dp_internal.h 55 KB

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  1. /*
  2. * Copyright (c) 2016-2020 The Linux Foundation. All rights reserved.
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for
  5. * any purpose with or without fee is hereby granted, provided that the
  6. * above copyright notice and this permission notice appear in all
  7. * copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
  10. * WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
  11. * WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
  12. * AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
  13. * DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
  14. * PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
  15. * TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
  16. * PERFORMANCE OF THIS SOFTWARE.
  17. */
  18. #ifndef _DP_INTERNAL_H_
  19. #define _DP_INTERNAL_H_
  20. #include "dp_types.h"
  21. #define RX_BUFFER_SIZE_PKTLOG_LITE 1024
  22. #define DP_RSSI_INVAL 0x80
  23. #define DP_RSSI_AVG_WEIGHT 2
  24. /*
  25. * Formula to derive avg_rssi is taken from wifi2.o firmware
  26. */
  27. #define DP_GET_AVG_RSSI(avg_rssi, last_rssi) \
  28. (((avg_rssi) - (((uint8_t)(avg_rssi)) >> DP_RSSI_AVG_WEIGHT)) \
  29. + ((((uint8_t)(last_rssi)) >> DP_RSSI_AVG_WEIGHT)))
  30. /* Macro For NYSM value received in VHT TLV */
  31. #define VHT_SGI_NYSM 3
  32. /* PPDU STATS CFG */
  33. #define DP_PPDU_STATS_CFG_ALL 0xFFFF
  34. /* PPDU stats mask sent to FW to enable enhanced stats */
  35. #define DP_PPDU_STATS_CFG_ENH_STATS 0xE67
  36. /* PPDU stats mask sent to FW to support debug sniffer feature */
  37. #define DP_PPDU_STATS_CFG_SNIFFER 0x2FFF
  38. /* PPDU stats mask sent to FW to support BPR feature*/
  39. #define DP_PPDU_STATS_CFG_BPR 0x2000
  40. /* PPDU stats mask sent to FW to support BPR and enhanced stats feature */
  41. #define DP_PPDU_STATS_CFG_BPR_ENH (DP_PPDU_STATS_CFG_BPR | \
  42. DP_PPDU_STATS_CFG_ENH_STATS)
  43. /* PPDU stats mask sent to FW to support BPR and pcktlog stats feature */
  44. #define DP_PPDU_STATS_CFG_BPR_PKTLOG (DP_PPDU_STATS_CFG_BPR | \
  45. DP_PPDU_TXLITE_STATS_BITMASK_CFG)
  46. /**
  47. * Bitmap of HTT PPDU TLV types for Default mode
  48. */
  49. #define HTT_PPDU_DEFAULT_TLV_BITMAP \
  50. (1 << HTT_PPDU_STATS_COMMON_TLV) | \
  51. (1 << HTT_PPDU_STATS_USR_COMMON_TLV) | \
  52. (1 << HTT_PPDU_STATS_USR_RATE_TLV) | \
  53. (1 << HTT_PPDU_STATS_SCH_CMD_STATUS_TLV) | \
  54. (1 << HTT_PPDU_STATS_USR_COMPLTN_COMMON_TLV) | \
  55. (1 << HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV)
  56. /**
  57. * Bitmap of HTT PPDU delayed ba TLV types for Default mode
  58. */
  59. #define HTT_PPDU_DELAYED_BA_TLV_BITMAP \
  60. (1 << HTT_PPDU_STATS_COMMON_TLV) | \
  61. (1 << HTT_PPDU_STATS_USR_COMMON_TLV) | \
  62. (1 << HTT_PPDU_STATS_USR_RATE_TLV)
  63. /**
  64. * Bitmap of HTT PPDU TLV types for Delayed BA
  65. */
  66. #define HTT_PPDU_STATUS_TLV_BITMAP \
  67. (1 << HTT_PPDU_STATS_COMMON_TLV) | \
  68. (1 << HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV)
  69. /**
  70. * Bitmap of HTT PPDU TLV types for Sniffer mode bitmap 64
  71. */
  72. #define HTT_PPDU_SNIFFER_AMPDU_TLV_BITMAP_64 \
  73. ((1 << HTT_PPDU_STATS_COMMON_TLV) | \
  74. (1 << HTT_PPDU_STATS_USR_COMMON_TLV) | \
  75. (1 << HTT_PPDU_STATS_USR_RATE_TLV) | \
  76. (1 << HTT_PPDU_STATS_SCH_CMD_STATUS_TLV) | \
  77. (1 << HTT_PPDU_STATS_USR_COMPLTN_COMMON_TLV) | \
  78. (1 << HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV) | \
  79. (1 << HTT_PPDU_STATS_USR_COMPLTN_BA_BITMAP_64_TLV) | \
  80. (1 << HTT_PPDU_STATS_USR_MPDU_ENQ_BITMAP_64_TLV))
  81. /**
  82. * Bitmap of HTT PPDU TLV types for Sniffer mode bitmap 256
  83. */
  84. #define HTT_PPDU_SNIFFER_AMPDU_TLV_BITMAP_256 \
