_FAILURE;
  2269. }
  2270. buf = wmi_buf_alloc(wmi_handle, len);
  2271. if (!buf) {
  2272. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2273. return QDF_STATUS_E_NOMEM;
  2274. }
  2275. cmd = (wmi_peer_sant_set_node_config_ops_cmd *)wmi_buf_data(buf);
  2276. cmd->vdev_id = param->vdev_id;
  2277. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2278. cmd->cmd_id = param->cmd_id;
  2279. cmd->args_count = param->args_count;
  2280. for (i = 0; i < param->args_count; i++)
  2281. cmd->args[i] = param->args_arr[i];
  2282. ret = wmi_unified_cmd_send(wmi_handle,
  2283. buf,
  2284. len,
  2285. WMI_PEER_SMART_ANT_SET_NODE_CONFIG_OPS_CMDID);
  2286. if (ret != 0) {
  2287. qdf_print(" %s :WMI Failed\n", __func__);
  2288. qdf_print("%s: Sent "
  2289. "WMI_PEER_SMART_ANT_SET_NODE_CONFIG_OPS_CMDID, cmd_id:"
  2290. " 0x%x\n Node: %s cmdstatus=%d\n",
  2291. __func__, param->cmd_id, ether_sprintf(macaddr), ret);
  2292. }
  2293. return ret;
  2294. }
  2295. /**
  2296. * send_smart_ant_enable_tx_feedback_cmd_non_tlv() - WMI enable smart antenna
  2297. * tx feedback function
  2298. * @param wmi_handle : handle to WMI.
  2299. * @param param : pointer to hold enable param
  2300. * @return QDF_STATUS_SUCCESS on success and -ve on failure.
  2301. */
  2302. QDF_STATUS send_smart_ant_enable_tx_feedback_cmd_non_tlv(
  2303. wmi_unified_t wmi_handle,
  2304. struct smart_ant_enable_tx_feedback_params *param)
  2305. {
  2306. uint32_t types = 0;
  2307. int len = 0;
  2308. wmi_buf_t buf;
  2309. wmi_pdev_pktlog_enable_cmd *cmd;
  2310. if (param->enable == 1) {
  2311. types |= WMI_PKTLOG_EVENT_TX;
  2312. types |= WMI_PKTLOG_EVENT_SMART_ANTENNA;
  2313. len = sizeof(wmi_pdev_pktlog_enable_cmd);
  2314. buf = wmi_buf_alloc(wmi_handle, len);
  2315. if (!buf) {
  2316. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2317. return QDF_STATUS_E_FAILURE;
  2318. }
  2319. cmd = (wmi_pdev_pktlog_enable_cmd *)wmi_buf_data(buf);
  2320. cmd->evlist = types;
  2321. /*enabling the pktlog for smart antenna tx feedback*/
  2322. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  2323. WMI_PDEV_PKTLOG_ENABLE_CMDID))
  2324. return QDF_STATUS_E_FAILURE;
  2325. return QDF_STATUS_SUCCESS;
  2326. } else if (param->enable == 0) {
  2327. buf = wmi_buf_alloc(wmi_handle, 0);
  2328. if (!buf) {
  2329. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2330. return QDF_STATUS_E_FAILURE;
  2331. }
  2332. if (!wmi_unified_cmd_send(wmi_handle, buf, len,
  2333. WMI_PDEV_PKTLOG_DISABLE_CMDID))
  2334. return QDF_STATUS_E_FAILURE;
  2335. return QDF_STATUS_SUCCESS;
  2336. } else
  2337. return QDF_STATUS_E_FAILURE;
  2338. }
  2339. /**
  2340. * send_vdev_spectral_configure_cmd_non_tlv() - send VDEV spectral configure
  2341. * command to fw
  2342. * @wmi_handle: wmi handle
  2343. * @param: pointer to hold spectral config parameter
  2344. *
  2345. * Return: 0 for success or error code
  2346. */
  2347. QDF_STATUS send_vdev_spectral_configure_cmd_non_tlv(wmi_unified_t wmi_handle,
  2348. struct vdev_spectral_configure_params *param)
  2349. {
  2350. wmi_vdev_spectral_configure_cmd *cmd;
  2351. wmi_buf_t buf;
  2352. int len = 0;
  2353. int ret;
  2354. len = sizeof(wmi_vdev_spectral_configure_cmd);
  2355. buf = wmi_buf_alloc(wmi_handle, len);
  2356. if (!buf) {
  2357. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2358. return QDF_STATUS_E_NOMEM;
  2359. }
  2360. cmd = (wmi_vdev_spectral_configure_cmd *)wmi_buf_data(buf);
  2361. cmd->vdev_id = param->vdev_id;
  2362. cmd->spectral_scan_count = param->count;
  2363. cmd->spectral_scan_period = param->period;
  2364. cmd->spectral_scan_priority = param->spectral_pri;
  2365. cmd->spectral_scan_fft_size = param->fft_size;
  2366. cmd->spectral_scan_gc_ena = param->gc_enable;
  2367. cmd->spectral_scan_restart_ena = param->restart_enable;
  2368. cmd->spectral_scan_noise_floor_ref = param->noise_floor_ref;
  2369. cmd->spectral_scan_init_delay = param->init_delay;
  2370. cmd->spectral_scan_nb_tone_thr = param->nb_tone_thr;
  2371. cmd->spectral_scan_str_bin_thr = param->str_bin_thr;
  2372. cmd->spectral_scan_wb_rpt_mode = param->wb_rpt_mode;
  2373. cmd->spectral_scan_rssi_rpt_mode = param->rssi_rpt_mode;
  2374. cmd->spectral_scan_rssi_thr = param->rssi_thr;
  2375. cmd->spectral_scan_pwr_format = param->pwr_format;
  2376. cmd->spectral_scan_rpt_mode = param->rpt_mode;
  2377. cmd->spectral_scan_bin_scale = param->bin_scale;
  2378. cmd->spectral_scan_dBm_adj = param->dBm_adj;
  2379. cmd->spectral_scan_chn_mask = param->chn_mask;
  2380. ret = wmi_unified_cmd_send(wmi_handle,
  2381. buf,
  2382. len,
  2383. WMI_VDEV_SPECTRAL_SCAN_CONFIGURE_CMDID);
  2384. #ifdef OL_SPECTRAL_DEBUG_CONFIG_INTERACTIONS
  2385. qdf_print("%s: Sent "
  2386. "WMI_VDEV_SPECTRAL_SCAN_CONFIGURE_CMDID\n", __func__);
  2387. qdf_print("vdev_id = %u\n"
  2388. "spectral_scan_count = %u\n"
  2389. "spectral_scan_period = %u\n"
  2390. "spectral_scan_priority = %u\n"
  2391. "spectral_scan_fft_size = %u\n"
  2392. "spectral_scan_gc_ena = %u\n"
  2393. "spectral_scan_restart_ena = %u\n"
  2394. "spectral_scan_noise_floor_ref = %u\n"
  2395. "spectral_scan_init_delay = %u\n"
  2396. "spectral_scan_nb_tone_thr = %u\n"
  2397. "spectral_scan_str_bin_thr = %u\n"
  2398. "spectral_scan_wb_rpt_mode = %u\n"
  2399. "spectral_scan_rssi_rpt_mode = %u\n"
  2400. "spectral_scan_rssi_thr = %u\n"
  2401. "spectral_scan_pwr_format = %u\n"
  2402. "spectral_scan_rpt_mode = %u\n"
  2403. "spectral_scan_bin_scale = %u\n"
  2404. "spectral_scan_dBm_adj = %u\n"
  2405. "spectral_scan_chn_mask = %u\n",
  2406. param->vdev_id,
  2407. param->count,
  2408. param->period,
  2409. param->spectral_pri,
  2410. param->fft_size,
  2411. param->gc_enable,
  2412. param->restart_enable,
  2413. param->noise_floor_ref,
  2414. param->init_delay,
  2415. param->nb_tone_thr,
  2416. param->str_bin_thr,
  2417. param->wb_rpt_mode,
  2418. param->rssi_rpt_mode,
  2419. param->rssi_thr,
  2420. param->pwr_format,
  2421. param->rpt_mode,
  2422. param->bin_scale,
  2423. param->dBm_adj,
  2424. param->chn_mask);
  2425. qdf_print("%s: Status: %d\n\n", __func__, ret);
  2426. #endif /* OL_SPECTRAL_DEBUG_CONFIG_INTERACTIONS */
  2427. return ret;
  2428. }
  2429. /**
  2430. * send_vdev_spectral_enable_cmd_non_tlv() - send VDEV spectral configure
  2431. * command to fw
  2432. * @wmi_handle: wmi handle
  2433. * @param: pointer to hold spectral enable parameter
  2434. *
  2435. * Return: 0 for success or error code
  2436. */
  2437. QDF_STATUS send_vdev_spectral_enable_cmd_non_tlv(wmi_unified_t wmi_handle,
  2438. struct vdev_spectral_enable_params *param)
  2439. {
  2440. wmi_vdev_spectral_enable_cmd *cmd;
  2441. wmi_buf_t buf;
  2442. int len = 0;
  2443. int ret;
  2444. len = sizeof(wmi_vdev_spectral_enable_cmd);
  2445. buf = wmi_buf_alloc(wmi_handle, len);
  2446. if (!buf) {
  2447. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2448. return QDF_STATUS_E_NOMEM;
  2449. }
  2450. cmd = (wmi_vdev_spectral_enable_cmd *)wmi_buf_data(buf);
  2451. cmd->vdev_id = param->vdev_id;
  2452. if (param->active_valid) {
  2453. cmd->trigger_cmd = param->active ? 1 : 2;
  2454. /* 1: Trigger, 2: Clear Trigger */
  2455. } else {
  2456. cmd->trigger_cmd = 0; /* 0: Ignore */
  2457. }
  2458. if (param->enabled_valid) {
  2459. cmd->enable_cmd = param->enabled ? 1 : 2;
  2460. /* 1: Enable 2: Disable */
  2461. } else {
  2462. cmd->enable_cmd = 0; /* 0: Ignore */
  2463. }
  2464. #ifdef OL_SPECTRAL_DEBUG_CONFIG_INTERACTIONS
  2465. qdf_print
  2466. ("%s: Sent WMI_VDEV_SPECTRAL_SCAN_ENABLE_CMDID\n", __func__);
  2467. qdf_print("vdev_id = %u\n"
  2468. "trigger_cmd = %u\n"
  2469. "enable_cmd = %u\n",
  2470. cmd->vdev_id,
  2471. cmd->trigger_cmd,
  2472. cmd->enable_cmd);
  2473. qdf_print("%s: Status: %d\n\n", __func__, ret);
  2474. #endif /* OL_SPECTRAL_DEBUG_CONFIG_INTERACTIONS */
  2475. ret = wmi_unified_cmd_send(wmi_handle,
  2476. buf,
  2477. len,
  2478. WMI_VDEV_SPECTRAL_SCAN_ENABLE_CMDID);
  2479. return ret;
  2480. }
  2481. /**
  2482. * send_pdev_set_regdomain_cmd_non_tlv() - send set regdomain command to fw
  2483. * @wmi_handle: wmi handle
  2484. * @param: pointer to pdev regdomain params
  2485. *
  2486. * Return: 0 for success or error code
  2487. */
  2488. QDF_STATUS
  2489. send_pdev_set_regdomain_cmd_non_tlv(wmi_unified_t wmi_handle,
  2490. struct pdev_set_regdomain_params *param)
  2491. {
  2492. wmi_pdev_set_regdomain_cmd *cmd;
  2493. wmi_buf_t buf;
  2494. int len = sizeof(wmi_pdev_set_regdomain_cmd);
  2495. buf = wmi_buf_alloc(wmi_handle, len);
  2496. if (!buf) {
  2497. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2498. return QDF_STATUS_E_FAILURE;
  2499. }
  2500. cmd = (wmi_pdev_set_regdomain_cmd *)wmi_buf_data(buf);
  2501. cmd->reg_domain = param->currentRDinuse;
  2502. cmd->reg_domain_2G = param->currentRD2G;
  2503. cmd->reg_domain_5G = param->currentRD5G;
  2504. cmd->conformance_test_limit_2G = param->ctl_2G;
  2505. cmd->conformance_test_limit_5G = param->ctl_5G;
  2506. cmd->dfs_domain = param->dfsDomain;
  2507. return wmi_unified_cmd_send(wmi_handle, buf, len,
  2508. WMI_PDEV_SET_REGDOMAIN_CMDID);
  2509. }
  2510. /**
  2511. * send_set_quiet_mode_cmd_non_tlv() - send set quiet mode command to fw
  2512. * @wmi_handle: wmi handle
  2513. * @param: pointer to quiet mode params
  2514. *
  2515. * Return: 0 for success or error code
  2516. */
  2517. QDF_STATUS
  2518. send_set_quiet_mode_cmd_non_tlv(wmi_unified_t wmi_handle,
  2519. struct set_quiet_mode_params *param)
  2520. {
  2521. wmi_buf_t buf;
  2522. wmi_pdev_set_quiet_cmd *quiet_cmd;
  2523. int len = sizeof(wmi_pdev_set_quiet_cmd);
  2524. buf = wmi_buf_alloc(wmi_handle, len);
  2525. if (!buf) {
  2526. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2527. return QDF_STATUS_E_NOMEM;
  2528. }
  2529. quiet_cmd = (wmi_pdev_set_quiet_cmd *)wmi_buf_data(buf);
  2530. quiet_cmd->enabled = param->enabled;
  2531. quiet_cmd->period = (param->period)*(param->intval);
  2532. quiet_cmd->duration = param->duration;
  2533. quiet_cmd->next_start = param->offset;
  2534. wmi_unified_cmd_send(wmi_handle, buf, len,
  2535. WMI_PDEV_SET_QUIET_MODE_CMDID);
  2536. return QDF_STATUS_SUCCESS;
  2537. }
  2538. /**
  2539. * send_set_beacon_filter_cmd_non_tlv() - send beacon filter command to fw
  2540. * @wmi_handle: wmi handle
  2541. * @param: pointer to beacon filter params
  2542. *
  2543. * Return: 0 for success or error code
  2544. */
  2545. QDF_STATUS
  2546. send_set_beacon_filter_cmd_non_tlv(wmi_unified_t wmi_handle,
  2547. struct set_beacon_filter_params *param)
  2548. {
  2549. /* Issue WMI command to set beacon filter */
  2550. int i;
  2551. wmi_add_bcn_filter_cmd_t *cmd;
  2552. QDF_STATUS res;
  2553. wmi_buf_t buf = NULL;
  2554. int len = sizeof(wmi_add_bcn_filter_cmd_t);
  2555. buf = wmi_buf_alloc(wmi_handle, len);
  2556. if (!buf) {
  2557. qdf_print("buf alloc failed\n");
  2558. return QDF_STATUS_E_NOMEM;
  2559. }
  2560. cmd = (wmi_add_bcn_filter_cmd_t *)wmi_buf_data(buf);
  2561. cmd->vdev_id = param->vdev_id;
  2562. qdf_print("vdev_id: %d\n", cmd->vdev_id);
  2563. for (i = 0; i < BCN_FLT_MAX_ELEMS_IE_LIST; i++)
  2564. cmd->ie_map[i] = 0;
  2565. if (param->ie) {
  2566. for (i = 0; i < BCN_FLT_MAX_ELEMS_IE_LIST; i++)
  2567. cmd->ie_map[i] = param->ie[i];
  2568. }
  2569. res = wmi_unified_cmd_send(wmi_handle, buf, len,
  2570. WMI_ADD_BCN_FILTER_CMDID);
  2571. return (res == QDF_STATUS_SUCCESS) ?
  2572. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  2573. }
  2574. /**
  2575. * send_remove_beacon_filter_cmd_non_tlv() - send remove beacon filter command
  2576. * to fw
  2577. * @wmi_handle: wmi handle
  2578. * @param: pointer to remove beacon filter params
  2579. *
  2580. * Return: 0 for success or error code
  2581. */
  2582. QDF_STATUS
  2583. send_remove_beacon_filter_cmd_non_tlv(wmi_unified_t wmi_handle,
  2584. struct remove_beacon_filter_params *param)
  2585. {
  2586. wmi_rmv_bcn_filter_cmd_t *cmd;
  2587. QDF_STATUS res;
  2588. wmi_buf_t buf = NULL;
  2589. int len = sizeof(wmi_rmv_bcn_filter_cmd_t);
  2590. buf = wmi_buf_alloc(wmi_handle, len);
  2591. if (!buf) {
  2592. qdf_print("buf alloc failed\n");
  2593. return QDF_STATUS_E_NOMEM;
  2594. }
  2595. cmd = (wmi_rmv_bcn_filter_cmd_t *)wmi_buf_data(buf);
  2596. cmd->vdev_id = param->vdev_id;
  2597. res = wmi_unified_cmd_send(wmi_handle, buf, len,
  2598. WMI_RMV_BCN_FILTER_CMDID);
  2599. return (res == QDF_STATUS_SUCCESS) ?
  2600. QDF_STATUS_SUCCESS : QDF_STATUS_E_FAILURE;
  2601. }
  2602. /**
  2603. * send_mgmt_cmd_non_tlv() - send mgmt command to fw
  2604. * @wmi_handle: wmi handle
  2605. * @param: pointer to mgmt params
  2606. * Return: 0 for success or error code
  2607. */
  2608. QDF_STATUS
  2609. send_mgmt_cmd_non_tlv(wmi_unified_t wmi_handle,
  2610. struct wmi_mgmt_params *param)
  2611. {
  2612. wmi_mgmt_tx_cmd *cmd;
  2613. wmi_buf_t wmi_buf;
  2614. int len = sizeof(wmi_mgmt_tx_hdr) + param->frm_len;
  2615. wmi_buf = wmi_buf_alloc(wmi_handle, roundup(len, sizeof(u_int32_t)));
  2616. if (!wmi_buf) {
  2617. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2618. return QDF_STATUS_E_FAILURE;
  2619. }
  2620. cmd = (wmi_mgmt_tx_cmd *)wmi_buf_data(wmi_buf);
  2621. cmd->hdr.vdev_id = param->vdev_id;
  2622. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->macaddr, &cmd->hdr.peer_macaddr);
  2623. cmd->hdr.buf_len = param->frm_len;
  2624. #ifdef BIG_ENDIAN_HOST
  2625. {
  2626. /* for big endian host, copy engine byte_swap is enabled
  2627. * But the mgmt frame buffer content is in network byte order
  2628. * Need to byte swap the mgmt frame buffer content - so when
  2629. * copy engine does byte_swap - target gets buffer content in
  2630. * the correct order
  2631. */
  2632. int i;
  2633. u_int32_t *destp, *srcp;
  2634. destp = (u_int32_t *)cmd->bufp;
  2635. srcp = (u_int32_t *)wmi_buf_data(param->tx_frame);
  2636. for (i = 0; i < (roundup(param->frm_len,
  2637. sizeof(u_int32_t))/4); i++) {
  2638. *destp = qdf_le32_to_cpu(*srcp);
  2639. destp++; srcp++;
  2640. }
  2641. }
  2642. #else
  2643. qdf_mem_copy(cmd->bufp, wmi_buf_data(param->tx_frame), param->frm_len);
  2644. #endif
  2645. /* Send the management frame buffer to the target */
  2646. wmi_unified_cmd_send(wmi_handle, wmi_buf, roundup(len,
  2647. sizeof(u_int32_t)), WMI_MGMT_TX_CMDID);
  2648. return QDF_STATUS_SUCCESS;
  2649. }
  2650. /**
  2651. * send_addba_clearresponse_cmd_non_tlv() - send addba clear response command
  2652. * to fw
  2653. * @wmi_handle: wmi handle
  2654. * @param: pointer to addba clearresp params
  2655. * @macaddr: vdev mac address
  2656. * Return: 0 for success or error code
  2657. */
  2658. QDF_STATUS
  2659. send_addba_clearresponse_cmd_non_tlv(wmi_unified_t wmi_handle,
  2660. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2661. struct addba_clearresponse_params *param)
  2662. {
  2663. wmi_addba_clear_resp_cmd *cmd;
  2664. wmi_buf_t buf;
  2665. int len = sizeof(wmi_addba_clear_resp_cmd);
  2666. buf = wmi_buf_alloc(wmi_handle, len);
  2667. if (!buf) {
  2668. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2669. return QDF_STATUS_E_FAILURE;
  2670. }
  2671. cmd = (wmi_addba_clear_resp_cmd *)wmi_buf_data(buf);
  2672. cmd->vdev_id = param->vdev_id;
  2673. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2674. /* Send the management frame buffer to the target */
  2675. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_ADDBA_CLEAR_RESP_CMDID);
  2676. return QDF_STATUS_SUCCESS;
  2677. }
  2678. /**
  2679. * send_addba_send_cmd_non_tlv() - send addba send command to fw
  2680. * @wmi_handle: wmi handle
  2681. * @param: pointer to addba send params
  2682. * @macaddr: vdev mac address
  2683. * Return: 0 for success or error code
  2684. */
  2685. QDF_STATUS
  2686. send_addba_send_cmd_non_tlv(wmi_unified_t wmi_handle,
  2687. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2688. struct addba_send_params *param)
  2689. {
  2690. wmi_addba_send_cmd *cmd;
  2691. wmi_buf_t buf;
  2692. int len = sizeof(wmi_addba_send_cmd);
  2693. buf = wmi_buf_alloc(wmi_handle, len);
  2694. if (!buf) {
  2695. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2696. return QDF_STATUS_E_FAILURE;
  2697. }
  2698. cmd = (wmi_addba_send_cmd *)wmi_buf_data(buf);
  2699. cmd->vdev_id = param->vdev_id;
  2700. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2701. cmd->tid = param->tidno;
  2702. cmd->buffersize = param->buffersize;
  2703. /* Send the management frame buffer to the target */
  2704. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_ADDBA_SEND_CMDID);
  2705. return QDF_STATUS_SUCCESS;
  2706. }
  2707. /**
  2708. * send_delba_send_cmd_non_tlv() - send delba send command to fw
  2709. * @wmi_handle: wmi handle
  2710. * @param: pointer to delba send params
  2711. * @macaddr: vdev mac address
  2712. * Return: 0 for success or error code
  2713. */
  2714. QDF_STATUS
  2715. send_delba_send_cmd_non_tlv(wmi_unified_t wmi_handle,
  2716. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2717. struct delba_send_params *param)
  2718. {
  2719. wmi_delba_send_cmd *cmd;
  2720. wmi_buf_t buf;
  2721. int len = sizeof(wmi_delba_send_cmd);
  2722. buf = wmi_buf_alloc(wmi_handle, len);
  2723. if (!buf) {
  2724. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2725. return QDF_STATUS_E_NOMEM;
  2726. }
  2727. cmd = (wmi_delba_send_cmd *)wmi_buf_data(buf);
  2728. cmd->vdev_id = param->vdev_id;
  2729. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2730. cmd->tid = param->tidno;
  2731. cmd->initiator = param->initiator;
  2732. cmd->reasoncode = param->reasoncode;
  2733. /* send the management frame buffer to the target */
  2734. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_DELBA_SEND_CMDID);
  2735. return QDF_STATUS_SUCCESS;
  2736. }
  2737. /**
  2738. * send_addba_setresponse_cmd_non_tlv() - send addba set response command to fw
  2739. * @wmi_handle: wmi handle
  2740. * @param: pointer to addba setresp params
  2741. * @macaddr: vdev mac address
  2742. * Return: 0 for success or error code
  2743. */
  2744. QDF_STATUS
  2745. send_addba_setresponse_cmd_non_tlv(wmi_unified_t wmi_handle,
  2746. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2747. struct addba_setresponse_params *param)
  2748. {
  2749. wmi_addba_setresponse_cmd *cmd;
  2750. wmi_buf_t buf;
  2751. int len = sizeof(wmi_addba_setresponse_cmd);
  2752. buf = wmi_buf_alloc(wmi_handle, len);
  2753. if (!buf) {
  2754. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2755. return QDF_STATUS_E_NOMEM;
  2756. }
  2757. cmd = (wmi_addba_setresponse_cmd *)wmi_buf_data(buf);
  2758. cmd->vdev_id = param->vdev_id;
  2759. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2760. cmd->tid = param->tidno;
  2761. cmd->statuscode = param->statuscode;
  2762. /* send the management frame buffer to the target */
  2763. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_ADDBA_SET_RESP_CMDID);
  2764. return QDF_STATUS_SUCCESS;
  2765. }
  2766. /**
  2767. * send_singleamsdu_cmd_non_tlv() - send single amsdu command to fw
  2768. * @wmi_handle: wmi handle
  2769. * @param: pointer to single amsdu params
  2770. * @macaddr: vdev mac address
  2771. * Return: 0 for success or error code
  2772. */
  2773. QDF_STATUS
  2774. send_singleamsdu_cmd_non_tlv(wmi_unified_t wmi_handle,
  2775. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2776. struct singleamsdu_params *param)
  2777. {
  2778. wmi_send_singleamsdu_cmd *cmd;
  2779. wmi_buf_t buf;
  2780. int len = sizeof(wmi_send_singleamsdu_cmd);
  2781. buf = wmi_buf_alloc(wmi_handle, len);
  2782. if (!buf) {
  2783. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2784. return QDF_STATUS_E_NOMEM;
  2785. }
  2786. cmd = (wmi_send_singleamsdu_cmd *)wmi_buf_data(buf);
  2787. cmd->vdev_id = param->vdev_id;
  2788. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2789. cmd->tid = param->tidno;
  2790. /* send the management frame buffer to the target */
  2791. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_SEND_SINGLEAMSDU_CMDID);
  2792. return QDF_STATUS_SUCCESS;
  2793. }
  2794. /**
  2795. * send_set_qboost_param_cmd_non_tlv() - send set qboost command to fw
  2796. * @wmi_handle: wmi handle
  2797. * @param: pointer to qboost params
  2798. * @macaddr: vdev mac address
  2799. * Return: 0 for success or error code
  2800. */
  2801. QDF_STATUS
  2802. send_set_qboost_param_cmd_non_tlv(wmi_unified_t wmi_handle,
  2803. uint8_t macaddr[IEEE80211_ADDR_LEN],
  2804. struct set_qboost_params *param)
  2805. {
  2806. WMI_QBOOST_CFG_CMD *cmd;
  2807. wmi_buf_t buf;
  2808. int ret;
  2809. buf = wmi_buf_alloc(wmi_handle, sizeof(*cmd));
  2810. if (!buf) {
  2811. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2812. return QDF_STATUS_E_FAILURE;
  2813. }
  2814. cmd = (WMI_QBOOST_CFG_CMD *)wmi_buf_data(buf);
  2815. cmd->vdev_id = param->vdev_id;
  2816. WMI_CHAR_ARRAY_TO_MAC_ADDR(macaddr, &cmd->peer_macaddr);
  2817. cmd->qb_enable = param->value;
  2818. ret = wmi_unified_cmd_send(wmi_handle, buf, sizeof(*cmd),
  2819. WMI_QBOOST_CFG_CMDID);
  2820. return ret;
  2821. }
  2822. /**
  2823. * send_mu_scan_cmd_non_tlv() - send mu scan command to fw
  2824. * @wmi_handle: wmi handle
  2825. * @param: pointer to mu scan params
  2826. * Return: 0 for success or error code
  2827. */
  2828. QDF_STATUS
  2829. send_mu_scan_cmd_non_tlv(wmi_unified_t wmi_handle,
  2830. struct mu_scan_params *param)
  2831. {
  2832. wmi_mu_start_cmd *cmd;
  2833. wmi_buf_t buf;
  2834. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_mu_start_cmd));
  2835. if (!buf) {
  2836. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2837. return QDF_STATUS_E_FAILURE;
  2838. }
  2839. cmd = (wmi_mu_start_cmd *)wmi_buf_data(buf);
  2840. cmd->mu_request_id = param->id;
  2841. cmd->mu_duration = param->duration;
  2842. cmd->mu_type = param->type;
  2843. cmd->lteu_tx_power = param->lteu_tx_power;
  2844. cmd->rssi_thr_bssid = param->rssi_thr_bssid;
  2845. cmd->rssi_thr_sta = param->rssi_thr_sta;
  2846. cmd->rssi_thr_sc = param->rssi_thr_sc;
  2847. cmd->plmn_id = param->plmn_id;
  2848. cmd->alpha_num_bssid = param->alpha_num_bssid;
  2849. return wmi_unified_cmd_send(wmi_handle, buf,
  2850. sizeof(wmi_mu_start_cmd),
  2851. WMI_MU_CAL_START_CMDID);
  2852. }
  2853. /**
  2854. * send_lteu_config_cmd_non_tlv() - send lteu config command to fw
  2855. * @wmi_handle: wmi handle
  2856. * @param: pointer to lteu config params
  2857. * Return: 0 for success or error code
  2858. */
  2859. QDF_STATUS
  2860. send_lteu_config_cmd_non_tlv(wmi_unified_t wmi_handle,
  2861. struct lteu_config_params *param)
  2862. {
  2863. wmi_set_lteu_config *cmd;
  2864. wmi_buf_t buf;
  2865. int i;
  2866. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_set_lteu_config));
  2867. if (!buf) {
  2868. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  2869. return QDF_STATUS_E_FAILURE;
  2870. }
  2871. cmd = (wmi_set_lteu_config *)wmi_buf_data(buf);
  2872. cmd->gpio_enable = param->lteu_gpio_start;
  2873. cmd->num_lteu_bins = param->lteu_num_bins;
  2874. for (i = 0; i < cmd->num_lteu_bins; i++) {
  2875. cmd->mu_rssi_threshold[i] = param->lteu_thresh[i];
  2876. cmd->mu_weight[i] = param->lteu_weight[i];
  2877. cmd->mu_gamma[i] = param->lteu_gamma[i];
  2878. }
  2879. cmd->mu_scan_timeout = param->lteu_scan_timeout;
  2880. cmd->alpha_num_bssid = param->alpha_num_bssid;
  2881. cmd->use_actual_nf = param->use_actual_nf;
  2882. cmd->wifi_tx_power = param->wifi_tx_power;
  2883. cmd->allow_err_packets = param->allow_err_packets;
  2884. return wmi_unified_cmd_send(wmi_handle, buf,
  2885. sizeof(wmi_set_lteu_config),
  2886. WMI_SET_LTEU_CONFIG_CMDID);
  2887. }
  2888. /**
  2889. * send_pdev_get_tpc_config_cmd_non_tlv() - send get tpc config command to fw
  2890. * @wmi_handle: wmi handle
  2891. * @param: pointer to get tpc config params
  2892. *
  2893. * Return: 0 for success or error code
  2894. */
  2895. QDF_STATUS
  2896. send_pdev_get_tpc_config_cmd_non_tlv(wmi_unified_t wmi_handle,
  2897. uint32_t param)
  2898. {
  2899. wmi_pdev_get_tpc_config_cmd *cmd;
  2900. wmi_buf_t buf;
  2901. int32_t len = sizeof(wmi_pdev_get_tpc_config_cmd);
  2902. buf = wmi_buf_alloc(wmi_handle, len);
  2903. if (!buf) {
  2904. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2905. return QDF_STATUS_E_FAILURE;
  2906. }
  2907. cmd = (wmi_pdev_get_tpc_config_cmd *)wmi_buf_data(buf);
  2908. cmd->param = param;
  2909. return wmi_unified_cmd_send(wmi_handle, buf, len,
  2910. WMI_PDEV_GET_TPC_CONFIG_CMDID);
  2911. }
  2912. /**
  2913. * send_set_bwf_cmd_non_tlv() - send set bwf command to fw
  2914. * @wmi_handle: wmi handle
  2915. * @param: pointer to set bwf param
  2916. *
  2917. * Return: 0 for success or error code
  2918. */
  2919. QDF_STATUS
  2920. send_set_bwf_cmd_non_tlv(wmi_unified_t wmi_handle,
  2921. struct set_bwf_params *param)
  2922. {
  2923. struct wmi_bwf_peer_info *peer_info;
  2924. wmi_peer_bwf_request *cmd;
  2925. wmi_buf_t buf;
  2926. int len = sizeof(wmi_peer_bwf_request);
  2927. int i, retval = 0;
  2928. len += param->num_peers * sizeof(struct wmi_bwf_peer_info);
  2929. buf = wmi_buf_alloc(wmi_handle, len);
  2930. if (!buf) {
  2931. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2932. return QDF_STATUS_E_FAILURE;
  2933. }
  2934. cmd = (wmi_peer_bwf_request *)wmi_buf_data(buf);
  2935. qdf_mem_copy((void *)&(cmd->num_peers),
  2936. (void *)&(param->num_peers),
  2937. sizeof(u_int32_t));
  2938. peer_info = (struct wmi_bwf_peer_info *)&(cmd->peer_info[0]);
  2939. for (i = 0; i < param->num_peers; i++) {
  2940. qdf_mem_copy((void *)&(peer_info[i]),
  2941. (void *)&(param->peer_info[i]),
  2942. sizeof(struct wmi_bwf_peer_info));
  2943. }
  2944. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  2945. WMI_PEER_BWF_REQUEST_CMDID);
  2946. if (retval)
  2947. wmi_buf_free(buf);
  2948. return retval;
  2949. }
  2950. /**
  2951. * send_set_atf_cmd_non_tlv() - send set atf command to fw
  2952. * @wmi_handle: wmi handle
  2953. * @param: pointer to set atf param
  2954. *
  2955. * Return: 0 for success or error code
  2956. */
  2957. QDF_STATUS
  2958. send_set_atf_cmd_non_tlv(wmi_unified_t wmi_handle,
  2959. struct set_atf_params *param)
  2960. {
  2961. struct wmi_atf_peer_info *peer_info;
  2962. wmi_peer_atf_request *cmd;
  2963. wmi_buf_t buf;
  2964. int len = sizeof(wmi_peer_atf_request);
  2965. int i, retval = 0;
  2966. len += param->num_peers * sizeof(struct wmi_atf_peer_info);
  2967. buf = wmi_buf_alloc(wmi_handle, len);
  2968. if (!buf) {
  2969. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  2970. return QDF_STATUS_E_FAILURE;
  2971. }
  2972. cmd = (wmi_peer_atf_request *)wmi_buf_data(buf);
  2973. qdf_mem_copy((void *)&(cmd->num_peers), (void *)&(param->num_peers),
  2974. sizeof(uint32_t));
  2975. peer_info = (struct wmi_atf_peer_info *)&(cmd->peer_info[0]);
  2976. for (i = 0; i < param->num_peers; i++) {
  2977. qdf_mem_copy((void *)&(peer_info[i]),
  2978. (void *)&(param->peer_info[i]),
  2979. sizeof(struct wmi_atf_peer_info));
  2980. }
  2981. /* qdf_print("wmi_unified_pdev_set_atf peer_num=%d\n", cmd->num_peers); */
  2982. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  2983. WMI_PEER_ATF_REQUEST_CMDID);
  2984. return retval;
  2985. }
  2986. /**
  2987. * send_atf_peer_request_cmd_non_tlv() - send atf peer request command to fw
  2988. * @wmi_handle: wmi handle
  2989. * @param: pointer to atf peer request param
  2990. *
  2991. * Return: 0 for success or error code
  2992. */
  2993. QDF_STATUS
  2994. send_atf_peer_request_cmd_non_tlv(wmi_unified_t wmi_handle,
  2995. struct atf_peer_request_params *param)
  2996. {
  2997. struct wmi_atf_peer_ext_info *peer_ext_info;
  2998. wmi_peer_atf_ext_request *cmd;
  2999. wmi_buf_t buf;
  3000. int len = sizeof(wmi_peer_atf_ext_request);
  3001. int i, retval = 0;
  3002. len += param->num_peers * sizeof(struct wmi_atf_peer_ext_info);
  3003. buf = wmi_buf_alloc(wmi_handle, len);
  3004. if (!buf) {
  3005. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3006. return QDF_STATUS_E_FAILURE;
  3007. }
  3008. cmd = (wmi_peer_atf_ext_request *)wmi_buf_data(buf);
  3009. qdf_mem_copy((void *)&(cmd->num_peers), (void *)&(param->num_peers),
  3010. sizeof(uint32_t));
  3011. peer_ext_info =
  3012. (struct wmi_atf_peer_ext_info *)&(cmd->peer_ext_info[0]);
  3013. for (i = 0; i < param->num_peers; i++) {
  3014. qdf_mem_copy((void *)&(peer_ext_info[i]),
  3015. (void *)&(param->peer_ext_info[i]),
  3016. sizeof(struct wmi_atf_peer_ext_info));
  3017. }
  3018. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  3019. WMI_PEER_ATF_EXT_REQUEST_CMDID);
  3020. return retval;
  3021. }
  3022. /**
  3023. * send_set_atf_grouping_cmd_non_tlv() - send set atf grouping command to fw
  3024. * @wmi_handle: wmi handle
  3025. * @param: pointer to set atf grouping param
  3026. *
  3027. * Return: 0 for success or error code
  3028. */
  3029. QDF_STATUS
  3030. send_set_atf_grouping_cmd_non_tlv(wmi_unified_t wmi_handle,
  3031. struct atf_grouping_params *param)
  3032. {
  3033. struct wmi_atf_group_info *group_info;
  3034. wmi_atf_ssid_grp_request *cmd;
  3035. wmi_buf_t buf;
  3036. int len = sizeof(wmi_atf_ssid_grp_request);
  3037. int i, retval = 0;
  3038. len += param->num_groups * sizeof(struct wmi_atf_group_info);
  3039. buf = wmi_buf_alloc(wmi_handle, len);
  3040. if (!buf) {
  3041. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3042. return QDF_STATUS_E_FAILURE;
  3043. }
  3044. cmd = (wmi_atf_ssid_grp_request *)wmi_buf_data(buf);
  3045. qdf_mem_copy((void *)&(cmd->num_groups), (void *)&(param->num_groups),
  3046. sizeof(uint32_t));
  3047. group_info = (struct wmi_atf_group_info *)&(cmd->group_info[0]);
  3048. for (i = 0; i < param->num_groups; i++) {
  3049. qdf_mem_copy((void *)&(group_info[i]),
  3050. (void *)&(param->group_info[i]),
  3051. sizeof(struct wmi_atf_group_info));
  3052. }
  3053. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  3054. WMI_ATF_SSID_GROUPING_REQUEST_CMDID);
  3055. return retval;
  3056. }
  3057. /**
  3058. * send_wlan_profile_enable_cmd_non_tlv() - send wlan profile enable command
  3059. * to fw
  3060. * @wmi_handle: wmi handle
  3061. * @param: pointer to wlan profile param
  3062. *
  3063. * Return: 0 for success or error code
  3064. */
  3065. QDF_STATUS
  3066. send_wlan_profile_enable_cmd_non_tlv(wmi_unified_t wmi_handle,
  3067. struct wlan_profile_params *param)
  3068. {
  3069. wmi_buf_t buf;
  3070. uint16_t len;
  3071. wmi_wlan_profile_enable_profile_id_cmd *cmd;
  3072. len = sizeof(wmi_wlan_profile_enable_profile_id_cmd);
  3073. buf = wmi_buf_alloc(wmi_handle, len);
  3074. if (!buf) {
  3075. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3076. return QDF_STATUS_E_FAILURE;
  3077. }
  3078. cmd = (wmi_wlan_profile_enable_profile_id_cmd *)wmi_buf_data(buf);
  3079. cmd->profile_id = param->profile_id;
  3080. cmd->enable = param->enable;
  3081. return wmi_unified_cmd_send(wmi_handle, buf, len,
  3082. WMI_WLAN_PROFILE_ENABLE_PROFILE_ID_CMDID);
  3083. }
  3084. /**
  3085. * send_wlan_profile_trigger_cmd_non_tlv() - send wlan profile trigger command
  3086. * to fw
  3087. * @wmi_handle: wmi handle
  3088. * @param: pointer to wlan profile param
  3089. *
  3090. * Return: 0 for success or error code
  3091. */
  3092. QDF_STATUS
  3093. send_wlan_profile_trigger_cmd_non_tlv(wmi_unified_t wmi_handle,
  3094. struct wlan_profile_params *param)
  3095. {
  3096. wmi_buf_t buf;
  3097. uint16_t len;
  3098. wmi_wlan_profile_trigger_cmd *cmd;
  3099. len = sizeof(wmi_wlan_profile_trigger_cmd);
  3100. buf = wmi_buf_alloc(wmi_handle, len);
  3101. if (!buf) {
  3102. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3103. return QDF_STATUS_E_FAILURE;
  3104. }
  3105. cmd = (wmi_wlan_profile_trigger_cmd *)wmi_buf_data(buf);
  3106. cmd->enable = param->enable;
  3107. return wmi_unified_cmd_send(wmi_handle, buf, len,
  3108. WMI_WLAN_PROFILE_TRIGGER_CMDID);
  3109. }
  3110. #ifdef BIG_ENDIAN_HOST
  3111. void wmi_host_swap_bytes(void *pv, size_t n)
  3112. {
  3113. int noWords;
  3114. int i;
  3115. A_UINT32 *wordPtr;
  3116. noWords = n/sizeof(u_int32_t);
  3117. wordPtr = (u_int32_t *)pv;
  3118. for (i = 0; i < noWords; i++)
  3119. *(wordPtr + i) = __cpu_to_le32(*(wordPtr + i));
  3120. }
  3121. #define WMI_HOST_SWAPME(x, len) wmi_host_swap_bytes(&x, len);
  3122. #endif
  3123. /**
  3124. * send_set_ht_ie_cmd_non_tlv() - send ht ie command to fw
  3125. * @wmi_handle: wmi handle
  3126. * @param: pointer to ht ie param
  3127. *
  3128. * Return: 0 for success or error code
  3129. */
  3130. QDF_STATUS
  3131. send_set_ht_ie_cmd_non_tlv(wmi_unified_t wmi_handle,
  3132. struct ht_ie_params *param)
  3133. {
  3134. wmi_pdev_set_ht_ie_cmd *cmd;
  3135. wmi_buf_t buf;
  3136. /* adjust length to be next multiple of four */
