halcomtxbf.c 15 KB

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  1. /* ************************************************************
  2. * Description:
  3. *
  4. * This file is for TXBF mechanism
  5. *
  6. * ************************************************************ */
  7. #include "mp_precomp.h"
  8. #include "../phydm_precomp.h"
  9. #if (BEAMFORMING_SUPPORT == 1)
  10. /*Beamforming halcomtxbf API create by YuChen 2015/05*/
  11. void
  12. hal_com_txbf_beamform_init(
  13. void *p_dm_void
  14. )
  15. {
  16. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  17. boolean is_iqgen_setting_ok = false;
  18. if (p_dm_odm->support_ic_type & ODM_RTL8814A) {
  19. is_iqgen_setting_ok = phydm_beamforming_set_iqgen_8814A(p_dm_odm);
  20. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] is_iqgen_setting_ok = %d\n", __func__, is_iqgen_setting_ok));
  21. }
  22. }
  23. /*Only used for MU BFer Entry when get GID management frame (self is as MU STA)*/
  24. void
  25. hal_com_txbf_config_gtab(
  26. void *p_dm_void
  27. )
  28. {
  29. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  30. if (p_dm_odm->support_ic_type & ODM_RTL8822B)
  31. hal_txbf_8822b_config_gtab(p_dm_odm);
  32. }
  33. void
  34. phydm_beamform_set_sounding_enter(
  35. void *p_dm_void
  36. )
  37. {
  38. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  39. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  40. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  41. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_enter_work_item)) == false)
  42. odm_schedule_work_item(&(p_txbf_info->txbf_enter_work_item));
  43. #else
  44. hal_com_txbf_enter_work_item_callback(p_dm_odm);
  45. #endif
  46. }
  47. void
  48. phydm_beamform_set_sounding_leave(
  49. void *p_dm_void
  50. )
  51. {
  52. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  53. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  54. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  55. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_leave_work_item)) == false)
  56. odm_schedule_work_item(&(p_txbf_info->txbf_leave_work_item));
  57. #else
  58. hal_com_txbf_leave_work_item_callback(p_dm_odm);
  59. #endif
  60. }
  61. void
  62. phydm_beamform_set_sounding_rate(
  63. void *p_dm_void
  64. )
  65. {
  66. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  67. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  68. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  69. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_rate_work_item)) == false)
  70. odm_schedule_work_item(&(p_txbf_info->txbf_rate_work_item));
  71. #else
  72. hal_com_txbf_rate_work_item_callback(p_dm_odm);
  73. #endif
  74. }
  75. void
  76. phydm_beamform_set_sounding_status(
  77. void *p_dm_void
  78. )
  79. {
  80. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  81. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  82. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  83. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_status_work_item)) == false)
  84. odm_schedule_work_item(&(p_txbf_info->txbf_status_work_item));
  85. #else
  86. hal_com_txbf_status_work_item_callback(p_dm_odm);
  87. #endif
  88. }
  89. void
  90. phydm_beamform_set_sounding_fw_ndpa(
  91. void *p_dm_void
  92. )
  93. {
  94. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  95. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  96. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  97. if (*p_dm_odm->p_is_fw_dw_rsvd_page_in_progress)
  98. odm_set_timer(p_dm_odm, &(p_txbf_info->txbf_fw_ndpa_timer), 5);
  99. else
  100. odm_schedule_work_item(&(p_txbf_info->txbf_fw_ndpa_work_item));
  101. #else
  102. hal_com_txbf_fw_ndpa_work_item_callback(p_dm_odm);
  103. #endif
  104. }
  105. void
  106. phydm_beamform_set_sounding_clk(
  107. void *p_dm_void
  108. )
  109. {
  110. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  111. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  112. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  113. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_clk_work_item)) == false)
  114. odm_schedule_work_item(&(p_txbf_info->txbf_clk_work_item));
  115. #elif (DM_ODM_SUPPORT_TYPE == ODM_CE)