  85. ((1 << HTT_PPDU_STATS_COMMON_TLV) | \
  86. (1 << HTT_PPDU_STATS_USR_COMMON_TLV) | \
  87. (1 << HTT_PPDU_STATS_USR_RATE_TLV) | \
  88. (1 << HTT_PPDU_STATS_SCH_CMD_STATUS_TLV) | \
  89. (1 << HTT_PPDU_STATS_USR_COMPLTN_COMMON_TLV) | \
  90. (1 << HTT_PPDU_STATS_USR_COMPLTN_ACK_BA_STATUS_TLV) | \
  91. (1 << HTT_PPDU_STATS_USR_COMPLTN_BA_BITMAP_256_TLV) | \
  92. (1 << HTT_PPDU_STATS_USR_MPDU_ENQ_BITMAP_256_TLV))
  93. #ifdef WLAN_TX_PKT_CAPTURE_ENH
  94. extern uint8_t
  95. dp_cpu_ring_map[DP_NSS_CPU_RING_MAP_MAX][WLAN_CFG_INT_NUM_CONTEXTS_MAX];
  96. #endif
  97. #if DP_PRINT_ENABLE
  98. #include <stdarg.h> /* va_list */
  99. #include <qdf_types.h> /* qdf_vprint */
  100. #include <cdp_txrx_handle.h>
  101. enum {
  102. /* FATAL_ERR - print only irrecoverable error messages */
  103. DP_PRINT_LEVEL_FATAL_ERR,
  104. /* ERR - include non-fatal err messages */
  105. DP_PRINT_LEVEL_ERR,
  106. /* WARN - include warnings */
  107. DP_PRINT_LEVEL_WARN,
  108. /* INFO1 - include fundamental, infrequent events */
  109. DP_PRINT_LEVEL_INFO1,
  110. /* INFO2 - include non-fundamental but infrequent events */
  111. DP_PRINT_LEVEL_INFO2,
  112. };
  113. #define dp_print(level, fmt, ...) do { \
  114. if (level <= g_txrx_print_level) \
  115. qdf_print(fmt, ## __VA_ARGS__); \
  116. while (0)
  117. #define DP_PRINT(level, fmt, ...) do { \
  118. dp_print(level, "DP: " fmt, ## __VA_ARGS__); \
  119. while (0)
  120. #else
  121. #define DP_PRINT(level, fmt, ...)
  122. #endif /* DP_PRINT_ENABLE */
  123. #define DP_TRACE(LVL, fmt, args ...) \
  124. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_##LVL, \
  125. fmt, ## args)
  126. #ifdef DP_PRINT_NO_CONSOLE
  127. /* Stat prints should not go to console or kernel logs.*/
  128. #define DP_PRINT_STATS(fmt, args ...)\
  129. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_INFO_HIGH, \
  130. fmt, ## args)
  131. #else
  132. #define DP_PRINT_STATS(fmt, args ...)\
  133. QDF_TRACE(QDF_MODULE_ID_DP, QDF_TRACE_LEVEL_FATAL,\
  134. fmt, ## args)
  135. #endif
  136. #define DP_STATS_INIT(_handle) \
  137. qdf_mem_zero(&((_handle)->stats), sizeof((_handle)->stats))
  138. #define DP_STATS_CLR(_handle) \
  139. qdf_mem_zero(&((_handle)->stats), sizeof((_handle)->stats))
  140. #ifndef DISABLE_DP_STATS
  141. #define DP_STATS_INC(_handle, _field, _delta) \
  142. { \
  143. if (likely(_handle)) \
  144. _handle->stats._field += _delta; \
  145. }
  146. #define DP_STATS_INCC(_handle, _field, _delta, _cond) \
  147. { \
  148. if (_cond && likely(_handle)) \
  149. _handle->stats._field += _delta; \
  150. }
  151. #define DP_STATS_DEC(_handle, _field, _delta) \
  152. { \
  153. if (likely(_handle)) \
  154. _handle->stats._field -= _delta; \
  155. }
  156. #define DP_STATS_UPD(_handle, _field, _delta) \
  157. { \
  158. if (likely(_handle)) \
  159. _handle->stats._field = _delta; \
  160. }
  161. #define DP_STATS_INC_PKT(_handle, _field, _count, _bytes) \
  162. { \
  163. DP_STATS_INC(_handle, _field.num, _count); \
  164. DP_STATS_INC(_handle, _field.bytes, _bytes) \
  165. }
  166. #define DP_STATS_INCC_PKT(_handle, _field, _count, _bytes, _cond) \
  167. { \
  168. DP_STATS_INCC(_handle, _field.num, _count, _cond); \
  169. DP_STATS_INCC(_handle, _field.bytes, _bytes, _cond) \
  170. }
  171. #define DP_STATS_AGGR(_handle_a, _handle_b, _field) \
  172. { \
  173. _handle_a->stats._field += _handle_b->stats._field; \
  174. }
  175. #define DP_STATS_AGGR_PKT(_handle_a, _handle_b, _field) \
  176. { \
  177. DP_STATS_AGGR(_handle_a, _handle_b, _field.num); \
  178. DP_STATS_AGGR(_handle_a, _handle_b, _field.bytes);\
  179. }
  180. #define DP_STATS_UPD_STRUCT(_handle_a, _handle_b, _field) \
  181. { \
  182. _handle_a->stats._field = _handle_b->stats._field; \
  183. }
  184. #else
