dp_mon.c 177 KB

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  1. /*
  2. * Copyright (c) 2016-2021, The Linux Foundation. All rights reserved.
  3. * Copyright (c) 2021-2023 Qualcomm Innovation Center, Inc. All rights reserved.
  4. *
  5. * Permission to use, copy, modify, and/or distribute this software for any
  6. * purpose with or without fee is hereby granted, provided that the above
  7. * copyright notice and this permission notice appear in all copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  10. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  11. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  12. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  13. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  14. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  15. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  16. */
  17. #include <dp_types.h>
  18. #include "dp_rx.h"
  19. #include "dp_peer.h"
  20. #include <dp_htt.h>
  21. #include <dp_mon_filter.h>
  22. #include <dp_htt.h>
  23. #include <dp_mon.h>
  24. #include <dp_rx_mon.h>
  25. #include <dp_internal.h>
  26. #include "htt_ppdu_stats.h"
  27. #include "dp_cal_client_api.h"
  28. #if defined(DP_CON_MON)
  29. #ifndef REMOVE_PKT_LOG
  30. #include <pktlog_ac_api.h>
  31. #include <pktlog_ac.h>
  32. #endif
  33. #endif
  34. #ifdef FEATURE_PERPKT_INFO
  35. #include "dp_ratetable.h"
  36. #endif
  37. #ifdef QCA_SUPPORT_LITE_MONITOR
  38. #include "dp_lite_mon.h"
  39. #endif
  40. #define DP_INTR_POLL_TIMER_MS 5
  41. #define INVALID_FREE_BUFF 0xffffffff
  42. #ifdef WLAN_RX_PKT_CAPTURE_ENH
  43. #include "dp_rx_mon_feature.h"
  44. #endif /* WLAN_RX_PKT_CAPTURE_ENH */
  45. #ifdef QCA_UNDECODED_METADATA_SUPPORT
  46. #define MAX_STRING_LEN_PER_FIELD 6
  47. #define DP_UNDECODED_ERR_LENGTH (MAX_STRING_LEN_PER_FIELD * CDP_PHYRX_ERR_MAX)
  48. #endif
  49. #ifdef QCA_MCOPY_SUPPORT
  50. static inline void
  51. dp_pdev_disable_mcopy_code(struct dp_pdev *pdev)
  52. {
  53. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  54. mon_pdev->mcopy_mode = M_COPY_DISABLED;
  55. mon_pdev->mvdev = NULL;
  56. }
  57. static inline void
  58. dp_reset_mcopy_mode(struct dp_pdev *pdev)
  59. {
  60. QDF_STATUS status = QDF_STATUS_SUCCESS;
  61. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  62. struct cdp_mon_ops *cdp_ops;
  63. if (mon_pdev->mcopy_mode) {
  64. cdp_ops = dp_mon_cdp_ops_get(pdev->soc);
  65. if (cdp_ops && cdp_ops->config_full_mon_mode)
  66. cdp_ops->soc_config_full_mon_mode((struct cdp_pdev *)pdev,
  67. DP_FULL_MON_ENABLE);
  68. dp_pdev_disable_mcopy_code(pdev);
  69. dp_mon_filter_reset_mcopy_mode(pdev);
  70. status = dp_mon_filter_update(pdev);
  71. if (status != QDF_STATUS_SUCCESS) {
  72. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  73. FL("Failed to reset AM copy mode filters"));
  74. }
  75. mon_pdev->monitor_configured = false;
  76. }
  77. }
  78. static QDF_STATUS
  79. dp_config_mcopy_mode(struct dp_pdev *pdev, int val)
  80. {
  81. QDF_STATUS status = QDF_STATUS_SUCCESS;
  82. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  83. struct dp_mon_ops *mon_ops;
  84. struct cdp_mon_ops *cdp_ops;
  85. if (mon_pdev->mvdev)
  86. return QDF_STATUS_E_RESOURCES;
  87. mon_pdev->mcopy_mode = val;
  88. mon_pdev->tx_sniffer_enable = 0;
  89. mon_pdev->monitor_configured = true;
  90. mon_ops = dp_mon_ops_get(pdev->soc);
  91. if (!wlan_cfg_is_delay_mon_replenish(pdev->soc->wlan_cfg_ctx)) {
  92. if (mon_ops && mon_ops->mon_vdev_set_monitor_mode_rings)
  93. mon_ops->mon_vdev_set_monitor_mode_rings(pdev, true);
  94. }
  95. /*
  96. * Setup the M copy mode filter.
  97. */
  98. cdp_ops = dp_mon_cdp_ops_get(pdev->soc);
  99. if (cdp_ops && cdp_ops->config_full_mon_mode)
  100. cdp_ops->soc_config_full_mon_mode((struct cdp_pdev *)pdev,
  101. DP_FULL_MON_ENABLE);
  102. dp_mon_filter_setup_mcopy_mode(pdev);
  103. status = dp_mon_filter_update(pdev);
  104. if (status != QDF_STATUS_SUCCESS) {
  105. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  106. FL("Failed to set M_copy mode filters"));
  107. dp_mon_filter_reset_mcopy_mode(pdev);
  108. dp_pdev_disable_mcopy_code(pdev);
  109. return status;
  110. }
  111. if (!mon_pdev->pktlog_ppdu_stats)
  112. dp_h2t_cfg_stats_msg_send(pdev,
  113. DP_PPDU_STATS_CFG_SNIFFER,
  114. pdev->pdev_id);
  115. return status;
  116. }
  117. #else
  118. static inline void
  119. dp_reset_mcopy_mode(struct dp_pdev *pdev)
  120. {
  121. }
  122. static inline QDF_STATUS
  123. dp_config_mcopy_mode(struct dp_pdev *pdev, int val)
  124. {
  125. return QDF_STATUS_E_INVAL;
  126. }
  127. #endif /* QCA_MCOPY_SUPPORT */
  128. #ifdef QCA_UNDECODED_METADATA_SUPPORT
  129. static QDF_STATUS
  130. dp_reset_undecoded_metadata_capture(struct dp_pdev *pdev)
  131. {
  132. QDF_STATUS status = QDF_STATUS_SUCCESS;
  133. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  134. if (mon_pdev->undecoded_metadata_capture) {
  135. dp_mon_filter_reset_undecoded_metadata_mode(pdev);
  136. status = dp_mon_filter_update(pdev);
  137. if (status != QDF_STATUS_SUCCESS) {
  138. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  139. FL("Undecoded capture filter reset failed"));
  140. }
  141. }
  142. mon_pdev->undecoded_metadata_capture = 0;
  143. return status;
  144. }
  145. static QDF_STATUS
  146. dp_enable_undecoded_metadata_capture(struct dp_pdev *pdev, int val)
  147. {
  148. QDF_STATUS status = QDF_STATUS_SUCCESS;
  149. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  150. if (!mon_pdev->mvdev) {
  151. qdf_err("monitor_pdev is NULL");
  152. return QDF_STATUS_E_RESOURCES;
  153. }
  154. mon_pdev->undecoded_metadata_capture = val;
  155. mon_pdev->monitor_configured = true;
  156. /* Setup the undecoded metadata capture mode filter. */
  157. dp_mon_filter_setup_undecoded_metadata_mode(pdev);
  158. status = dp_mon_filter_update(pdev);
  159. if (status != QDF_STATUS_SUCCESS) {
  160. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  161. FL("Failed to set Undecoded capture filters"));
  162. dp_mon_filter_reset_undecoded_metadata_mode(pdev);
  163. return status;
  164. }
  165. return status;
  166. }
  167. #else
  168. static inline QDF_STATUS
  169. dp_reset_undecoded_metadata_capture(struct dp_pdev *pdev)
  170. {
  171. return QDF_STATUS_E_INVAL;
  172. }
  173. static inline QDF_STATUS
  174. dp_enable_undecoded_metadata_capture(struct dp_pdev *pdev, int val)
  175. {
  176. return QDF_STATUS_E_INVAL;
  177. }
  178. #endif /* QCA_UNDECODED_METADATA_SUPPORT */
  179. QDF_STATUS dp_reset_monitor_mode(struct cdp_soc_t *soc_hdl,
  180. uint8_t pdev_id,
  181. uint8_t special_monitor)
  182. {
  183. struct dp_soc *soc = (struct dp_soc *)soc_hdl;
  184. struct dp_pdev *pdev =
  185. dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  186. pdev_id);
  187. QDF_STATUS status = QDF_STATUS_SUCCESS;
  188. struct dp_mon_pdev *mon_pdev;
  189. struct cdp_mon_ops *cdp_ops;
  190. if (!pdev)
  191. return QDF_STATUS_E_FAILURE;
  192. mon_pdev = pdev->monitor_pdev;
  193. qdf_spin_lock_bh(&mon_pdev->mon_lock);
  194. cdp_ops = dp_mon_cdp_ops_get(soc);
  195. if (cdp_ops && cdp_ops->soc_config_full_mon_mode)
  196. cdp_ops->soc_config_full_mon_mode((struct cdp_pdev *)pdev,
  197. DP_FULL_MON_DISABLE);
  198. mon_pdev->mvdev = NULL;
  199. /*
  200. * Lite monitor mode, smart monitor mode and monitor
  201. * mode uses this APIs to filter reset and mode disable
  202. */
  203. if (mon_pdev->mcopy_mode) {
  204. #if defined(QCA_MCOPY_SUPPORT)
  205. dp_pdev_disable_mcopy_code(pdev);
  206. dp_mon_filter_reset_mcopy_mode(pdev);
  207. #endif /* QCA_MCOPY_SUPPORT */
  208. } else if (special_monitor) {
  209. #if defined(ATH_SUPPORT_NAC)
  210. dp_mon_filter_reset_smart_monitor(pdev);
  211. #endif /* ATH_SUPPORT_NAC */
  212. /* for mon 2.0 we make use of lite mon to
  213. * set filters for smart monitor use case.
  214. */
  215. dp_monitor_lite_mon_disable_rx(pdev);
  216. } else if (mon_pdev->undecoded_metadata_capture) {
  217. #ifdef QCA_UNDECODED_METADATA_SUPPORT
  218. dp_reset_undecoded_metadata_capture(pdev);
  219. #endif
  220. } else {
  221. dp_mon_filter_reset_mon_mode(pdev);
  222. }
  223. status = dp_mon_filter_update(pdev);
  224. if (status != QDF_STATUS_SUCCESS) {
  225. dp_rx_mon_dest_err("%pK: Failed to reset monitor filters",
  226. soc);
  227. }
  228. mon_pdev->monitor_configured = false;
  229. qdf_spin_unlock_bh(&mon_pdev->mon_lock);
  230. return QDF_STATUS_SUCCESS;
  231. }
  232. #ifdef QCA_ADVANCE_MON_FILTER_SUPPORT
  233. QDF_STATUS
  234. dp_pdev_set_advance_monitor_filter(struct cdp_soc_t *soc_hdl, uint8_t pdev_id,
  235. struct cdp_monitor_filter *filter_val)
  236. {
  237. /* Many monitor VAPs can exists in a system but only one can be up at
  238. * anytime
  239. */
  240. struct dp_soc *soc = (struct dp_soc *)soc_hdl;
  241. struct dp_vdev *vdev;
  242. struct dp_pdev *pdev =
  243. dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  244. pdev_id);
  245. QDF_STATUS status = QDF_STATUS_SUCCESS;
  246. struct dp_mon_pdev *mon_pdev;
  247. if (!pdev || !pdev->monitor_pdev)
  248. return QDF_STATUS_E_FAILURE;
  249. mon_pdev = pdev->monitor_pdev;
  250. vdev = mon_pdev->mvdev;
  251. if (!vdev)
  252. return QDF_STATUS_E_FAILURE;
  253. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_WARN,
  254. "pdev=%pK, pdev_id=%d, soc=%pK vdev=%pK",
  255. pdev, pdev_id, soc, vdev);
  256. /*Check if current pdev's monitor_vdev exists */
  257. if (!mon_pdev->mvdev) {
  258. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_ERROR,
  259. "vdev=%pK", vdev);
  260. qdf_assert(vdev);
  261. }
  262. /* update filter mode, type in pdev structure */
  263. mon_pdev->mon_filter_mode = filter_val->mode;
  264. mon_pdev->fp_mgmt_filter = filter_val->fp_mgmt;
  265. mon_pdev->fp_ctrl_filter = filter_val->fp_ctrl;
  266. mon_pdev->fp_data_filter = filter_val->fp_data;
  267. mon_pdev->mo_mgmt_filter = filter_val->mo_mgmt;
  268. mon_pdev->mo_ctrl_filter = filter_val->mo_ctrl;
  269. mon_pdev->mo_data_filter = filter_val->mo_data;
  270. dp_mon_filter_setup_mon_mode(pdev);
  271. status = dp_mon_filter_update(pdev);
  272. if (status != QDF_STATUS_SUCCESS) {
  273. dp_rx_mon_dest_err("%pK: Failed to set filter for adv mon mode",
  274. soc);
  275. dp_mon_filter_reset_mon_mode(pdev);
  276. }
  277. return status;
  278. }
  279. #endif
  280. QDF_STATUS
  281. dp_deliver_tx_mgmt(struct cdp_soc_t *cdp_soc, uint8_t pdev_id, qdf_nbuf_t nbuf)
  282. {
  283. struct dp_pdev *pdev =
  284. dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)cdp_soc,
  285. pdev_id);
  286. if (!pdev)
  287. return QDF_STATUS_E_FAILURE;
  288. dp_deliver_mgmt_frm(pdev, nbuf);
  289. return QDF_STATUS_SUCCESS;
  290. }
  291. #ifdef QCA_SUPPORT_SCAN_SPCL_VAP_STATS
  292. /**
  293. * dp_scan_spcl_vap_stats_attach() - alloc spcl vap stats struct
  294. * @mon_vdev: Datapath mon VDEV handle
  295. *
  296. * Return: 0 on success, not 0 on failure
  297. */
  298. static inline QDF_STATUS
  299. dp_scan_spcl_vap_stats_attach(struct dp_mon_vdev *mon_vdev)
  300. {
  301. mon_vdev->scan_spcl_vap_stats =
  302. qdf_mem_malloc(sizeof(struct cdp_scan_spcl_vap_stats));
  303. if (!mon_vdev->scan_spcl_vap_stats) {
  304. dp_mon_err("scan spcl vap stats attach fail");
  305. return QDF_STATUS_E_NOMEM;
  306. }
  307. return QDF_STATUS_SUCCESS;
  308. }
  309. /**
  310. * dp_scan_spcl_vap_stats_detach() - free spcl vap stats struct
  311. * @mon_vdev: Datapath mon VDEV handle
  312. *
  313. * Return: void
  314. */
  315. static inline void
  316. dp_scan_spcl_vap_stats_detach(struct dp_mon_vdev *mon_vdev)
  317. {
  318. if (mon_vdev->scan_spcl_vap_stats) {
  319. qdf_mem_free(mon_vdev->scan_spcl_vap_stats);
  320. mon_vdev->scan_spcl_vap_stats = NULL;
  321. }
  322. }
  323. /**
  324. * dp_reset_scan_spcl_vap_stats() - reset spcl vap rx stats
  325. * @vdev: Datapath VDEV handle
  326. *
  327. * Return: void
  328. */
  329. static inline void
  330. dp_reset_scan_spcl_vap_stats(struct dp_vdev *vdev)
  331. {
  332. struct dp_mon_vdev *mon_vdev;
  333. struct dp_mon_pdev *mon_pdev;
  334. mon_pdev = vdev->pdev->monitor_pdev;
  335. if (!mon_pdev || !mon_pdev->reset_scan_spcl_vap_stats_enable)
  336. return;
  337. mon_vdev = vdev->monitor_vdev;
  338. if (!mon_vdev || !mon_vdev->scan_spcl_vap_stats)
  339. return;
  340. qdf_mem_zero(mon_vdev->scan_spcl_vap_stats,
  341. sizeof(struct cdp_scan_spcl_vap_stats));
  342. }
  343. /**
  344. * dp_get_scan_spcl_vap_stats() - get spcl vap rx stats
  345. * @soc_hdl: Datapath soc handle
  346. * @vdev_id: vdev id
  347. * @stats: structure to hold spcl vap stats
  348. *
  349. * Return: 0 on success, not 0 on failure
  350. */
  351. static QDF_STATUS
  352. dp_get_scan_spcl_vap_stats(struct cdp_soc_t *soc_hdl, uint8_t vdev_id,
  353. struct cdp_scan_spcl_vap_stats *stats)
  354. {
  355. struct dp_mon_vdev *mon_vdev = NULL;
  356. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  357. struct dp_vdev *vdev = dp_vdev_get_ref_by_id(soc, vdev_id,
  358. DP_MOD_ID_CDP);
  359. if (!vdev || !stats) {
  360. if (vdev)
  361. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  362. return QDF_STATUS_E_INVAL;
  363. }
  364. mon_vdev = vdev->monitor_vdev;
  365. if (!mon_vdev || !mon_vdev->scan_spcl_vap_stats) {
  366. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  367. return QDF_STATUS_E_INVAL;
  368. }
  369. qdf_mem_copy(stats, mon_vdev->scan_spcl_vap_stats,
  370. sizeof(struct cdp_scan_spcl_vap_stats));
  371. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  372. return QDF_STATUS_SUCCESS;
  373. }
  374. #else
  375. static inline void
  376. dp_reset_scan_spcl_vap_stats(struct dp_vdev *vdev)
  377. {
  378. }
  379. static inline QDF_STATUS
  380. dp_scan_spcl_vap_stats_attach(struct dp_mon_vdev *mon_vdev)
  381. {
  382. return QDF_STATUS_SUCCESS;
  383. }
  384. static inline void
  385. dp_scan_spcl_vap_stats_detach(struct dp_mon_vdev *mon_vdev)
  386. {
  387. }
  388. #endif
  389. /**
  390. * dp_vdev_set_monitor_mode() - Set DP VDEV to monitor mode
  391. * @dp_soc: DP soc context
  392. * @vdev_id: vdev ID
  393. * @special_monitor: Flag to denote if its smart monitor mode
  394. *
  395. * Return: 0 on success, not 0 on failure
  396. */
  397. static QDF_STATUS dp_vdev_set_monitor_mode(struct cdp_soc_t *dp_soc,
  398. uint8_t vdev_id,
  399. uint8_t special_monitor)
  400. {
  401. struct dp_soc *soc = (struct dp_soc *)dp_soc;
  402. struct dp_pdev *pdev;
  403. struct dp_vdev *vdev = dp_vdev_get_ref_by_id(soc, vdev_id,
  404. DP_MOD_ID_CDP);
  405. QDF_STATUS status = QDF_STATUS_SUCCESS;
  406. struct dp_mon_pdev *mon_pdev;
  407. struct cdp_mon_ops *cdp_ops;
  408. if (!vdev)
  409. return QDF_STATUS_E_FAILURE;
  410. pdev = vdev->pdev;
  411. if (!pdev || !pdev->monitor_pdev)
  412. return QDF_STATUS_E_FAILURE;
  413. mon_pdev = pdev->monitor_pdev;
  414. mon_pdev->mvdev = vdev;
  415. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_WARN,
  416. "pdev=%pK, pdev_id=%d, soc=%pK vdev=%pK\n",
  417. pdev, pdev->pdev_id, pdev->soc, vdev);
  418. /*
  419. * do not configure monitor buf ring and filter for smart and
  420. * lite monitor
  421. * for smart monitor filters are added along with first NAC
  422. * for lite monitor required configuration done through
  423. * dp_set_pdev_param
  424. */
  425. if (special_monitor) {
  426. status = QDF_STATUS_SUCCESS;
  427. goto fail;
  428. }
  429. if (mon_pdev->scan_spcl_vap_configured)
  430. dp_reset_scan_spcl_vap_stats(vdev);
  431. /*Check if current pdev's monitor_vdev exists */
  432. if (mon_pdev->monitor_configured) {
  433. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_DEBUG,
  434. "monitor vap already created vdev=%pK\n", vdev);
  435. status = QDF_STATUS_E_RESOURCES;
  436. goto fail;
  437. }
  438. mon_pdev->monitor_configured = true;
  439. /* If advance monitor filter is applied using lite_mon
  440. * via vap configuration, required filters are already applied
  441. * hence returning SUCCESS from here.
  442. */
  443. if (dp_monitor_lite_mon_is_rx_adv_filter_enable(pdev)) {
  444. status = QDF_STATUS_SUCCESS;
  445. goto fail;
  446. }
  447. /* disable lite mon if configured, monitor vap takes
  448. * priority over lite mon when its created. Lite mon
  449. * can be configured later again.
  450. */
  451. dp_monitor_lite_mon_disable_rx(pdev);
  452. cdp_ops = dp_mon_cdp_ops_get(soc);
  453. if (cdp_ops && cdp_ops->soc_config_full_mon_mode)
  454. cdp_ops->soc_config_full_mon_mode((struct cdp_pdev *)pdev,
  455. DP_FULL_MON_ENABLE);
  456. dp_mon_filter_setup_mon_mode(pdev);
  457. status = dp_mon_filter_update(pdev);
  458. if (status != QDF_STATUS_SUCCESS) {
  459. dp_cdp_err("%pK: Failed to reset monitor filters", soc);
  460. dp_mon_filter_reset_mon_mode(pdev);
  461. mon_pdev->monitor_configured = false;
  462. mon_pdev->mvdev = NULL;
  463. }
  464. fail:
  465. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  466. return status;
  467. }
  468. #ifdef QCA_TX_CAPTURE_SUPPORT
  469. static QDF_STATUS
  470. dp_config_tx_capture_mode(struct dp_pdev *pdev)
  471. {
  472. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  473. mon_pdev->tx_sniffer_enable = 1;
  474. mon_pdev->monitor_configured = false;
  475. if (!mon_pdev->pktlog_ppdu_stats)
  476. dp_h2t_cfg_stats_msg_send(pdev,
  477. DP_PPDU_STATS_CFG_SNIFFER,
  478. pdev->pdev_id);
  479. return QDF_STATUS_SUCCESS;
  480. }
  481. #else
  482. #ifdef QCA_MCOPY_SUPPORT
  483. static QDF_STATUS
  484. dp_config_tx_capture_mode(struct dp_pdev *pdev)
  485. {
  486. return QDF_STATUS_E_INVAL;
  487. }
  488. #endif
  489. #endif
  490. #if defined(QCA_MCOPY_SUPPORT) || defined(QCA_TX_CAPTURE_SUPPORT)
  491. QDF_STATUS
  492. dp_config_debug_sniffer(struct dp_pdev *pdev, int val)
  493. {
  494. QDF_STATUS status = QDF_STATUS_SUCCESS;
  495. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  496. /*
  497. * Note: The mirror copy mode cannot co-exist with any other
  498. * monitor modes. Hence disabling the filter for this mode will
  499. * reset the monitor destination ring filters.
  500. */
  501. dp_reset_mcopy_mode(pdev);
  502. switch (val) {
  503. case 0:
  504. mon_pdev->tx_sniffer_enable = 0;
  505. mon_pdev->monitor_configured = false;
  506. /*
  507. * We don't need to reset the Rx monitor status ring or call
  508. * the API dp_ppdu_ring_reset() if all debug sniffer mode is
  509. * disabled. The Rx monitor status ring will be disabled when
  510. * the last mode using the monitor status ring get disabled.
  511. */
  512. if (!mon_pdev->pktlog_ppdu_stats &&
  513. !mon_pdev->enhanced_stats_en &&
  514. !mon_pdev->bpr_enable) {
  515. dp_h2t_cfg_stats_msg_send(pdev, 0, pdev->pdev_id);
  516. } else if (mon_pdev->enhanced_stats_en &&
  517. !mon_pdev->bpr_enable) {
  518. dp_h2t_cfg_stats_msg_send(pdev,
  519. DP_PPDU_STATS_CFG_ENH_STATS,
  520. pdev->pdev_id);
  521. } else if (!mon_pdev->enhanced_stats_en &&
  522. mon_pdev->bpr_enable) {
  523. dp_h2t_cfg_stats_msg_send(pdev,
  524. DP_PPDU_STATS_CFG_BPR_ENH,
  525. pdev->pdev_id);
  526. } else {
  527. dp_h2t_cfg_stats_msg_send(pdev,
  528. DP_PPDU_STATS_CFG_BPR,
  529. pdev->pdev_id);
  530. }
  531. break;
  532. case 1:
  533. status = dp_config_tx_capture_mode(pdev);
  534. break;
  535. case 2:
  536. case 4:
  537. status = dp_config_mcopy_mode(pdev, val);
  538. break;
  539. default:
  540. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  541. "Invalid value, mode not supported");
  542. status = QDF_STATUS_E_INVAL;
  543. break;
  544. }
  545. return status;
  546. }
  547. #endif
  548. #ifdef QCA_UNDECODED_METADATA_SUPPORT
  549. QDF_STATUS
  550. dp_mon_config_undecoded_metadata_capture(struct dp_pdev *pdev, int val)
  551. {
  552. QDF_STATUS status = QDF_STATUS_SUCCESS;
  553. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  554. if (!mon_pdev->mvdev && !mon_pdev->scan_spcl_vap_configured) {
  555. qdf_err("No monitor or Special vap, undecoded capture not supported");
  556. return QDF_STATUS_E_RESOURCES;
  557. }
  558. if (val)
  559. status = dp_enable_undecoded_metadata_capture(pdev, val);
  560. else
  561. status = dp_reset_undecoded_metadata_capture(pdev);
  562. return status;
  563. }
  564. #endif
  565. /**
  566. * dp_monitor_mode_ring_config() - Send the tlv config to fw for monitor buffer
  567. * ring based on target
  568. * @soc: soc handle
  569. * @mac_for_pdev: WIN- pdev_id, MCL- mac id
  570. * @pdev: physical device handle
  571. * @ring_num: mac id
  572. * @htt_tlv_filter: tlv filter
  573. *
  574. * Return: zero on success, non-zero on failure
  575. */
  576. static inline QDF_STATUS
  577. dp_monitor_mode_ring_config(struct dp_soc *soc, uint8_t mac_for_pdev,
  578. struct dp_pdev *pdev, uint8_t ring_num,
  579. struct htt_rx_ring_tlv_filter htt_tlv_filter)
  580. {
  581. QDF_STATUS status;
  582. if (soc->wlan_cfg_ctx->rxdma1_enable)
  583. status = htt_h2t_rx_ring_cfg(soc->htt_handle, mac_for_pdev,
  584. soc->rxdma_mon_buf_ring[ring_num]
  585. .hal_srng,
  586. RXDMA_MONITOR_BUF,
  587. RX_MONITOR_BUFFER_SIZE,
  588. &htt_tlv_filter);
  589. else
  590. status = htt_h2t_rx_ring_cfg(soc->htt_handle, mac_for_pdev,
  591. pdev->rx_mac_buf_ring[ring_num]
  592. .hal_srng,
  593. RXDMA_BUF, RX_DATA_BUFFER_SIZE,
  594. &htt_tlv_filter);
  595. return status;
  596. }
  597. /**
  598. * dp_get_mon_vdev_from_pdev_wifi3() - Get vdev id of monitor mode
  599. * @soc_hdl: datapath soc handle
  600. * @pdev_id: physical device instance id
  601. *
  602. * Return: virtual interface id
  603. */
  604. static uint8_t dp_get_mon_vdev_from_pdev_wifi3(struct cdp_soc_t *soc_hdl,
  605. uint8_t pdev_id)
  606. {
  607. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  608. struct dp_pdev *pdev = dp_get_pdev_from_soc_pdev_id_wifi3(soc, pdev_id);
  609. if (qdf_unlikely(!pdev || !pdev->monitor_pdev ||
  610. !pdev->monitor_pdev->mvdev))
  611. return -EINVAL;
  612. return pdev->monitor_pdev->mvdev->vdev_id;
  613. }
  614. #if defined(QCA_TX_CAPTURE_SUPPORT) || defined(QCA_ENHANCED_STATS_SUPPORT)
  615. #ifndef WLAN_TX_PKT_CAPTURE_ENH
  616. void dp_deliver_mgmt_frm(struct dp_pdev *pdev, qdf_nbuf_t nbuf)
  617. {
  618. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  619. if (mon_pdev->tx_sniffer_enable || mon_pdev->mcopy_mode) {
  620. dp_wdi_event_handler(WDI_EVENT_TX_MGMT_CTRL, pdev->soc,
  621. nbuf, HTT_INVALID_PEER,
  622. WDI_NO_VAL, pdev->pdev_id);
  623. } else {
  624. if (!mon_pdev->bpr_enable)
  625. qdf_nbuf_free(nbuf);
  626. }
  627. }
  628. #endif
  629. #endif
  630. QDF_STATUS dp_htt_ppdu_stats_attach(struct dp_pdev *pdev)
  631. {
  632. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  633. mon_pdev->ppdu_tlv_buf = qdf_mem_malloc(HTT_T2H_MAX_MSG_SIZE);
  634. if (!mon_pdev->ppdu_tlv_buf) {
  635. QDF_TRACE_ERROR(QDF_MODULE_ID_DP, "ppdu_tlv_buf alloc fail");
  636. return QDF_STATUS_E_NOMEM;
  637. }
  638. return QDF_STATUS_SUCCESS;
  639. }
  640. void dp_htt_ppdu_stats_detach(struct dp_pdev *pdev)
  641. {
  642. struct ppdu_info *ppdu_info, *ppdu_info_next;
  643. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  644. TAILQ_FOREACH_SAFE(ppdu_info, &mon_pdev->ppdu_info_list,
  645. ppdu_info_list_elem, ppdu_info_next) {
  646. if (!ppdu_info)
  647. break;
  648. TAILQ_REMOVE(&mon_pdev->ppdu_info_list,
  649. ppdu_info, ppdu_info_list_elem);
  650. mon_pdev->list_depth--;
  651. qdf_assert_always(ppdu_info->nbuf);
  652. qdf_nbuf_free(ppdu_info->nbuf);
  653. qdf_mem_free(ppdu_info);
  654. }
  655. TAILQ_FOREACH_SAFE(ppdu_info, &mon_pdev->sched_comp_ppdu_list,
  656. ppdu_info_list_elem, ppdu_info_next) {
  657. if (!ppdu_info)
  658. break;
  659. TAILQ_REMOVE(&mon_pdev->sched_comp_ppdu_list,
  660. ppdu_info, ppdu_info_list_elem);
  661. mon_pdev->sched_comp_list_depth--;
  662. qdf_assert_always(ppdu_info->nbuf);
  663. qdf_nbuf_free(ppdu_info->nbuf);
  664. qdf_mem_free(ppdu_info);
  665. }
  666. if (mon_pdev->ppdu_tlv_buf)
  667. qdf_mem_free(mon_pdev->ppdu_tlv_buf);
  668. }
  669. QDF_STATUS dp_pdev_get_rx_mon_stats(struct cdp_soc_t *soc_hdl, uint8_t pdev_id,
  670. struct cdp_pdev_mon_stats *stats)
  671. {
  672. struct dp_soc *soc = (struct dp_soc *)soc_hdl;
  673. struct dp_pdev *pdev = dp_get_pdev_from_soc_pdev_id_wifi3(soc, pdev_id);
  674. struct dp_mon_pdev *mon_pdev;
  675. if (!pdev)
  676. return QDF_STATUS_E_FAILURE;
  677. mon_pdev = pdev->monitor_pdev;
  678. if (!mon_pdev)
  679. return QDF_STATUS_E_FAILURE;
  680. qdf_mem_copy(stats, &mon_pdev->rx_mon_stats,
  681. sizeof(struct cdp_pdev_mon_stats));
  682. return QDF_STATUS_SUCCESS;
  683. }
  684. #ifdef QCA_UNDECODED_METADATA_SUPPORT
  685. /**
  686. * dp_pdev_get_undecoded_capture_stats() - Get undecoded metadata captured
  687. * monitor pdev stats
  688. * @mon_pdev: Monitor PDEV handle
  689. * @rx_mon_stats: Monitor pdev status/destination ring stats
  690. *
  691. * Return: None
  692. */
  693. static inline void
  694. dp_pdev_get_undecoded_capture_stats(struct dp_mon_pdev *mon_pdev,
  695. struct cdp_pdev_mon_stats *rx_mon_stats)
  696. {
  697. char undecoded_error[DP_UNDECODED_ERR_LENGTH];
  698. uint8_t index = 0, i;
  699. DP_PRINT_STATS("Rx Undecoded Frame count:%d",
  700. rx_mon_stats->rx_undecoded_count);
  701. index = 0;
  702. for (i = 0; i < (CDP_PHYRX_ERR_MAX); i++) {
  703. index += qdf_snprint(&undecoded_error[index],
  704. DP_UNDECODED_ERR_LENGTH - index,
  705. " %d", rx_mon_stats->rx_undecoded_error[i]);
  706. }
  707. DP_PRINT_STATS("Undecoded Error (0-63):%s", undecoded_error);
  708. }
  709. #else
  710. static inline void
  711. dp_pdev_get_undecoded_capture_stats(struct dp_mon_pdev *mon_pdev,
  712. struct cdp_pdev_mon_stats *rx_mon_stats)
  713. {
  714. }
  715. #endif
  716. static const char *
  717. dp_preamble_type_str[] = {
  718. "preamble OFDMA ",
  719. "preamble CCK ",
  720. "preamble HT ",
  721. "preamble VHT ",
  722. "preamble HE ",
  723. "preamble EHT ",
  724. "preamble NO SUPPORT",
  725. };
  726. static const char *
  727. dp_reception_type_str[] = {
  728. "reception su ",
  729. "reception mu_mimo ",
  730. "reception ofdma ",
  731. "reception ofdma mimo",
  732. };
  733. static const char *
  734. dp_mu_dl_ul_str[] = {
  735. "MU DL",
  736. "MU UL",
  737. };
  738. static inline void
  739. dp_print_pdev_mpdu_fcs_ok_cnt(struct cdp_pdev_mon_stats *rx_mon_sts,
  740. uint32_t pkt_t, uint32_t rx_t,
  741. uint32_t dl_ul, uint32_t user)
  742. {
  743. DP_PRINT_STATS("%s, %s, %s, user=%d, mpdu_fcs_ok=%d",
  744. dp_preamble_type_str[pkt_t],
  745. dp_reception_type_str[rx_t],
  746. dp_mu_dl_ul_str[dl_ul],
  747. user,
  748. rx_mon_sts->mpdu_cnt_fcs_ok[pkt_t][rx_t][dl_ul][user]);
  749. }
  750. static inline void
  751. dp_print_pdev_mpdu_fcs_err_cnt(struct cdp_pdev_mon_stats *rx_mon_sts,
  752. uint32_t pkt_t, uint32_t rx_t,
  753. uint32_t dl_ul, uint32_t user)
  754. {
  755. DP_PRINT_STATS("%s, %s, %s, user=%d, mpdu_fcs_err=%d",
  756. dp_preamble_type_str[pkt_t],
  757. dp_reception_type_str[rx_t],
  758. dp_mu_dl_ul_str[dl_ul],