  116. struct _ADAPTER *padapter = p_dm_odm->adapter;
  117. rtw_run_in_thread_cmd(padapter, hal_com_txbf_clk_work_item_callback, padapter);
  118. #else
  119. hal_com_txbf_clk_work_item_callback(p_dm_odm);
  120. #endif
  121. }
  122. void
  123. phydm_beamform_set_reset_tx_path(
  124. void *p_dm_void
  125. )
  126. {
  127. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  128. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  129. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  130. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_reset_tx_path_work_item)) == false)
  131. odm_schedule_work_item(&(p_txbf_info->txbf_reset_tx_path_work_item));
  132. #else
  133. hal_com_txbf_reset_tx_path_work_item_callback(p_dm_odm);
  134. #endif
  135. }
  136. void
  137. phydm_beamform_set_get_tx_rate(
  138. void *p_dm_void
  139. )
  140. {
  141. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  142. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  143. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  144. if (odm_is_work_item_scheduled(&(p_txbf_info->txbf_get_tx_rate_work_item)) == false)
  145. odm_schedule_work_item(&(p_txbf_info->txbf_get_tx_rate_work_item));
  146. #else
  147. hal_com_txbf_get_tx_rate_work_item_callback(p_dm_odm);
  148. #endif
  149. }
  150. void
  151. hal_com_txbf_enter_work_item_callback(
  152. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  153. struct _ADAPTER *adapter
  154. #else
  155. void *p_dm_void
  156. #endif
  157. )
  158. {
  159. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  160. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  161. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  162. #else
  163. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  164. #endif
  165. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  166. u8 idx = p_txbf_info->txbf_idx;
  167. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  168. if (p_dm_odm->support_ic_type & (ODM_RTL8812 | ODM_RTL8821))
  169. hal_txbf_jaguar_enter(p_dm_odm, idx);
  170. else if (p_dm_odm->support_ic_type & ODM_RTL8192E)
  171. hal_txbf_8192e_enter(p_dm_odm, idx);
  172. else if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  173. hal_txbf_8814a_enter(p_dm_odm, idx);
  174. else if (p_dm_odm->support_ic_type & ODM_RTL8822B)
  175. hal_txbf_8822b_enter(p_dm_odm, idx);
  176. }
  177. void
  178. hal_com_txbf_leave_work_item_callback(
  179. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  180. struct _ADAPTER *adapter
  181. #else
  182. void *p_dm_void
  183. #endif
  184. )
  185. {
  186. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  187. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  188. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  189. #else
  190. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  191. #endif
  192. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  193. u8 idx = p_txbf_info->txbf_idx;
  194. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  195. if (p_dm_odm->support_ic_type & (ODM_RTL8812 | ODM_RTL8821))
  196. hal_txbf_jaguar_leave(p_dm_odm, idx);
  197. else if (p_dm_odm->support_ic_type & ODM_RTL8192E)
  198. hal_txbf_8192e_leave(p_dm_odm, idx);
  199. else if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  200. hal_txbf_8814a_leave(p_dm_odm, idx);
  201. else if (p_dm_odm->support_ic_type & ODM_RTL8822B)
  202. hal_txbf_8822b_leave(p_dm_odm, idx);
  203. }
  204. void
  205. hal_com_txbf_fw_ndpa_work_item_callback(
  206. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  207. struct _ADAPTER *adapter
  208. #else
  209. void *p_dm_void
  210. #endif
  211. )
  212. {
  213. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  214. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  215. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  216. #else
  217. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  218. #endif
  219. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  220. u8 idx = p_txbf_info->ndpa_idx;
  221. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  222. if (p_dm_odm->support_ic_type & (ODM_RTL8812 | ODM_RTL8821))
  223. hal_txbf_jaguar_fw_txbf(p_dm_odm, idx);
  224. else if (p_dm_odm->support_ic_type & ODM_RTL8192E)