  185. #define DP_STATS_INC(_handle, _field, _delta)
  186. #define DP_STATS_INCC(_handle, _field, _delta, _cond)
  187. #define DP_STATS_DEC(_handle, _field, _delta)
  188. #define DP_STATS_UPD(_handle, _field, _delta)
  189. #define DP_STATS_INC_PKT(_handle, _field, _count, _bytes)
  190. #define DP_STATS_INCC_PKT(_handle, _field, _count, _bytes, _cond)
  191. #define DP_STATS_AGGR(_handle_a, _handle_b, _field)
  192. #define DP_STATS_AGGR_PKT(_handle_a, _handle_b, _field)
  193. #endif
  194. #ifdef ENABLE_DP_HIST_STATS
  195. #define DP_HIST_INIT() \
  196. uint32_t num_of_packets[MAX_PDEV_CNT] = {0};
  197. #define DP_HIST_PACKET_COUNT_INC(_pdev_id) \
  198. { \
  199. ++num_of_packets[_pdev_id]; \
  200. }
  201. #define DP_TX_HISTOGRAM_UPDATE(_pdev, _p_cntrs) \
  202. do { \
  203. if (_p_cntrs == 1) { \
  204. DP_STATS_INC(_pdev, \
  205. tx_comp_histogram.pkts_1, 1); \
  206. } else if (_p_cntrs > 1 && _p_cntrs <= 20) { \
  207. DP_STATS_INC(_pdev, \
  208. tx_comp_histogram.pkts_2_20, 1); \
  209. } else if (_p_cntrs > 20 && _p_cntrs <= 40) { \
  210. DP_STATS_INC(_pdev, \
  211. tx_comp_histogram.pkts_21_40, 1); \
  212. } else if (_p_cntrs > 40 && _p_cntrs <= 60) { \
  213. DP_STATS_INC(_pdev, \
  214. tx_comp_histogram.pkts_41_60, 1); \
  215. } else if (_p_cntrs > 60 && _p_cntrs <= 80) { \
  216. DP_STATS_INC(_pdev, \
  217. tx_comp_histogram.pkts_61_80, 1); \
  218. } else if (_p_cntrs > 80 && _p_cntrs <= 100) { \
  219. DP_STATS_INC(_pdev, \
  220. tx_comp_histogram.pkts_81_100, 1); \
  221. } else if (_p_cntrs > 100 && _p_cntrs <= 200) { \
  222. DP_STATS_INC(_pdev, \
  223. tx_comp_histogram.pkts_101_200, 1); \
  224. } else if (_p_cntrs > 200) { \
  225. DP_STATS_INC(_pdev, \
  226. tx_comp_histogram.pkts_201_plus, 1); \
  227. } \
  228. } while (0)
  229. #define DP_RX_HISTOGRAM_UPDATE(_pdev, _p_cntrs) \
  230. do { \
  231. if (_p_cntrs == 1) { \
  232. DP_STATS_INC(_pdev, \
  233. rx_ind_histogram.pkts_1, 1); \
  234. } else if (_p_cntrs > 1 && _p_cntrs <= 20) { \
  235. DP_STATS_INC(_pdev, \
  236. rx_ind_histogram.pkts_2_20, 1); \
  237. } else if (_p_cntrs > 20 && _p_cntrs <= 40) { \
  238. DP_STATS_INC(_pdev, \
  239. rx_ind_histogram.pkts_21_40, 1); \
  240. } else if (_p_cntrs > 40 && _p_cntrs <= 60) { \
  241. DP_STATS_INC(_pdev, \
  242. rx_ind_histogram.pkts_41_60, 1); \
  243. } else if (_p_cntrs > 60 && _p_cntrs <= 80) { \
  244. DP_STATS_INC(_pdev, \
  245. rx_ind_histogram.pkts_61_80, 1); \
  246. } else if (_p_cntrs > 80 && _p_cntrs <= 100) { \
  247. DP_STATS_INC(_pdev, \
  248. rx_ind_histogram.pkts_81_100, 1); \
  249. } else if (_p_cntrs > 100 && _p_cntrs <= 200) { \
  250. DP_STATS_INC(_pdev, \
  251. rx_ind_histogram.pkts_101_200, 1); \
  252. } else if (_p_cntrs > 200) { \
  253. DP_STATS_INC(_pdev, \
  254. rx_ind_histogram.pkts_201_plus, 1); \
  255. } \
  256. } while (0)
  257. #define DP_TX_HIST_STATS_PER_PDEV() \
  258. do { \
  259. uint8_t hist_stats = 0; \
  260. for (hist_stats = 0; hist_stats < soc->pdev_count; \
  261. hist_stats++) { \
  262. DP_TX_HISTOGRAM_UPDATE(soc->pdev_list[hist_stats], \
  263. num_of_packets[hist_stats]); \
  264. } \
  265. } while (0)
  266. #define DP_RX_HIST_STATS_PER_PDEV() \
  267. do { \
  268. uint8_t hist_stats = 0; \
  269. for (hist_stats = 0; hist_stats < soc->pdev_count; \
  270. hist_stats++) { \
  271. DP_RX_HISTOGRAM_UPDATE(soc->pdev_list[hist_stats], \
  272. num_of_packets[hist_stats]); \
  273. } \
  274. } while (0)
  275. #else
  276. #define DP_HIST_INIT()
  277. #define DP_HIST_PACKET_COUNT_INC(_pdev_id)
  278. #define DP_TX_HISTOGRAM_UPDATE(_pdev, _p_cntrs)
  279. #define DP_RX_HISTOGRAM_UPDATE(_pdev, _p_cntrs)
  280. #define DP_RX_HIST_STATS_PER_PDEV()
  281. #define DP_TX_HIST_STATS_PER_PDEV()
  282. #endif /* DISABLE_DP_STATS */