  3137. int len = (param->ie_len + (sizeof(uint32_t) - 1)) &
  3138. (~(sizeof(uint32_t) - 1));
  3139. /* to account for extra four bytes of ie data in the struct */
  3140. len += (sizeof(wmi_pdev_set_ht_ie_cmd) - 4);
  3141. buf = wmi_buf_alloc(wmi_handle, len);
  3142. if (!buf) {
  3143. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3144. return QDF_STATUS_E_FAILURE;
  3145. }
  3146. cmd = (wmi_pdev_set_ht_ie_cmd *)wmi_buf_data(buf);
  3147. cmd->ie_len = param->ie_len;
  3148. qdf_mem_copy(cmd->ie_data, param->ie_data, param->ie_len);
  3149. #ifdef BIG_ENDIAN_HOST
  3150. WMI_HOST_SWAPME(cmd->ie_data, len-(offsetof(wmi_pdev_set_ht_ie_cmd,
  3151. ie_data)));
  3152. #endif
  3153. return wmi_unified_cmd_send(wmi_handle, buf, len,
  3154. WMI_PDEV_SET_HT_CAP_IE_CMDID);
  3155. }
  3156. /**
  3157. * send_set_vht_ie_cmd_non_tlv() - send vht ie command to fw
  3158. * @wmi_handle: wmi handle
  3159. * @param: pointer to vht ie param
  3160. *
  3161. * Return: 0 for success or error code
  3162. */
  3163. QDF_STATUS
  3164. send_set_vht_ie_cmd_non_tlv(wmi_unified_t wmi_handle,
  3165. struct vht_ie_params *param)
  3166. {
  3167. wmi_pdev_set_vht_ie_cmd *cmd;
  3168. wmi_buf_t buf;
  3169. /* adjust length to be next multiple of four */
  3170. int len = (param->ie_len + (sizeof(u_int32_t) - 1)) &
  3171. (~(sizeof(u_int32_t) - 1));
  3172. /* to account for extra four bytes of ie data in the struct */
  3173. len += (sizeof(wmi_pdev_set_vht_ie_cmd) - 4);
  3174. buf = wmi_buf_alloc(wmi_handle, len);
  3175. if (!buf) {
  3176. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3177. return QDF_STATUS_E_FAILURE;
  3178. }
  3179. cmd = (wmi_pdev_set_vht_ie_cmd *)wmi_buf_data(buf);
  3180. cmd->ie_len = param->ie_len;
  3181. qdf_mem_copy(cmd->ie_data, param->ie_data, param->ie_len);
  3182. #ifdef BIG_ENDIAN_HOST
  3183. WMI_HOST_SWAPME(cmd->ie_data, len-(offsetof(wmi_pdev_set_vht_ie_cmd,
  3184. ie_data)));
  3185. #endif
  3186. return wmi_unified_cmd_send(wmi_handle, buf, len,
  3187. WMI_PDEV_SET_VHT_CAP_IE_CMDID);
  3188. }
  3189. /**
  3190. * send_wmm_update_cmd_non_tlv() - send wmm update command to fw
  3191. * @wmi_handle: wmi handle
  3192. * @param: pointer to wmm update param
  3193. *
  3194. * Return: 0 for success or error code
  3195. */
  3196. QDF_STATUS
  3197. send_wmm_update_cmd_non_tlv(wmi_unified_t wmi_handle,
  3198. struct wmm_update_params *param)
  3199. {
  3200. #define ATH_EXPONENT_TO_VALUE(v) ((1<<v)-1)
  3201. #define ATH_TXOP_TO_US(v) (v<<5)
  3202. #define WME_AC_BE 0 /* best effort */
  3203. #define WME_AC_BK 1 /* background */
  3204. #define WME_AC_VI 2 /* video */
  3205. #define WME_AC_VO 3 /* voice */
  3206. wmi_buf_t buf;
  3207. wmi_pdev_set_wmm_params_cmd *cmd;
  3208. wmi_wmm_params *wmi_param = 0;
  3209. int ac;
  3210. int len = sizeof(wmi_pdev_set_wmm_params_cmd);
  3211. struct wmi_host_wmeParams *wmep;
  3212. buf = wmi_buf_alloc(wmi_handle, len);
  3213. qdf_print("%s:\n", __func__);
  3214. if (!buf) {
  3215. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3216. return QDF_STATUS_SUCCESS;
  3217. }
  3218. cmd = (wmi_pdev_set_wmm_params_cmd *)wmi_buf_data(buf);
  3219. for (ac = 0; ac < WME_NUM_AC; ac++) {
  3220. wmep = &param->wmep_array[ac];
  3221. switch (ac) {
  3222. case WME_AC_BE:
  3223. wmi_param = &cmd->wmm_params_ac_be;
  3224. break;
  3225. case WME_AC_BK:
  3226. wmi_param = &cmd->wmm_params_ac_bk;
  3227. break;
  3228. case WME_AC_VI:
  3229. wmi_param = &cmd->wmm_params_ac_vi;
  3230. break;
  3231. case WME_AC_VO:
  3232. wmi_param = &cmd->wmm_params_ac_vo;
  3233. break;
  3234. default:
  3235. break;
  3236. }
  3237. wmi_param->aifs = wmep->wmep_aifsn;
  3238. wmi_param->cwmin = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmin);
  3239. wmi_param->cwmax = ATH_EXPONENT_TO_VALUE(wmep->wmep_logcwmax);
  3240. wmi_param->txoplimit = ATH_TXOP_TO_US(wmep->wmep_txopLimit);
  3241. wmi_param->acm = wmep->wmep_acm;
  3242. wmi_param->no_ack = wmep->wmep_noackPolicy;
  3243. }
  3244. wmi_unified_cmd_send(wmi_handle, buf, len,
  3245. WMI_PDEV_SET_WMM_PARAMS_CMDID);
  3246. return QDF_STATUS_SUCCESS;
  3247. }
  3248. /**
  3249. * send_set_ant_switch_tbl_cmd_non_tlv() - send ant switch tbl cmd to fw
  3250. * @wmi_handle: wmi handle
  3251. * @param: pointer to hold ant switch tbl param
  3252. *
  3253. * Return: 0 for success or error code
  3254. */
  3255. QDF_STATUS
  3256. send_set_ant_switch_tbl_cmd_non_tlv(wmi_unified_t wmi_handle,
  3257. struct ant_switch_tbl_params *param)
  3258. {
  3259. uint8_t len;
  3260. wmi_buf_t buf;
  3261. wmi_pdev_set_ant_switch_tbl_cmd *cmd;
  3262. len = sizeof(wmi_pdev_set_ant_switch_tbl_cmd);
  3263. buf = wmi_buf_alloc(wmi_handle, len);
  3264. if (!buf) {
  3265. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3266. return QDF_STATUS_E_NOMEM;
  3267. }
  3268. cmd = (wmi_pdev_set_ant_switch_tbl_cmd *)wmi_buf_data(buf);
  3269. cmd->antCtrlCommon1 = param->ant_ctrl_common1;
  3270. cmd->antCtrlCommon2 = param->ant_ctrl_common2;
  3271. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3272. WMI_PDEV_SET_ANTENNA_SWITCH_TABLE_CMDID)) {
  3273. return QDF_STATUS_E_FAILURE;
  3274. }
  3275. return QDF_STATUS_SUCCESS;
  3276. }
  3277. /**
  3278. * send_set_ratepwr_table_cmd_non_tlv() - send rate power table cmd to fw
  3279. * @wmi_handle: wmi handle
  3280. * @param: pointer to hold rate power table param
  3281. *
  3282. * Return: 0 for success or error code
  3283. */
  3284. QDF_STATUS
  3285. send_set_ratepwr_table_cmd_non_tlv(wmi_unified_t wmi_handle,
  3286. struct ratepwr_table_params *param)
  3287. {
  3288. uint16_t len;
  3289. wmi_buf_t buf;
  3290. wmi_pdev_ratepwr_table_cmd *cmd;
  3291. if (!param->ratepwr_tbl)
  3292. return QDF_STATUS_E_FAILURE;
  3293. len = sizeof(wmi_pdev_ratepwr_table_cmd);
  3294. len += roundup(param->ratepwr_len, sizeof(A_UINT32)) - sizeof(A_UINT32);
  3295. /* already 4 bytes in cmd structure */
  3296. qdf_print("wmi buf len = %d\n", len);
  3297. buf = wmi_buf_alloc(wmi_handle, len);
  3298. if (!buf) {
  3299. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3300. return QDF_STATUS_E_NOMEM;
  3301. }
  3302. cmd = (wmi_pdev_ratepwr_table_cmd *)wmi_buf_data(buf);
  3303. cmd->op = RATEPWR_TABLE_OPS_SET;
  3304. cmd->ratepwr_len = param->ratepwr_len;
  3305. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&cmd->ratepwr_tbl[0],
  3306. param->ratepwr_tbl, param->ratepwr_len);
  3307. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3308. WMI_PDEV_RATEPWR_TABLE_CMDID)) {
  3309. return QDF_STATUS_E_FAILURE;
  3310. }
  3311. return QDF_STATUS_SUCCESS;
  3312. }
  3313. /**
  3314. * send_get_ratepwr_table_cmd_non_tlv() - send rate power table cmd to fw
  3315. * @wmi_handle: wmi handle
  3316. *
  3317. * Return: 0 for success or error code
  3318. */
  3319. QDF_STATUS
  3320. send_get_ratepwr_table_cmd_non_tlv(wmi_unified_t wmi_handle)
  3321. {
  3322. uint16_t len;
  3323. wmi_buf_t buf;
  3324. wmi_pdev_ratepwr_table_cmd *cmd;
  3325. len = sizeof(wmi_pdev_ratepwr_table_cmd);
  3326. qdf_print("wmi buf len = %d\n", len);
  3327. buf = wmi_buf_alloc(wmi_handle, len);
  3328. if (!buf) {
  3329. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3330. return QDF_STATUS_E_NOMEM;
  3331. }
  3332. cmd = (wmi_pdev_ratepwr_table_cmd *)wmi_buf_data(buf);
  3333. cmd->op = RATEPWR_TABLE_OPS_GET;
  3334. cmd->ratepwr_len = 0;
  3335. cmd->ratepwr_tbl[0] = 0;
  3336. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3337. WMI_PDEV_RATEPWR_TABLE_CMDID)) {
  3338. return QDF_STATUS_E_FAILURE;
  3339. }
  3340. return QDF_STATUS_SUCCESS;
  3341. }
  3342. /**
  3343. * send_set_ctl_table_cmd_non_tlv() - send ctl table cmd to fw
  3344. * @wmi_handle: wmi handle
  3345. * @param: pointer to hold ctl table param
  3346. *
  3347. * Return: 0 for success or error code
  3348. */
  3349. QDF_STATUS
  3350. send_set_ctl_table_cmd_non_tlv(wmi_unified_t wmi_handle,
  3351. struct ctl_table_params *param)
  3352. {
  3353. /* for QC98XX only */
  3354. /*6 modes (A, HT20, HT40, VHT20, VHT40, VHT80) * 3 reg dommains
  3355. * TODO for 160/80+80
  3356. */
  3357. #define WHAL_NUM_CTLS_5G 18
  3358. /*6 modes (B, G, HT20, HT40, VHT20, VHT40) * 3 reg domains */
  3359. #define WHAL_NUM_CTLS_2G 18
  3360. #define WHAL_NUM_BAND_EDGES_5G 8
  3361. #define WHAL_NUM_BAND_EDGES_2G 4
  3362. /*Beelinier 5G*/
  3363. #define WHAL_NUM_CTLS_5G_11A 9
  3364. #define WHAL_NUM_BAND_EDGES_5G_11A 25
  3365. #define WHAL_NUM_CTLS_5G_HT20 24
  3366. #define WHAL_NUM_BAND_EDGES_5G_HT20 25
  3367. #define WHAL_NUM_CTLS_5G_HT40 18
  3368. #define WHAL_NUM_BAND_EDGES_5G_HT40 12
  3369. #define WHAL_NUM_CTLS_5G_HT80 18
  3370. #define WHAL_NUM_BAND_EDGES_5G_HT80 6
  3371. #define WHAL_NUM_CTLS_5G_HT160 9
  3372. #define WHAL_NUM_BAND_EDGES_5G_HT160 2
  3373. /* Beeliner 2G */
  3374. #define WHAL_NUM_CTLS_2G_11B 6
  3375. #define WHAL_NUM_BAND_EDGES_2G_11B 9
  3376. #define WHAL_NUM_CTLS_2G_20MHZ 30
  3377. #define WHAL_NUM_BAND_EDGES_2G_20MHZ 11
  3378. #define WHAL_NUM_CTLS_2G_40MHZ 18
  3379. #define WHAL_NUM_BAND_EDGES_2G_40MHZ 6
  3380. uint16_t len;
  3381. wmi_buf_t buf;
  3382. wmi_pdev_set_ctl_table_cmd *cmd;
  3383. if (!param->ctl_array)
  3384. return QDF_STATUS_E_FAILURE;
  3385. /* CTL array length check for Beeliner family */
  3386. if (param->target_type == TARGET_TYPE_AR900B ||
  3387. param->target_type == TARGET_TYPE_QCA9984 ||
  3388. param->target_type == TARGET_TYPE_IPQ4019 ||
  3389. param->target_type == TARGET_TYPE_QCA9888) {
  3390. if (param->is_2g) {
  3391. /* For 2G, CTL array length should be 688*/
  3392. if (!param->is_acfg_ctl && param->ctl_len !=
  3393. (4 + (WHAL_NUM_CTLS_2G_11B * 2) +
  3394. (WHAL_NUM_BAND_EDGES_2G_11B * 3) +
  3395. 1 + (WHAL_NUM_CTLS_2G_11B *
  3396. WHAL_NUM_BAND_EDGES_2G_11B) +
  3397. (WHAL_NUM_CTLS_2G_20MHZ * 2) +
  3398. (WHAL_NUM_BAND_EDGES_2G_20MHZ * 3) +
  3399. 1 + (WHAL_NUM_CTLS_2G_20MHZ *
  3400. WHAL_NUM_BAND_EDGES_2G_20MHZ) +
  3401. (WHAL_NUM_CTLS_2G_40MHZ * 2) +
  3402. (WHAL_NUM_BAND_EDGES_2G_40MHZ * 3) +
  3403. (WHAL_NUM_CTLS_2G_40MHZ *
  3404. WHAL_NUM_BAND_EDGES_2G_40MHZ) + 4)) {
  3405. qdf_print("CTL array len not correct\n");
  3406. return QDF_STATUS_E_FAILURE;
  3407. }
  3408. } else {
  3409. /* For 5G, CTL array length should be 1540 */
  3410. if (!param->is_acfg_ctl && param->ctl_len !=
  3411. (4 + (WHAL_NUM_CTLS_5G_11A * 2) +
  3412. (WHAL_NUM_BAND_EDGES_5G_11A * 3) +
  3413. 1 + (WHAL_NUM_CTLS_5G_11A *
  3414. WHAL_NUM_BAND_EDGES_5G_11A) + 1
  3415. + (WHAL_NUM_CTLS_5G_HT20 * 2) +
  3416. (WHAL_NUM_BAND_EDGES_5G_HT20 * 3) +
  3417. 1 + (WHAL_NUM_CTLS_5G_HT20 *
  3418. WHAL_NUM_BAND_EDGES_5G_HT20) +
  3419. (WHAL_NUM_CTLS_5G_HT40 * 2) +
  3420. (WHAL_NUM_BAND_EDGES_5G_HT40 * 3) +
  3421. (WHAL_NUM_CTLS_5G_HT40 *
  3422. WHAL_NUM_BAND_EDGES_5G_HT40) +
  3423. (WHAL_NUM_CTLS_5G_HT80 * 2) +
  3424. (WHAL_NUM_BAND_EDGES_5G_HT80 * 3) +
  3425. (WHAL_NUM_CTLS_5G_HT80 *
  3426. WHAL_NUM_BAND_EDGES_5G_HT80) +
  3427. (WHAL_NUM_CTLS_5G_HT160 * 2) +
  3428. (WHAL_NUM_BAND_EDGES_5G_HT160 * 3) +
  3429. (WHAL_NUM_CTLS_5G_HT160 *
  3430. WHAL_NUM_BAND_EDGES_5G_HT160))) {
  3431. qdf_print("CTL array len not correct\n");
  3432. return QDF_STATUS_E_FAILURE;
  3433. }
  3434. }
  3435. } else {
  3436. if (!param->is_acfg_ctl && param->ctl_len !=
  3437. WHAL_NUM_CTLS_2G * WHAL_NUM_BAND_EDGES_2G * 2 +
  3438. WHAL_NUM_CTLS_5G * WHAL_NUM_BAND_EDGES_5G * 2) {
  3439. qdf_print("CTL array len not correct\n");
  3440. return QDF_STATUS_E_FAILURE;
  3441. }
  3442. }
  3443. len = sizeof(wmi_pdev_set_ctl_table_cmd);
  3444. len += roundup(param->ctl_len, sizeof(A_UINT32)) - sizeof(A_UINT32);
  3445. qdf_print("wmi buf len = %d\n", len);
  3446. buf = wmi_buf_alloc(wmi_handle, len);
  3447. if (!buf) {
  3448. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3449. return QDF_STATUS_E_FAILURE;
  3450. }
  3451. cmd = (wmi_pdev_set_ctl_table_cmd *)wmi_buf_data(buf);
  3452. cmd->ctl_len = param->ctl_len;
  3453. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&cmd->ctl_info[0], param->ctl_array,
  3454. param->ctl_len);
  3455. if (param->is_acfg_ctl)
  3456. len = param->ctl_len;
  3457. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3458. WMI_PDEV_SET_CTL_TABLE_CMDID)) {
  3459. qdf_print("%s:Failed to send command\n", __func__);
  3460. return QDF_STATUS_E_FAILURE;
  3461. }
  3462. return QDF_STATUS_SUCCESS;
  3463. #undef WHAL_NUM_CTLS_5G
  3464. #undef WHAL_NUM_CTLS_2G
  3465. #undef WHAL_NUM_BAND_EDGES_5G
  3466. #undef WHAL_NUM_BAND_EDGES_2G
  3467. }
  3468. /**
  3469. * send_set_mimogain_table_cmd_non_tlv() - send mimogain table cmd to fw
  3470. * @wmi_handle: wmi handle
  3471. * @param: pointer to hold mimogain table param
  3472. *
  3473. * Return: 0 for success or error code
  3474. */
  3475. QDF_STATUS
  3476. send_set_mimogain_table_cmd_non_tlv(wmi_unified_t wmi_handle,
  3477. struct mimogain_table_params *param)
  3478. {
  3479. /* for QC98XX only */
  3480. #define WHAL_TX_NUM_CHAIN 0x3
  3481. #define WHAL_TPC_REGINDEX_MAX 4
  3482. #define WHAL_ARRAY_GAIN_NUM_STREAMS 2
  3483. uint16_t len;
  3484. wmi_buf_t buf;
  3485. wmi_pdev_set_mimogain_table_cmd *cmd;
  3486. if (!param->array_gain)
  3487. return QDF_STATUS_E_FAILURE;
  3488. /* len must be multiple of a single array gain table */
  3489. if (param->tbl_len % ((WHAL_TX_NUM_CHAIN-1) * WHAL_TPC_REGINDEX_MAX *
  3490. WHAL_ARRAY_GAIN_NUM_STREAMS) != 0) {
  3491. qdf_print("Array gain table len not correct\n");
  3492. return QDF_STATUS_E_FAILURE;
  3493. }
  3494. len = sizeof(wmi_pdev_set_mimogain_table_cmd);
  3495. len += roundup(param->tbl_len, sizeof(A_UINT32)) - sizeof(A_UINT32);
  3496. buf = wmi_buf_alloc(wmi_handle, len);
  3497. if (!buf) {
  3498. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3499. return QDF_STATUS_E_FAILURE;
  3500. }
  3501. cmd = (wmi_pdev_set_mimogain_table_cmd *)wmi_buf_data(buf);
  3502. WMI_MIMOGAIN_ARRAY_GAIN_LEN_SET(cmd->mimogain_info, param->tbl_len);
  3503. WMI_MIMOGAIN_MULTI_CHAIN_BYPASS_SET(cmd->mimogain_info,
  3504. param->multichain_gain_bypass);
  3505. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(&cmd->arraygain_tbl[0],
  3506. param->array_gain,
  3507. param->tbl_len);
  3508. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3509. WMI_PDEV_SET_MIMOGAIN_TABLE_CMDID)) {
  3510. return QDF_STATUS_E_FAILURE;
  3511. }
  3512. return QDF_STATUS_SUCCESS;
  3513. #undef WHAL_TX_NUM_CHAIN
  3514. #undef WHAL_TPC_REGINDEX_MAX
  3515. #undef WHAL_ARRAY_GAIN_NUM_STREAMS
  3516. }
  3517. /**
  3518. * send_set_ratepwr_chainmsk_cmd_non_tlv() - send ratepwr chainmask cmd to fw
  3519. * @wmi_handle: wmi handle
  3520. * @param: pointer to hold ratepwr chainmask param
  3521. *
  3522. * Return: 0 for success or error code
  3523. */
  3524. QDF_STATUS
  3525. send_set_ratepwr_chainmsk_cmd_non_tlv(wmi_unified_t wmi_handle,
  3526. struct ratepwr_chainmsk_params *param)
  3527. {
  3528. #define RC_CCK_OFDM_RATES 0
  3529. #define RC_HT_RATES 1
  3530. #define RC_VHT_RATES 2
  3531. uint16_t len;
  3532. wmi_buf_t buf;
  3533. wmi_pdev_ratepwr_chainmsk_tbl_cmd *cmd;
  3534. if (!param->ratepwr_chain_tbl)
  3535. return QDF_STATUS_E_FAILURE;
  3536. len = sizeof(wmi_pdev_ratepwr_chainmsk_tbl_cmd);
  3537. len += roundup(param->num_rate*sizeof(uint32_t), sizeof(A_UINT32));
  3538. buf = wmi_buf_alloc(wmi_handle, len);
  3539. if (!buf) {
  3540. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3541. return QDF_STATUS_E_NOMEM;
  3542. }
  3543. cmd = (wmi_pdev_ratepwr_chainmsk_tbl_cmd *)wmi_buf_data(buf);
  3544. cmd->op = param->ops;
  3545. cmd->pream_type = param->pream_type;
  3546. cmd->rate_len = param->num_rate;
  3547. if (param->ops == RATEPWR_CHAINMSK_TABLE_OPS_EN) {
  3548. qdf_mem_copy(&cmd->ratepwr_chaintbl[0],
  3549. param->ratepwr_chain_tbl,
  3550. param->num_rate*sizeof(u_int32_t));
  3551. }
  3552. wmi_unified_cmd_send(wmi_handle, buf, len,
  3553. WMI_PDEV_RATEPWR_CHAINMSK_TABLE_CMDID);
  3554. return QDF_STATUS_SUCCESS;
  3555. }
  3556. /**
  3557. * send_set_macaddr_cmd_non_tlv() - send set macaddr cmd to fw
  3558. * @wmi_handle: wmi handle
  3559. * @param: pointer to hold macaddr param
  3560. *
  3561. * Return: 0 for success or error code
  3562. */
  3563. QDF_STATUS
  3564. send_set_macaddr_cmd_non_tlv(wmi_unified_t wmi_handle,
  3565. struct macaddr_params *param)
  3566. {
  3567. uint8_t len;
  3568. wmi_buf_t buf;
  3569. wmi_pdev_set_base_macaddr_cmd *cmd;
  3570. len = sizeof(wmi_pdev_set_base_macaddr_cmd);
  3571. buf = wmi_buf_alloc(wmi_handle, len);
  3572. if (!buf) {
  3573. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3574. return QDF_STATUS_E_FAILURE;
  3575. }
  3576. cmd = (wmi_pdev_set_base_macaddr_cmd *)wmi_buf_data(buf);
  3577. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->macaddr, &cmd->base_macaddr);
  3578. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  3579. WMI_PDEV_SET_BASE_MACADDR_CMDID)) {
  3580. return QDF_STATUS_E_FAILURE;
  3581. }
  3582. return QDF_STATUS_SUCCESS;
  3583. }
  3584. /**
  3585. * send_pdev_scan_start_cmd_non_tlv() - send pdev scan start cmd to fw
  3586. * @wmi_handle: wmi handle
  3587. *
  3588. * Return: 0 for success or error code
  3589. */
  3590. QDF_STATUS
  3591. send_pdev_scan_start_cmd_non_tlv(wmi_unified_t wmi_handle)
  3592. {
  3593. /*
  3594. * this command was added to support host scan egine which is
  3595. * deprecated. now the scan engine is in FW and host directly
  3596. * isssues a scan request to perform scan and provide results back
  3597. * to host
  3598. */
  3599. wmi_buf_t buf;
  3600. wmi_pdev_scan_cmd *cmd;
  3601. int len = sizeof(wmi_pdev_scan_cmd);
  3602. buf = wmi_buf_alloc(wmi_handle, len);
  3603. qdf_print("%s:\n", __func__);
  3604. if (!buf) {
  3605. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3606. return QDF_STATUS_E_NOMEM;
  3607. }
  3608. cmd = (wmi_pdev_scan_cmd *)wmi_buf_data(buf);
  3609. cmd->scan_start = TRUE;
  3610. #if DEPRECATE_WMI
  3611. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_PDEV_SCAN_CMDID);
  3612. #endif
  3613. return QDF_STATUS_SUCCESS;
  3614. }
  3615. /**
  3616. * send_pdev_scan_end_cmd_non_tlv() - send pdev scan end cmd to fw
  3617. * @wmi_handle: wmi handle
  3618. *
  3619. * Return: 0 for success or error code
  3620. */
  3621. QDF_STATUS
  3622. send_pdev_scan_end_cmd_non_tlv(wmi_unified_t wmi_handle)
  3623. {
  3624. /*
  3625. * this command was added to support host scan egine which is
  3626. * deprecated. now the scan engine is in FW and host directly isssues
  3627. * a scan request to perform scan and provide results back to host
  3628. */
  3629. wmi_pdev_scan_cmd *cmd;
  3630. wmi_buf_t buf;
  3631. int len = sizeof(wmi_pdev_scan_cmd);
  3632. buf = wmi_buf_alloc(wmi_handle, len);
  3633. qdf_print("%s:\n", __func__);
  3634. if (!buf) {
  3635. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3636. return QDF_STATUS_E_NOMEM;
  3637. }
  3638. cmd = (wmi_pdev_scan_cmd *)wmi_buf_data(buf);
  3639. cmd->scan_start = FALSE;
  3640. #if DEPRECATE_WMI
  3641. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_PDEV_SCAN_CMDID);
  3642. #endif
  3643. return QDF_STATUS_SUCCESS;
  3644. }
  3645. /**
  3646. * send_set_acparams_cmd_non_tlv() - send acparams cmd to fw
  3647. * @wmi_handle: wmi handle
  3648. * @param: pointer to hold acparams
  3649. *
  3650. * Return: 0 for success or error code
  3651. */
  3652. QDF_STATUS
  3653. send_set_acparams_cmd_non_tlv(wmi_unified_t wmi_handle,
  3654. struct acparams_params *param)
  3655. {
  3656. wmi_pdev_set_param_cmd *cmd;
  3657. wmi_buf_t buf;
  3658. uint32_t param_value = 0;
  3659. int len = sizeof(wmi_pdev_set_param_cmd);
  3660. buf = wmi_buf_alloc(wmi_handle, len);
  3661. if (!buf) {
  3662. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3663. return QDF_STATUS_E_NOMEM;
  3664. }
  3665. cmd = (wmi_pdev_set_param_cmd *)wmi_buf_data(buf);
  3666. cmd->param_id = WMI_PDEV_PARAM_AC_AGGRSIZE_SCALING;
  3667. param_value = param->ac;
  3668. param_value |= (param->aggrsize_scaling << 8);
  3669. cmd->param_value = param_value;
  3670. wmi_unified_cmd_send(wmi_handle, buf, len, WMI_PDEV_SET_PARAM_CMDID);
  3671. return QDF_STATUS_SUCCESS;
  3672. }
  3673. /**
  3674. * send_set_vap_dscp_tid_map_cmd_non_tlv() - send vap dscp tid map cmd to fw
  3675. * @wmi_handle: wmi handle
  3676. * @param: pointer to hold vap dscp tid map param
  3677. *
  3678. * Return: 0 for success or error code
  3679. */
  3680. QDF_STATUS
  3681. send_set_vap_dscp_tid_map_cmd_non_tlv(wmi_unified_t wmi_handle,
  3682. struct vap_dscp_tid_map_params *param)
  3683. {
  3684. wmi_buf_t buf;
  3685. wmi_vdev_set_dscp_tid_map_cmd *cmd_vdev;
  3686. int len_vdev = sizeof(wmi_vdev_set_dscp_tid_map_cmd);
  3687. buf = wmi_buf_alloc(wmi_handle, len_vdev);
  3688. if (!buf) {
  3689. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3690. return QDF_STATUS_E_FAILURE;
  3691. }
  3692. cmd_vdev = (wmi_vdev_set_dscp_tid_map_cmd *)wmi_buf_data(buf);
  3693. qdf_mem_copy(cmd_vdev->dscp_to_tid_map, param->dscp_to_tid_map,
  3694. sizeof(A_UINT32) * WMI_DSCP_MAP_MAX);
  3695. cmd_vdev->vdev_id = param->vdev_id;
  3696. qdf_print("Setting dscp for vap id: %d\n", cmd_vdev->vdev_id);
  3697. return wmi_unified_cmd_send(wmi_handle, buf, len_vdev,
  3698. WMI_VDEV_SET_DSCP_TID_MAP_CMDID);
  3699. }
  3700. /**
  3701. * send_proxy_ast_reserve_cmd_non_tlv() - send proxy ast reserve cmd to fw
  3702. * @wmi_handle: wmi handle
  3703. * @param: pointer to hold proxy ast reserve param
  3704. *
  3705. * Return: 0 for success or error code
  3706. */
  3707. QDF_STATUS
  3708. send_proxy_ast_reserve_cmd_non_tlv(wmi_unified_t wmi_handle,
  3709. struct proxy_ast_reserve_params *param)
  3710. {
  3711. wmi_pdev_reserve_ast_entry_cmd *cmd;
  3712. wmi_buf_t buf;
  3713. int len = sizeof(wmi_pdev_reserve_ast_entry_cmd);
  3714. buf = wmi_buf_alloc(wmi_handle, len);
  3715. if (!buf) {
  3716. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3717. return QDF_STATUS_E_FAILURE;
  3718. }
  3719. cmd = (wmi_pdev_reserve_ast_entry_cmd *)wmi_buf_data(buf);
  3720. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->macaddr, &cmd->mac_addr);
  3721. cmd->key_id = 0;
  3722. cmd->mcast = 0;
  3723. qdf_print("%s macaddr=%s key_id=%d mcast=%d\n", __func__,
  3724. ether_sprintf(param->macaddr), cmd->key_id, cmd->mcast);
  3725. return wmi_unified_cmd_send(wmi_handle, buf, len,
  3726. WMI_PDEV_RESERVE_AST_ENTRY_CMDID);
  3727. }
  3728. /**
  3729. * send_pdev_fips_cmd_non_tlv() - send pdev fips cmd to fw
  3730. * @wmi_handle: wmi handle
  3731. * @param: pointer to hold pdev fips param
  3732. *
  3733. * Return: 0 for success or error code
  3734. */
  3735. QDF_STATUS
  3736. send_pdev_fips_cmd_non_tlv(wmi_unified_t wmi_handle,
  3737. struct fips_params *param)
  3738. {
  3739. wmi_pdev_fips_cmd *cmd;
  3740. wmi_buf_t buf;
  3741. int len = sizeof(wmi_pdev_fips_cmd) + param->data_len;
  3742. int retval = 0;
  3743. /* Data length must be multiples of 16 bytes - checked against 0xF -
  3744. * and must be less than WMI_SVC_MSG_SIZE - static size of
  3745. * wmi_pdev_fips_cmd structure
  3746. */
  3747. /* do sanity on the input */
  3748. if (!(((param->data_len & 0xF) == 0) &&
  3749. ((param->data_len > 0) &&
  3750. (param->data_len < (WMI_HOST_MAX_BUFFER_SIZE -
  3751. sizeof(wmi_pdev_fips_cmd)))))) {
  3752. return QDF_STATUS_E_INVAL;
  3753. }
  3754. buf = wmi_buf_alloc(wmi_handle, len);
  3755. if (!buf) {
  3756. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3757. return QDF_STATUS_E_FAILURE;
  3758. }
  3759. cmd = (wmi_pdev_fips_cmd *)wmi_buf_data(buf);
  3760. if (param->key != NULL && param->data != NULL) {
  3761. cmd->key_len = param->key_len;
  3762. cmd->data_len = param->data_len;
  3763. cmd->fips_cmd = !!(param->op);
  3764. #ifdef BIG_ENDIAN_HOST
  3765. {
  3766. /****************BE to LE conversion*****************/
  3767. /* Assigning unaligned space to copy the key */
  3768. unsigned char *key_unaligned = qdf_mem_malloc(
  3769. sizeof(u_int8_t)*param->key_len + FIPS_ALIGN);
  3770. u_int8_t *key_aligned = NULL;
  3771. unsigned char *data_unaligned = qdf_mem_malloc(
  3772. sizeof(u_int8_t)*param->data_len + FIPS_ALIGN);
  3773. u_int8_t *data_aligned = NULL;
  3774. int c;
  3775. /* Checking if kmalloc is succesful to allocate space */
  3776. if (key_unaligned == NULL)
  3777. return QDF_STATUS_SUCCESS;
  3778. /* Checking if space is aligned */
  3779. if (!FIPS_IS_ALIGNED(key_unaligned, FIPS_ALIGN)) {
  3780. /* align to 4 */
  3781. key_aligned =
  3782. (u_int8_t *)FIPS_ALIGNTO(key_unaligned,
  3783. FIPS_ALIGN);
  3784. } else {
  3785. key_aligned = (u_int8_t *)key_unaligned;
  3786. }
  3787. /* memset and copy content from key to key aligned */
  3788. OS_MEMSET(key_aligned, 0, param->key_len);
  3789. OS_MEMCPY(key_aligned, param->key, param->key_len);
  3790. /* print a hexdump for host debug */
  3791. print_hex_dump(KERN_DEBUG,
  3792. "\t Aligned and Copied Key:@@@@ ",
  3793. DUMP_PREFIX_NONE,
  3794. 16, 1, key_aligned, param->key_len, true);
  3795. /* Checking if kmalloc is succesful to allocate space */
  3796. if (data_unaligned == NULL)
  3797. return QDF_STATUS_SUCCESS;
  3798. /* Checking of space is aligned */
  3799. if (!FIPS_IS_ALIGNED(data_unaligned, FIPS_ALIGN)) {
  3800. /* align to 4 */
  3801. data_aligned =
  3802. (u_int8_t *)FIPS_ALIGNTO(data_unaligned,
  3803. FIPS_ALIGN);
  3804. } else {
  3805. data_aligned = (u_int8_t *)data_unaligned;
  3806. }
  3807. /* memset and copy content from data to data aligned */
  3808. OS_MEMSET(data_aligned, 0, param->data_len);
  3809. OS_MEMCPY(data_aligned, param->data, param->data_len);
  3810. /* print a hexdump for host debug */
  3811. print_hex_dump(KERN_DEBUG,
  3812. "\t Properly Aligned and Copied Data:@@@@ ",
  3813. DUMP_PREFIX_NONE,
  3814. 16, 1, data_aligned, param->data_len, true);
  3815. /* converting to little Endian both key_aligned and
  3816. * data_aligned*/
  3817. for (c = 0; c < param->key_len/4; c++) {
  3818. *((u_int32_t *)key_aligned+c) =
  3819. qdf_cpu_to_le32(*((u_int32_t *)key_aligned+c));
  3820. }
  3821. for (c = 0; c < param->data_len/4; c++) {
  3822. *((u_int32_t *)data_aligned+c) =
  3823. qdf_cpu_to_le32(*((u_int32_t *)data_aligned+c));
  3824. }
  3825. /* update endian data to key and data vectors */
  3826. OS_MEMCPY(param->key, key_aligned, param->key_len);
  3827. OS_MEMCPY(param->data, data_aligned, param->data_len);
  3828. /* clean up allocated spaces */
  3829. qdf_mem_free(key_unaligned);
  3830. key_unaligned = NULL;
  3831. key_aligned = NULL;
  3832. qdf_mem_free(data_unaligned);
  3833. data_unaligned = NULL;
  3834. data_aligned = NULL;
  3835. /*****************************************************/
  3836. }
  3837. #endif
  3838. qdf_mem_copy(cmd->key, param->key, param->key_len);
  3839. qdf_mem_copy(cmd->data, param->data, param->data_len);
  3840. if (param->mode == FIPS_ENGINE_AES_CTR ||
  3841. param->mode == FIPS_ENGINE_AES_MIC) {
  3842. cmd->mode = param->mode;
  3843. } else {
  3844. cmd->mode = FIPS_ENGINE_AES_CTR;
  3845. }
  3846. qdf_print(KERN_ERR "Key len = %d, Data len = %d\n",
  3847. cmd->key_len, cmd->data_len);
  3848. print_hex_dump(KERN_DEBUG, "Key: ", DUMP_PREFIX_NONE, 16, 1,
  3849. cmd->key, cmd->key_len, true);
  3850. print_hex_dump(KERN_DEBUG, "Plain text: ", DUMP_PREFIX_NONE,
  3851. 16, 1, cmd->data, cmd->data_len, true);
  3852. retval = wmi_unified_cmd_send(wmi_handle, buf, len,
  3853. WMI_PDEV_FIPS_CMDID);
  3854. qdf_print("%s return value %d\n", __func__, retval);
  3855. } else {
  3856. qdf_print("\n%s:%d Key or Data is NULL\n", __func__, __LINE__);
  3857. retval = -EFAULT;
  3858. }
  3859. return retval;
  3860. }
  3861. /**
  3862. * send_pdev_set_chan_cmd_non_tlv() - send pdev set chan cmd to fw
  3863. * @wmi_handle: wmi handle
  3864. * @param: pointer to hold set chan param
  3865. *
  3866. * Return: 0 for success or error code
  3867. */
  3868. QDF_STATUS
  3869. send_pdev_set_chan_cmd_non_tlv(wmi_unified_t wmi_handle,
  3870. struct channel_param *param)
  3871. {
  3872. wmi_set_channel_cmd *cmd;
  3873. wmi_buf_t buf;
  3874. int len = sizeof(wmi_set_channel_cmd);
  3875. buf = wmi_buf_alloc(wmi_handle, len);
  3876. if (!buf) {
  3877. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  3878. return QDF_STATUS_E_FAILURE;
  3879. }
  3880. cmd = (wmi_set_channel_cmd *)wmi_buf_data(buf);
  3881. cmd->chan.mhz = param->mhz;
  3882. WMI_SET_CHANNEL_MODE(&cmd->chan, param->phy_mode);
  3883. cmd->chan.band_center_freq1 = param->cfreq1;
  3884. cmd->chan.band_center_freq2 = param->cfreq2;
  3885. WMI_SET_CHANNEL_MIN_POWER(&cmd->chan, param->minpower);
  3886. WMI_SET_CHANNEL_MAX_POWER(&cmd->chan, param->maxpower);
  3887. WMI_SET_CHANNEL_REG_POWER(&cmd->chan, param->maxregpower);
  3888. WMI_SET_CHANNEL_ANTENNA_MAX(&cmd->chan, param->antennamax);
  3889. WMI_SET_CHANNEL_REG_CLASSID(&cmd->chan, param->reg_class_id);
  3890. if (param->dfs_set)
  3891. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_DFS);
  3892. if (param->dfs_set_cfreq2)
  3893. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_DFS_CFREQ2);
  3894. if (param->half_rate)
  3895. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_HALF);
  3896. if (param->quarter_rate)
  3897. WMI_SET_CHANNEL_FLAG(&cmd->chan, WMI_CHAN_FLAG_QUARTER);
  3898. if ((param->phy_mode == MODE_11AC_VHT80_80) ||
  3899. (param->phy_mode == MODE_11AC_VHT160)) {
  3900. qdf_print(
  3901. "WMI channel freq=%d, mode=%x band_center_freq1=%d band_center_freq2=%d\n",
  3902. cmd->chan.mhz,
  3903. WMI_GET_CHANNEL_MODE(&cmd->chan), cmd->chan.band_center_freq1,
  3904. cmd->chan.band_center_freq2);
  3905. } else {
  3906. qdf_print("WMI channel freq=%d, mode=%x band_center_freq1=%d\n"
  3907. , cmd->chan.mhz,
  3908. WMI_GET_CHANNEL_MODE(&cmd->chan),
  3909. cmd->chan.band_center_freq1);
  3910. }
  3911. return wmi_unified_cmd_send(wmi_handle, buf, len,
  3912. WMI_PDEV_SET_CHANNEL_CMDID);
  3913. }
  3914. /**
  3915. * send_mcast_group_update_cmd_non_tlv() - send mcast group update cmd to fw
  3916. * @wmi_handle: wmi handle
  3917. * @param: pointer to hold mcast update param
  3918. *
  3919. * Return: 0 for success or error code
  3920. */
  3921. QDF_STATUS
  3922. send_mcast_group_update_cmd_non_tlv(wmi_unified_t wmi_handle,
  3923. struct mcast_group_update_params *param)
  3924. {
  3925. wmi_peer_mcast_group_cmd *cmd;
  3926. wmi_buf_t buf;
  3927. int len;
  3928. int offset = 0;
  3929. static char dummymask[4] = { 0xFF, 0xFF, 0xFF, 0xFF};
  3930. len = sizeof(wmi_peer_mcast_group_cmd);
  3931. buf = wmi_buf_alloc(wmi_handle, len);
  3932. if (!buf) {
  3933. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  3934. return QDF_STATUS_E_NOMEM;
  3935. }
  3936. cmd = (wmi_peer_mcast_group_cmd *) wmi_buf_data(buf);
  3937. /* confirm the buffer is 4-byte aligned */
  3938. ASSERT((((size_t) cmd) & 0x3) == 0);
  3939. OS_MEMZERO(cmd, sizeof(wmi_peer_mcast_group_cmd));
  3940. /* construct the message assuming our endianness matches the target */
  3941. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_ACTION_M &
  3942. (param->action << WMI_PEER_MCAST_GROUP_FLAG_ACTION_S);
  3943. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_M &
  3944. (param->wildcard << WMI_PEER_MCAST_GROUP_FLAG_WILDCARD_S);
  3945. if (param->is_action_delete)
  3946. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_DELETEALL_M;
  3947. if (param->is_mcast_addr_len)
  3948. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_IPV6_M;
  3949. if (param->is_filter_mode_snoop)
  3950. cmd->flags |= WMI_PEER_MCAST_GROUP_FLAG_SRC_FILTER_EXCLUDE_M;
  3951. /* unicast address spec only applies for non-wildcard cases */
  3952. if (!param->wildcard && param->ucast_mac_addr) {
  3953. qdf_mem_copy(
  3954. &cmd->ucast_mac_addr,
  3955. param->ucast_mac_addr,
  3956. sizeof(cmd->ucast_mac_addr));
  3957. }
  3958. if (param->mcast_ip_addr) {
  3959. ASSERT(param->mcast_ip_addr_bytes <=
  3960. sizeof(cmd->mcast_ip_addr));
  3961. offset = sizeof(cmd->mcast_ip_addr) -
  3962. param->mcast_ip_addr_bytes;
  3963. qdf_mem_copy(((u_int8_t *) &cmd->mcast_ip_addr) + offset,
  3964. param->mcast_ip_addr,
  3965. param->mcast_ip_addr_bytes);
  3966. }
  3967. if (!param->mask)
  3968. param->mask = &dummymask[0];
  3969. qdf_mem_copy(((u_int8_t *) &cmd->mcast_ip_mask) + offset, param->mask,
  3970. param->mcast_ip_addr_bytes);
  3971. if (param->srcs && param->nsrcs) {
  3972. cmd->num_filter_addr = param->nsrcs;
  3973. ASSERT((param->nsrcs * param->mcast_ip_addr_bytes) <=
  3974. sizeof(cmd->srcs));
  3975. qdf_mem_copy(((u_int8_t *) &cmd->filter_addr), param->srcs,
  3976. param->nsrcs * param->mcast_ip_addr_bytes);
  3977. }
  3978. /* now correct for endianness, if necessary */
  3979. /*
  3980. * For Little Endian, N/w Stack gives packets in Network byte order and
  3981. * issue occurs if both Host and Target happens to be in Little Endian.