  759. user,
  760. rx_mon_sts->mpdu_cnt_fcs_err[pkt_t][rx_t][dl_ul][user]);
  761. }
  762. static inline void
  763. dp_print_pdev_mpdu_cnt(struct cdp_pdev_mon_stats *rx_mon_sts,
  764. uint32_t pkt_t, uint32_t rx_t,
  765. uint32_t dl_ul, uint32_t user)
  766. {
  767. if (rx_mon_sts->mpdu_cnt_fcs_ok[pkt_t][rx_t][dl_ul][user])
  768. dp_print_pdev_mpdu_fcs_ok_cnt(rx_mon_sts, pkt_t, rx_t,
  769. dl_ul, user);
  770. if (rx_mon_sts->mpdu_cnt_fcs_err[pkt_t][rx_t][dl_ul][user])
  771. dp_print_pdev_mpdu_fcs_err_cnt(rx_mon_sts, pkt_t, rx_t,
  772. dl_ul, user);
  773. }
  774. static inline void
  775. dp_print_pdev_mpdu_user(struct cdp_pdev_mon_stats *rx_mon_sts,
  776. uint32_t pkt_t, uint32_t rx_t,
  777. uint32_t dl_ul)
  778. {
  779. uint32_t user;
  780. for (user = 0; user < CDP_MU_SNIF_USER_MAX; user++)
  781. dp_print_pdev_mpdu_cnt(rx_mon_sts, pkt_t, rx_t,
  782. dl_ul, user);
  783. }
  784. static inline void
  785. dp_print_pdev_mpdu_dl_ul(struct cdp_pdev_mon_stats *rx_mon_sts,
  786. uint32_t pkt_t, uint32_t rx_t)
  787. {
  788. uint32_t dl_ul;
  789. for (dl_ul = CDP_MU_TYPE_DL; dl_ul < CDP_MU_TYPE_MAX; dl_ul++)
  790. dp_print_pdev_mpdu_user(rx_mon_sts, pkt_t, rx_t,
  791. dl_ul);
  792. }
  793. static inline void
  794. dp_print_pdev_mpdu_rx_type(struct cdp_pdev_mon_stats *rx_mon_sts,
  795. uint32_t pkt_t)
  796. {
  797. uint32_t rx_t;
  798. for (rx_t = CDP_RX_TYPE_SU; rx_t < CDP_RX_TYPE_MAX; rx_t++)
  799. dp_print_pdev_mpdu_dl_ul(rx_mon_sts, pkt_t, rx_t);
  800. }
  801. static inline void
  802. dp_print_pdev_mpdu_pkt_type(struct cdp_pdev_mon_stats *rx_mon_sts)
  803. {
  804. uint32_t pkt_t;
  805. for (pkt_t = CDP_PKT_TYPE_OFDM; pkt_t < CDP_PKT_TYPE_MAX; pkt_t++)
  806. dp_print_pdev_mpdu_rx_type(rx_mon_sts, pkt_t);
  807. }
  808. static inline void
  809. print_ppdu_eht_type_mode(
  810. struct cdp_pdev_mon_stats *rx_mon_stats,
  811. uint32_t ppdu_type_mode,
  812. uint32_t dl_ul)
  813. {
  814. DP_PRINT_STATS("type_mode=%d, dl_ul=%d, cnt=%d",
  815. ppdu_type_mode,
  816. dl_ul,
  817. rx_mon_stats->ppdu_eht_type_mode[ppdu_type_mode][dl_ul]);
  818. }
  819. static inline void
  820. print_ppdu_eth_type_mode_dl_ul(
  821. struct cdp_pdev_mon_stats *rx_mon_stats,
  822. uint32_t ppdu_type_mode
  823. )
  824. {
  825. uint32_t dl_ul;
  826. for (dl_ul = 0; dl_ul < CDP_MU_TYPE_MAX; dl_ul++) {
  827. if (rx_mon_stats->ppdu_eht_type_mode[ppdu_type_mode][dl_ul])
  828. print_ppdu_eht_type_mode(rx_mon_stats,
  829. ppdu_type_mode, dl_ul);
  830. }
  831. }
  832. static inline void
  833. dp_print_pdev_eht_ppdu_cnt(struct dp_pdev *pdev)
  834. {
  835. struct cdp_pdev_mon_stats *rx_mon_stats;
  836. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  837. uint32_t ppdu_type_mode;
  838. rx_mon_stats = &mon_pdev->rx_mon_stats;
  839. DP_PRINT_STATS("Monitor EHT PPDU Count");
  840. for (ppdu_type_mode = 0; ppdu_type_mode < CDP_EHT_TYPE_MODE_MAX;
  841. ppdu_type_mode++) {
  842. print_ppdu_eth_type_mode_dl_ul(rx_mon_stats,
  843. ppdu_type_mode);
  844. }
  845. }
  846. static inline void
  847. dp_print_pdev_mpdu_stats(struct dp_pdev *pdev)
  848. {
  849. struct cdp_pdev_mon_stats *rx_mon_stats;
  850. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  851. rx_mon_stats = &mon_pdev->rx_mon_stats;
  852. DP_PRINT_STATS("Monitor MPDU Count");
  853. dp_print_pdev_mpdu_pkt_type(rx_mon_stats);
  854. }
  855. void
  856. dp_print_pdev_rx_mon_stats(struct dp_pdev *pdev)
  857. {
  858. struct cdp_pdev_mon_stats *rx_mon_stats;
  859. uint32_t *stat_ring_ppdu_ids;
  860. uint32_t *dest_ring_ppdu_ids;
  861. int i, idx;
  862. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  863. rx_mon_stats = &mon_pdev->rx_mon_stats;
  864. DP_PRINT_STATS("PDEV Rx Monitor Stats:\n");
  865. DP_PRINT_STATS("status_ppdu_compl_cnt = %d",
  866. rx_mon_stats->status_ppdu_compl);
  867. DP_PRINT_STATS("status_ppdu_start_cnt = %d",
  868. rx_mon_stats->status_ppdu_start);
  869. DP_PRINT_STATS("status_ppdu_end_cnt = %d",
  870. rx_mon_stats->status_ppdu_end);
  871. DP_PRINT_STATS("status_ppdu_start_mis_cnt = %d",
  872. rx_mon_stats->status_ppdu_start_mis);
  873. DP_PRINT_STATS("status_ppdu_end_mis_cnt = %d",
  874. rx_mon_stats->status_ppdu_end_mis);
  875. DP_PRINT_STATS("start_user_info_cnt = %d",
  876. rx_mon_stats->start_user_info_cnt);
  877. DP_PRINT_STATS("end_user_stats_cnt = %d",
  878. rx_mon_stats->end_user_stats_cnt);
  879. DP_PRINT_STATS("status_ppdu_done_cnt = %d",
  880. rx_mon_stats->status_ppdu_done);
  881. DP_PRINT_STATS("dest_ppdu_done_cnt = %d",
  882. rx_mon_stats->dest_ppdu_done);
  883. DP_PRINT_STATS("dest_mpdu_done_cnt = %d",
  884. rx_mon_stats->dest_mpdu_done);
  885. DP_PRINT_STATS("tlv_tag_status_err_cnt = %u",
  886. rx_mon_stats->tlv_tag_status_err);
  887. DP_PRINT_STATS("mon status DMA not done WAR count= %u",
  888. rx_mon_stats->status_buf_done_war);
  889. DP_PRINT_STATS("dest_mpdu_drop_cnt = %d",
  890. rx_mon_stats->dest_mpdu_drop);
  891. DP_PRINT_STATS("dup_mon_linkdesc_cnt = %d",
  892. rx_mon_stats->dup_mon_linkdesc_cnt);
  893. DP_PRINT_STATS("dup_mon_buf_cnt = %d",
  894. rx_mon_stats->dup_mon_buf_cnt);
  895. DP_PRINT_STATS("mon_rx_buf_reaped = %u",
  896. rx_mon_stats->mon_rx_bufs_reaped_dest);
  897. DP_PRINT_STATS("mon_rx_buf_replenished = %u",
  898. rx_mon_stats->mon_rx_bufs_replenished_dest);
  899. DP_PRINT_STATS("ppdu_id_mismatch = %u",
  900. rx_mon_stats->ppdu_id_mismatch);
  901. DP_PRINT_STATS("mpdu_ppdu_id_match_cnt = %d",
  902. rx_mon_stats->ppdu_id_match);
  903. DP_PRINT_STATS("ppdus dropped frm status ring = %d",
  904. rx_mon_stats->status_ppdu_drop);
  905. DP_PRINT_STATS("ppdus dropped frm dest ring = %d",
  906. rx_mon_stats->dest_ppdu_drop);
  907. DP_PRINT_STATS("mpdu_ppdu_id_mismatch_drop = %u",
  908. rx_mon_stats->mpdu_ppdu_id_mismatch_drop);
  909. DP_PRINT_STATS("mpdu_decap_type_invalid = %u",
  910. rx_mon_stats->mpdu_decap_type_invalid);
  911. stat_ring_ppdu_ids =
  912. (uint32_t *)qdf_mem_malloc(sizeof(uint32_t) * MAX_PPDU_ID_HIST);
  913. dest_ring_ppdu_ids =
  914. (uint32_t *)qdf_mem_malloc(sizeof(uint32_t) * MAX_PPDU_ID_HIST);
  915. if (!stat_ring_ppdu_ids || !dest_ring_ppdu_ids)
  916. DP_PRINT_STATS("Unable to allocate ppdu id hist mem\n");
  917. qdf_spin_lock_bh(&mon_pdev->mon_lock);
  918. idx = rx_mon_stats->ppdu_id_hist_idx;
  919. qdf_mem_copy(stat_ring_ppdu_ids,
  920. rx_mon_stats->stat_ring_ppdu_id_hist,
  921. sizeof(uint32_t) * MAX_PPDU_ID_HIST);
  922. qdf_mem_copy(dest_ring_ppdu_ids,
  923. rx_mon_stats->dest_ring_ppdu_id_hist,
  924. sizeof(uint32_t) * MAX_PPDU_ID_HIST);
  925. qdf_spin_unlock_bh(&mon_pdev->mon_lock);
  926. DP_PRINT_STATS("PPDU Id history:");
  927. DP_PRINT_STATS("stat_ring_ppdu_ids\t dest_ring_ppdu_ids");
  928. for (i = 0; i < MAX_PPDU_ID_HIST; i++) {
  929. idx = (idx + 1) & (MAX_PPDU_ID_HIST - 1);
  930. DP_PRINT_STATS("%*u\t%*u", 16,
  931. rx_mon_stats->stat_ring_ppdu_id_hist[idx], 16,
  932. rx_mon_stats->dest_ring_ppdu_id_hist[idx]);
  933. }
  934. qdf_mem_free(stat_ring_ppdu_ids);
  935. qdf_mem_free(dest_ring_ppdu_ids);
  936. DP_PRINT_STATS("mon_rx_dest_stuck = %d",
  937. rx_mon_stats->mon_rx_dest_stuck);
  938. dp_pdev_get_undecoded_capture_stats(mon_pdev, rx_mon_stats);
  939. dp_mon_rx_print_advanced_stats(pdev->soc, pdev);
  940. dp_print_pdev_mpdu_stats(pdev);
  941. dp_print_pdev_eht_ppdu_cnt(pdev);
  942. }
  943. #ifdef QCA_SUPPORT_BPR
  944. QDF_STATUS
  945. dp_set_bpr_enable(struct dp_pdev *pdev, int val)
  946. {
  947. struct dp_mon_ops *mon_ops;
  948. mon_ops = dp_mon_ops_get(pdev->soc);
  949. if (mon_ops && mon_ops->mon_set_bpr_enable)
  950. return mon_ops->mon_set_bpr_enable(pdev, val);
  951. return QDF_STATUS_E_FAILURE;
  952. }
  953. #endif
  954. #ifdef WDI_EVENT_ENABLE
  955. #ifdef BE_PKTLOG_SUPPORT
  956. static bool
  957. dp_set_hybrid_pktlog_enable(struct dp_pdev *pdev,
  958. struct dp_mon_pdev *mon_pdev,
  959. struct dp_soc *soc)
  960. {
  961. struct wlan_cfg_dp_soc_ctxt *soc_cfg_ctx;
  962. struct dp_mon_ops *mon_ops = NULL;
  963. uint16_t num_buffers;
  964. if (mon_pdev->mvdev) {
  965. /* Nothing needs to be done if monitor mode is
  966. * enabled
  967. */
  968. mon_pdev->pktlog_hybrid_mode = true;
  969. return false;
  970. }
  971. mon_ops = dp_mon_ops_get(pdev->soc);
  972. if (!mon_ops) {
  973. dp_mon_filter_err("Mon ops uninitialized");
  974. return QDF_STATUS_E_FAILURE;
  975. }
  976. if (!mon_pdev->pktlog_hybrid_mode) {
  977. mon_pdev->pktlog_hybrid_mode = true;
  978. soc_cfg_ctx = soc->wlan_cfg_ctx;
  979. num_buffers =
  980. wlan_cfg_get_dp_soc_tx_mon_buf_ring_size(soc_cfg_ctx);
  981. if (mon_ops && mon_ops->set_mon_mode_buf_rings_tx)
  982. mon_ops->set_mon_mode_buf_rings_tx(pdev, num_buffers);
  983. dp_mon_filter_setup_pktlog_hybrid(pdev);
  984. if (dp_tx_mon_filter_update(pdev) !=
  985. QDF_STATUS_SUCCESS) {
  986. dp_cdp_err("Set hybrid filters failed");
  987. dp_mon_filter_reset_pktlog_hybrid(pdev);
  988. mon_pdev->rx_pktlog_mode =
  989. DP_RX_PKTLOG_DISABLED;
  990. return false;
  991. }
  992. dp_monitor_reap_timer_start(soc, CDP_MON_REAP_SOURCE_PKTLOG);
  993. }
  994. return true;
  995. }
  996. static void
  997. dp_set_hybrid_pktlog_disable(struct dp_mon_pdev *mon_pdev)
  998. {
  999. mon_pdev->pktlog_hybrid_mode = false;
  1000. }
  1001. #else
  1002. static void
  1003. dp_set_hybrid_pktlog_disable(struct dp_mon_pdev *mon_pdev)
  1004. {
  1005. }
  1006. static bool
  1007. dp_set_hybrid_pktlog_enable(struct dp_pdev *pdev,
  1008. struct dp_mon_pdev *mon_pdev,
  1009. struct dp_soc *soc)
  1010. {
  1011. dp_cdp_err("Hybrid mode is supported only on beryllium");
  1012. return true;
  1013. }
  1014. #endif
  1015. int dp_set_pktlog_wifi3(struct dp_pdev *pdev, uint32_t event,
  1016. bool enable)
  1017. {
  1018. struct dp_soc *soc = NULL;
  1019. int max_mac_rings = wlan_cfg_get_num_mac_rings
  1020. (pdev->wlan_cfg_ctx);
  1021. uint8_t mac_id = 0;
  1022. struct dp_mon_ops *mon_ops;
  1023. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  1024. soc = pdev->soc;
  1025. mon_ops = dp_mon_ops_get(soc);
  1026. if (!mon_ops)
  1027. return 0;
  1028. dp_update_num_mac_rings_for_dbs(soc, &max_mac_rings);
  1029. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_DEBUG,
  1030. FL("Max_mac_rings %d "),
  1031. max_mac_rings);
  1032. if (enable) {
  1033. switch (event) {
  1034. case WDI_EVENT_RX_DESC:
  1035. /* Nothing needs to be done if monitor mode is
  1036. * enabled
  1037. */
  1038. if (mon_pdev->mvdev)
  1039. return 0;
  1040. if (mon_pdev->rx_pktlog_mode == DP_RX_PKTLOG_FULL)
  1041. break;
  1042. mon_pdev->rx_pktlog_mode = DP_RX_PKTLOG_FULL;
  1043. dp_mon_filter_setup_rx_pkt_log_full(pdev);
  1044. if (dp_mon_filter_update(pdev) != QDF_STATUS_SUCCESS) {
  1045. dp_cdp_err("%pK: Pktlog full filters set failed",
  1046. soc);
  1047. dp_mon_filter_reset_rx_pkt_log_full(pdev);
  1048. mon_pdev->rx_pktlog_mode =
  1049. DP_RX_PKTLOG_DISABLED;
  1050. return 0;
  1051. }
  1052. dp_monitor_reap_timer_start(soc,
  1053. CDP_MON_REAP_SOURCE_PKTLOG);
  1054. break;
  1055. case WDI_EVENT_LITE_RX:
  1056. /* Nothing needs to be done if monitor mode is
  1057. * enabled
  1058. */
  1059. if (mon_pdev->mvdev)
  1060. return 0;
  1061. if (mon_pdev->rx_pktlog_mode == DP_RX_PKTLOG_LITE)
  1062. break;
  1063. mon_pdev->rx_pktlog_mode = DP_RX_PKTLOG_LITE;
  1064. /*
  1065. * Set the packet log lite mode filter.
  1066. */
  1067. dp_mon_filter_setup_rx_pkt_log_lite(pdev);
  1068. if (dp_mon_filter_update(pdev) != QDF_STATUS_SUCCESS) {
  1069. dp_cdp_err("%pK: Pktlog lite filters set failed",
  1070. soc);
  1071. dp_mon_filter_reset_rx_pkt_log_lite(pdev);
  1072. mon_pdev->rx_pktlog_mode =
  1073. DP_RX_PKTLOG_DISABLED;
  1074. return 0;
  1075. }
  1076. dp_monitor_reap_timer_start(soc,
  1077. CDP_MON_REAP_SOURCE_PKTLOG);
  1078. break;
  1079. case WDI_EVENT_LITE_T2H:
  1080. for (mac_id = 0; mac_id < max_mac_rings; mac_id++) {
  1081. int mac_for_pdev = dp_get_mac_id_for_pdev(
  1082. mac_id, pdev->pdev_id);
  1083. mon_pdev->pktlog_ppdu_stats = true;
  1084. dp_h2t_cfg_stats_msg_send(pdev,
  1085. DP_PPDU_TXLITE_STATS_BITMASK_CFG,
  1086. mac_for_pdev);
  1087. }
  1088. break;
  1089. case WDI_EVENT_RX_CBF:
  1090. /* Nothing needs to be done if monitor mode is
  1091. * enabled
  1092. */
  1093. if (mon_pdev->mvdev)
  1094. return 0;
  1095. if (mon_pdev->rx_pktlog_cbf)
  1096. break;
  1097. mon_pdev->rx_pktlog_cbf = true;
  1098. mon_pdev->monitor_configured = true;
  1099. if (mon_ops->mon_vdev_set_monitor_mode_buf_rings)
  1100. mon_ops->mon_vdev_set_monitor_mode_buf_rings(
  1101. pdev);
  1102. /*
  1103. * Set the packet log lite mode filter.
  1104. */
  1105. qdf_info("Non mon mode: Enable destination ring");
  1106. dp_mon_filter_setup_rx_pkt_log_cbf(pdev);
  1107. if (dp_mon_filter_update(pdev) != QDF_STATUS_SUCCESS) {
  1108. dp_mon_err("Pktlog set CBF filters failed");
  1109. dp_mon_filter_reset_rx_pktlog_cbf(pdev);
  1110. mon_pdev->rx_pktlog_mode =
  1111. DP_RX_PKTLOG_DISABLED;
  1112. mon_pdev->monitor_configured = false;
  1113. return 0;
  1114. }
  1115. dp_monitor_reap_timer_start(soc,
  1116. CDP_MON_REAP_SOURCE_PKTLOG);
  1117. break;
  1118. case WDI_EVENT_HYBRID_TX:
  1119. if (!dp_set_hybrid_pktlog_enable(pdev, mon_pdev, soc))
  1120. return 0;
  1121. break;
  1122. default:
  1123. /* Nothing needs to be done for other pktlog types */
  1124. break;
  1125. }
  1126. } else {
  1127. switch (event) {
  1128. case WDI_EVENT_RX_DESC:
  1129. case WDI_EVENT_LITE_RX:
  1130. /* Nothing needs to be done if monitor mode is
  1131. * enabled
  1132. */
  1133. if (mon_pdev->mvdev)
  1134. return 0;
  1135. if (mon_pdev->rx_pktlog_mode == DP_RX_PKTLOG_DISABLED)
  1136. break;
  1137. mon_pdev->rx_pktlog_mode = DP_RX_PKTLOG_DISABLED;
  1138. dp_mon_filter_reset_rx_pkt_log_full(pdev);
  1139. if (dp_mon_filter_update(pdev) != QDF_STATUS_SUCCESS) {
  1140. dp_cdp_err("%pK: Pktlog filters reset failed",
  1141. soc);
  1142. return 0;
  1143. }
  1144. dp_mon_filter_reset_rx_pkt_log_lite(pdev);
  1145. if (dp_mon_filter_update(pdev) != QDF_STATUS_SUCCESS) {
  1146. dp_cdp_err("%pK: Pktlog filters reset failed",
  1147. soc);
  1148. return 0;
  1149. }
  1150. dp_monitor_reap_timer_stop(soc,
  1151. CDP_MON_REAP_SOURCE_PKTLOG);
  1152. break;
  1153. case WDI_EVENT_LITE_T2H:
  1154. /*
  1155. * To disable HTT_H2T_MSG_TYPE_PPDU_STATS_CFG in FW
  1156. * passing value 0. Once these macros will define in htt
  1157. * header file will use proper macros
  1158. */
  1159. for (mac_id = 0; mac_id < max_mac_rings; mac_id++) {
  1160. int mac_for_pdev =
  1161. dp_get_mac_id_for_pdev(mac_id,
  1162. pdev->pdev_id);
  1163. mon_pdev->pktlog_ppdu_stats = false;
  1164. if (!mon_pdev->enhanced_stats_en &&
  1165. !mon_pdev->tx_sniffer_enable &&
  1166. !mon_pdev->mcopy_mode) {
  1167. dp_h2t_cfg_stats_msg_send(pdev, 0,
  1168. mac_for_pdev);
  1169. } else if (mon_pdev->tx_sniffer_enable ||
  1170. mon_pdev->mcopy_mode) {
  1171. dp_h2t_cfg_stats_msg_send(pdev,
  1172. DP_PPDU_STATS_CFG_SNIFFER,
  1173. mac_for_pdev);
  1174. } else if (mon_pdev->enhanced_stats_en) {
  1175. dp_h2t_cfg_stats_msg_send(pdev,
  1176. DP_PPDU_STATS_CFG_ENH_STATS,
  1177. mac_for_pdev);
  1178. }
  1179. }
  1180. break;
  1181. case WDI_EVENT_RX_CBF:
  1182. mon_pdev->rx_pktlog_cbf = false;
  1183. break;
  1184. case WDI_EVENT_HYBRID_TX:
  1185. dp_set_hybrid_pktlog_disable(mon_pdev);
  1186. break;
  1187. default:
  1188. /* Nothing needs to be done for other pktlog types */
  1189. break;
  1190. }
  1191. }
  1192. return 0;
  1193. }
  1194. #endif
  1195. /* MCL specific functions */
  1196. #if defined(DP_CON_MON) && !defined(REMOVE_PKT_LOG)
  1197. void dp_pktlogmod_exit(struct dp_pdev *pdev)
  1198. {
  1199. struct dp_soc *soc = pdev->soc;
  1200. struct hif_opaque_softc *scn = soc->hif_handle;
  1201. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  1202. if (!scn) {
  1203. dp_mon_err("Invalid hif(scn) handle");
  1204. return;
  1205. }
  1206. dp_monitor_reap_timer_stop(soc, CDP_MON_REAP_SOURCE_PKTLOG);
  1207. pktlogmod_exit(scn);
  1208. mon_pdev->pkt_log_init = false;
  1209. }
  1210. #endif /*DP_CON_MON*/
  1211. #if defined(WDI_EVENT_ENABLE) && defined(QCA_ENHANCED_STATS_SUPPORT)
  1212. #ifdef IPA_OFFLOAD
  1213. void dp_peer_get_tx_rx_stats(struct dp_peer *peer,
  1214. struct cdp_interface_peer_stats *peer_stats_intf)
  1215. {
  1216. struct dp_rx_tid *rx_tid = NULL;
  1217. uint8_t i = 0;
  1218. for (i = 0; i < DP_MAX_TIDS; i++) {
  1219. rx_tid = &peer->rx_tid[i];
  1220. peer_stats_intf->rx_byte_count +=
  1221. rx_tid->rx_msdu_cnt.bytes;
  1222. peer_stats_intf->rx_packet_count +=
  1223. rx_tid->rx_msdu_cnt.num;
  1224. }
  1225. peer_stats_intf->tx_packet_count =
  1226. peer->monitor_peer->stats.tx.tx_ucast_success.num;
  1227. peer_stats_intf->tx_byte_count =
  1228. peer->monitor_peer->stats.tx.tx_ucast_success.bytes;
  1229. }
  1230. #else
  1231. void dp_peer_get_tx_rx_stats(struct dp_peer *peer,
  1232. struct cdp_interface_peer_stats *peer_stats_intf)
  1233. {
  1234. struct dp_txrx_peer *txrx_peer = NULL;
  1235. struct dp_peer *tgt_peer = NULL;
  1236. tgt_peer = dp_get_tgt_peer_from_peer(peer);
  1237. txrx_peer = tgt_peer->txrx_peer;
  1238. peer_stats_intf->rx_packet_count = txrx_peer->to_stack.num;
  1239. peer_stats_intf->rx_byte_count = txrx_peer->to_stack.bytes;
  1240. peer_stats_intf->tx_packet_count =
  1241. txrx_peer->stats.per_pkt_stats.tx.ucast.num;
  1242. peer_stats_intf->tx_byte_count =
  1243. txrx_peer->stats.per_pkt_stats.tx.tx_success.bytes;
  1244. }
  1245. #endif
  1246. QDF_STATUS dp_peer_stats_notify(struct dp_pdev *dp_pdev, struct dp_peer *peer)
  1247. {
  1248. struct cdp_interface_peer_stats peer_stats_intf = {0};
  1249. struct dp_mon_peer_stats *mon_peer_stats = NULL;
  1250. struct dp_peer *tgt_peer = NULL;
  1251. struct dp_txrx_peer *txrx_peer = NULL;
  1252. if (qdf_unlikely(!peer || !peer->vdev || !peer->monitor_peer))
  1253. return QDF_STATUS_E_FAULT;
  1254. tgt_peer = dp_get_tgt_peer_from_peer(peer);
  1255. if (qdf_unlikely(!tgt_peer))
  1256. return QDF_STATUS_E_FAULT;
  1257. txrx_peer = tgt_peer->txrx_peer;
  1258. if (!qdf_unlikely(txrx_peer))
  1259. return QDF_STATUS_E_FAULT;
  1260. mon_peer_stats = &peer->monitor_peer->stats;
  1261. if (mon_peer_stats->rx.last_snr != mon_peer_stats->rx.snr)
  1262. peer_stats_intf.rssi_changed = true;
  1263. if ((mon_peer_stats->rx.snr && peer_stats_intf.rssi_changed) ||
  1264. (mon_peer_stats->tx.tx_rate &&
  1265. mon_peer_stats->tx.tx_rate != mon_peer_stats->tx.last_tx_rate)) {
  1266. qdf_mem_copy(peer_stats_intf.peer_mac, peer->mac_addr.raw,
  1267. QDF_MAC_ADDR_SIZE);
  1268. peer_stats_intf.vdev_id = peer->vdev->vdev_id;
  1269. peer_stats_intf.last_peer_tx_rate =
  1270. mon_peer_stats->tx.last_tx_rate;
  1271. peer_stats_intf.peer_tx_rate = mon_peer_stats->tx.tx_rate;
  1272. peer_stats_intf.peer_rssi = mon_peer_stats->rx.snr;
  1273. peer_stats_intf.ack_rssi = mon_peer_stats->tx.last_ack_rssi;
  1274. dp_peer_get_tx_rx_stats(peer, &peer_stats_intf);
  1275. peer_stats_intf.per = tgt_peer->stats.tx.last_per;
  1276. peer_stats_intf.free_buff = INVALID_FREE_BUFF;
  1277. dp_wdi_event_handler(WDI_EVENT_PEER_STATS, dp_pdev->soc,
  1278. (void *)&peer_stats_intf, 0,
  1279. WDI_NO_VAL, dp_pdev->pdev_id);
  1280. }
  1281. return QDF_STATUS_SUCCESS;
  1282. }
  1283. #endif
  1284. #ifdef FEATURE_NAC_RSSI
  1285. /**
  1286. * dp_rx_nac_filter() - Function to perform filtering of non-associated
  1287. * clients
  1288. * @pdev: DP pdev handle
  1289. * @rx_pkt_hdr: Rx packet Header
  1290. *
  1291. * Return: dp_vdev*
  1292. */
  1293. static
  1294. struct dp_vdev *dp_rx_nac_filter(struct dp_pdev *pdev,
  1295. uint8_t *rx_pkt_hdr)
  1296. {
  1297. struct ieee80211_frame *wh;
  1298. struct dp_neighbour_peer *peer = NULL;
  1299. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  1300. wh = (struct ieee80211_frame *)rx_pkt_hdr;
  1301. if ((wh->i_fc[1] & IEEE80211_FC1_DIR_MASK) != IEEE80211_FC1_DIR_TODS)
  1302. return NULL;
  1303. qdf_spin_lock_bh(&mon_pdev->neighbour_peer_mutex);
  1304. TAILQ_FOREACH(peer, &mon_pdev->neighbour_peers_list,
  1305. neighbour_peer_list_elem) {
  1306. if (qdf_mem_cmp(&peer->neighbour_peers_macaddr.raw[0],
  1307. wh->i_addr2, QDF_MAC_ADDR_SIZE) == 0) {
  1308. dp_rx_debug("%pK: NAC configuration matched for mac-%2x:%2x:%2x:%2x:%2x:%2x",
  1309. pdev->soc,
  1310. peer->neighbour_peers_macaddr.raw[0],
  1311. peer->neighbour_peers_macaddr.raw[1],
  1312. peer->neighbour_peers_macaddr.raw[2],
  1313. peer->neighbour_peers_macaddr.raw[3],
  1314. peer->neighbour_peers_macaddr.raw[4],
  1315. peer->neighbour_peers_macaddr.raw[5]);
  1316. qdf_spin_unlock_bh(&mon_pdev->neighbour_peer_mutex);
  1317. return mon_pdev->mvdev;
  1318. }
  1319. }
  1320. qdf_spin_unlock_bh(&mon_pdev->neighbour_peer_mutex);
  1321. return NULL;
  1322. }
  1323. QDF_STATUS dp_filter_neighbour_peer(struct dp_pdev *pdev,
  1324. uint8_t *rx_pkt_hdr)
  1325. {
  1326. struct dp_vdev *vdev = NULL;
  1327. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  1328. if (mon_pdev->filter_neighbour_peers) {
  1329. /* Next Hop scenario not yet handle */
  1330. vdev = dp_rx_nac_filter(pdev, rx_pkt_hdr);
  1331. if (vdev) {
  1332. dp_rx_mon_deliver(pdev->soc, pdev->pdev_id,
  1333. pdev->invalid_peer_head_msdu,
  1334. pdev->invalid_peer_tail_msdu);
  1335. pdev->invalid_peer_head_msdu = NULL;
  1336. pdev->invalid_peer_tail_msdu = NULL;
  1337. return QDF_STATUS_SUCCESS;
  1338. }
  1339. }
  1340. return QDF_STATUS_E_FAILURE;
  1341. }
  1342. #endif
  1343. #if defined(ATH_SUPPORT_NAC_RSSI) || defined(ATH_SUPPORT_NAC)
  1344. /**
  1345. * dp_update_filter_neighbour_peers() - set neighbour peers(nac clients)
  1346. * address for smart mesh filtering
  1347. * @soc_hdl: cdp soc handle
  1348. * @vdev_id: id of virtual device object
  1349. * @cmd: Add/Del command
  1350. * @macaddr: nac client mac address
  1351. *
  1352. * Return: success/failure
  1353. */
  1354. static int dp_update_filter_neighbour_peers(struct cdp_soc_t *soc_hdl,
  1355. uint8_t vdev_id,
  1356. uint32_t cmd, uint8_t *macaddr)
  1357. {
  1358. struct dp_soc *soc = (struct dp_soc *)soc_hdl;
  1359. struct dp_pdev *pdev;
  1360. struct dp_neighbour_peer *peer = NULL;
  1361. struct dp_vdev *vdev = dp_vdev_get_ref_by_id(soc, vdev_id,
  1362. DP_MOD_ID_CDP);
  1363. struct dp_mon_pdev *mon_pdev;
  1364. if (!vdev || !macaddr)
  1365. goto fail0;
  1366. pdev = vdev->pdev;
  1367. if (!pdev)
  1368. goto fail0;
  1369. mon_pdev = pdev->monitor_pdev;
  1370. /* Store address of NAC (neighbour peer) which will be checked
  1371. * against TA of received packets.
  1372. */
  1373. if (cmd == DP_NAC_PARAM_ADD) {
  1374. peer = (struct dp_neighbour_peer *)qdf_mem_malloc(
  1375. sizeof(*peer));
  1376. if (!peer) {
  1377. dp_cdp_err("%pK: DP neighbour peer node memory allocation failed"
  1378. , soc);
  1379. goto fail0;
  1380. }
  1381. qdf_mem_copy(&peer->neighbour_peers_macaddr.raw[0],
  1382. macaddr, QDF_MAC_ADDR_SIZE);
  1383. peer->vdev = vdev;
  1384. qdf_spin_lock_bh(&mon_pdev->neighbour_peer_mutex);
  1385. /* add this neighbour peer into the list */
  1386. TAILQ_INSERT_TAIL(&mon_pdev->neighbour_peers_list, peer,
  1387. neighbour_peer_list_elem);
  1388. qdf_spin_unlock_bh(&mon_pdev->neighbour_peer_mutex);
  1389. /* first neighbour */
  1390. if (!mon_pdev->neighbour_peers_added) {
  1391. QDF_STATUS status = QDF_STATUS_SUCCESS;
  1392. mon_pdev->neighbour_peers_added = true;
  1393. dp_mon_filter_setup_smart_monitor(pdev);
  1394. status = dp_mon_filter_update(pdev);
  1395. if (status != QDF_STATUS_SUCCESS) {
  1396. dp_cdp_err("%pK: smart mon filter setup failed",
  1397. soc);
  1398. dp_mon_filter_reset_smart_monitor(pdev);
  1399. mon_pdev->neighbour_peers_added = false;
  1400. }
  1401. }
  1402. } else if (cmd == DP_NAC_PARAM_DEL) {
  1403. qdf_spin_lock_bh(&mon_pdev->neighbour_peer_mutex);
  1404. TAILQ_FOREACH(peer, &mon_pdev->neighbour_peers_list,
  1405. neighbour_peer_list_elem) {
  1406. if (!qdf_mem_cmp(&peer->neighbour_peers_macaddr.raw[0],
  1407. macaddr, QDF_MAC_ADDR_SIZE)) {
  1408. /* delete this peer from the list */
  1409. TAILQ_REMOVE(&mon_pdev->neighbour_peers_list,
  1410. peer, neighbour_peer_list_elem);
  1411. qdf_mem_free(peer);
  1412. break;
  1413. }
  1414. }
  1415. /* last neighbour deleted */
  1416. if (TAILQ_EMPTY(&mon_pdev->neighbour_peers_list)) {
  1417. QDF_STATUS status = QDF_STATUS_SUCCESS;
  1418. dp_mon_filter_reset_smart_monitor(pdev);
  1419. status = dp_mon_filter_update(pdev);
  1420. if (status != QDF_STATUS_SUCCESS) {
  1421. dp_cdp_err("%pK: smart mon filter clear failed",
  1422. soc);
  1423. }
  1424. mon_pdev->neighbour_peers_added = false;
  1425. }
  1426. qdf_spin_unlock_bh(&mon_pdev->neighbour_peer_mutex);
  1427. }
  1428. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  1429. return 1;
  1430. fail0:
  1431. if (vdev)
  1432. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  1433. return 0;
  1434. }
  1435. #endif /* ATH_SUPPORT_NAC_RSSI || ATH_SUPPORT_NAC */
  1436. /**
  1437. * dp_update_mon_mac_filter() - Set/reset monitor mac filter
  1438. * @soc_hdl: cdp soc handle
  1439. * @vdev_id: id of virtual device object
  1440. * @cmd: Add/Del command
  1441. *
  1442. * Return: 0 for success. nonzero for failure.
  1443. */
  1444. static QDF_STATUS dp_update_mon_mac_filter(struct cdp_soc_t *soc_hdl,
  1445. uint8_t vdev_id, uint32_t cmd)
  1446. {
  1447. struct dp_soc *soc = (struct dp_soc *)soc_hdl;
  1448. struct dp_pdev *pdev;
  1449. struct dp_vdev *vdev = dp_vdev_get_ref_by_id(soc, vdev_id,
  1450. DP_MOD_ID_CDP);
  1451. struct dp_mon_pdev *mon_pdev;
  1452. QDF_STATUS status = QDF_STATUS_E_FAILURE;
  1453. if (!vdev)
  1454. return status;
  1455. pdev = vdev->pdev;
  1456. if (!pdev) {
  1457. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  1458. return status;
  1459. }
  1460. mon_pdev = pdev->monitor_pdev;
  1461. if (cmd == DP_NAC_PARAM_ADD) {
  1462. /* first neighbour added */
  1463. dp_mon_filter_set_reset_mon_mac_filter(pdev, true);
  1464. status = dp_mon_filter_update(pdev);
  1465. if (status != QDF_STATUS_SUCCESS) {
  1466. dp_cdp_err("%pK: Mon mac filter set failed", soc);
  1467. dp_mon_filter_set_reset_mon_mac_filter(pdev, false);
  1468. }
  1469. } else if (cmd == DP_NAC_PARAM_DEL) {
  1470. /* last neighbour deleted */
  1471. dp_mon_filter_set_reset_mon_mac_filter(pdev, false);
  1472. status = dp_mon_filter_update(pdev);
  1473. if (status != QDF_STATUS_SUCCESS)
  1474. dp_cdp_err("%pK: Mon mac filter reset failed", soc);
  1475. }
  1476. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  1477. return status;
  1478. }
  1479. #ifdef ATH_SUPPORT_NAC_RSSI
  1480. /**
  1481. * dp_vdev_get_neighbour_rssi() - Store RSSI for configured NAC
  1482. * @soc_hdl: DP soc handle
  1483. * @vdev_id: id of DP vdev handle
  1484. * @mac_addr: neighbour mac
  1485. * @rssi: rssi value
  1486. *
  1487. * Return: 0 for success. nonzero for failure.