  283. #ifdef FEATURE_TSO_STATS
  284. /**
  285. * dp_init_tso_stats() - Clear tso stats
  286. * @pdev: pdev handle
  287. *
  288. * Return: None
  289. */
  290. static inline
  291. void dp_init_tso_stats(struct dp_pdev *pdev)
  292. {
  293. if (pdev) {
  294. qdf_mem_zero(&((pdev)->stats.tso_stats),
  295. sizeof((pdev)->stats.tso_stats));
  296. qdf_atomic_init(&pdev->tso_idx);
  297. }
  298. }
  299. /**
  300. * dp_stats_tso_segment_histogram_update() - TSO Segment Histogram
  301. * @pdev: pdev handle
  302. * @_p_cntrs: number of tso segments for a tso packet
  303. *
  304. * Return: None
  305. */
  306. void dp_stats_tso_segment_histogram_update(struct dp_pdev *pdev,
  307. uint8_t _p_cntrs);
  308. /**
  309. * dp_tso_segment_update() - Collect tso segment information
  310. * @pdev: pdev handle
  311. * @stats_idx: tso packet number
  312. * @idx: tso segment number
  313. * @seg: tso segment
  314. *
  315. * Return: None
  316. */
  317. void dp_tso_segment_update(struct dp_pdev *pdev,
  318. uint32_t stats_idx,
  319. uint8_t idx,
  320. struct qdf_tso_seg_t seg);
  321. /**
  322. * dp_tso_packet_update() - TSO Packet information
  323. * @pdev: pdev handle
  324. * @stats_idx: tso packet number
  325. * @msdu: nbuf handle
  326. * @num_segs: tso segments
  327. *
  328. * Return: None
  329. */
  330. void dp_tso_packet_update(struct dp_pdev *pdev, uint32_t stats_idx,
  331. qdf_nbuf_t msdu, uint16_t num_segs);
  332. /**
  333. * dp_tso_segment_stats_update() - TSO Segment stats
  334. * @pdev: pdev handle
  335. * @stats_seg: tso segment list
  336. * @stats_idx: tso packet number
  337. *
  338. * Return: None
  339. */
  340. void dp_tso_segment_stats_update(struct dp_pdev *pdev,
  341. struct qdf_tso_seg_elem_t *stats_seg,
  342. uint32_t stats_idx);
  343. /**
  344. * dp_print_tso_stats() - dump tso statistics
  345. * @soc:soc handle
  346. * @level: verbosity level
  347. *
  348. * Return: None
  349. */
  350. void dp_print_tso_stats(struct dp_soc *soc,
  351. enum qdf_stats_verbosity_level level);
  352. /**
  353. * dp_txrx_clear_tso_stats() - clear tso stats
  354. * @soc: soc handle
  355. *
  356. * Return: None
  357. */
  358. void dp_txrx_clear_tso_stats(struct dp_soc *soc);
  359. #else
  360. static inline
  361. void dp_init_tso_stats(struct dp_pdev *pdev)
  362. {
  363. }
  364. static inline
  365. void dp_stats_tso_segment_histogram_update(struct dp_pdev *pdev,
  366. uint8_t _p_cntrs)
  367. {
  368. }
  369. static inline
  370. void dp_tso_segment_update(struct dp_pdev *pdev,
  371. uint32_t stats_idx,
  372. uint32_t idx,
  373. struct qdf_tso_seg_t seg)
  374. {
  375. }
  376. static inline
  377. void dp_tso_packet_update(struct dp_pdev *pdev, uint32_t stats_idx,
  378. qdf_nbuf_t msdu, uint16_t num_segs)
  379. {
  380. }
  381. static inline
  382. void dp_tso_segment_stats_update(struct dp_pdev *pdev,
  383. struct qdf_tso_seg_elem_t *stats_seg,
  384. uint32_t stats_idx)
  385. {
  386. }
  387. static inline
  388. void dp_print_tso_stats(struct dp_soc *soc,
  389. enum qdf_stats_verbosity_level level)
  390. {
  391. }
  392. static inline
  393. void dp_txrx_clear_tso_stats(struct dp_soc *soc)
  394. {
  395. }
  396. #endif /* FEATURE_TSO_STATS */
  397. #define DP_HTT_T2H_HP_PIPE 5
  398. static inline void dp_update_pdev_stats(struct dp_pdev *tgtobj,
  399. struct cdp_vdev_stats *srcobj)
  400. {
  401. uint8_t i;
  402. uint8_t pream_type;
  403. for (pream_type = 0; pream_type < DOT11_MAX; pream_type++) {
  404. for (i = 0; i < MAX_MCS; i++) {
  405. tgtobj->stats.tx.pkt_type[pream_type].
  406. mcs_count[i] +=
  407. srcobj->tx.pkt_type[pream_type].
  408. mcs_count[i];
  409. tgtobj->stats.rx.pkt_type[pream_type].
  410. mcs_count[i] +=
  411. srcobj->rx.pkt_type[pream_type].