  3982. * Target when compares IP addresses in packet with MCAST_GROUP_CMDID
  3983. * given IP addresses, it fails. Hence swap only mcast_ip_addr
  3984. * (16 bytes) for now.
  3985. * TODO : filter
  3986. */
  3987. /* TBD in OL Layer
  3988. #ifdef BIG_ENDIAN_HOST
  3989. ol_bytestream_endian_fix(
  3990. (u_int32_t *)&cmd->ucast_mac_addr,
  3991. (sizeof(*cmd)-4) / sizeof(u_int32_t));
  3992. #else
  3993. ol_bytestream_endian_fix(
  3994. (u_int32_t *)&cmd->mcast_ip_addr,
  3995. (sizeof(cmd->mcast_ip_addr)) / sizeof(u_int32_t));
  3996. #endif Little Endian */
  3997. wmi_unified_cmd_send(
  3998. wmi_handle, buf, len, WMI_PEER_MCAST_GROUP_CMDID);
  3999. return QDF_STATUS_SUCCESS;
  4000. }
  4001. /**
  4002. * send_periodic_chan_stats_config_cmd_non_tlv() - send periodic chan stats cmd
  4003. * to fw
  4004. * @wmi_handle: wmi handle
  4005. * @param: pointer to hold periodic chan stats param
  4006. *
  4007. * Return: 0 for success or error code
  4008. */
  4009. QDF_STATUS
  4010. send_periodic_chan_stats_config_cmd_non_tlv(wmi_unified_t wmi_handle,
  4011. struct periodic_chan_stats_params *param)
  4012. {
  4013. wmi_buf_t buf = NULL;
  4014. wmi_set_periodic_channel_stats_config *cmd = NULL;
  4015. QDF_STATUS error = 0;
  4016. int32_t len = 0;
  4017. len = sizeof(wmi_set_periodic_channel_stats_config);
  4018. buf = wmi_buf_alloc(wmi_handle, len);
  4019. if (!buf) {
  4020. qdf_print("%s: Unable to allocate merory\n", __func__);
  4021. return QDF_STATUS_E_NOMEM;
  4022. }
  4023. cmd = (wmi_set_periodic_channel_stats_config *) wmi_buf_data(buf);
  4024. cmd->enable = param->enable;
  4025. cmd->stats_period = param->stats_period;
  4026. error = wmi_unified_cmd_send(wmi_handle, buf, len,
  4027. WMI_SET_PERIODIC_CHANNEL_STATS_CONFIG);
  4028. if (error)
  4029. qdf_print(" %s :WMI Failed\n", __func__);
  4030. return error;
  4031. }
  4032. /**
  4033. * send_nf_dbr_dbm_info_get_cmd_non_tlv() - send request to get nf to fw
  4034. * @wmi_handle: wmi handle
  4035. *
  4036. * Return: 0 for success or error code
  4037. */
  4038. QDF_STATUS
  4039. send_nf_dbr_dbm_info_get_cmd_non_tlv(wmi_unified_t wmi_handle)
  4040. {
  4041. wmi_buf_t wmibuf;
  4042. wmibuf = wmi_buf_alloc(wmi_handle, 0);
  4043. if (wmibuf == NULL)
  4044. return QDF_STATUS_E_NOMEM;
  4045. return wmi_unified_cmd_send(wmi_handle, wmibuf, 0,
  4046. WMI_PDEV_GET_NFCAL_POWER_CMDID);
  4047. }
  4048. /**
  4049. * send_packet_power_info_get_cmd_non_tlv() - send request to get packet power
  4050. * info to fw
  4051. * @wmi_handle: wmi handle
  4052. * @param: pointer to hold packet power info param
  4053. *
  4054. * Return: 0 for success or error code
  4055. */
  4056. QDF_STATUS
  4057. send_packet_power_info_get_cmd_non_tlv(wmi_unified_t wmi_handle,
  4058. struct packet_power_info_params *param)
  4059. {
  4060. wmi_pdev_get_tpc_cmd *cmd;
  4061. wmi_buf_t wmibuf;
  4062. u_int32_t len = sizeof(wmi_pdev_get_tpc_cmd);
  4063. wmibuf = wmi_buf_alloc(wmi_handle, len);
  4064. if (wmibuf == NULL)
  4065. return QDF_STATUS_E_NOMEM;
  4066. cmd = (wmi_pdev_get_tpc_cmd *)wmi_buf_data(wmibuf);
  4067. cmd->rate_flags = param->rate_flags;
  4068. cmd->nss = param->nss;
  4069. cmd->preamble = param->preamble;
  4070. cmd->hw_rate = param->hw_rate;
  4071. cmd->rsvd = 0x0;
  4072. qdf_print("%s[%d] commandID %d, wmi_pdev_get_tpc_cmd=0x%x\n", __func__,
  4073. __LINE__, WMI_PDEV_GET_TPC_CMDID, *((u_int32_t *)cmd));
  4074. return wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  4075. WMI_PDEV_GET_TPC_CMDID);
  4076. }
  4077. /**
  4078. * send_gpio_config_cmd_non_tlv() - send gpio config to fw
  4079. * @wmi_handle: wmi handle
  4080. * @param: pointer to hold gpio config param
  4081. *
  4082. * Return: 0 for success or error code
  4083. */
  4084. QDF_STATUS
  4085. send_gpio_config_cmd_non_tlv(wmi_unified_t wmi_handle,
  4086. struct gpio_config_params *param)
  4087. {
  4088. wmi_gpio_config_cmd *cmd;
  4089. wmi_buf_t wmibuf;
  4090. u_int32_t len = sizeof(wmi_gpio_config_cmd);
  4091. /* Sanity Checks */
  4092. if (param->pull_type > WMI_GPIO_PULL_DOWN ||
  4093. param->intr_mode > WMI_GPIO_INTTYPE_LEVEL_HIGH) {
  4094. return QDF_STATUS_E_FAILURE;
  4095. }
  4096. wmibuf = wmi_buf_alloc(wmi_handle, len);
  4097. if (wmibuf == NULL)
  4098. return QDF_STATUS_E_FAILURE;
  4099. cmd = (wmi_gpio_config_cmd *)wmi_buf_data(wmibuf);
  4100. cmd->gpio_num = param->gpio_num;
  4101. cmd->input = param->input;
  4102. cmd->pull_type = param->pull_type;
  4103. cmd->intr_mode = param->intr_mode;
  4104. return wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  4105. WMI_GPIO_CONFIG_CMDID);
  4106. }
  4107. /**
  4108. * send_gpio_output_cmd_non_tlv() - send gpio output to fw
  4109. * @wmi_handle: wmi handle
  4110. * @param: pointer to hold gpio output param
  4111. *
  4112. * Return: 0 for success or error code
  4113. */
  4114. QDF_STATUS
  4115. send_gpio_output_cmd_non_tlv(wmi_unified_t wmi_handle,
  4116. struct gpio_output_params *param)
  4117. {
  4118. wmi_gpio_output_cmd *cmd;
  4119. wmi_buf_t wmibuf;
  4120. u_int32_t len = sizeof(wmi_gpio_output_cmd);
  4121. wmibuf = wmi_buf_alloc(wmi_handle, len);
  4122. if (wmibuf == NULL)
  4123. return QDF_STATUS_E_FAILURE;
  4124. cmd = (wmi_gpio_output_cmd *)wmi_buf_data(wmibuf);
  4125. cmd->gpio_num = param->gpio_num;
  4126. cmd->set = param->set;
  4127. return wmi_unified_cmd_send(wmi_handle, wmibuf, len,
  4128. WMI_GPIO_OUTPUT_CMDID);
  4129. }
  4130. /*
  4131. * send_rtt_meas_req_test_cmd_non_tlv() - send rtt meas req test cmd to fw
  4132. * @wmi_handle: wmi handle
  4133. * @param: pointer to hold rtt meas req test param
  4134. *
  4135. * Return: 0 for success or error code
  4136. */
  4137. QDF_STATUS
  4138. send_rtt_meas_req_test_cmd_non_tlv(wmi_unified_t wmi_handle,
  4139. struct rtt_meas_req_test_params *param)
  4140. {
  4141. wmi_buf_t buf;
  4142. u_int8_t *p;
  4143. int ret;
  4144. u_int16_t len;
  4145. wmi_rtt_measreq_head *head;
  4146. wmi_rtt_measreq_body *body;
  4147. wmi_channel *w_chan;
  4148. qdf_print("%s: The request ID is: %d\n", __func__, param->req_id);
  4149. len = sizeof(wmi_rtt_measreq_head) + param->req_num_req *
  4150. sizeof(wmi_rtt_measreq_body);
  4151. buf = wmi_buf_alloc(wmi_handle, len);
  4152. if (!buf) {
  4153. qdf_print("No WMI resource!");
  4154. return QDF_STATUS_E_NOMEM;
  4155. }
  4156. p = (u_int8_t *) wmi_buf_data(buf);
  4157. qdf_mem_set(p, len, 0);
  4158. head = (wmi_rtt_measreq_head *) p;
  4159. WMI_RTT_REQ_ID_SET(head->req_id, param->req_id);
  4160. WMI_RTT_SPS_SET(head->req_id, 1);
  4161. WMI_RTT_NUM_STA_SET(head->sta_num, param->req_num_req);
  4162. body = &(head->body[0]);
  4163. WMI_RTT_VDEV_ID_SET(body->measure_info, 0);
  4164. WMI_RTT_TIMEOUT_SET(body->measure_info, 100);
  4165. WMI_RTT_REPORT_TYPE_SET(body->measure_info, param->req_report_type);
  4166. WMI_RTT_FRAME_TYPE_SET(body->control_flag, param->req_frame_type);
  4167. WMI_RTT_TX_CHAIN_SET(body->control_flag, 001);
  4168. WMI_RTT_QCA_PEER_SET(body->control_flag, 1);
  4169. if (param->req_preamble == WMI_RTT_PREAM_LEGACY)
  4170. WMI_RTT_MCS_SET(body->control_flag, 3);
  4171. else
  4172. WMI_RTT_MCS_SET(body->control_flag, 0);
  4173. WMI_RTT_RETRIES_SET(body->control_flag, 1);
  4174. /*
  4175. qdf_mem_copy(peer, param->mac_addr, 6);
  4176. qdf_print("The mac_addr is"
  4177. " %.2x:%.2x:%.2x:%.2x:%.2x:%.2x extra=%d\n",
  4178. peer[0], peer[1], peer[2],
  4179. peer[3], peer[4], peer[5], param->extra);
  4180. */
  4181. /* start from here, embed the first req in each RTT measurement
  4182. * Command */
  4183. /*peer[5] = 0x12;
  4184. peer[4] = 0x90;
  4185. peer[3] = 0x78;
  4186. peer[2] = 0x56;
  4187. peer[1] = 0x34;
  4188. peer[0] = 0x12;
  4189. >---*/
  4190. head->channel.mhz = param->channel.mhz;
  4191. head->channel.band_center_freq1 = param->channel.cfreq1;
  4192. head->channel.band_center_freq2 = param->channel.cfreq2;
  4193. w_chan = (wmi_channel *)&head->channel;
  4194. WMI_SET_CHANNEL_MODE(w_chan, param->channel.phy_mode);
  4195. WMI_SET_CHANNEL_MIN_POWER(w_chan, param->channel.minpower);
  4196. WMI_SET_CHANNEL_MAX_POWER(w_chan, param->channel.maxpower);
  4197. WMI_SET_CHANNEL_REG_POWER(w_chan, param->channel.maxregpower);
  4198. WMI_SET_CHANNEL_ANTENNA_MAX(w_chan, param->channel.antennamax);
  4199. WMI_SET_CHANNEL_REG_CLASSID(w_chan, param->channel.reg_class_id);
  4200. WMI_CHAR_ARRAY_TO_MAC_ADDR(((u_int8_t *)param->peer), &body->dest_mac);
  4201. WMI_CHAR_ARRAY_TO_MAC_ADDR(((u_int8_t *)param->peer),
  4202. &body->spoof_bssid);
  4203. WMI_RTT_BW_SET(body->control_flag, param->req_bw);
  4204. WMI_RTT_PREAMBLE_SET(body->control_flag, param->req_preamble);
  4205. WMI_RTT_MEAS_NUM_SET(body->measure_info, param->num_measurements);
  4206. body->measure_params_1 = 0;
  4207. body->measure_params_2 = 0;
  4208. WMI_RTT_ASAP_MODE_SET(body->measure_params_1, param->asap_mode);
  4209. WMI_RTT_LCI_REQ_SET(body->measure_params_1, param->lci_requested);
  4210. WMI_RTT_LOC_CIV_REQ_SET(body->measure_params_1,
  4211. param->loc_civ_requested);
  4212. WMI_RTT_NUM_BURST_EXP_SET(body->measure_params_1, 0);
  4213. WMI_RTT_BURST_DUR_SET(body->measure_params_1, 15);
  4214. WMI_RTT_BURST_PERIOD_SET(body->measure_params_1, 0);
  4215. WMI_RTT_TSF_DELTA_VALID_SET(body->measure_params_1, 1);
  4216. WMI_RTT_TSF_DELTA_SET(body->measure_params_2, 0);
  4217. /** other requests are same with first request */
  4218. p = (u_int8_t *) body;
  4219. while (--param->req_num_req) {
  4220. body++;
  4221. qdf_mem_copy(body, p, sizeof(wmi_rtt_measreq_body));
  4222. }
  4223. ret = wmi_unified_cmd_send(wmi_handle, buf, len, WMI_RTT_MEASREQ_CMDID);
  4224. qdf_print("send rtt cmd to FW with length %d and return %d\n",
  4225. len, ret);
  4226. return QDF_STATUS_SUCCESS;
  4227. }
  4228. /**
  4229. * send_rtt_meas_req_cmd_non_tlv() - send rtt meas req cmd to fw
  4230. * @wmi_handle: wmi handle
  4231. * @param: pointer to hold rtt meas req param
  4232. *
  4233. * Return: 0 for success or error code
  4234. */
  4235. QDF_STATUS
  4236. send_rtt_meas_req_cmd_non_tlv(wmi_unified_t wmi_handle,
  4237. struct rtt_meas_req_params *param)
  4238. {
  4239. wmi_buf_t buf;
  4240. uint8_t *p;
  4241. int ret;
  4242. uint16_t len;
  4243. uint8_t peer[6];
  4244. uint8_t spoof[6];
  4245. wmi_rtt_measreq_head *head;
  4246. wmi_rtt_measreq_body *body;
  4247. int req_frame_type, req_preamble;
  4248. wmi_channel *w_chan;
  4249. /* Temporarily, hardcoding peer mac address for test purpose will be
  4250. * removed once RTT host has been developed for even req_id, like
  4251. * 0, 2, 4, there is no channel_swicth for odd req_id, like 1, 3 , 5,
  4252. * there is channel switch currently, for both cases, we have 3 req in
  4253. * each command please change here if you only have one (or just let
  4254. * it be). Even == HC, odd == OC.
  4255. */
  4256. if (!(param->req_id & 0x1)) {
  4257. len = sizeof(wmi_rtt_measreq_head);
  4258. /* + 2 * sizeof(wmi_rtt_measreq_body);*/
  4259. } else {
  4260. len = sizeof(wmi_rtt_measreq_head);
  4261. /* + 2 * sizeof(wmi_rtt_measreq_body);*/
  4262. }
  4263. buf = wmi_buf_alloc(wmi_handle, len);
  4264. if (!buf) {
  4265. qdf_print("No WMI resource!");
  4266. return QDF_STATUS_E_FAILURE;
  4267. }
  4268. p = (uint8_t *) wmi_buf_data(buf);
  4269. qdf_mem_set(p, len, 0);
  4270. /* encode header */
  4271. head = (wmi_rtt_measreq_head *) p;
  4272. /* head->req_id = req_id;*/
  4273. WMI_RTT_REQ_ID_SET(head->req_id, param->req_id);
  4274. /* WMI_RTT_SPS_SET(head->req_id, 1);*/
  4275. if (!(param->req_id & 0x1)) { /*even req id */
  4276. #ifndef RTT_TEST
  4277. /* we actually only have 3 sta to measure
  4278. this is used to test over limit request protection
  4279. XIN:WMI_RTT_NUM_STA_SET(head->sta_num, 5);*/
  4280. #else
  4281. /* XIN:WMI_RTT_NUM_STA_SET(head->sta_num, 2);*/
  4282. WMI_RTT_NUM_STA_SET(head->sta_num, 1);
  4283. #endif
  4284. WMI_RTT_NUM_STA_SET(head->sta_num, 1);
  4285. } else { /* odd req id */
  4286. /* XIN:WMI_RTT_NUM_STA_SET(head->sta_num, 3); */
  4287. WMI_RTT_NUM_STA_SET(head->sta_num, 1);
  4288. }
  4289. req_frame_type = RTT_MEAS_FRAME_NULL;
  4290. /* MS(extra, RTT_REQ_FRAME_TYPE);*/
  4291. /* req_bw = //MS(extra, RTT_REQ_BW);*/
  4292. req_preamble = WMI_RTT_PREAM_LEGACY;/*MS(extra, RTT_REQ_PREAMBLE);*/
  4293. /*encode common parts for each RTT measurement command body
  4294. The value here can be overwrite in following each req hardcoding */
  4295. body = &(head->body[0]);
  4296. WMI_RTT_VDEV_ID_SET(body->measure_info, param->vdev_id);
  4297. WMI_RTT_TIMEOUT_SET(body->measure_info, RTT_TIMEOUT_MS);
  4298. WMI_RTT_REPORT_TYPE_SET(body->measure_info, 1);
  4299. WMI_RTT_FRAME_TYPE_SET(body->control_flag, req_frame_type);
  4300. WMI_RTT_TX_CHAIN_SET(body->control_flag, 001);
  4301. WMI_RTT_QCA_PEER_SET(body->control_flag, 1);
  4302. if (req_preamble == WMI_RTT_PREAM_LEGACY)
  4303. WMI_RTT_MCS_SET(body->control_flag, 3);
  4304. else
  4305. WMI_RTT_MCS_SET(body->control_flag, 0);
  4306. WMI_RTT_RETRIES_SET(body->control_flag, 1);
  4307. if (!(param->req_id & 0x1)) { /* even time */
  4308. qdf_mem_copy(peer, param->sta_mac_addr, 6);
  4309. } else { /* odd time */
  4310. qdf_mem_copy(peer, param->sta_mac_addr, 6);
  4311. }
  4312. head->channel.mhz = param->channel.mhz;
  4313. head->channel.band_center_freq1 = param->channel.cfreq1;
  4314. head->channel.band_center_freq2 = param->channel.cfreq2;
  4315. w_chan = (wmi_channel *)&head->channel;
  4316. WMI_SET_CHANNEL_MAX_POWER(w_chan, param->channel.phy_mode);
  4317. WMI_SET_CHANNEL_MIN_POWER(w_chan, param->channel.minpower);
  4318. WMI_SET_CHANNEL_MAX_POWER(w_chan, param->channel.maxpower);
  4319. WMI_SET_CHANNEL_REG_POWER(w_chan, param->channel.maxregpower);
  4320. WMI_SET_CHANNEL_ANTENNA_MAX(w_chan, param->channel.antennamax);
  4321. WMI_SET_CHANNEL_REG_CLASSID(w_chan, param->channel.reg_class_id);
  4322. if (param->is_mode_na)
  4323. WMI_SET_CHANNEL_MODE(w_chan, MODE_11NG_HT20);
  4324. else if (param->is_mode_ac)
  4325. WMI_SET_CHANNEL_MODE(w_chan, MODE_11NA_HT20);
  4326. if (param->channel.dfs_set)
  4327. WMI_SET_CHANNEL_FLAG(w_chan, WMI_CHAN_FLAG_DFS);
  4328. WMI_CHAR_ARRAY_TO_MAC_ADDR(((uint8_t *)peer), &body->dest_mac);
  4329. qdf_mem_set(spoof, IEEE80211_ADDR_LEN, 0);
  4330. WMI_CHAR_ARRAY_TO_MAC_ADDR(((uint8_t *)param->spoof_mac_addr),
  4331. &body->spoof_bssid);
  4332. /** embedded varing part of each request
  4333. set Preamble, BW, measurement times */
  4334. if (param->is_bw_20)
  4335. WMI_RTT_BW_SET(body->control_flag, WMI_RTT_BW_20);
  4336. else if (param->is_bw_40)
  4337. WMI_RTT_BW_SET(body->control_flag, WMI_RTT_BW_40);
  4338. else if (param->is_bw_80)
  4339. WMI_RTT_BW_SET(body->control_flag, WMI_RTT_BW_80);
  4340. else
  4341. WMI_RTT_BW_SET(body->control_flag, WMI_RTT_BW_20);
  4342. WMI_RTT_PREAMBLE_SET(body->control_flag, req_preamble);
  4343. WMI_RTT_MEAS_NUM_SET(body->measure_info, param->num_probe_rqst);
  4344. ret = wmi_unified_cmd_send(wmi_handle, buf, len, WMI_RTT_MEASREQ_CMDID);
  4345. qdf_print("send rtt cmd to FW with length %d and return %d\n",
  4346. len, ret);
  4347. return ret;
  4348. }
  4349. /**
  4350. * send_rtt_keepalive_req_cmd_non_tlv() - send rtt keepalive req cmd to fw
  4351. * @wmi_handle: wmi handle
  4352. * @param: pointer to hold rtt keepalive req param
  4353. *
  4354. * Return: 0 for success or error code
  4355. */
  4356. QDF_STATUS
  4357. send_rtt_keepalive_req_cmd_non_tlv(wmi_unified_t wmi_handle,
  4358. struct rtt_keepalive_req_params *param)
  4359. {
  4360. wmi_buf_t buf;
  4361. wmi_rtt_keepalive_cmd *cmd;
  4362. int ret;
  4363. uint16_t len;
  4364. uint8_t *ptr;
  4365. len = sizeof(wmi_rtt_keepalive_cmd);
  4366. buf = wmi_buf_alloc(wmi_handle, len);
  4367. if (!buf) {
  4368. qdf_print("No WMI resource\n");
  4369. return QDF_STATUS_E_FAILURE;
  4370. }
  4371. ptr = (uint8_t *)wmi_buf_data(buf);
  4372. OS_MEMSET(ptr, 0, len);
  4373. cmd = (wmi_rtt_keepalive_cmd *)wmi_buf_data(buf);
  4374. WMI_RTT_REQ_ID_SET(cmd->req_id, param->req_id);
  4375. WMI_RTT_KEEPALIVE_ACTION_SET(cmd->req_id, param->stop);
  4376. WMI_RTT_VDEV_ID_SET(cmd->probe_info, param->vdev_id);
  4377. /* 3ms probe interval by default */
  4378. WMI_RTT_KEEPALIVE_PERIOD_SET(cmd->probe_info, 3);
  4379. /* max retry of 50 by default */
  4380. WMI_RTT_TIMEOUT_SET(cmd->probe_info, 20);
  4381. /* set frame type */
  4382. WMI_RTT_FRAME_TYPE_SET(cmd->control_flag, RTT_MEAS_FRAME_KEEPALIVE);
  4383. WMI_CHAR_ARRAY_TO_MAC_ADDR(param->macaddr, &cmd->sta_mac);
  4384. ret = wmi_unified_cmd_send(wmi_handle, buf, len,
  4385. WMI_RTT_KEEPALIVE_CMDID);
  4386. qdf_print("send rtt keepalive cmd to FW with length %d and return %d\n"
  4387. , len, ret);
  4388. param->req_id++;
  4389. return QDF_STATUS_SUCCESS;
  4390. }
  4391. /**
  4392. * send_lci_set_cmd_non_tlv() - send lci cmd to fw
  4393. * @wmi_handle: wmi handle
  4394. * @param: pointer to hold lci param
  4395. *
  4396. * Return: 0 for success or error code
  4397. */
  4398. QDF_STATUS
  4399. send_lci_set_cmd_non_tlv(wmi_unified_t wmi_handle,
  4400. struct lci_set_params *param)
  4401. {
  4402. wmi_buf_t buf;
  4403. uint8_t *p;
  4404. wmi_oem_measreq_head *head;
  4405. int len;
  4406. int colocated_bss_len = 0;
  4407. wmi_rtt_lci_cfg_head *rtt_req;
  4408. rtt_req = (wmi_rtt_lci_cfg_head *) param->lci_data;
  4409. len = param->msg_len;
  4410. /* colocated_bss[1] contains num of vaps */
  4411. /* Provide colocated bssid subIE only when there are 2 vaps or more */
  4412. if (param->colocated_bss[1] > 1) {
  4413. qdf_print("%s: Adding %d co-located BSSIDs to LCI data\n",
  4414. __func__, param->colocated_bss[1]);
  4415. /* Convert num_vaps to octets:
  4416. 6*Num_of_vap + 1 (Max BSSID Indicator field) */
  4417. param->colocated_bss[1] =
  4418. (param->colocated_bss[1]*IEEE80211_ADDR_LEN)+1;
  4419. colocated_bss_len = param->colocated_bss[1]+2;
  4420. qdf_mem_copy(rtt_req->colocated_bssids_info,
  4421. param->colocated_bss,
  4422. colocated_bss_len);
  4423. rtt_req->co_located_bssid_len = colocated_bss_len;
  4424. qdf_print("%s: co_located_bssid_len: %d\n", __func__,
  4425. param->colocated_bss[1]+2);
  4426. } else {
  4427. qdf_print("No co-located BSSID was added to LCI data\n");
  4428. }
  4429. buf = wmi_buf_alloc(wmi_handle, len);
  4430. if (!buf) {
  4431. qdf_print("No WMI resource!");
  4432. return QDF_STATUS_E_FAILURE;
  4433. }
  4434. p = (uint8_t *) wmi_buf_data(buf);
  4435. qdf_mem_set(p, len, 0);
  4436. head = (wmi_oem_measreq_head *)p;
  4437. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(head, param->lci_data, len);
  4438. if (wmi_unified_cmd_send(wmi_handle, buf, len, WMI_OEM_REQ_CMDID))
  4439. return QDF_STATUS_E_FAILURE;
  4440. /* Save LCI data in host buffer */
  4441. {
  4442. param->latitude_unc = WMI_RTT_LCI_LAT_UNC_GET(
  4443. rtt_req->lci_cfg_param_info);
  4444. param->latitude_0_1 = ((uint32_t)(rtt_req->latitude & 0x3));
  4445. param->latitude_2_33 = (uint32_t)
  4446. (((uint64_t)(rtt_req->latitude)) >> 2);
  4447. param->longitude_unc =
  4448. WMI_RTT_LCI_LON_UNC_GET(rtt_req->lci_cfg_param_info);
  4449. param->longitude_0_1 = ((uint32_t)(rtt_req->longitude & 0x3));
  4450. param->longitude_2_33 =
  4451. (uint32_t)(((uint64_t)(rtt_req->longitude)) >> 2);
  4452. param->altitude_type =
  4453. WMI_RTT_LCI_ALT_TYPE_GET(rtt_req->altitude_info);
  4454. param->altitude_unc_0_3 =
  4455. (WMI_RTT_LCI_ALT_UNC_GET(rtt_req->altitude_info) & 0xF);
  4456. param->altitude_unc_4_5 =
  4457. ((WMI_RTT_LCI_ALT_UNC_GET(rtt_req->altitude_info) >> 4) &
  4458. 0x3);
  4459. param->altitude = (rtt_req->altitude & RTT_LCI_ALTITUDE_MASK);
  4460. param->datum =
  4461. WMI_RTT_LCI_DATUM_GET(rtt_req->lci_cfg_param_info);
  4462. param->reg_loc_agmt =
  4463. WMI_RTT_LCI_REG_LOC_AGMT_GET(rtt_req->lci_cfg_param_info);
  4464. param->reg_loc_dse =
  4465. WMI_RTT_LCI_REG_LOC_DSE_GET(rtt_req->lci_cfg_param_info);
  4466. param->dep_sta =
  4467. WMI_RTT_LCI_DEP_STA_GET(rtt_req->lci_cfg_param_info);
  4468. param->version =
  4469. WMI_RTT_LCI_VERSION_GET(rtt_req->lci_cfg_param_info);
  4470. }
  4471. return QDF_STATUS_SUCCESS;
  4472. }
  4473. /**
  4474. * send_lcr_set_cmd_non_tlv() - send lcr cmd to fw
  4475. * @wmi_handle: wmi handle
  4476. * @param: pointer to hold lcr param
  4477. *
  4478. * Return: 0 for success or error code
  4479. */
  4480. QDF_STATUS
  4481. send_lcr_set_cmd_non_tlv(wmi_unified_t wmi_handle,
  4482. struct lcr_set_params *param)
  4483. {
  4484. wmi_buf_t buf;
  4485. uint8_t *p;
  4486. wmi_oem_measreq_head *head;
  4487. int len;
  4488. len = param->msg_len;
  4489. buf = wmi_buf_alloc(wmi_handle, len);
  4490. if (!buf) {
  4491. qdf_print("No WMI resource!");
  4492. return QDF_STATUS_E_FAILURE;
  4493. }
  4494. p = (uint8_t *) wmi_buf_data(buf);
  4495. qdf_mem_set(p, len, 0);
  4496. head = (wmi_oem_measreq_head *)p;
  4497. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(head, param->lcr_data, len);
  4498. if (wmi_unified_cmd_send(wmi_handle, buf, len, WMI_OEM_REQ_CMDID))
  4499. return QDF_STATUS_E_FAILURE;
  4500. return QDF_STATUS_SUCCESS;
  4501. }
  4502. /**
  4503. * send_start_oem_data_cmd_non_tlv() - send oem req cmd to fw
  4504. * @wmi_handle: wmi handle
  4505. * @param: pointer to hold oem req param
  4506. */
  4507. QDF_STATUS
  4508. send_start_oem_data_cmd_non_tlv(wmi_unified_t wmi_handle,
  4509. uint32_t data_len,
  4510. uint8_t *data)
  4511. {
  4512. wmi_buf_t buf;
  4513. uint8_t *p;
  4514. wmi_oem_measreq_head *head;
  4515. buf = wmi_buf_alloc(wmi_handle, data_len);
  4516. if (!buf) {
  4517. qdf_print("%s: No WMI resource!\n", __func__);
  4518. return QDF_STATUS_E_FAILURE;
  4519. }
  4520. p = (uint8_t *) wmi_buf_data(buf);
  4521. qdf_mem_set(p, data_len, 0);
  4522. head = (wmi_oem_measreq_head *)p;
  4523. WMI_HOST_IF_MSG_COPY_CHAR_ARRAY(head, data, data_len);
  4524. if (wmi_unified_cmd_send(wmi_handle, buf,
  4525. data_len, WMI_OEM_REQ_CMDID)) {
  4526. qdf_print("%s: ERROR: Host unable to send LOWI request to FW\n",
  4527. __func__);
  4528. wmi_buf_free(buf);
  4529. return QDF_STATUS_E_FAILURE;
  4530. }
  4531. return QDF_STATUS_SUCCESS;
  4532. }
  4533. /**
  4534. * send_get_user_position_cmd_non_tlv() - send cmd get user position from fw
  4535. * @wmi_handle: wmi handle
  4536. * @value: user pos value
  4537. *
  4538. * Return: 0 for success or error code
  4539. */
  4540. QDF_STATUS
  4541. send_get_user_position_cmd_non_tlv(wmi_unified_t wmi_handle, uint32_t value)
  4542. {
  4543. wmi_buf_t buf;
  4544. wmi_peer_gid_userpos_list_cmd *cmd;
  4545. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_peer_gid_userpos_list_cmd));
  4546. if (!buf) {
  4547. qdf_print("No WMI resource!");
  4548. return QDF_STATUS_E_FAILURE;
  4549. }
  4550. qdf_nbuf_put_tail(buf, sizeof(wmi_peer_gid_userpos_list_cmd));
  4551. cmd = (wmi_peer_gid_userpos_list_cmd *)(wmi_buf_data(buf));
  4552. cmd->aid = value;
  4553. if (wmi_unified_cmd_send(wmi_handle, buf,
  4554. sizeof(wmi_peer_gid_userpos_list_cmd),
  4555. WMI_PEER_GID_USERPOS_LIST_CMDID)) {
  4556. wmi_buf_free(buf);
  4557. return QDF_STATUS_E_FAILURE;
  4558. }
  4559. return QDF_STATUS_SUCCESS;
  4560. }
  4561. /**
  4562. * send_reset_peer_mumimo_tx_count_cmd_non_tlv() - send mumimo reset tx count fw
  4563. * @wmi_handle: wmi handle
  4564. * @value: reset tx count
  4565. *
  4566. * Return: 0 for success or error code
  4567. */
  4568. QDF_STATUS
  4569. send_reset_peer_mumimo_tx_count_cmd_non_tlv(wmi_unified_t wmi_handle,
  4570. uint32_t value)
  4571. {
  4572. wmi_buf_t buf;
  4573. wmi_peer_txmu_rstcnt_cmd *cmd;
  4574. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_peer_txmu_rstcnt_cmd));
  4575. if (!buf) {
  4576. qdf_print("No WMI resource!");
  4577. return QDF_STATUS_E_FAILURE;
  4578. }
  4579. qdf_nbuf_put_tail(buf, sizeof(wmi_peer_txmu_rstcnt_cmd));
  4580. cmd = (wmi_peer_txmu_rstcnt_cmd *)(wmi_buf_data(buf));
  4581. cmd->aid = value;
  4582. if (wmi_unified_cmd_send(wmi_handle, buf,
  4583. sizeof(wmi_peer_txmu_rstcnt_cmd),
  4584. WMI_PEER_TX_MU_TXMIT_RSTCNT_CMDID)) {
  4585. wmi_buf_free(buf);
  4586. return QDF_STATUS_E_FAILURE;
  4587. }
  4588. return QDF_STATUS_SUCCESS;
  4589. }
  4590. /**
  4591. * send_get_peer_mumimo_tx_count_cmd_non_tlv() - send cmd to get mumimo tx count from fw
  4592. * @wmi_handle: wmi handle
  4593. *
  4594. * Return: 0 for success or error code
  4595. */
  4596. QDF_STATUS
  4597. send_get_peer_mumimo_tx_count_cmd_non_tlv(wmi_unified_t wmi_handle,
  4598. uint32_t value)
  4599. {
  4600. wmi_buf_t buf;
  4601. wmi_peer_txmu_cnt_cmd *cmd;
  4602. buf = wmi_buf_alloc(wmi_handle, sizeof(wmi_peer_txmu_cnt_cmd));
  4603. if (!buf) {
  4604. qdf_print("No WMI resource!");
  4605. return QDF_STATUS_E_FAILURE;
  4606. }
  4607. qdf_nbuf_put_tail(buf, sizeof(wmi_peer_txmu_cnt_cmd));
  4608. cmd = (wmi_peer_txmu_cnt_cmd *)(wmi_buf_data(buf));
  4609. cmd->aid = value;
  4610. if (wmi_unified_cmd_send(wmi_handle, buf,
  4611. sizeof(wmi_peer_txmu_cnt_cmd),
  4612. WMI_PEER_TX_MU_TXMIT_COUNT_CMDID)) {
  4613. wmi_buf_free(buf);
  4614. return QDF_STATUS_E_FAILURE;
  4615. }
  4616. return QDF_STATUS_SUCCESS;
  4617. }
  4618. /**
  4619. * send_pdev_caldata_version_check_cmd_non_tlv() - send caldata check cmd to fw
  4620. * @wmi_handle: wmi handle
  4621. * @param: reserved param
  4622. *
  4623. * Return: 0 for success or error code
  4624. */
  4625. QDF_STATUS
  4626. send_pdev_caldata_version_check_cmd_non_tlv(wmi_unified_t wmi_handle,
  4627. uint32_t param)
  4628. {
  4629. wmi_pdev_check_cal_version_cmd *cmd;
  4630. wmi_buf_t buf;
  4631. int32_t len = sizeof(wmi_pdev_check_cal_version_cmd);
  4632. buf = wmi_buf_alloc(wmi_handle, len);
  4633. if (!buf) {
  4634. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  4635. return QDF_STATUS_E_FAILURE;
  4636. }
  4637. cmd = (wmi_pdev_check_cal_version_cmd *)wmi_buf_data(buf);
  4638. cmd->reserved = param; /* set to 0x0 as expected from FW */
  4639. if (wmi_unified_cmd_send(wmi_handle, buf, len,
  4640. WMI_PDEV_CHECK_CAL_VERSION_CMDID)) {
  4641. wmi_buf_free(buf);
  4642. return QDF_STATUS_E_FAILURE;
  4643. }
  4644. return QDF_STATUS_SUCCESS;
  4645. }
  4646. /**
  4647. * send_btcoex_wlan_priority_cmd_non_tlv() - send btcoex wlan priority fw
  4648. * @wmi_handle: wmi handle
  4649. * @value: priority value
  4650. *
  4651. * Return: 0 for success or error code
  4652. */
  4653. QDF_STATUS
  4654. send_btcoex_wlan_priority_cmd_non_tlv(wmi_unified_t wmi_handle, int value)
  4655. {
  4656. wmi_buf_t buf;
  4657. wmi_btcoex_cfg_cmd *cmd;
  4658. int len = sizeof(wmi_btcoex_cfg_cmd);
  4659. buf = wmi_buf_alloc(wmi_handle, len);
  4660. if (!buf) {
  4661. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  4662. return QDF_STATUS_E_FAILURE;
  4663. }
  4664. cmd = (wmi_btcoex_cfg_cmd *) wmi_buf_data(buf);
  4665. cmd->btcoex_wlan_priority_bitmap = value;
  4666. if (wmi_unified_cmd_send(wmi_handle, buf, len, WMI_BTCOEX_CFG_CMDID)) {
  4667. wmi_buf_free(buf);
  4668. return QDF_STATUS_E_FAILURE;
  4669. }
  4670. return QDF_STATUS_SUCCESS;
  4671. }
  4672. /**
  4673. * wmi_copy_resource_config_non_tlv() - copy resource configuration function
  4674. * @param resource_cfg: pointer to resource configuration