  225. hal_txbf_8192e_fw_tx_bf(p_dm_odm, idx);
  226. else if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  227. hal_txbf_8814a_fw_txbf(p_dm_odm, idx);
  228. else if (p_dm_odm->support_ic_type & ODM_RTL8822B)
  229. hal_txbf_8822b_fw_txbf(p_dm_odm, idx);
  230. }
  231. void
  232. hal_com_txbf_clk_work_item_callback(
  233. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  234. struct _ADAPTER *adapter
  235. #else
  236. void *p_dm_void
  237. #endif
  238. )
  239. {
  240. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  241. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  242. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  243. #else
  244. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  245. #endif
  246. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  247. if (p_dm_odm->support_ic_type & ODM_RTL8812)
  248. hal_txbf_jaguar_clk_8812a(p_dm_odm);
  249. }
  250. void
  251. hal_com_txbf_rate_work_item_callback(
  252. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  253. struct _ADAPTER *adapter
  254. #else
  255. void *p_dm_void
  256. #endif
  257. )
  258. {
  259. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  260. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  261. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  262. #else
  263. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  264. #endif
  265. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  266. u8 BW = p_txbf_info->BW;
  267. u8 rate = p_txbf_info->rate;
  268. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  269. if (p_dm_odm->support_ic_type & ODM_RTL8812)
  270. hal_txbf_8812a_set_ndpa_rate(p_dm_odm, BW, rate);
  271. else if (p_dm_odm->support_ic_type & ODM_RTL8192E)
  272. hal_txbf_8192e_set_ndpa_rate(p_dm_odm, BW, rate);
  273. else if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  274. hal_txbf_8814a_set_ndpa_rate(p_dm_odm, BW, rate);
  275. }
  276. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  277. void
  278. hal_com_txbf_fw_ndpa_timer_callback(
  279. struct timer_list *p_timer
  280. )
  281. {
  282. struct _ADAPTER *adapter = (struct _ADAPTER *)p_timer->Adapter;
  283. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  284. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  285. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  286. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  287. if (*p_dm_odm->p_is_fw_dw_rsvd_page_in_progress)
  288. odm_set_timer(p_dm_odm, &(p_txbf_info->txbf_fw_ndpa_timer), 5);
  289. else
  290. odm_schedule_work_item(&(p_txbf_info->txbf_fw_ndpa_work_item));
  291. }
  292. #endif
  293. void
  294. hal_com_txbf_status_work_item_callback(
  295. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  296. struct _ADAPTER *adapter
  297. #else
  298. void *p_dm_void
  299. #endif
  300. )
  301. {
  302. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  303. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  304. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  305. #else
  306. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  307. #endif
  308. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  309. u8 idx = p_txbf_info->txbf_idx;
  310. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  311. if (p_dm_odm->support_ic_type & (ODM_RTL8812 | ODM_RTL8821))
  312. hal_txbf_jaguar_status(p_dm_odm, idx);
  313. else if (p_dm_odm->support_ic_type & ODM_RTL8192E)
  314. hal_txbf_8192e_status(p_dm_odm, idx);
  315. else if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  316. hal_txbf_8814a_status(p_dm_odm, idx);
  317. else if (p_dm_odm->support_ic_type & ODM_RTL8822B)
  318. hal_txbf_8822b_status(p_dm_odm, idx);
  319. }
  320. void
  321. hal_com_txbf_reset_tx_path_work_item_callback(
  322. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  323. struct _ADAPTER *adapter
  324. #else
  325. void *p_dm_void
  326. #endif
  327. )
  328. {
  329. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  330. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  331. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  332. #else
  333. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  334. #endif
  335. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  336. u8 idx = p_txbf_info->txbf_idx;