  412. mcs_count[i];
  413. }
  414. }
  415. for (i = 0; i < MAX_BW; i++) {
  416. tgtobj->stats.tx.bw[i] += srcobj->tx.bw[i];
  417. tgtobj->stats.rx.bw[i] += srcobj->rx.bw[i];
  418. }
  419. for (i = 0; i < SS_COUNT; i++) {
  420. tgtobj->stats.tx.nss[i] += srcobj->tx.nss[i];
  421. tgtobj->stats.rx.nss[i] += srcobj->rx.nss[i];
  422. }
  423. for (i = 0; i < WME_AC_MAX; i++) {
  424. tgtobj->stats.tx.wme_ac_type[i] +=
  425. srcobj->tx.wme_ac_type[i];
  426. tgtobj->stats.rx.wme_ac_type[i] +=
  427. srcobj->rx.wme_ac_type[i];
  428. tgtobj->stats.tx.excess_retries_per_ac[i] +=
  429. srcobj->tx.excess_retries_per_ac[i];
  430. }
  431. for (i = 0; i < MAX_GI; i++) {
  432. tgtobj->stats.tx.sgi_count[i] +=
  433. srcobj->tx.sgi_count[i];
  434. tgtobj->stats.rx.sgi_count[i] +=
  435. srcobj->rx.sgi_count[i];
  436. }
  437. for (i = 0; i < MAX_RECEPTION_TYPES; i++)
  438. tgtobj->stats.rx.reception_type[i] +=
  439. srcobj->rx.reception_type[i];
  440. tgtobj->stats.tx.comp_pkt.bytes += srcobj->tx.comp_pkt.bytes;
  441. tgtobj->stats.tx.comp_pkt.num += srcobj->tx.comp_pkt.num;
  442. tgtobj->stats.tx.ucast.num += srcobj->tx.ucast.num;
  443. tgtobj->stats.tx.ucast.bytes += srcobj->tx.ucast.bytes;
  444. tgtobj->stats.tx.mcast.num += srcobj->tx.mcast.num;
  445. tgtobj->stats.tx.mcast.bytes += srcobj->tx.mcast.bytes;
  446. tgtobj->stats.tx.bcast.num += srcobj->tx.bcast.num;
  447. tgtobj->stats.tx.bcast.bytes += srcobj->tx.bcast.bytes;
  448. tgtobj->stats.tx.tx_success.num += srcobj->tx.tx_success.num;
  449. tgtobj->stats.tx.tx_success.bytes +=
  450. srcobj->tx.tx_success.bytes;
  451. tgtobj->stats.tx.nawds_mcast.num +=
  452. srcobj->tx.nawds_mcast.num;
  453. tgtobj->stats.tx.nawds_mcast.bytes +=
  454. srcobj->tx.nawds_mcast.bytes;
  455. tgtobj->stats.tx.nawds_mcast_drop +=
  456. srcobj->tx.nawds_mcast_drop;
  457. tgtobj->stats.tx.num_ppdu_cookie_valid +=
  458. srcobj->tx.num_ppdu_cookie_valid;
  459. tgtobj->stats.tx.tx_failed += srcobj->tx.tx_failed;
  460. tgtobj->stats.tx.ofdma += srcobj->tx.ofdma;
  461. tgtobj->stats.tx.stbc += srcobj->tx.stbc;
  462. tgtobj->stats.tx.ldpc += srcobj->tx.ldpc;
  463. tgtobj->stats.tx.retries += srcobj->tx.retries;
  464. tgtobj->stats.tx.non_amsdu_cnt += srcobj->tx.non_amsdu_cnt;
  465. tgtobj->stats.tx.amsdu_cnt += srcobj->tx.amsdu_cnt;
  466. tgtobj->stats.tx.non_ampdu_cnt += srcobj->tx.non_ampdu_cnt;
  467. tgtobj->stats.tx.ampdu_cnt += srcobj->tx.ampdu_cnt;
  468. tgtobj->stats.tx.dropped.fw_rem.num += srcobj->tx.dropped.fw_rem.num;
  469. tgtobj->stats.tx.dropped.fw_rem.bytes +=
  470. srcobj->tx.dropped.fw_rem.bytes;
  471. tgtobj->stats.tx.dropped.fw_rem_tx +=
  472. srcobj->tx.dropped.fw_rem_tx;
  473. tgtobj->stats.tx.dropped.fw_rem_notx +=
  474. srcobj->tx.dropped.fw_rem_notx;
  475. tgtobj->stats.tx.dropped.fw_reason1 +=
  476. srcobj->tx.dropped.fw_reason1;
  477. tgtobj->stats.tx.dropped.fw_reason2 +=
  478. srcobj->tx.dropped.fw_reason2;
  479. tgtobj->stats.tx.dropped.fw_reason3 +=
  480. srcobj->tx.dropped.fw_reason3;
  481. tgtobj->stats.tx.dropped.age_out += srcobj->tx.dropped.age_out;
  482. tgtobj->stats.rx.err.mic_err += srcobj->rx.err.mic_err;
  483. if (srcobj->rx.rssi != 0)
  484. tgtobj->stats.rx.rssi = srcobj->rx.rssi;
  485. tgtobj->stats.rx.rx_rate = srcobj->rx.rx_rate;
  486. tgtobj->stats.rx.err.decrypt_err += srcobj->rx.err.decrypt_err;
  487. tgtobj->stats.rx.non_ampdu_cnt += srcobj->rx.non_ampdu_cnt;
  488. tgtobj->stats.rx.amsdu_cnt += srcobj->rx.ampdu_cnt;
  489. tgtobj->stats.rx.non_amsdu_cnt += srcobj->rx.non_amsdu_cnt;
  490. tgtobj->stats.rx.amsdu_cnt += srcobj->rx.amsdu_cnt;
  491. tgtobj->stats.rx.nawds_mcast_drop += srcobj->rx.nawds_mcast_drop;
  492. tgtobj->stats.rx.to_stack.num += srcobj->rx.to_stack.num;
  493. tgtobj->stats.rx.to_stack.bytes += srcobj->rx.to_stack.bytes;
  494. for (i = 0; i < CDP_MAX_RX_RINGS; i++) {
  495. tgtobj->stats.rx.rcvd_reo[i].num +=
  496. srcobj->rx.rcvd_reo[i].num;
  497. tgtobj->stats.rx.rcvd_reo[i].bytes +=
  498. srcobj->rx.rcvd_reo[i].bytes;