  1488. */
  1489. static QDF_STATUS dp_vdev_get_neighbour_rssi(struct cdp_soc_t *soc_hdl,
  1490. uint8_t vdev_id,
  1491. char *mac_addr,
  1492. uint8_t *rssi)
  1493. {
  1494. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  1495. struct dp_vdev *vdev = dp_vdev_get_ref_by_id(soc, vdev_id,
  1496. DP_MOD_ID_CDP);
  1497. struct dp_pdev *pdev;
  1498. struct dp_neighbour_peer *peer = NULL;
  1499. QDF_STATUS status = QDF_STATUS_E_FAILURE;
  1500. struct dp_mon_pdev *mon_pdev;
  1501. if (!vdev)
  1502. return status;
  1503. pdev = vdev->pdev;
  1504. mon_pdev = pdev->monitor_pdev;
  1505. *rssi = 0;
  1506. qdf_spin_lock_bh(&mon_pdev->neighbour_peer_mutex);
  1507. TAILQ_FOREACH(peer, &mon_pdev->neighbour_peers_list,
  1508. neighbour_peer_list_elem) {
  1509. if (qdf_mem_cmp(&peer->neighbour_peers_macaddr.raw[0],
  1510. mac_addr, QDF_MAC_ADDR_SIZE) == 0) {
  1511. *rssi = peer->rssi;
  1512. status = QDF_STATUS_SUCCESS;
  1513. break;
  1514. }
  1515. }
  1516. qdf_spin_unlock_bh(&mon_pdev->neighbour_peer_mutex);
  1517. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  1518. return status;
  1519. }
  1520. static QDF_STATUS
  1521. dp_config_for_nac_rssi(struct cdp_soc_t *cdp_soc,
  1522. uint8_t vdev_id,
  1523. enum cdp_nac_param_cmd cmd, char *bssid,
  1524. char *client_macaddr,
  1525. uint8_t chan_num)
  1526. {
  1527. struct dp_soc *soc = (struct dp_soc *)cdp_soc;
  1528. struct dp_vdev *vdev = dp_vdev_get_ref_by_id(soc, vdev_id,
  1529. DP_MOD_ID_CDP);
  1530. struct dp_pdev *pdev;
  1531. struct dp_mon_pdev *mon_pdev;
  1532. if (!vdev)
  1533. return QDF_STATUS_E_FAILURE;
  1534. pdev = (struct dp_pdev *)vdev->pdev;
  1535. mon_pdev = pdev->monitor_pdev;
  1536. mon_pdev->nac_rssi_filtering = 1;
  1537. /* Store address of NAC (neighbour peer) which will be checked
  1538. * against TA of received packets.
  1539. */
  1540. if (cmd == CDP_NAC_PARAM_ADD) {
  1541. dp_update_filter_neighbour_peers(cdp_soc, vdev->vdev_id,
  1542. DP_NAC_PARAM_ADD,
  1543. (uint8_t *)client_macaddr);
  1544. } else if (cmd == CDP_NAC_PARAM_DEL) {
  1545. dp_update_filter_neighbour_peers(cdp_soc, vdev->vdev_id,
  1546. DP_NAC_PARAM_DEL,
  1547. (uint8_t *)client_macaddr);
  1548. }
  1549. if (soc->cdp_soc.ol_ops->config_bssid_in_fw_for_nac_rssi)
  1550. soc->cdp_soc.ol_ops->config_bssid_in_fw_for_nac_rssi
  1551. (soc->ctrl_psoc, pdev->pdev_id,
  1552. vdev->vdev_id, cmd, bssid, client_macaddr);
  1553. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_CDP);
  1554. return QDF_STATUS_SUCCESS;
  1555. }
  1556. #endif
  1557. bool
  1558. dp_enable_mon_reap_timer(struct cdp_soc_t *soc_hdl,
  1559. enum cdp_mon_reap_source source,
  1560. bool enable)
  1561. {
  1562. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  1563. if (enable)
  1564. return dp_monitor_reap_timer_start(soc, source);
  1565. else
  1566. return dp_monitor_reap_timer_stop(soc, source);
  1567. }
  1568. #if defined(DP_CON_MON)
  1569. #ifndef REMOVE_PKT_LOG
  1570. void dp_pkt_log_init(struct cdp_soc_t *soc_hdl, uint8_t pdev_id, void *scn)
  1571. {
  1572. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  1573. struct dp_pdev *handle =
  1574. dp_get_pdev_from_soc_pdev_id_wifi3(soc, pdev_id);
  1575. struct dp_mon_pdev *mon_pdev;
  1576. if (!handle) {
  1577. dp_mon_err("pdev handle is NULL");
  1578. return;
  1579. }
  1580. mon_pdev = handle->monitor_pdev;
  1581. if (mon_pdev->pkt_log_init) {
  1582. dp_mon_err("%pK: Packet log not initialized", soc);
  1583. return;
  1584. }
  1585. pktlog_sethandle(&mon_pdev->pl_dev, scn);
  1586. pktlog_set_pdev_id(mon_pdev->pl_dev, pdev_id);
  1587. pktlog_set_callback_regtype(PKTLOG_DEFAULT_CALLBACK_REGISTRATION);
  1588. if (pktlogmod_init(scn)) {
  1589. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  1590. "%s: pktlogmod_init failed", __func__);
  1591. mon_pdev->pkt_log_init = false;
  1592. } else {
  1593. mon_pdev->pkt_log_init = true;
  1594. }
  1595. }
  1596. /**
  1597. * dp_pkt_log_con_service() - connect packet log service
  1598. * @soc_hdl: Datapath soc handle
  1599. * @pdev_id: id of data path pdev handle
  1600. * @scn: device context
  1601. *
  1602. * Return: none
  1603. */
  1604. static void dp_pkt_log_con_service(struct cdp_soc_t *soc_hdl,
  1605. uint8_t pdev_id, void *scn)
  1606. {
  1607. dp_pkt_log_init(soc_hdl, pdev_id, scn);
  1608. pktlog_htc_attach();
  1609. }
  1610. /**
  1611. * dp_pkt_log_exit() - Wrapper API to cleanup pktlog info
  1612. * @soc_hdl: Datapath soc handle
  1613. * @pdev_id: id of data path pdev handle
  1614. *
  1615. * Return: none
  1616. */
  1617. static void dp_pkt_log_exit(struct cdp_soc_t *soc_hdl, uint8_t pdev_id)
  1618. {
  1619. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  1620. struct dp_pdev *pdev =
  1621. dp_get_pdev_from_soc_pdev_id_wifi3(soc, pdev_id);
  1622. if (!pdev) {
  1623. dp_err("pdev handle is NULL");
  1624. return;
  1625. }
  1626. dp_pktlogmod_exit(pdev);
  1627. }
  1628. #else
  1629. static void dp_pkt_log_con_service(struct cdp_soc_t *soc_hdl,
  1630. uint8_t pdev_id, void *scn)
  1631. {
  1632. }
  1633. static void dp_pkt_log_exit(struct cdp_soc_t *soc_hdl, uint8_t pdev_id)
  1634. {
  1635. }
  1636. #endif
  1637. #endif
  1638. void dp_neighbour_peers_detach(struct dp_pdev *pdev)
  1639. {
  1640. struct dp_neighbour_peer *peer = NULL;
  1641. struct dp_neighbour_peer *temp_peer = NULL;
  1642. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  1643. TAILQ_FOREACH_SAFE(peer, &mon_pdev->neighbour_peers_list,
  1644. neighbour_peer_list_elem, temp_peer) {
  1645. /* delete this peer from the list */
  1646. TAILQ_REMOVE(&mon_pdev->neighbour_peers_list,
  1647. peer, neighbour_peer_list_elem);
  1648. qdf_mem_free(peer);
  1649. }
  1650. qdf_spinlock_destroy(&mon_pdev->neighbour_peer_mutex);
  1651. }
  1652. #ifdef QCA_ENHANCED_STATS_SUPPORT
  1653. /**
  1654. * dp_mon_tx_enable_enhanced_stats() - Enable enhanced Tx stats
  1655. * @pdev: Datapath pdev handle
  1656. *
  1657. * Return: void
  1658. */
  1659. static void dp_mon_tx_enable_enhanced_stats(struct dp_pdev *pdev)
  1660. {
  1661. struct dp_soc *soc = pdev->soc;
  1662. struct dp_mon_ops *mon_ops = NULL;
  1663. mon_ops = dp_mon_ops_get(soc);
  1664. if (mon_ops && mon_ops->mon_tx_enable_enhanced_stats)
  1665. mon_ops->mon_tx_enable_enhanced_stats(pdev);
  1666. }
  1667. /**
  1668. * dp_enable_enhanced_stats()- API to enable enhanced statistcs
  1669. * @soc: DP_SOC handle
  1670. * @pdev_id: id of DP_PDEV handle
  1671. *
  1672. * Return: QDF_STATUS
  1673. */
  1674. static QDF_STATUS
  1675. dp_enable_enhanced_stats(struct cdp_soc_t *soc, uint8_t pdev_id)
  1676. {
  1677. struct dp_pdev *pdev = NULL;
  1678. QDF_STATUS status = QDF_STATUS_SUCCESS;
  1679. struct dp_mon_pdev *mon_pdev;
  1680. pdev = dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  1681. pdev_id);
  1682. if (!pdev)
  1683. return QDF_STATUS_E_FAILURE;
  1684. mon_pdev = pdev->monitor_pdev;
  1685. if (!mon_pdev)
  1686. return QDF_STATUS_E_FAILURE;
  1687. if (mon_pdev->enhanced_stats_en == 0)
  1688. dp_cal_client_timer_start(mon_pdev->cal_client_ctx);
  1689. mon_pdev->enhanced_stats_en = 1;
  1690. pdev->enhanced_stats_en = true;
  1691. dp_mon_filter_setup_enhanced_stats(pdev);
  1692. status = dp_mon_filter_update(pdev);
  1693. if (status != QDF_STATUS_SUCCESS) {
  1694. dp_cdp_err("%pK: Failed to set enhanced mode filters", soc);
  1695. dp_mon_filter_reset_enhanced_stats(pdev);
  1696. dp_cal_client_timer_stop(mon_pdev->cal_client_ctx);
  1697. mon_pdev->enhanced_stats_en = 0;
  1698. pdev->enhanced_stats_en = false;
  1699. return QDF_STATUS_E_FAILURE;
  1700. }
  1701. dp_mon_tx_enable_enhanced_stats(pdev);
  1702. return QDF_STATUS_SUCCESS;
  1703. }
  1704. /**
  1705. * dp_mon_tx_disable_enhanced_stats() - Disable enhanced Tx stats
  1706. * @pdev: Datapath pdev handle
  1707. *
  1708. * Return: void
  1709. */
  1710. static void dp_mon_tx_disable_enhanced_stats(struct dp_pdev *pdev)
  1711. {
  1712. struct dp_soc *soc = pdev->soc;
  1713. struct dp_mon_ops *mon_ops = NULL;
  1714. mon_ops = dp_mon_ops_get(soc);
  1715. if (mon_ops && mon_ops->mon_tx_disable_enhanced_stats)
  1716. mon_ops->mon_tx_disable_enhanced_stats(pdev);
  1717. }
  1718. /**
  1719. * dp_disable_enhanced_stats()- API to disable enhanced statistcs
  1720. *
  1721. * @soc: the soc handle
  1722. * @pdev_id: pdev_id of pdev
  1723. *
  1724. * Return: QDF_STATUS
  1725. */
  1726. static QDF_STATUS
  1727. dp_disable_enhanced_stats(struct cdp_soc_t *soc, uint8_t pdev_id)
  1728. {
  1729. struct dp_pdev *pdev =
  1730. dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  1731. pdev_id);
  1732. struct dp_mon_pdev *mon_pdev;
  1733. if (!pdev || !pdev->monitor_pdev)
  1734. return QDF_STATUS_E_FAILURE;
  1735. mon_pdev = pdev->monitor_pdev;
  1736. if (mon_pdev->enhanced_stats_en == 1)
  1737. dp_cal_client_timer_stop(mon_pdev->cal_client_ctx);
  1738. mon_pdev->enhanced_stats_en = 0;
  1739. pdev->enhanced_stats_en = false;
  1740. dp_mon_tx_disable_enhanced_stats(pdev);
  1741. dp_mon_filter_reset_enhanced_stats(pdev);
  1742. if (dp_mon_filter_update(pdev) != QDF_STATUS_SUCCESS) {
  1743. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_ERROR,
  1744. FL("Failed to reset enhanced mode filters"));
  1745. }
  1746. return QDF_STATUS_SUCCESS;
  1747. }
  1748. #ifdef WDI_EVENT_ENABLE
  1749. QDF_STATUS dp_peer_qos_stats_notify(struct dp_pdev *dp_pdev,
  1750. struct cdp_rx_stats_ppdu_user *ppdu_user)
  1751. {
  1752. struct cdp_interface_peer_qos_stats qos_stats_intf = {0};
  1753. if (qdf_unlikely(ppdu_user->peer_id == HTT_INVALID_PEER)) {
  1754. dp_mon_warn("Invalid peer id");
  1755. return QDF_STATUS_E_FAILURE;
  1756. }
  1757. qdf_mem_copy(qos_stats_intf.peer_mac, ppdu_user->mac_addr,
  1758. QDF_MAC_ADDR_SIZE);
  1759. qos_stats_intf.frame_control = ppdu_user->frame_control;
  1760. qos_stats_intf.frame_control_info_valid =
  1761. ppdu_user->frame_control_info_valid;
  1762. qos_stats_intf.qos_control = ppdu_user->qos_control;
  1763. qos_stats_intf.qos_control_info_valid =
  1764. ppdu_user->qos_control_info_valid;
  1765. qos_stats_intf.vdev_id = ppdu_user->vdev_id;
  1766. dp_wdi_event_handler(WDI_EVENT_PEER_QOS_STATS, dp_pdev->soc,
  1767. (void *)&qos_stats_intf, 0,
  1768. WDI_NO_VAL, dp_pdev->pdev_id);
  1769. return QDF_STATUS_SUCCESS;
  1770. }
  1771. #else
  1772. static inline QDF_STATUS
  1773. dp_peer_qos_stats_notify(struct dp_pdev *dp_pdev,
  1774. struct cdp_rx_stats_ppdu_user *ppdu_user)
  1775. {
  1776. return QDF_STATUS_SUCCESS;
  1777. }
  1778. #endif
  1779. #endif /* QCA_ENHANCED_STATS_SUPPORT */
  1780. /**
  1781. * dp_enable_peer_based_pktlog() - Set Flag for peer based filtering
  1782. * for pktlog
  1783. * @soc: cdp_soc handle
  1784. * @pdev_id: id of dp pdev handle
  1785. * @mac_addr: Peer mac address
  1786. * @enb_dsb: Enable or disable peer based filtering
  1787. *
  1788. * Return: QDF_STATUS
  1789. */
  1790. static int
  1791. dp_enable_peer_based_pktlog(struct cdp_soc_t *soc, uint8_t pdev_id,
  1792. uint8_t *mac_addr, uint8_t enb_dsb)
  1793. {
  1794. struct dp_peer *peer;
  1795. QDF_STATUS status = QDF_STATUS_E_FAILURE;
  1796. struct dp_pdev *pdev =
  1797. dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  1798. pdev_id);
  1799. struct dp_mon_pdev *mon_pdev;
  1800. if (!pdev)
  1801. return QDF_STATUS_E_FAILURE;
  1802. mon_pdev = pdev->monitor_pdev;
  1803. peer = dp_peer_find_hash_find((struct dp_soc *)soc, mac_addr,
  1804. 0, DP_VDEV_ALL, DP_MOD_ID_CDP);
  1805. if (!peer) {
  1806. dp_mon_err("Invalid Peer");
  1807. return QDF_STATUS_E_FAILURE;
  1808. }
  1809. if (!IS_MLO_DP_MLD_PEER(peer) && peer->monitor_peer) {
  1810. peer->monitor_peer->peer_based_pktlog_filter = enb_dsb;
  1811. mon_pdev->dp_peer_based_pktlog = enb_dsb;
  1812. status = QDF_STATUS_SUCCESS;
  1813. }
  1814. dp_peer_unref_delete(peer, DP_MOD_ID_CDP);
  1815. return status;
  1816. }
  1817. /**
  1818. * dp_peer_update_pkt_capture_params() - Set Rx & Tx Capture flags for a peer
  1819. * @soc: DP_SOC handle
  1820. * @pdev_id: id of DP_PDEV handle
  1821. * @is_rx_pkt_cap_enable: enable/disable Rx packet capture in monitor mode
  1822. * @is_tx_pkt_cap_enable: enable/disable/delete/print
  1823. * Tx packet capture in monitor mode
  1824. * @peer_mac: MAC address for which the above need to be enabled/disabled
  1825. *
  1826. * Return: Success if Rx & Tx capture is enabled for peer, false otherwise
  1827. */
  1828. #if defined(WLAN_TX_PKT_CAPTURE_ENH) || defined(WLAN_RX_PKT_CAPTURE_ENH)
  1829. static QDF_STATUS
  1830. dp_peer_update_pkt_capture_params(ol_txrx_soc_handle soc,
  1831. uint8_t pdev_id,
  1832. bool is_rx_pkt_cap_enable,
  1833. uint8_t is_tx_pkt_cap_enable,
  1834. uint8_t *peer_mac)
  1835. {
  1836. struct dp_peer *peer;
  1837. QDF_STATUS status = QDF_STATUS_E_FAILURE;
  1838. struct dp_pdev *pdev =
  1839. dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  1840. pdev_id);
  1841. if (!pdev)
  1842. return QDF_STATUS_E_FAILURE;
  1843. peer = dp_peer_find_hash_find((struct dp_soc *)soc,
  1844. peer_mac, 0, DP_VDEV_ALL,
  1845. DP_MOD_ID_CDP);
  1846. if (!peer)
  1847. return QDF_STATUS_E_FAILURE;
  1848. /* we need to set tx pkt capture for non associated peer */
  1849. if (!IS_MLO_DP_MLD_PEER(peer)) {
  1850. status = dp_monitor_tx_peer_filter(pdev, peer,
  1851. is_tx_pkt_cap_enable,
  1852. peer_mac);
  1853. status = dp_peer_set_rx_capture_enabled(pdev, peer,
  1854. is_rx_pkt_cap_enable,
  1855. peer_mac);
  1856. }
  1857. dp_peer_unref_delete(peer, DP_MOD_ID_CDP);
  1858. return status;
  1859. }
  1860. #endif
  1861. #ifdef QCA_MCOPY_SUPPORT
  1862. QDF_STATUS dp_mcopy_check_deliver(struct dp_pdev *pdev,
  1863. uint16_t peer_id,
  1864. uint32_t ppdu_id,
  1865. uint8_t first_msdu)
  1866. {
  1867. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  1868. if (mon_pdev->mcopy_mode) {
  1869. if (mon_pdev->mcopy_mode == M_COPY) {
  1870. if ((mon_pdev->m_copy_id.tx_ppdu_id == ppdu_id) &&
  1871. (mon_pdev->m_copy_id.tx_peer_id == peer_id)) {
  1872. return QDF_STATUS_E_INVAL;
  1873. }
  1874. }
  1875. if (!first_msdu)
  1876. return QDF_STATUS_E_INVAL;
  1877. mon_pdev->m_copy_id.tx_ppdu_id = ppdu_id;
  1878. mon_pdev->m_copy_id.tx_peer_id = peer_id;
  1879. }
  1880. return QDF_STATUS_SUCCESS;
  1881. }
  1882. #endif
  1883. #ifdef WDI_EVENT_ENABLE
  1884. #ifndef REMOVE_PKT_LOG
  1885. static void *dp_get_pldev(struct cdp_soc_t *soc_hdl, uint8_t pdev_id)
  1886. {
  1887. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  1888. struct dp_pdev *pdev = dp_get_pdev_from_soc_pdev_id_wifi3(soc, pdev_id);
  1889. if (!pdev || !pdev->monitor_pdev)
  1890. return NULL;
  1891. return pdev->monitor_pdev->pl_dev;
  1892. }
  1893. #else
  1894. static void *dp_get_pldev(struct cdp_soc_t *soc_hdl, uint8_t pdev_id)
  1895. {
  1896. return NULL;
  1897. }
  1898. #endif
  1899. #endif
  1900. QDF_STATUS dp_rx_populate_cbf_hdr(struct dp_soc *soc,
  1901. uint32_t mac_id,
  1902. uint32_t event,
  1903. qdf_nbuf_t mpdu,
  1904. uint32_t msdu_timestamp)
  1905. {
  1906. uint32_t data_size, hdr_size, ppdu_id, align4byte;
  1907. struct dp_pdev *pdev = dp_get_pdev_for_lmac_id(soc, mac_id);
  1908. uint32_t *msg_word;
  1909. if (!pdev)
  1910. return QDF_STATUS_E_INVAL;
  1911. ppdu_id = pdev->monitor_pdev->ppdu_info.com_info.ppdu_id;
  1912. hdr_size = HTT_T2H_PPDU_STATS_IND_HDR_SIZE
  1913. + qdf_offsetof(htt_ppdu_stats_rx_mgmtctrl_payload_tlv, payload);
  1914. data_size = qdf_nbuf_len(mpdu);
  1915. qdf_nbuf_push_head(mpdu, hdr_size);
  1916. msg_word = (uint32_t *)qdf_nbuf_data(mpdu);
  1917. /*
  1918. * Populate the PPDU Stats Indication header
  1919. */
  1920. HTT_H2T_MSG_TYPE_SET(*msg_word, HTT_T2H_MSG_TYPE_PPDU_STATS_IND);
  1921. HTT_T2H_PPDU_STATS_MAC_ID_SET(*msg_word, mac_id);
  1922. HTT_T2H_PPDU_STATS_PDEV_ID_SET(*msg_word, pdev->pdev_id);
  1923. align4byte = ((data_size +
  1924. qdf_offsetof(htt_ppdu_stats_rx_mgmtctrl_payload_tlv, payload)
  1925. + 3) >> 2) << 2;
  1926. HTT_T2H_PPDU_STATS_PAYLOAD_SIZE_SET(*msg_word, align4byte);
  1927. msg_word++;
  1928. HTT_T2H_PPDU_STATS_PPDU_ID_SET(*msg_word, ppdu_id);
  1929. msg_word++;
  1930. *msg_word = msdu_timestamp;
  1931. msg_word++;
  1932. /* Skip reserved field */
  1933. msg_word++;
  1934. /*
  1935. * Populate MGMT_CTRL Payload TLV first
  1936. */
  1937. HTT_STATS_TLV_TAG_SET(*msg_word,
  1938. HTT_PPDU_STATS_RX_MGMTCTRL_PAYLOAD_TLV);
  1939. align4byte = ((data_size - sizeof(htt_tlv_hdr_t) +
  1940. qdf_offsetof(htt_ppdu_stats_rx_mgmtctrl_payload_tlv, payload)
  1941. + 3) >> 2) << 2;
  1942. HTT_STATS_TLV_LENGTH_SET(*msg_word, align4byte);
  1943. msg_word++;
  1944. HTT_PPDU_STATS_RX_MGMTCTRL_TLV_FRAME_LENGTH_SET(
  1945. *msg_word, data_size);
  1946. msg_word++;
  1947. dp_wdi_event_handler(event, soc, (void *)mpdu,
  1948. HTT_INVALID_PEER, WDI_NO_VAL, pdev->pdev_id);
  1949. qdf_nbuf_pull_head(mpdu, hdr_size);
  1950. return QDF_STATUS_SUCCESS;
  1951. }
  1952. #ifdef ATH_SUPPORT_EXT_STAT
  1953. #ifdef WLAN_TELEMETRY_STATS_SUPPORT
  1954. /**
  1955. * dp_pdev_clear_link_airtime_stats() - clear airtime stats for given pdev
  1956. * @pdev: DP PDEV handle
  1957. */
  1958. static inline
  1959. void dp_pdev_clear_link_airtime_stats(struct dp_pdev *pdev)
  1960. {
  1961. uint8_t ac;
  1962. for (ac = 0; ac < WME_AC_MAX; ac++)
  1963. pdev->stats.telemetry_stats.link_airtime[ac] = 0;
  1964. }
  1965. /**
  1966. * dp_peer_update_telemetry_stats() - update peer telemetry stats
  1967. * @soc: Datapath soc
  1968. * @peer: Datapath peer
  1969. * @arg: argument to callback function
  1970. */
  1971. static inline
  1972. void dp_peer_update_telemetry_stats(struct dp_soc *soc,
  1973. struct dp_peer *peer,
  1974. void *arg)
  1975. {
  1976. struct dp_pdev *pdev;
  1977. struct dp_vdev *vdev;
  1978. struct dp_mon_peer *mon_peer = NULL;
  1979. uint8_t ac;
  1980. uint64_t current_time = qdf_get_log_timestamp();
  1981. vdev = peer->vdev;
  1982. if (!vdev)
  1983. return;
  1984. pdev = vdev->pdev;
  1985. if (!pdev)
  1986. return;
  1987. mon_peer = peer->monitor_peer;
  1988. if (qdf_likely(mon_peer)) {
  1989. for (ac = 0; ac < WME_AC_MAX; ac++) {
  1990. mon_peer->stats.airtime_stats.tx_airtime_consumption[ac].avg_consumption_per_sec =
  1991. (uint8_t)qdf_do_div((uint64_t)(mon_peer->stats.airtime_stats.tx_airtime_consumption[ac].consumption * 100),
  1992. (uint32_t)(current_time - mon_peer->stats.airtime_stats.last_update_time));
  1993. mon_peer->stats.airtime_stats.rx_airtime_consumption[ac].avg_consumption_per_sec =
  1994. (uint8_t)qdf_do_div((uint64_t)(mon_peer->stats.airtime_stats.rx_airtime_consumption[ac].consumption * 100),
  1995. (uint32_t)(current_time - mon_peer->stats.airtime_stats.last_update_time));
  1996. mon_peer->stats.airtime_stats.last_update_time = current_time;
  1997. /* Store each peer airtime consumption in pdev
  1998. * link_airtime to calculate pdev's total airtime
  1999. * consumption
  2000. */
  2001. DP_STATS_INC(
  2002. pdev,
  2003. telemetry_stats.link_airtime[ac],
  2004. mon_peer->stats.airtime_stats.tx_airtime_consumption[ac].consumption);
  2005. DP_STATS_INC(
  2006. pdev,
  2007. telemetry_stats.link_airtime[ac],
  2008. mon_peer->stats.airtime_stats.rx_airtime_consumption[ac].consumption);
  2009. mon_peer->stats.airtime_stats.tx_airtime_consumption[ac].consumption = 0;
  2010. mon_peer->stats.airtime_stats.rx_airtime_consumption[ac].consumption = 0;
  2011. }
  2012. }
  2013. }
  2014. QDF_STATUS dp_pdev_update_telemetry_airtime_stats(struct cdp_soc_t *soc,
  2015. uint8_t pdev_id)
  2016. {
  2017. struct dp_pdev *pdev =
  2018. dp_get_pdev_from_soc_pdev_id_wifi3(cdp_soc_t_to_dp_soc(soc),
  2019. pdev_id);
  2020. if (!pdev)
  2021. return QDF_STATUS_E_FAILURE;
  2022. /* Clear current airtime stats as the below API will increment the stats
  2023. * for all peers on top of current value
  2024. */
  2025. dp_pdev_clear_link_airtime_stats(pdev);
  2026. dp_pdev_iterate_peer(pdev, dp_peer_update_telemetry_stats, NULL,
  2027. DP_MOD_ID_CDP);
  2028. return QDF_STATUS_SUCCESS;
  2029. }
  2030. #endif
  2031. /**
  2032. * dp_peer_cal_clients_stats_update() - update peer stats on cal client timer
  2033. * @soc: Datapath SOC
  2034. * @peer: Datapath peer
  2035. * @arg: argument to iter function
  2036. */
  2037. #ifdef IPA_OFFLOAD
  2038. static void
  2039. dp_peer_cal_clients_stats_update(struct dp_soc *soc,
  2040. struct dp_peer *peer,
  2041. void *arg)
  2042. {
  2043. struct cdp_calibr_stats_intf peer_stats_intf = {0};
  2044. struct dp_peer *tgt_peer = NULL;
  2045. struct dp_txrx_peer *txrx_peer = NULL;
  2046. if (!dp_peer_is_primary_link_peer(peer))
  2047. return;
  2048. tgt_peer = dp_get_tgt_peer_from_peer(peer);
  2049. if (!tgt_peer || !(tgt_peer->txrx_peer))
  2050. return;
  2051. txrx_peer = tgt_peer->txrx_peer;
  2052. peer_stats_intf.to_stack = txrx_peer->to_stack;
  2053. peer_stats_intf.tx_success =
  2054. peer->monitor_peer->stats.tx.tx_ucast_success;
  2055. peer_stats_intf.tx_ucast =
  2056. peer->monitor_peer->stats.tx.tx_ucast_total;
  2057. dp_cal_client_update_peer_stats_wifi3(&peer_stats_intf,
  2058. &tgt_peer->stats);
  2059. dp_peer_get_rxtid_stats_ipa(peer, dp_peer_update_tid_stats_from_reo);
  2060. }
  2061. #else
  2062. static void
  2063. dp_peer_cal_clients_stats_update(struct dp_soc *soc,
  2064. struct dp_peer *peer,
  2065. void *arg)
  2066. {
  2067. struct cdp_calibr_stats_intf peer_stats_intf = {0};
  2068. struct dp_peer *tgt_peer = NULL;
  2069. struct dp_txrx_peer *txrx_peer = NULL;
  2070. if (!dp_peer_is_primary_link_peer(peer))
  2071. return;
  2072. tgt_peer = dp_get_tgt_peer_from_peer(peer);
  2073. if (!tgt_peer || !(tgt_peer->txrx_peer))
  2074. return;
  2075. txrx_peer = tgt_peer->txrx_peer;
  2076. peer_stats_intf.to_stack = txrx_peer->to_stack;
  2077. peer_stats_intf.tx_success =
  2078. txrx_peer->stats.per_pkt_stats.tx.tx_success;
  2079. peer_stats_intf.tx_ucast =
  2080. txrx_peer->stats.per_pkt_stats.tx.ucast;
  2081. dp_cal_client_update_peer_stats_wifi3(&peer_stats_intf,
  2082. &tgt_peer->stats);
  2083. }
  2084. #endif
  2085. /**
  2086. * dp_iterate_update_peer_list() - update peer stats on cal client timer
  2087. * @pdev_hdl: pdev handle
  2088. */
  2089. static void dp_iterate_update_peer_list(struct cdp_pdev *pdev_hdl)
  2090. {
  2091. struct dp_pdev *pdev = (struct dp_pdev *)pdev_hdl;
  2092. dp_pdev_iterate_peer(pdev, dp_peer_cal_clients_stats_update, NULL,
  2093. DP_MOD_ID_CDP);
  2094. }
  2095. #else
  2096. static void dp_iterate_update_peer_list(struct cdp_pdev *pdev_hdl)
  2097. {
  2098. }
  2099. #endif
  2100. #ifdef ATH_SUPPORT_NAC
  2101. int dp_set_filter_neigh_peers(struct dp_pdev *pdev,
  2102. bool val)
  2103. {
  2104. /* Enable/Disable smart mesh filtering. This flag will be checked
  2105. * during rx processing to check if packets are from NAC clients.
  2106. */
  2107. pdev->monitor_pdev->filter_neighbour_peers = val;
  2108. return 0;
  2109. }
  2110. #endif /* ATH_SUPPORT_NAC */
  2111. #ifdef WLAN_ATF_ENABLE
  2112. void dp_set_atf_stats_enable(struct dp_pdev *pdev, bool value)
  2113. {
  2114. if (!pdev) {
  2115. dp_cdp_err("Invalid pdev");
  2116. return;
  2117. }
  2118. pdev->monitor_pdev->dp_atf_stats_enable = value;
  2119. }
  2120. #endif
  2121. #ifdef QCA_ENHANCED_STATS_SUPPORT
  2122. /**
  2123. * dp_process_ppdu_stats_tx_mgmtctrl_payload_tlv() - Process
  2124. * htt_ppdu_stats_tx_mgmtctrl_payload_tlv
  2125. * @pdev: DP PDEV handle
  2126. * @tag_buf: buffer containing the htt_ppdu_stats_tx_mgmtctrl_payload_tlv
  2127. * @ppdu_id: PPDU Id
  2128. *
  2129. * Return: QDF_STATUS_SUCCESS if nbuf has to be freed in caller
  2130. */
  2131. static QDF_STATUS
  2132. dp_process_ppdu_stats_tx_mgmtctrl_payload_tlv(struct dp_pdev *pdev,
  2133. qdf_nbuf_t tag_buf,
  2134. uint32_t ppdu_id)
  2135. {
  2136. uint32_t *nbuf_ptr;
  2137. uint8_t trim_size;
  2138. size_t head_size;
  2139. struct cdp_tx_mgmt_comp_info *ptr_mgmt_comp_info;
  2140. uint32_t *msg_word;
  2141. uint32_t tsf_hdr;
  2142. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  2143. if ((!mon_pdev->tx_sniffer_enable) && (!mon_pdev->mcopy_mode) &&
  2144. (!mon_pdev->bpr_enable) && (!mon_pdev->tx_capture_enabled))
  2145. return QDF_STATUS_SUCCESS;
  2146. /*
  2147. * get timestamp from htt_t2h_ppdu_stats_ind_hdr_t
  2148. */
  2149. msg_word = (uint32_t *)qdf_nbuf_data(tag_buf);
  2150. msg_word = msg_word + 2;
  2151. tsf_hdr = *msg_word;
  2152. trim_size = ((mon_pdev->mgmtctrl_frm_info.mgmt_buf +
  2153. HTT_MGMT_CTRL_TLV_HDR_RESERVERD_LEN) -
  2154. qdf_nbuf_data(tag_buf));
  2155. if (!qdf_nbuf_pull_head(tag_buf, trim_size))
  2156. return QDF_STATUS_SUCCESS;
  2157. qdf_nbuf_trim_tail(tag_buf, qdf_nbuf_len(tag_buf) -
  2158. mon_pdev->mgmtctrl_frm_info.mgmt_buf_len);
  2159. if (mon_pdev->tx_capture_enabled) {
  2160. head_size = sizeof(struct cdp_tx_mgmt_comp_info);
  2161. if (qdf_unlikely(qdf_nbuf_headroom(tag_buf) < head_size)) {
  2162. qdf_err("Fail to get headroom h_sz %zu h_avail %d\n",
  2163. head_size, qdf_nbuf_headroom(tag_buf));
  2164. qdf_assert_always(0);
  2165. return QDF_STATUS_E_NOMEM;
  2166. }
  2167. ptr_mgmt_comp_info = (struct cdp_tx_mgmt_comp_info *)
  2168. qdf_nbuf_push_head(tag_buf, head_size);
  2169. qdf_assert_always(ptr_mgmt_comp_info);
  2170. ptr_mgmt_comp_info->ppdu_id = ppdu_id;
  2171. ptr_mgmt_comp_info->is_sgen_pkt = true;
  2172. ptr_mgmt_comp_info->tx_tsf = tsf_hdr;
  2173. } else {
  2174. head_size = sizeof(ppdu_id);
  2175. nbuf_ptr = (uint32_t *)qdf_nbuf_push_head(tag_buf, head_size);
  2176. *nbuf_ptr = ppdu_id;
  2177. }
  2178. if (mon_pdev->bpr_enable) {
  2179. dp_wdi_event_handler(WDI_EVENT_TX_BEACON, pdev->soc,
  2180. tag_buf, HTT_INVALID_PEER,
  2181. WDI_NO_VAL, pdev->pdev_id);
  2182. }
  2183. dp_deliver_mgmt_frm(pdev, tag_buf);
  2184. return QDF_STATUS_E_ALREADY;
  2185. }
  2186. int
  2187. dp_htt_get_ppdu_sniffer_ampdu_tlv_bitmap(uint32_t bitmap)
  2188. {
  2189. if (bitmap == (HTT_PPDU_SNIFFER_AMPDU_TLV_BITMAP_64))
  2190. return HTT_PPDU_SNIFFER_AMPDU_TLV_BITMAP_64;
  2191. else if (bitmap == (HTT_PPDU_SNIFFER_AMPDU_TLV_BITMAP_256))
  2192. return HTT_PPDU_SNIFFER_AMPDU_TLV_BITMAP_256;
  2193. return 0;
  2194. }
  2195. /**
  2196. * dp_peer_copy_delay_stats() - copy ppdu stats to peer delayed stats.