  4675. * @param tgt_res_cfg: pointer to target resource configuration
  4676. *
  4677. * Return: None
  4678. */
  4679. static void wmi_copy_resource_config_non_tlv(wmi_resource_config *resource_cfg,
  4680. target_resource_config *tgt_res_cfg)
  4681. {
  4682. resource_cfg->num_vdevs = tgt_res_cfg->num_vdevs;
  4683. resource_cfg->num_peers = tgt_res_cfg->num_peers;
  4684. resource_cfg->num_active_peers = tgt_res_cfg->num_active_peers;
  4685. resource_cfg->num_offload_peers = tgt_res_cfg->num_offload_peers;
  4686. resource_cfg->num_offload_reorder_buffs =
  4687. tgt_res_cfg->num_offload_reorder_buffs;
  4688. resource_cfg->num_peer_keys = tgt_res_cfg->num_peer_keys;
  4689. resource_cfg->num_tids = tgt_res_cfg->num_tids;
  4690. resource_cfg->ast_skid_limit = tgt_res_cfg->ast_skid_limit;
  4691. resource_cfg->tx_chain_mask = tgt_res_cfg->tx_chain_mask;
  4692. resource_cfg->rx_chain_mask = tgt_res_cfg->rx_chain_mask;
  4693. resource_cfg->rx_timeout_pri[0] = tgt_res_cfg->rx_timeout_pri[0];
  4694. resource_cfg->rx_timeout_pri[1] = tgt_res_cfg->rx_timeout_pri[1];
  4695. resource_cfg->rx_timeout_pri[2] = tgt_res_cfg->rx_timeout_pri[2];
  4696. resource_cfg->rx_timeout_pri[3] = tgt_res_cfg->rx_timeout_pri[3];
  4697. resource_cfg->rx_decap_mode = tgt_res_cfg->rx_decap_mode;
  4698. resource_cfg->scan_max_pending_req = tgt_res_cfg->scan_max_pending_req;
  4699. resource_cfg->bmiss_offload_max_vdev =
  4700. tgt_res_cfg->bmiss_offload_max_vdev;
  4701. resource_cfg->roam_offload_max_vdev =
  4702. tgt_res_cfg->roam_offload_max_vdev;
  4703. resource_cfg->roam_offload_max_ap_profiles =
  4704. tgt_res_cfg->roam_offload_max_ap_profiles;
  4705. resource_cfg->num_mcast_groups = tgt_res_cfg->num_mcast_groups;
  4706. resource_cfg->num_mcast_table_elems =
  4707. tgt_res_cfg->num_mcast_table_elems;
  4708. resource_cfg->mcast2ucast_mode = tgt_res_cfg->mcast2ucast_mode;
  4709. resource_cfg->tx_dbg_log_size = tgt_res_cfg->tx_dbg_log_size;
  4710. resource_cfg->num_wds_entries = tgt_res_cfg->num_wds_entries;
  4711. resource_cfg->dma_burst_size = tgt_res_cfg->dma_burst_size;
  4712. resource_cfg->mac_aggr_delim = tgt_res_cfg->mac_aggr_delim;
  4713. resource_cfg->rx_skip_defrag_timeout_dup_detection_check =
  4714. tgt_res_cfg->rx_skip_defrag_timeout_dup_detection_check;
  4715. resource_cfg->vow_config = tgt_res_cfg->vow_config;
  4716. resource_cfg->gtk_offload_max_vdev = tgt_res_cfg->gtk_offload_max_vdev;
  4717. resource_cfg->num_msdu_desc = tgt_res_cfg->num_msdu_desc;
  4718. resource_cfg->max_frag_entries = tgt_res_cfg->max_frag_entries;
  4719. resource_cfg->max_peer_ext_stats = tgt_res_cfg->max_peer_ext_stats;
  4720. resource_cfg->smart_ant_cap = tgt_res_cfg->smart_ant_cap;
  4721. resource_cfg->BK_Minfree = tgt_res_cfg->BK_Minfree;
  4722. resource_cfg->BE_Minfree = tgt_res_cfg->BE_Minfree;
  4723. resource_cfg->VI_Minfree = tgt_res_cfg->VI_Minfree;
  4724. resource_cfg->VO_Minfree = tgt_res_cfg->VO_Minfree;
  4725. resource_cfg->rx_batchmode = tgt_res_cfg->rx_batchmode;
  4726. resource_cfg->tt_support = tgt_res_cfg->tt_support;
  4727. resource_cfg->atf_config = tgt_res_cfg->atf_config;
  4728. resource_cfg->iphdr_pad_config = tgt_res_cfg->iphdr_pad_config;
  4729. WMI_SET_QWRAP(resource_cfg, tgt_res_cfg->qwrap_config);
  4730. WMI_SET_ALLOC_FRAG(resource_cfg,
  4731. tgt_res_cfg->alloc_frag_desc_for_data_pkt);
  4732. }
  4733. /**
  4734. * init_cmd_send_non_tlv() - send initialization cmd to fw
  4735. * @wmi_handle: wmi handle
  4736. * @param tgt_res_cfg: pointer to target resource configuration
  4737. * @param num_mem_chunks: Number of memory chunks
  4738. * @param mem_chunks: pointer to target memory chunks
  4739. *
  4740. * Return: 0 for success or error code
  4741. */
  4742. static QDF_STATUS init_cmd_send_non_tlv(wmi_unified_t wmi_handle,
  4743. target_resource_config *tgt_res_cfg,
  4744. uint8_t num_mem_chunks, struct wmi_host_mem_chunk *mem_chunks)
  4745. {
  4746. wmi_buf_t buf;
  4747. wmi_init_cmd *cmd;
  4748. wlan_host_memory_chunk *host_mem_chunks;
  4749. uint32_t mem_chunk_len = 0;
  4750. uint16_t idx;
  4751. int len;
  4752. len = sizeof(*cmd);
  4753. mem_chunk_len = (sizeof(wlan_host_memory_chunk) * MAX_MEM_CHUNKS);
  4754. buf = wmi_buf_alloc(wmi_handle, len + mem_chunk_len);
  4755. if (!buf) {
  4756. qdf_print("%s: wmi_buf_alloc failed\n", __func__);
  4757. return QDF_STATUS_E_FAILURE;
  4758. }
  4759. cmd = (wmi_init_cmd *) wmi_buf_data(buf);
  4760. wmi_copy_resource_config_non_tlv(&cmd->resource_config, tgt_res_cfg);
  4761. host_mem_chunks = cmd->host_mem_chunks;
  4762. for (idx = 0; idx < num_mem_chunks; ++idx) {
  4763. host_mem_chunks[idx].ptr = mem_chunks[idx].paddr;
  4764. host_mem_chunks[idx].size = mem_chunks[idx].len;
  4765. host_mem_chunks[idx].req_id = mem_chunks[idx].req_id;
  4766. qdf_print("chunk %d len %d requested , ptr 0x%x\n",
  4767. idx, cmd->host_mem_chunks[idx].size,
  4768. cmd->host_mem_chunks[idx].ptr);
  4769. }
  4770. cmd->num_host_mem_chunks = num_mem_chunks;
  4771. if (num_mem_chunks > 1)
  4772. len += ((num_mem_chunks-1) * sizeof(wlan_host_memory_chunk));
  4773. if (wmi_unified_cmd_send(wmi_handle, buf, len, WMI_INIT_CMDID) < 0) {
  4774. wmi_buf_free(buf);
  4775. return QDF_STATUS_E_FAILURE;
  4776. }
  4777. return QDF_STATUS_SUCCESS;
  4778. }
  4779. /**
  4780. * send_ext_resource_config_non_tlv() - send extended resource configuration
  4781. * @wmi_handle: wmi handle
  4782. * @param ext_cfg: pointer to extended resource configuration
  4783. *
  4784. * Return: 0 for success or error code
  4785. */
  4786. static QDF_STATUS send_ext_resource_config_non_tlv(wmi_unified_t wmi_handle,
  4787. wmi_host_ext_resource_config *ext_cfg)
  4788. {
  4789. wmi_buf_t buf;
  4790. int len = 0;
  4791. wmi_ext_resource_config *cmd_cfg;
  4792. #define PAD_LENGTH 100
  4793. buf = wmi_buf_alloc(wmi_handle,
  4794. len + (sizeof(wmi_ext_resource_config) + PAD_LENGTH));
  4795. if (!buf) {
  4796. qdf_print("%s:wmi_buf_alloc failed\n", __func__);
  4797. return QDF_STATUS_E_FAILURE;
  4798. }
  4799. cmd_cfg = (wmi_ext_resource_config *)wmi_buf_data(buf);
  4800. qdf_mem_copy(cmd_cfg, ext_cfg, sizeof(wmi_ext_resource_config));
  4801. qdf_print("\nSending Ext resource cfg: HOST PLATFORM as %d\n"
  4802. "fw_feature_bitmap as %x to TGT\n",
  4803. cmd_cfg->host_platform_config,
  4804. cmd_cfg->fw_feature_bitmap);
  4805. if (wmi_unified_cmd_send(wmi_handle, buf,
  4806. sizeof(wmi_ext_resource_config),
  4807. WMI_EXT_RESOURCE_CFG_CMDID) < 0) {
  4808. wmi_buf_free(buf);
  4809. return QDF_STATUS_E_FAILURE;
  4810. }
  4811. return QDF_STATUS_SUCCESS;
  4812. }
  4813. /**
  4814. * save_service_bitmap_non_tlv() - save service bitmap
  4815. * @wmi_handle: wmi handle
  4816. * @param evt_buf: pointer to event buffer
  4817. *
  4818. * Return: None
  4819. */
  4820. static void save_service_bitmap_non_tlv(wmi_unified_t wmi_handle, void *evt_buf)
  4821. {
  4822. wmi_service_ready_event *ev;
  4823. ev = (wmi_service_ready_event *) evt_buf;
  4824. qdf_mem_copy(wmi_handle->wmi_service_bitmap, ev->wmi_service_bitmap,
  4825. (WMI_SERVICE_BM_SIZE * sizeof(uint32_t)));
  4826. }
  4827. /**
  4828. * is_service_enabled_non_tlv() - Check if service enabled
  4829. * @param wmi_handle: wmi handle
  4830. * @param service_id: service identifier
  4831. *
  4832. * Return: 1 enabled, 0 disabled
  4833. */
  4834. static bool is_service_enabled_non_tlv(wmi_unified_t wmi_handle,
  4835. uint32_t service_id)
  4836. {
  4837. return WMI_SERVICE_IS_ENABLED(wmi_handle->wmi_service_bitmap,
  4838. service_id);
  4839. }
  4840. /**
  4841. * extract_service_ready_non_tlv() - extract service ready event
  4842. * @wmi_handle: wmi handle
  4843. * @param evt_buf: pointer to received event buffer
  4844. * @param cap: pointer to hold target capability information extracted from even
  4845. *
  4846. * Return: 0 for success or error code
  4847. */
  4848. static QDF_STATUS extract_service_ready_non_tlv(wmi_unified_t wmi_handle,
  4849. void *evt_buf,
  4850. target_capability_info *cap)
  4851. {
  4852. wmi_service_ready_event *ev;
  4853. ev = (wmi_service_ready_event *) evt_buf;
  4854. cap->phy_capability = ev->phy_capability;
  4855. cap->max_frag_entry = ev->max_frag_entry;
  4856. cap->num_rf_chains = ev->num_rf_chains;
  4857. cap->ht_cap_info = ev->ht_cap_info;
  4858. cap->vht_cap_info = ev->vht_cap_info;
  4859. cap->vht_supp_mcs = ev->vht_supp_mcs;
  4860. cap->hw_min_tx_power = ev->hw_min_tx_power;
  4861. cap->hw_max_tx_power = ev->hw_max_tx_power;
  4862. cap->sys_cap_info = ev->sys_cap_info;
  4863. cap->min_pkt_size_enable = ev->min_pkt_size_enable;
  4864. cap->max_bcn_ie_size = ev->max_bcn_ie_size;
  4865. /* Following caps not recieved in older fw/hw
  4866. * Initialize it as zero(default). */
  4867. cap->max_num_scan_channels = 0;
  4868. cap->max_supported_macs = 0;
  4869. cap->wmi_fw_sub_feat_caps = 0;
  4870. cap->txrx_chainmask = 0;
  4871. cap->default_dbs_hw_mode_index = 0;
  4872. cap->num_msdu_desc = 0;
  4873. return QDF_STATUS_SUCCESS;
  4874. }
  4875. /**
  4876. * extract_fw_version_non_tlv() - extract fw version
  4877. * @wmi_handle: wmi handle
  4878. * @param evt_buf: pointer to event buffer
  4879. * @param fw_ver: Pointer to hold fw version
  4880. *
  4881. * Return: 0 for success or error code
  4882. */
  4883. QDF_STATUS extract_fw_version_non_tlv(wmi_unified_t wmi_handle,
  4884. void *evt_buf, struct wmi_host_fw_ver *fw_ver)
  4885. {
  4886. wmi_service_ready_event *ev;
  4887. ev = (wmi_service_ready_event *) evt_buf;
  4888. fw_ver->sw_version = ev->sw_version;
  4889. fw_ver->sw_version_1 = ev->sw_version_1;
  4890. return QDF_STATUS_SUCCESS;
  4891. }
  4892. /**
  4893. * extract_fw_abi_version_non_tlv() - extract fw abi version
  4894. * @wmi_handle: wmi handle
  4895. * @param evt_buf: Pointer to event buffer
  4896. * @param fw_ver: Pointer to hold fw abi version
  4897. *
  4898. * Return: 0 for success or error code
  4899. */
  4900. QDF_STATUS extract_fw_abi_version_non_tlv(wmi_unified_t wmi_handle,
  4901. void *evt_buf, struct wmi_host_fw_abi_ver *fw_ver)
  4902. {
  4903. wmi_ready_event *ev;
  4904. ev = (wmi_ready_event *) evt_buf;
  4905. fw_ver->sw_version = ev->sw_version;
  4906. fw_ver->abi_version = ev->abi_version;
  4907. return QDF_STATUS_SUCCESS;
  4908. }
  4909. /**
  4910. * extract_hal_reg_cap_non_tlv() - extract HAL registered capabilities
  4911. * @wmi_handle: wmi handle
  4912. * @param evt_buf: Pointer to event buffer
  4913. * @param cap: pointer to hold HAL reg capabilities
  4914. *
  4915. * Return: 0 for success or error code
  4916. */
  4917. static QDF_STATUS extract_hal_reg_cap_non_tlv(wmi_unified_t wmi_handle,
  4918. void *evt_buf,
  4919. TARGET_HAL_REG_CAPABILITIES *cap)
  4920. {
  4921. wmi_service_ready_event *ev;
  4922. ev = (wmi_service_ready_event *) evt_buf;
  4923. qdf_mem_copy(cap, &ev->hal_reg_capabilities,
  4924. sizeof(TARGET_HAL_REG_CAPABILITIES));
  4925. return QDF_STATUS_SUCCESS;
  4926. }
  4927. /**
  4928. * extract_host_mem_req_non_tlv() - Extract host memory request event
  4929. * @wmi_handle: wmi handle
  4930. * @param evt_buf: pointer to event buffer
  4931. * @param num_entries: pointer to hold number of entries requested
  4932. *
  4933. * Return: Number of entries requested
  4934. */
  4935. static host_mem_req *extract_host_mem_req_non_tlv(wmi_unified_t wmi_handle,
  4936. void *evt_buf, uint8_t *num_entries)
  4937. {
  4938. wmi_service_ready_event *ev;
  4939. ev = (wmi_service_ready_event *) evt_buf;
  4940. *num_entries = ev->num_mem_reqs;
  4941. return (host_mem_req *)ev->mem_reqs;
  4942. }
  4943. /**
  4944. * save_fw_version_in_service_ready_non_tlv() - Save fw version in service
  4945. * ready function
  4946. * @wmi_handle: wmi handle
  4947. * @param evt_buf: pointer to event buffer
  4948. *
  4949. * Return: 0 for success or error code
  4950. */
  4951. static QDF_STATUS save_fw_version_in_service_ready_non_tlv(
  4952. wmi_unified_t wmi_handle,
  4953. void *evt_buf)
  4954. {
  4955. /* Version check and exchange is not present in non-tlv implementation*/
  4956. return QDF_STATUS_SUCCESS;
  4957. }
  4958. /**
  4959. * ready_check_and_update_fw_version_non_tlv() - Ready and fw version check
  4960. * function
  4961. * @wmi_handle: wmi handle
  4962. * @param evt_buf: pointer to event buffer
  4963. *
  4964. * Return: 0 for success or error code
  4965. */
  4966. static QDF_STATUS ready_check_and_update_fw_version_non_tlv(
  4967. wmi_unified_t wmi_handle,
  4968. void *evt_buf)
  4969. {
  4970. /* Version check and exchange is not present in non-tlv implementation*/
  4971. return QDF_STATUS_SUCCESS;
  4972. }
  4973. /**
  4974. * ready_extract_init_status_non_tlv() - Extract init status from ready event
  4975. * @wmi_handle: wmi handle
  4976. * @param evt_buf: Pointer to event buffer
  4977. *
  4978. * Return: ready status
  4979. */
  4980. static uint32_t ready_extract_init_status_non_tlv(wmi_unified_t wmi_hdl,
  4981. void *evt_buf)
  4982. {
  4983. wmi_ready_event *ev = (wmi_ready_event *) evt_buf;
  4984. qdf_print("Version = %d %d status = %d\n", ev->sw_version,
  4985. ev->abi_version, ev->status);
  4986. return ev->status;
  4987. }
  4988. /**
  4989. * ready_extract_mac_addr_non_tlv() - extract mac address from ready event
  4990. * @wmi_handle: wmi handle
  4991. * @param evt_buf: pointer to event buffer
  4992. * @param macaddr: Pointer to hold MAC address
  4993. *
  4994. * Return: 0 for success or error code
  4995. */
  4996. static QDF_STATUS ready_extract_mac_addr_non_tlv(wmi_unified_t wmi_hdl,
  4997. void *evt_buf,
  4998. uint8_t *macaddr)
  4999. {
  5000. wmi_ready_event *ev = (wmi_ready_event *) evt_buf;
  5001. WMI_MAC_ADDR_TO_CHAR_ARRAY(&ev->mac_addr, macaddr);
  5002. return QDF_STATUS_SUCCESS;
  5003. }
  5004. /**
  5005. * extract_dbglog_data_len_non_tlv() - extract debuglog data length
  5006. * @wmi_handle: wmi handle
  5007. * @param evt_buf: pointer to event buffer
  5008. *
  5009. * Return: length
  5010. */
  5011. static uint8_t *extract_dbglog_data_len_non_tlv(wmi_unified_t wmi_handle,
  5012. void *evt_buf,
  5013. uint16_t *len)
  5014. {
  5015. /*Len is already valid from event. No need to change it */
  5016. return evt_buf;
  5017. }
  5018. /**
  5019. * extract_wds_addr_event_non_tlv() - extract wds address from event
  5020. * @wmi_handle: wmi handle
  5021. * @param evt_buf: pointer to event buffer
  5022. * @param wds_ev: Pointer to hold wds address
  5023. *
  5024. * Return: 0 for success or error code
  5025. */
  5026. static QDF_STATUS extract_wds_addr_event_non_tlv(wmi_unified_t wmi_handle,
  5027. void *evt_buf,
  5028. uint16_t len, wds_addr_event_t *wds_ev)
  5029. {
  5030. wmi_wds_addr_event_t *ev = (wmi_wds_addr_event_t *) evt_buf;
  5031. int i;
  5032. #ifdef BIG_ENDIAN_HOST
  5033. {
  5034. uint8_t *datap = (uint8_t *) ev;
  5035. /*Skip swapping the first long word*/
  5036. datap += sizeof(uint32_t);
  5037. for (i = 0; i < ((len / sizeof(uint32_t))-1);
  5038. i++, datap += sizeof(uint32_t))
  5039. *(uint32_t *)datap =
  5040. qdf_le32_to_cpu(*(uint32_t *)datap);
  5041. }
  5042. #endif
  5043. qdf_mem_copy(wds_ev->event_type, ev->event_type,
  5044. sizeof(wds_ev->event_type));
  5045. for (i = 0; i < 4; i++) {
  5046. wds_ev->peer_mac[i] =
  5047. ((u_int8_t *)&(ev->peer_mac.mac_addr31to0))[i];
  5048. wds_ev->dest_mac[i] =
  5049. ((u_int8_t *)&(ev->dest_mac.mac_addr31to0))[i];
  5050. }
  5051. for (i = 0; i < 2; i++) {
  5052. wds_ev->peer_mac[4+i] =
  5053. ((u_int8_t *)&(ev->peer_mac.mac_addr47to32))[i];
  5054. wds_ev->dest_mac[4+i] =
  5055. ((u_int8_t *)&(ev->dest_mac.mac_addr47to32))[i];
  5056. }
  5057. return QDF_STATUS_SUCCESS;
  5058. }
  5059. /**
  5060. * extract_dcs_interference_type_non_tlv() - extract dcs interference type
  5061. * from event
  5062. * @wmi_handle: wmi handle
  5063. * @param evt_buf: pointer to event buffer
  5064. * @param interference_type: Pointer to hold interference type
  5065. *
  5066. * Return: 0 for success or error code
  5067. */
  5068. static QDF_STATUS extract_dcs_interference_type_non_tlv(
  5069. wmi_unified_t wmi_handle,
  5070. void *evt_buf, uint32_t *interference_type)
  5071. {
  5072. wmi_dcs_interference_event_t *ev =
  5073. (wmi_dcs_interference_event_t *) evt_buf;
  5074. *interference_type = ev->interference_type;
  5075. return QDF_STATUS_SUCCESS;
  5076. }
  5077. /*
  5078. * extract_dcs_cw_int_non_tlv() - extract dcs cw interference from event
  5079. * @wmi_handle: wmi handle
  5080. * @param evt_buf: pointer to event buffer
  5081. * @param cw_int: Pointer to hold cw interference
  5082. *
  5083. * Return: 0 for success or error code
  5084. */
  5085. static QDF_STATUS extract_dcs_cw_int_non_tlv(wmi_unified_t wmi_handle,
  5086. void *evt_buf,
  5087. wmi_host_ath_dcs_cw_int *cw_int)
  5088. {
  5089. wmi_dcs_interference_event_t *ev =
  5090. (wmi_dcs_interference_event_t *) evt_buf;
  5091. qdf_mem_copy(cw_int, &ev->int_event.cw_int, sizeof(*cw_int));
  5092. return QDF_STATUS_SUCCESS;
  5093. }
  5094. /**
  5095. * extract_dcs_im_tgt_stats_non_tlv() - extract dcs im target stats from event
  5096. * @wmi_handle: wmi handle
  5097. * @param evt_buf: pointer to event buffer
  5098. * @param wlan_stat: Pointer to hold wlan stats
  5099. *
  5100. * Return: 0 for success or error code
  5101. */
  5102. static QDF_STATUS extract_dcs_im_tgt_stats_non_tlv(wmi_unified_t wmi_handle,
  5103. void *evt_buf,
  5104. wmi_host_dcs_im_tgt_stats_t *wlan_stat)
  5105. {
  5106. wmi_dcs_interference_event_t *ev =
  5107. (wmi_dcs_interference_event_t *) evt_buf;
  5108. qdf_mem_copy(wlan_stat, &ev->int_event.wlan_stat,
  5109. sizeof(wmi_host_dcs_im_tgt_stats_t));
  5110. return QDF_STATUS_SUCCESS;
  5111. }
  5112. /**
  5113. * extract_fips_event_error_status_non_tlv() - extract fips event error status
  5114. * @wmi_handle: wmi handle
  5115. * @param evt_buf: pointer to event buffer
  5116. * @param err_status: Pointer to hold error status
  5117. *
  5118. * Return: 0 for success or error code
  5119. */
  5120. static QDF_STATUS extract_fips_event_error_status_non_tlv(
  5121. wmi_unified_t wmi_handle, void *evt_buf,
  5122. uint32_t *err_status)
  5123. {
  5124. wmi_pdev_fips_event *event = (wmi_pdev_fips_event *)evt_buf;
  5125. *err_status = event->error_status;
  5126. return QDF_STATUS_SUCCESS;
  5127. }
  5128. /**
  5129. * extract_fips_event_data_non_tlv() - extract fips event data
  5130. * @wmi_handle: wmi handle
  5131. * @param evt_buf: pointer to event buffer
  5132. * @param data_len: Pointer to hold fips data length
  5133. * @param data: Double pointer to hold fips data
  5134. *
  5135. * Return: 0 for success or error code
  5136. */
  5137. static QDF_STATUS extract_fips_event_data_non_tlv(wmi_unified_t wmi_handle,
  5138. void *evt_buf,
  5139. uint32_t *data_len, uint32_t **data)
  5140. {
  5141. wmi_pdev_fips_event *event = (wmi_pdev_fips_event *)evt_buf;
  5142. #ifdef BIG_ENDIAN_HOST
  5143. {
  5144. /*****************LE to BE conversion*************************/
  5145. /* Assigning unaligned space to copy the data */
  5146. unsigned char *data_unaligned = qdf_mem_malloc(
  5147. (sizeof(u_int8_t)*event->data_len + FIPS_ALIGN));
  5148. u_int8_t *data_aligned = NULL;
  5149. int c;
  5150. /* Checking if kmalloc does succesful allocation */
  5151. if (data_unaligned == NULL)
  5152. return QDF_STATUS_E_FAILURE;
  5153. /* Checking if space is alligned */
  5154. if (!FIPS_IS_ALIGNED(data_unaligned, FIPS_ALIGN)) {
  5155. /* align the data space */
  5156. data_aligned =
  5157. (u_int8_t *)FIPS_ALIGNTO(data_unaligned, FIPS_ALIGN);
  5158. } else {
  5159. data_aligned = (u_int8_t *)data_unaligned;
  5160. }
  5161. /* memset and copy content from data to data aligned */
  5162. OS_MEMSET(data_aligned, 0, event->data_len);
  5163. OS_MEMCPY(data_aligned, event->data, event->data_len);
  5164. /* Endianness to LE */
  5165. for (c = 0; c < event->data_len/4; c++) {
  5166. *((u_int32_t *)data_aligned+c) =
  5167. qdf_le32_to_cpu(*((u_int32_t *)data_aligned+c));
  5168. }
  5169. /* Copy content to event->data */
  5170. OS_MEMCPY(event->data, data_aligned, event->data_len);
  5171. /* clean up allocated space */
  5172. qdf_mem_free(data_unaligned);
  5173. data_aligned = NULL;
  5174. data_unaligned = NULL;
  5175. /*************************************************************/
  5176. }
  5177. #endif
  5178. *data = event->data;
  5179. *data_len = event->data_len;
  5180. return QDF_STATUS_SUCCESS;
  5181. }
  5182. /**
  5183. * extract_vdev_start_resp_non_tlv() - extract vdev start response
  5184. * @wmi_handle: wmi handle
  5185. * @param evt_buf: pointer to event buffer
  5186. * @param vdev_rsp: Pointer to hold vdev response
  5187. *
  5188. * Return: 0 for success or error code
  5189. */
  5190. static QDF_STATUS extract_vdev_start_resp_non_tlv(wmi_unified_t wmi_handle,
  5191. void *evt_buf,
  5192. wmi_host_vdev_start_resp *vdev_rsp)
  5193. {
  5194. wmi_vdev_start_response_event *ev =
  5195. (wmi_vdev_start_response_event *) evt_buf;
  5196. qdf_mem_zero(vdev_rsp, sizeof(*vdev_rsp));
  5197. vdev_rsp->vdev_id = ev->vdev_id;
  5198. vdev_rsp->requestor_id = ev->requestor_id;
  5199. vdev_rsp->resp_type = ev->resp_type;
  5200. vdev_rsp->status = ev->status;
  5201. return QDF_STATUS_SUCCESS;
  5202. }
  5203. /**
  5204. * extract_tbttoffset_update_params_non_tlv() - extract tbtt offset update param
  5205. * @wmi_handle: wmi handle
  5206. * @param evt_buf: pointer to event buffer
  5207. * @param vdev_map: Pointer to hold vdev map
  5208. * @param tbttoffset_list: Pointer to tbtt offset list
  5209. *
  5210. * Return: 0 for success or error code
  5211. */
  5212. QDF_STATUS extract_tbttoffset_update_params_non_tlv(void *wmi_hdl,
  5213. void *evt_buf,
  5214. uint32_t *vdev_map, uint32_t **tbttoffset_list)
  5215. {
  5216. wmi_tbtt_offset_event *tbtt_offset_event =
  5217. (wmi_tbtt_offset_event *)evt_buf;
  5218. *vdev_map = tbtt_offset_event->vdev_map;
  5219. *tbttoffset_list = tbtt_offset_event->tbttoffset_list;
  5220. return QDF_STATUS_SUCCESS;
  5221. }
  5222. /**
  5223. * extract_mgmt_rx_params_non_tlv() - extract management rx params from event
  5224. * @wmi_handle: wmi handle
  5225. * @param evt_buf: pointer to event buffer
  5226. * @param hdr: Pointer to hold header
  5227. * @param bufp: Pointer to hold pointer to rx param buffer
  5228. *
  5229. * Return: 0 for success or error code
  5230. */
  5231. static QDF_STATUS extract_mgmt_rx_params_non_tlv(wmi_unified_t wmi_handle,
  5232. void *evt_buf,
  5233. wmi_host_mgmt_rx_hdr *hdr, uint8_t **bufp)
  5234. {
  5235. wmi_mgmt_rx_event *ev = (wmi_mgmt_rx_event *)evt_buf;
  5236. hdr->channel = ev->hdr.channel;
  5237. hdr->snr = ev->hdr.snr;
  5238. hdr->rate = ev->hdr.rate;
  5239. hdr->phy_mode = ev->hdr.phy_mode;
  5240. hdr->buf_len = ev->hdr.buf_len;
  5241. hdr->status = ev->hdr.status;
  5242. *bufp = ev->bufp;
  5243. return QDF_STATUS_SUCCESS;
  5244. }
  5245. /**
  5246. * extract_vdev_stopped_param_non_tlv() - extract vdev stop param from event
  5247. * @wmi_handle: wmi handle
  5248. * @param evt_buf: pointer to event buffer
  5249. * @param vdev_id: Pointer to hold vdev identifier
  5250. *
  5251. * Return: 0 for success or error code
  5252. */
  5253. static QDF_STATUS extract_vdev_stopped_param_non_tlv(wmi_unified_t wmi_handle,
  5254. void *evt_buf,
  5255. uint32_t *vdev_id)
  5256. {
  5257. wmi_vdev_stopped_event *event = (wmi_vdev_stopped_event *)evt_buf;
  5258. *vdev_id = event->vdev_id;
  5259. return QDF_STATUS_SUCCESS;
  5260. }
  5261. /**
  5262. * extract_vdev_roam_param_non_tlv() - extract vdev roam param from event
  5263. * @wmi_handle: wmi handle
  5264. * @param evt_buf: pointer to event buffer
  5265. * @param param: Pointer to hold roam param
  5266. *
  5267. * Return: 0 for success or error code
  5268. */
  5269. static QDF_STATUS extract_vdev_roam_param_non_tlv(wmi_unified_t wmi_handle,
  5270. void *evt_buf,
  5271. wmi_host_roam_event *param)
  5272. {
  5273. wmi_roam_event *evt = (wmi_roam_event *)evt_buf;
  5274. qdf_mem_zero(param, sizeof(*param));
  5275. param->vdev_id = evt->vdev_id;
  5276. param->reason = evt->reason;
  5277. return QDF_STATUS_SUCCESS;
  5278. }
  5279. /**
  5280. * extract_vdev_scan_ev_param_non_tlv() - extract vdev scan param from event
  5281. * @wmi_handle: wmi handle
  5282. * @param evt_buf: pointer to event buffer
  5283. * @param param: Pointer to hold vdev scan param
  5284. *
  5285. * Return: 0 for success or error code
  5286. */
  5287. static QDF_STATUS extract_vdev_scan_ev_param_non_tlv(wmi_unified_t wmi_handle,
  5288. void *evt_buf,
  5289. wmi_host_scan_event *param)
  5290. {
  5291. wmi_scan_event *evt = (wmi_scan_event *)evt_buf;
  5292. qdf_mem_zero(param, sizeof(*param));
  5293. switch (evt->event) {
  5294. case WMI_SCAN_EVENT_STARTED:
  5295. param->event = WMI_HOST_SCAN_EVENT_STARTED;
  5296. break;
  5297. case WMI_SCAN_EVENT_COMPLETED:
  5298. param->event = WMI_HOST_SCAN_EVENT_COMPLETED;
  5299. break;
  5300. case WMI_SCAN_EVENT_BSS_CHANNEL:
  5301. param->event = WMI_HOST_SCAN_EVENT_BSS_CHANNEL;
  5302. break;
  5303. case WMI_SCAN_EVENT_FOREIGN_CHANNEL:
  5304. param->event = WMI_HOST_SCAN_EVENT_FOREIGN_CHANNEL;
  5305. break;
  5306. case WMI_SCAN_EVENT_DEQUEUED:
  5307. param->event = WMI_HOST_SCAN_EVENT_DEQUEUED;
  5308. break;
  5309. case WMI_SCAN_EVENT_PREEMPTED:
  5310. param->event = WMI_HOST_SCAN_EVENT_PREEMPTED;
  5311. break;
  5312. case WMI_SCAN_EVENT_START_FAILED:
  5313. param->event = WMI_HOST_SCAN_EVENT_START_FAILED;
  5314. break;
  5315. case WMI_SCAN_EVENT_RESTARTED:
  5316. param->event = WMI_HOST_SCAN_EVENT_RESTARTED;
  5317. break;
  5318. case WMI_HOST_SCAN_EVENT_FOREIGN_CHANNEL_EXIT:
  5319. param->event = WMI_HOST_SCAN_EVENT_FOREIGN_CHANNEL_EXIT;
  5320. break;
  5321. case WMI_SCAN_EVENT_INVALID:
  5322. param->event = WMI_HOST_SCAN_EVENT_INVALID;
  5323. break;
  5324. case WMI_SCAN_EVENT_MAX:
  5325. default:
  5326. param->event = WMI_HOST_SCAN_EVENT_MAX;
  5327. break;
  5328. };
  5329. switch (evt->reason) {
  5330. case WMI_SCAN_REASON_NONE:
  5331. param->reason = WMI_HOST_SCAN_REASON_NONE;
  5332. break;
  5333. case WMI_SCAN_REASON_COMPLETED:
  5334. param->reason = WMI_HOST_SCAN_REASON_COMPLETED;
  5335. break;
  5336. case WMI_SCAN_REASON_CANCELLED:
  5337. param->reason = WMI_HOST_SCAN_REASON_CANCELLED;
  5338. break;
  5339. case WMI_SCAN_REASON_PREEMPTED:
  5340. param->reason = WMI_HOST_SCAN_REASON_PREEMPTED;
  5341. break;
  5342. case WMI_SCAN_REASON_TIMEDOUT:
  5343. param->reason = WMI_HOST_SCAN_REASON_TIMEDOUT;
  5344. break;
  5345. case WMI_SCAN_REASON_INTERNAL_FAILURE:
  5346. param->reason = WMI_HOST_SCAN_REASON_INTERNAL_FAILURE;
  5347. break;
  5348. case WMI_SCAN_REASON_MAX:
  5349. default:
  5350. param->reason = WMI_HOST_SCAN_REASON_MAX;
  5351. break;
  5352. };
  5353. param->channel_freq = evt->channel_freq;
  5354. param->requestor = evt->requestor;
  5355. param->scan_id = evt->scan_id;
  5356. param->vdev_id = evt->vdev_id;
  5357. return QDF_STATUS_SUCCESS;
  5358. }
  5359. /**
  5360. * extract_mu_ev_param_non_tlv() - extract mu param from event
  5361. * @wmi_handle: wmi handle
  5362. * @param evt_buf: pointer to event buffer
  5363. * @param param: Pointer to hold mu report
  5364. *
  5365. * Return: 0 for success or error code