  499. }
  500. srcobj->rx.unicast.num =
  501. srcobj->rx.to_stack.num -
  502. (srcobj->rx.multicast.num);
  503. srcobj->rx.unicast.bytes =
  504. srcobj->rx.to_stack.bytes -
  505. (srcobj->rx.multicast.bytes);
  506. tgtobj->stats.rx.unicast.num += srcobj->rx.unicast.num;
  507. tgtobj->stats.rx.unicast.bytes += srcobj->rx.unicast.bytes;
  508. tgtobj->stats.rx.multicast.num += srcobj->rx.multicast.num;
  509. tgtobj->stats.rx.multicast.bytes += srcobj->rx.multicast.bytes;
  510. tgtobj->stats.rx.bcast.num += srcobj->rx.bcast.num;
  511. tgtobj->stats.rx.bcast.bytes += srcobj->rx.bcast.bytes;
  512. tgtobj->stats.rx.raw.num += srcobj->rx.raw.num;
  513. tgtobj->stats.rx.raw.bytes += srcobj->rx.raw.bytes;
  514. tgtobj->stats.rx.intra_bss.pkts.num +=
  515. srcobj->rx.intra_bss.pkts.num;
  516. tgtobj->stats.rx.intra_bss.pkts.bytes +=
  517. srcobj->rx.intra_bss.pkts.bytes;
  518. tgtobj->stats.rx.intra_bss.fail.num +=
  519. srcobj->rx.intra_bss.fail.num;
  520. tgtobj->stats.rx.intra_bss.fail.bytes +=
  521. srcobj->rx.intra_bss.fail.bytes;
  522. tgtobj->stats.tx.last_ack_rssi =
  523. srcobj->tx.last_ack_rssi;
  524. tgtobj->stats.rx.mec_drop.num += srcobj->rx.mec_drop.num;
  525. tgtobj->stats.rx.mec_drop.bytes += srcobj->rx.mec_drop.bytes;
  526. tgtobj->stats.rx.multipass_rx_pkt_drop +=
  527. srcobj->rx.multipass_rx_pkt_drop;
  528. }
  529. static inline void dp_update_pdev_ingress_stats(struct dp_pdev *tgtobj,
  530. struct dp_vdev *srcobj)
  531. {
  532. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.nawds_mcast);
  533. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.rcvd);
  534. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.processed);
  535. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.reinject_pkts);
  536. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.inspect_pkts);
  537. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.raw.raw_pkt);
  538. DP_STATS_AGGR(tgtobj, srcobj, tx_i.raw.dma_map_error);
  539. DP_STATS_AGGR(tgtobj, srcobj, tx_i.sg.dropped_host.num);
  540. DP_STATS_AGGR(tgtobj, srcobj, tx_i.sg.dropped_target);
  541. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.sg.sg_pkt);
  542. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.mcast_en.mcast_pkt);
  543. DP_STATS_AGGR(tgtobj, srcobj,
  544. tx_i.mcast_en.dropped_map_error);
  545. DP_STATS_AGGR(tgtobj, srcobj,
  546. tx_i.mcast_en.dropped_self_mac);
  547. DP_STATS_AGGR(tgtobj, srcobj,
  548. tx_i.mcast_en.dropped_send_fail);
  549. DP_STATS_AGGR(tgtobj, srcobj, tx_i.mcast_en.ucast);
  550. DP_STATS_AGGR(tgtobj, srcobj, tx_i.dropped.dma_error);
  551. DP_STATS_AGGR(tgtobj, srcobj, tx_i.dropped.ring_full);
  552. DP_STATS_AGGR(tgtobj, srcobj, tx_i.dropped.enqueue_fail);
  553. DP_STATS_AGGR(tgtobj, srcobj, tx_i.dropped.desc_na.num);
  554. DP_STATS_AGGR(tgtobj, srcobj, tx_i.dropped.res_full);
  555. DP_STATS_AGGR(tgtobj, srcobj, tx_i.dropped.headroom_insufficient);
  556. DP_STATS_AGGR(tgtobj, srcobj, tx_i.cce_classified);
  557. DP_STATS_AGGR(tgtobj, srcobj, tx_i.cce_classified_raw);
  558. DP_STATS_AGGR_PKT(tgtobj, srcobj, tx_i.sniffer_rcvd);
  559. DP_STATS_AGGR(tgtobj, srcobj, tx_i.mesh.exception_fw);
  560. DP_STATS_AGGR(tgtobj, srcobj, tx_i.mesh.completion_fw);
  561. tgtobj->stats.tx_i.dropped.dropped_pkt.num =
  562. tgtobj->stats.tx_i.dropped.dma_error +
  563. tgtobj->stats.tx_i.dropped.ring_full +
  564. tgtobj->stats.tx_i.dropped.enqueue_fail +
  565. tgtobj->stats.tx_i.dropped.desc_na.num +
  566. tgtobj->stats.tx_i.dropped.res_full;
  567. }
  568. static inline void dp_update_vdev_stats(struct cdp_vdev_stats *tgtobj,
  569. struct dp_peer *srcobj)
  570. {
  571. uint8_t i;
  572. uint8_t pream_type;
  573. for (pream_type = 0; pream_type < DOT11_MAX; pream_type++) {
  574. for (i = 0; i < MAX_MCS; i++) {
  575. tgtobj->tx.pkt_type[pream_type].
  576. mcs_count[i] +=
  577. srcobj->stats.tx.pkt_type[pream_type].
  578. mcs_count[i];
  579. tgtobj->rx.pkt_type[pream_type].
  580. mcs_count[i] +=
  581. srcobj->stats.rx.pkt_type[pream_type].