  2197. * @peer: Datapath peer handle
  2198. * @ppdu: User PPDU Descriptor
  2199. * @cur_ppdu_id: PPDU_ID
  2200. *
  2201. * Return: None
  2202. *
  2203. * on Tx data frame, we may get delayed ba set
  2204. * in htt_ppdu_stats_user_common_tlv. which mean we get Block Ack(BA) after we
  2205. * request Block Ack Request(BAR). Successful msdu is received only after Block
  2206. * Ack. To populate peer stats we need successful msdu(data frame).
  2207. * So we hold the Tx data stats on delayed_ba for stats update.
  2208. */
  2209. static void
  2210. dp_peer_copy_delay_stats(struct dp_peer *peer,
  2211. struct cdp_tx_completion_ppdu_user *ppdu,
  2212. uint32_t cur_ppdu_id)
  2213. {
  2214. struct dp_pdev *pdev;
  2215. struct dp_vdev *vdev;
  2216. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  2217. if (mon_peer->last_delayed_ba) {
  2218. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_ERROR,
  2219. "BA not yet recv for prev delayed ppdu[%d] - cur ppdu[%d]",
  2220. mon_peer->last_delayed_ba_ppduid, cur_ppdu_id);
  2221. vdev = peer->vdev;
  2222. if (vdev) {
  2223. pdev = vdev->pdev;
  2224. pdev->stats.cdp_delayed_ba_not_recev++;
  2225. }
  2226. }
  2227. mon_peer->delayed_ba_ppdu_stats.ltf_size = ppdu->ltf_size;
  2228. mon_peer->delayed_ba_ppdu_stats.stbc = ppdu->stbc;
  2229. mon_peer->delayed_ba_ppdu_stats.he_re = ppdu->he_re;
  2230. mon_peer->delayed_ba_ppdu_stats.txbf = ppdu->txbf;
  2231. mon_peer->delayed_ba_ppdu_stats.bw = ppdu->bw;
  2232. mon_peer->delayed_ba_ppdu_stats.nss = ppdu->nss;
  2233. mon_peer->delayed_ba_ppdu_stats.gi = ppdu->gi;
  2234. mon_peer->delayed_ba_ppdu_stats.dcm = ppdu->dcm;
  2235. mon_peer->delayed_ba_ppdu_stats.ldpc = ppdu->ldpc;
  2236. mon_peer->delayed_ba_ppdu_stats.dcm = ppdu->dcm;
  2237. mon_peer->delayed_ba_ppdu_stats.mpdu_tried_ucast =
  2238. ppdu->mpdu_tried_ucast;
  2239. mon_peer->delayed_ba_ppdu_stats.mpdu_tried_mcast =
  2240. ppdu->mpdu_tried_mcast;
  2241. mon_peer->delayed_ba_ppdu_stats.frame_ctrl = ppdu->frame_ctrl;
  2242. mon_peer->delayed_ba_ppdu_stats.qos_ctrl = ppdu->qos_ctrl;
  2243. mon_peer->delayed_ba_ppdu_stats.dcm = ppdu->dcm;
  2244. mon_peer->delayed_ba_ppdu_stats.ru_start = ppdu->ru_start;
  2245. mon_peer->delayed_ba_ppdu_stats.ru_tones = ppdu->ru_tones;
  2246. mon_peer->delayed_ba_ppdu_stats.is_mcast = ppdu->is_mcast;
  2247. mon_peer->delayed_ba_ppdu_stats.user_pos = ppdu->user_pos;
  2248. mon_peer->delayed_ba_ppdu_stats.mu_group_id = ppdu->mu_group_id;
  2249. mon_peer->last_delayed_ba = true;
  2250. ppdu->debug_copied = true;
  2251. }
  2252. /**
  2253. * dp_peer_copy_stats_to_bar() - copy delayed stats to ppdu stats.
  2254. * @peer: Datapath peer handle
  2255. * @ppdu: PPDU Descriptor
  2256. *
  2257. * Return: None
  2258. *
  2259. * For Tx BAR, PPDU stats TLV include Block Ack info. PPDU info
  2260. * from Tx BAR frame not required to populate peer stats.
  2261. * But we need successful MPDU and MSDU to update previous
  2262. * transmitted Tx data frame. Overwrite ppdu stats with the previous
  2263. * stored ppdu stats.
  2264. */
  2265. static void
  2266. dp_peer_copy_stats_to_bar(struct dp_peer *peer,
  2267. struct cdp_tx_completion_ppdu_user *ppdu)
  2268. {
  2269. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  2270. ppdu->ltf_size = mon_peer->delayed_ba_ppdu_stats.ltf_size;
  2271. ppdu->stbc = mon_peer->delayed_ba_ppdu_stats.stbc;
  2272. ppdu->he_re = mon_peer->delayed_ba_ppdu_stats.he_re;
  2273. ppdu->txbf = mon_peer->delayed_ba_ppdu_stats.txbf;
  2274. ppdu->bw = mon_peer->delayed_ba_ppdu_stats.bw;
  2275. ppdu->nss = mon_peer->delayed_ba_ppdu_stats.nss;
  2276. ppdu->gi = mon_peer->delayed_ba_ppdu_stats.gi;
  2277. ppdu->dcm = mon_peer->delayed_ba_ppdu_stats.dcm;
  2278. ppdu->ldpc = mon_peer->delayed_ba_ppdu_stats.ldpc;
  2279. ppdu->dcm = mon_peer->delayed_ba_ppdu_stats.dcm;
  2280. ppdu->mpdu_tried_ucast =
  2281. mon_peer->delayed_ba_ppdu_stats.mpdu_tried_ucast;
  2282. ppdu->mpdu_tried_mcast =
  2283. mon_peer->delayed_ba_ppdu_stats.mpdu_tried_mcast;
  2284. ppdu->frame_ctrl = mon_peer->delayed_ba_ppdu_stats.frame_ctrl;
  2285. ppdu->qos_ctrl = mon_peer->delayed_ba_ppdu_stats.qos_ctrl;
  2286. ppdu->dcm = mon_peer->delayed_ba_ppdu_stats.dcm;
  2287. ppdu->ru_start = mon_peer->delayed_ba_ppdu_stats.ru_start;
  2288. ppdu->ru_tones = mon_peer->delayed_ba_ppdu_stats.ru_tones;
  2289. ppdu->is_mcast = mon_peer->delayed_ba_ppdu_stats.is_mcast;
  2290. ppdu->user_pos = mon_peer->delayed_ba_ppdu_stats.user_pos;
  2291. ppdu->mu_group_id = mon_peer->delayed_ba_ppdu_stats.mu_group_id;
  2292. mon_peer->last_delayed_ba = false;
  2293. ppdu->debug_copied = true;
  2294. }
  2295. /**
  2296. * dp_tx_rate_stats_update() - Update rate per-peer statistics
  2297. * @peer: Datapath peer handle
  2298. * @ppdu: PPDU Descriptor
  2299. *
  2300. * Return: None
  2301. */
  2302. static void
  2303. dp_tx_rate_stats_update(struct dp_peer *peer,
  2304. struct cdp_tx_completion_ppdu_user *ppdu)
  2305. {
  2306. uint32_t ratekbps = 0;
  2307. uint64_t ppdu_tx_rate = 0;
  2308. uint32_t rix;
  2309. uint16_t ratecode = 0;
  2310. struct dp_mon_peer *mon_peer = NULL;
  2311. if (!peer || !ppdu)
  2312. return;
  2313. if (ppdu->completion_status != HTT_PPDU_STATS_USER_STATUS_OK)
  2314. return;
  2315. mon_peer = peer->monitor_peer;
  2316. if (!mon_peer)
  2317. return;
  2318. ratekbps = dp_getrateindex(ppdu->gi,
  2319. ppdu->mcs,
  2320. ppdu->nss,
  2321. ppdu->preamble,
  2322. ppdu->bw,
  2323. ppdu->punc_mode,
  2324. &rix,
  2325. &ratecode);
  2326. if (!ratekbps)
  2327. return;
  2328. /* Calculate goodput in non-training period
  2329. * In training period, don't do anything as
  2330. * pending pkt is send as goodput.
  2331. */
  2332. if ((!peer->bss_peer) && (!ppdu->sa_is_training)) {
  2333. ppdu->sa_goodput = ((ratekbps / CDP_NUM_KB_IN_MB) *
  2334. (CDP_PERCENT_MACRO - ppdu->current_rate_per));
  2335. }
  2336. ppdu->rix = rix;
  2337. ppdu->tx_ratekbps = ratekbps;
  2338. ppdu->tx_ratecode = ratecode;
  2339. DP_STATS_UPD(mon_peer, tx.tx_rate, ratekbps);
  2340. mon_peer->stats.tx.avg_tx_rate =
  2341. dp_ath_rate_lpf(mon_peer->stats.tx.avg_tx_rate, ratekbps);
  2342. ppdu_tx_rate = dp_ath_rate_out(mon_peer->stats.tx.avg_tx_rate);
  2343. DP_STATS_UPD(mon_peer, tx.rnd_avg_tx_rate, ppdu_tx_rate);
  2344. mon_peer->stats.tx.bw_info = ppdu->bw;
  2345. mon_peer->stats.tx.gi_info = ppdu->gi;
  2346. mon_peer->stats.tx.nss_info = ppdu->nss;
  2347. mon_peer->stats.tx.mcs_info = ppdu->mcs;
  2348. mon_peer->stats.tx.preamble_info = ppdu->preamble;
  2349. if (peer->vdev) {
  2350. /*
  2351. * In STA mode:
  2352. * We get ucast stats as BSS peer stats.
  2353. *
  2354. * In AP mode:
  2355. * We get mcast stats as BSS peer stats.
  2356. * We get ucast stats as assoc peer stats.
  2357. */
  2358. if (peer->vdev->opmode == wlan_op_mode_ap && peer->bss_peer) {
  2359. peer->vdev->stats.tx.mcast_last_tx_rate = ratekbps;
  2360. peer->vdev->stats.tx.mcast_last_tx_rate_mcs = ppdu->mcs;
  2361. } else {
  2362. peer->vdev->stats.tx.last_tx_rate = ratekbps;
  2363. peer->vdev->stats.tx.last_tx_rate_mcs = ppdu->mcs;
  2364. }
  2365. }
  2366. }
  2367. #if defined(FEATURE_PERPKT_INFO) && defined(WDI_EVENT_ENABLE)
  2368. void dp_send_stats_event(struct dp_pdev *pdev, struct dp_peer *peer,
  2369. uint16_t peer_id)
  2370. {
  2371. struct cdp_interface_peer_stats peer_stats_intf = {0};
  2372. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  2373. struct dp_txrx_peer *txrx_peer = NULL;
  2374. if (qdf_unlikely(!mon_peer))
  2375. return;
  2376. mon_peer->stats.rx.rx_snr_measured_time = qdf_system_ticks();
  2377. peer_stats_intf.rx_avg_snr = mon_peer->stats.rx.avg_snr;
  2378. txrx_peer = dp_get_txrx_peer(peer);
  2379. if (qdf_likely(txrx_peer)) {
  2380. peer_stats_intf.rx_byte_count = txrx_peer->to_stack.bytes;
  2381. peer_stats_intf.tx_byte_count =
  2382. txrx_peer->stats.per_pkt_stats.tx.tx_success.bytes;
  2383. }
  2384. dp_wdi_event_handler(WDI_EVENT_UPDATE_DP_STATS, pdev->soc,
  2385. &peer_stats_intf, peer_id,
  2386. UPDATE_PEER_STATS, pdev->pdev_id);
  2387. }
  2388. #endif
  2389. #ifdef WLAN_FEATURE_11BE
  2390. /**
  2391. * dp_get_ru_index_frm_ru_tones() - get ru index
  2392. * @ru_tones: ru tones
  2393. *
  2394. * Return: ru index
  2395. */
  2396. static inline enum cdp_ru_index dp_get_ru_index_frm_ru_tones(uint16_t ru_tones)
  2397. {
  2398. enum cdp_ru_index ru_index;
  2399. switch (ru_tones) {
  2400. case RU_26:
  2401. ru_index = RU_26_INDEX;
  2402. break;
  2403. case RU_52:
  2404. ru_index = RU_52_INDEX;
  2405. break;
  2406. case RU_52_26:
  2407. ru_index = RU_52_26_INDEX;
  2408. break;
  2409. case RU_106:
  2410. ru_index = RU_106_INDEX;
  2411. break;
  2412. case RU_106_26:
  2413. ru_index = RU_106_26_INDEX;
  2414. break;
  2415. case RU_242:
  2416. ru_index = RU_242_INDEX;
  2417. break;
  2418. case RU_484:
  2419. ru_index = RU_484_INDEX;
  2420. break;
  2421. case RU_484_242:
  2422. ru_index = RU_484_242_INDEX;
  2423. break;
  2424. case RU_996:
  2425. ru_index = RU_996_INDEX;
  2426. break;
  2427. case RU_996_484:
  2428. ru_index = RU_996_484_INDEX;
  2429. break;
  2430. case RU_996_484_242:
  2431. ru_index = RU_996_484_242_INDEX;
  2432. break;
  2433. case RU_2X996:
  2434. ru_index = RU_2X996_INDEX;
  2435. break;
  2436. case RU_2X996_484:
  2437. ru_index = RU_2X996_484_INDEX;
  2438. break;
  2439. case RU_3X996:
  2440. ru_index = RU_3X996_INDEX;
  2441. break;
  2442. case RU_3X996_484:
  2443. ru_index = RU_2X996_484_INDEX;
  2444. break;
  2445. case RU_4X996:
  2446. ru_index = RU_4X996_INDEX;
  2447. break;
  2448. default:
  2449. ru_index = RU_INDEX_MAX;
  2450. break;
  2451. }
  2452. return ru_index;
  2453. }
  2454. /**
  2455. * dp_mon_get_ru_width_from_ru_size() - get ru_width from ru_size enum
  2456. * @ru_size: HTT ru_size enum
  2457. *
  2458. * Return: ru_width of uint32_t type
  2459. */
  2460. static uint32_t dp_mon_get_ru_width_from_ru_size(uint16_t ru_size)
  2461. {
  2462. uint32_t width = 0;
  2463. switch (ru_size) {
  2464. case HTT_PPDU_STATS_RU_26:
  2465. width = RU_26;
  2466. break;
  2467. case HTT_PPDU_STATS_RU_52:
  2468. width = RU_52;
  2469. break;
  2470. case HTT_PPDU_STATS_RU_52_26:
  2471. width = RU_52_26;
  2472. break;
  2473. case HTT_PPDU_STATS_RU_106:
  2474. width = RU_106;
  2475. break;
  2476. case HTT_PPDU_STATS_RU_106_26:
  2477. width = RU_106_26;
  2478. break;
  2479. case HTT_PPDU_STATS_RU_242:
  2480. width = RU_242;
  2481. break;
  2482. case HTT_PPDU_STATS_RU_484:
  2483. width = RU_484;
  2484. break;
  2485. case HTT_PPDU_STATS_RU_484_242:
  2486. width = RU_484_242;
  2487. break;
  2488. case HTT_PPDU_STATS_RU_996:
  2489. width = RU_996;
  2490. break;
  2491. case HTT_PPDU_STATS_RU_996_484:
  2492. width = RU_996_484;
  2493. break;
  2494. case HTT_PPDU_STATS_RU_996_484_242:
  2495. width = RU_996_484_242;
  2496. break;
  2497. case HTT_PPDU_STATS_RU_996x2:
  2498. width = RU_2X996;
  2499. break;
  2500. case HTT_PPDU_STATS_RU_996x2_484:
  2501. width = RU_2X996_484;
  2502. break;
  2503. case HTT_PPDU_STATS_RU_996x3:
  2504. width = RU_3X996;
  2505. break;
  2506. case HTT_PPDU_STATS_RU_996x3_484:
  2507. width = RU_3X996_484;
  2508. break;
  2509. case HTT_PPDU_STATS_RU_996x4:
  2510. width = RU_4X996;
  2511. break;
  2512. default:
  2513. dp_mon_debug("Unsupported ru_size: %d rcvd", ru_size);
  2514. }
  2515. return width;
  2516. }
  2517. #else
  2518. static inline enum cdp_ru_index dp_get_ru_index_frm_ru_tones(uint16_t ru_tones)
  2519. {
  2520. enum cdp_ru_index ru_index;
  2521. switch (ru_tones) {
  2522. case RU_26:
  2523. ru_index = RU_26_INDEX;
  2524. break;
  2525. case RU_52:
  2526. ru_index = RU_52_INDEX;
  2527. break;
  2528. case RU_106:
  2529. ru_index = RU_106_INDEX;
  2530. break;
  2531. case RU_242:
  2532. ru_index = RU_242_INDEX;
  2533. break;
  2534. case RU_484:
  2535. ru_index = RU_484_INDEX;
  2536. break;
  2537. case RU_996:
  2538. ru_index = RU_996_INDEX;
  2539. break;
  2540. default:
  2541. ru_index = RU_INDEX_MAX;
  2542. break;
  2543. }
  2544. return ru_index;
  2545. }
  2546. static uint32_t dp_mon_get_ru_width_from_ru_size(uint16_t ru_size)
  2547. {
  2548. uint32_t width = 0;
  2549. switch (ru_size) {
  2550. case HTT_PPDU_STATS_RU_26:
  2551. width = RU_26;
  2552. break;
  2553. case HTT_PPDU_STATS_RU_52:
  2554. width = RU_52;
  2555. break;
  2556. case HTT_PPDU_STATS_RU_106:
  2557. width = RU_106;
  2558. break;
  2559. case HTT_PPDU_STATS_RU_242:
  2560. width = RU_242;
  2561. break;
  2562. case HTT_PPDU_STATS_RU_484:
  2563. width = RU_484;
  2564. break;
  2565. case HTT_PPDU_STATS_RU_996:
  2566. width = RU_996;
  2567. break;
  2568. default:
  2569. dp_mon_debug("Unsupported ru_size: %d rcvd", ru_size);
  2570. }
  2571. return width;
  2572. }
  2573. #endif
  2574. #ifdef WLAN_TELEMETRY_STATS_SUPPORT
  2575. /**
  2576. * dp_pdev_telemetry_stats_update() - Update pdev telemetry stats
  2577. * @pdev: Datapath pdev handle
  2578. * @ppdu: PPDU Descriptor
  2579. *
  2580. * Return: None
  2581. */
  2582. static void
  2583. dp_pdev_telemetry_stats_update(
  2584. struct dp_pdev *pdev,
  2585. struct cdp_tx_completion_ppdu_user *ppdu)
  2586. {
  2587. uint16_t mpdu_tried;
  2588. uint16_t mpdu_failed;
  2589. uint16_t num_mpdu;
  2590. uint8_t ac = 0;
  2591. num_mpdu = ppdu->mpdu_success;
  2592. mpdu_tried = ppdu->mpdu_tried_ucast + ppdu->mpdu_tried_mcast;
  2593. mpdu_failed = mpdu_tried - num_mpdu;
  2594. ac = TID_TO_WME_AC(ppdu->tid);
  2595. DP_STATS_INC(pdev, telemetry_stats.tx_mpdu_failed[ac],
  2596. mpdu_failed);
  2597. DP_STATS_INC(pdev, telemetry_stats.tx_mpdu_total[ac],
  2598. mpdu_tried);
  2599. }
  2600. #else
  2601. static inline void
  2602. dp_pdev_telemetry_stats_update(
  2603. struct dp_pdev *pdev,
  2604. struct cdp_tx_completion_ppdu_user *ppdu)
  2605. { }
  2606. #endif
  2607. /**
  2608. * dp_tx_stats_update() - Update per-peer statistics
  2609. * @pdev: Datapath pdev handle
  2610. * @peer: Datapath peer handle
  2611. * @ppdu: PPDU Descriptor
  2612. * @ack_rssi: RSSI of last ack received
  2613. *
  2614. * Return: None
  2615. */
  2616. static void
  2617. dp_tx_stats_update(struct dp_pdev *pdev, struct dp_peer *peer,
  2618. struct cdp_tx_completion_ppdu_user *ppdu,
  2619. uint32_t ack_rssi)
  2620. {
  2621. uint8_t preamble, mcs;
  2622. uint16_t num_msdu;
  2623. uint16_t num_mpdu;
  2624. uint16_t mpdu_tried;
  2625. uint16_t mpdu_failed;
  2626. struct dp_mon_ops *mon_ops;
  2627. enum cdp_ru_index ru_index;
  2628. struct dp_mon_peer *mon_peer = NULL;
  2629. uint32_t ratekbps = 0;
  2630. uint64_t tx_byte_count;
  2631. preamble = ppdu->preamble;
  2632. mcs = ppdu->mcs;
  2633. num_msdu = ppdu->num_msdu;
  2634. num_mpdu = ppdu->mpdu_success;
  2635. mpdu_tried = ppdu->mpdu_tried_ucast + ppdu->mpdu_tried_mcast;
  2636. mpdu_failed = mpdu_tried - num_mpdu;
  2637. tx_byte_count = ppdu->success_bytes;
  2638. /* If the peer statistics are already processed as part of
  2639. * per-MSDU completion handler, do not process these again in per-PPDU
  2640. * indications
  2641. */
  2642. if (pdev->soc->process_tx_status)
  2643. return;
  2644. mon_peer = peer->monitor_peer;
  2645. if (!mon_peer)
  2646. return;
  2647. if (!ppdu->is_mcast) {
  2648. DP_STATS_INC(mon_peer, tx.tx_ucast_total.num, num_msdu);
  2649. DP_STATS_INC(mon_peer, tx.tx_ucast_total.bytes,
  2650. tx_byte_count);
  2651. }
  2652. if (ppdu->completion_status != HTT_PPDU_STATS_USER_STATUS_OK) {
  2653. /*
  2654. * All failed mpdu will be retried, so incrementing
  2655. * retries mpdu based on mpdu failed. Even for
  2656. * ack failure i.e for long retries we get
  2657. * mpdu failed equal mpdu tried.
  2658. */
  2659. DP_STATS_INC(mon_peer, tx.retries, mpdu_failed);
  2660. dp_pdev_telemetry_stats_update(pdev, ppdu);
  2661. return;
  2662. }
  2663. if (ppdu->is_ppdu_cookie_valid)
  2664. DP_STATS_INC(mon_peer, tx.num_ppdu_cookie_valid, 1);
  2665. if (ppdu->mu_group_id <= MAX_MU_GROUP_ID &&
  2666. ppdu->ppdu_type != HTT_PPDU_STATS_PPDU_TYPE_SU) {
  2667. if (qdf_unlikely(ppdu->mu_group_id &&
  2668. !(ppdu->mu_group_id & (MAX_MU_GROUP_ID - 1))))
  2669. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_ERROR,
  2670. "mu_group_id out of bound!!\n");
  2671. else
  2672. DP_STATS_UPD(mon_peer, tx.mu_group_id[ppdu->mu_group_id],
  2673. (ppdu->user_pos + 1));
  2674. }
  2675. if (ppdu->ppdu_type == HTT_PPDU_STATS_PPDU_TYPE_MU_OFDMA ||
  2676. ppdu->ppdu_type == HTT_PPDU_STATS_PPDU_TYPE_MU_MIMO_OFDMA) {
  2677. DP_STATS_UPD(mon_peer, tx.ru_tones, ppdu->ru_tones);
  2678. DP_STATS_UPD(mon_peer, tx.ru_start, ppdu->ru_start);
  2679. ru_index = dp_get_ru_index_frm_ru_tones(ppdu->ru_tones);
  2680. if (ru_index != RU_INDEX_MAX) {
  2681. DP_STATS_INC(mon_peer, tx.ru_loc[ru_index].num_msdu,
  2682. num_msdu);
  2683. DP_STATS_INC(mon_peer, tx.ru_loc[ru_index].num_mpdu,
  2684. num_mpdu);
  2685. DP_STATS_INC(mon_peer, tx.ru_loc[ru_index].mpdu_tried,
  2686. mpdu_tried);
  2687. }
  2688. }
  2689. /*
  2690. * All failed mpdu will be retried, so incrementing
  2691. * retries mpdu based on mpdu failed. Even for
  2692. * ack failure i.e for long retries we get
  2693. * mpdu failed equal mpdu tried.
  2694. */
  2695. DP_STATS_INC(mon_peer, tx.retries, mpdu_failed);
  2696. DP_STATS_INC(mon_peer, tx.transmit_type[ppdu->ppdu_type].num_msdu,
  2697. num_msdu);
  2698. DP_STATS_INC(mon_peer, tx.transmit_type[ppdu->ppdu_type].num_mpdu,
  2699. num_mpdu);
  2700. DP_STATS_INC(mon_peer, tx.transmit_type[ppdu->ppdu_type].mpdu_tried,
  2701. mpdu_tried);
  2702. DP_STATS_INC(mon_peer, tx.sgi_count[ppdu->gi], num_msdu);
  2703. DP_STATS_INC(mon_peer, tx.bw[ppdu->bw], num_msdu);
  2704. DP_STATS_INC(mon_peer, tx.nss[ppdu->nss], num_msdu);
  2705. if (ppdu->tid < CDP_DATA_TID_MAX) {
  2706. DP_STATS_INC(mon_peer, tx.wme_ac_type[TID_TO_WME_AC(ppdu->tid)],
  2707. num_msdu);
  2708. DP_STATS_INC(mon_peer,
  2709. tx.wme_ac_type_bytes[TID_TO_WME_AC(ppdu->tid)],
  2710. tx_byte_count);
  2711. }
  2712. DP_STATS_INCC(mon_peer, tx.stbc, num_msdu, ppdu->stbc);
  2713. DP_STATS_INCC(mon_peer, tx.ldpc, num_msdu, ppdu->ldpc);
  2714. if (!(ppdu->is_mcast) && ppdu->ack_rssi_valid)
  2715. DP_STATS_UPD(mon_peer, tx.last_ack_rssi, ack_rssi);
  2716. if (!ppdu->is_mcast) {
  2717. DP_STATS_INC(mon_peer, tx.tx_ucast_success.num, num_msdu);
  2718. DP_STATS_INC(mon_peer, tx.tx_ucast_success.bytes,
  2719. tx_byte_count);
  2720. }
  2721. DP_STATS_INCC(mon_peer,
  2722. tx.pkt_type[preamble].mcs_count[MAX_MCS - 1], num_msdu,
  2723. ((mcs >= MAX_MCS_11A) && (preamble == DOT11_A)));
  2724. DP_STATS_INCC(mon_peer,
  2725. tx.pkt_type[preamble].mcs_count[mcs], num_msdu,
  2726. ((mcs < MAX_MCS_11A) && (preamble == DOT11_A)));
  2727. DP_STATS_INCC(mon_peer,
  2728. tx.pkt_type[preamble].mcs_count[MAX_MCS - 1], num_msdu,
  2729. ((mcs >= MAX_MCS_11B) && (preamble == DOT11_B)));
  2730. DP_STATS_INCC(mon_peer,
  2731. tx.pkt_type[preamble].mcs_count[mcs], num_msdu,
  2732. ((mcs < (MAX_MCS_11B)) && (preamble == DOT11_B)));
  2733. DP_STATS_INCC(mon_peer,
  2734. tx.pkt_type[preamble].mcs_count[MAX_MCS - 1], num_msdu,
  2735. ((mcs >= MAX_MCS_11A) && (preamble == DOT11_N)));
  2736. DP_STATS_INCC(mon_peer,
  2737. tx.pkt_type[preamble].mcs_count[mcs], num_msdu,
  2738. ((mcs < MAX_MCS_11A) && (preamble == DOT11_N)));
  2739. DP_STATS_INCC(mon_peer,
  2740. tx.pkt_type[preamble].mcs_count[MAX_MCS - 1], num_msdu,
  2741. ((mcs >= MAX_MCS_11AC) && (preamble == DOT11_AC)));
  2742. DP_STATS_INCC(mon_peer,
  2743. tx.pkt_type[preamble].mcs_count[mcs], num_msdu,
  2744. ((mcs < MAX_MCS_11AC) && (preamble == DOT11_AC)));
  2745. DP_STATS_INCC(mon_peer,
  2746. tx.pkt_type[preamble].mcs_count[MAX_MCS - 1], num_msdu,
  2747. ((mcs >= MAX_MCS_11AX) && (preamble == DOT11_AX)));
  2748. DP_STATS_INCC(mon_peer,
  2749. tx.pkt_type[preamble].mcs_count[mcs], num_msdu,
  2750. ((mcs < MAX_MCS_11AX) && (preamble == DOT11_AX)));
  2751. DP_STATS_INCC(mon_peer, tx.ampdu_cnt, num_mpdu, ppdu->is_ampdu);
  2752. DP_STATS_INCC(mon_peer, tx.non_ampdu_cnt, num_mpdu, !(ppdu->is_ampdu));
  2753. DP_STATS_INCC(mon_peer, tx.pream_punct_cnt, 1, ppdu->pream_punct);
  2754. DP_STATS_INC(mon_peer, tx.tx_ppdus, 1);
  2755. DP_STATS_INC(mon_peer, tx.tx_mpdus_success, num_mpdu);
  2756. DP_STATS_INC(mon_peer, tx.tx_mpdus_tried, mpdu_tried);
  2757. mon_ops = dp_mon_ops_get(pdev->soc);
  2758. if (mon_ops && mon_ops->mon_tx_stats_update)
  2759. mon_ops->mon_tx_stats_update(mon_peer, ppdu);
  2760. dp_tx_rate_stats_update(peer, ppdu);
  2761. dp_pdev_telemetry_stats_update(pdev, ppdu);
  2762. dp_peer_stats_notify(pdev, peer);
  2763. ratekbps = mon_peer->stats.tx.tx_rate;
  2764. DP_STATS_UPD(mon_peer, tx.last_tx_rate, ratekbps);
  2765. dp_send_stats_event(pdev, peer, ppdu->peer_id);
  2766. }
  2767. /**
  2768. * dp_get_ppdu_info_user_index() - Find and allocate a per-user
  2769. * descriptor for a PPDU, if a new peer id arrives in a PPDU
  2770. * @pdev: DP pdev handle
  2771. * @peer_id: peer unique identifier
  2772. * @ppdu_info: per ppdu tlv structure
  2773. *
  2774. * Return: user index to be populated
  2775. */
  2776. static uint8_t dp_get_ppdu_info_user_index(struct dp_pdev *pdev,
  2777. uint16_t peer_id,
  2778. struct ppdu_info *ppdu_info)
  2779. {
  2780. uint8_t user_index = 0;
  2781. struct cdp_tx_completion_ppdu *ppdu_desc;
  2782. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  2783. ppdu_desc =
  2784. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  2785. while ((user_index + 1) <= ppdu_info->last_user) {
  2786. ppdu_user_desc = &ppdu_desc->user[user_index];
  2787. if (ppdu_user_desc->peer_id != peer_id) {
  2788. user_index++;
  2789. continue;
  2790. } else {
  2791. /* Max users possible is 8 so user array index should
  2792. * not exceed 7
  2793. */
  2794. qdf_assert_always(user_index <= (ppdu_desc->max_users - 1));
  2795. return user_index;
  2796. }
  2797. }
  2798. ppdu_info->last_user++;
  2799. /* Max users possible is 8 so last user should not exceed 8 */
  2800. qdf_assert_always(ppdu_info->last_user <= ppdu_desc->max_users);
  2801. return ppdu_info->last_user - 1;
  2802. }
  2803. /**
  2804. * dp_process_ppdu_stats_common_tlv() - Process htt_ppdu_stats_common_tlv
  2805. * @pdev: DP pdev handle
  2806. * @tag_buf: buffer containing the tlv htt_ppdu_stats_common_tlv
  2807. * @ppdu_info: per ppdu tlv structure
  2808. *
  2809. * Return: void
  2810. */
  2811. static void
  2812. dp_process_ppdu_stats_common_tlv(struct dp_pdev *pdev,
  2813. uint32_t *tag_buf,
  2814. struct ppdu_info *ppdu_info)
  2815. {
  2816. uint16_t frame_type;
  2817. uint16_t frame_ctrl;
  2818. uint16_t freq;
  2819. struct dp_soc *soc = NULL;
  2820. struct cdp_tx_completion_ppdu *ppdu_desc = NULL;
  2821. uint64_t ppdu_start_timestamp;
  2822. uint32_t *start_tag_buf;
  2823. start_tag_buf = tag_buf;
  2824. ppdu_desc =
  2825. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  2826. ppdu_desc->ppdu_id = ppdu_info->ppdu_id;
  2827. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(RING_ID_SCH_CMD_ID);
  2828. ppdu_info->sched_cmdid =
  2829. HTT_PPDU_STATS_COMMON_TLV_SCH_CMDID_GET(*tag_buf);
  2830. ppdu_desc->num_users =
  2831. HTT_PPDU_STATS_COMMON_TLV_NUM_USERS_GET(*tag_buf);
  2832. qdf_assert_always(ppdu_desc->num_users <= ppdu_desc->max_users);
  2833. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(QTYPE_FRM_TYPE);
  2834. frame_type = HTT_PPDU_STATS_COMMON_TLV_FRM_TYPE_GET(*tag_buf);
  2835. ppdu_desc->htt_frame_type = frame_type;
  2836. frame_ctrl = ppdu_desc->frame_ctrl;
  2837. ppdu_desc->bar_ppdu_id = ppdu_info->ppdu_id;
  2838. switch (frame_type) {
  2839. case HTT_STATS_FTYPE_TIDQ_DATA_SU:
  2840. case HTT_STATS_FTYPE_TIDQ_DATA_MU:
  2841. case HTT_STATS_FTYPE_SGEN_QOS_NULL:
  2842. /*
  2843. * for management packet, frame type come as DATA_SU
  2844. * need to check frame_ctrl before setting frame_type
  2845. */
  2846. if (HTT_GET_FRAME_CTRL_TYPE(frame_ctrl) <= FRAME_CTRL_TYPE_CTRL)
  2847. ppdu_desc->frame_type = CDP_PPDU_FTYPE_CTRL;
  2848. else
  2849. ppdu_desc->frame_type = CDP_PPDU_FTYPE_DATA;
  2850. break;
  2851. case HTT_STATS_FTYPE_SGEN_MU_BAR:
  2852. case HTT_STATS_FTYPE_SGEN_BAR:
  2853. case HTT_STATS_FTYPE_SGEN_BE_MU_BAR:
  2854. ppdu_desc->frame_type = CDP_PPDU_FTYPE_BAR;
  2855. break;
  2856. default:
  2857. ppdu_desc->frame_type = CDP_PPDU_FTYPE_CTRL;
  2858. break;
  2859. }
  2860. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(FES_DUR_US);
  2861. ppdu_desc->tx_duration = *tag_buf;
  2862. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(START_TSTMP_L32_US);
  2863. ppdu_desc->ppdu_start_timestamp = *tag_buf;
  2864. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(CHAN_MHZ_PHY_MODE);
  2865. freq = HTT_PPDU_STATS_COMMON_TLV_CHAN_MHZ_GET(*tag_buf);
  2866. if (freq != ppdu_desc->channel) {
  2867. soc = pdev->soc;
  2868. ppdu_desc->channel = freq;
  2869. pdev->operating_channel.freq = freq;
  2870. if (soc && soc->cdp_soc.ol_ops->freq_to_channel)
  2871. pdev->operating_channel.num =
  2872. soc->cdp_soc.ol_ops->freq_to_channel(soc->ctrl_psoc,
  2873. pdev->pdev_id,
  2874. freq);
  2875. if (soc && soc->cdp_soc.ol_ops->freq_to_band)
  2876. pdev->operating_channel.band =
  2877. soc->cdp_soc.ol_ops->freq_to_band(soc->ctrl_psoc,
  2878. pdev->pdev_id,
  2879. freq);
  2880. }
  2881. ppdu_desc->phy_mode = HTT_PPDU_STATS_COMMON_TLV_PHY_MODE_GET(*tag_buf);
  2882. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(RESV_NUM_UL_BEAM);
  2883. ppdu_desc->phy_ppdu_tx_time_us =
  2884. HTT_PPDU_STATS_COMMON_TLV_PHY_PPDU_TX_TIME_US_GET(*tag_buf);
  2885. ppdu_desc->beam_change =
  2886. HTT_PPDU_STATS_COMMON_TLV_BEAM_CHANGE_GET(*tag_buf);
  2887. ppdu_desc->doppler =
  2888. HTT_PPDU_STATS_COMMON_TLV_DOPPLER_INDICATION_GET(*tag_buf);
  2889. ppdu_desc->spatial_reuse =
  2890. HTT_PPDU_STATS_COMMON_TLV_SPATIAL_REUSE_GET(*tag_buf);
  2891. dp_tx_capture_htt_frame_counter(pdev, frame_type);
  2892. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(START_TSTMP_U32_US);
  2893. ppdu_start_timestamp = *tag_buf;
  2894. ppdu_desc->ppdu_start_timestamp |= ((ppdu_start_timestamp <<
  2895. HTT_SHIFT_UPPER_TIMESTAMP) &
  2896. HTT_MASK_UPPER_TIMESTAMP);
  2897. ppdu_desc->ppdu_end_timestamp = ppdu_desc->ppdu_start_timestamp +
  2898. ppdu_desc->tx_duration;
  2899. /* Ack time stamp is same as end time stamp*/
  2900. ppdu_desc->ack_timestamp = ppdu_desc->ppdu_end_timestamp;
  2901. ppdu_desc->ppdu_end_timestamp = ppdu_desc->ppdu_start_timestamp +
  2902. ppdu_desc->tx_duration;
  2903. ppdu_desc->bar_ppdu_start_timestamp = ppdu_desc->ppdu_start_timestamp;
  2904. ppdu_desc->bar_ppdu_end_timestamp = ppdu_desc->ppdu_end_timestamp;
  2905. ppdu_desc->bar_tx_duration = ppdu_desc->tx_duration;
  2906. /* Ack time stamp is same as end time stamp*/
  2907. ppdu_desc->ack_timestamp = ppdu_desc->ppdu_end_timestamp;
  2908. tag_buf = start_tag_buf + HTT_GET_STATS_CMN_INDEX(BSSCOLOR_OBSS_PSR);
  2909. ppdu_desc->bss_color =
  2910. HTT_PPDU_STATS_COMMON_TLV_BSS_COLOR_ID_GET(*tag_buf);
  2911. }
  2912. /**
  2913. * dp_process_ppdu_stats_user_common_tlv() - Process ppdu_stats_user_common
  2914. * @pdev: DP PDEV handle
  2915. * @tag_buf: buffer containing the tlv htt_ppdu_stats_user_common_tlv
  2916. * @ppdu_info: per ppdu tlv structure
  2917. *
  2918. * Return: void
  2919. */
  2920. static void dp_process_ppdu_stats_user_common_tlv(
  2921. struct dp_pdev *pdev, uint32_t *tag_buf,
  2922. struct ppdu_info *ppdu_info)
  2923. {
  2924. uint16_t peer_id;
  2925. struct cdp_tx_completion_ppdu *ppdu_desc;
  2926. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  2927. uint8_t curr_user_index = 0;
  2928. struct dp_peer *peer;
  2929. struct dp_vdev *vdev;
  2930. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  2931. ppdu_desc =
  2932. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  2933. tag_buf++;
  2934. peer_id = HTT_PPDU_STATS_USER_RATE_TLV_SW_PEER_ID_GET(*tag_buf);
  2935. curr_user_index =
  2936. dp_get_ppdu_info_user_index(pdev,
  2937. peer_id, ppdu_info);
  2938. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  2939. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  2940. ppdu_desc->vdev_id =
  2941. HTT_PPDU_STATS_USER_COMMON_TLV_VAP_ID_GET(*tag_buf);
  2942. ppdu_user_desc->peer_id = peer_id;
  2943. tag_buf++;
  2944. if (HTT_PPDU_STATS_USER_COMMON_TLV_DELAYED_BA_GET(*tag_buf)) {
  2945. ppdu_user_desc->delayed_ba = 1;
  2946. ppdu_desc->delayed_ba = 1;
  2947. }
  2948. if (HTT_PPDU_STATS_USER_COMMON_TLV_MCAST_GET(*tag_buf)) {
  2949. ppdu_user_desc->is_mcast = true;
  2950. ppdu_user_desc->mpdu_tried_mcast =
  2951. HTT_PPDU_STATS_USER_COMMON_TLV_MPDUS_TRIED_GET(*tag_buf);
  2952. ppdu_user_desc->num_mpdu = ppdu_user_desc->mpdu_tried_mcast;
  2953. } else {
  2954. ppdu_user_desc->mpdu_tried_ucast =
  2955. HTT_PPDU_STATS_USER_COMMON_TLV_MPDUS_TRIED_GET(*tag_buf);
  2956. }
  2957. ppdu_user_desc->is_seq_num_valid =
  2958. HTT_PPDU_STATS_USER_COMMON_TLV_IS_SQNUM_VALID_IN_BUFFER_GET(*tag_buf);
  2959. tag_buf++;
  2960. ppdu_user_desc->qos_ctrl =
  2961. HTT_PPDU_STATS_USER_COMMON_TLV_QOS_CTRL_GET(*tag_buf);
  2962. ppdu_user_desc->frame_ctrl =
  2963. HTT_PPDU_STATS_USER_COMMON_TLV_FRAME_CTRL_GET(*tag_buf);
  2964. ppdu_desc->frame_ctrl = ppdu_user_desc->frame_ctrl;
  2965. if (ppdu_user_desc->delayed_ba)
  2966. ppdu_user_desc->mpdu_success = 0;
  2967. tag_buf += 3;
  2968. if (HTT_PPDU_STATS_IS_OPAQUE_VALID_GET(*tag_buf)) {
  2969. ppdu_user_desc->ppdu_cookie =
  2970. HTT_PPDU_STATS_HOST_OPAQUE_COOKIE_GET(*tag_buf);
  2971. ppdu_user_desc->is_ppdu_cookie_valid = 1;
  2972. }
  2973. /* returning earlier causes other feilds unpopulated */
  2974. if (peer_id == DP_SCAN_PEER_ID) {
  2975. vdev = dp_vdev_get_ref_by_id(pdev->soc, ppdu_desc->vdev_id,
  2976. DP_MOD_ID_TX_PPDU_STATS);
  2977. if (!vdev)
  2978. return;
  2979. qdf_mem_copy(ppdu_user_desc->mac_addr, vdev->mac_addr.raw,
  2980. QDF_MAC_ADDR_SIZE);
  2981. dp_vdev_unref_delete(pdev->soc, vdev, DP_MOD_ID_TX_PPDU_STATS);
  2982. } else {
  2983. peer = dp_peer_get_ref_by_id(pdev->soc, peer_id,
  2984. DP_MOD_ID_TX_PPDU_STATS);
  2985. if (!peer) {
  2986. /*
  2987. * fw sends peer_id which is about to removed but
  2988. * it was already removed in host.