  337. if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  338. hal_txbf_8814a_reset_tx_path(p_dm_odm, idx);
  339. }
  340. void
  341. hal_com_txbf_get_tx_rate_work_item_callback(
  342. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  343. struct _ADAPTER *adapter
  344. #else
  345. void *p_dm_void
  346. #endif
  347. )
  348. {
  349. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  350. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  351. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  352. #else
  353. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  354. #endif
  355. if (p_dm_odm->support_ic_type & ODM_RTL8814A)
  356. hal_txbf_8814a_get_tx_rate(p_dm_odm);
  357. }
  358. boolean
  359. hal_com_txbf_set(
  360. void *p_dm_void,
  361. u8 set_type,
  362. void *p_in_buf
  363. )
  364. {
  365. struct PHY_DM_STRUCT *p_dm_odm = (struct PHY_DM_STRUCT *)p_dm_void;
  366. u8 *p_u1_tmp = (u8 *)p_in_buf;
  367. struct _HAL_TXBF_INFO *p_txbf_info = &p_dm_odm->beamforming_info.txbf_info;
  368. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] set_type = 0x%X\n", __func__, set_type));
  369. switch (set_type) {
  370. case TXBF_SET_SOUNDING_ENTER:
  371. p_txbf_info->txbf_idx = *p_u1_tmp;
  372. phydm_beamform_set_sounding_enter(p_dm_odm);
  373. break;
  374. case TXBF_SET_SOUNDING_LEAVE:
  375. p_txbf_info->txbf_idx = *p_u1_tmp;
  376. phydm_beamform_set_sounding_leave(p_dm_odm);
  377. break;
  378. case TXBF_SET_SOUNDING_RATE:
  379. p_txbf_info->BW = p_u1_tmp[0];
  380. p_txbf_info->rate = p_u1_tmp[1];
  381. phydm_beamform_set_sounding_rate(p_dm_odm);
  382. break;
  383. case TXBF_SET_SOUNDING_STATUS:
  384. p_txbf_info->txbf_idx = *p_u1_tmp;
  385. phydm_beamform_set_sounding_status(p_dm_odm);
  386. break;
  387. case TXBF_SET_SOUNDING_FW_NDPA:
  388. p_txbf_info->ndpa_idx = *p_u1_tmp;
  389. phydm_beamform_set_sounding_fw_ndpa(p_dm_odm);
  390. break;
  391. case TXBF_SET_SOUNDING_CLK:
  392. phydm_beamform_set_sounding_clk(p_dm_odm);
  393. break;
  394. case TXBF_SET_TX_PATH_RESET:
  395. p_txbf_info->txbf_idx = *p_u1_tmp;
  396. phydm_beamform_set_reset_tx_path(p_dm_odm);
  397. break;
  398. case TXBF_SET_GET_TX_RATE:
  399. phydm_beamform_set_get_tx_rate(p_dm_odm);
  400. break;
  401. }
  402. return true;
  403. }
  404. #if (DM_ODM_SUPPORT_TYPE == ODM_WIN)
  405. boolean
  406. hal_com_txbf_get(
  407. struct _ADAPTER *adapter,
  408. u8 get_type,
  409. void *p_out_buf
  410. )
  411. {
  412. PHAL_DATA_TYPE p_hal_data = GET_HAL_DATA(adapter);
  413. struct PHY_DM_STRUCT *p_dm_odm = &p_hal_data->DM_OutSrc;
  414. boolean *p_boolean = (boolean *)p_out_buf;
  415. ODM_RT_TRACE(p_dm_odm, PHYDM_COMP_TXBF, ODM_DBG_LOUD, ("[%s] Start!\n", __func__));
  416. if (get_type == TXBF_GET_EXPLICIT_BEAMFORMEE) {
  417. if (IS_HARDWARE_TYPE_OLDER_THAN_8812A(adapter))
  418. *p_boolean = false;
  419. else if (/*IS_HARDWARE_TYPE_8822B(adapter) ||*/
  420. IS_HARDWARE_TYPE_8821B(adapter) ||
  421. IS_HARDWARE_TYPE_8192E(adapter) ||
  422. IS_HARDWARE_TYPE_JAGUAR(adapter) || IS_HARDWARE_TYPE_JAGUAR_AND_JAGUAR2(adapter))
  423. *p_boolean = true;
  424. else
  425. *p_boolean = false;
  426. } else if (get_type == TXBF_GET_EXPLICIT_BEAMFORMER) {
  427. if (IS_HARDWARE_TYPE_OLDER_THAN_8812A(adapter))
  428. *p_boolean = false;
  429. else if (/*IS_HARDWARE_TYPE_8822B(adapter) ||*/
  430. IS_HARDWARE_TYPE_8821B(adapter) ||
  431. IS_HARDWARE_TYPE_8192E(adapter) ||
  432. IS_HARDWARE_TYPE_JAGUAR(adapter) || IS_HARDWARE_TYPE_JAGUAR_AND_JAGUAR2(adapter)) {
  433. if (p_hal_data->RF_Type == RF_2T2R || p_hal_data->RF_Type == RF_3T3R)
  434. *p_boolean = true;
  435. else
  436. *p_boolean = false;
  437. } else
  438. *p_boolean = false;
  439. } else if (get_type == TXBF_GET_MU_MIMO_STA) {
  440. #if ((RTL8822B_SUPPORT == 1) || (RTL8821C_SUPPORT == 1))
  441. if (IS_HARDWARE_TYPE_8822B(adapter) || IS_HARDWARE_TYPE_8821C(adapter))
  442. *p_boolean = true;
  443. else
  444. #endif
  445. *p_boolean = false;
  446. } else if (get_type == TXBF_GET_MU_MIMO_AP) {
  447. #if (RTL8822B_SUPPORT == 1)
  448. if (IS_HARDWARE_TYPE_8822B(adapter))
  449. *p_boolean = true;
  450. else
  451. #endif
  452. *p_boolean = false;
  453. }
  454. return true;
  455. }
  456. #endif
  457. #endif