  582. mcs_count[i];
  583. }
  584. }
  585. for (i = 0; i < MAX_BW; i++) {
  586. tgtobj->tx.bw[i] += srcobj->stats.tx.bw[i];
  587. tgtobj->rx.bw[i] += srcobj->stats.rx.bw[i];
  588. }
  589. for (i = 0; i < SS_COUNT; i++) {
  590. tgtobj->tx.nss[i] += srcobj->stats.tx.nss[i];
  591. tgtobj->rx.nss[i] += srcobj->stats.rx.nss[i];
  592. }
  593. for (i = 0; i < WME_AC_MAX; i++) {
  594. tgtobj->tx.wme_ac_type[i] +=
  595. srcobj->stats.tx.wme_ac_type[i];
  596. tgtobj->rx.wme_ac_type[i] +=
  597. srcobj->stats.rx.wme_ac_type[i];
  598. tgtobj->tx.excess_retries_per_ac[i] +=
  599. srcobj->stats.tx.excess_retries_per_ac[i];
  600. }
  601. for (i = 0; i < MAX_GI; i++) {
  602. tgtobj->tx.sgi_count[i] +=
  603. srcobj->stats.tx.sgi_count[i];
  604. tgtobj->rx.sgi_count[i] +=
  605. srcobj->stats.rx.sgi_count[i];
  606. }
  607. for (i = 0; i < MAX_RECEPTION_TYPES; i++)
  608. tgtobj->rx.reception_type[i] +=
  609. srcobj->stats.rx.reception_type[i];
  610. tgtobj->tx.comp_pkt.bytes += srcobj->stats.tx.comp_pkt.bytes;
  611. tgtobj->tx.comp_pkt.num += srcobj->stats.tx.comp_pkt.num;
  612. tgtobj->tx.ucast.num += srcobj->stats.tx.ucast.num;
  613. tgtobj->tx.ucast.bytes += srcobj->stats.tx.ucast.bytes;
  614. tgtobj->tx.mcast.num += srcobj->stats.tx.mcast.num;
  615. tgtobj->tx.mcast.bytes += srcobj->stats.tx.mcast.bytes;
  616. tgtobj->tx.bcast.num += srcobj->stats.tx.bcast.num;
  617. tgtobj->tx.bcast.bytes += srcobj->stats.tx.bcast.bytes;
  618. tgtobj->tx.tx_success.num += srcobj->stats.tx.tx_success.num;
  619. tgtobj->tx.tx_success.bytes +=
  620. srcobj->stats.tx.tx_success.bytes;
  621. tgtobj->tx.nawds_mcast.num +=
  622. srcobj->stats.tx.nawds_mcast.num;
  623. tgtobj->tx.nawds_mcast.bytes +=
  624. srcobj->stats.tx.nawds_mcast.bytes;
  625. tgtobj->tx.nawds_mcast_drop +=
  626. srcobj->stats.tx.nawds_mcast_drop;
  627. tgtobj->tx.num_ppdu_cookie_valid +=
  628. srcobj->stats.tx.num_ppdu_cookie_valid;
  629. tgtobj->tx.tx_failed += srcobj->stats.tx.tx_failed;
  630. tgtobj->tx.ofdma += srcobj->stats.tx.ofdma;
  631. tgtobj->tx.stbc += srcobj->stats.tx.stbc;
  632. tgtobj->tx.ldpc += srcobj->stats.tx.ldpc;
  633. tgtobj->tx.retries += srcobj->stats.tx.retries;
  634. tgtobj->tx.non_amsdu_cnt += srcobj->stats.tx.non_amsdu_cnt;
  635. tgtobj->tx.amsdu_cnt += srcobj->stats.tx.amsdu_cnt;
  636. tgtobj->tx.non_ampdu_cnt += srcobj->stats.tx.non_ampdu_cnt;
  637. tgtobj->tx.ampdu_cnt += srcobj->stats.tx.ampdu_cnt;
  638. tgtobj->tx.dropped.fw_rem.num += srcobj->stats.tx.dropped.fw_rem.num;
  639. tgtobj->tx.dropped.fw_rem.bytes +=
  640. srcobj->stats.tx.dropped.fw_rem.bytes;
  641. tgtobj->tx.dropped.fw_rem_tx +=
  642. srcobj->stats.tx.dropped.fw_rem_tx;
  643. tgtobj->tx.dropped.fw_rem_notx +=
  644. srcobj->stats.tx.dropped.fw_rem_notx;
  645. tgtobj->tx.dropped.fw_reason1 +=
  646. srcobj->stats.tx.dropped.fw_reason1;
  647. tgtobj->tx.dropped.fw_reason2 +=
  648. srcobj->stats.tx.dropped.fw_reason2;
  649. tgtobj->tx.dropped.fw_reason3 +=
  650. srcobj->stats.tx.dropped.fw_reason3;
  651. tgtobj->tx.dropped.age_out += srcobj->stats.tx.dropped.age_out;
  652. tgtobj->rx.err.mic_err += srcobj->stats.rx.err.mic_err;
  653. if (srcobj->stats.rx.rssi != 0)
  654. tgtobj->rx.rssi = srcobj->stats.rx.rssi;
  655. tgtobj->rx.rx_rate = srcobj->stats.rx.rx_rate;
  656. tgtobj->rx.err.decrypt_err += srcobj->stats.rx.err.decrypt_err;
  657. tgtobj->rx.non_ampdu_cnt += srcobj->stats.rx.non_ampdu_cnt;
  658. tgtobj->rx.amsdu_cnt += srcobj->stats.rx.ampdu_cnt;
  659. tgtobj->rx.non_amsdu_cnt += srcobj->stats.rx.non_amsdu_cnt;
  660. tgtobj->rx.amsdu_cnt += srcobj->stats.rx.amsdu_cnt;
  661. tgtobj->rx.nawds_mcast_drop += srcobj->stats.rx.nawds_mcast_drop;