  2989. * eg: for disassoc, fw send ppdu stats
  2990. * with peer id equal to previously associated
  2991. * peer's peer_id but it was removed
  2992. */
  2993. vdev = dp_vdev_get_ref_by_id(pdev->soc,
  2994. ppdu_desc->vdev_id,
  2995. DP_MOD_ID_TX_PPDU_STATS);
  2996. if (!vdev)
  2997. return;
  2998. qdf_mem_copy(ppdu_user_desc->mac_addr,
  2999. vdev->mac_addr.raw, QDF_MAC_ADDR_SIZE);
  3000. dp_vdev_unref_delete(pdev->soc, vdev,
  3001. DP_MOD_ID_TX_PPDU_STATS);
  3002. return;
  3003. }
  3004. qdf_mem_copy(ppdu_user_desc->mac_addr,
  3005. peer->mac_addr.raw, QDF_MAC_ADDR_SIZE);
  3006. dp_peer_unref_delete(peer, DP_MOD_ID_TX_PPDU_STATS);
  3007. }
  3008. }
  3009. /**
  3010. * dp_process_ppdu_stats_user_rate_tlv() - Process htt_ppdu_stats_user_rate_tlv
  3011. * @pdev: DP pdev handle
  3012. * @tag_buf: T2H message buffer carrying the user rate TLV
  3013. * @ppdu_info: per ppdu tlv structure
  3014. *
  3015. * Return: void
  3016. */
  3017. static void
  3018. dp_process_ppdu_stats_user_rate_tlv(struct dp_pdev *pdev,
  3019. uint32_t *tag_buf,
  3020. struct ppdu_info *ppdu_info)
  3021. {
  3022. uint16_t peer_id;
  3023. struct cdp_tx_completion_ppdu *ppdu_desc;
  3024. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3025. uint8_t curr_user_index = 0;
  3026. struct dp_vdev *vdev;
  3027. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3028. uint8_t bw, ru_format;
  3029. uint16_t ru_size;
  3030. ppdu_desc =
  3031. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3032. tag_buf++;
  3033. peer_id = HTT_PPDU_STATS_USER_RATE_TLV_SW_PEER_ID_GET(*tag_buf);
  3034. curr_user_index =
  3035. dp_get_ppdu_info_user_index(pdev,
  3036. peer_id, ppdu_info);
  3037. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3038. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3039. if (peer_id == DP_SCAN_PEER_ID) {
  3040. vdev = dp_vdev_get_ref_by_id(pdev->soc, ppdu_desc->vdev_id,
  3041. DP_MOD_ID_TX_PPDU_STATS);
  3042. if (!vdev)
  3043. return;
  3044. dp_vdev_unref_delete(pdev->soc, vdev,
  3045. DP_MOD_ID_TX_PPDU_STATS);
  3046. }
  3047. ppdu_user_desc->peer_id = peer_id;
  3048. ppdu_user_desc->tid =
  3049. HTT_PPDU_STATS_USER_RATE_TLV_TID_NUM_GET(*tag_buf);
  3050. tag_buf += 1;
  3051. ppdu_user_desc->user_pos =
  3052. HTT_PPDU_STATS_USER_RATE_TLV_USER_POS_GET(*tag_buf);
  3053. ppdu_user_desc->mu_group_id =
  3054. HTT_PPDU_STATS_USER_RATE_TLV_MU_GROUPID_GET(*tag_buf);
  3055. ru_format = HTT_PPDU_STATS_USER_RATE_TLV_RU_FORMAT_GET(*tag_buf);
  3056. tag_buf += 1;
  3057. if (!ru_format) {
  3058. /* ru_format = 0: ru_end, ru_start */
  3059. ppdu_user_desc->ru_start =
  3060. HTT_PPDU_STATS_USER_RATE_TLV_RU_START_GET(*tag_buf);
  3061. ppdu_user_desc->ru_tones =
  3062. (HTT_PPDU_STATS_USER_RATE_TLV_RU_END_GET(*tag_buf) -
  3063. HTT_PPDU_STATS_USER_RATE_TLV_RU_START_GET(*tag_buf)) + 1;
  3064. } else if (ru_format == 1) {
  3065. /* ru_format = 1: ru_index, ru_size */
  3066. ru_size = HTT_PPDU_STATS_USER_RATE_TLV_RU_SIZE_GET(*tag_buf);
  3067. ppdu_user_desc->ru_tones =
  3068. dp_mon_get_ru_width_from_ru_size(ru_size);
  3069. } else {
  3070. dp_mon_debug("Unsupported ru_format: %d rcvd", ru_format);
  3071. }
  3072. ppdu_desc->usr_ru_tones_sum += ppdu_user_desc->ru_tones;
  3073. tag_buf += 2;
  3074. ppdu_user_desc->ppdu_type =
  3075. HTT_PPDU_STATS_USER_RATE_TLV_PPDU_TYPE_GET(*tag_buf);
  3076. tag_buf++;
  3077. ppdu_user_desc->tx_rate = *tag_buf;
  3078. ppdu_user_desc->ltf_size =
  3079. HTT_PPDU_STATS_USER_RATE_TLV_LTF_SIZE_GET(*tag_buf);
  3080. ppdu_user_desc->stbc =
  3081. HTT_PPDU_STATS_USER_RATE_TLV_STBC_GET(*tag_buf);
  3082. ppdu_user_desc->he_re =
  3083. HTT_PPDU_STATS_USER_RATE_TLV_HE_RE_GET(*tag_buf);
  3084. ppdu_user_desc->txbf =
  3085. HTT_PPDU_STATS_USER_RATE_TLV_TXBF_GET(*tag_buf);
  3086. bw = HTT_PPDU_STATS_USER_RATE_TLV_BW_GET(*tag_buf);
  3087. /* Align bw value as per host data structures */
  3088. if (bw == HTT_PPDU_STATS_BANDWIDTH_320MHZ)
  3089. ppdu_user_desc->bw = bw - 3;
  3090. else
  3091. ppdu_user_desc->bw = bw - 2;
  3092. ppdu_user_desc->nss = HTT_PPDU_STATS_USER_RATE_TLV_NSS_GET(*tag_buf);
  3093. ppdu_desc->usr_nss_sum += ppdu_user_desc->nss;
  3094. ppdu_user_desc->mcs = HTT_PPDU_STATS_USER_RATE_TLV_MCS_GET(*tag_buf);
  3095. ppdu_user_desc->preamble =
  3096. HTT_PPDU_STATS_USER_RATE_TLV_PREAMBLE_GET(*tag_buf);
  3097. ppdu_user_desc->gi = HTT_PPDU_STATS_USER_RATE_TLV_GI_GET(*tag_buf);
  3098. ppdu_user_desc->dcm = HTT_PPDU_STATS_USER_RATE_TLV_DCM_GET(*tag_buf);
  3099. ppdu_user_desc->ldpc = HTT_PPDU_STATS_USER_RATE_TLV_LDPC_GET(*tag_buf);
  3100. tag_buf += 2;
  3101. ppdu_user_desc->punc_pattern_bitmap =
  3102. HTT_PPDU_STATS_USER_RATE_TLV_PUNC_PATTERN_BITMAP_GET(*tag_buf);
  3103. }
  3104. /**
  3105. * dp_process_ppdu_stats_enq_mpdu_bitmap_64_tlv() - Process
  3106. * htt_ppdu_stats_enq_mpdu_bitmap_64_tlv
  3107. * @pdev: DP PDEV handle
  3108. * @tag_buf: buffer containing the tlv htt_ppdu_stats_enq_mpdu_bitmap_64_tlv
  3109. * @ppdu_info: per ppdu tlv structure
  3110. *
  3111. * Return: void
  3112. */
  3113. static void dp_process_ppdu_stats_enq_mpdu_bitmap_64_tlv(
  3114. struct dp_pdev *pdev, uint32_t *tag_buf,
  3115. struct ppdu_info *ppdu_info)
  3116. {
  3117. htt_ppdu_stats_enq_mpdu_bitmap_64_tlv *dp_stats_buf =
  3118. (htt_ppdu_stats_enq_mpdu_bitmap_64_tlv *)tag_buf;
  3119. struct cdp_tx_completion_ppdu *ppdu_desc;
  3120. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3121. uint8_t curr_user_index = 0;
  3122. uint16_t peer_id;
  3123. uint32_t size = CDP_BA_64_BIT_MAP_SIZE_DWORDS;
  3124. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3125. ppdu_desc =
  3126. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3127. tag_buf++;
  3128. peer_id =
  3129. HTT_PPDU_STATS_ENQ_MPDU_BITMAP_TLV_SW_PEER_ID_GET(*tag_buf);
  3130. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3131. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3132. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3133. ppdu_user_desc->peer_id = peer_id;
  3134. ppdu_user_desc->start_seq = dp_stats_buf->start_seq;
  3135. qdf_mem_copy(&ppdu_user_desc->enq_bitmap, &dp_stats_buf->enq_bitmap,
  3136. sizeof(uint32_t) * CDP_BA_64_BIT_MAP_SIZE_DWORDS);
  3137. dp_process_ppdu_stats_update_failed_bitmap(pdev,
  3138. (void *)ppdu_user_desc,
  3139. ppdu_info->ppdu_id,
  3140. size);
  3141. }
  3142. /**
  3143. * dp_process_ppdu_stats_enq_mpdu_bitmap_256_tlv() - Process
  3144. * htt_ppdu_stats_enq_mpdu_bitmap_256_tlv
  3145. * @pdev: DP PDEV handle
  3146. * @tag_buf: buffer containing the tlv htt_ppdu_stats_enq_mpdu_bitmap_256_tlv
  3147. * @ppdu_info: per ppdu tlv structure
  3148. *
  3149. * Return: void
  3150. */
  3151. static void dp_process_ppdu_stats_enq_mpdu_bitmap_256_tlv(
  3152. struct dp_pdev *pdev, uint32_t *tag_buf,
  3153. struct ppdu_info *ppdu_info)
  3154. {
  3155. htt_ppdu_stats_enq_mpdu_bitmap_256_tlv *dp_stats_buf =
  3156. (htt_ppdu_stats_enq_mpdu_bitmap_256_tlv *)tag_buf;
  3157. struct cdp_tx_completion_ppdu *ppdu_desc;
  3158. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3159. uint8_t curr_user_index = 0;
  3160. uint16_t peer_id;
  3161. uint32_t size = CDP_BA_256_BIT_MAP_SIZE_DWORDS;
  3162. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3163. ppdu_desc =
  3164. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3165. tag_buf++;
  3166. peer_id =
  3167. HTT_PPDU_STATS_ENQ_MPDU_BITMAP_TLV_SW_PEER_ID_GET(*tag_buf);
  3168. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3169. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3170. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3171. ppdu_user_desc->peer_id = peer_id;
  3172. ppdu_user_desc->start_seq = dp_stats_buf->start_seq;
  3173. qdf_mem_copy(&ppdu_user_desc->enq_bitmap, &dp_stats_buf->enq_bitmap,
  3174. sizeof(uint32_t) * CDP_BA_256_BIT_MAP_SIZE_DWORDS);
  3175. dp_process_ppdu_stats_update_failed_bitmap(pdev,
  3176. (void *)ppdu_user_desc,
  3177. ppdu_info->ppdu_id,
  3178. size);
  3179. }
  3180. /**
  3181. * dp_process_ppdu_stats_user_cmpltn_common_tlv() - Process
  3182. * htt_ppdu_stats_user_cmpltn_common_tlv
  3183. * @pdev: DP PDEV handle
  3184. * @tag_buf: buffer containing the tlv htt_ppdu_stats_user_cmpltn_common_tlv
  3185. * @ppdu_info: per ppdu tlv structure
  3186. *
  3187. * Return: void
  3188. */
  3189. static void dp_process_ppdu_stats_user_cmpltn_common_tlv(
  3190. struct dp_pdev *pdev, uint32_t *tag_buf,
  3191. struct ppdu_info *ppdu_info)
  3192. {
  3193. uint16_t peer_id;
  3194. struct cdp_tx_completion_ppdu *ppdu_desc;
  3195. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3196. uint8_t curr_user_index = 0;
  3197. uint8_t bw_iter;
  3198. htt_ppdu_stats_user_cmpltn_common_tlv *dp_stats_buf =
  3199. (htt_ppdu_stats_user_cmpltn_common_tlv *)tag_buf;
  3200. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3201. ppdu_desc =
  3202. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3203. tag_buf++;
  3204. peer_id =
  3205. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_SW_PEER_ID_GET(*tag_buf);
  3206. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3207. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3208. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3209. ppdu_user_desc->peer_id = peer_id;
  3210. ppdu_user_desc->completion_status =
  3211. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_COMPLETION_STATUS_GET(
  3212. *tag_buf);
  3213. ppdu_user_desc->tid =
  3214. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_TID_NUM_GET(*tag_buf);
  3215. tag_buf++;
  3216. if (qdf_likely(ppdu_user_desc->completion_status ==
  3217. HTT_PPDU_STATS_USER_STATUS_OK)) {
  3218. ppdu_desc->ack_rssi = dp_stats_buf->ack_rssi;
  3219. ppdu_user_desc->usr_ack_rssi = dp_stats_buf->ack_rssi;
  3220. ppdu_user_desc->ack_rssi_valid = 1;
  3221. } else {
  3222. ppdu_user_desc->ack_rssi_valid = 0;
  3223. }
  3224. tag_buf++;
  3225. ppdu_user_desc->mpdu_success =
  3226. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_MPDU_SUCCESS_GET(*tag_buf);
  3227. ppdu_user_desc->mpdu_failed =
  3228. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_MPDU_TRIED_GET(*tag_buf) -
  3229. ppdu_user_desc->mpdu_success;
  3230. tag_buf++;
  3231. ppdu_user_desc->long_retries =
  3232. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_LONG_RETRY_GET(*tag_buf);
  3233. ppdu_user_desc->short_retries =
  3234. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_SHORT_RETRY_GET(*tag_buf);
  3235. ppdu_user_desc->retry_mpdus =
  3236. ppdu_user_desc->long_retries + ppdu_user_desc->short_retries;
  3237. ppdu_user_desc->is_ampdu =
  3238. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_IS_AMPDU_GET(*tag_buf);
  3239. ppdu_info->is_ampdu = ppdu_user_desc->is_ampdu;
  3240. ppdu_desc->resp_type =
  3241. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_RESP_TYPE_GET(*tag_buf);
  3242. ppdu_desc->mprot_type =
  3243. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_MPROT_TYPE_GET(*tag_buf);
  3244. ppdu_desc->rts_success =
  3245. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_RTS_SUCCESS_GET(*tag_buf);
  3246. ppdu_desc->rts_failure =
  3247. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_RTS_FAILURE_GET(*tag_buf);
  3248. ppdu_user_desc->mprot_type = ppdu_desc->mprot_type;
  3249. ppdu_user_desc->rts_success = ppdu_desc->rts_success;
  3250. ppdu_user_desc->rts_failure = ppdu_desc->rts_failure;
  3251. ppdu_user_desc->pream_punct =
  3252. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_PREAM_PUNC_TX_GET(*tag_buf);
  3253. ppdu_info->compltn_common_tlv++;
  3254. /*
  3255. * MU BAR may send request to n users but we may received ack only from
  3256. * m users. To have count of number of users respond back, we have a
  3257. * separate counter bar_num_users per PPDU that get increment for every
  3258. * htt_ppdu_stats_user_cmpltn_common_tlv
  3259. */
  3260. ppdu_desc->bar_num_users++;
  3261. tag_buf++;
  3262. for (bw_iter = 0; bw_iter < CDP_RSSI_CHAIN_LEN; bw_iter++) {
  3263. ppdu_user_desc->rssi_chain[bw_iter] =
  3264. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_CHAIN_RSSI_GET(*tag_buf);
  3265. tag_buf++;
  3266. }
  3267. ppdu_user_desc->sa_tx_antenna =
  3268. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_TX_ANTENNA_MASK_GET(*tag_buf);
  3269. tag_buf++;
  3270. ppdu_user_desc->sa_is_training =
  3271. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_IS_TRAINING_GET(*tag_buf);
  3272. if (ppdu_user_desc->sa_is_training) {
  3273. ppdu_user_desc->sa_goodput =
  3274. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_PENDING_TRAINING_PKTS_GET(*tag_buf);
  3275. }
  3276. tag_buf++;
  3277. for (bw_iter = 0; bw_iter < CDP_NUM_SA_BW; bw_iter++) {
  3278. ppdu_user_desc->sa_max_rates[bw_iter] =
  3279. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_MAX_RATES_GET(tag_buf[bw_iter]);
  3280. }
  3281. tag_buf += CDP_NUM_SA_BW;
  3282. ppdu_user_desc->current_rate_per =
  3283. HTT_PPDU_STATS_USER_CMPLTN_COMMON_TLV_CURRENT_RATE_PER_GET(*tag_buf);
  3284. }
  3285. /**
  3286. * dp_process_ppdu_stats_user_compltn_ba_bitmap_64_tlv() - Process
  3287. * htt_ppdu_stats_user_compltn_ba_bitmap_64_tlv
  3288. * @pdev: DP PDEV handle
  3289. * @tag_buf: buffer containing the htt_ppdu_stats_user_compltn_ba_bitmap_64_tlv
  3290. * @ppdu_info: per ppdu tlv structure
  3291. *
  3292. * Return: void
  3293. */
  3294. static void dp_process_ppdu_stats_user_compltn_ba_bitmap_64_tlv(
  3295. struct dp_pdev *pdev, uint32_t *tag_buf,
  3296. struct ppdu_info *ppdu_info)
  3297. {
  3298. htt_ppdu_stats_user_compltn_ba_bitmap_64_tlv *dp_stats_buf =
  3299. (htt_ppdu_stats_user_compltn_ba_bitmap_64_tlv *)tag_buf;
  3300. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3301. struct cdp_tx_completion_ppdu *ppdu_desc;
  3302. uint8_t curr_user_index = 0;
  3303. uint16_t peer_id;
  3304. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3305. ppdu_desc =
  3306. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3307. tag_buf++;
  3308. peer_id =
  3309. HTT_PPDU_STATS_USER_CMPLTN_BA_BITMAP_TLV_SW_PEER_ID_GET(*tag_buf);
  3310. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3311. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3312. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3313. ppdu_user_desc->peer_id = peer_id;
  3314. ppdu_user_desc->ba_seq_no = dp_stats_buf->ba_seq_no;
  3315. qdf_mem_copy(&ppdu_user_desc->ba_bitmap, &dp_stats_buf->ba_bitmap,
  3316. sizeof(uint32_t) * CDP_BA_64_BIT_MAP_SIZE_DWORDS);
  3317. ppdu_user_desc->ba_size = CDP_BA_64_BIT_MAP_SIZE_DWORDS * 32;
  3318. }
  3319. /**
  3320. * dp_process_ppdu_stats_user_compltn_ba_bitmap_256_tlv() - Process
  3321. * htt_ppdu_stats_user_compltn_ba_bitmap_256_tlv
  3322. * @pdev: DP PDEV handle
  3323. * @tag_buf: buffer containing the htt_ppdu_stats_user_compltn_ba_bitmap_256_tlv
  3324. * @ppdu_info: per ppdu tlv structure
  3325. *
  3326. * Return: void
  3327. */
  3328. static void dp_process_ppdu_stats_user_compltn_ba_bitmap_256_tlv(
  3329. struct dp_pdev *pdev, uint32_t *tag_buf,
  3330. struct ppdu_info *ppdu_info)
  3331. {
  3332. htt_ppdu_stats_user_compltn_ba_bitmap_256_tlv *dp_stats_buf =
  3333. (htt_ppdu_stats_user_compltn_ba_bitmap_256_tlv *)tag_buf;
  3334. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3335. struct cdp_tx_completion_ppdu *ppdu_desc;
  3336. uint8_t curr_user_index = 0;
  3337. uint16_t peer_id;
  3338. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3339. ppdu_desc =
  3340. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3341. tag_buf++;
  3342. peer_id =
  3343. HTT_PPDU_STATS_USER_CMPLTN_BA_BITMAP_TLV_SW_PEER_ID_GET(*tag_buf);
  3344. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3345. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3346. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3347. ppdu_user_desc->peer_id = peer_id;
  3348. ppdu_user_desc->ba_seq_no = dp_stats_buf->ba_seq_no;
  3349. qdf_mem_copy(&ppdu_user_desc->ba_bitmap, &dp_stats_buf->ba_bitmap,
  3350. sizeof(uint32_t) * CDP_BA_256_BIT_MAP_SIZE_DWORDS);
  3351. ppdu_user_desc->ba_size = CDP_BA_256_BIT_MAP_SIZE_DWORDS * 32;
  3352. }
  3353. /**
  3354. * dp_process_ppdu_stats_user_compltn_ack_ba_status_tlv() - Process
  3355. * htt_ppdu_stats_user_compltn_ack_ba_status_tlv
  3356. * @pdev: DP PDEV handle
  3357. * @tag_buf: buffer containing the htt_ppdu_stats_user_compltn_ack_ba_status_tlv
  3358. * @ppdu_info: per ppdu tlv structure
  3359. *
  3360. * Return: void
  3361. */
  3362. static void dp_process_ppdu_stats_user_compltn_ack_ba_status_tlv(
  3363. struct dp_pdev *pdev, uint32_t *tag_buf,
  3364. struct ppdu_info *ppdu_info)
  3365. {
  3366. uint16_t peer_id;
  3367. struct cdp_tx_completion_ppdu *ppdu_desc;
  3368. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3369. uint8_t curr_user_index = 0;
  3370. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3371. ppdu_desc =
  3372. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3373. tag_buf += 2;
  3374. peer_id =
  3375. HTT_PPDU_STATS_USER_CMPLTN_ACK_BA_STATUS_TLV_SW_PEER_ID_GET(*tag_buf);
  3376. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3377. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3378. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3379. if (!ppdu_user_desc->ack_ba_tlv) {
  3380. ppdu_user_desc->ack_ba_tlv = 1;
  3381. } else {
  3382. pdev->stats.ack_ba_comes_twice++;
  3383. return;
  3384. }
  3385. ppdu_user_desc->peer_id = peer_id;
  3386. tag_buf++;
  3387. /* not to update ppdu_desc->tid from this TLV */
  3388. ppdu_user_desc->num_mpdu =
  3389. HTT_PPDU_STATS_USER_CMPLTN_ACK_BA_STATUS_TLV_NUM_MPDU_GET(*tag_buf);
  3390. ppdu_user_desc->num_msdu =
  3391. HTT_PPDU_STATS_USER_CMPLTN_ACK_BA_STATUS_TLV_NUM_MSDU_GET(*tag_buf);
  3392. ppdu_user_desc->success_msdus = ppdu_user_desc->num_msdu;
  3393. tag_buf++;
  3394. ppdu_user_desc->start_seq =
  3395. HTT_PPDU_STATS_USER_CMPLTN_ACK_BA_STATUS_TLV_START_SEQ_GET(
  3396. *tag_buf);
  3397. tag_buf++;
  3398. ppdu_user_desc->success_bytes = *tag_buf;
  3399. /* increase ack ba tlv counter on successful mpdu */
  3400. if (ppdu_user_desc->num_mpdu)
  3401. ppdu_info->ack_ba_tlv++;
  3402. if (ppdu_user_desc->ba_size == 0) {
  3403. ppdu_user_desc->ba_seq_no = ppdu_user_desc->start_seq;
  3404. ppdu_user_desc->ba_bitmap[0] = 1;
  3405. ppdu_user_desc->ba_size = 1;
  3406. }
  3407. }
  3408. /**
  3409. * dp_process_ppdu_stats_user_common_array_tlv() - Process
  3410. * htt_ppdu_stats_user_common_array_tlv
  3411. * @pdev: DP PDEV handle
  3412. * @tag_buf: buffer containing the htt_ppdu_stats_user_compltn_ack_ba_status_tlv
  3413. * @ppdu_info: per ppdu tlv structure
  3414. *
  3415. * Return: void
  3416. */
  3417. static void dp_process_ppdu_stats_user_common_array_tlv(
  3418. struct dp_pdev *pdev, uint32_t *tag_buf,
  3419. struct ppdu_info *ppdu_info)
  3420. {
  3421. uint32_t peer_id;
  3422. struct cdp_tx_completion_ppdu *ppdu_desc;
  3423. struct cdp_tx_completion_ppdu_user *ppdu_user_desc;
  3424. uint8_t curr_user_index = 0;
  3425. struct htt_tx_ppdu_stats_info *dp_stats_buf;
  3426. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3427. ppdu_desc =
  3428. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  3429. tag_buf++;
  3430. dp_stats_buf = (struct htt_tx_ppdu_stats_info *)tag_buf;
  3431. tag_buf += 3;
  3432. peer_id =
  3433. HTT_PPDU_STATS_ARRAY_ITEM_TLV_PEERID_GET(*tag_buf);
  3434. if (!dp_peer_find_by_id_valid(pdev->soc, peer_id)) {
  3435. QDF_TRACE(QDF_MODULE_ID_TXRX, QDF_TRACE_LEVEL_ERROR,
  3436. "Invalid peer");
  3437. return;
  3438. }
  3439. curr_user_index = dp_get_ppdu_info_user_index(pdev, peer_id, ppdu_info);
  3440. ppdu_user_desc = &ppdu_desc->user[curr_user_index];
  3441. ppdu_user_desc->tlv_bitmap |= (1 << tlv_type);
  3442. ppdu_user_desc->retry_bytes = dp_stats_buf->tx_retry_bytes;
  3443. ppdu_user_desc->failed_bytes = dp_stats_buf->tx_failed_bytes;
  3444. tag_buf++;
  3445. ppdu_user_desc->success_msdus =
  3446. HTT_PPDU_STATS_ARRAY_ITEM_TLV_TX_SUCC_MSDUS_GET(*tag_buf);
  3447. ppdu_user_desc->retry_msdus =
  3448. HTT_PPDU_STATS_ARRAY_ITEM_TLV_TX_RETRY_MSDUS_GET(*tag_buf);
  3449. tag_buf++;
  3450. ppdu_user_desc->failed_msdus =
  3451. HTT_PPDU_STATS_ARRAY_ITEM_TLV_TX_FAILED_MSDUS_GET(*tag_buf);
  3452. }
  3453. /**
  3454. * dp_process_ppdu_stats_user_compltn_flush_tlv() - Process
  3455. * htt_ppdu_stats_flush_tlv
  3456. * @pdev: DP PDEV handle
  3457. * @tag_buf: buffer containing the htt_ppdu_stats_flush_tlv
  3458. * @ppdu_info: per ppdu tlv structure
  3459. *
  3460. * Return: void
  3461. */
  3462. static void
  3463. dp_process_ppdu_stats_user_compltn_flush_tlv(struct dp_pdev *pdev,
  3464. uint32_t *tag_buf,
  3465. struct ppdu_info *ppdu_info)
  3466. {
  3467. struct cdp_tx_completion_ppdu *ppdu_desc;
  3468. uint32_t peer_id;
  3469. uint8_t tid;
  3470. struct dp_peer *peer;
  3471. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  3472. struct dp_mon_peer *mon_peer = NULL;
  3473. ppdu_desc = (struct cdp_tx_completion_ppdu *)
  3474. qdf_nbuf_data(ppdu_info->nbuf);
  3475. ppdu_desc->is_flush = 1;
  3476. tag_buf++;
  3477. ppdu_desc->drop_reason = *tag_buf;
  3478. tag_buf++;
  3479. ppdu_desc->num_msdu = HTT_PPDU_STATS_FLUSH_TLV_NUM_MSDU_GET(*tag_buf);
  3480. ppdu_desc->num_mpdu = HTT_PPDU_STATS_FLUSH_TLV_NUM_MPDU_GET(*tag_buf);
  3481. ppdu_desc->flow_type = HTT_PPDU_STATS_FLUSH_TLV_FLOW_TYPE_GET(*tag_buf);
  3482. tag_buf++;
  3483. peer_id = HTT_PPDU_STATS_FLUSH_TLV_SW_PEER_ID_GET(*tag_buf);
  3484. tid = HTT_PPDU_STATS_FLUSH_TLV_TID_NUM_GET(*tag_buf);
  3485. ppdu_desc->num_users = 1;
  3486. ppdu_desc->user[0].peer_id = peer_id;
  3487. ppdu_desc->user[0].tid = tid;
  3488. ppdu_desc->queue_type =
  3489. HTT_PPDU_STATS_FLUSH_TLV_QUEUE_TYPE_GET(*tag_buf);
  3490. peer = dp_peer_get_ref_by_id(pdev->soc, peer_id,
  3491. DP_MOD_ID_TX_PPDU_STATS);
  3492. if (!peer)
  3493. goto add_ppdu_to_sched_list;
  3494. if (ppdu_desc->drop_reason == HTT_FLUSH_EXCESS_RETRIES) {
  3495. mon_peer = peer->monitor_peer;
  3496. DP_STATS_INC(mon_peer,
  3497. tx.excess_retries_per_ac[TID_TO_WME_AC(tid)],
  3498. ppdu_desc->num_msdu);
  3499. }
  3500. dp_peer_unref_delete(peer, DP_MOD_ID_TX_PPDU_STATS);
  3501. add_ppdu_to_sched_list:
  3502. ppdu_info->done = 1;
  3503. TAILQ_REMOVE(&mon_pdev->ppdu_info_list, ppdu_info, ppdu_info_list_elem);
  3504. mon_pdev->list_depth--;
  3505. TAILQ_INSERT_TAIL(&mon_pdev->sched_comp_ppdu_list, ppdu_info,
  3506. ppdu_info_list_elem);
  3507. mon_pdev->sched_comp_list_depth++;
  3508. }
  3509. /**
  3510. * dp_process_ppdu_stats_sch_cmd_status_tlv() - Process schedule command status tlv
  3511. * Here we are not going to process the buffer.