  5366. */
  5367. QDF_STATUS extract_mu_ev_param_non_tlv(wmi_unified_t wmi_handle, void *evt_buf,
  5368. wmi_host_mu_report_event *param)
  5369. {
  5370. wmi_mu_report_event *event = (wmi_mu_report_event *)evt_buf;
  5371. param->mu_request_id = event->mu_request_id;
  5372. param->status_reason = event->status_reason;
  5373. qdf_mem_copy(param->total_mu, event->total_mu, sizeof(param->total_mu));
  5374. param->num_active_bssid = event->num_active_bssid;
  5375. qdf_mem_copy(param->hidden_node_mu, event->hidden_node_mu,
  5376. sizeof(param->hidden_node_mu));
  5377. param->num_TA_entries = event->num_TA_entries;
  5378. return QDF_STATUS_SUCCESS;
  5379. }
  5380. /**
  5381. * extract_mu_db_entry_non_tlv() - extract mu db entry from event
  5382. * @wmi_handle: wmi handle
  5383. * @param evt_buf: pointer to event buffer
  5384. * @param profile_data: Pointer to hold mu_db_entry
  5385. *
  5386. * Return: 0 for success or error code
  5387. */
  5388. QDF_STATUS extract_mu_db_entry_non_tlv(wmi_unified_t wmi_handle,
  5389. void *evt_buf, uint8_t idx,
  5390. wmi_host_mu_db_entry *db_entry)
  5391. {
  5392. wmi_mu_report_event *event = (wmi_mu_report_event *)evt_buf;
  5393. if (idx > event->num_TA_entries)
  5394. return QDF_STATUS_E_INVAL;
  5395. qdf_mem_copy(db_entry, &event->mu_entry[idx],
  5396. sizeof(wmi_host_mu_db_entry));
  5397. return QDF_STATUS_SUCCESS;
  5398. }
  5399. /**
  5400. * extract_mumimo_tx_count_ev_param_non_tlv() - extract mumimo tx count from event
  5401. * @wmi_handle: wmi handle
  5402. * @param evt_buf: pointer to event buffer
  5403. * @param param: Pointer to hold mu report
  5404. *
  5405. * Return: 0 for success or error code
  5406. */
  5407. QDF_STATUS extract_mumimo_tx_count_ev_param_non_tlv(wmi_unified_t wmi_handle,
  5408. void *evt_buf, wmi_host_peer_txmu_cnt_event *param)
  5409. {
  5410. wmi_peer_txmu_cnt_event *event = (wmi_peer_txmu_cnt_event *)evt_buf;
  5411. param->tx_mu_transmitted = event->tx_mu_transmitted;
  5412. return QDF_STATUS_SUCCESS;
  5413. }
  5414. /**
  5415. * extract_peer_gid_userpos_list_ev_param_non_tlv() - extract gid user position
  5416. * from event
  5417. * @wmi_handle: wmi handle
  5418. * @param evt_buf: pointer to event buffer
  5419. * @param param: Pointer to hold peer user position list
  5420. *
  5421. * Return: 0 for success or error code
  5422. */
  5423. QDF_STATUS extract_peer_gid_userpos_list_ev_param_non_tlv(
  5424. wmi_unified_t wmi_handle,
  5425. void *evt_buf,
  5426. wmi_host_peer_gid_userpos_list_event *param)
  5427. {
  5428. wmi_peer_gid_userpos_list_event *event =
  5429. (wmi_peer_gid_userpos_list_event *)evt_buf;
  5430. qdf_mem_copy(param->usr_list, event->usr_list, sizeof(param->usr_list));
  5431. return QDF_STATUS_SUCCESS;
  5432. }
  5433. /**
  5434. * extract_pdev_caldata_version_check_ev_param_non_tlv() - extract caldata from event
  5435. * @wmi_handle: wmi handle
  5436. * @param evt_buf: pointer to event buffer
  5437. * @param param: Pointer to hold peer caldata version data
  5438. *
  5439. * Return: 0 for success or error code
  5440. */
  5441. QDF_STATUS extract_pdev_caldata_version_check_ev_param_non_tlv(
  5442. wmi_unified_t wmi_handle,
  5443. void *evt_buf,
  5444. wmi_host_pdev_check_cal_version_event *param)
  5445. {
  5446. wmi_pdev_check_cal_version_event *event =
  5447. (wmi_pdev_check_cal_version_event *)evt_buf;
  5448. param->software_cal_version = event->software_cal_version;
  5449. param->board_cal_version = event->board_cal_version;
  5450. param->cal_ok = event->cal_ok;
  5451. qdf_mem_copy(param->board_mcn_detail, event->board_mcn_detail,
  5452. sizeof(param->board_mcn_detail));
  5453. return QDF_STATUS_SUCCESS;
  5454. }
  5455. /**
  5456. * extract_pdev_tpc_config_ev_param_non_tlv() - extract pdev tpc configuration
  5457. * param from event
  5458. * @wmi_handle: wmi handle
  5459. * @param evt_buf: pointer to event buffer
  5460. * @param param: Pointer to hold tpc configuration
  5461. *
  5462. * Return: 0 for success or error code
  5463. */
  5464. QDF_STATUS extract_pdev_tpc_config_ev_param_non_tlv(wmi_unified_t wmi_handle,
  5465. void *evt_buf,
  5466. wmi_host_pdev_tpc_config_event *param)
  5467. {
  5468. wmi_pdev_tpc_config_event *event = (wmi_pdev_tpc_config_event *)evt_buf;
  5469. param->regDomain = event->regDomain;
  5470. param->chanFreq = event->chanFreq;
  5471. param->phyMode = event->phyMode;
  5472. param->twiceAntennaReduction = event->twiceAntennaReduction;
  5473. param->twiceMaxRDPower = event->twiceMaxRDPower;
  5474. param->powerLimit = event->powerLimit;
  5475. param->rateMax = event->rateMax;
  5476. param->numTxChain = event->numTxChain;
  5477. param->ctl = event->ctl;
  5478. param->flags = event->flags;
  5479. qdf_mem_copy(param->maxRegAllowedPower, event->maxRegAllowedPower,
  5480. sizeof(param->maxRegAllowedPower));
  5481. qdf_mem_copy(param->maxRegAllowedPowerAGCDD,
  5482. event->maxRegAllowedPowerAGCDD,
  5483. sizeof(param->maxRegAllowedPowerAGCDD));
  5484. qdf_mem_copy(param->maxRegAllowedPowerAGSTBC,
  5485. event->maxRegAllowedPowerAGSTBC,
  5486. sizeof(param->maxRegAllowedPowerAGSTBC));
  5487. qdf_mem_copy(param->maxRegAllowedPowerAGTXBF,
  5488. event->maxRegAllowedPowerAGTXBF,
  5489. sizeof(param->maxRegAllowedPowerAGTXBF));
  5490. qdf_mem_copy(param->ratesArray, event->ratesArray,
  5491. sizeof(param->ratesArray));
  5492. return QDF_STATUS_SUCCESS;
  5493. }
  5494. /**
  5495. * extract_nfcal_power_ev_param_non_tlv() - extract noise floor calibration
  5496. * power param from event
  5497. * @wmi_handle: wmi handle
  5498. * @param evt_buf: pointer to event buffer
  5499. * @param param: Pointer to hold nf cal power param
  5500. *
  5501. * Return: 0 for success or error code
  5502. */
  5503. QDF_STATUS extract_nfcal_power_ev_param_non_tlv(wmi_unified_t wmi_handle,
  5504. void *evt_buf,
  5505. wmi_host_pdev_nfcal_power_all_channels_event *param)
  5506. {
  5507. wmi_pdev_nfcal_power_all_channels_event *event =
  5508. (wmi_pdev_nfcal_power_all_channels_event *)evt_buf;
  5509. qdf_mem_copy(param->nfdBr, event->nfdBr, sizeof(param->nfdBr));
  5510. qdf_mem_copy(param->nfdBm, event->nfdBm, sizeof(param->nfdBm));
  5511. qdf_mem_copy(param->freqNum, event->freqNum, sizeof(param->freqNum));
  5512. return QDF_STATUS_SUCCESS;
  5513. }
  5514. /**
  5515. * extract_pdev_tpc_ev_param_non_tlv() - extract tpc param from event
  5516. * @wmi_handle: wmi handle
  5517. * @param evt_buf: pointer to event buffer
  5518. * @param param: Pointer to hold tpc param
  5519. *
  5520. * Return: 0 for success or error code
  5521. */
  5522. QDF_STATUS extract_pdev_tpc_ev_param_non_tlv(wmi_unified_t wmi_handle,
  5523. void *evt_buf,
  5524. wmi_host_pdev_tpc_event *param)
  5525. {
  5526. wmi_pdev_tpc_event *event = (wmi_pdev_tpc_event *)evt_buf;
  5527. qdf_mem_copy(param->tpc, event->tpc, sizeof(param->tpc));
  5528. return QDF_STATUS_SUCCESS;
  5529. }
  5530. /**
  5531. * extract_pdev_generic_buffer_ev_param_non_tlv() - extract pdev generic buffer
  5532. * from event
  5533. * @wmi_handle: wmi handle
  5534. * @param evt_buf: pointer to event buffer
  5535. * @param param: Pointer to generic buffer param
  5536. *
  5537. * Return: 0 for success or error code
  5538. */
  5539. QDF_STATUS extract_pdev_generic_buffer_ev_param_non_tlv(
  5540. wmi_unified_t wmi_handle, void *evt_buf,
  5541. wmi_host_pdev_generic_buffer_event *param)
  5542. {
  5543. wmi_pdev_generic_buffer_event *event =
  5544. (wmi_pdev_generic_buffer_event *)evt_buf;
  5545. param->buf_type = event->buf_type;
  5546. param->frag_id = event->frag_id;
  5547. param->more_frag = event->more_frag;
  5548. param->buf_len = event->buf_len;
  5549. qdf_mem_copy(param->buf_info, event->buf_info, event->buf_len);
  5550. return QDF_STATUS_SUCCESS;
  5551. }
  5552. /**
  5553. * extract_gpio_input_ev_param_non_tlv() - extract gpio input param from event
  5554. * @wmi_handle: wmi handle
  5555. * @param evt_buf: pointer to event buffer
  5556. * @param gpio_num: Pointer to hold gpio number
  5557. *
  5558. * Return: 0 for success or error code
  5559. */
  5560. static QDF_STATUS extract_gpio_input_ev_param_non_tlv(wmi_unified_t wmi_handle,
  5561. void *evt_buf, uint32_t *gpio_num)
  5562. {
  5563. wmi_gpio_input_event *ev = (wmi_gpio_input_event *) evt_buf;
  5564. *gpio_num = ev->gpio_num;
  5565. return QDF_STATUS_SUCCESS;
  5566. }
  5567. /**
  5568. * extract_pdev_reserve_ast_ev_param_non_tlv() - extract reserve ast entry
  5569. * param from event
  5570. * @wmi_handle: wmi handle
  5571. * @param evt_buf: pointer to event buffer
  5572. * @param result: Pointer to hold reserve ast entry param
  5573. *
  5574. * Return: 0 for success or error code
  5575. */
  5576. static QDF_STATUS extract_pdev_reserve_ast_ev_param_non_tlv(
  5577. wmi_unified_t wmi_handle,
  5578. void *evt_buf, uint32_t *result)
  5579. {
  5580. wmi_pdev_reserve_ast_entry_event *ev =
  5581. (wmi_pdev_reserve_ast_entry_event *) evt_buf;
  5582. *result = ev->result;
  5583. return QDF_STATUS_SUCCESS;
  5584. }
  5585. /**
  5586. * extract_swba_vdev_map_non_tlv() - extract swba vdev map from event
  5587. * @wmi_handle: wmi handle
  5588. * @param evt_buf: pointer to event buffer
  5589. * @param vdev_map: Pointer to hold vdev map
  5590. *
  5591. * Return: 0 for success or error code
  5592. */
  5593. static QDF_STATUS extract_swba_vdev_map_non_tlv(wmi_unified_t wmi_handle,
  5594. void *evt_buf,
  5595. uint32_t *vdev_map)
  5596. {
  5597. wmi_host_swba_event *swba_event = (wmi_host_swba_event *)evt_buf;
  5598. *vdev_map = swba_event->vdev_map;
  5599. return QDF_STATUS_SUCCESS;
  5600. }
  5601. /**
  5602. * extract_swba_tim_info_non_tlv() - extract swba tim info from event
  5603. * @wmi_handle: wmi handle
  5604. * @param evt_buf: pointer to event buffer
  5605. * @param idx: Index to bcn info
  5606. * @param tim_info: Pointer to hold tim info
  5607. *
  5608. * Return: 0 for success or error code
  5609. */
  5610. static QDF_STATUS extract_swba_tim_info_non_tlv(wmi_unified_t wmi_handle,
  5611. void *evt_buf,
  5612. uint32_t idx, wmi_host_tim_info *tim_info)
  5613. {
  5614. wmi_host_swba_event *swba_event = (wmi_host_swba_event *)evt_buf;
  5615. wmi_bcn_info *bcn_info;
  5616. bcn_info = &swba_event->bcn_info[idx];
  5617. tim_info->tim_len = bcn_info->tim_info.tim_len;
  5618. tim_info->tim_mcast = bcn_info->tim_info.tim_mcast;
  5619. qdf_mem_copy(tim_info->tim_bitmap, bcn_info->tim_info.tim_bitmap,
  5620. (sizeof(uint32_t) * WMI_TIM_BITMAP_ARRAY_SIZE));
  5621. tim_info->tim_changed = bcn_info->tim_info.tim_changed;
  5622. tim_info->tim_num_ps_pending = bcn_info->tim_info.tim_num_ps_pending;
  5623. return QDF_STATUS_SUCCESS;
  5624. }
  5625. /**
  5626. * extract_swba_noa_info_non_tlv() - extract swba NoA information from event
  5627. * @wmi_handle: wmi handle
  5628. * @param evt_buf: pointer to event buffer
  5629. * @param idx: Index to bcn info
  5630. * @param p2p_desc: Pointer to hold p2p NoA info
  5631. *
  5632. * Return: 0 for success or error code
  5633. */
  5634. static QDF_STATUS extract_swba_noa_info_non_tlv(wmi_unified_t wmi_handle,
  5635. void *evt_buf,
  5636. uint32_t idx, wmi_host_p2p_noa_info *p2p_desc)
  5637. {
  5638. wmi_host_swba_event *swba_event = (wmi_host_swba_event *)evt_buf;
  5639. wmi_p2p_noa_info *p2p_noa_info;
  5640. wmi_bcn_info *bcn_info;
  5641. uint8_t i = 0;
  5642. bcn_info = &swba_event->bcn_info[idx];
  5643. p2p_noa_info = &bcn_info->p2p_noa_info;
  5644. p2p_desc->modified = false;
  5645. p2p_desc->num_descriptors = 0;
  5646. if (WMI_UNIFIED_NOA_ATTR_IS_MODIFIED(p2p_noa_info)) {
  5647. p2p_desc->modified = true;
  5648. p2p_desc->index =
  5649. (uint8_t) WMI_UNIFIED_NOA_ATTR_INDEX_GET(p2p_noa_info);
  5650. p2p_desc->oppPS =
  5651. (uint8_t) WMI_UNIFIED_NOA_ATTR_OPP_PS_GET(p2p_noa_info);
  5652. p2p_desc->ctwindow =
  5653. (uint8_t) WMI_UNIFIED_NOA_ATTR_CTWIN_GET(p2p_noa_info);
  5654. p2p_desc->num_descriptors =
  5655. (uint8_t) WMI_UNIFIED_NOA_ATTR_NUM_DESC_GET(p2p_noa_info);
  5656. for (i = 0; i < p2p_desc->num_descriptors; i++) {
  5657. p2p_desc->noa_descriptors[i].type_count =
  5658. (uint8_t) p2p_noa_info->noa_descriptors[i].
  5659. type_count;
  5660. p2p_desc->noa_descriptors[i].duration =
  5661. p2p_noa_info->noa_descriptors[i].duration;
  5662. p2p_desc->noa_descriptors[i].interval =
  5663. p2p_noa_info->noa_descriptors[i].interval;
  5664. p2p_desc->noa_descriptors[i].start_time =
  5665. p2p_noa_info->noa_descriptors[i].start_time;
  5666. }
  5667. }
  5668. return QDF_STATUS_SUCCESS;
  5669. }
  5670. /**
  5671. * extract_peer_sta_ps_statechange_ev_non_tlv() - extract peer sta ps state
  5672. * from event
  5673. * @wmi_handle: wmi handle
  5674. * @param evt_buf: pointer to event buffer
  5675. * @param ev: Pointer to hold peer param and ps state
  5676. *
  5677. * Return: 0 for success or error code
  5678. */
  5679. QDF_STATUS extract_peer_sta_ps_statechange_ev_non_tlv(wmi_unified_t wmi_handle,
  5680. void *evt_buf, wmi_host_peer_sta_ps_statechange_event *ev)
  5681. {
  5682. wmi_peer_sta_ps_statechange_event *event =
  5683. (wmi_peer_sta_ps_statechange_event *)evt_buf;
  5684. WMI_MAC_ADDR_TO_CHAR_ARRAY(&event->peer_macaddr, ev->peer_macaddr);
  5685. ev->peer_ps_state = event->peer_ps_state;
  5686. return QDF_STATUS_SUCCESS;
  5687. }
  5688. /**
  5689. * extract_peer_sta_kickout_ev_non_tlv() - extract peer sta kickout event
  5690. * @wmi_handle: wmi handle
  5691. * @param evt_buf: pointer to event buffer
  5692. * @param ev: Pointer to hold peer param
  5693. *
  5694. * Return: 0 for success or error code
  5695. */
  5696. QDF_STATUS extract_peer_sta_kickout_ev_non_tlv(wmi_unified_t wmi_handle,
  5697. void *evt_buf,
  5698. wmi_host_peer_sta_kickout_event *ev)
  5699. {
  5700. wmi_peer_sta_kickout_event *kickout_event =
  5701. (wmi_peer_sta_kickout_event *)evt_buf;
  5702. WMI_MAC_ADDR_TO_CHAR_ARRAY(&kickout_event->peer_macaddr,
  5703. ev->peer_macaddr);
  5704. /**Following not available in legacy wmi*/
  5705. ev->reason = 0;
  5706. ev->rssi = 0;
  5707. return QDF_STATUS_SUCCESS;
  5708. }
  5709. /**
  5710. * extract_peer_ratecode_list_ev_non_tlv() - extract peer ratecode from event
  5711. * @wmi_handle: wmi handle
  5712. * @param evt_buf: pointer to event buffer
  5713. * @param peer_mac: Pointer to hold peer mac address
  5714. * @param rate_cap: Pointer to hold ratecode
  5715. *
  5716. * Return: 0 for success or error code
  5717. */
  5718. QDF_STATUS extract_peer_ratecode_list_ev_non_tlv(wmi_unified_t wmi_handle,
  5719. void *evt_buf,
  5720. uint8_t *peer_mac, wmi_sa_rate_cap *rate_cap)
  5721. {
  5722. wmi_peer_ratecode_list_event_t *rate_event =
  5723. (wmi_peer_ratecode_list_event_t *)evt_buf;
  5724. int i, htindex, j;
  5725. uint8_t shift = 0;
  5726. WMI_MAC_ADDR_TO_CHAR_ARRAY(&rate_event->peer_macaddr, peer_mac);
  5727. htindex = 0;
  5728. rate_cap->ratecount[0] =
  5729. ((rate_event->peer_rate_info.ratecount) & SA_MASK_BYTE);
  5730. rate_cap->ratecount[1] =
  5731. ((rate_event->peer_rate_info.ratecount >> 8) & SA_MASK_BYTE);
  5732. rate_cap->ratecount[2] =
  5733. ((rate_event->peer_rate_info.ratecount >> 16) & SA_MASK_BYTE);
  5734. rate_cap->ratecount[3] =
  5735. ((rate_event->peer_rate_info.ratecount >> 24) & SA_MASK_BYTE);
  5736. if (rate_cap->ratecount[0]) {
  5737. for (i = 0; i < SA_MAX_LEGACY_RATE_DWORDS; i++) {
  5738. for (j = 0; j < SA_BYTES_IN_DWORD; j++) {
  5739. rate_cap->ratecode_legacy[htindex] =
  5740. ((rate_event->peer_rate_info.ratecode_legacy[i]
  5741. >> (8*j)) & SA_MASK_BYTE);
  5742. htindex++;
  5743. }
  5744. }
  5745. }
  5746. htindex = 0;
  5747. for (i = 0; i < SA_MAX_HT_RATE_DWORDS; i++) {
  5748. for (j = 0; j < SA_BYTES_IN_DWORD; j++) {
  5749. shift = (8*j);
  5750. rate_cap->ratecode_20[htindex] =
  5751. ((rate_event->peer_rate_info.ratecode_20[i]
  5752. >> (shift)) & SA_MASK_BYTE);
  5753. rate_cap->ratecode_40[htindex] =
  5754. ((rate_event->peer_rate_info.ratecode_40[i]
  5755. >> (shift)) & SA_MASK_BYTE);
  5756. rate_cap->ratecode_80[htindex] =
  5757. ((rate_event->peer_rate_info.ratecode_80[i]
  5758. >> (shift)) & SA_MASK_BYTE);
  5759. htindex++;
  5760. }
  5761. }
  5762. return QDF_STATUS_SUCCESS;
  5763. }
  5764. /**
  5765. * extract_rtt_header_internal_non_tlv() - extract internal rtt header from
  5766. * event
  5767. * @param ev: pointer to internal rtt event header
  5768. * @param hdr: Pointer to received rtt event header
  5769. *
  5770. * Return: None
  5771. */
  5772. static void extract_rtt_header_internal_non_tlv(wmi_host_rtt_event_hdr *ev,
  5773. wmi_rtt_event_hdr *hdr)
  5774. {
  5775. ev->req_id = WMI_RTT_REQ_ID_GET(hdr->req_id);
  5776. ev->result = (hdr->req_id & 0xffff0000) >> 16;
  5777. ev->meas_type = WMI_RTT_REPORT_MEAS_TYPE_GET(hdr->req_id);
  5778. ev->report_type = WMI_RTT_REPORT_REPORT_TYPE_GET(hdr->req_id);
  5779. ev->v3_status = WMI_RTT_REPORT_V3_STATUS_GET(hdr->req_id);
  5780. ev->v3_finish = WMI_RTT_REPORT_V3_FINISH_GET(hdr->req_id);
  5781. ev->v3_tm_start = WMI_RTT_REPORT_V3_TM_START_GET(hdr->req_id);
  5782. ev->num_ap = WMI_RTT_REPORT_NUM_AP_GET(hdr->req_id);
  5783. WMI_MAC_ADDR_TO_CHAR_ARRAY(&hdr->dest_mac, ev->dest_mac);
  5784. }
  5785. /**
  5786. * extract_rtt_error_report_ev_non_tlv() - extract rtt error report from event
  5787. * @wmi_handle: wmi handle
  5788. * @param evt_buf: pointer to event buffer
  5789. * @param wds_ev: Pointer to hold rtt error report
  5790. *
  5791. * Return: 0 for success or error code
  5792. */
  5793. static QDF_STATUS extract_rtt_error_report_ev_non_tlv(wmi_unified_t wmi_handle,
  5794. void *evt_buf,
  5795. wmi_host_rtt_error_report_event *ev)
  5796. {
  5797. wmi_rtt_error_report_event *error_report =
  5798. (wmi_rtt_error_report_event *) evt_buf;
  5799. extract_rtt_header_internal_non_tlv(&ev->hdr, &error_report->header);
  5800. ev->reject_reason = error_report->reject_reason;
  5801. return QDF_STATUS_SUCCESS;
  5802. }
  5803. /**
  5804. * extract_rtt_hdr_non_tlv() - extract rtt header from event
  5805. * @wmi_handle: wmi handle
  5806. * @param evt_buf: pointer to event buffer
  5807. * @param ev: Pointer to hold rtt header
  5808. *
  5809. * Return: 0 for success or error code
  5810. */
  5811. QDF_STATUS extract_rtt_hdr_non_tlv(wmi_unified_t wmi_handle, void *evt_buf,
  5812. wmi_host_rtt_event_hdr *ev)
  5813. {
  5814. wmi_rtt_event_hdr *hdr = (wmi_rtt_event_hdr *) evt_buf;
  5815. extract_rtt_header_internal_non_tlv(ev, hdr);
  5816. return QDF_STATUS_SUCCESS;
  5817. }
  5818. /**
  5819. * copy_rtt_report_cfr
  5820. * @ev: pointer to destination event pointer
  5821. * @report_type: report type recieved in event
  5822. * @p: pointer to event data
  5823. * @hdump: pointer to destination buffer
  5824. * @hdump_len: length of dest buffer
  5825. *
  5826. * Return: Pointer to current offset in p
  5827. */
  5828. static uint8_t *copy_rtt_report_cfr(wmi_host_rtt_meas_event *ev,
  5829. uint8_t report_type, uint8_t *p,
  5830. uint8_t *hdump, int16_t hdump_len)
  5831. {
  5832. uint8_t index, i;
  5833. uint8_t *tmp, *temp1, *temp2;
  5834. #define TONE_LEGACY_20M 53
  5835. #define TONE_VHT_20M 56
  5836. #define TONE_VHT_40M 117
  5837. #define TONE_VHT_80M 242
  5838. int tone_number[4] = {
  5839. TONE_LEGACY_20M, TONE_VHT_20M, TONE_VHT_40M, TONE_VHT_80M};
  5840. #define MEM_ALIGN(x) ((((x)<<1)+3) & 0xFFFC)
  5841. /* the buffer size of 1 chain for each BW 0-3 */
  5842. u_int16_t bw_size[4] = {
  5843. MEM_ALIGN(TONE_LEGACY_20M),
  5844. MEM_ALIGN(TONE_VHT_20M),
  5845. MEM_ALIGN(TONE_VHT_40M),
  5846. MEM_ALIGN(TONE_VHT_80M)
  5847. };
  5848. if (hdump == NULL) {
  5849. qdf_print("Destination buffer is NULL\n");
  5850. return p;
  5851. }
  5852. temp1 = temp2 = hdump;
  5853. for (index = 0; index < 4; index++) {
  5854. if (ev->chain_mask & (1 << index)) {
  5855. if (index == 0)
  5856. ev->rssi0 = *((u_int32_t *)p);
  5857. if (index == 1)
  5858. ev->rssi1 = *((u_int32_t *)p);
  5859. if (index == 2)
  5860. ev->rssi2 = *((u_int32_t *)p);
  5861. if (index == 3)
  5862. ev->rssi3 = *((u_int32_t *)p);
  5863. p += sizeof(u_int32_t);
  5864. if (report_type == WMI_RTT_REPORT_CFR) {
  5865. tmp = p + bw_size[ev->bw];
  5866. ev->txrxchain_mask = tone_number[ev->bw];
  5867. temp2 = temp2 + bw_size[ev->bw];
  5868. for (i = 0; (i < tone_number[ev->bw]); i++) {
  5869. qdf_mem_copy(temp1, p, 2);
  5870. temp1 += 2;
  5871. p += 2;
  5872. hdump_len -= 2;
  5873. if (hdump_len <= 0)
  5874. break;
  5875. }
  5876. temp1 = temp2;
  5877. p = tmp;
  5878. }
  5879. }
  5880. }
  5881. return p;
  5882. }
  5883. /**
  5884. * extract_rtt_ev_non_tlv() - extract rtt event
  5885. * @wmi_handle: wmi handle
  5886. * @param evt_buf: Pointer to event buffer
  5887. * @param ev: Pointer to hold rtt event
  5888. * @param hdump: Pointer to hold hex dump
  5889. * @param hdump_len: hex dump length
  5890. *
  5891. * Return: 0 for success or error code
  5892. */
  5893. QDF_STATUS extract_rtt_ev_non_tlv(wmi_unified_t wmi_handle, void *evt_buf,
  5894. wmi_host_rtt_meas_event *ev, uint8_t *hdump, uint16_t h_len)
  5895. {
  5896. wmi_rtt_meas_event *body = (wmi_rtt_meas_event *) evt_buf;
  5897. uint8_t meas_type, report_type;
  5898. uint8_t *p;
  5899. int16_t hdump_len = h_len;
  5900. A_TIME64 *time;
  5901. if (body) {
  5902. meas_type = WMI_RTT_REPORT_MEAS_TYPE_GET(body->header.req_id);
  5903. report_type =
  5904. WMI_RTT_REPORT_REPORT_TYPE_GET(body->header.req_id);
  5905. ev->chain_mask = WMI_RTT_REPORT_RX_CHAIN_GET(body->rx_chain);
  5906. ev->bw = WMI_RTT_REPORT_RX_BW_GET(body->rx_chain);
  5907. /* If report type is not WMI_RTT_REPORT_CFR */
  5908. ev->txrxchain_mask = 0;
  5909. ev->tod = ((u_int64_t) body->tod.time32) << 32;
  5910. ev->tod |= body->tod.time0; /*tmp1 is the 64 bit tod*/
  5911. ev->toa = ((u_int64_t) body->toa.time32) << 32;
  5912. ev->toa |= body->toa.time0;
  5913. p = (u_int8_t *) (++body);
  5914. /* if the measurement is TMR, we should have T3 and T4 */
  5915. if (meas_type == RTT_MEAS_FRAME_TMR) {
  5916. time = (A_TIME64 *) body;
  5917. ev->t3 = (u_int64_t) (time->time32) << 32;
  5918. ev->t3 |= time->time0;
  5919. time++;
  5920. ev->t4 = (u_int64_t)(time->time32) << 32;
  5921. ev->t4 |= time->time0;
  5922. p = (u_int8_t *) (++time);
  5923. } else {
  5924. ev->t3 = 0;
  5925. ev->t4 = 0;
  5926. }
  5927. ev->rssi0 = 0;
  5928. ev->rssi1 = 0;
  5929. ev->rssi2 = 0;
  5930. ev->rssi3 = 0;
  5931. p = copy_rtt_report_cfr(ev, report_type, p, hdump, hdump_len);
  5932. } else {
  5933. qdf_print("Error!body is NULL\n");
  5934. return QDF_STATUS_E_FAILURE;
  5935. }
  5936. return QDF_STATUS_SUCCESS;
  5937. }
  5938. /**
  5939. * extract_thermal_stats_non_tlv() - extract thermal stats from event
  5940. * @wmi_handle: wmi handle
  5941. * @param evt_buf: Pointer to event buffer
  5942. * @param temp: Pointer to hold extracted temperature
  5943. * @param level: Pointer to hold extracted level
  5944. *
  5945. * Return: 0 for success or error code
  5946. */
  5947. QDF_STATUS extract_thermal_stats_non_tlv(wmi_unified_t wmi_handle,
  5948. void *evt_buf,
  5949. uint32_t *temp, uint32_t *level)
  5950. {
  5951. tt_stats_t *tt_stats_event = NULL;
  5952. tt_stats_event = (tt_stats_t *) evt_buf;
  5953. *temp = tt_stats_event->temp;
  5954. *level = tt_stats_event->level;
  5955. return QDF_STATUS_SUCCESS;
  5956. }
  5957. /**
  5958. * extract_thermal_level_stats_non_tlv() - extract thermal level stats from
  5959. * event
  5960. * @wmi_handle: wmi handle
  5961. * @param evt_buf: pointer to event buffer
  5962. * @param idx: Index to level stats
  5963. * @param levelcount: Pointer to hold levelcount
  5964. * @param dccount: Pointer to hold dccount
  5965. *
  5966. * Return: 0 for success or error code
  5967. */
  5968. QDF_STATUS extract_thermal_level_stats_non_tlv(wmi_unified_t wmi_handle,
  5969. void *evt_buf,
  5970. uint8_t idx, uint32_t *levelcount, uint32_t *dccount)
  5971. {
  5972. tt_stats_t *tt_stats_event = NULL;
  5973. tt_stats_event = (tt_stats_t *) evt_buf;
  5974. if (idx < TT_LEVELS) {
  5975. *levelcount = tt_stats_event->levstats[idx].levelcount;
  5976. *dccount = tt_stats_event->levstats[idx].dccount;
  5977. return QDF_STATUS_SUCCESS;
  5978. }
  5979. return QDF_STATUS_E_FAILURE;
  5980. }
  5981. /**
  5982. * extract_comb_phyerr_non_tlv() - extract comb phy error from event
  5983. * @wmi_handle: wmi handle
  5984. * @param evt_buf: pointer to event buffer
  5985. * @param datalen: data length of event buffer
  5986. * @param buf_offset: Pointer to hold value of current event buffer offset
  5987. * post extraction
  5988. * @param phyer: Pointer to hold phyerr
  5989. *
  5990. * Return: 0 for success or error code
  5991. */
  5992. QDF_STATUS extract_comb_phyerr_non_tlv(wmi_unified_t wmi_handle, void *evt_buf,
  5993. uint16_t datalen, uint16_t *buf_offset,
  5994. wmi_host_phyerr_t *phyerr)
  5995. {
  5996. wmi_comb_phyerr_rx_event *pe;
  5997. #if ATH_PHYERR_DEBUG
  5998. int i;
  5999. #endif /* ATH_PHYERR_DEBUG */
  6000. uint8_t *data;
  6001. data = (uint8_t *) evt_buf;
  6002. #if ATH_PHYERR_DEBUG
  6003. qdf_print("%s: data=%p, datalen=%d\n", __func__, data, datalen);
  6004. /* XXX for now */
  6005. for (i = 0; i < datalen; i++) {
  6006. qdf_print("%02X ", data[i]);
  6007. if (i % 32 == 31)
  6008. qdf_print("\n");
  6009. }
  6010. qdf_print("\n");
  6011. #endif /* ATH_PHYERR_DEBUG */
  6012. /* Ensure it's at least the size of the header */
  6013. if (datalen < sizeof(*pe)) {
  6014. return QDF_STATUS_E_FAILURE;
  6015. /* XXX what should errors be? */
  6016. }
  6017. pe = (wmi_comb_phyerr_rx_event *) data;
  6018. #if ATH_PHYERR_DEBUG
  6019. qdf_print("%s: pe->hdr.num_phyerr_events=%d\n",
  6020. __func__,
  6021. pe->hdr.num_phyerr_events);
  6022. #endif /* ATH_PHYERR_DEBUG */
  6023. /*
  6024. * Reconstruct the 64 bit event TSF. This isn't from the MAC, it's
  6025. * at the time the event was sent to us, the TSF value will be
  6026. * in the future.
  6027. */
  6028. phyerr->tsf64 = pe->hdr.tsf_l32;
  6029. phyerr->tsf64 |= (((uint64_t) pe->hdr.tsf_u32) << 32);
  6030. *buf_offset = sizeof(pe->hdr);
  6031. return QDF_STATUS_SUCCESS;
  6032. }
  6033. /**
  6034. * extract_single_phyerr_non_tlv() - extract single phy error from event
  6035. * @wmi_handle: wmi handle
  6036. * @param evt_buf: pointer to event buffer
  6037. * @param datalen: data length of event buffer
  6038. * @param buf_offset: Pointer to hold value of current event buffer offset
  6039. * post extraction
  6040. * @param phyerr: Pointer to hold phyerr
  6041. *
  6042. * Return: 0 for success or error code
  6043. */
  6044. QDF_STATUS extract_single_phyerr_non_tlv(wmi_unified_t wmi_handle,
  6045. void *evt_buf,
  6046. uint16_t datalen, uint16_t *buf_offset,
  6047. wmi_host_phyerr_t *phyerr)
  6048. {
  6049. wmi_single_phyerr_rx_event *ev;
  6050. #if ATH_PHYERR_DEBUG
  6051. int i;
  6052. #endif /* ATH_PHYERR_DEBUG */
  6053. int n = 0;
  6054. uint8_t *data;
  6055. n = (int) *buf_offset;
  6056. data = (uint8_t *) evt_buf;
  6057. /* Loop over the bufp, extracting out phyerrors */
  6058. /*
  6059. * XXX wmi_unified_comb_phyerr_rx_event.bufp is a char pointer,
  6060. * which isn't correct here - what we have received here
  6061. * is an array of TLV-style PHY errors.