  3512. * @pdev: DP PDEV handle
  3513. * @ppdu_info: per ppdu tlv structure
  3514. *
  3515. * Return: void
  3516. */
  3517. static void
  3518. dp_process_ppdu_stats_sch_cmd_status_tlv(struct dp_pdev *pdev,
  3519. struct ppdu_info *ppdu_info)
  3520. {
  3521. struct cdp_tx_completion_ppdu *ppdu_desc;
  3522. struct dp_peer *peer;
  3523. uint8_t num_users;
  3524. uint8_t i;
  3525. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  3526. ppdu_desc = (struct cdp_tx_completion_ppdu *)
  3527. qdf_nbuf_data(ppdu_info->nbuf);
  3528. num_users = ppdu_desc->bar_num_users;
  3529. for (i = 0; i < num_users; i++) {
  3530. if (ppdu_desc->user[i].user_pos == 0) {
  3531. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_BAR) {
  3532. /* update phy mode for bar frame */
  3533. ppdu_desc->phy_mode =
  3534. ppdu_desc->user[i].preamble;
  3535. ppdu_desc->user[0].mcs = ppdu_desc->user[i].mcs;
  3536. break;
  3537. }
  3538. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_CTRL) {
  3539. ppdu_desc->frame_ctrl =
  3540. ppdu_desc->user[i].frame_ctrl;
  3541. break;
  3542. }
  3543. }
  3544. }
  3545. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_DATA &&
  3546. ppdu_desc->delayed_ba) {
  3547. qdf_assert_always(ppdu_desc->num_users <= ppdu_desc->max_users);
  3548. for (i = 0; i < ppdu_desc->num_users; i++) {
  3549. struct cdp_delayed_tx_completion_ppdu_user *delay_ppdu;
  3550. uint64_t start_tsf;
  3551. uint64_t end_tsf;
  3552. uint32_t ppdu_id;
  3553. struct dp_mon_peer *mon_peer;
  3554. ppdu_id = ppdu_desc->ppdu_id;
  3555. peer = dp_peer_get_ref_by_id
  3556. (pdev->soc, ppdu_desc->user[i].peer_id,
  3557. DP_MOD_ID_TX_PPDU_STATS);
  3558. /*
  3559. * This check is to make sure peer is not deleted
  3560. * after processing the TLVs.
  3561. */
  3562. if (!peer)
  3563. continue;
  3564. if (!peer->monitor_peer) {
  3565. dp_peer_unref_delete(peer,
  3566. DP_MOD_ID_TX_PPDU_STATS);
  3567. continue;
  3568. }
  3569. mon_peer = peer->monitor_peer;
  3570. delay_ppdu = &mon_peer->delayed_ba_ppdu_stats;
  3571. start_tsf = ppdu_desc->ppdu_start_timestamp;
  3572. end_tsf = ppdu_desc->ppdu_end_timestamp;
  3573. /*
  3574. * save delayed ba user info
  3575. */
  3576. if (ppdu_desc->user[i].delayed_ba) {
  3577. dp_peer_copy_delay_stats(peer,
  3578. &ppdu_desc->user[i],
  3579. ppdu_id);
  3580. mon_peer->last_delayed_ba_ppduid = ppdu_id;
  3581. delay_ppdu->ppdu_start_timestamp = start_tsf;
  3582. delay_ppdu->ppdu_end_timestamp = end_tsf;
  3583. }
  3584. ppdu_desc->user[i].peer_last_delayed_ba =
  3585. mon_peer->last_delayed_ba;
  3586. dp_peer_unref_delete(peer, DP_MOD_ID_TX_PPDU_STATS);
  3587. if (ppdu_desc->user[i].delayed_ba &&
  3588. !ppdu_desc->user[i].debug_copied) {
  3589. QDF_TRACE(QDF_MODULE_ID_TXRX,
  3590. QDF_TRACE_LEVEL_INFO_MED,
  3591. "%s: %d ppdu_id[%d] bar_ppdu_id[%d] num_users[%d] usr[%d] htt_frame_type[%d]\n",
  3592. __func__, __LINE__,
  3593. ppdu_desc->ppdu_id,
  3594. ppdu_desc->bar_ppdu_id,
  3595. ppdu_desc->num_users,
  3596. i,
  3597. ppdu_desc->htt_frame_type);
  3598. }
  3599. }
  3600. }
  3601. /*
  3602. * when frame type is BAR and STATS_COMMON_TLV is set
  3603. * copy the store peer delayed info to BAR status
  3604. */
  3605. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_BAR) {
  3606. for (i = 0; i < ppdu_desc->bar_num_users; i++) {
  3607. struct cdp_delayed_tx_completion_ppdu_user *delay_ppdu;
  3608. uint64_t start_tsf;
  3609. uint64_t end_tsf;
  3610. struct dp_mon_peer *mon_peer;
  3611. peer = dp_peer_get_ref_by_id
  3612. (pdev->soc,
  3613. ppdu_desc->user[i].peer_id,
  3614. DP_MOD_ID_TX_PPDU_STATS);
  3615. /*
  3616. * This check is to make sure peer is not deleted
  3617. * after processing the TLVs.
  3618. */
  3619. if (!peer)
  3620. continue;
  3621. if (!peer->monitor_peer) {
  3622. dp_peer_unref_delete(peer,
  3623. DP_MOD_ID_TX_PPDU_STATS);
  3624. continue;
  3625. }
  3626. mon_peer = peer->monitor_peer;
  3627. if (ppdu_desc->user[i].completion_status !=
  3628. HTT_PPDU_STATS_USER_STATUS_OK) {
  3629. dp_peer_unref_delete(peer,
  3630. DP_MOD_ID_TX_PPDU_STATS);
  3631. continue;
  3632. }
  3633. delay_ppdu = &mon_peer->delayed_ba_ppdu_stats;
  3634. start_tsf = delay_ppdu->ppdu_start_timestamp;
  3635. end_tsf = delay_ppdu->ppdu_end_timestamp;
  3636. if (mon_peer->last_delayed_ba) {
  3637. dp_peer_copy_stats_to_bar(peer,
  3638. &ppdu_desc->user[i]);
  3639. ppdu_desc->ppdu_id =
  3640. mon_peer->last_delayed_ba_ppduid;
  3641. ppdu_desc->ppdu_start_timestamp = start_tsf;
  3642. ppdu_desc->ppdu_end_timestamp = end_tsf;
  3643. }
  3644. ppdu_desc->user[i].peer_last_delayed_ba =
  3645. mon_peer->last_delayed_ba;
  3646. dp_peer_unref_delete(peer, DP_MOD_ID_TX_PPDU_STATS);
  3647. }
  3648. }
  3649. TAILQ_REMOVE(&mon_pdev->ppdu_info_list, ppdu_info, ppdu_info_list_elem);
  3650. mon_pdev->list_depth--;
  3651. TAILQ_INSERT_TAIL(&mon_pdev->sched_comp_ppdu_list, ppdu_info,
  3652. ppdu_info_list_elem);
  3653. mon_pdev->sched_comp_list_depth++;
  3654. }
  3655. /**
  3656. * dp_validate_fix_ppdu_tlv() - Function to validate the length of PPDU
  3657. * @pdev: DP pdev handle
  3658. * @tag_buf: TLV buffer
  3659. * @tlv_expected_size: Expected size of Tag
  3660. * @tlv_len: TLV length received from FW
  3661. *
  3662. * If the TLV length sent as part of PPDU TLV is less that expected size i.e
  3663. * size of corresponding data structure, pad the remaining bytes with zeros
  3664. * and continue processing the TLVs
  3665. *
  3666. * Return: Pointer to updated TLV
  3667. */
  3668. static inline uint32_t *dp_validate_fix_ppdu_tlv(struct dp_pdev *pdev,
  3669. uint32_t *tag_buf,
  3670. uint16_t tlv_expected_size,
  3671. uint16_t tlv_len)
  3672. {
  3673. uint32_t *tlv_desc = tag_buf;
  3674. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  3675. qdf_assert_always(tlv_len != 0);
  3676. if (tlv_len < tlv_expected_size) {
  3677. qdf_mem_zero(mon_pdev->ppdu_tlv_buf, tlv_expected_size);
  3678. qdf_mem_copy(mon_pdev->ppdu_tlv_buf, tag_buf, tlv_len);
  3679. tlv_desc = mon_pdev->ppdu_tlv_buf;
  3680. }
  3681. return tlv_desc;
  3682. }
  3683. /**
  3684. * dp_process_ppdu_tag() - Function to process the PPDU TLVs
  3685. * @pdev: DP pdev handle
  3686. * @tag_buf: TLV buffer
  3687. * @tlv_len: length of tlv
  3688. * @ppdu_info: per ppdu tlv structure
  3689. *
  3690. * Return: void
  3691. */
  3692. static void dp_process_ppdu_tag(struct dp_pdev *pdev,
  3693. uint32_t *tag_buf,
  3694. uint32_t tlv_len,
  3695. struct ppdu_info *ppdu_info)
  3696. {
  3697. uint32_t tlv_type = HTT_STATS_TLV_TAG_GET(*tag_buf);
  3698. uint16_t tlv_expected_size;
  3699. uint32_t *tlv_desc;
  3700. switch (tlv_type) {
  3701. case HTT_PPDU_STATS_COMMON_TLV:
  3702. tlv_expected_size = sizeof(htt_ppdu_stats_common_tlv);
  3703. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3704. tlv_expected_size, tlv_len);
  3705. dp_process_ppdu_stats_common_tlv(pdev, tlv_desc, ppdu_info);
  3706. break;
  3707. case HTT_PPDU_STATS_USR_COMMON_TLV:
  3708. tlv_expected_size = sizeof(htt_ppdu_stats_user_common_tlv);
  3709. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3710. tlv_expected_size, tlv_len);
  3711. dp_process_ppdu_stats_user_common_tlv(pdev, tlv_desc,
  3712. ppdu_info);
  3713. break;
  3714. case HTT_PPDU_STATS_USR_RATE_TLV:
  3715. tlv_expected_size = sizeof(htt_ppdu_stats_user_rate_tlv);
  3716. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3717. tlv_expected_size, tlv_len);
  3718. dp_process_ppdu_stats_user_rate_tlv(pdev, tlv_desc,
  3719. ppdu_info);
  3720. break;
  3721. case HTT_PPDU_STATS_USR_MPDU_ENQ_BITMAP_64_TLV:
  3722. tlv_expected_size =
  3723. sizeof(htt_ppdu_stats_enq_mpdu_bitmap_64_tlv);
  3724. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3725. tlv_expected_size, tlv_len);
  3726. dp_process_ppdu_stats_enq_mpdu_bitmap_64_tlv(
  3727. pdev, tlv_desc, ppdu_info);
  3728. break;
  3729. case HTT_PPDU_STATS_USR_MPDU_ENQ_BITMAP_256_TLV:
  3730. tlv_expected_size =
  3731. sizeof(htt_ppdu_stats_enq_mpdu_bitmap_256_tlv);
  3732. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3733. tlv_expected_size, tlv_len);
  3734. dp_process_ppdu_stats_enq_mpdu_bitmap_256_tlv(
  3735. pdev, tlv_desc, ppdu_info);
  3736. break;
  3737. case HTT_PPDU_STATS_USR_COMPLTN_COMMON_TLV:
  3738. tlv_expected_size =
  3739. sizeof(htt_ppdu_stats_user_cmpltn_common_tlv);
  3740. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3741. tlv_expected_size, tlv_len);
  3742. dp_process_ppdu_stats_user_cmpltn_common_tlv(
  3743. pdev, tlv_desc, ppdu_info);
  3744. break;
  3745. case HTT_PPDU_STATS_USR_COMPLTN_BA_BITMAP_64_TLV:
  3746. tlv_expected_size =
  3747. sizeof(htt_ppdu_stats_user_compltn_ba_bitmap_64_tlv);
  3748. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3749. tlv_expected_size, tlv_len);
  3750. dp_process_ppdu_stats_user_compltn_ba_bitmap_64_tlv(
  3751. pdev, tlv_desc, ppdu_info);
  3752. break;
  3753. case HTT_PPDU_STATS_USR_COMPLTN_BA_BITMAP_256_TLV:
  3754. tlv_expected_size =
  3755. sizeof(htt_ppdu_stats_user_compltn_ba_bitmap_256_tlv);
  3756. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3757. tlv_expected_size, tlv_len);
  3758. dp_process_ppdu_stats_user_compltn_ba_bitmap_256_tlv(
  3759. pdev, tlv_desc, ppdu_info);
  3760. break;
  3761. case HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV:
  3762. tlv_expected_size =
  3763. sizeof(htt_ppdu_stats_user_compltn_ack_ba_status_tlv);
  3764. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3765. tlv_expected_size, tlv_len);
  3766. dp_process_ppdu_stats_user_compltn_ack_ba_status_tlv(
  3767. pdev, tlv_desc, ppdu_info);
  3768. break;
  3769. case HTT_PPDU_STATS_USR_COMMON_ARRAY_TLV:
  3770. tlv_expected_size =
  3771. sizeof(htt_ppdu_stats_usr_common_array_tlv_v);
  3772. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3773. tlv_expected_size, tlv_len);
  3774. dp_process_ppdu_stats_user_common_array_tlv(
  3775. pdev, tlv_desc, ppdu_info);
  3776. break;
  3777. case HTT_PPDU_STATS_USR_COMPLTN_FLUSH_TLV:
  3778. tlv_expected_size = sizeof(htt_ppdu_stats_flush_tlv);
  3779. tlv_desc = dp_validate_fix_ppdu_tlv(pdev, tag_buf,
  3780. tlv_expected_size, tlv_len);
  3781. dp_process_ppdu_stats_user_compltn_flush_tlv(pdev, tlv_desc,
  3782. ppdu_info);
  3783. break;
  3784. case HTT_PPDU_STATS_SCH_CMD_STATUS_TLV:
  3785. dp_process_ppdu_stats_sch_cmd_status_tlv(pdev, ppdu_info);
  3786. break;
  3787. default:
  3788. break;
  3789. }
  3790. }
  3791. #ifdef WLAN_TELEMETRY_STATS_SUPPORT
  3792. static inline
  3793. void dp_ppdu_desc_user_airtime_consumption_update(
  3794. struct dp_peer *peer,
  3795. struct cdp_tx_completion_ppdu_user *user)
  3796. {
  3797. struct dp_mon_peer *mon_peer = NULL;
  3798. uint8_t ac = 0;
  3799. mon_peer = peer->monitor_peer;
  3800. if (qdf_unlikely(!mon_peer))
  3801. return;
  3802. ac = TID_TO_WME_AC(user->tid);
  3803. DP_STATS_INC(mon_peer, airtime_stats.tx_airtime_consumption[ac].consumption,
  3804. user->phy_tx_time_us);
  3805. }
  3806. #else
  3807. static inline
  3808. void dp_ppdu_desc_user_airtime_consumption_update(
  3809. struct dp_peer *peer,
  3810. struct cdp_tx_completion_ppdu_user *user)
  3811. { }
  3812. #endif
  3813. #if defined(WLAN_ATF_ENABLE) || defined(WLAN_TELEMETRY_STATS_SUPPORT)
  3814. static void
  3815. dp_ppdu_desc_user_phy_tx_time_update(struct dp_pdev *pdev,
  3816. struct dp_peer *peer,
  3817. struct cdp_tx_completion_ppdu *ppdu_desc,
  3818. struct cdp_tx_completion_ppdu_user *user)
  3819. {
  3820. uint32_t nss_ru_width_sum = 0;
  3821. struct dp_mon_peer *mon_peer = NULL;
  3822. if (!pdev || !ppdu_desc || !user || !peer)
  3823. return;
  3824. if (ppdu_desc->frame_type != CDP_PPDU_FTYPE_DATA)
  3825. return;
  3826. mon_peer = peer->monitor_peer;
  3827. if (qdf_unlikely(!mon_peer))
  3828. return;
  3829. nss_ru_width_sum = ppdu_desc->usr_nss_sum * ppdu_desc->usr_ru_tones_sum;
  3830. if (!nss_ru_width_sum)
  3831. nss_ru_width_sum = 1;
  3832. /*
  3833. * For SU-MIMO PPDU phy Tx time is same for the single user.
  3834. * For MU-MIMO phy Tx time is calculated per user as below
  3835. * user phy tx time =
  3836. * Entire PPDU duration * MU Ratio * OFDMA Ratio
  3837. * MU Ratio = usr_nss / Sum_of_nss_of_all_users
  3838. * OFDMA_ratio = usr_ru_width / Sum_of_ru_width_of_all_users
  3839. * usr_ru_widt = ru_end – ru_start + 1
  3840. */
  3841. if (ppdu_desc->htt_frame_type == HTT_STATS_FTYPE_TIDQ_DATA_SU) {
  3842. user->phy_tx_time_us = ppdu_desc->phy_ppdu_tx_time_us;
  3843. } else {
  3844. user->phy_tx_time_us = (ppdu_desc->phy_ppdu_tx_time_us *
  3845. user->nss * user->ru_tones) / nss_ru_width_sum;
  3846. }
  3847. dp_ppdu_desc_user_airtime_consumption_update(peer, user);
  3848. }
  3849. #else
  3850. static void
  3851. dp_ppdu_desc_user_phy_tx_time_update(struct dp_pdev *pdev,
  3852. struct dp_peer *peer,
  3853. struct cdp_tx_completion_ppdu *ppdu_desc,
  3854. struct cdp_tx_completion_ppdu_user *user)
  3855. {
  3856. }
  3857. #endif
  3858. #ifdef WLAN_SUPPORT_CTRL_FRAME_STATS
  3859. static void
  3860. dp_tx_ctrl_stats_update(struct dp_pdev *pdev, struct dp_peer *peer,
  3861. struct cdp_tx_completion_ppdu_user *user)
  3862. {
  3863. struct dp_mon_peer *mon_peer = NULL;
  3864. uint16_t fc = 0;
  3865. if (!pdev || !peer || !user)
  3866. return;
  3867. mon_peer = peer->monitor_peer;
  3868. if (qdf_unlikely(!mon_peer))
  3869. return;
  3870. if (user->mprot_type) {
  3871. DP_STATS_INCC(mon_peer,
  3872. tx.rts_success, 1, user->rts_success);
  3873. DP_STATS_INCC(mon_peer,
  3874. tx.rts_failure, 1, user->rts_failure);
  3875. }
  3876. fc = user->frame_ctrl;
  3877. if ((qdf_cpu_to_le16(fc) & QDF_IEEE80211_FC0_TYPE_MASK) ==
  3878. QDF_IEEE80211_FC0_TYPE_CTL) {
  3879. if ((qdf_cpu_to_le16(fc) & QDF_IEEE80211_FC0_SUBTYPE_MASK) ==
  3880. QDF_IEEE80211_FC0_SUBTYPE_VHT_NDP_AN)
  3881. DP_STATS_INC(mon_peer, tx.ndpa_cnt, 1);
  3882. if ((qdf_cpu_to_le16(fc) & QDF_IEEE80211_FC0_SUBTYPE_MASK) ==
  3883. QDF_IEEE80211_FC0_SUBTYPE_BAR)
  3884. DP_STATS_INC(mon_peer, tx.bar_cnt, 1);
  3885. }
  3886. }
  3887. #else
  3888. static void
  3889. dp_tx_ctrl_stats_update(struct dp_pdev *pdev, struct dp_peer *peer,
  3890. struct cdp_tx_completion_ppdu_user *user)
  3891. {
  3892. }
  3893. #endif /* WLAN_SUPPORT_CTRL_FRAME_STATS */
  3894. void
  3895. dp_ppdu_desc_user_stats_update(struct dp_pdev *pdev,
  3896. struct ppdu_info *ppdu_info)
  3897. {
  3898. struct cdp_tx_completion_ppdu *ppdu_desc = NULL;
  3899. struct dp_peer *peer = NULL;
  3900. uint32_t tlv_bitmap_expected;
  3901. uint32_t tlv_bitmap_default;
  3902. uint16_t i;
  3903. uint32_t num_users;
  3904. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  3905. ppdu_desc = (struct cdp_tx_completion_ppdu *)
  3906. qdf_nbuf_data(ppdu_info->nbuf);
  3907. if (ppdu_desc->frame_type != CDP_PPDU_FTYPE_BAR)
  3908. ppdu_desc->ppdu_id = ppdu_info->ppdu_id;
  3909. tlv_bitmap_expected = HTT_PPDU_DEFAULT_TLV_BITMAP;
  3910. if (mon_pdev->tx_sniffer_enable || mon_pdev->mcopy_mode ||
  3911. mon_pdev->tx_capture_enabled) {
  3912. if (ppdu_info->is_ampdu)
  3913. tlv_bitmap_expected =
  3914. dp_htt_get_ppdu_sniffer_ampdu_tlv_bitmap(
  3915. ppdu_info->tlv_bitmap);
  3916. }
  3917. tlv_bitmap_default = tlv_bitmap_expected;
  3918. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_BAR) {
  3919. num_users = ppdu_desc->bar_num_users;
  3920. ppdu_desc->num_users = ppdu_desc->bar_num_users;
  3921. } else {
  3922. num_users = ppdu_desc->num_users;
  3923. }
  3924. qdf_assert_always(ppdu_desc->num_users <= ppdu_desc->max_users);
  3925. for (i = 0; i < num_users; i++) {
  3926. ppdu_desc->num_mpdu += ppdu_desc->user[i].num_mpdu;
  3927. ppdu_desc->num_msdu += ppdu_desc->user[i].num_msdu;
  3928. peer = dp_peer_get_ref_by_id(pdev->soc,
  3929. ppdu_desc->user[i].peer_id,
  3930. DP_MOD_ID_TX_PPDU_STATS);
  3931. /*
  3932. * This check is to make sure peer is not deleted
  3933. * after processing the TLVs.
  3934. */
  3935. if (!peer)
  3936. continue;
  3937. ppdu_desc->user[i].is_bss_peer = peer->bss_peer;
  3938. dp_ppdu_desc_user_phy_tx_time_update(pdev, peer, ppdu_desc,
  3939. &ppdu_desc->user[i]);
  3940. dp_tx_ctrl_stats_update(pdev, peer, &ppdu_desc->user[i]);
  3941. /*
  3942. * different frame like DATA, BAR or CTRL has different
  3943. * tlv bitmap expected. Apart from ACK_BA_STATUS TLV, we
  3944. * receive other tlv in-order/sequential from fw.
  3945. * Since ACK_BA_STATUS TLV come from Hardware it is
  3946. * asynchronous So we need to depend on some tlv to confirm
  3947. * all tlv is received for a ppdu.
  3948. * So we depend on both SCHED_CMD_STATUS_TLV and
  3949. * ACK_BA_STATUS_TLV. for failure packet we won't get
  3950. * ACK_BA_STATUS_TLV.
  3951. */
  3952. if (!(ppdu_info->tlv_bitmap &
  3953. (1 << HTT_PPDU_STATS_SCH_CMD_STATUS_TLV)) ||
  3954. (!(ppdu_info->tlv_bitmap &
  3955. (1 << HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV)) &&
  3956. (ppdu_desc->user[i].completion_status ==
  3957. HTT_PPDU_STATS_USER_STATUS_OK))) {
  3958. dp_peer_unref_delete(peer, DP_MOD_ID_TX_PPDU_STATS);
  3959. continue;
  3960. }
  3961. /*
  3962. * Update tx stats for data frames having Qos as well as
  3963. * non-Qos data tid
  3964. */
  3965. if ((ppdu_desc->user[i].tid < CDP_DATA_TID_MAX ||
  3966. (ppdu_desc->user[i].tid == CDP_DATA_NON_QOS_TID) ||
  3967. (ppdu_desc->htt_frame_type ==
  3968. HTT_STATS_FTYPE_SGEN_QOS_NULL) ||
  3969. ((ppdu_desc->frame_type == CDP_PPDU_FTYPE_BAR) &&
  3970. (ppdu_desc->num_mpdu > 1))) &&
  3971. (ppdu_desc->frame_type != CDP_PPDU_FTYPE_CTRL)) {
  3972. dp_tx_stats_update(pdev, peer,
  3973. &ppdu_desc->user[i],
  3974. ppdu_desc->ack_rssi);
  3975. }
  3976. dp_peer_unref_delete(peer, DP_MOD_ID_TX_PPDU_STATS);
  3977. tlv_bitmap_expected = tlv_bitmap_default;
  3978. }
  3979. }
  3980. #if !defined(WLAN_TX_PKT_CAPTURE_ENH) || defined(QCA_MONITOR_2_0_SUPPORT)
  3981. /**
  3982. * dp_tx_ppdu_desc_notify() - Notify to upper layer about PPDU via WDI
  3983. *
  3984. * @pdev: Datapath pdev handle
  3985. * @nbuf: Buffer to be delivered to upper layer
  3986. *
  3987. * Return: void
  3988. */
  3989. static void dp_tx_ppdu_desc_notify(struct dp_pdev *pdev, qdf_nbuf_t nbuf)
  3990. {
  3991. struct dp_soc *soc = pdev->soc;
  3992. struct dp_mon_ops *mon_ops = NULL;
  3993. mon_ops = dp_mon_ops_get(soc);
  3994. if (mon_ops && mon_ops->mon_ppdu_desc_notify)
  3995. mon_ops->mon_ppdu_desc_notify(pdev, nbuf);
  3996. else
  3997. qdf_nbuf_free(nbuf);
  3998. }
  3999. void dp_ppdu_desc_deliver(struct dp_pdev *pdev,
  4000. struct ppdu_info *ppdu_info)
  4001. {
  4002. struct ppdu_info *s_ppdu_info = NULL;
  4003. struct ppdu_info *ppdu_info_next = NULL;
  4004. struct cdp_tx_completion_ppdu *ppdu_desc = NULL;
  4005. qdf_nbuf_t nbuf;
  4006. uint32_t time_delta = 0;
  4007. bool starved = 0;
  4008. bool matched = 0;
  4009. bool recv_ack_ba_done = 0;
  4010. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4011. if (ppdu_info->tlv_bitmap &
  4012. (1 << HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV) &&
  4013. ppdu_info->done)
  4014. recv_ack_ba_done = 1;
  4015. mon_pdev->last_sched_cmdid = ppdu_info->sched_cmdid;
  4016. s_ppdu_info = TAILQ_FIRST(&mon_pdev->sched_comp_ppdu_list);
  4017. TAILQ_FOREACH_SAFE(s_ppdu_info, &mon_pdev->sched_comp_ppdu_list,
  4018. ppdu_info_list_elem, ppdu_info_next) {
  4019. if (s_ppdu_info->tsf_l32 > ppdu_info->tsf_l32)
  4020. time_delta = (MAX_TSF_32 - s_ppdu_info->tsf_l32) +
  4021. ppdu_info->tsf_l32;
  4022. else
  4023. time_delta = ppdu_info->tsf_l32 - s_ppdu_info->tsf_l32;
  4024. if (!s_ppdu_info->done && !recv_ack_ba_done) {
  4025. if (time_delta < MAX_SCHED_STARVE) {
  4026. dp_mon_info("pdev[%d] ppdu_id[%d] sched_cmdid[%d] TLV_B[0x%x] TSF[%u] D[%d]",
  4027. pdev->pdev_id,
  4028. s_ppdu_info->ppdu_id,
  4029. s_ppdu_info->sched_cmdid,
  4030. s_ppdu_info->tlv_bitmap,
  4031. s_ppdu_info->tsf_l32,
  4032. s_ppdu_info->done);
  4033. break;
  4034. }
  4035. starved = 1;
  4036. }
  4037. mon_pdev->delivered_sched_cmdid = s_ppdu_info->sched_cmdid;
  4038. TAILQ_REMOVE(&mon_pdev->sched_comp_ppdu_list, s_ppdu_info,
  4039. ppdu_info_list_elem);
  4040. mon_pdev->sched_comp_list_depth--;
  4041. nbuf = s_ppdu_info->nbuf;
  4042. qdf_assert_always(nbuf);
  4043. ppdu_desc = (struct cdp_tx_completion_ppdu *)
  4044. qdf_nbuf_data(nbuf);
  4045. ppdu_desc->tlv_bitmap = s_ppdu_info->tlv_bitmap;
  4046. if (starved) {
  4047. dp_mon_info("ppdu starved fc[0x%x] h_ftype[%d] tlv_bitmap[0x%x] cs[%d]\n",
  4048. ppdu_desc->frame_ctrl,
  4049. ppdu_desc->htt_frame_type,
  4050. ppdu_desc->tlv_bitmap,
  4051. ppdu_desc->user[0].completion_status);
  4052. starved = 0;
  4053. }
  4054. if (ppdu_info->ppdu_id == s_ppdu_info->ppdu_id &&
  4055. ppdu_info->sched_cmdid == s_ppdu_info->sched_cmdid)
  4056. matched = 1;
  4057. dp_ppdu_desc_user_stats_update(pdev, s_ppdu_info);
  4058. qdf_mem_free(s_ppdu_info);
  4059. dp_tx_ppdu_desc_notify(pdev, nbuf);
  4060. if (matched)
  4061. break;
  4062. }
  4063. }
  4064. #endif
  4065. /**
  4066. * dp_tx_ppdu_desc_deliver() - Deliver PPDU desc to upper layer
  4067. * @pdev: Datapath pdev handle
  4068. * @ppdu_info: per PPDU TLV descriptor
  4069. *
  4070. * Return: void
  4071. */
  4072. static void dp_tx_ppdu_desc_deliver(struct dp_pdev *pdev,
  4073. struct ppdu_info *ppdu_info)
  4074. {
  4075. struct dp_soc *soc = pdev->soc;
  4076. struct dp_mon_ops *mon_ops = NULL;
  4077. mon_ops = dp_mon_ops_get(soc);
  4078. if (mon_ops && mon_ops->mon_ppdu_desc_deliver) {
  4079. mon_ops->mon_ppdu_desc_deliver(pdev, ppdu_info);
  4080. } else {
  4081. qdf_nbuf_free(ppdu_info->nbuf);
  4082. ppdu_info->nbuf = NULL;
  4083. qdf_mem_free(ppdu_info);
  4084. }
  4085. }
  4086. /**
  4087. * dp_get_ppdu_desc() - Function to allocate new PPDU status
  4088. * desc for new ppdu id
  4089. * @pdev: DP pdev handle
  4090. * @ppdu_id: PPDU unique identifier
  4091. * @tlv_type: TLV type received
  4092. * @tsf_l32: timestamp received along with ppdu stats indication header
  4093. * @max_users: Maximum user for that particular ppdu
  4094. *
  4095. * Return: ppdu_info per ppdu tlv structure
  4096. */
  4097. static
  4098. struct ppdu_info *dp_get_ppdu_desc(struct dp_pdev *pdev, uint32_t ppdu_id,
  4099. uint8_t tlv_type, uint32_t tsf_l32,
  4100. uint8_t max_users)
  4101. {
  4102. struct ppdu_info *ppdu_info = NULL;
  4103. struct ppdu_info *s_ppdu_info = NULL;
  4104. struct ppdu_info *ppdu_info_next = NULL;
  4105. struct cdp_tx_completion_ppdu *ppdu_desc = NULL;
  4106. uint32_t size = 0;
  4107. struct cdp_tx_completion_ppdu *tmp_ppdu_desc = NULL;
  4108. struct cdp_tx_completion_ppdu_user *tmp_user;
  4109. uint32_t time_delta;
  4110. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4111. /*
  4112. * Find ppdu_id node exists or not
  4113. */
  4114. TAILQ_FOREACH_SAFE(ppdu_info, &mon_pdev->ppdu_info_list,
  4115. ppdu_info_list_elem, ppdu_info_next) {
  4116. if (ppdu_info && (ppdu_info->ppdu_id == ppdu_id)) {
  4117. if (ppdu_info->tsf_l32 > tsf_l32)
  4118. time_delta = (MAX_TSF_32 -
  4119. ppdu_info->tsf_l32) + tsf_l32;
  4120. else
  4121. time_delta = tsf_l32 - ppdu_info->tsf_l32;
  4122. if (time_delta > WRAP_DROP_TSF_DELTA) {
  4123. TAILQ_REMOVE(&mon_pdev->ppdu_info_list,
  4124. ppdu_info, ppdu_info_list_elem);
  4125. mon_pdev->list_depth--;
  4126. pdev->stats.ppdu_wrap_drop++;
  4127. tmp_ppdu_desc =
  4128. (struct cdp_tx_completion_ppdu *)
  4129. qdf_nbuf_data(ppdu_info->nbuf);
  4130. tmp_user = &tmp_ppdu_desc->user[0];
  4131. dp_htt_tx_stats_info("S_PID [%d] S_TSF[%u] TLV_BITMAP[0x%x] [CMPLTN - %d ACK_BA - %d] CS[%d] - R_PID[%d] R_TSF[%u] R_TLV_TAG[0x%x]\n",
  4132. ppdu_info->ppdu_id,
  4133. ppdu_info->tsf_l32,
  4134. ppdu_info->tlv_bitmap,
  4135. tmp_user->completion_status,
  4136. ppdu_info->compltn_common_tlv,
  4137. ppdu_info->ack_ba_tlv,
  4138. ppdu_id, tsf_l32,
  4139. tlv_type);
  4140. qdf_nbuf_free(ppdu_info->nbuf);
  4141. ppdu_info->nbuf = NULL;
  4142. qdf_mem_free(ppdu_info);
  4143. } else {
  4144. break;
  4145. }
  4146. }
  4147. }
  4148. /*
  4149. * check if it is ack ba tlv and if it is not there in ppdu info
  4150. * list then check it in sched completion ppdu list
  4151. */
  4152. if (!ppdu_info &&
  4153. tlv_type == HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV) {
  4154. TAILQ_FOREACH(s_ppdu_info,
  4155. &mon_pdev->sched_comp_ppdu_list,
  4156. ppdu_info_list_elem) {
  4157. if (s_ppdu_info && (s_ppdu_info->ppdu_id == ppdu_id)) {
  4158. if (s_ppdu_info->tsf_l32 > tsf_l32)
  4159. time_delta = (MAX_TSF_32 -
  4160. s_ppdu_info->tsf_l32) +
  4161. tsf_l32;
  4162. else
  4163. time_delta = tsf_l32 -
  4164. s_ppdu_info->tsf_l32;
  4165. if (time_delta < WRAP_DROP_TSF_DELTA) {
  4166. ppdu_info = s_ppdu_info;
  4167. break;
  4168. }
  4169. } else {
  4170. /*
  4171. * ACK BA STATUS TLV comes sequential order
  4172. * if we received ack ba status tlv for second
  4173. * ppdu and first ppdu is still waiting for
  4174. * ACK BA STATUS TLV. Based on fw comment
  4175. * we won't receive it tlv later. So we can
  4176. * set ppdu info done.