  6062. */
  6063. if (n < datalen) {
  6064. /* ensure there's at least space for the header */
  6065. if ((datalen - n) < sizeof(ev->hdr)) {
  6066. qdf_print(
  6067. "%s: not enough space? (datalen=%d, n=%d, hdr=%d bytes\n",
  6068. __func__,
  6069. datalen,
  6070. n,
  6071. sizeof(ev->hdr));
  6072. return QDF_STATUS_SUCCESS;
  6073. }
  6074. /*
  6075. * Obtain a pointer to the beginning of the current event.
  6076. * data[0] is the beginning of the WMI payload.
  6077. */
  6078. ev = (wmi_single_phyerr_rx_event *) &data[n];
  6079. /*
  6080. * Sanity check the buffer length of the event against
  6081. * what we currently have.
  6082. *
  6083. * Since buf_len is 32 bits, we check if it overflows
  6084. * a large 32 bit value. It's not 0x7fffffff because
  6085. * we increase n by (buf_len + sizeof(hdr)), which would
  6086. * in itself cause n to overflow.
  6087. *
  6088. * If "int" is 64 bits then this becomes a moot point.
  6089. */
  6090. if (ev->hdr.buf_len > 0x7f000000) {
  6091. qdf_print("%s: buf_len is garbage? (0x%x\n)\n",
  6092. __func__,
  6093. ev->hdr.buf_len);
  6094. return QDF_STATUS_SUCCESS;
  6095. }
  6096. if (n + ev->hdr.buf_len > datalen) {
  6097. qdf_print("%s: buf_len exceeds available space "
  6098. "(n=%d, buf_len=%d, datalen=%d\n",
  6099. __func__,
  6100. n,
  6101. ev->hdr.buf_len,
  6102. datalen);
  6103. return QDF_STATUS_SUCCESS;
  6104. }
  6105. phyerr->phy_err_code = WMI_UNIFIED_PHYERRCODE_GET(&ev->hdr);
  6106. #if ATH_PHYERR_DEBUG
  6107. qdf_print("%s: len=%d, tsf=0x%08x, rssi = 0x%x/0x%x/0x%x/0x%x, "
  6108. "comb rssi = 0x%x, phycode=%d\n",
  6109. __func__,
  6110. ev->hdr.buf_len,
  6111. ev->hdr.tsf_timestamp,
  6112. ev->hdr.rssi_chain0,
  6113. ev->hdr.rssi_chain1,
  6114. ev->hdr.rssi_chain2,
  6115. ev->hdr.rssi_chain3,
  6116. WMI_UNIFIED_RSSI_COMB_GET(&ev->hdr),
  6117. phyerr->phy_err_code);
  6118. /*
  6119. * For now, unroll this loop - the chain 'value' field isn't
  6120. * a variable but glued together into a macro field definition.
  6121. * Grr. :-)
  6122. */
  6123. qdf_print(
  6124. "%s: chain 0: raw=0x%08x; pri20=%d sec20=%d sec40=%d sec80=%d\n",
  6125. __func__,
  6126. ev->hdr.rssi_chain0,
  6127. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, PRI20),
  6128. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, SEC20),
  6129. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, SEC40),
  6130. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, SEC80));
  6131. qdf_print(
  6132. "%s: chain 1: raw=0x%08x: pri20=%d sec20=%d sec40=%d sec80=%d\n",
  6133. __func__,
  6134. ev->hdr.rssi_chain1,
  6135. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, PRI20),
  6136. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, SEC20),
  6137. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, SEC40),
  6138. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, SEC80));
  6139. qdf_print(
  6140. "%s: chain 2: raw=0x%08x: pri20=%d sec20=%d sec40=%d sec80=%d\n",
  6141. __func__,
  6142. ev->hdr.rssi_chain2,
  6143. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, PRI20),
  6144. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, SEC20),
  6145. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, SEC40),
  6146. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, SEC80));
  6147. qdf_print(
  6148. "%s: chain 3: raw=0x%08x: pri20=%d sec20=%d sec40=%d sec80=%d\n",
  6149. __func__,
  6150. ev->hdr.rssi_chain3,
  6151. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, PRI20),
  6152. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, SEC20),
  6153. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, SEC40),
  6154. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, SEC80));
  6155. qdf_print(
  6156. "%s: freq_info_1=0x%08x, freq_info_2=0x%08x\n",
  6157. __func__, ev->hdr.freq_info_1, ev->hdr.freq_info_2);
  6158. /*
  6159. * The NF chain values are signed and are negative - hence
  6160. * the cast evilness.
  6161. */
  6162. qdf_print(
  6163. "%s: nfval[1]=0x%08x, nfval[2]=0x%08x, nf=%d/%d/%d/%d, "
  6164. "freq1=%d, freq2=%d, cw=%d\n",
  6165. __func__,
  6166. ev->hdr.nf_list_1,
  6167. ev->hdr.nf_list_2,
  6168. (int) WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 0),
  6169. (int) WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 1),
  6170. (int) WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 2),
  6171. (int) WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 3),
  6172. WMI_UNIFIED_FREQ_INFO_GET(&ev->hdr, 1),
  6173. WMI_UNIFIED_FREQ_INFO_GET(&ev->hdr, 2),
  6174. WMI_UNIFIED_CHWIDTH_GET(&ev->hdr));
  6175. #endif /* ATH_PHYERR_DEBUG */
  6176. #if ATH_SUPPORT_DFS
  6177. /*
  6178. * If required, pass radar events to the dfs pattern matching
  6179. * code.
  6180. *
  6181. * Don't pass radar events with no buffer payload.
  6182. */
  6183. phyerr->tsf_timestamp = ev->hdr.tsf_timestamp;
  6184. phyerr->bufp = &ev->bufp[0];
  6185. phyerr->buf_len = ev->hdr.buf_len;
  6186. #endif /* ATH_SUPPORT_DFS */
  6187. /* populate the rf info */
  6188. phyerr->rf_info.rssi_comb =
  6189. WMI_UNIFIED_RSSI_COMB_GET(&ev->hdr);
  6190. #if ATH_SUPPORT_SPECTRAL
  6191. /*
  6192. * If required, pass spectral events to the spectral module
  6193. *
  6194. */
  6195. if (phyerr->phy_err_code == WMI_HOST_PHY_ERROR_FALSE_RADAR_EXT
  6196. || phyerr->phy_err_code == WMI_HOST_PHY_ERROR_SPECTRAL_SCAN) {
  6197. if (ev->hdr.buf_len > 0) {
  6198. /* Initialize the NF values to Zero. */
  6199. phyerr->rf_info.noise_floor[0] =
  6200. WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 0);
  6201. phyerr->rf_info.noise_floor[1] =
  6202. WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 1);
  6203. phyerr->rf_info.noise_floor[2] =
  6204. WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 2);
  6205. phyerr->rf_info.noise_floor[3] =
  6206. WMI_UNIFIED_NF_CHAIN_GET(&ev->hdr, 3);
  6207. /* Need to unroll loop due to macro
  6208. * constraints
  6209. * chain 0 */
  6210. phyerr->rf_info.pc_rssi_info[0].rssi_pri20 =
  6211. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, PRI20);
  6212. phyerr->rf_info.pc_rssi_info[0].rssi_sec20 =
  6213. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, SEC20);
  6214. phyerr->rf_info.pc_rssi_info[0].rssi_sec40 =
  6215. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, SEC40);
  6216. phyerr->rf_info.pc_rssi_info[0].rssi_sec80 =
  6217. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 0, SEC80);
  6218. /* chain 1 */
  6219. phyerr->rf_info.pc_rssi_info[1].rssi_pri20 =
  6220. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, PRI20);
  6221. phyerr->rf_info.pc_rssi_info[1].rssi_sec20 =
  6222. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, SEC20);
  6223. phyerr->rf_info.pc_rssi_info[1].rssi_sec40 =
  6224. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, SEC40);
  6225. phyerr->rf_info.pc_rssi_info[1].rssi_sec80 =
  6226. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 1, SEC80);
  6227. /* chain 2 */
  6228. phyerr->rf_info.pc_rssi_info[2].rssi_pri20 =
  6229. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, PRI20);
  6230. phyerr->rf_info.pc_rssi_info[2].rssi_sec20 =
  6231. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, SEC20);
  6232. phyerr->rf_info.pc_rssi_info[2].rssi_sec40 =
  6233. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, SEC40);
  6234. phyerr->rf_info.pc_rssi_info[2].rssi_sec80 =
  6235. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 2, SEC80);
  6236. /* chain 3 */
  6237. phyerr->rf_info.pc_rssi_info[3].rssi_pri20 =
  6238. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, PRI20);
  6239. phyerr->rf_info.pc_rssi_info[3].rssi_sec20 =
  6240. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, SEC20);
  6241. phyerr->rf_info.pc_rssi_info[3].rssi_sec40 =
  6242. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, SEC40);
  6243. phyerr->rf_info.pc_rssi_info[3].rssi_sec80 =
  6244. WMI_UNIFIED_RSSI_CHAN_GET(&ev->hdr, 3, SEC80);
  6245. phyerr->chan_info.center_freq1 =
  6246. WMI_UNIFIED_FREQ_INFO_GET(&ev->hdr, 1);
  6247. phyerr->chan_info.center_freq2 =
  6248. WMI_UNIFIED_FREQ_INFO_GET(&ev->hdr, 2);
  6249. }
  6250. }
  6251. #endif /* ATH_SUPPORT_SPECTRAL */
  6252. /*
  6253. * Advance the buffer pointer to the next PHY error.
  6254. * buflen is the length of this payload, so we need to
  6255. * advance past the current header _AND_ the payload.
  6256. */
  6257. n += sizeof(*ev) + ev->hdr.buf_len;
  6258. }
  6259. *buf_offset = n;
  6260. return QDF_STATUS_SUCCESS;
  6261. }
  6262. /**
  6263. * extract_composite_phyerr_non_tlv() - extract composite phy error from event
  6264. * @wmi_handle: wmi handle
  6265. * @param evt_buf: pointer to event buffer
  6266. * @param datalen: Length of event buffer
  6267. * @param phyerr: Pointer to hold phy error
  6268. *
  6269. * Return: 0 for success or error code
  6270. */
  6271. QDF_STATUS extract_composite_phyerr_non_tlv(wmi_unified_t wmi_handle,
  6272. void *evt_buf,
  6273. uint16_t datalen, wmi_host_phyerr_t *phyerr)
  6274. {
  6275. wmi_composite_phyerr_rx_event *pe;
  6276. wmi_composite_phyerr_rx_hdr *ph;
  6277. /* Ensure it's at least the size of the header */
  6278. if (datalen < sizeof(*pe)) {
  6279. return QDF_STATUS_E_FAILURE;
  6280. /* XXX what should errors be? */
  6281. }
  6282. pe = (wmi_composite_phyerr_rx_event *) evt_buf;
  6283. ph = &pe->hdr;
  6284. /*
  6285. * Reconstruct the 64 bit event TSF. This isn't from the MAC, it's
  6286. * at the time the event was sent to us, the TSF value will be
  6287. * in the future.
  6288. */
  6289. phyerr->tsf64 = ph->tsf_l32;
  6290. phyerr->tsf64 |= (((uint64_t) ph->tsf_u32) << 32);
  6291. phyerr->tsf_timestamp = ph->tsf_timestamp;
  6292. phyerr->bufp = &pe->bufp[0];
  6293. phyerr->buf_len = ph->buf_len;
  6294. phyerr->phy_err_mask0 = ph->phy_err_mask0;
  6295. phyerr->phy_err_mask1 = ph->phy_err_mask1;
  6296. phyerr->rf_info.rssi_comb =
  6297. WMI_UNIFIED_RSSI_COMB_GET(ph);
  6298. /* Handle Spectral PHY Error */
  6299. if ((ph->phy_err_mask0 & WMI_HOST_AR900B_SPECTRAL_PHYERR_MASK)) {
  6300. #if ATH_SUPPORT_SPECTRAL
  6301. if (ph->buf_len > 0) {
  6302. /* Initialize the NF values to Zero. */
  6303. phyerr->rf_info.noise_floor[0] =
  6304. WMI_UNIFIED_NF_CHAIN_GET(ph, 0);
  6305. phyerr->rf_info.noise_floor[1] =
  6306. WMI_UNIFIED_NF_CHAIN_GET(ph, 1);
  6307. phyerr->rf_info.noise_floor[2] =
  6308. WMI_UNIFIED_NF_CHAIN_GET(ph, 2);
  6309. phyerr->rf_info.noise_floor[3] =
  6310. WMI_UNIFIED_NF_CHAIN_GET(ph, 3);
  6311. /* populate the rf info */
  6312. /* Need to unroll loop due to macro constraints */
  6313. /* chain 0 */
  6314. phyerr->rf_info.pc_rssi_info[0].rssi_pri20 =
  6315. WMI_UNIFIED_RSSI_CHAN_GET(ph, 0, PRI20);
  6316. phyerr->rf_info.pc_rssi_info[0].rssi_sec20 =
  6317. WMI_UNIFIED_RSSI_CHAN_GET(ph, 0, SEC20);
  6318. phyerr->rf_info.pc_rssi_info[0].rssi_sec40 =
  6319. WMI_UNIFIED_RSSI_CHAN_GET(ph, 0, SEC40);
  6320. phyerr->rf_info.pc_rssi_info[0].rssi_sec80 =
  6321. WMI_UNIFIED_RSSI_CHAN_GET(ph, 0, SEC80);
  6322. /* chain 1 */
  6323. phyerr->rf_info.pc_rssi_info[1].rssi_pri20 =
  6324. WMI_UNIFIED_RSSI_CHAN_GET(ph, 1, PRI20);
  6325. phyerr->rf_info.pc_rssi_info[1].rssi_sec20 =
  6326. WMI_UNIFIED_RSSI_CHAN_GET(ph, 1, SEC20);
  6327. phyerr->rf_info.pc_rssi_info[1].rssi_sec40 =
  6328. WMI_UNIFIED_RSSI_CHAN_GET(ph, 1, SEC40);
  6329. phyerr->rf_info.pc_rssi_info[1].rssi_sec80 =
  6330. WMI_UNIFIED_RSSI_CHAN_GET(ph, 1, SEC80);
  6331. /* chain 2 */
  6332. phyerr->rf_info.pc_rssi_info[2].rssi_pri20 =
  6333. WMI_UNIFIED_RSSI_CHAN_GET(ph, 2, PRI20);
  6334. phyerr->rf_info.pc_rssi_info[2].rssi_sec20 =
  6335. WMI_UNIFIED_RSSI_CHAN_GET(ph, 2, SEC20);
  6336. phyerr->rf_info.pc_rssi_info[2].rssi_sec40 =
  6337. WMI_UNIFIED_RSSI_CHAN_GET(ph, 2, SEC40);
  6338. phyerr->rf_info.pc_rssi_info[2].rssi_sec80 =
  6339. WMI_UNIFIED_RSSI_CHAN_GET(ph, 2, SEC80);
  6340. /* chain 3 */
  6341. phyerr->rf_info.pc_rssi_info[3].rssi_pri20 =
  6342. WMI_UNIFIED_RSSI_CHAN_GET(ph, 3, PRI20);
  6343. phyerr->rf_info.pc_rssi_info[3].rssi_sec20 =
  6344. WMI_UNIFIED_RSSI_CHAN_GET(ph, 3, SEC20);
  6345. phyerr->rf_info.pc_rssi_info[3].rssi_sec40 =
  6346. WMI_UNIFIED_RSSI_CHAN_GET(ph, 3, SEC40);
  6347. phyerr->rf_info.pc_rssi_info[3].rssi_sec80 =
  6348. WMI_UNIFIED_RSSI_CHAN_GET(ph, 3, SEC80);
  6349. phyerr->chan_info.center_freq1 =
  6350. WMI_UNIFIED_FREQ_INFO_GET(ph, 1);
  6351. phyerr->chan_info.center_freq2 =
  6352. WMI_UNIFIED_FREQ_INFO_GET(ph, 2);
  6353. }
  6354. #endif /* ATH_SUPPORT_SPECTRAL */
  6355. }
  6356. return QDF_STATUS_SUCCESS;
  6357. }
  6358. /**
  6359. * extract_all_stats_counts_non_tlv() - extract all stats count from event
  6360. * @wmi_handle: wmi handle
  6361. * @param evt_buf: pointer to event buffer
  6362. * @param stats_param: Pointer to hold stats count
  6363. *
  6364. * Return: 0 for success or error code
  6365. */
  6366. static QDF_STATUS extract_all_stats_counts_non_tlv(wmi_unified_t wmi_handle,
  6367. void *evt_buf,
  6368. wmi_host_stats_event *stats_param)
  6369. {
  6370. wmi_stats_event *ev = (wmi_stats_event *) evt_buf;
  6371. switch (ev->stats_id) {
  6372. case WMI_REQUEST_PEER_STAT:
  6373. stats_param->stats_id |= WMI_HOST_REQUEST_PEER_STAT;
  6374. break;
  6375. case WMI_REQUEST_AP_STAT:
  6376. stats_param->stats_id |= WMI_HOST_REQUEST_AP_STAT;
  6377. break;
  6378. case WMI_REQUEST_INST_STAT:
  6379. stats_param->stats_id |= WMI_HOST_REQUEST_INST_STAT;
  6380. break;
  6381. case WMI_REQUEST_PEER_EXTD_STAT:
  6382. stats_param->stats_id |= WMI_HOST_REQUEST_PEER_EXTD_STAT;
  6383. break;
  6384. case WMI_REQUEST_VDEV_EXTD_STAT:
  6385. stats_param->stats_id |= WMI_HOST_REQUEST_VDEV_EXTD_STAT;
  6386. break;
  6387. default:
  6388. stats_param->stats_id = 0;
  6389. break;
  6390. }
  6391. stats_param->num_pdev_stats = ev->num_pdev_stats;
  6392. stats_param->num_pdev_ext_stats = ev->num_pdev_ext_stats;
  6393. stats_param->num_vdev_stats = ev->num_vdev_stats;
  6394. stats_param->num_peer_stats = ev->num_peer_stats;
  6395. stats_param->num_bcnflt_stats = ev->num_bcnflt_stats;
  6396. stats_param->num_chan_stats = 0;
  6397. return QDF_STATUS_SUCCESS;
  6398. }
  6399. /**
  6400. * extract_pdev_stats_non_tlv() - extract pdev stats from event
  6401. * @wmi_handle: wmi handle
  6402. * @param evt_buf: pointer to event buffer
  6403. * @param index: Index into pdev stats
  6404. * @param pdev_stats: Pointer to hold pdev stats
  6405. *
  6406. * Return: 0 for success or error code
  6407. */
  6408. static QDF_STATUS extract_pdev_stats_non_tlv(wmi_unified_t wmi_handle,
  6409. void *evt_buf,
  6410. uint32_t index, wmi_host_pdev_stats *pdev_stats)
  6411. {
  6412. if (index < ((wmi_stats_event *)evt_buf)->num_pdev_stats) {
  6413. wmi_pdev_stats *ev =
  6414. (wmi_pdev_stats *) ((((wmi_stats_event *)evt_buf)->data) +
  6415. (index * sizeof(wmi_pdev_stats)));
  6416. /* direct copy possible since wmi_host_pdev_stats is same as
  6417. * wmi_pdev_stats for non-tlv */
  6418. /* qdf_mem_copy(pdev_stats, ev, sizeof(wmi_pdev_stats));*/
  6419. pdev_stats->chan_nf = ev->chan_nf;
  6420. pdev_stats->tx_frame_count = ev->tx_frame_count;
  6421. pdev_stats->rx_frame_count = ev->rx_frame_count;
  6422. pdev_stats->rx_clear_count = ev->rx_clear_count;
  6423. pdev_stats->cycle_count = ev->cycle_count;
  6424. pdev_stats->phy_err_count = ev->phy_err_count;
  6425. pdev_stats->chan_tx_pwr = ev->chan_tx_pwr;
  6426. #define tx_stats (pdev_stats->pdev_stats.tx)
  6427. #define ev_tx_stats (ev->pdev_stats.tx)
  6428. /* Tx Stats */
  6429. tx_stats.comp_queued = ev_tx_stats.comp_queued;
  6430. tx_stats.comp_delivered = ev_tx_stats.comp_delivered;
  6431. tx_stats.msdu_enqued = ev_tx_stats.msdu_enqued;
  6432. tx_stats.mpdu_enqued = ev_tx_stats.mpdu_enqued;
  6433. tx_stats.wmm_drop = ev_tx_stats.wmm_drop;
  6434. tx_stats.local_enqued = ev_tx_stats.local_enqued;
  6435. tx_stats.local_freed = ev_tx_stats.local_freed;
  6436. tx_stats.hw_queued = ev_tx_stats.hw_queued;
  6437. tx_stats.hw_reaped = ev_tx_stats.hw_reaped;
  6438. tx_stats.underrun = ev_tx_stats.underrun;
  6439. tx_stats.hw_paused = ev_tx_stats.hw_paused;
  6440. tx_stats.tx_abort = ev_tx_stats.tx_abort;
  6441. tx_stats.mpdus_requed = ev_tx_stats.mpdus_requed;
  6442. tx_stats.tx_xretry = ev_tx_stats.tx_xretry;
  6443. tx_stats.data_rc = ev_tx_stats.data_rc;
  6444. tx_stats.self_triggers = ev_tx_stats.self_triggers;
  6445. tx_stats.sw_retry_failure = ev_tx_stats.sw_retry_failure;
  6446. tx_stats.illgl_rate_phy_err = ev_tx_stats.illgl_rate_phy_err;
  6447. tx_stats.pdev_cont_xretry = ev_tx_stats.pdev_cont_xretry;
  6448. tx_stats.pdev_tx_timeout = ev_tx_stats.pdev_tx_timeout;
  6449. tx_stats.pdev_resets = ev_tx_stats.pdev_resets;
  6450. tx_stats.stateless_tid_alloc_failure =
  6451. ev_tx_stats.stateless_tid_alloc_failure;
  6452. tx_stats.phy_underrun = ev_tx_stats.phy_underrun;
  6453. tx_stats.txop_ovf = ev_tx_stats.txop_ovf;
  6454. tx_stats.seq_posted = ev_tx_stats.seq_posted;
  6455. tx_stats.seq_failed_queueing = ev_tx_stats.seq_failed_queueing;
  6456. tx_stats.seq_completed = ev_tx_stats.seq_completed;
  6457. tx_stats.seq_restarted = ev_tx_stats.seq_restarted;
  6458. tx_stats.mu_seq_posted = ev_tx_stats.mu_seq_posted;
  6459. tx_stats.mpdus_sw_flush = ev_tx_stats.mpdus_sw_flush;
  6460. tx_stats.mpdus_hw_filter = ev_tx_stats.mpdus_hw_filter;
  6461. tx_stats.mpdus_truncated = ev_tx_stats.mpdus_truncated;
  6462. tx_stats.mpdus_ack_failed = ev_tx_stats.mpdus_ack_failed;
  6463. tx_stats.mpdus_expired = ev_tx_stats.mpdus_expired;
  6464. /* Only NON-TLV */
  6465. tx_stats.mc_drop = ev_tx_stats.mc_drop;
  6466. /* Only TLV */
  6467. tx_stats.tx_ko = 0;
  6468. #define rx_stats (pdev_stats->pdev_stats.rx)
  6469. #define ev_rx_stats (ev->pdev_stats.rx)
  6470. /* Rx Stats */
  6471. rx_stats.mid_ppdu_route_change =
  6472. ev_rx_stats.mid_ppdu_route_change;
  6473. rx_stats.status_rcvd = ev_rx_stats.status_rcvd;
  6474. rx_stats.r0_frags = ev_rx_stats.r0_frags;
  6475. rx_stats.r1_frags = ev_rx_stats.r1_frags;
  6476. rx_stats.r2_frags = ev_rx_stats.r2_frags;
  6477. /* Only TLV */
  6478. rx_stats.r3_frags = 0;
  6479. rx_stats.htt_msdus = ev_rx_stats.htt_msdus;
  6480. rx_stats.htt_mpdus = ev_rx_stats.htt_mpdus;
  6481. rx_stats.loc_msdus = ev_rx_stats.loc_msdus;
  6482. rx_stats.loc_mpdus = ev_rx_stats.loc_mpdus;
  6483. rx_stats.oversize_amsdu = ev_rx_stats.oversize_amsdu;
  6484. rx_stats.phy_errs = ev_rx_stats.phy_errs;
  6485. rx_stats.phy_err_drop = ev_rx_stats.phy_err_drop;
  6486. rx_stats.mpdu_errs = ev_rx_stats.mpdu_errs;
  6487. rx_stats.pdev_rx_timeout = ev_rx_stats.pdev_rx_timeout;
  6488. rx_stats.rx_ovfl_errs = ev_rx_stats.rx_ovfl_errs;
  6489. /* mem stats */
  6490. pdev_stats->pdev_stats.mem.iram_free_size =
  6491. ev->pdev_stats.mem.iram_free_size;
  6492. pdev_stats->pdev_stats.mem.dram_free_size =
  6493. ev->pdev_stats.mem.dram_free_size;
  6494. /* Only Non-TLV */
  6495. pdev_stats->pdev_stats.mem.sram_free_size =
  6496. ev->pdev_stats.mem.sram_free_size;
  6497. /* Peer stats */
  6498. /* Only TLV */
  6499. pdev_stats->pdev_stats.peer.dummy = 0;
  6500. /* Only NON-TLV */
  6501. pdev_stats->ackRcvBad = ev->ackRcvBad;
  6502. pdev_stats->rtsBad = ev->rtsBad;
  6503. pdev_stats->rtsGood = ev->rtsGood;
  6504. pdev_stats->fcsBad = ev->fcsBad;
  6505. pdev_stats->noBeacons = ev->noBeacons;
  6506. pdev_stats->mib_int_count = ev->mib_int_count;
  6507. }
  6508. return QDF_STATUS_SUCCESS;
  6509. }
  6510. /**
  6511. * extract_pdev_ext_stats_non_tlv() - extract extended pdev stats from event
  6512. * @wmi_handle: wmi handle
  6513. * @param evt_buf: pointer to event buffer
  6514. * @param index: Index into extended pdev stats
  6515. * @param pdev_ext_stats: Pointer to hold extended pdev stats
  6516. *
  6517. * Return: 0 for success or error code
  6518. */
  6519. static QDF_STATUS extract_pdev_ext_stats_non_tlv(wmi_unified_t wmi_handle,
  6520. void *evt_buf,
  6521. uint32_t index, wmi_host_pdev_ext_stats *pdev_ext_stats)
  6522. {
  6523. if (index < ((wmi_stats_event *)evt_buf)->num_pdev_ext_stats) {
  6524. wmi_pdev_ext_stats *ev =
  6525. (wmi_pdev_ext_stats *) ((((wmi_stats_event *)evt_buf)->data) +
  6526. ((((wmi_stats_event *)evt_buf)->num_pdev_stats) *
  6527. sizeof(wmi_pdev_stats)) +
  6528. (index * sizeof(wmi_pdev_ext_stats)));
  6529. /* Copy content to event->data */
  6530. OS_MEMCPY(pdev_ext_stats, ev, sizeof(wmi_pdev_ext_stats));
  6531. }
  6532. return QDF_STATUS_SUCCESS;
  6533. }
  6534. /**
  6535. * extract_vdev_stats_non_tlv() - extract vdev stats from event
  6536. * @wmi_handle: wmi handle
  6537. * @param evt_buf: pointer to event buffer
  6538. * @param index: Index into vdev stats
  6539. * @param vdev_stats: Pointer to hold vdev stats
  6540. *
  6541. * Return: 0 for success or error code
  6542. */
  6543. static QDF_STATUS extract_vdev_stats_non_tlv(wmi_unified_t wmi_handle,
  6544. void *evt_buf, uint32_t index, wmi_host_vdev_stats *vdev_stats)
  6545. {
  6546. if (index < ((wmi_stats_event *)evt_buf)->num_vdev_stats) {
  6547. wmi_vdev_stats *ev =
  6548. (wmi_vdev_stats *) ((((wmi_stats_event *)evt_buf)->data) +
  6549. ((((wmi_stats_event *)evt_buf)->num_pdev_stats) *
  6550. sizeof(wmi_pdev_stats)) +
  6551. ((((wmi_stats_event *)evt_buf)->num_pdev_ext_stats) *
  6552. sizeof(wmi_pdev_ext_stats)) +
  6553. (index * sizeof(wmi_vdev_stats)));
  6554. OS_MEMSET(vdev_stats, 0, sizeof(wmi_host_vdev_stats));
  6555. vdev_stats->vdev_id = ev->vdev_id;
  6556. }
  6557. return QDF_STATUS_SUCCESS;
  6558. }
  6559. /**
  6560. * extract_peer_stats_non_tlv() - extract peer stats from event
  6561. * @wmi_handle: wmi handle
  6562. * @param evt_buf: pointer to event buffer
  6563. * @param index: Index into peer stats
  6564. * @param peer_stats: Pointer to hold peer stats
  6565. *
  6566. * Return: 0 for success or error code
  6567. */
  6568. static QDF_STATUS extract_peer_stats_non_tlv(wmi_unified_t wmi_handle,
  6569. void *evt_buf, uint32_t index, wmi_host_peer_stats *peer_stats)
  6570. {
  6571. if (index < ((wmi_stats_event *)evt_buf)->num_peer_stats) {
  6572. wmi_peer_stats *ev =
  6573. (wmi_peer_stats *) ((((wmi_stats_event *)evt_buf)->data) +
  6574. ((((wmi_stats_event *)evt_buf)->num_pdev_stats) *
  6575. sizeof(wmi_pdev_stats)) +
  6576. ((((wmi_stats_event *)evt_buf)->num_pdev_ext_stats) *
  6577. sizeof(wmi_pdev_ext_stats)) +
  6578. ((((wmi_stats_event *)evt_buf)->num_vdev_stats) *
  6579. sizeof(wmi_vdev_stats)) +
  6580. (index * sizeof(wmi_peer_stats)));
  6581. OS_MEMCPY(&(peer_stats->peer_macaddr), &(ev->peer_macaddr),
  6582. sizeof(wmi_mac_addr));
  6583. peer_stats->peer_rssi = ev->peer_rssi;
  6584. peer_stats->peer_rssi_seq_num = ev->peer_rssi_seq_num;
  6585. peer_stats->peer_tx_rate = ev->peer_tx_rate;
  6586. peer_stats->peer_rx_rate = ev->peer_rx_rate;
  6587. peer_stats->currentper = ev->currentper;
  6588. peer_stats->retries = ev->retries;
  6589. peer_stats->txratecount = ev->txratecount;
  6590. peer_stats->max4msframelen = ev->max4msframelen;
  6591. peer_stats->totalsubframes = ev->totalsubframes;
  6592. peer_stats->txbytes = ev->txbytes;
  6593. OS_MEMCPY(peer_stats->nobuffs, ev->nobuffs,
  6594. sizeof(peer_stats->nobuffs));
  6595. OS_MEMCPY(peer_stats->excretries, ev->excretries,
  6596. sizeof(peer_stats->excretries));
  6597. peer_stats->peer_rssi_changed = ev->peer_rssi_changed;
  6598. }
  6599. return QDF_STATUS_SUCCESS;
  6600. }
  6601. /**
  6602. * extract_bcnflt_stats_non_tlv() - extract bcn fault stats from event
  6603. * @wmi_handle: wmi handle
  6604. * @param evt_buf: pointer to event buffer
  6605. * @param index: Index into bcn fault stats
  6606. * @param bcnflt_stats: Pointer to hold bcn fault stats
  6607. *
  6608. * Return: 0 for success or error code
  6609. */
  6610. static QDF_STATUS extract_bcnflt_stats_non_tlv(wmi_unified_t wmi_handle,
  6611. void *evt_buf, uint32_t index, wmi_host_bcnflt_stats *bcnflt_stats)
  6612. {
  6613. return QDF_STATUS_SUCCESS;
  6614. }
  6615. /**
  6616. * extract_peer_extd_stats_non_tlv() - extract extended peer stats from event
  6617. * @wmi_handle: wmi handle
  6618. * @param evt_buf: pointer to event buffer
  6619. * @param index: Index into extended peer stats
  6620. * @param peer_extd_stats: Pointer to hold extended peer stats
  6621. *
  6622. * Return: 0 for success or error code
  6623. */
  6624. static QDF_STATUS extract_peer_extd_stats_non_tlv(wmi_unified_t wmi_handle,
  6625. void *evt_buf, uint32_t index,
  6626. wmi_host_peer_extd_stats *peer_extd_stats)
  6627. {
  6628. if (WMI_REQUEST_PEER_EXTD_STAT &
  6629. ((wmi_stats_event *)evt_buf)->stats_id) {
  6630. if (index < ((wmi_stats_event *)evt_buf)->num_peer_stats) {
  6631. wmi_peer_extd_stats *ev = (wmi_peer_extd_stats *)
  6632. ((((wmi_stats_event *)evt_buf)->data) +
  6633. ((((wmi_stats_event *)evt_buf)->num_pdev_stats) *
  6634. sizeof(wmi_pdev_stats)) +
  6635. ((((wmi_stats_event *)evt_buf)->num_pdev_ext_stats) *
  6636. sizeof(wmi_pdev_ext_stats)) +
  6637. ((((wmi_stats_event *)evt_buf)->num_vdev_stats) *
  6638. sizeof(wmi_vdev_stats)) +
  6639. ((((wmi_stats_event *)evt_buf)->num_peer_stats) *
  6640. sizeof(wmi_peer_stats)) +
  6641. (index * sizeof(wmi_peer_extd_stats)));
  6642. OS_MEMCPY(peer_extd_stats, ev,
  6643. sizeof(wmi_host_peer_extd_stats));
  6644. }
  6645. }
  6646. return QDF_STATUS_SUCCESS;
  6647. }
  6648. /**
  6649. * extract_vdev_extd_stats_non_tlv() - extract extended vdev stats from event
  6650. * @wmi_handle: wmi handle
  6651. * @param evt_buf: pointer to event buffer
  6652. * @param index: Index into extended vdev stats
  6653. * @param vdev_extd_stats: Pointer to hold extended vdev stats
  6654. *
  6655. * Return: 0 for success or error code
  6656. */
  6657. static QDF_STATUS extract_vdev_extd_stats_non_tlv(wmi_unified_t wmi_handle,
  6658. void *evt_buf, uint32_t index,
  6659. wmi_host_vdev_extd_stats *vdev_extd_stats)
  6660. {
  6661. if (WMI_REQUEST_PEER_EXTD_STAT &
  6662. ((wmi_stats_event *)evt_buf)->stats_id) {
  6663. if (index < ((wmi_stats_event *)evt_buf)->num_vdev_stats) {
  6664. wmi_vdev_extd_stats *ev = (wmi_vdev_extd_stats *)
  6665. ((((wmi_stats_event *)evt_buf)->data) +
  6666. ((((wmi_stats_event *)evt_buf)->num_pdev_stats) *
  6667. sizeof(wmi_pdev_stats)) +
  6668. ((((wmi_stats_event *)evt_buf)->num_pdev_ext_stats) *
  6669. sizeof(wmi_pdev_ext_stats)) +
  6670. ((((wmi_stats_event *)evt_buf)->num_vdev_stats) *
  6671. sizeof(wmi_vdev_stats)) +
  6672. ((((wmi_stats_event *)evt_buf)->num_peer_stats) *
  6673. sizeof(wmi_peer_stats)) +
  6674. ((((wmi_stats_event *)evt_buf)->num_peer_stats) *
  6675. sizeof(wmi_peer_extd_stats)) +
  6676. (index * sizeof(wmi_vdev_extd_stats)));
  6677. OS_MEMCPY(vdev_extd_stats, ev,
  6678. sizeof(wmi_host_vdev_extd_stats));
  6679. }
  6680. }
  6681. return QDF_STATUS_SUCCESS;
  6682. }
  6683. /**
  6684. * extract_chan_stats_non_tlv() - extract chan stats from event
  6685. * @wmi_handle: wmi handle
  6686. * @param evt_buf: pointer to event buffer
  6687. * @param index: Index into chan stats
  6688. * @param vdev_extd_stats: Pointer to hold chan stats
  6689. *
  6690. * Return: 0 for success or error code
  6691. */
  6692. static QDF_STATUS extract_chan_stats_non_tlv(wmi_unified_t wmi_handle,
  6693. void *evt_buf,
  6694. uint32_t index, wmi_host_chan_stats *chan_stats)
  6695. {
  6696. /* Non-TLV doesnt have num_chan_stats */
  6697. return QDF_STATUS_SUCCESS;
  6698. }
  6699. /**
  6700. * extract_profile_ctx_non_tlv() - extract profile context from event
  6701. * @wmi_handle: wmi handle
  6702. * @param evt_buf: pointer to event buffer
  6703. * @param profile_ctx: Pointer to hold profile context
  6704. *
  6705. * Return: 0 for success or error code
  6706. */
  6707. static QDF_STATUS extract_profile_ctx_non_tlv(wmi_unified_t wmi_handle,
  6708. void *evt_buf,
  6709. wmi_host_wlan_profile_ctx_t *profile_ctx)
  6710. {
  6711. wmi_profile_stats_event *profile_ev =
  6712. (wmi_profile_stats_event *)evt_buf;
  6713. qdf_mem_copy(profile_ctx, &(profile_ev->profile_ctx),
  6714. sizeof(wmi_host_wlan_profile_ctx_t));
  6715. return QDF_STATUS_SUCCESS;
  6716. }
  6717. /**
  6718. * extract_profile_data_non_tlv() - extract profile data from event
  6719. * @wmi_handle: wmi handle
  6720. * @param evt_buf: pointer to event buffer
  6721. * @param profile_data: Pointer to hold profile data
  6722. *
  6723. * Return: 0 for success or error code
  6724. */
  6725. static QDF_STATUS extract_profile_data_non_tlv(wmi_unified_t wmi_handle,
  6726. void *evt_buf, uint8_t idx,
  6727. wmi_host_wlan_profile_t *profile_data)
  6728. {
  6729. wmi_profile_stats_event *profile_ev =
  6730. (wmi_profile_stats_event *)evt_buf;
  6731. if (idx > profile_ev->profile_ctx.bin_count)
  6732. return QDF_STATUS_E_INVAL;
  6733. qdf_mem_copy(profile_data, &profile_ev->profile_data[idx],
  6734. sizeof(wmi_host_wlan_profile_t));
  6735. return QDF_STATUS_SUCCESS;
  6736. }
  6737. /**
  6738. * extract_chan_info_event_non_tlv() - extract chan information from event
  6739. * @wmi_handle: wmi handle
  6740. * @param evt_buf: pointer to event buffer
  6741. * @param chan_info: Pointer to hold chan information
  6742. *
  6743. * Return: 0 for success or error code
  6744. */
  6745. static QDF_STATUS extract_chan_info_event_non_tlv(wmi_unified_t wmi_handle,
  6746. void *evt_buf,
  6747. wmi_host_chan_info_event *chan_info)
  6748. {
  6749. wmi_chan_info_event *chan_info_ev = (wmi_chan_info_event *)evt_buf;
  6750. chan_info->err_code = chan_info_ev->err_code;
  6751. chan_info->freq = chan_info_ev->freq;
  6752. chan_info->cmd_flags = chan_info_ev->cmd_flags;
  6753. chan_info->noise_floor = chan_info_ev->noise_floor;
  6754. chan_info->rx_clear_count = chan_info_ev->rx_clear_count;
  6755. chan_info->cycle_count = chan_info_ev->cycle_count;
  6756. chan_info->rx_11b_mode_data_duration =
  6757. chan_info_ev->rx_11b_mode_data_duration;
  6758. /* ONLY NON-TLV */
  6759. chan_info->chan_tx_pwr_range = chan_info_ev->chan_tx_pwr_range;
  6760. chan_info->chan_tx_pwr_tp = chan_info_ev->chan_tx_pwr_tp;
  6761. chan_info->rx_frame_count = chan_info_ev->rx_frame_count;
  6762. return QDF_STATUS_SUCCESS;
  6763. }
  6764. /**
  6765. * extract_channel_hopping_event_non_tlv() - extract channel hopping param
  6766. * from event
  6767. * @wmi_handle: wmi handle
  6768. * @param evt_buf: pointer to event buffer
  6769. * @param ch_hopping: Pointer to hold channel hopping param
  6770. *
  6771. * Return: 0 for success or error code
  6772. */
  6773. static QDF_STATUS extract_channel_hopping_event_non_tlv(
  6774. wmi_unified_t wmi_handle, void *evt_buf,
  6775. wmi_host_pdev_channel_hopping_event *ch_hopping)
  6776. {
  6777. wmi_pdev_channel_hopping_event *event =
  6778. (wmi_pdev_channel_hopping_event *)evt_buf;
  6779. ch_hopping->noise_floor_report_iter = event->noise_floor_report_iter;
  6780. ch_hopping->noise_floor_total_iter = event->noise_floor_total_iter;
  6781. return QDF_STATUS_SUCCESS;
  6782. }
  6783. /**
  6784. * extract_bss_chan_info_event_non_tlv() - extract bss channel information
  6785. * from event
  6786. * @wmi_handle: wmi handle
  6787. * @param evt_buf: pointer to event buffer
  6788. * @param bss_chan_info: Pointer to hold bss channel information
  6789. *
  6790. * Return: 0 for success or error code
  6791. */
  6792. static QDF_STATUS extract_bss_chan_info_event_non_tlv(wmi_unified_t wmi_handle,
  6793. void *evt_buf, wmi_host_pdev_bss_chan_info_event *bss_chan_info)
  6794. {
  6795. wmi_pdev_bss_chan_info_event *event =
  6796. (wmi_pdev_bss_chan_info_event *)evt_buf;
  6797. qdf_mem_copy(bss_chan_info, event,
  6798. sizeof(wmi_pdev_bss_chan_info_event));
  6799. return QDF_STATUS_SUCCESS;
  6800. }
  6801. /**
  6802. * extract_inst_rssi_stats_event_non_tlv() - extract inst rssi stats from event
  6803. * @wmi_handle: wmi handle
  6804. * @param evt_buf: pointer to event buffer
  6805. * @param inst_rssi_resp: Pointer to hold inst rssi response
  6806. *
  6807. * Return: 0 for success or error code
  6808. */
  6809. static QDF_STATUS extract_inst_rssi_stats_event_non_tlv(
  6810. wmi_unified_t wmi_handle, void *evt_buf,
  6811. wmi_host_inst_stats_resp *inst_rssi_resp)
  6812. {
  6813. wmi_inst_stats_resp *event = (wmi_inst_stats_resp *)evt_buf;
  6814. qdf_mem_copy(inst_rssi_resp, event, sizeof(wmi_inst_stats_resp));
  6815. return QDF_STATUS_SUCCESS;
  6816. }
  6817. /**
  6818. * extract_tx_data_traffic_ctrl_ev_non_tlv() - extract tx data traffic control
  6819. * from event
  6820. * @wmi_handle: wmi handle
  6821. * @param evt_buf: pointer to event buffer
  6822. * @param ev: Pointer to hold data traffic control
  6823. *
  6824. * Return: 0 for success or error code
  6825. */
  6826. static QDF_STATUS extract_tx_data_traffic_ctrl_ev_non_tlv(
  6827. wmi_unified_t wmi_handle, void *evt_buf,
  6828. wmi_host_tx_data_traffic_ctrl_event *ev)
  6829. {
  6830. wmi_tx_data_traffic_ctrl_event *evt =
  6831. (wmi_tx_data_traffic_ctrl_event *)evt_buf;
  6832. ev->peer_ast_idx = evt->peer_ast_idx;
  6833. ev->vdev_id = evt->vdev_id;
  6834. ev->ctrl_cmd = evt->ctrl_cmd;
  6835. return QDF_STATUS_SUCCESS;
  6836. }
  6837. /**
  6838. * extract_atf_peer_stats_ev_non_tlv() - extract atf peer stats
  6839. * from event
  6840. * @wmi_handle: wmi handle
  6841. * @param evt_buf: pointer to event buffer
  6842. * @param ev: Pointer to hold atf stats event data
  6843. *
  6844. * Return: 0 for success or error code
  6845. */
  6846. static QDF_STATUS extract_atf_peer_stats_ev_non_tlv(
  6847. wmi_unified_t wmi_handle, void *evt_buf,
  6848. wmi_host_atf_peer_stats_event *ev)
  6849. {
  6850. wmi_atf_peer_stats_event *evt =
  6851. (wmi_atf_peer_stats_event *)evt_buf;
  6852. ev->num_atf_peers = evt->num_atf_peers;
  6853. ev->comp_usable_airtime = evt->comp_usable_airtime;
  6854. qdf_mem_copy(&ev->reserved[0], &evt->reserved[0],
  6855. sizeof(evt->reserved));
  6856. return QDF_STATUS_SUCCESS;
  6857. }
  6858. /**
  6859. * extract_atf_token_info_ev_non_tlv() - extract atf token info
  6860. * from event
  6861. * @wmi_handle: wmi handle
  6862. * @param evt_buf: pointer to event buffer
  6863. * @idx: Index indicating the peer number
  6864. * @param atf_token_info: Pointer to hold atf token info
  6865. *
  6866. * Return: 0 for success or error code
  6867. */
  6868. static QDF_STATUS extract_atf_token_info_ev_non_tlv(
  6869. wmi_unified_t wmi_handle, void *evt_buf,
  6870. uint8_t idx, wmi_host_atf_peer_stats_info *atf_token_info)
  6871. {
  6872. wmi_atf_peer_stats_event *evt =
  6873. (wmi_atf_peer_stats_event *)evt_buf;
  6874. if (idx > evt->num_atf_peers)
  6875. return QDF_STATUS_E_INVAL;
  6876. atf_token_info->field1 = evt->token_info_list[idx].field1;
  6877. atf_token_info->field2 = evt->token_info_list[idx].field2;
  6878. atf_token_info->field3 = evt->token_info_list[idx].field3;
  6879. return QDF_STATUS_SUCCESS;
  6880. }
  6881. #ifdef WMI_INTERFACE_EVENT_LOGGING
  6882. static bool is_management_record_non_tlv(uint32_t cmd_id)
  6883. {
  6884. if ((cmd_id == WMI_BCN_TX_CMDID) ||
  6885. (cmd_id == WMI_PDEV_SEND_BCN_CMDID) ||
  6886. (cmd_id == WMI_MGMT_TX_CMDID) ||
  6887. (cmd_id == WMI_GPIO_OUTPUT_CMDID) ||
  6888. (cmd_id == WMI_HOST_SWBA_EVENTID)) {
  6889. return true;
  6890. }
  6891. return false;
  6892. }
  6893. #endif
  6894. struct wmi_ops non_tlv_ops = {
  6895. .send_vdev_create_cmd = send_vdev_create_cmd_non_tlv,
  6896. .send_vdev_delete_cmd = send_vdev_delete_cmd_non_tlv,
  6897. .send_vdev_down_cmd = send_vdev_down_cmd_non_tlv,
  6898. .send_peer_flush_tids_cmd = send_peer_flush_tids_cmd_non_tlv,
  6899. .send_peer_param_cmd = send_peer_param_cmd_non_tlv,
  6900. .send_vdev_up_cmd = send_vdev_up_cmd_non_tlv,
  6901. .send_peer_create_cmd = send_peer_create_cmd_non_tlv,
  6902. .send_peer_delete_cmd = send_peer_delete_cmd_non_tlv,
  6903. .send_green_ap_ps_cmd = send_green_ap_ps_cmd_non_tlv,
  6904. .send_pdev_utf_cmd = send_pdev_utf_cmd_non_tlv,
  6905. .send_pdev_param_cmd = send_pdev_param_cmd_non_tlv,
  6906. .send_suspend_cmd = send_suspend_cmd_non_tlv,
  6907. .send_resume_cmd = send_resume_cmd_non_tlv,
  6908. .send_wow_enable_cmd = send_wow_enable_cmd_non_tlv,
  6909. .send_set_ap_ps_param_cmd = send_set_ap_ps_param_cmd_non_tlv,
  6910. .send_set_sta_ps_param_cmd = send_set_sta_ps_param_cmd_non_tlv,
  6911. .send_crash_inject_cmd = send_crash_inject_cmd_non_tlv,
  6912. .send_dbglog_cmd = send_dbglog_cmd_non_tlv,
  6913. .send_vdev_set_param_cmd = send_vdev_set_param_cmd_non_tlv,
  6914. .send_stats_request_cmd = send_stats_request_cmd_non_tlv,
  6915. .send_packet_log_enable_cmd = send_packet_log_enable_cmd_non_tlv,
  6916. .send_packet_log_disable_cmd = send_packet_log_disable_cmd_non_tlv,
  6917. .send_beacon_send_cmd = send_beacon_send_cmd_non_tlv,
  6918. .send_peer_assoc_cmd = send_peer_assoc_cmd_non_tlv,
  6919. .send_scan_start_cmd = send_scan_start_cmd_non_tlv,
  6920. .send_scan_stop_cmd = send_scan_stop_cmd_non_tlv,
  6921. .send_scan_chan_list_cmd = send_scan_chan_list_cmd_non_tlv,
  6922. .send_pdev_get_tpc_config_cmd = send_pdev_get_tpc_config_cmd_non_tlv,
  6923. .send_set_atf_cmd = send_set_atf_cmd_non_tlv,
  6924. .send_atf_peer_request_cmd = send_atf_peer_request_cmd_non_tlv,
  6925. .send_set_atf_grouping_cmd = send_set_atf_grouping_cmd_non_tlv,
  6926. .send_set_bwf_cmd = send_set_bwf_cmd_non_tlv,
  6927. .send_pdev_fips_cmd = send_pdev_fips_cmd_non_tlv,
  6928. .send_wlan_profile_enable_cmd = send_wlan_profile_enable_cmd_non_tlv,
  6929. .send_wlan_profile_trigger_cmd = send_wlan_profile_trigger_cmd_non_tlv,
  6930. .send_pdev_set_chan_cmd = send_pdev_set_chan_cmd_non_tlv,
  6931. .send_set_ht_ie_cmd = send_set_ht_ie_cmd_non_tlv,
  6932. .send_set_vht_ie_cmd = send_set_vht_ie_cmd_non_tlv,
  6933. .send_wmm_update_cmd = send_wmm_update_cmd_non_tlv,
  6934. .send_set_ant_switch_tbl_cmd = send_set_ant_switch_tbl_cmd_non_tlv,
  6935. .send_set_ratepwr_table_cmd = send_set_ratepwr_table_cmd_non_tlv,
  6936. .send_get_ratepwr_table_cmd = send_get_ratepwr_table_cmd_non_tlv,
  6937. .send_set_ctl_table_cmd = send_set_ctl_table_cmd_non_tlv,
  6938. .send_set_mimogain_table_cmd = send_set_mimogain_table_cmd_non_tlv,
  6939. .send_set_ratepwr_chainmsk_cmd = send_set_ratepwr_chainmsk_cmd_non_tlv,
  6940. .send_set_macaddr_cmd = send_set_macaddr_cmd_non_tlv,
  6941. .send_pdev_scan_start_cmd = send_pdev_scan_start_cmd_non_tlv,
  6942. .send_pdev_scan_end_cmd = send_pdev_scan_end_cmd_non_tlv,
  6943. .send_set_acparams_cmd = send_set_acparams_cmd_non_tlv,
  6944. .send_set_vap_dscp_tid_map_cmd = send_set_vap_dscp_tid_map_cmd_non_tlv,
  6945. .send_proxy_ast_reserve_cmd = send_proxy_ast_reserve_cmd_non_tlv,
  6946. .send_pdev_qvit_cmd = send_pdev_qvit_cmd_non_tlv,
  6947. .send_mcast_group_update_cmd = send_mcast_group_update_cmd_non_tlv,
  6948. .send_peer_add_wds_entry_cmd = send_peer_add_wds_entry_cmd_non_tlv,
  6949. .send_peer_del_wds_entry_cmd = send_peer_del_wds_entry_cmd_non_tlv,
  6950. .send_peer_update_wds_entry_cmd =
  6951. send_peer_update_wds_entry_cmd_non_tlv,
  6952. .send_phyerr_enable_cmd = send_phyerr_enable_cmd_non_tlv,
  6953. .send_phyerr_disable_cmd = send_phyerr_disable_cmd_non_tlv,
  6954. .send_smart_ant_enable_cmd = send_smart_ant_enable_cmd_non_tlv,
  6955. .send_smart_ant_set_rx_ant_cmd = send_smart_ant_set_rx_ant_cmd_non_tlv,
  6956. .send_smart_ant_set_tx_ant_cmd = send_smart_ant_set_tx_ant_cmd_non_tlv,
  6957. .send_smart_ant_set_training_info_cmd =
  6958. send_smart_ant_set_training_info_cmd_non_tlv,
  6959. .send_smart_ant_set_node_config_cmd =
  6960. send_smart_ant_set_node_config_cmd_non_tlv,
  6961. .send_smart_ant_enable_tx_feedback_cmd =
  6962. send_smart_ant_enable_tx_feedback_cmd_non_tlv,
  6963. .send_vdev_spectral_configure_cmd =
  6964. send_vdev_spectral_configure_cmd_non_tlv,
  6965. .send_vdev_spectral_enable_cmd =
  6966. send_vdev_spectral_enable_cmd_non_tlv,
  6967. .send_bss_chan_info_request_cmd =
  6968. send_bss_chan_info_request_cmd_non_tlv,
  6969. .send_thermal_mitigation_param_cmd =
  6970. send_thermal_mitigation_param_cmd_non_tlv,
  6971. .send_vdev_start_cmd = send_vdev_start_cmd_non_tlv,
  6972. .send_vdev_stop_cmd = send_vdev_stop_cmd_non_tlv,
  6973. .send_vdev_set_neighbour_rx_cmd =
  6974. send_vdev_set_neighbour_rx_cmd_non_tlv,
  6975. .send_vdev_set_fwtest_param_cmd =
  6976. send_vdev_set_fwtest_param_cmd_non_tlv,
  6977. .send_vdev_config_ratemask_cmd = send_vdev_config_ratemask_cmd_non_tlv,
  6978. .send_vdev_install_key_cmd = send_vdev_install_key_cmd_non_tlv,
  6979. .send_wow_wakeup_cmd = send_wow_wakeup_cmd_non_tlv,
  6980. .send_wow_add_wakeup_event_cmd = send_wow_add_wakeup_event_cmd_non_tlv,
  6981. .send_wow_add_wakeup_pattern_cmd =
  6982. send_wow_add_wakeup_pattern_cmd_non_tlv,
  6983. .send_wow_remove_wakeup_pattern_cmd =
  6984. send_wow_remove_wakeup_pattern_cmd_non_tlv,
  6985. .send_pdev_set_regdomain_cmd =
  6986. send_pdev_set_regdomain_cmd_non_tlv,
  6987. .send_set_quiet_mode_cmd = send_set_quiet_mode_cmd_non_tlv,
  6988. .send_set_beacon_filter_cmd = send_set_beacon_filter_cmd_non_tlv,
  6989. .send_remove_beacon_filter_cmd = send_remove_beacon_filter_cmd_non_tlv,
  6990. .send_mgmt_cmd = send_mgmt_cmd_non_tlv,
  6991. .send_addba_clearresponse_cmd = send_addba_clearresponse_cmd_non_tlv,
  6992. .send_addba_send_cmd = send_addba_send_cmd_non_tlv,
  6993. .send_delba_send_cmd = send_delba_send_cmd_non_tlv,
  6994. .send_addba_setresponse_cmd = send_addba_setresponse_cmd_non_tlv,
  6995. .send_singleamsdu_cmd = send_singleamsdu_cmd_non_tlv,
  6996. .send_set_qboost_param_cmd = send_set_qboost_param_cmd_non_tlv,
  6997. .send_mu_scan_cmd = send_mu_scan_cmd_non_tlv,
  6998. .send_lteu_config_cmd = send_lteu_config_cmd_non_tlv,
  6999. .send_set_ps_mode_cmd = send_set_ps_mode_cmd_non_tlv,
  7000. .init_cmd_send = init_cmd_send_non_tlv,
  7001. .send_ext_resource_config = send_ext_resource_config_non_tlv,
  7002. #if 0
  7003. .send_bcn_prb_template_cmd = send_bcn_prb_template_cmd_non_tlv,
  7004. #endif
  7005. .send_nf_dbr_dbm_info_get_cmd = send_nf_dbr_dbm_info_get_cmd_non_tlv,
  7006. .send_packet_power_info_get_cmd =
  7007. send_packet_power_info_get_cmd_non_tlv,
  7008. .send_gpio_config_cmd = send_gpio_config_cmd_non_tlv,
  7009. .send_gpio_output_cmd = send_gpio_output_cmd_non_tlv,
  7010. .send_rtt_meas_req_test_cmd = send_rtt_meas_req_test_cmd_non_tlv,
  7011. .send_rtt_meas_req_cmd = send_rtt_meas_req_cmd_non_tlv,
  7012. .send_lci_set_cmd = send_lci_set_cmd_non_tlv,
  7013. .send_lcr_set_cmd = send_lcr_set_cmd_non_tlv,
  7014. .send_start_oem_data_cmd = send_start_oem_data_cmd_non_tlv,
  7015. .send_rtt_keepalive_req_cmd = send_rtt_keepalive_req_cmd_non_tlv,
  7016. .send_periodic_chan_stats_config_cmd =
  7017. send_periodic_chan_stats_config_cmd_non_tlv,
  7018. .send_get_user_position_cmd = send_get_user_position_cmd_non_tlv,
  7019. .send_reset_peer_mumimo_tx_count_cmd =
  7020. send_reset_peer_mumimo_tx_count_cmd_non_tlv,
  7021. .send_get_peer_mumimo_tx_count_cmd =
  7022. send_get_peer_mumimo_tx_count_cmd_non_tlv,
  7023. .send_pdev_caldata_version_check_cmd =
  7024. send_pdev_caldata_version_check_cmd_non_tlv,
  7025. .send_btcoex_wlan_priority_cmd = send_btcoex_wlan_priority_cmd_non_tlv,
  7026. .get_target_cap_from_service_ready = extract_service_ready_non_tlv,
  7027. .extract_fw_version = extract_fw_version_non_tlv,
  7028. .extract_fw_abi_version = extract_fw_abi_version_non_tlv,
  7029. .extract_hal_reg_cap = extract_hal_reg_cap_non_tlv,
  7030. .extract_host_mem_req = extract_host_mem_req_non_tlv,
  7031. .save_service_bitmap = save_service_bitmap_non_tlv,
  7032. .is_service_enabled = is_service_enabled_non_tlv,
  7033. .save_fw_version = save_fw_version_in_service_ready_non_tlv,
  7034. .check_and_update_fw_version =
  7035. ready_check_and_update_fw_version_non_tlv,
  7036. .extract_dbglog_data_len = extract_dbglog_data_len_non_tlv,
  7037. .ready_extract_init_status = ready_extract_init_status_non_tlv,
  7038. .ready_extract_mac_addr = ready_extract_mac_addr_non_tlv,
  7039. .extract_wds_addr_event = extract_wds_addr_event_non_tlv,
  7040. .extract_dcs_interference_type = extract_dcs_interference_type_non_tlv,
  7041. .extract_dcs_cw_int = extract_dcs_cw_int_non_tlv,
  7042. .extract_dcs_im_tgt_stats = extract_dcs_im_tgt_stats_non_tlv,
  7043. .extract_vdev_start_resp = extract_vdev_start_resp_non_tlv,
  7044. .extract_tbttoffset_update_params =
  7045. extract_tbttoffset_update_params_non_tlv,
  7046. .extract_mgmt_rx_params = extract_mgmt_rx_params_non_tlv,
  7047. .extract_vdev_stopped_param = extract_vdev_stopped_param_non_tlv,
  7048. .extract_vdev_roam_param = extract_vdev_roam_param_non_tlv,
  7049. .extract_vdev_scan_ev_param = extract_vdev_scan_ev_param_non_tlv,
  7050. .extract_mu_ev_param = extract_mu_ev_param_non_tlv,
  7051. .extract_pdev_tpc_config_ev_param =
  7052. extract_pdev_tpc_config_ev_param_non_tlv,
  7053. .extract_nfcal_power_ev_param = extract_nfcal_power_ev_param_non_tlv,
  7054. .extract_pdev_tpc_ev_param = extract_pdev_tpc_ev_param_non_tlv,
  7055. .extract_pdev_generic_buffer_ev_param =
  7056. extract_pdev_generic_buffer_ev_param_non_tlv,
  7057. .extract_gpio_input_ev_param = extract_gpio_input_ev_param_non_tlv,
  7058. .extract_pdev_reserve_ast_ev_param =
  7059. extract_pdev_reserve_ast_ev_param_non_tlv,
  7060. .extract_swba_vdev_map = extract_swba_vdev_map_non_tlv,
  7061. .extract_swba_tim_info = extract_swba_tim_info_non_tlv,
  7062. .extract_swba_noa_info = extract_swba_noa_info_non_tlv,
  7063. .extract_peer_sta_ps_statechange_ev =
  7064. extract_peer_sta_ps_statechange_ev_non_tlv,
  7065. .extract_peer_sta_kickout_ev = extract_peer_sta_kickout_ev_non_tlv,
  7066. .extract_peer_ratecode_list_ev = extract_peer_ratecode_list_ev_non_tlv,
  7067. .extract_comb_phyerr = extract_comb_phyerr_non_tlv,
  7068. .extract_single_phyerr = extract_single_phyerr_non_tlv,
  7069. .extract_composite_phyerr = extract_composite_phyerr_non_tlv,
  7070. .extract_rtt_hdr = extract_rtt_hdr_non_tlv,
  7071. .extract_rtt_ev = extract_rtt_ev_non_tlv,
  7072. .extract_rtt_error_report_ev = extract_rtt_error_report_ev_non_tlv,
  7073. .extract_all_stats_count = extract_all_stats_counts_non_tlv,
  7074. .extract_pdev_stats = extract_pdev_stats_non_tlv,
  7075. .extract_pdev_ext_stats = extract_pdev_ext_stats_non_tlv,
  7076. .extract_vdev_stats = extract_vdev_stats_non_tlv,
  7077. .extract_peer_stats = extract_peer_stats_non_tlv,
  7078. .extract_bcnflt_stats = extract_bcnflt_stats_non_tlv,
  7079. .extract_peer_extd_stats = extract_peer_extd_stats_non_tlv,
  7080. .extract_chan_stats = extract_chan_stats_non_tlv,
  7081. .extract_thermal_stats = extract_thermal_stats_non_tlv,
  7082. .extract_thermal_level_stats = extract_thermal_level_stats_non_tlv,
  7083. .extract_profile_ctx = extract_profile_ctx_non_tlv,
  7084. .extract_profile_data = extract_profile_data_non_tlv,
  7085. .extract_chan_info_event = extract_chan_info_event_non_tlv,
  7086. .extract_channel_hopping_event = extract_channel_hopping_event_non_tlv,
  7087. .extract_bss_chan_info_event = extract_bss_chan_info_event_non_tlv,
  7088. .extract_inst_rssi_stats_event = extract_inst_rssi_stats_event_non_tlv,
  7089. .extract_tx_data_traffic_ctrl_ev =
  7090. extract_tx_data_traffic_ctrl_ev_non_tlv,
  7091. .extract_vdev_extd_stats = extract_vdev_extd_stats_non_tlv,
  7092. .extract_fips_event_data = extract_fips_event_data_non_tlv,
  7093. .extract_fips_event_error_status =
  7094. extract_fips_event_error_status_non_tlv,
  7095. .extract_mumimo_tx_count_ev_param =
  7096. extract_mumimo_tx_count_ev_param_non_tlv,
  7097. .extract_peer_gid_userpos_list_ev_param =
  7098. extract_peer_gid_userpos_list_ev_param_non_tlv,
  7099. .extract_pdev_caldata_version_check_ev_param =
  7100. extract_pdev_caldata_version_check_ev_param_non_tlv,
  7101. .extract_mu_db_entry = extract_mu_db_entry_non_tlv,
  7102. .extract_atf_peer_stats_ev = extract_atf_peer_stats_ev_non_tlv,
  7103. .extract_atf_token_info_ev = extract_atf_token_info_ev_non_tlv,
  7104. };
  7105. /**
  7106. * populate_non_tlv_service() - populates wmi services
  7107. *
  7108. * @param wmi_service: Pointer to hold wmi_service
  7109. * Return: None
  7110. */
  7111. static void populate_non_tlv_service(uint32_t *wmi_service)
  7112. {
  7113. wmi_service[wmi_service_beacon_offload] = WMI_SERVICE_BEACON_OFFLOAD;
  7114. wmi_service[wmi_service_scan_offload] = WMI_SERVICE_SCAN_OFFLOAD;
  7115. wmi_service[wmi_service_roam_offload] = WMI_SERVICE_ROAM_OFFLOAD;
  7116. wmi_service[wmi_service_bcn_miss_offload] =
  7117. WMI_SERVICE_BCN_MISS_OFFLOAD;
  7118. wmi_service[wmi_service_sta_pwrsave] = WMI_SERVICE_STA_PWRSAVE;
  7119. wmi_service[wmi_service_sta_advanced_pwrsave] =
  7120. WMI_SERVICE_STA_ADVANCED_PWRSAVE;
  7121. wmi_service[wmi_service_ap_uapsd] = WMI_SERVICE_AP_UAPSD;
  7122. wmi_service[wmi_service_ap_dfs] = WMI_SERVICE_AP_DFS;
  7123. wmi_service[wmi_service_11ac] = WMI_SERVICE_11AC;
  7124. wmi_service[wmi_service_blockack] = WMI_SERVICE_BLOCKACK;
  7125. wmi_service[wmi_service_phyerr] = WMI_SERVICE_PHYERR;
  7126. wmi_service[wmi_service_bcn_filter] = WMI_SERVICE_BCN_FILTER;
  7127. wmi_service[wmi_service_rtt] = WMI_SERVICE_RTT;
  7128. wmi_service[wmi_service_ratectrl] = WMI_SERVICE_RATECTRL;
  7129. wmi_service[wmi_service_wow] = WMI_SERVICE_WOW;
  7130. wmi_service[wmi_service_ratectrl_cache] = WMI_SERVICE_RATECTRL_CACHE;
  7131. wmi_service[wmi_service_iram_tids] = WMI_SERVICE_IRAM_TIDS;
  7132. wmi_service[wmi_service_burst] = WMI_SERVICE_BURST;
  7133. wmi_service[wmi_service_smart_antenna_sw_support] =
  7134. WMI_SERVICE_SMART_ANTENNA_SW_SUPPORT;
  7135. wmi_service[wmi_service_gtk_offload] = WMI_SERVICE_GTK_OFFLOAD;
  7136. wmi_service[wmi_service_scan_sch] = WMI_SERVICE_SCAN_SCH;
  7137. wmi_service[wmi_service_csa_offload] = WMI_SERVICE_CSA_OFFLOAD;
  7138. wmi_service[wmi_service_chatter] = WMI_SERVICE_CHATTER;
  7139. wmi_service[wmi_service_coex_freqavoid] = WMI_SERVICE_COEX_FREQAVOID;
  7140. wmi_service[wmi_service_packet_power_save] =
  7141. WMI_SERVICE_PACKET_POWER_SAVE;
  7142. wmi_service[wmi_service_force_fw_hang] = WMI_SERVICE_FORCE_FW_HANG;
  7143. wmi_service[wmi_service_smart_antenna_hw_support] =
  7144. WMI_SERVICE_SMART_ANTENNA_HW_SUPPORT;
  7145. wmi_service[wmi_service_gpio] = WMI_SERVICE_GPIO;
  7146. wmi_service[wmi_sta_uapsd_basic_auto_trig] =
  7147. WMI_STA_UAPSD_BASIC_AUTO_TRIG;
  7148. wmi_service[wmi_sta_uapsd_var_auto_trig] = WMI_STA_UAPSD_VAR_AUTO_TRIG;
  7149. wmi_service[wmi_service_sta_keep_alive] = WMI_SERVICE_STA_KEEP_ALIVE;
  7150. wmi_service[wmi_service_tx_encap] = WMI_SERVICE_TX_ENCAP;
  7151. wmi_service[wmi_service_ap_ps_detect_out_of_sync] =
  7152. WMI_SERVICE_AP_PS_DETECT_OUT_OF_SYNC;
  7153. wmi_service[wmi_service_early_rx] =
  7154. WMI_SERVICE_EARLY_RX;
  7155. wmi_service[wmi_service_enhanced_proxy_sta] =
  7156. WMI_SERVICE_ENHANCED_PROXY_STA;
  7157. wmi_service[wmi_service_tt] = WMI_SERVICE_TT;
  7158. wmi_service[wmi_service_atf] = WMI_SERVICE_ATF;
  7159. wmi_service[wmi_service_peer_caching] = WMI_SERVICE_PEER_CACHING;
  7160. wmi_service[wmi_service_coex_gpio] = WMI_SERVICE_COEX_GPIO;
  7161. wmi_service[wmi_service_aux_spectral_intf] =
  7162. WMI_SERVICE_AUX_SPECTRAL_INTF;
  7163. wmi_service[wmi_service_aux_chan_load_intf] =
  7164. WMI_SERVICE_AUX_CHAN_LOAD_INTF;
  7165. wmi_service[wmi_service_bss_channel_info_64] =
  7166. WMI_SERVICE_BSS_CHANNEL_INFO_64;
  7167. wmi_service[wmi_service_ext_res_cfg_support] =
  7168. WMI_SERVICE_EXT_RES_CFG_SUPPORT;
  7169. wmi_service[wmi_service_mesh] = WMI_SERVICE_MESH;
  7170. wmi_service[wmi_service_restrt_chnl_support] =
  7171. WMI_SERVICE_RESTRT_CHNL_SUPPORT;
  7172. wmi_service[wmi_service_peer_stats] = WMI_SERVICE_PEER_STATS;
  7173. wmi_service[wmi_service_mesh_11s] = WMI_SERVICE_MESH_11S;
  7174. wmi_service[wmi_service_periodic_chan_stat_support] =
  7175. WMI_SERVICE_PERIODIC_CHAN_STAT_SUPPORT;
  7176. wmi_service[wmi_service_tx_mode_push_only] =
  7177. WMI_SERVICE_TX_MODE_PUSH_ONLY;
  7178. wmi_service[wmi_service_tx_mode_push_pull] =
  7179. WMI_SERVICE_TX_MODE_PUSH_PULL;
  7180. wmi_service[wmi_service_tx_mode_dynamic] = WMI_SERVICE_TX_MODE_DYNAMIC;
  7181. wmi_service[wmi_service_check_cal_version] =
  7182. WMI_SERVICE_CHECK_CAL_VERSION;
  7183. wmi_service[wmi_service_roam_scan_offload] = WMI_SERVICE_UNAVAILABLE;
  7184. wmi_service[wmi_service_arpns_offload] = WMI_SERVICE_UNAVAILABLE;
  7185. wmi_service[wmi_service_nlo] = WMI_SERVICE_UNAVAILABLE;
  7186. wmi_service[wmi_service_sta_dtim_ps_modulated_dtim] =
  7187. WMI_SERVICE_UNAVAILABLE;
  7188. wmi_service[wmi_service_sta_smps] = WMI_SERVICE_UNAVAILABLE;
  7189. wmi_service[wmi_service_fwtest] = WMI_SERVICE_UNAVAILABLE;
  7190. wmi_service[wmi_service_sta_wmmac] = WMI_SERVICE_UNAVAILABLE;
  7191. wmi_service[wmi_service_tdls] = WMI_SERVICE_UNAVAILABLE;
  7192. wmi_service[wmi_service_mcc_bcn_interval_change] =
  7193. WMI_SERVICE_UNAVAILABLE;
  7194. wmi_service[wmi_service_adaptive_ocs] = WMI_SERVICE_UNAVAILABLE;
  7195. wmi_service[wmi_service_ba_ssn_support] = WMI_SERVICE_UNAVAILABLE;
  7196. wmi_service[wmi_service_filter_ipsec_natkeepalive] =
  7197. WMI_SERVICE_UNAVAILABLE;
  7198. wmi_service[wmi_service_wlan_hb] = WMI_SERVICE_UNAVAILABLE;
  7199. wmi_service[wmi_service_lte_ant_share_support] =
  7200. WMI_SERVICE_UNAVAILABLE;
  7201. wmi_service[wmi_service_batch_scan] = WMI_SERVICE_UNAVAILABLE;
  7202. wmi_service[wmi_service_qpower] = WMI_SERVICE_UNAVAILABLE;
  7203. wmi_service[wmi_service_plmreq] = WMI_SERVICE_UNAVAILABLE;
  7204. wmi_service[wmi_service_thermal_mgmt] = WMI_SERVICE_UNAVAILABLE;
  7205. wmi_service[wmi_service_rmc] = WMI_SERVICE_UNAVAILABLE;
  7206. wmi_service[wmi_service_mhf_offload] = WMI_SERVICE_UNAVAILABLE;
  7207. wmi_service[wmi_service_coex_sar] = WMI_SERVICE_UNAVAILABLE;
  7208. wmi_service[wmi_service_bcn_txrate_override] = WMI_SERVICE_UNAVAILABLE;
  7209. wmi_service[wmi_service_nan] = WMI_SERVICE_UNAVAILABLE;