  4177. */
  4178. if (s_ppdu_info)
  4179. s_ppdu_info->done = 1;
  4180. }
  4181. }
  4182. }
  4183. if (ppdu_info) {
  4184. if (ppdu_info->tlv_bitmap & (1 << tlv_type)) {
  4185. /*
  4186. * if we get tlv_type that is already been processed
  4187. * for ppdu, that means we got a new ppdu with same
  4188. * ppdu id. Hence Flush the older ppdu
  4189. * for MUMIMO and OFDMA, In a PPDU we have
  4190. * multiple user with same tlv types. tlv bitmap is
  4191. * used to check whether SU or MU_MIMO/OFDMA
  4192. */
  4193. if (!(ppdu_info->tlv_bitmap &
  4194. (1 << HTT_PPDU_STATS_SCH_CMD_STATUS_TLV)))
  4195. return ppdu_info;
  4196. ppdu_desc = (struct cdp_tx_completion_ppdu *)
  4197. qdf_nbuf_data(ppdu_info->nbuf);
  4198. /*
  4199. * apart from ACK BA STATUS TLV rest all comes in order
  4200. * so if tlv type not ACK BA STATUS TLV we can deliver
  4201. * ppdu_info
  4202. */
  4203. if ((tlv_type ==
  4204. HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV) &&
  4205. ((ppdu_desc->htt_frame_type ==
  4206. HTT_STATS_FTYPE_SGEN_MU_BAR) ||
  4207. (ppdu_desc->htt_frame_type ==
  4208. HTT_STATS_FTYPE_SGEN_BE_MU_BAR)))
  4209. return ppdu_info;
  4210. dp_tx_ppdu_desc_deliver(pdev, ppdu_info);
  4211. } else {
  4212. return ppdu_info;
  4213. }
  4214. }
  4215. /*
  4216. * Flush the head ppdu descriptor if ppdu desc list reaches max
  4217. * threshold
  4218. */
  4219. if (mon_pdev->list_depth > HTT_PPDU_DESC_MAX_DEPTH) {
  4220. ppdu_info = TAILQ_FIRST(&mon_pdev->ppdu_info_list);
  4221. TAILQ_REMOVE(&mon_pdev->ppdu_info_list,
  4222. ppdu_info, ppdu_info_list_elem);
  4223. mon_pdev->list_depth--;
  4224. pdev->stats.ppdu_drop++;
  4225. qdf_nbuf_free(ppdu_info->nbuf);
  4226. ppdu_info->nbuf = NULL;
  4227. qdf_mem_free(ppdu_info);
  4228. }
  4229. size = sizeof(struct cdp_tx_completion_ppdu) +
  4230. (max_users * sizeof(struct cdp_tx_completion_ppdu_user));
  4231. /*
  4232. * Allocate new ppdu_info node
  4233. */
  4234. ppdu_info = qdf_mem_malloc(sizeof(struct ppdu_info));
  4235. if (!ppdu_info)
  4236. return NULL;
  4237. ppdu_info->nbuf = qdf_nbuf_alloc(pdev->soc->osdev, size,
  4238. 0, 4, TRUE);
  4239. if (!ppdu_info->nbuf) {
  4240. qdf_mem_free(ppdu_info);
  4241. return NULL;
  4242. }
  4243. ppdu_info->ppdu_desc =
  4244. (struct cdp_tx_completion_ppdu *)qdf_nbuf_data(ppdu_info->nbuf);
  4245. qdf_mem_zero(qdf_nbuf_data(ppdu_info->nbuf), size);
  4246. if (!qdf_nbuf_put_tail(ppdu_info->nbuf, size)) {
  4247. dp_mon_err("No tailroom for HTT PPDU");
  4248. qdf_nbuf_free(ppdu_info->nbuf);
  4249. ppdu_info->nbuf = NULL;
  4250. ppdu_info->last_user = 0;
  4251. qdf_mem_free(ppdu_info);
  4252. return NULL;
  4253. }
  4254. ppdu_info->ppdu_desc->max_users = max_users;
  4255. ppdu_info->tsf_l32 = tsf_l32;
  4256. /*
  4257. * No lock is needed because all PPDU TLVs are processed in
  4258. * same context and this list is updated in same context
  4259. */
  4260. TAILQ_INSERT_TAIL(&mon_pdev->ppdu_info_list, ppdu_info,
  4261. ppdu_info_list_elem);
  4262. mon_pdev->list_depth++;
  4263. return ppdu_info;
  4264. }
  4265. /**
  4266. * dp_htt_process_tlv() - Function to process each PPDU TLVs
  4267. * @pdev: DP pdev handle
  4268. * @htt_t2h_msg: HTT target to host message
  4269. *
  4270. * Return: ppdu_info per ppdu tlv structure
  4271. */
  4272. static struct ppdu_info *dp_htt_process_tlv(struct dp_pdev *pdev,
  4273. qdf_nbuf_t htt_t2h_msg)
  4274. {
  4275. uint32_t length;
  4276. uint32_t ppdu_id;
  4277. uint8_t tlv_type;
  4278. uint32_t tlv_length, tlv_bitmap_expected;
  4279. uint8_t *tlv_buf;
  4280. struct ppdu_info *ppdu_info = NULL;
  4281. struct cdp_tx_completion_ppdu *ppdu_desc = NULL;
  4282. uint8_t max_users = CDP_MU_MAX_USERS;
  4283. uint32_t tsf_l32;
  4284. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4285. uint32_t *msg_word = (uint32_t *)qdf_nbuf_data(htt_t2h_msg);
  4286. length = HTT_T2H_PPDU_STATS_PAYLOAD_SIZE_GET(*msg_word);
  4287. msg_word = msg_word + 1;
  4288. ppdu_id = HTT_T2H_PPDU_STATS_PPDU_ID_GET(*msg_word);
  4289. msg_word = msg_word + 1;
  4290. tsf_l32 = (uint32_t)(*msg_word);
  4291. msg_word = msg_word + 2;
  4292. while (length > 0) {
  4293. tlv_buf = (uint8_t *)msg_word;
  4294. tlv_type = HTT_STATS_TLV_TAG_GET(*msg_word);
  4295. tlv_length = HTT_STATS_TLV_LENGTH_GET(*msg_word);
  4296. if (qdf_likely(tlv_type < CDP_PPDU_STATS_MAX_TAG))
  4297. pdev->stats.ppdu_stats_counter[tlv_type]++;
  4298. if (tlv_length == 0)
  4299. break;
  4300. tlv_length += HTT_TLV_HDR_LEN;
  4301. /*
  4302. * Not allocating separate ppdu descriptor for MGMT Payload
  4303. * TLV as this is sent as separate WDI indication and it
  4304. * doesn't contain any ppdu information
  4305. */
  4306. if (tlv_type == HTT_PPDU_STATS_TX_MGMTCTRL_PAYLOAD_TLV) {
  4307. mon_pdev->mgmtctrl_frm_info.mgmt_buf = tlv_buf;
  4308. mon_pdev->mgmtctrl_frm_info.ppdu_id = ppdu_id;
  4309. mon_pdev->mgmtctrl_frm_info.mgmt_buf_len =
  4310. HTT_PPDU_STATS_TX_MGMTCTRL_TLV_FRAME_LENGTH_GET
  4311. (*(msg_word + 1));
  4312. msg_word =
  4313. (uint32_t *)((uint8_t *)tlv_buf + tlv_length);
  4314. length -= (tlv_length);
  4315. continue;
  4316. }
  4317. /*
  4318. * retrieve max_users if it's USERS_INFO,
  4319. * else, it's 1 for COMPLTN_FLUSH,
  4320. * else, use CDP_MU_MAX_USERS
  4321. */
  4322. if (tlv_type == HTT_PPDU_STATS_USERS_INFO_TLV) {
  4323. max_users =
  4324. HTT_PPDU_STATS_USERS_INFO_TLV_MAX_USERS_GET(*(msg_word + 1));
  4325. } else if (tlv_type == HTT_PPDU_STATS_USR_COMPLTN_FLUSH_TLV) {
  4326. max_users = 1;
  4327. }
  4328. ppdu_info = dp_get_ppdu_desc(pdev, ppdu_id, tlv_type,
  4329. tsf_l32, max_users);
  4330. if (!ppdu_info)
  4331. return NULL;
  4332. ppdu_info->ppdu_id = ppdu_id;
  4333. ppdu_info->tlv_bitmap |= (1 << tlv_type);
  4334. dp_process_ppdu_tag(pdev, msg_word, tlv_length, ppdu_info);
  4335. /*
  4336. * Increment pdev level tlv count to monitor
  4337. * missing TLVs
  4338. */
  4339. mon_pdev->tlv_count++;
  4340. ppdu_info->last_tlv_cnt = mon_pdev->tlv_count;
  4341. msg_word = (uint32_t *)((uint8_t *)tlv_buf + tlv_length);
  4342. length -= (tlv_length);
  4343. }
  4344. if (!ppdu_info)
  4345. return NULL;
  4346. mon_pdev->last_ppdu_id = ppdu_id;
  4347. tlv_bitmap_expected = HTT_PPDU_DEFAULT_TLV_BITMAP;
  4348. if (mon_pdev->tx_sniffer_enable || mon_pdev->mcopy_mode ||
  4349. mon_pdev->tx_capture_enabled) {
  4350. if (ppdu_info->is_ampdu)
  4351. tlv_bitmap_expected =
  4352. dp_htt_get_ppdu_sniffer_ampdu_tlv_bitmap(
  4353. ppdu_info->tlv_bitmap);
  4354. }
  4355. ppdu_desc = ppdu_info->ppdu_desc;
  4356. if (!ppdu_desc)
  4357. return NULL;
  4358. if (ppdu_desc->user[ppdu_desc->last_usr_index].completion_status !=
  4359. HTT_PPDU_STATS_USER_STATUS_OK) {
  4360. tlv_bitmap_expected = tlv_bitmap_expected & 0xFF;
  4361. }
  4362. /*
  4363. * for frame type DATA and BAR, we update stats based on MSDU,
  4364. * successful msdu and mpdu are populate from ACK BA STATUS TLV
  4365. * which comes out of order. successful mpdu also populated from
  4366. * COMPLTN COMMON TLV which comes in order. for every ppdu_info
  4367. * we store successful mpdu from both tlv and compare before delivering
  4368. * to make sure we received ACK BA STATUS TLV. For some self generated
  4369. * frame we won't get ack ba status tlv so no need to wait for
  4370. * ack ba status tlv.
  4371. */
  4372. if (ppdu_desc->frame_type != CDP_PPDU_FTYPE_CTRL &&
  4373. ppdu_desc->htt_frame_type != HTT_STATS_FTYPE_SGEN_QOS_NULL) {
  4374. /*
  4375. * most of the time bar frame will have duplicate ack ba
  4376. * status tlv
  4377. */
  4378. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_BAR &&
  4379. (ppdu_info->compltn_common_tlv != ppdu_info->ack_ba_tlv))
  4380. return NULL;
  4381. /*
  4382. * For data frame, compltn common tlv should match ack ba status
  4383. * tlv and completion status. Reason we are checking first user
  4384. * for ofdma, completion seen at next MU BAR frm, for mimo
  4385. * only for first user completion will be immediate.
  4386. */
  4387. if (ppdu_desc->frame_type == CDP_PPDU_FTYPE_DATA &&
  4388. (ppdu_desc->user[0].completion_status == 0 &&
  4389. (ppdu_info->compltn_common_tlv != ppdu_info->ack_ba_tlv)))
  4390. return NULL;
  4391. }
  4392. /*
  4393. * Once all the TLVs for a given PPDU has been processed,
  4394. * return PPDU status to be delivered to higher layer.
  4395. * tlv_bitmap_expected can't be available for different frame type.
  4396. * But SCHED CMD STATS TLV is the last TLV from the FW for a ppdu.
  4397. * apart from ACK BA TLV, FW sends other TLV in sequential order.
  4398. * flush tlv comes separate.
  4399. */
  4400. if ((ppdu_info->tlv_bitmap != 0 &&
  4401. (ppdu_info->tlv_bitmap &
  4402. (1 << HTT_PPDU_STATS_SCH_CMD_STATUS_TLV))) ||
  4403. (ppdu_info->tlv_bitmap &
  4404. (1 << HTT_PPDU_STATS_USR_COMPLTN_FLUSH_TLV))) {
  4405. ppdu_info->done = 1;
  4406. return ppdu_info;
  4407. }
  4408. return NULL;
  4409. }
  4410. #endif /* QCA_ENHANCED_STATS_SUPPORT */
  4411. #ifdef QCA_ENHANCED_STATS_SUPPORT
  4412. /**
  4413. * dp_tx_ppdu_stats_feat_enable_check() - Check if feature(s) is enabled to
  4414. * consume stats received from FW via HTT
  4415. * @pdev: Datapath pdev handle
  4416. *
  4417. * Return: void
  4418. */
  4419. static bool dp_tx_ppdu_stats_feat_enable_check(struct dp_pdev *pdev)
  4420. {
  4421. struct dp_soc *soc = pdev->soc;
  4422. struct dp_mon_ops *mon_ops = NULL;
  4423. mon_ops = dp_mon_ops_get(soc);
  4424. if (mon_ops && mon_ops->mon_ppdu_stats_feat_enable_check)
  4425. return mon_ops->mon_ppdu_stats_feat_enable_check(pdev);
  4426. else
  4427. return false;
  4428. }
  4429. #endif
  4430. #if defined(WDI_EVENT_ENABLE)
  4431. #ifdef QCA_ENHANCED_STATS_SUPPORT
  4432. /**
  4433. * dp_txrx_ppdu_stats_handler() - Function to process HTT PPDU stats from FW
  4434. * @soc: DP SOC handle
  4435. * @pdev_id: pdev id
  4436. * @htt_t2h_msg: HTT message nbuf
  4437. *
  4438. * Return: void
  4439. */
  4440. static bool dp_txrx_ppdu_stats_handler(struct dp_soc *soc,
  4441. uint8_t pdev_id, qdf_nbuf_t htt_t2h_msg)
  4442. {
  4443. struct dp_pdev *pdev;
  4444. struct ppdu_info *ppdu_info = NULL;
  4445. bool free_buf = true;
  4446. struct dp_mon_pdev *mon_pdev;
  4447. if (pdev_id >= MAX_PDEV_CNT)
  4448. return true;
  4449. pdev = soc->pdev_list[pdev_id];
  4450. if (!pdev)
  4451. return true;
  4452. mon_pdev = pdev->monitor_pdev;
  4453. if (!mon_pdev)
  4454. return true;
  4455. if (!dp_tx_ppdu_stats_feat_enable_check(pdev))
  4456. return free_buf;
  4457. qdf_spin_lock_bh(&mon_pdev->ppdu_stats_lock);
  4458. ppdu_info = dp_htt_process_tlv(pdev, htt_t2h_msg);
  4459. if (mon_pdev->mgmtctrl_frm_info.mgmt_buf) {
  4460. if (dp_process_ppdu_stats_tx_mgmtctrl_payload_tlv
  4461. (pdev, htt_t2h_msg, mon_pdev->mgmtctrl_frm_info.ppdu_id) !=
  4462. QDF_STATUS_SUCCESS)
  4463. free_buf = false;
  4464. }
  4465. if (ppdu_info)
  4466. dp_tx_ppdu_desc_deliver(pdev, ppdu_info);
  4467. mon_pdev->mgmtctrl_frm_info.mgmt_buf = NULL;
  4468. mon_pdev->mgmtctrl_frm_info.mgmt_buf_len = 0;
  4469. mon_pdev->mgmtctrl_frm_info.ppdu_id = 0;
  4470. qdf_spin_unlock_bh(&mon_pdev->ppdu_stats_lock);
  4471. return free_buf;
  4472. }
  4473. #elif (!defined(REMOVE_PKT_LOG))
  4474. static bool dp_txrx_ppdu_stats_handler(struct dp_soc *soc,
  4475. uint8_t pdev_id, qdf_nbuf_t htt_t2h_msg)
  4476. {
  4477. return true;
  4478. }
  4479. #endif/* QCA_ENHANCED_STATS_SUPPORT */
  4480. #endif
  4481. #if defined(WDI_EVENT_ENABLE) &&\
  4482. (defined(QCA_ENHANCED_STATS_SUPPORT) || !defined(REMOVE_PKT_LOG))
  4483. bool
  4484. dp_ppdu_stats_ind_handler(struct htt_soc *soc,
  4485. uint32_t *msg_word,
  4486. qdf_nbuf_t htt_t2h_msg)
  4487. {
  4488. u_int8_t pdev_id;
  4489. u_int8_t target_pdev_id;
  4490. bool free_buf;
  4491. target_pdev_id = HTT_T2H_PPDU_STATS_PDEV_ID_GET(*msg_word);
  4492. pdev_id = dp_get_host_pdev_id_for_target_pdev_id(soc->dp_soc,
  4493. target_pdev_id);
  4494. dp_wdi_event_handler(WDI_EVENT_LITE_T2H, soc->dp_soc,
  4495. htt_t2h_msg, HTT_INVALID_PEER, WDI_NO_VAL,
  4496. pdev_id);
  4497. free_buf = dp_txrx_ppdu_stats_handler(soc->dp_soc, pdev_id,
  4498. htt_t2h_msg);
  4499. return free_buf;
  4500. }
  4501. #endif
  4502. void
  4503. dp_mon_set_bsscolor(struct dp_pdev *pdev, uint8_t bsscolor)
  4504. {
  4505. pdev->monitor_pdev->rx_mon_recv_status.bsscolor = bsscolor;
  4506. }
  4507. bool dp_pdev_get_filter_ucast_data(struct cdp_pdev *pdev_handle)
  4508. {
  4509. struct dp_pdev *pdev = (struct dp_pdev *)pdev_handle;
  4510. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4511. if ((mon_pdev->fp_data_filter & FILTER_DATA_UCAST) ||
  4512. (mon_pdev->mo_data_filter & FILTER_DATA_UCAST))
  4513. return true;
  4514. return false;
  4515. }
  4516. bool dp_pdev_get_filter_mcast_data(struct cdp_pdev *pdev_handle)
  4517. {
  4518. struct dp_pdev *pdev = (struct dp_pdev *)pdev_handle;
  4519. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4520. if ((mon_pdev->fp_data_filter & FILTER_DATA_MCAST) ||
  4521. (mon_pdev->mo_data_filter & FILTER_DATA_MCAST))
  4522. return true;
  4523. return false;
  4524. }
  4525. bool dp_pdev_get_filter_non_data(struct cdp_pdev *pdev_handle)
  4526. {
  4527. struct dp_pdev *pdev = (struct dp_pdev *)pdev_handle;
  4528. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4529. if ((mon_pdev->fp_mgmt_filter & FILTER_MGMT_ALL) ||
  4530. (mon_pdev->mo_mgmt_filter & FILTER_MGMT_ALL)) {
  4531. if ((mon_pdev->fp_ctrl_filter & FILTER_CTRL_ALL) ||
  4532. (mon_pdev->mo_ctrl_filter & FILTER_CTRL_ALL)) {
  4533. return true;
  4534. }
  4535. }
  4536. return false;
  4537. }
  4538. QDF_STATUS dp_mon_soc_cfg_init(struct dp_soc *soc)
  4539. {
  4540. int target_type;
  4541. struct dp_mon_soc *mon_soc = soc->monitor_soc;
  4542. struct cdp_mon_ops *cdp_ops;
  4543. cdp_ops = dp_mon_cdp_ops_get(soc);
  4544. target_type = hal_get_target_type(soc->hal_soc);
  4545. switch (target_type) {
  4546. case TARGET_TYPE_QCA6290:
  4547. case TARGET_TYPE_QCA6390:
  4548. case TARGET_TYPE_QCA6490:
  4549. case TARGET_TYPE_QCA6750:
  4550. case TARGET_TYPE_KIWI:
  4551. case TARGET_TYPE_MANGO:
  4552. /* do nothing */
  4553. break;
  4554. case TARGET_TYPE_QCA8074:
  4555. wlan_cfg_set_mon_delayed_replenish_entries(soc->wlan_cfg_ctx,
  4556. MON_BUF_MIN_ENTRIES);
  4557. break;
  4558. case TARGET_TYPE_QCA8074V2:
  4559. case TARGET_TYPE_QCA6018:
  4560. case TARGET_TYPE_QCA9574:
  4561. wlan_cfg_set_mon_delayed_replenish_entries(soc->wlan_cfg_ctx,
  4562. MON_BUF_MIN_ENTRIES);
  4563. mon_soc->hw_nac_monitor_support = 1;
  4564. break;
  4565. case TARGET_TYPE_QCN9000:
  4566. wlan_cfg_set_mon_delayed_replenish_entries(soc->wlan_cfg_ctx,
  4567. MON_BUF_MIN_ENTRIES);
  4568. mon_soc->hw_nac_monitor_support = 1;
  4569. if (cfg_get(soc->ctrl_psoc, CFG_DP_FULL_MON_MODE)) {
  4570. if (cdp_ops && cdp_ops->config_full_mon_mode)
  4571. cdp_ops->config_full_mon_mode((struct cdp_soc_t *)soc, 1);
  4572. }
  4573. break;
  4574. case TARGET_TYPE_QCA5018:
  4575. case TARGET_TYPE_QCN6122:
  4576. case TARGET_TYPE_QCN9160:
  4577. wlan_cfg_set_mon_delayed_replenish_entries(soc->wlan_cfg_ctx,
  4578. MON_BUF_MIN_ENTRIES);
  4579. mon_soc->hw_nac_monitor_support = 1;
  4580. break;
  4581. case TARGET_TYPE_QCN9224:
  4582. case TARGET_TYPE_QCA5332:
  4583. wlan_cfg_set_mon_delayed_replenish_entries(soc->wlan_cfg_ctx,
  4584. MON_BUF_MIN_ENTRIES);
  4585. mon_soc->hw_nac_monitor_support = 1;
  4586. mon_soc->monitor_mode_v2 = 1;
  4587. break;
  4588. default:
  4589. dp_mon_info("%s: Unknown tgt type %d\n", __func__, target_type);
  4590. qdf_assert_always(0);
  4591. break;
  4592. }
  4593. dp_mon_info("hw_nac_monitor_support = %d",
  4594. mon_soc->hw_nac_monitor_support);
  4595. return QDF_STATUS_SUCCESS;
  4596. }
  4597. /**
  4598. * dp_mon_pdev_per_target_config() - Target specific monitor pdev configuration
  4599. * @pdev: PDEV handle [Should be valid]
  4600. *
  4601. * Return: None
  4602. */
  4603. static void dp_mon_pdev_per_target_config(struct dp_pdev *pdev)
  4604. {
  4605. struct dp_soc *soc = pdev->soc;
  4606. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4607. int target_type;
  4608. target_type = hal_get_target_type(soc->hal_soc);
  4609. switch (target_type) {
  4610. case TARGET_TYPE_KIWI:
  4611. case TARGET_TYPE_MANGO:
  4612. mon_pdev->is_tlv_hdr_64_bit = true;
  4613. break;
  4614. default:
  4615. mon_pdev->is_tlv_hdr_64_bit = false;
  4616. break;
  4617. }
  4618. }
  4619. QDF_STATUS dp_mon_pdev_attach(struct dp_pdev *pdev)
  4620. {
  4621. struct dp_soc *soc;
  4622. struct dp_mon_pdev *mon_pdev;
  4623. struct dp_mon_ops *mon_ops;
  4624. qdf_size_t mon_pdev_context_size;
  4625. if (!pdev) {
  4626. dp_mon_err("pdev is NULL");
  4627. goto fail0;
  4628. }
  4629. soc = pdev->soc;
  4630. mon_pdev_context_size = soc->arch_ops.txrx_get_mon_context_size(DP_CONTEXT_TYPE_MON_PDEV);
  4631. mon_pdev = dp_context_alloc_mem(soc, DP_MON_PDEV_TYPE, mon_pdev_context_size);
  4632. if (!mon_pdev) {
  4633. dp_mon_err("%pK: MONITOR pdev allocation failed", pdev);
  4634. goto fail0;
  4635. }
  4636. pdev->monitor_pdev = mon_pdev;
  4637. mon_ops = dp_mon_ops_get(pdev->soc);
  4638. if (!mon_ops) {
  4639. dp_mon_err("%pK: Invalid monitor ops", pdev);
  4640. goto fail1;
  4641. }
  4642. if (mon_ops->mon_pdev_alloc) {
  4643. if (mon_ops->mon_pdev_alloc(pdev)) {
  4644. dp_mon_err("%pK: MONITOR pdev alloc failed", pdev);
  4645. goto fail1;
  4646. }
  4647. }
  4648. if (mon_ops->mon_rings_alloc) {
  4649. if (mon_ops->mon_rings_alloc(pdev)) {
  4650. dp_mon_err("%pK: MONITOR rings setup failed", pdev);
  4651. goto fail2;
  4652. }
  4653. }
  4654. /* Rx monitor mode specific init */
  4655. if (mon_ops->rx_mon_desc_pool_alloc) {
  4656. if (mon_ops->rx_mon_desc_pool_alloc(pdev)) {
  4657. dp_mon_err("%pK: dp_rx_pdev_mon_attach failed", pdev);
  4658. goto fail3;
  4659. }
  4660. }
  4661. if (mon_ops->mon_rx_ppdu_info_cache_create) {
  4662. if (mon_ops->mon_rx_ppdu_info_cache_create(pdev)) {
  4663. dp_mon_err("%pK: dp_rx_pdev_mon_attach failed", pdev);
  4664. goto fail4;
  4665. }
  4666. }
  4667. pdev->monitor_pdev = mon_pdev;
  4668. dp_mon_pdev_per_target_config(pdev);
  4669. return QDF_STATUS_SUCCESS;
  4670. fail4:
  4671. if (mon_ops->rx_mon_desc_pool_free)
  4672. mon_ops->rx_mon_desc_pool_free(pdev);
  4673. fail3:
  4674. if (mon_ops->mon_rings_free)
  4675. mon_ops->mon_rings_free(pdev);
  4676. fail2:
  4677. if (mon_ops->mon_pdev_free)
  4678. mon_ops->mon_pdev_free(pdev);
  4679. fail1:
  4680. pdev->monitor_pdev = NULL;
  4681. dp_context_free_mem(soc, DP_MON_PDEV_TYPE, mon_pdev);
  4682. fail0:
  4683. return QDF_STATUS_E_NOMEM;
  4684. }
  4685. QDF_STATUS dp_mon_pdev_detach(struct dp_pdev *pdev)
  4686. {
  4687. struct dp_mon_pdev *mon_pdev;
  4688. struct dp_mon_ops *mon_ops = NULL;
  4689. if (!pdev) {
  4690. dp_mon_err("pdev is NULL");
  4691. return QDF_STATUS_E_FAILURE;
  4692. }
  4693. mon_pdev = pdev->monitor_pdev;
  4694. if (!mon_pdev) {
  4695. dp_mon_err("Monitor pdev is NULL");
  4696. return QDF_STATUS_E_FAILURE;
  4697. }
  4698. mon_ops = dp_mon_ops_get(pdev->soc);
  4699. if (!mon_ops) {
  4700. dp_mon_err("Monitor ops is NULL");
  4701. return QDF_STATUS_E_FAILURE;
  4702. }
  4703. if (mon_ops->mon_rx_ppdu_info_cache_destroy)
  4704. mon_ops->mon_rx_ppdu_info_cache_destroy(pdev);
  4705. if (mon_ops->rx_mon_desc_pool_free)
  4706. mon_ops->rx_mon_desc_pool_free(pdev);
  4707. if (mon_ops->mon_rings_free)
  4708. mon_ops->mon_rings_free(pdev);
  4709. if (mon_ops->mon_pdev_free)
  4710. mon_ops->mon_pdev_free(pdev);
  4711. dp_context_free_mem(pdev->soc, DP_MON_PDEV_TYPE, mon_pdev);
  4712. pdev->monitor_pdev = NULL;
  4713. return QDF_STATUS_SUCCESS;
  4714. }
  4715. QDF_STATUS dp_mon_pdev_init(struct dp_pdev *pdev)
  4716. {
  4717. struct dp_mon_pdev *mon_pdev;
  4718. struct dp_mon_ops *mon_ops = NULL;
  4719. if (!pdev) {
  4720. dp_mon_err("pdev is NULL");
  4721. return QDF_STATUS_E_FAILURE;
  4722. }
  4723. mon_pdev = pdev->monitor_pdev;
  4724. mon_pdev->invalid_mon_peer = qdf_mem_malloc(sizeof(struct dp_mon_peer));
  4725. if (!mon_pdev->invalid_mon_peer) {
  4726. dp_mon_err("%pK: Memory allocation failed for invalid "
  4727. "monitor peer", pdev);
  4728. return QDF_STATUS_E_NOMEM;
  4729. }
  4730. mon_ops = dp_mon_ops_get(pdev->soc);
  4731. if (!mon_ops) {
  4732. dp_mon_err("Monitor ops is NULL");
  4733. goto fail0;
  4734. }
  4735. mon_pdev->filter = dp_mon_filter_alloc(mon_pdev);
  4736. if (!mon_pdev->filter) {
  4737. dp_mon_err("%pK: Memory allocation failed for monitor filter",
  4738. pdev);
  4739. goto fail0;
  4740. }
  4741. if (mon_ops->tx_mon_filter_alloc) {
  4742. if (mon_ops->tx_mon_filter_alloc(pdev)) {
  4743. dp_mon_err("%pK: Memory allocation failed for tx monitor "
  4744. "filter", pdev);
  4745. goto fail1;
  4746. }
  4747. }
  4748. qdf_spinlock_create(&mon_pdev->ppdu_stats_lock);
  4749. qdf_spinlock_create(&mon_pdev->neighbour_peer_mutex);
  4750. mon_pdev->monitor_configured = false;
  4751. mon_pdev->mon_chan_band = REG_BAND_UNKNOWN;
  4752. TAILQ_INIT(&mon_pdev->neighbour_peers_list);
  4753. mon_pdev->neighbour_peers_added = false;
  4754. mon_pdev->monitor_configured = false;
  4755. /* Monitor filter init */
  4756. mon_pdev->mon_filter_mode = MON_FILTER_ALL;
  4757. mon_pdev->fp_mgmt_filter = FILTER_MGMT_ALL;
  4758. mon_pdev->fp_ctrl_filter = FILTER_CTRL_ALL;
  4759. mon_pdev->fp_data_filter = FILTER_DATA_ALL;
  4760. mon_pdev->mo_mgmt_filter = FILTER_MGMT_ALL;
  4761. mon_pdev->mo_ctrl_filter = FILTER_CTRL_ALL;
  4762. mon_pdev->mo_data_filter = FILTER_DATA_ALL;
  4763. /*
  4764. * initialize ppdu tlv list
  4765. */
  4766. TAILQ_INIT(&mon_pdev->ppdu_info_list);
  4767. TAILQ_INIT(&mon_pdev->sched_comp_ppdu_list);
  4768. mon_pdev->list_depth = 0;
  4769. mon_pdev->tlv_count = 0;
  4770. /* initlialize cal client timer */
  4771. dp_cal_client_attach(&mon_pdev->cal_client_ctx,
  4772. dp_pdev_to_cdp_pdev(pdev),
  4773. pdev->soc->osdev,
  4774. &dp_iterate_update_peer_list);
  4775. if (dp_htt_ppdu_stats_attach(pdev) != QDF_STATUS_SUCCESS)
  4776. goto fail2;
  4777. if (mon_ops->mon_lite_mon_alloc) {
  4778. if (mon_ops->mon_lite_mon_alloc(pdev) != QDF_STATUS_SUCCESS) {
  4779. dp_mon_err("%pK: lite mon alloc failed", pdev);
  4780. goto fail3;
  4781. }
  4782. }
  4783. if (mon_ops->mon_rings_init) {
  4784. if (mon_ops->mon_rings_init(pdev)) {
  4785. dp_mon_err("%pK: MONITOR rings setup failed", pdev);
  4786. goto fail4;
  4787. }
  4788. }
  4789. /* initialize sw monitor rx descriptors */
  4790. if (mon_ops->rx_mon_desc_pool_init)
  4791. mon_ops->rx_mon_desc_pool_init(pdev);
  4792. /* allocate buffers and replenish the monitor RxDMA ring */
  4793. if (mon_ops->rx_mon_buffers_alloc) {
  4794. if (mon_ops->rx_mon_buffers_alloc(pdev)) {
  4795. dp_mon_err("%pK: rx mon buffers alloc failed", pdev);
  4796. goto fail5;
  4797. }
  4798. }
  4799. /* attach monitor function */
  4800. dp_monitor_tx_ppdu_stats_attach(pdev);
  4801. /* mon pdev extended init */
  4802. if (mon_ops->mon_pdev_ext_init)
  4803. mon_ops->mon_pdev_ext_init(pdev);
  4804. mon_pdev->is_dp_mon_pdev_initialized = true;
  4805. return QDF_STATUS_SUCCESS;
  4806. fail5:
  4807. if (mon_ops->rx_mon_desc_pool_deinit)
  4808. mon_ops->rx_mon_desc_pool_deinit(pdev);
  4809. if (mon_ops->mon_rings_deinit)
  4810. mon_ops->mon_rings_deinit(pdev);
  4811. fail4:
  4812. if (mon_ops->mon_lite_mon_dealloc)
  4813. mon_ops->mon_lite_mon_dealloc(pdev);
  4814. fail3:
  4815. dp_htt_ppdu_stats_detach(pdev);
  4816. fail2:
  4817. qdf_spinlock_destroy(&mon_pdev->neighbour_peer_mutex);
  4818. qdf_spinlock_destroy(&mon_pdev->ppdu_stats_lock);
  4819. if (mon_ops->tx_mon_filter_dealloc)
  4820. mon_ops->tx_mon_filter_dealloc(pdev);
  4821. fail1:
  4822. dp_mon_filter_dealloc(mon_pdev);
  4823. fail0:
  4824. qdf_mem_free(mon_pdev->invalid_mon_peer);
  4825. return QDF_STATUS_E_FAILURE;
  4826. }
  4827. QDF_STATUS dp_mon_pdev_deinit(struct dp_pdev *pdev)
  4828. {
  4829. struct dp_mon_pdev *mon_pdev = pdev->monitor_pdev;
  4830. struct dp_mon_ops *mon_ops = NULL;
  4831. mon_ops = dp_mon_ops_get(pdev->soc);
  4832. if (!mon_ops) {
  4833. dp_mon_err("Monitor ops is NULL");
  4834. return QDF_STATUS_E_FAILURE;
  4835. }
  4836. if (!mon_pdev->is_dp_mon_pdev_initialized)
  4837. return QDF_STATUS_SUCCESS;
  4838. dp_mon_filters_reset(pdev);
  4839. /* mon pdev extended deinit */
  4840. if (mon_ops->mon_pdev_ext_deinit)
  4841. mon_ops->mon_pdev_ext_deinit(pdev);
  4842. /* detach monitor function */
  4843. dp_monitor_tx_ppdu_stats_detach(pdev);
  4844. if (mon_ops->rx_mon_buffers_free)
  4845. mon_ops->rx_mon_buffers_free(pdev);
  4846. if (mon_ops->rx_mon_desc_pool_deinit)
  4847. mon_ops->rx_mon_desc_pool_deinit(pdev);
  4848. if (mon_ops->mon_rings_deinit)
  4849. mon_ops->mon_rings_deinit(pdev);
  4850. dp_cal_client_detach(&mon_pdev->cal_client_ctx);
  4851. if (mon_ops->mon_lite_mon_dealloc)
  4852. mon_ops->mon_lite_mon_dealloc(pdev);
  4853. dp_htt_ppdu_stats_detach(pdev);
  4854. qdf_spinlock_destroy(&mon_pdev->ppdu_stats_lock);
  4855. dp_neighbour_peers_detach(pdev);
  4856. dp_pktlogmod_exit(pdev);
  4857. if (mon_ops->tx_mon_filter_dealloc)
  4858. mon_ops->tx_mon_filter_dealloc(pdev);
  4859. if (mon_pdev->filter)
  4860. dp_mon_filter_dealloc(mon_pdev);
  4861. if (mon_ops->mon_rings_deinit)
  4862. mon_ops->mon_rings_deinit(pdev);
  4863. if (mon_pdev->invalid_mon_peer)
  4864. qdf_mem_free(mon_pdev->invalid_mon_peer);
  4865. mon_pdev->is_dp_mon_pdev_initialized = false;
  4866. return QDF_STATUS_SUCCESS;
  4867. }
  4868. QDF_STATUS dp_mon_vdev_attach(struct dp_vdev *vdev)
  4869. {
  4870. struct dp_mon_vdev *mon_vdev;
  4871. struct dp_pdev *pdev = vdev->pdev;
  4872. mon_vdev = (struct dp_mon_vdev *)qdf_mem_malloc(sizeof(*mon_vdev));
  4873. if (!mon_vdev) {
  4874. dp_mon_err("%pK: Monitor vdev allocation failed", vdev);
  4875. return QDF_STATUS_E_NOMEM;
  4876. }
  4877. if (pdev && pdev->monitor_pdev &&
  4878. pdev->monitor_pdev->scan_spcl_vap_configured)
  4879. dp_scan_spcl_vap_stats_attach(mon_vdev);
  4880. vdev->monitor_vdev = mon_vdev;
  4881. return QDF_STATUS_SUCCESS;
  4882. }
  4883. QDF_STATUS dp_mon_vdev_detach(struct dp_vdev *vdev)
  4884. {
  4885. struct dp_mon_vdev *mon_vdev = vdev->monitor_vdev;
  4886. struct dp_pdev *pdev = vdev->pdev;
  4887. struct dp_mon_ops *mon_ops = dp_mon_ops_get(pdev->soc);
  4888. if (!mon_ops)
  4889. return QDF_STATUS_E_FAILURE;
  4890. if (!mon_vdev)
  4891. return QDF_STATUS_E_FAILURE;
  4892. if (pdev->monitor_pdev->scan_spcl_vap_configured)
  4893. dp_scan_spcl_vap_stats_detach(mon_vdev);
  4894. qdf_mem_free(mon_vdev);
  4895. vdev->monitor_vdev = NULL;
  4896. /* set mvdev to NULL only if detach is called for monitor/special vap
  4897. */
  4898. if (pdev->monitor_pdev->mvdev == vdev)
  4899. pdev->monitor_pdev->mvdev = NULL;
  4900. if (mon_ops->mon_lite_mon_vdev_delete)
  4901. mon_ops->mon_lite_mon_vdev_delete(pdev, vdev);
  4902. return QDF_STATUS_SUCCESS;
  4903. }
  4904. #if defined(FEATURE_PERPKT_INFO) && WDI_EVENT_ENABLE
  4905. /**
  4906. * dp_mon_peer_attach_notify() - Raise WDI event for peer create
  4907. * @peer: DP Peer handle
  4908. *
  4909. * Return: none
  4910. */
  4911. static inline
  4912. void dp_mon_peer_attach_notify(struct dp_peer *peer)
  4913. {
  4914. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  4915. struct dp_pdev *pdev;
  4916. struct dp_soc *soc;
  4917. struct cdp_peer_cookie peer_cookie;
  4918. pdev = peer->vdev->pdev;
  4919. soc = pdev->soc;
  4920. qdf_mem_copy(peer_cookie.mac_addr, peer->mac_addr.raw,
  4921. QDF_MAC_ADDR_SIZE);
  4922. peer_cookie.ctx = NULL;
  4923. peer_cookie.pdev_id = pdev->pdev_id;
  4924. peer_cookie.cookie = pdev->next_peer_cookie++;
  4925. dp_wdi_event_handler(WDI_EVENT_PEER_CREATE, soc,
  4926. (void *)&peer_cookie,
  4927. peer->peer_id, WDI_NO_VAL, pdev->pdev_id);
  4928. if (soc->peerstats_enabled) {
  4929. if (!peer_cookie.ctx) {
  4930. pdev->next_peer_cookie--;
  4931. qdf_err("Failed to initialize peer rate stats");
  4932. mon_peer->peerstats_ctx = NULL;
  4933. } else {
  4934. mon_peer->peerstats_ctx =
  4935. (struct cdp_peer_rate_stats_ctx *)
  4936. peer_cookie.ctx;
  4937. }
  4938. }
  4939. }
  4940. /**
  4941. * dp_mon_peer_detach_notify() - Raise WDI event for peer destroy
  4942. * @peer: DP Peer handle
  4943. *
  4944. * Return: none
  4945. */
  4946. static inline
  4947. void dp_mon_peer_detach_notify(struct dp_peer *peer)
  4948. {
  4949. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  4950. struct dp_pdev *pdev;
  4951. struct dp_soc *soc;
  4952. struct cdp_peer_cookie peer_cookie;
  4953. pdev = peer->vdev->pdev;
  4954. soc = pdev->soc;
  4955. /* send peer destroy event to upper layer */
  4956. qdf_mem_copy(peer_cookie.mac_addr, peer->mac_addr.raw,
  4957. QDF_MAC_ADDR_SIZE);
  4958. peer_cookie.ctx = NULL;
  4959. peer_cookie.ctx = (struct cdp_stats_cookie *)mon_peer->peerstats_ctx;
  4960. dp_wdi_event_handler(WDI_EVENT_PEER_DESTROY,
  4961. soc,
  4962. (void *)&peer_cookie,
  4963. peer->peer_id,
  4964. WDI_NO_VAL,
  4965. pdev->pdev_id);
  4966. mon_peer->peerstats_ctx = NULL;
  4967. }
  4968. #else
  4969. static inline
  4970. void dp_mon_peer_attach_notify(struct dp_peer *peer)
  4971. {
  4972. peer->monitor_peer->peerstats_ctx = NULL;
  4973. }
  4974. static inline
  4975. void dp_mon_peer_detach_notify(struct dp_peer *peer)
  4976. {
  4977. peer->monitor_peer->peerstats_ctx = NULL;
  4978. }
  4979. #endif
  4980. #if defined(WLAN_TX_PKT_CAPTURE_ENH) || defined(FEATURE_PERPKT_INFO)
  4981. QDF_STATUS dp_mon_peer_attach(struct dp_peer *peer)
  4982. {
  4983. struct dp_mon_peer *mon_peer;
  4984. struct dp_pdev *pdev;
  4985. mon_peer = (struct dp_mon_peer *)qdf_mem_malloc(sizeof(*mon_peer));
  4986. if (!mon_peer) {
  4987. dp_mon_err("%pK: MONITOR peer allocation failed", peer);
  4988. return QDF_STATUS_E_NOMEM;
  4989. }
  4990. peer->monitor_peer = mon_peer;
  4991. pdev = peer->vdev->pdev;
  4992. /*
  4993. * In tx_monitor mode, filter may be set for unassociated peer
  4994. * when unassociated peer get associated peer need to
  4995. * update tx_cap_enabled flag to support peer filter.
  4996. */
  4997. dp_monitor_peer_tx_capture_filter_check(pdev, peer);
  4998. DP_STATS_INIT(mon_peer);
  4999. DP_STATS_UPD(mon_peer, rx.avg_snr, CDP_INVALID_SNR);
  5000. dp_mon_peer_attach_notify(peer);
  5001. return QDF_STATUS_SUCCESS;
  5002. }
  5003. #endif
  5004. QDF_STATUS dp_mon_peer_detach(struct dp_peer *peer)
  5005. {
  5006. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  5007. if (!mon_peer)
  5008. return QDF_STATUS_SUCCESS;
  5009. dp_mon_peer_detach_notify(peer);
  5010. qdf_mem_free(mon_peer);
  5011. peer->monitor_peer = NULL;
  5012. return QDF_STATUS_SUCCESS;
  5013. }
  5014. #ifndef DISABLE_MON_CONFIG
  5015. void dp_mon_register_intr_ops(struct dp_soc *soc)
  5016. {
  5017. struct dp_mon_ops *mon_ops = NULL;
  5018. mon_ops = dp_mon_ops_get(soc);
  5019. if (!mon_ops) {
  5020. dp_mon_err("Monitor ops is NULL");
  5021. return;
  5022. }
  5023. if (mon_ops->mon_register_intr_ops)
  5024. mon_ops->mon_register_intr_ops(soc);
  5025. }
  5026. #endif
  5027. struct cdp_peer_rate_stats_ctx *dp_mon_peer_get_peerstats_ctx(struct
  5028. dp_peer *peer)
  5029. {
  5030. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  5031. if (mon_peer)
  5032. return mon_peer->peerstats_ctx;
  5033. else
  5034. return NULL;
  5035. }
  5036. #ifdef QCA_ENHANCED_STATS_SUPPORT
  5037. void dp_mon_peer_reset_stats(struct dp_peer *peer)
  5038. {
  5039. struct dp_mon_peer *mon_peer = NULL;
  5040. mon_peer = peer->monitor_peer;
  5041. if (!mon_peer)
  5042. return;
  5043. DP_STATS_CLR(mon_peer);
  5044. DP_STATS_UPD(mon_peer, rx.avg_snr, CDP_INVALID_SNR);
  5045. }
  5046. void dp_mon_peer_get_stats(struct dp_peer *peer, void *arg,
  5047. enum cdp_stat_update_type type)
  5048. {
  5049. struct dp_mon_peer *mon_peer = peer->monitor_peer;
  5050. struct dp_mon_peer_stats *mon_peer_stats;
  5051. if (!mon_peer || !arg)
  5052. return;
  5053. mon_peer_stats = &mon_peer->stats;
  5054. switch (type) {
  5055. case UPDATE_PEER_STATS:
  5056. {
  5057. struct cdp_peer_stats *peer_stats =
  5058. (struct cdp_peer_stats *)arg;
  5059. DP_UPDATE_MON_STATS(peer_stats, mon_peer_stats);
  5060. break;
  5061. }
  5062. case UPDATE_VDEV_STATS:
  5063. {
  5064. struct cdp_vdev_stats *vdev_stats =
  5065. (struct cdp_vdev_stats *)arg;
  5066. DP_UPDATE_MON_STATS(vdev_stats, mon_peer_stats);
  5067. break;
  5068. }
  5069. default:
  5070. dp_mon_err("Invalid stats_update_type");
  5071. }
  5072. }
  5073. void dp_mon_invalid_peer_update_pdev_stats(struct dp_pdev *pdev)
  5074. {
  5075. struct dp_mon_peer *mon_peer;
  5076. struct dp_mon_peer_stats *mon_peer_stats;
  5077. struct cdp_pdev_stats *pdev_stats;
  5078. if (!pdev || !pdev->monitor_pdev)
  5079. return;
  5080. mon_peer = pdev->monitor_pdev->invalid_mon_peer;
  5081. if (!mon_peer)
  5082. return;
  5083. mon_peer_stats = &mon_peer->stats;
  5084. pdev_stats = &pdev->stats;
  5085. DP_UPDATE_MON_STATS(pdev_stats, mon_peer_stats);
  5086. }
  5087. QDF_STATUS
  5088. dp_mon_peer_get_stats_param(struct dp_peer *peer, enum cdp_peer_stats_type type,
  5089. cdp_peer_stats_param_t *buf)
  5090. {
  5091. QDF_STATUS ret = QDF_STATUS_SUCCESS;
  5092. struct dp_mon_peer *mon_peer;
  5093. mon_peer = peer->monitor_peer;
  5094. if (!mon_peer)
  5095. return QDF_STATUS_E_FAILURE;
  5096. switch (type) {
  5097. case cdp_peer_tx_rate:
  5098. buf->tx_rate = mon_peer->stats.tx.tx_rate;
  5099. break;
  5100. case cdp_peer_tx_last_tx_rate:
  5101. buf->last_tx_rate = mon_peer->stats.tx.last_tx_rate;
  5102. break;
  5103. case cdp_peer_tx_ratecode:
  5104. buf->tx_ratecode = mon_peer->stats.tx.tx_ratecode;
  5105. break;
  5106. case cdp_peer_rx_rate:
  5107. buf->rx_rate = mon_peer->stats.rx.rx_rate;
  5108. break;
  5109. case cdp_peer_rx_last_rx_rate:
  5110. buf->last_rx_rate = mon_peer->stats.rx.last_rx_rate;
  5111. break;
  5112. case cdp_peer_rx_ratecode:
  5113. buf->rx_ratecode = mon_peer->stats.rx.rx_ratecode;
  5114. break;
  5115. case cdp_peer_rx_avg_snr:
  5116. buf->rx_avg_snr = mon_peer->stats.rx.avg_snr;
  5117. break;
  5118. case cdp_peer_rx_snr:
  5119. buf->rx_snr = mon_peer->stats.rx.snr;
  5120. break;
  5121. default:
  5122. dp_err("Invalid stats type requested");
  5123. ret = QDF_STATUS_E_FAILURE;
  5124. }
  5125. return ret;
  5126. }
  5127. #endif
  5128. void dp_mon_ops_register(struct dp_soc *soc)
  5129. {
  5130. struct dp_mon_soc *mon_soc = soc->monitor_soc;
  5131. uint32_t target_type;
  5132. target_type = hal_get_target_type(soc->hal_soc);
  5133. switch (target_type) {
  5134. case TARGET_TYPE_QCA6290:
  5135. case TARGET_TYPE_QCA6390:
  5136. case TARGET_TYPE_QCA6490:
  5137. case TARGET_TYPE_QCA6750:
  5138. case TARGET_TYPE_KIWI:
  5139. case TARGET_TYPE_MANGO:
  5140. case TARGET_TYPE_QCA8074:
  5141. case TARGET_TYPE_QCA8074V2:
  5142. case TARGET_TYPE_QCA6018:
  5143. case TARGET_TYPE_QCA9574:
  5144. case TARGET_TYPE_QCN9160:
  5145. case TARGET_TYPE_QCN9000:
  5146. case TARGET_TYPE_QCA5018:
  5147. case TARGET_TYPE_QCN6122:
  5148. dp_mon_ops_register_1_0(mon_soc);
  5149. break;
  5150. case TARGET_TYPE_QCN9224:
  5151. case TARGET_TYPE_QCA5332:
  5152. #ifdef QCA_MONITOR_2_0_SUPPORT
  5153. dp_mon_ops_register_2_0(mon_soc);
  5154. #endif
  5155. break;
  5156. default:
  5157. dp_mon_err("%s: Unknown tgt type %d", __func__, target_type);
  5158. qdf_assert_always(0);
  5159. break;
  5160. }
  5161. }
  5162. #ifdef QCA_MONITOR_OPS_PER_SOC_SUPPORT
  5163. void dp_mon_ops_free(struct dp_soc *soc)
  5164. {
  5165. struct cdp_ops *ops = soc->cdp_soc.ops;
  5166. struct cdp_mon_ops *cdp_mon_ops = ops->mon_ops;
  5167. struct dp_mon_soc *mon_soc = soc->monitor_soc;
  5168. struct dp_mon_ops *mon_ops = mon_soc->mon_ops;
  5169. if (cdp_mon_ops)
  5170. qdf_mem_free(cdp_mon_ops);
  5171. if (mon_ops)
  5172. qdf_mem_free(mon_ops);
  5173. }
  5174. #else
  5175. void dp_mon_ops_free(struct dp_soc *soc)
  5176. {
  5177. }
  5178. #endif
  5179. void dp_mon_cdp_ops_register(struct dp_soc *soc)
  5180. {
  5181. struct cdp_ops *ops = soc->cdp_soc.ops;
  5182. uint32_t target_type;
  5183. if (!ops) {
  5184. dp_mon_err("cdp_ops is NULL");
  5185. return;
  5186. }
  5187. target_type = hal_get_target_type(soc->hal_soc);
  5188. switch (target_type) {
  5189. case TARGET_TYPE_QCA6290:
  5190. case TARGET_TYPE_QCA6390:
  5191. case TARGET_TYPE_QCA6490:
  5192. case TARGET_TYPE_QCA6750:
  5193. case TARGET_TYPE_KIWI:
  5194. case TARGET_TYPE_MANGO:
  5195. case TARGET_TYPE_QCA8074:
  5196. case TARGET_TYPE_QCA8074V2:
  5197. case TARGET_TYPE_QCA6018:
  5198. case TARGET_TYPE_QCA9574:
  5199. case TARGET_TYPE_QCN9160:
  5200. case TARGET_TYPE_QCN9000:
  5201. case TARGET_TYPE_QCA5018:
  5202. case TARGET_TYPE_QCN6122:
  5203. dp_mon_cdp_ops_register_1_0(ops);
  5204. #ifdef ATH_SUPPORT_NAC_RSSI
  5205. ops->ctrl_ops->txrx_vdev_config_for_nac_rssi =
  5206. dp_config_for_nac_rssi;
  5207. ops->ctrl_ops->txrx_vdev_get_neighbour_rssi =
  5208. dp_vdev_get_neighbour_rssi;
  5209. #endif
  5210. #if defined(ATH_SUPPORT_NAC_RSSI) || defined(ATH_SUPPORT_NAC)
  5211. ops->ctrl_ops->txrx_update_filter_neighbour_peers =
  5212. dp_update_filter_neighbour_peers;
  5213. #endif /* ATH_SUPPORT_NAC_RSSI || ATH_SUPPORT_NAC */
  5214. #if defined(WLAN_CFR_ENABLE) && defined(WLAN_ENH_CFR_ENABLE)
  5215. dp_cfr_filter_register_1_0(ops);
  5216. #endif
  5217. if (target_type == TARGET_TYPE_QCN9000)
  5218. ops->ctrl_ops->txrx_update_mon_mac_filter =
  5219. dp_update_mon_mac_filter;
  5220. break;
  5221. case TARGET_TYPE_QCN9224:
  5222. case TARGET_TYPE_QCA5332:
  5223. #ifdef QCA_MONITOR_2_0_SUPPORT
  5224. dp_mon_cdp_ops_register_2_0(ops);
  5225. #ifdef ATH_SUPPORT_NAC_RSSI
  5226. ops->ctrl_ops->txrx_vdev_config_for_nac_rssi =
  5227. dp_lite_mon_config_nac_rssi_peer;
  5228. ops->ctrl_ops->txrx_vdev_get_neighbour_rssi =
  5229. dp_lite_mon_get_nac_peer_rssi;
  5230. #endif
  5231. #if defined(ATH_SUPPORT_NAC_RSSI) || defined(ATH_SUPPORT_NAC)
  5232. ops->ctrl_ops->txrx_update_filter_neighbour_peers =
  5233. dp_lite_mon_config_nac_peer;
  5234. #endif /* ATH_SUPPORT_NAC_RSSI || ATH_SUPPORT_NAC */
  5235. #if defined(WLAN_CFR_ENABLE) && defined(WLAN_ENH_CFR_ENABLE)
  5236. dp_cfr_filter_register_2_0(ops);
  5237. #endif
  5238. #endif /* QCA_MONITOR_2_0_SUPPORT */
  5239. break;
  5240. default:
  5241. dp_mon_err("%s: Unknown tgt type %d", __func__, target_type);
  5242. qdf_assert_always(0);
  5243. break;
  5244. }
  5245. ops->cmn_drv_ops->txrx_set_monitor_mode = dp_vdev_set_monitor_mode;
  5246. ops->cmn_drv_ops->txrx_get_mon_vdev_from_pdev =
  5247. dp_get_mon_vdev_from_pdev_wifi3;
  5248. #ifdef DP_PEER_EXTENDED_API
  5249. ops->misc_ops->pkt_log_init = dp_pkt_log_init;
  5250. ops->misc_ops->pkt_log_con_service = dp_pkt_log_con_service;
  5251. ops->misc_ops->pkt_log_exit = dp_pkt_log_exit;
  5252. #endif
  5253. ops->ctrl_ops->enable_peer_based_pktlog =
  5254. dp_enable_peer_based_pktlog;
  5255. #if defined(WLAN_TX_PKT_CAPTURE_ENH) || defined(WLAN_RX_PKT_CAPTURE_ENH)
  5256. ops->ctrl_ops->txrx_update_peer_pkt_capture_params =
  5257. dp_peer_update_pkt_capture_params;
  5258. #endif /* WLAN_TX_PKT_CAPTURE_ENH || WLAN_RX_PKT_CAPTURE_ENH */
  5259. #ifdef QCA_ENHANCED_STATS_SUPPORT
  5260. ops->host_stats_ops->txrx_enable_enhanced_stats =
  5261. dp_enable_enhanced_stats;
  5262. ops->host_stats_ops->txrx_disable_enhanced_stats =
  5263. dp_disable_enhanced_stats;
  5264. #endif /* QCA_ENHANCED_STATS_SUPPORT */
  5265. #ifdef WDI_EVENT_ENABLE
  5266. ops->ctrl_ops->txrx_get_pldev = dp_get_pldev;
  5267. #endif
  5268. #ifdef QCA_SUPPORT_SCAN_SPCL_VAP_STATS
  5269. ops->host_stats_ops->txrx_get_scan_spcl_vap_stats =
  5270. dp_get_scan_spcl_vap_stats;
  5271. #endif
  5272. return;
  5273. }
  5274. #ifdef QCA_MONITOR_OPS_PER_SOC_SUPPORT
  5275. static inline void
  5276. dp_mon_cdp_mon_ops_deregister(struct cdp_ops *ops)
  5277. {
  5278. if (ops->mon_ops) {
  5279. qdf_mem_free(ops->mon_ops);
  5280. ops->mon_ops = NULL;
  5281. }
  5282. }
  5283. #else
  5284. static inline void
  5285. dp_mon_cdp_mon_ops_deregister(struct cdp_ops *ops)
  5286. {
  5287. ops->mon_ops = NULL;
  5288. }
  5289. #endif
  5290. void dp_mon_cdp_ops_deregister(struct dp_soc *soc)
  5291. {
  5292. struct cdp_ops *ops = soc->cdp_soc.ops;
  5293. if (!ops) {
  5294. dp_mon_err("cdp_ops is NULL");
  5295. return;
  5296. }
  5297. dp_mon_cdp_mon_ops_deregister(ops);
  5298. #if defined(WLAN_CFR_ENABLE) && defined(WLAN_ENH_CFR_ENABLE)
  5299. ops->cfr_ops->txrx_cfr_filter = NULL;
  5300. #endif
  5301. ops->cmn_drv_ops->txrx_set_monitor_mode = NULL;
  5302. ops->cmn_drv_ops->txrx_get_mon_vdev_from_pdev = NULL;
  5303. #ifdef DP_PEER_EXTENDED_API
  5304. ops->misc_ops->pkt_log_init = NULL;
  5305. ops->misc_ops->pkt_log_con_service = NULL;
  5306. ops->misc_ops->pkt_log_exit = NULL;
  5307. #endif
  5308. #ifdef ATH_SUPPORT_NAC_RSSI
  5309. ops->ctrl_ops->txrx_vdev_config_for_nac_rssi = NULL;
  5310. ops->ctrl_ops->txrx_vdev_get_neighbour_rssi = NULL;
  5311. #endif
  5312. #if defined(ATH_SUPPORT_NAC_RSSI) || defined(ATH_SUPPORT_NAC)
  5313. ops->ctrl_ops->txrx_update_filter_neighbour_peers = NULL;
  5314. #endif /* ATH_SUPPORT_NAC_RSSI || ATH_SUPPORT_NAC */
  5315. ops->ctrl_ops->enable_peer_based_pktlog = NULL;
  5316. #if defined(WLAN_TX_PKT_CAPTURE_ENH) || defined(WLAN_RX_PKT_CAPTURE_ENH)
  5317. ops->ctrl_ops->txrx_update_peer_pkt_capture_params = NULL;
  5318. #endif /* WLAN_TX_PKT_CAPTURE_ENH || WLAN_RX_PKT_CAPTURE_ENH */
  5319. #ifdef FEATURE_PERPKT_INFO
  5320. ops->host_stats_ops->txrx_enable_enhanced_stats = NULL;
  5321. ops->host_stats_ops->txrx_disable_enhanced_stats = NULL;
  5322. #endif /* FEATURE_PERPKT_INFO */
  5323. #ifdef WDI_EVENT_ENABLE
  5324. ops->ctrl_ops->txrx_get_pldev = NULL;
  5325. #endif
  5326. return;
  5327. }
  5328. #if defined(WDI_EVENT_ENABLE) &&\
  5329. (defined(QCA_ENHANCED_STATS_SUPPORT) || !defined(REMOVE_PKT_LOG))
  5330. static inline
  5331. void dp_mon_ppdu_stats_handler_deregister(struct dp_mon_soc *mon_soc)
  5332. {
  5333. mon_soc->mon_ops->mon_ppdu_stats_ind_handler = NULL;
  5334. }
  5335. #else
  5336. static inline
  5337. void dp_mon_ppdu_stats_handler_deregister(struct dp_mon_soc *mon_soc)
  5338. {
  5339. }
  5340. #endif
  5341. #ifdef QCA_RSSI_DB2DBM
  5342. /**
  5343. * dp_mon_compute_min_nf() - calculate the min nf value in the
  5344. * active chains 20 MHz subbands.
  5345. * @conv_params: cdp_rssi_dbm_conv_param_dp structure value
  5346. * @min_nf: location to store min NF value
  5347. * @chain_idx: active chain index in nfHwdbm array
  5348. *
  5349. * computation: Need to calculate nfInDbm[][] to A_MIN(nfHwDbm[][])
  5350. * considering row index as active chains and column
  5351. * index as 20MHZ subbands per chain.
  5352. * example: chain_mask = 0x07 (consider 3 active chains 0,1,2 index)
  5353. * BandWidth = 40MHZ (40MHZ includes two 20MHZ subbands so need to
  5354. * consider 0,1 index calculate min_nf value)
  5355. *
  5356. * Return: QDF_STATUS_SUCCESS if value set successfully
  5357. * QDF_STATUS_E_INVAL false if error
  5358. */
  5359. static QDF_STATUS
  5360. dp_mon_compute_min_nf(struct cdp_rssi_dbm_conv_param_dp *conv_params,
  5361. int8_t *min_nf, int chain_idx)
  5362. {
  5363. int j;
  5364. *min_nf = conv_params->nf_hw_dbm[chain_idx][0];
  5365. switch (conv_params->curr_bw) {
  5366. case CHAN_WIDTH_20:
  5367. case CHAN_WIDTH_5:
  5368. case CHAN_WIDTH_10:
  5369. break;
  5370. case CHAN_WIDTH_40:
  5371. for (j = 1; j < SUB40BW; j++) {
  5372. if (conv_params->nf_hw_dbm[chain_idx][j] < *min_nf)
  5373. *min_nf = conv_params->nf_hw_dbm[chain_idx][j];
  5374. }
  5375. break;
  5376. case CHAN_WIDTH_80:
  5377. for (j = 1; j < SUB80BW; j++) {
  5378. if (conv_params->nf_hw_dbm[chain_idx][j] < *min_nf)
  5379. *min_nf = conv_params->nf_hw_dbm[chain_idx][j];
  5380. }
  5381. break;
  5382. case CHAN_WIDTH_160:
  5383. case CHAN_WIDTH_80P80:
  5384. case CHAN_WIDTH_165:
  5385. for (j = 1; j < SUB160BW; j++) {
  5386. if (conv_params->nf_hw_dbm[chain_idx][j] < *min_nf)
  5387. *min_nf = conv_params->nf_hw_dbm[chain_idx][j];
  5388. }
  5389. break;
  5390. case CHAN_WIDTH_160P160:
  5391. case CHAN_WIDTH_320:
  5392. for (j = 1; j < SUB320BW; j++) {
  5393. if (conv_params->nf_hw_dbm[chain_idx][j] < *min_nf)
  5394. *min_nf = conv_params->nf_hw_dbm[chain_idx][j];
  5395. }
  5396. break;
  5397. default:
  5398. dp_cdp_err("Invalid bandwidth %u", conv_params->curr_bw);
  5399. return QDF_STATUS_E_INVAL;
  5400. }
  5401. return QDF_STATUS_SUCCESS;
  5402. }
  5403. /**
  5404. * dp_mon_pdev_params_rssi_dbm_conv() - to set rssi in dbm conversion
  5405. * params into monitor pdev.
  5406. * @cdp_soc: dp soc handle.
  5407. * @params: cdp_rssi_db2dbm_param_dp structure value.
  5408. *
  5409. * Return: QDF_STATUS_SUCCESS if value set successfully
  5410. * QDF_STATUS_E_INVAL false if error
  5411. */
  5412. QDF_STATUS
  5413. dp_mon_pdev_params_rssi_dbm_conv(struct cdp_soc_t *cdp_soc,
  5414. struct cdp_rssi_db2dbm_param_dp *params)
  5415. {
  5416. struct cdp_rssi_db2dbm_param_dp *dp_rssi_params = params;
  5417. uint8_t pdev_id = params->pdev_id;
  5418. struct dp_soc *soc = (struct dp_soc *)cdp_soc;
  5419. struct dp_pdev *pdev =
  5420. dp_get_pdev_from_soc_pdev_id_wifi3(soc, pdev_id);
  5421. struct dp_mon_pdev *mon_pdev;
  5422. struct cdp_rssi_temp_off_param_dp temp_off_param;
  5423. struct cdp_rssi_dbm_conv_param_dp conv_params;
  5424. int8_t min_nf = 0;
  5425. int i;
  5426. if (!soc->features.rssi_dbm_conv_support) {
  5427. dp_cdp_err("rssi dbm conversion support is false");
  5428. return QDF_STATUS_E_INVAL;
  5429. }
  5430. if (!pdev || !pdev->monitor_pdev) {
  5431. dp_cdp_err("Invalid pdev_id %u", pdev_id);
  5432. return QDF_STATUS_E_FAILURE;
  5433. }
  5434. mon_pdev = pdev->monitor_pdev;
  5435. mon_pdev->rssi_dbm_conv_support =
  5436. soc->features.rssi_dbm_conv_support;
  5437. if (dp_rssi_params->rssi_temp_off_present) {
  5438. temp_off_param = dp_rssi_params->temp_off_param;
  5439. mon_pdev->rssi_offsets.rssi_temp_offset =
  5440. temp_off_param.rssi_temp_offset;
  5441. }
  5442. if (dp_rssi_params->rssi_dbm_info_present) {
  5443. conv_params = dp_rssi_params->rssi_dbm_param;
  5444. for (i = 0; i < CDP_MAX_NUM_ANTENNA; i++) {
  5445. if (conv_params.curr_rx_chainmask & (0x01 << i)) {
  5446. if (QDF_STATUS_E_INVAL == dp_mon_compute_min_nf
  5447. (&conv_params, &min_nf, i))
  5448. return QDF_STATUS_E_INVAL;
  5449. } else {
  5450. continue;
  5451. }
  5452. }
  5453. mon_pdev->rssi_offsets.xlna_bypass_offset =
  5454. conv_params.xlna_bypass_offset;
  5455. mon_pdev->rssi_offsets.xlna_bypass_threshold =
  5456. conv_params.xlna_bypass_threshold;
  5457. mon_pdev->rssi_offsets.xbar_config = conv_params.xbar_config;
  5458. mon_pdev->rssi_offsets.min_nf_dbm = min_nf;
  5459. mon_pdev->rssi_offsets.rssi_offset =
  5460. mon_pdev->rssi_offsets.min_nf_dbm +
  5461. mon_pdev->rssi_offsets.rssi_temp_offset;
  5462. }
  5463. return QDF_STATUS_SUCCESS;
  5464. }
  5465. #endif
  5466. void dp_mon_intr_ops_deregister(struct dp_soc *soc)
  5467. {
  5468. struct dp_mon_soc *mon_soc = soc->monitor_soc;
  5469. mon_soc->mon_rx_process = NULL;
  5470. dp_mon_ppdu_stats_handler_deregister(mon_soc);
  5471. }
  5472. void dp_mon_feature_ops_deregister(struct dp_soc *soc)
  5473. {
  5474. struct dp_mon_ops *mon_ops = dp_mon_ops_get(soc);
  5475. if (!mon_ops) {
  5476. dp_err("mon_ops is NULL");
  5477. return;
  5478. }
  5479. mon_ops->mon_config_debug_sniffer = NULL;
  5480. mon_ops->mon_peer_tx_init = NULL;
  5481. mon_ops->mon_peer_tx_cleanup = NULL;
  5482. mon_ops->mon_htt_ppdu_stats_attach = NULL;
  5483. mon_ops->mon_htt_ppdu_stats_detach = NULL;
  5484. mon_ops->mon_print_pdev_rx_mon_stats = NULL;
  5485. mon_ops->mon_set_bsscolor = NULL;
  5486. mon_ops->mon_pdev_get_filter_ucast_data = NULL;
  5487. mon_ops->mon_pdev_get_filter_mcast_data = NULL;
  5488. mon_ops->mon_pdev_get_filter_non_data = NULL;
  5489. mon_ops->mon_neighbour_peer_add_ast = NULL;
  5490. #ifdef WLAN_TX_PKT_CAPTURE_ENH
  5491. mon_ops->mon_peer_tid_peer_id_update = NULL;
  5492. mon_ops->mon_tx_ppdu_stats_attach = NULL;
  5493. mon_ops->mon_tx_ppdu_stats_detach = NULL;
  5494. mon_ops->mon_tx_capture_debugfs_init = NULL;
  5495. mon_ops->mon_tx_add_to_comp_queue = NULL;
  5496. mon_ops->mon_peer_tx_capture_filter_check = NULL;
  5497. mon_ops->mon_print_pdev_tx_capture_stats = NULL;
  5498. mon_ops->mon_config_enh_tx_capture = NULL;
  5499. #endif
  5500. #ifdef WLAN_RX_PKT_CAPTURE_ENH
  5501. mon_ops->mon_config_enh_rx_capture = NULL;
  5502. #endif
  5503. #ifdef QCA_SUPPORT_BPR
  5504. mon_ops->mon_set_bpr_enable = NULL;
  5505. #endif
  5506. #ifdef ATH_SUPPORT_NAC
  5507. mon_ops->mon_set_filter_neigh_peers = NULL;
  5508. #endif
  5509. #ifdef WLAN_ATF_ENABLE
  5510. mon_ops->mon_set_atf_stats_enable = NULL;
  5511. #endif
  5512. #ifdef FEATURE_NAC_RSSI
  5513. mon_ops->mon_filter_neighbour_peer = NULL;
  5514. #endif
  5515. #ifdef QCA_MCOPY_SUPPORT
  5516. mon_ops->mon_filter_setup_mcopy_mode = NULL;
  5517. mon_ops->mon_filter_reset_mcopy_mode = NULL;
  5518. mon_ops->mon_mcopy_check_deliver = NULL;
  5519. #endif
  5520. #ifdef QCA_ENHANCED_STATS_SUPPORT
  5521. mon_ops->mon_filter_setup_enhanced_stats = NULL;
  5522. mon_ops->mon_tx_enable_enhanced_stats = NULL;
  5523. mon_ops->mon_tx_disable_enhanced_stats = NULL;
  5524. mon_ops->mon_ppdu_desc_deliver = NULL;
  5525. mon_ops->mon_ppdu_desc_notify = NULL;
  5526. mon_ops->mon_ppdu_stats_feat_enable_check = NULL;
  5527. #ifdef WLAN_FEATURE_11BE
  5528. mon_ops->mon_tx_stats_update = NULL;
  5529. #endif
  5530. #endif
  5531. #if defined(ATH_SUPPORT_NAC_RSSI) || defined(ATH_SUPPORT_NAC)
  5532. mon_ops->mon_filter_setup_smart_monitor = NULL;
  5533. #endif
  5534. mon_ops->mon_filter_set_reset_mon_mac_filter = NULL;
  5535. #ifdef WLAN_RX_PKT_CAPTURE_ENH
  5536. mon_ops->mon_filter_setup_rx_enh_capture = NULL;
  5537. #endif
  5538. #ifdef WDI_EVENT_ENABLE
  5539. mon_ops->mon_set_pktlog_wifi3 = NULL;
  5540. mon_ops->mon_filter_setup_rx_pkt_log_full = NULL;
  5541. mon_ops->mon_filter_reset_rx_pkt_log_full = NULL;
  5542. mon_ops->mon_filter_setup_rx_pkt_log_lite = NULL;
  5543. mon_ops->mon_filter_reset_rx_pkt_log_lite = NULL;
  5544. mon_ops->mon_filter_setup_rx_pkt_log_cbf = NULL;
  5545. mon_ops->mon_filter_reset_rx_pkt_log_cbf = NULL;
  5546. #ifdef BE_PKTLOG_SUPPORT
  5547. mon_ops->mon_filter_setup_pktlog_hybrid = NULL;
  5548. mon_ops->mon_filter_reset_pktlog_hybrid = NULL;
  5549. #endif
  5550. #endif
  5551. #if defined(DP_CON_MON) && !defined(REMOVE_PKT_LOG)
  5552. mon_ops->mon_pktlogmod_exit = NULL;
  5553. #endif
  5554. mon_ops->rx_hdr_length_set = NULL;
  5555. mon_ops->rx_packet_length_set = NULL;
  5556. mon_ops->rx_wmask_subscribe = NULL;
  5557. mon_ops->rx_enable_mpdu_logging = NULL;
  5558. mon_ops->rx_enable_fpmo = NULL;
  5559. mon_ops->mon_neighbour_peers_detach = NULL;
  5560. mon_ops->mon_vdev_set_monitor_mode_buf_rings = NULL;
  5561. mon_ops->mon_vdev_set_monitor_mode_rings = NULL;
  5562. #ifdef QCA_ENHANCED_STATS_SUPPORT
  5563. mon_ops->mon_rx_stats_update = NULL;
  5564. mon_ops->mon_rx_populate_ppdu_usr_info = NULL;
  5565. mon_ops->mon_rx_populate_ppdu_info = NULL;
  5566. #endif
  5567. }
  5568. QDF_STATUS dp_mon_soc_attach(struct dp_soc *soc)
  5569. {
  5570. struct dp_mon_soc *mon_soc;
  5571. if (!soc) {
  5572. dp_mon_err("dp_soc is NULL");
  5573. return QDF_STATUS_E_FAILURE;
  5574. }
  5575. mon_soc = (struct dp_mon_soc *)qdf_mem_malloc(sizeof(*mon_soc));
  5576. if (!mon_soc) {
  5577. dp_mon_err("%pK: mem allocation failed", soc);
  5578. return QDF_STATUS_E_NOMEM;
  5579. }
  5580. /* register monitor ops */
  5581. soc->monitor_soc = mon_soc;
  5582. dp_mon_ops_register(soc);
  5583. dp_mon_register_intr_ops(soc);
  5584. dp_mon_cdp_ops_register(soc);
  5585. dp_mon_register_feature_ops(soc);
  5586. return QDF_STATUS_SUCCESS;
  5587. }
  5588. QDF_STATUS dp_mon_soc_detach(struct dp_soc *soc)
  5589. {
  5590. struct dp_mon_soc *mon_soc;
  5591. if (!soc) {
  5592. dp_mon_err("dp_soc is NULL");
  5593. return QDF_STATUS_E_FAILURE;
  5594. }
  5595. mon_soc = soc->monitor_soc;
  5596. dp_monitor_vdev_timer_deinit(soc);
  5597. dp_mon_cdp_ops_deregister(soc);
  5598. soc->monitor_soc = NULL;
  5599. qdf_mem_free(mon_soc);
  5600. return QDF_STATUS_SUCCESS;
  5601. }