  7210. wmi_service[wmi_service_l1ss_stat] = WMI_SERVICE_UNAVAILABLE;
  7211. wmi_service[wmi_service_estimate_linkspeed] = WMI_SERVICE_UNAVAILABLE;
  7212. wmi_service[wmi_service_obss_scan] = WMI_SERVICE_UNAVAILABLE;
  7213. wmi_service[wmi_service_tdls_offchan] = WMI_SERVICE_UNAVAILABLE;
  7214. wmi_service[wmi_service_tdls_uapsd_buffer_sta] =
  7215. WMI_SERVICE_UNAVAILABLE;
  7216. wmi_service[wmi_service_tdls_uapsd_sleep_sta] = WMI_SERVICE_UNAVAILABLE;
  7217. wmi_service[wmi_service_ibss_pwrsave] = WMI_SERVICE_UNAVAILABLE;
  7218. wmi_service[wmi_service_lpass] = WMI_SERVICE_UNAVAILABLE;
  7219. wmi_service[wmi_service_extscan] = WMI_SERVICE_UNAVAILABLE;
  7220. wmi_service[wmi_service_d0wow] = WMI_SERVICE_UNAVAILABLE;
  7221. wmi_service[wmi_service_hsoffload] = WMI_SERVICE_UNAVAILABLE;
  7222. wmi_service[wmi_service_roam_ho_offload] = WMI_SERVICE_UNAVAILABLE;
  7223. wmi_service[wmi_service_rx_full_reorder] = WMI_SERVICE_UNAVAILABLE;
  7224. wmi_service[wmi_service_dhcp_offload] = WMI_SERVICE_UNAVAILABLE;
  7225. wmi_service[wmi_service_sta_rx_ipa_offload_support] =
  7226. WMI_SERVICE_UNAVAILABLE;
  7227. wmi_service[wmi_service_mdns_offload] = WMI_SERVICE_UNAVAILABLE;
  7228. wmi_service[wmi_service_sap_auth_offload] = WMI_SERVICE_UNAVAILABLE;
  7229. wmi_service[wmi_service_dual_band_simultaneous_support] =
  7230. WMI_SERVICE_UNAVAILABLE;
  7231. wmi_service[wmi_service_ocb] = WMI_SERVICE_UNAVAILABLE;
  7232. wmi_service[wmi_service_ap_arpns_offload] = WMI_SERVICE_UNAVAILABLE;
  7233. wmi_service[wmi_service_per_band_chainmask_support] =
  7234. WMI_SERVICE_UNAVAILABLE;
  7235. wmi_service[wmi_service_packet_filter_offload] =
  7236. WMI_SERVICE_UNAVAILABLE;
  7237. wmi_service[wmi_service_mgmt_tx_htt] = WMI_SERVICE_UNAVAILABLE;
  7238. wmi_service[wmi_service_mgmt_tx_wmi] = WMI_SERVICE_UNAVAILABLE;
  7239. wmi_service[wmi_service_ext_msg] = WMI_SERVICE_UNAVAILABLE;
  7240. wmi_service[wmi_service_mawc] = WMI_SERVICE_UNAVAILABLE;
  7241. }
  7242. /**
  7243. * populate_non_tlv_event_id() - populates wmi event ids
  7244. *
  7245. * @param event_ids: Pointer to hold event ids
  7246. * Return: None
  7247. */
  7248. static void populate_non_tlv_events_id(uint32_t *event_ids)
  7249. {
  7250. event_ids[wmi_service_ready_event_id] = WMI_SERVICE_READY_EVENTID;
  7251. event_ids[wmi_ready_event_id] = WMI_READY_EVENTID;
  7252. event_ids[wmi_dbg_msg_event_id] = WMI_DEBUG_MESG_EVENTID;
  7253. event_ids[wmi_scan_event_id] = WMI_SCAN_EVENTID;
  7254. event_ids[wmi_echo_event_id] = WMI_ECHO_EVENTID;
  7255. event_ids[wmi_update_stats_event_id] = WMI_UPDATE_STATS_EVENTID;
  7256. event_ids[wmi_inst_rssi_stats_event_id] = WMI_INST_RSSI_STATS_EVENTID;
  7257. event_ids[wmi_vdev_start_resp_event_id] = WMI_VDEV_START_RESP_EVENTID;
  7258. event_ids[wmi_vdev_standby_req_event_id] = WMI_VDEV_STANDBY_REQ_EVENTID;
  7259. event_ids[wmi_vdev_resume_req_event_id] = WMI_VDEV_RESUME_REQ_EVENTID;
  7260. event_ids[wmi_vdev_stopped_event_id] = WMI_VDEV_STOPPED_EVENTID;
  7261. event_ids[wmi_peer_sta_kickout_event_id] = WMI_PEER_STA_KICKOUT_EVENTID;
  7262. event_ids[wmi_host_swba_event_id] = WMI_HOST_SWBA_EVENTID;
  7263. event_ids[wmi_tbttoffset_update_event_id] =
  7264. WMI_TBTTOFFSET_UPDATE_EVENTID;
  7265. event_ids[wmi_mgmt_rx_event_id] = WMI_MGMT_RX_EVENTID;
  7266. event_ids[wmi_chan_info_event_id] = WMI_CHAN_INFO_EVENTID;
  7267. event_ids[wmi_phyerr_event_id] = WMI_PHYERR_EVENTID;
  7268. event_ids[wmi_roam_event_id] = WMI_ROAM_EVENTID;
  7269. event_ids[wmi_profile_match] = WMI_PROFILE_MATCH;
  7270. event_ids[wmi_debug_print_event_id] = WMI_DEBUG_PRINT_EVENTID;
  7271. event_ids[wmi_pdev_qvit_event_id] = WMI_PDEV_QVIT_EVENTID;
  7272. event_ids[wmi_wlan_profile_data_event_id] =
  7273. WMI_WLAN_PROFILE_DATA_EVENTID;
  7274. event_ids[wmi_rtt_meas_report_event_id] =
  7275. WMI_RTT_MEASUREMENT_REPORT_EVENTID;
  7276. event_ids[wmi_tsf_meas_report_event_id] =
  7277. WMI_TSF_MEASUREMENT_REPORT_EVENTID;
  7278. event_ids[wmi_rtt_error_report_event_id] = WMI_RTT_ERROR_REPORT_EVENTID;
  7279. event_ids[wmi_rtt_keepalive_event_id] = WMI_RTT_KEEPALIVE_EVENTID;
  7280. event_ids[wmi_oem_cap_event_id] = WMI_OEM_CAPABILITY_EVENTID;
  7281. event_ids[wmi_oem_meas_report_event_id] =
  7282. WMI_OEM_MEASUREMENT_REPORT_EVENTID;
  7283. event_ids[wmi_oem_report_event_id] = WMI_OEM_ERROR_REPORT_EVENTID;
  7284. event_ids[wmi_nan_event_id] = WMI_NAN_EVENTID;
  7285. event_ids[wmi_wow_wakeup_host_event_id] = WMI_WOW_WAKEUP_HOST_EVENTID;
  7286. event_ids[wmi_gtk_offload_status_event_id] =
  7287. WMI_GTK_OFFLOAD_STATUS_EVENTID;
  7288. event_ids[wmi_gtk_rekey_fail_event_id] = WMI_GTK_REKEY_FAIL_EVENTID;
  7289. event_ids[wmi_dcs_interference_event_id] = WMI_DCS_INTERFERENCE_EVENTID;
  7290. event_ids[wmi_pdev_tpc_config_event_id] = WMI_PDEV_TPC_CONFIG_EVENTID;
  7291. event_ids[wmi_csa_handling_event_id] = WMI_CSA_HANDLING_EVENTID;
  7292. event_ids[wmi_gpio_input_event_id] = WMI_GPIO_INPUT_EVENTID;
  7293. event_ids[wmi_peer_ratecode_list_event_id] =
  7294. WMI_PEER_RATECODE_LIST_EVENTID;
  7295. event_ids[wmi_generic_buffer_event_id] = WMI_GENERIC_BUFFER_EVENTID;
  7296. event_ids[wmi_mcast_buf_release_event_id] =
  7297. WMI_MCAST_BUF_RELEASE_EVENTID;
  7298. event_ids[wmi_mcast_list_ageout_event_id] =
  7299. WMI_MCAST_LIST_AGEOUT_EVENTID;
  7300. event_ids[wmi_vdev_get_keepalive_event_id] =
  7301. WMI_VDEV_GET_KEEPALIVE_EVENTID;
  7302. event_ids[wmi_wds_peer_event_id] = WMI_WDS_PEER_EVENTID;
  7303. event_ids[wmi_peer_sta_ps_statechg_event_id] =
  7304. WMI_PEER_STA_PS_STATECHG_EVENTID;
  7305. event_ids[wmi_pdev_fips_event_id] = WMI_PDEV_FIPS_EVENTID;
  7306. event_ids[wmi_tt_stats_event_id] = WMI_TT_STATS_EVENTID;
  7307. event_ids[wmi_pdev_channel_hopping_event_id] =
  7308. WMI_PDEV_CHANNEL_HOPPING_EVENTID;
  7309. event_ids[wmi_pdev_ani_cck_level_event_id] =
  7310. WMI_PDEV_ANI_CCK_LEVEL_EVENTID;
  7311. event_ids[wmi_pdev_ani_ofdm_level_event_id] =
  7312. WMI_PDEV_ANI_OFDM_LEVEL_EVENTID;
  7313. event_ids[wmi_pdev_reserve_ast_entry_event_id] =
  7314. WMI_PDEV_RESERVE_AST_ENTRY_EVENTID;
  7315. event_ids[wmi_pdev_nfcal_power_event_id] = WMI_PDEV_NFCAL_POWER_EVENTID;
  7316. event_ids[wmi_pdev_tpc_event_id] = WMI_PDEV_TPC_EVENTID;
  7317. event_ids[wmi_pdev_get_ast_info_event_id] =
  7318. WMI_PDEV_GET_AST_INFO_EVENTID;
  7319. event_ids[wmi_pdev_temperature_event_id] = WMI_PDEV_TEMPERATURE_EVENTID;
  7320. event_ids[wmi_pdev_nfcal_power_all_channels_event_id] =
  7321. WMI_PDEV_NFCAL_POWER_ALL_CHANNELS_EVENTID;
  7322. event_ids[wmi_pdev_bss_chan_info_event_id] =
  7323. WMI_PDEV_BSS_CHAN_INFO_EVENTID;
  7324. event_ids[wmi_mu_report_event_id] = WMI_MU_REPORT_EVENTID;
  7325. event_ids[wmi_tx_data_traffic_ctrl_event_id] =
  7326. WMI_TX_DATA_TRAFFIC_CTRL_EVENTID;
  7327. event_ids[wmi_pdev_utf_event_id] = WMI_PDEV_UTF_EVENTID;
  7328. event_ids[wmi_peer_tx_mu_txmit_count_event_id] =
  7329. WMI_PEER_TX_MU_TXMIT_COUNT_EVENTID;
  7330. event_ids[wmi_peer_gid_userpos_list_event_id] =
  7331. WMI_PEER_GID_USERPOS_LIST_EVENTID;
  7332. event_ids[wmi_pdev_check_cal_version_event_id] =
  7333. WMI_PDEV_CHECK_CAL_VERSION_EVENTID;
  7334. event_ids[wmi_atf_peer_stats_event_id] =
  7335. WMI_ATF_PEER_STATS_EVENTID;
  7336. }
  7337. /**
  7338. * populate_pdev_param_non_tlv() - populates pdev params
  7339. *
  7340. * @param pdev_param: Pointer to hold pdev params
  7341. * Return: None
  7342. */
  7343. static void populate_pdev_param_non_tlv(uint32_t *pdev_param)
  7344. {
  7345. pdev_param[wmi_pdev_param_tx_chain_mask] = WMI_PDEV_PARAM_TX_CHAIN_MASK;
  7346. pdev_param[wmi_pdev_param_rx_chain_mask] = WMI_PDEV_PARAM_RX_CHAIN_MASK;
  7347. pdev_param[wmi_pdev_param_txpower_limit2g] =
  7348. WMI_PDEV_PARAM_TXPOWER_LIMIT2G;
  7349. pdev_param[wmi_pdev_param_txpower_limit5g] =
  7350. WMI_PDEV_PARAM_TXPOWER_LIMIT5G;
  7351. pdev_param[wmi_pdev_param_txpower_scale] = WMI_PDEV_PARAM_TXPOWER_SCALE;
  7352. pdev_param[wmi_pdev_param_beacon_gen_mode] =
  7353. WMI_PDEV_PARAM_BEACON_GEN_MODE;
  7354. pdev_param[wmi_pdev_param_beacon_tx_mode] =
  7355. WMI_PDEV_PARAM_BEACON_TX_MODE;
  7356. pdev_param[wmi_pdev_param_resmgr_offchan_mode] =
  7357. WMI_PDEV_PARAM_RESMGR_OFFCHAN_MODE;
  7358. pdev_param[wmi_pdev_param_protection_mode] =
  7359. WMI_PDEV_PARAM_PROTECTION_MODE;
  7360. pdev_param[wmi_pdev_param_dynamic_bw] = WMI_PDEV_PARAM_DYNAMIC_BW;
  7361. pdev_param[wmi_pdev_param_non_agg_sw_retry_th] =
  7362. WMI_PDEV_PARAM_NON_AGG_SW_RETRY_TH;
  7363. pdev_param[wmi_pdev_param_agg_sw_retry_th] =
  7364. WMI_PDEV_PARAM_AGG_SW_RETRY_TH;
  7365. pdev_param[wmi_pdev_param_sta_kickout_th] =
  7366. WMI_PDEV_PARAM_STA_KICKOUT_TH;
  7367. pdev_param[wmi_pdev_param_ac_aggrsize_scaling] =
  7368. WMI_PDEV_PARAM_AC_AGGRSIZE_SCALING;
  7369. pdev_param[wmi_pdev_param_ltr_enable] = WMI_PDEV_PARAM_LTR_ENABLE;
  7370. pdev_param[wmi_pdev_param_ltr_ac_latency_be] =
  7371. WMI_PDEV_PARAM_LTR_AC_LATENCY_BE;
  7372. pdev_param[wmi_pdev_param_ltr_ac_latency_bk] =
  7373. WMI_PDEV_PARAM_LTR_AC_LATENCY_BK;
  7374. pdev_param[wmi_pdev_param_ltr_ac_latency_vi] =
  7375. WMI_PDEV_PARAM_LTR_AC_LATENCY_VI;
  7376. pdev_param[wmi_pdev_param_ltr_ac_latency_vo] =
  7377. WMI_PDEV_PARAM_LTR_AC_LATENCY_VO;
  7378. pdev_param[wmi_pdev_param_ltr_ac_latency_timeout] =
  7379. WMI_PDEV_PARAM_LTR_AC_LATENCY_TIMEOUT;
  7380. pdev_param[wmi_pdev_param_ltr_sleep_override] =
  7381. WMI_PDEV_PARAM_LTR_SLEEP_OVERRIDE;
  7382. pdev_param[wmi_pdev_param_ltr_rx_override] =
  7383. WMI_PDEV_PARAM_LTR_RX_OVERRIDE;
  7384. pdev_param[wmi_pdev_param_ltr_tx_activity_timeout] =
  7385. WMI_PDEV_PARAM_LTR_TX_ACTIVITY_TIMEOUT;
  7386. pdev_param[wmi_pdev_param_l1ss_enable] = WMI_PDEV_PARAM_L1SS_ENABLE;
  7387. pdev_param[wmi_pdev_param_dsleep_enable] = WMI_PDEV_PARAM_DSLEEP_ENABLE;
  7388. pdev_param[wmi_pdev_param_pcielp_txbuf_flush] =
  7389. WMI_PDEV_PARAM_PCIELP_TXBUF_FLUSH;
  7390. pdev_param[wmi_pdev_param_pcielp_txbuf_watermark] =
  7391. WMI_PDEV_PARAM_PCIELP_TXBUF_WATERMARK;
  7392. pdev_param[wmi_pdev_param_pcielp_txbuf_tmo_en] =
  7393. WMI_PDEV_PARAM_PCIELP_TXBUF_TMO_EN;
  7394. pdev_param[wmi_pdev_param_pcielp_txbuf_tmo_value] =
  7395. WMI_PDEV_PARAM_PCIELP_TXBUF_TMO_VALUE;
  7396. pdev_param[wmi_pdev_param_pdev_stats_update_period] =
  7397. WMI_PDEV_PARAM_PDEV_STATS_UPDATE_PERIOD;
  7398. pdev_param[wmi_pdev_param_vdev_stats_update_period] =
  7399. WMI_PDEV_PARAM_VDEV_STATS_UPDATE_PERIOD;
  7400. pdev_param[wmi_pdev_param_peer_stats_update_period] =
  7401. WMI_PDEV_PARAM_PEER_STATS_UPDATE_PERIOD;
  7402. pdev_param[wmi_pdev_param_bcnflt_stats_update_period] =
  7403. WMI_PDEV_PARAM_BCNFLT_STATS_UPDATE_PERIOD;
  7404. pdev_param[wmi_pdev_param_pmf_qos] =
  7405. WMI_PDEV_PARAM_PMF_QOS;
  7406. pdev_param[wmi_pdev_param_arp_ac_override] =
  7407. WMI_PDEV_PARAM_ARP_AC_OVERRIDE;
  7408. pdev_param[wmi_pdev_param_dcs] =
  7409. WMI_PDEV_PARAM_DCS;
  7410. pdev_param[wmi_pdev_param_ani_enable] = WMI_PDEV_PARAM_ANI_ENABLE;
  7411. pdev_param[wmi_pdev_param_ani_poll_period] =
  7412. WMI_PDEV_PARAM_ANI_POLL_PERIOD;
  7413. pdev_param[wmi_pdev_param_ani_listen_period] =
  7414. WMI_PDEV_PARAM_ANI_LISTEN_PERIOD;
  7415. pdev_param[wmi_pdev_param_ani_ofdm_level] =
  7416. WMI_PDEV_PARAM_ANI_OFDM_LEVEL;
  7417. pdev_param[wmi_pdev_param_ani_cck_level] = WMI_PDEV_PARAM_ANI_CCK_LEVEL;
  7418. pdev_param[wmi_pdev_param_dyntxchain] = WMI_PDEV_PARAM_DYNTXCHAIN;
  7419. pdev_param[wmi_pdev_param_proxy_sta] = WMI_PDEV_PARAM_PROXY_STA;
  7420. pdev_param[wmi_pdev_param_idle_ps_config] =
  7421. WMI_PDEV_PARAM_IDLE_PS_CONFIG;
  7422. pdev_param[wmi_pdev_param_power_gating_sleep] =
  7423. WMI_PDEV_PARAM_POWER_GATING_SLEEP;
  7424. pdev_param[wmi_pdev_param_aggr_burst] = WMI_PDEV_PARAM_AGGR_BURST;
  7425. pdev_param[wmi_pdev_param_rx_decap_mode] = WMI_PDEV_PARAM_RX_DECAP_MODE;
  7426. pdev_param[wmi_pdev_param_fast_channel_reset] =
  7427. WMI_PDEV_PARAM_FAST_CHANNEL_RESET;
  7428. pdev_param[wmi_pdev_param_burst_dur] = WMI_PDEV_PARAM_BURST_DUR;
  7429. pdev_param[wmi_pdev_param_burst_enable] = WMI_PDEV_PARAM_BURST_ENABLE;
  7430. pdev_param[wmi_pdev_param_smart_antenna_default_antenna] =
  7431. WMI_PDEV_PARAM_SMART_ANTENNA_DEFAULT_ANTENNA;
  7432. pdev_param[wmi_pdev_param_igmpmld_override] =
  7433. WMI_PDEV_PARAM_IGMPMLD_OVERRIDE;
  7434. pdev_param[wmi_pdev_param_igmpmld_tid] =
  7435. WMI_PDEV_PARAM_IGMPMLD_TID;
  7436. pdev_param[wmi_pdev_param_antenna_gain] = WMI_PDEV_PARAM_ANTENNA_GAIN;
  7437. pdev_param[wmi_pdev_param_rx_filter] = WMI_PDEV_PARAM_RX_FILTER;
  7438. pdev_param[wmi_pdev_set_mcast_to_ucast_tid] =
  7439. WMI_PDEV_SET_MCAST_TO_UCAST_TID;
  7440. pdev_param[wmi_pdev_param_proxy_sta_mode] =
  7441. WMI_PDEV_PARAM_PROXY_STA_MODE;
  7442. pdev_param[wmi_pdev_param_set_mcast2ucast_mode] =
  7443. WMI_PDEV_PARAM_SET_MCAST2UCAST_MODE;
  7444. pdev_param[wmi_pdev_param_set_mcast2ucast_buffer] =
  7445. WMI_PDEV_PARAM_SET_MCAST2UCAST_BUFFER;
  7446. pdev_param[wmi_pdev_param_remove_mcast2ucast_buffer] =
  7447. WMI_PDEV_PARAM_REMOVE_MCAST2UCAST_BUFFER;
  7448. pdev_param[wmi_pdev_peer_sta_ps_statechg_enable] =
  7449. WMI_PDEV_PEER_STA_PS_STATECHG_ENABLE;
  7450. pdev_param[wmi_pdev_param_igmpmld_ac_override] =
  7451. WMI_PDEV_PARAM_IGMPMLD_AC_OVERRIDE;
  7452. pdev_param[wmi_pdev_param_block_interbss] =
  7453. WMI_PDEV_PARAM_BLOCK_INTERBSS;
  7454. pdev_param[wmi_pdev_param_set_disable_reset_cmdid] =
  7455. WMI_PDEV_PARAM_SET_DISABLE_RESET_CMDID;
  7456. pdev_param[wmi_pdev_param_set_msdu_ttl_cmdid] =
  7457. WMI_PDEV_PARAM_SET_MSDU_TTL_CMDID;
  7458. pdev_param[wmi_pdev_param_set_ppdu_duration_cmdid] =
  7459. WMI_PDEV_PARAM_SET_PPDU_DURATION_CMDID;
  7460. pdev_param[wmi_pdev_param_txbf_sound_period_cmdid] =
  7461. WMI_PDEV_PARAM_TXBF_SOUND_PERIOD_CMDID;
  7462. pdev_param[wmi_pdev_param_set_promisc_mode_cmdid] =
  7463. WMI_PDEV_PARAM_SET_PROMISC_MODE_CMDID;
  7464. pdev_param[wmi_pdev_param_set_burst_mode_cmdid] =
  7465. WMI_PDEV_PARAM_SET_BURST_MODE_CMDID;
  7466. pdev_param[wmi_pdev_param_en_stats] = WMI_PDEV_PARAM_EN_STATS;
  7467. pdev_param[wmi_pdev_param_mu_group_policy] =
  7468. WMI_PDEV_PARAM_MU_GROUP_POLICY;
  7469. pdev_param[wmi_pdev_param_noise_detection] =
  7470. WMI_PDEV_PARAM_NOISE_DETECTION;
  7471. pdev_param[wmi_pdev_param_noise_threshold] =
  7472. WMI_PDEV_PARAM_NOISE_THRESHOLD;
  7473. pdev_param[wmi_pdev_param_dpd_enable] =
  7474. WMI_PDEV_PARAM_DPD_ENABLE;
  7475. pdev_param[wmi_pdev_param_set_mcast_bcast_echo] =
  7476. WMI_PDEV_PARAM_SET_MCAST_BCAST_ECHO;
  7477. pdev_param[wmi_pdev_param_atf_strict_sch] =
  7478. WMI_PDEV_PARAM_ATF_STRICT_SCH;
  7479. pdev_param[wmi_pdev_param_atf_sched_duration] =
  7480. WMI_PDEV_PARAM_ATF_SCHED_DURATION;
  7481. pdev_param[wmi_pdev_param_ant_plzn] = WMI_PDEV_PARAM_ANT_PLZN;
  7482. pdev_param[wmi_pdev_param_mgmt_retry_limit] =
  7483. WMI_PDEV_PARAM_MGMT_RETRY_LIMIT;
  7484. pdev_param[wmi_pdev_param_sensitivity_level] =
  7485. WMI_PDEV_PARAM_SENSITIVITY_LEVEL;
  7486. pdev_param[wmi_pdev_param_signed_txpower_2g] =
  7487. WMI_PDEV_PARAM_SIGNED_TXPOWER_2G;
  7488. pdev_param[wmi_pdev_param_signed_txpower_5g] =
  7489. WMI_PDEV_PARAM_SIGNED_TXPOWER_5G;
  7490. pdev_param[wmi_pdev_param_enable_per_tid_amsdu] =
  7491. WMI_PDEV_PARAM_ENABLE_PER_TID_AMSDU;
  7492. pdev_param[wmi_pdev_param_enable_per_tid_ampdu] =
  7493. WMI_PDEV_PARAM_ENABLE_PER_TID_AMPDU;
  7494. pdev_param[wmi_pdev_param_cca_threshold] = WMI_PDEV_PARAM_CCA_THRESHOLD;
  7495. pdev_param[wmi_pdev_param_rts_fixed_rate] =
  7496. WMI_PDEV_PARAM_RTS_FIXED_RATE;
  7497. pdev_param[wmi_pdev_param_cal_period] = WMI_PDEV_PARAM_CAL_PERIOD;
  7498. pdev_param[wmi_pdev_param_pdev_reset] = WMI_PDEV_PARAM_PDEV_RESET;
  7499. pdev_param[wmi_pdev_param_wapi_mbssid_offset] =
  7500. WMI_PDEV_PARAM_WAPI_MBSSID_OFFSET;
  7501. pdev_param[wmi_pdev_param_arp_srcaddr] = WMI_PDEV_PARAM_ARP_SRCADDR;
  7502. pdev_param[wmi_pdev_param_arp_dstaddr] = WMI_PDEV_PARAM_ARP_DSTADDR;
  7503. pdev_param[wmi_pdev_param_txpower_decr_db] =
  7504. WMI_PDEV_PARAM_TXPOWER_DECR_DB;
  7505. pdev_param[wmi_pdev_param_rx_batchmode] = WMI_PDEV_PARAM_RX_BATCHMODE;
  7506. pdev_param[wmi_pdev_param_packet_aggr_delay] =
  7507. WMI_PDEV_PARAM_PACKET_AGGR_DELAY;
  7508. pdev_param[wmi_pdev_param_atf_obss_noise_sch] =
  7509. WMI_PDEV_PARAM_ATF_OBSS_NOISE_SCH;
  7510. pdev_param[wmi_pdev_param_atf_obss_noise_scaling_factor] =
  7511. WMI_PDEV_PARAM_ATF_OBSS_NOISE_SCALING_FACTOR;
  7512. pdev_param[wmi_pdev_param_cust_txpower_scale] =
  7513. WMI_PDEV_PARAM_CUST_TXPOWER_SCALE;
  7514. pdev_param[wmi_pdev_param_atf_dynamic_enable] =
  7515. WMI_PDEV_PARAM_ATF_DYNAMIC_ENABLE;
  7516. pdev_param[wmi_pdev_param_atf_ssid_group_policy] =
  7517. WMI_PDEV_PARAM_ATF_SSID_GROUP_POLICY;
  7518. pdev_param[wmi_pdev_param_enable_btcoex] =
  7519. WMI_PDEV_PARAM_ENABLE_BTCOEX;
  7520. pdev_param[wmi_pdev_param_atf_peer_stats] =
  7521. WMI_PDEV_PARAM_ATF_PEER_STATS;
  7522. pdev_param[wmi_pdev_param_rfkill_enable] = WMI_UNAVAILABLE_PARAM;
  7523. pdev_param[wmi_pdev_param_hw_rfkill_config] = WMI_UNAVAILABLE_PARAM;
  7524. pdev_param[wmi_pdev_param_low_power_rf_enable] = WMI_UNAVAILABLE_PARAM;
  7525. pdev_param[wmi_pdev_param_l1ss_track] = WMI_UNAVAILABLE_PARAM;
  7526. pdev_param[wmi_pdev_param_hyst_en] = WMI_UNAVAILABLE_PARAM;
  7527. pdev_param[wmi_pdev_param_power_collapse_enable] =
  7528. WMI_UNAVAILABLE_PARAM;
  7529. pdev_param[wmi_pdev_param_led_sys_state] = WMI_UNAVAILABLE_PARAM;
  7530. pdev_param[wmi_pdev_param_led_enable] = WMI_UNAVAILABLE_PARAM;
  7531. pdev_param[wmi_pdev_param_audio_over_wlan_latency] =
  7532. WMI_UNAVAILABLE_PARAM;
  7533. pdev_param[wmi_pdev_param_audio_over_wlan_enable] =
  7534. WMI_UNAVAILABLE_PARAM;
  7535. pdev_param[wmi_pdev_param_whal_mib_stats_update_enable] =
  7536. WMI_UNAVAILABLE_PARAM;
  7537. pdev_param[wmi_pdev_param_vdev_rate_stats_update_period] =
  7538. WMI_UNAVAILABLE_PARAM;
  7539. pdev_param[wmi_pdev_param_cts_cbw] = WMI_UNAVAILABLE_PARAM;
  7540. pdev_param[wmi_pdev_param_wnts_config] = WMI_UNAVAILABLE_PARAM;
  7541. pdev_param[wmi_pdev_param_adaptive_early_rx_enable] =
  7542. WMI_UNAVAILABLE_PARAM;
  7543. pdev_param[wmi_pdev_param_adaptive_early_rx_min_sleep_slop] =
  7544. WMI_UNAVAILABLE_PARAM;
  7545. pdev_param[wmi_pdev_param_adaptive_early_rx_inc_dec_step] =
  7546. WMI_UNAVAILABLE_PARAM;
  7547. pdev_param[wmi_pdev_param_early_rx_fix_sleep_slop] =
  7548. WMI_UNAVAILABLE_PARAM;
  7549. pdev_param[wmi_pdev_param_bmiss_based_adaptive_bto_enable] =
  7550. WMI_UNAVAILABLE_PARAM;
  7551. pdev_param[wmi_pdev_param_bmiss_bto_min_bcn_timeout] =
  7552. WMI_UNAVAILABLE_PARAM;
  7553. pdev_param[wmi_pdev_param_bmiss_bto_inc_dec_step] =
  7554. WMI_UNAVAILABLE_PARAM;
  7555. pdev_param[wmi_pdev_param_bto_fix_bcn_timeout] =
  7556. WMI_UNAVAILABLE_PARAM;
  7557. pdev_param[wmi_pdev_param_ce_based_adaptive_bto_enable] =
  7558. WMI_UNAVAILABLE_PARAM;
  7559. pdev_param[wmi_pdev_param_ce_bto_combo_ce_value] =
  7560. WMI_UNAVAILABLE_PARAM;
  7561. pdev_param[wmi_pdev_param_tx_chain_mask_2g] = WMI_UNAVAILABLE_PARAM;
  7562. pdev_param[wmi_pdev_param_rx_chain_mask_2g] = WMI_UNAVAILABLE_PARAM;
  7563. pdev_param[wmi_pdev_param_tx_chain_mask_5g] = WMI_UNAVAILABLE_PARAM;
  7564. pdev_param[wmi_pdev_param_rx_chain_mask_5g] = WMI_UNAVAILABLE_PARAM;
  7565. pdev_param[wmi_pdev_param_tx_chain_mask_cck] = WMI_UNAVAILABLE_PARAM;
  7566. pdev_param[wmi_pdev_param_tx_chain_mask_1ss] = WMI_UNAVAILABLE_PARAM;
  7567. }
  7568. /**
  7569. * populate_vdev_param_non_tlv() - populates vdev params
  7570. *
  7571. * @param vdev_param: Pointer to hold vdev params
  7572. * Return: None
  7573. */
  7574. static void populate_vdev_param_non_tlv(uint32_t *vdev_param)
  7575. {
  7576. vdev_param[wmi_vdev_param_rts_threshold] = WMI_VDEV_PARAM_RTS_THRESHOLD;
  7577. vdev_param[wmi_vdev_param_fragmentation_threshold] =
  7578. WMI_VDEV_PARAM_FRAGMENTATION_THRESHOLD;
  7579. vdev_param[wmi_vdev_param_beacon_interval] =
  7580. WMI_VDEV_PARAM_BEACON_INTERVAL;
  7581. vdev_param[wmi_vdev_param_listen_interval] =
  7582. WMI_VDEV_PARAM_LISTEN_INTERVAL;
  7583. vdev_param[wmi_vdev_param_multicast_rate] =
  7584. WMI_VDEV_PARAM_MULTICAST_RATE;
  7585. vdev_param[wmi_vdev_param_mgmt_tx_rate] =
  7586. WMI_VDEV_PARAM_MGMT_TX_RATE;
  7587. vdev_param[wmi_vdev_param_slot_time] = WMI_VDEV_PARAM_SLOT_TIME;
  7588. vdev_param[wmi_vdev_param_preamble] = WMI_VDEV_PARAM_PREAMBLE;
  7589. vdev_param[wmi_vdev_param_swba_time] = WMI_VDEV_PARAM_SWBA_TIME;
  7590. vdev_param[wmi_vdev_stats_update_period] = WMI_VDEV_STATS_UPDATE_PERIOD;
  7591. vdev_param[wmi_vdev_pwrsave_ageout_time] = WMI_VDEV_PWRSAVE_AGEOUT_TIME;
  7592. vdev_param[wmi_vdev_host_swba_interval] = WMI_VDEV_HOST_SWBA_INTERVAL;
  7593. vdev_param[wmi_vdev_param_dtim_period] = WMI_VDEV_PARAM_DTIM_PERIOD;
  7594. vdev_param[wmi_vdev_oc_scheduler_air_time_limit] =
  7595. WMI_VDEV_OC_SCHEDULER_AIR_TIME_LIMIT;
  7596. vdev_param[wmi_vdev_param_wds] = WMI_VDEV_PARAM_WDS;
  7597. vdev_param[wmi_vdev_param_atim_window] = WMI_VDEV_PARAM_ATIM_WINDOW;
  7598. vdev_param[wmi_vdev_param_bmiss_count_max] =
  7599. WMI_VDEV_PARAM_BMISS_COUNT_MAX;
  7600. vdev_param[wmi_vdev_param_bmiss_first_bcnt] =
  7601. WMI_VDEV_PARAM_BMISS_FIRST_BCNT;
  7602. vdev_param[wmi_vdev_param_bmiss_final_bcnt] =
  7603. WMI_VDEV_PARAM_BMISS_FINAL_BCNT;
  7604. vdev_param[wmi_vdev_param_feature_wmm] = WMI_VDEV_PARAM_FEATURE_WMM;
  7605. vdev_param[wmi_vdev_param_chwidth] = WMI_VDEV_PARAM_CHWIDTH;
  7606. vdev_param[wmi_vdev_param_chextoffset] = WMI_VDEV_PARAM_CHEXTOFFSET;
  7607. vdev_param[wmi_vdev_param_disable_htprotection] =
  7608. WMI_VDEV_PARAM_DISABLE_HTPROTECTION;
  7609. vdev_param[wmi_vdev_param_sta_quickkickout] =
  7610. WMI_VDEV_PARAM_STA_QUICKKICKOUT;
  7611. vdev_param[wmi_vdev_param_mgmt_rate] = WMI_VDEV_PARAM_MGMT_RATE;
  7612. vdev_param[wmi_vdev_param_protection_mode] =
  7613. WMI_VDEV_PARAM_PROTECTION_MODE;
  7614. vdev_param[wmi_vdev_param_fixed_rate] = WMI_VDEV_PARAM_FIXED_RATE;
  7615. vdev_param[wmi_vdev_param_sgi] = WMI_VDEV_PARAM_SGI;
  7616. vdev_param[wmi_vdev_param_ldpc] = WMI_VDEV_PARAM_LDPC;
  7617. vdev_param[wmi_vdev_param_tx_stbc] = WMI_VDEV_PARAM_TX_STBC;
  7618. vdev_param[wmi_vdev_param_rx_stbc] = WMI_VDEV_PARAM_RX_STBC;
  7619. vdev_param[wmi_vdev_param_intra_bss_fwd] = WMI_VDEV_PARAM_INTRA_BSS_FWD;
  7620. vdev_param[wmi_vdev_param_def_keyid] = WMI_VDEV_PARAM_DEF_KEYID;
  7621. vdev_param[wmi_vdev_param_nss] = WMI_VDEV_PARAM_NSS;
  7622. vdev_param[wmi_vdev_param_bcast_data_rate] =
  7623. WMI_VDEV_PARAM_BCAST_DATA_RATE;
  7624. vdev_param[wmi_vdev_param_mcast_data_rate] =
  7625. WMI_VDEV_PARAM_MCAST_DATA_RATE;
  7626. vdev_param[wmi_vdev_param_mcast_indicate] =
  7627. WMI_VDEV_PARAM_MCAST_INDICATE;
  7628. vdev_param[wmi_vdev_param_dhcp_indicate] = WMI_VDEV_PARAM_DHCP_INDICATE;
  7629. vdev_param[wmi_vdev_param_unknown_dest_indicate] =
  7630. WMI_VDEV_PARAM_UNKNOWN_DEST_INDICATE;
  7631. vdev_param[wmi_vdev_param_ap_keepalive_min_idle_inactive_time_secs] =
  7632. WMI_VDEV_PARAM_AP_KEEPALIVE_MIN_IDLE_INACTIVE_TIME_SECS;
  7633. vdev_param[wmi_vdev_param_ap_keepalive_max_idle_inactive_time_secs] =
  7634. WMI_VDEV_PARAM_AP_KEEPALIVE_MAX_IDLE_INACTIVE_TIME_SECS;
  7635. vdev_param[wmi_vdev_param_ap_keepalive_max_unresponsive_time_secs] =
  7636. WMI_VDEV_PARAM_AP_KEEPALIVE_MAX_UNRESPONSIVE_TIME_SECS;
  7637. vdev_param[wmi_vdev_param_ap_enable_nawds] =
  7638. WMI_VDEV_PARAM_AP_ENABLE_NAWDS;
  7639. vdev_param[wmi_vdev_param_mcast2ucast_set] =
  7640. WMI_VDEV_PARAM_MCAST2UCAST_SET;
  7641. vdev_param[wmi_vdev_param_enable_rtscts] = WMI_VDEV_PARAM_ENABLE_RTSCTS;
  7642. vdev_param[wmi_vdev_param_rc_num_retries] =
  7643. WMI_VDEV_PARAM_RC_NUM_RETRIES;
  7644. vdev_param[wmi_vdev_param_txbf] = WMI_VDEV_PARAM_TXBF;
  7645. vdev_param[wmi_vdev_param_packet_powersave] =
  7646. WMI_VDEV_PARAM_PACKET_POWERSAVE;
  7647. vdev_param[wmi_vdev_param_drop_unencry] = WMI_VDEV_PARAM_DROP_UNENCRY;
  7648. vdev_param[wmi_vdev_param_tx_encap_type] = WMI_VDEV_PARAM_TX_ENCAP_TYPE;
  7649. vdev_param[wmi_vdev_param_ap_detect_out_of_sync_sleeping_sta_time_secs]
  7650. = WMI_VDEV_PARAM_AP_DETECT_OUT_OF_SYNC_SLEEPING_STA_TIME_SECS;
  7651. vdev_param[wmi_vdev_param_cabq_maxdur] = WMI_VDEV_PARAM_CABQ_MAXDUR;
  7652. vdev_param[wmi_vdev_param_mfptest_set] = WMI_VDEV_PARAM_MFPTEST_SET;
  7653. vdev_param[wmi_vdev_param_rts_fixed_rate] =
  7654. WMI_VDEV_PARAM_RTS_FIXED_RATE;
  7655. vdev_param[wmi_vdev_param_vht_sgimask] = WMI_VDEV_PARAM_VHT_SGIMASK;
  7656. vdev_param[wmi_vdev_param_vht80_ratemask] =
  7657. WMI_VDEV_PARAM_VHT80_RATEMASK;
  7658. vdev_param[wmi_vdev_param_early_rx_adjust_enable] =
  7659. WMI_VDEV_PARAM_EARLY_RX_ADJUST_ENABLE;
  7660. vdev_param[wmi_vdev_param_early_rx_tgt_bmiss_num] =
  7661. WMI_VDEV_PARAM_EARLY_RX_TGT_BMISS_NUM;
  7662. vdev_param[wmi_vdev_param_early_rx_bmiss_sample_cycle] =
  7663. WMI_VDEV_PARAM_EARLY_RX_BMISS_SAMPLE_CYCLE;
  7664. vdev_param[wmi_vdev_param_early_rx_slop_step] =
  7665. WMI_VDEV_PARAM_EARLY_RX_SLOP_STEP;
  7666. vdev_param[wmi_vdev_param_early_rx_init_slop] =
  7667. WMI_VDEV_PARAM_EARLY_RX_INIT_SLOP;
  7668. vdev_param[wmi_vdev_param_early_rx_adjust_pause] =
  7669. WMI_VDEV_PARAM_EARLY_RX_ADJUST_PAUSE;
  7670. vdev_param[wmi_vdev_param_proxy_sta] = WMI_VDEV_PARAM_PROXY_STA;
  7671. vdev_param[wmi_vdev_param_meru_vc] = WMI_VDEV_PARAM_MERU_VC;
  7672. vdev_param[wmi_vdev_param_rx_decap_type] = WMI_VDEV_PARAM_RX_DECAP_TYPE;
  7673. vdev_param[wmi_vdev_param_bw_nss_ratemask] =
  7674. WMI_VDEV_PARAM_BW_NSS_RATEMASK;
  7675. vdev_param[wmi_vdev_param_sensor_ap] = WMI_VDEV_PARAM_SENSOR_AP;
  7676. vdev_param[wmi_vdev_param_beacon_rate] = WMI_VDEV_PARAM_BEACON_RATE;
  7677. vdev_param[wmi_vdev_param_dtim_enable_cts] =
  7678. WMI_VDEV_PARAM_DTIM_ENABLE_CTS;
  7679. vdev_param[wmi_vdev_param_sta_kickout] = WMI_VDEV_PARAM_STA_KICKOUT;
  7680. vdev_param[wmi_vdev_param_capabilities] =
  7681. WMI_VDEV_PARAM_CAPABILITIES;
  7682. vdev_param[wmi_vdev_param_mgmt_tx_power] = WMI_VDEV_PARAM_MGMT_TX_POWER;
  7683. vdev_param[wmi_vdev_param_atf_ssid_sched_policy] =
  7684. WMI_VDEV_PARAM_ATF_SSID_SCHED_POLICY;
  7685. vdev_param[wmi_vdev_param_disable_dyn_bw_rts] =
  7686. WMI_VDEV_PARAM_DISABLE_DYN_BW_RTS;
  7687. }
  7688. #endif
  7689. /**
  7690. * wmi_get_non_tlv_ops() - gives pointer to wmi tlv ops
  7691. *
  7692. * Return: pointer to wmi tlv ops
  7693. */
  7694. void wmi_non_tlv_attach(struct wmi_unified *wmi_handle)
  7695. {
  7696. #if defined(WMI_NON_TLV_SUPPORT) || defined(WMI_TLV_AND_NON_TLV_SUPPORT)
  7697. wmi_handle->ops = &non_tlv_ops;
  7698. populate_non_tlv_service(wmi_handle->services);
  7699. populate_non_tlv_events_id(wmi_handle->wmi_events);
  7700. populate_pdev_param_non_tlv(wmi_handle->pdev_param);
  7701. populate_vdev_param_non_tlv(wmi_handle->vdev_param);
  7702. #ifdef WMI_INTERFACE_EVENT_LOGGING
  7703. wmi_handle->log_info.buf_offset_command = 0;
  7704. wmi_handle->log_info.buf_offset_event = 0;
  7705. wmi_handle->log_info.is_management_record =
  7706. is_management_record_non_tlv;
  7707. /*(uint8 *)(*wmi_id_to_name)(uint32_t cmd_id);*/
  7708. #endif
  7709. #else
  7710. qdf_print("%s: Not supported\n", __func__);
  7711. #endif
  7712. }