  662. tgtobj->rx.to_stack.num += srcobj->stats.rx.to_stack.num;
  663. tgtobj->rx.to_stack.bytes += srcobj->stats.rx.to_stack.bytes;
  664. for (i = 0; i < CDP_MAX_RX_RINGS; i++) {
  665. tgtobj->rx.rcvd_reo[i].num +=
  666. srcobj->stats.rx.rcvd_reo[i].num;
  667. tgtobj->rx.rcvd_reo[i].bytes +=
  668. srcobj->stats.rx.rcvd_reo[i].bytes;
  669. }
  670. srcobj->stats.rx.unicast.num =
  671. srcobj->stats.rx.to_stack.num -
  672. srcobj->stats.rx.multicast.num;
  673. srcobj->stats.rx.unicast.bytes =
  674. srcobj->stats.rx.to_stack.bytes -
  675. srcobj->stats.rx.multicast.bytes;
  676. tgtobj->rx.unicast.num += srcobj->stats.rx.unicast.num;
  677. tgtobj->rx.unicast.bytes += srcobj->stats.rx.unicast.bytes;
  678. tgtobj->rx.multicast.num += srcobj->stats.rx.multicast.num;
  679. tgtobj->rx.multicast.bytes += srcobj->stats.rx.multicast.bytes;
  680. tgtobj->rx.bcast.num += srcobj->stats.rx.bcast.num;
  681. tgtobj->rx.bcast.bytes += srcobj->stats.rx.bcast.bytes;
  682. tgtobj->rx.raw.num += srcobj->stats.rx.raw.num;
  683. tgtobj->rx.raw.bytes += srcobj->stats.rx.raw.bytes;
  684. tgtobj->rx.intra_bss.pkts.num +=
  685. srcobj->stats.rx.intra_bss.pkts.num;
  686. tgtobj->rx.intra_bss.pkts.bytes +=
  687. srcobj->stats.rx.intra_bss.pkts.bytes;
  688. tgtobj->rx.intra_bss.fail.num +=
  689. srcobj->stats.rx.intra_bss.fail.num;
  690. tgtobj->rx.intra_bss.fail.bytes +=
  691. srcobj->stats.rx.intra_bss.fail.bytes;
  692. tgtobj->tx.last_ack_rssi =
  693. srcobj->stats.tx.last_ack_rssi;
  694. tgtobj->rx.mec_drop.num += srcobj->stats.rx.mec_drop.num;
  695. tgtobj->rx.mec_drop.bytes += srcobj->stats.rx.mec_drop.bytes;
  696. tgtobj->rx.multipass_rx_pkt_drop +=
  697. srcobj->stats.rx.multipass_rx_pkt_drop;
  698. }
  699. #define DP_UPDATE_STATS(_tgtobj, _srcobj) \
  700. do { \
  701. uint8_t i; \
  702. uint8_t pream_type; \
  703. for (pream_type = 0; pream_type < DOT11_MAX; pream_type++) { \
  704. for (i = 0; i < MAX_MCS; i++) { \
  705. DP_STATS_AGGR(_tgtobj, _srcobj, \
  706. tx.pkt_type[pream_type].mcs_count[i]); \
  707. DP_STATS_AGGR(_tgtobj, _srcobj, \
  708. rx.pkt_type[pream_type].mcs_count[i]); \
  709. } \
  710. } \
  711. \
  712. for (i = 0; i < MAX_BW; i++) { \
  713. DP_STATS_AGGR(_tgtobj, _srcobj, tx.bw[i]); \
  714. DP_STATS_AGGR(_tgtobj, _srcobj, rx.bw[i]); \
  715. } \
  716. \
  717. for (i = 0; i < SS_COUNT; i++) { \
  718. DP_STATS_AGGR(_tgtobj, _srcobj, rx.nss[i]); \
  719. DP_STATS_AGGR(_tgtobj, _srcobj, tx.nss[i]); \
  720. } \
  721. for (i = 0; i < WME_AC_MAX; i++) { \
  722. DP_STATS_AGGR(_tgtobj, _srcobj, tx.wme_ac_type[i]); \
  723. DP_STATS_AGGR(_tgtobj, _srcobj, rx.wme_ac_type[i]); \
  724. DP_STATS_AGGR(_tgtobj, _srcobj, tx.excess_retries_per_ac[i]); \
  725. \
  726. } \
  727. \
  728. for (i = 0; i < MAX_GI; i++) { \
  729. DP_STATS_AGGR(_tgtobj, _srcobj, tx.sgi_count[i]); \
  730. DP_STATS_AGGR(_tgtobj, _srcobj, rx.sgi_count[i]); \
  731. } \
  732. \
  733. for (i = 0; i < MAX_RECEPTION_TYPES; i++) \
  734. DP_STATS_AGGR(_tgtobj, _srcobj, rx.reception_type[i]); \
  735. \
  736. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.comp_pkt); \
  737. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.ucast); \
  738. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.mcast); \
  739. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.bcast); \
  740. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.tx_success); \
  741. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.nawds_mcast); \
  742. DP_STATS_AGGR(_tgtobj, _srcobj, tx.nawds_mcast_drop); \
  743. DP_STATS_AGGR(_tgtobj, _srcobj, tx.tx_failed); \
  744. DP_STATS_AGGR(_tgtobj, _srcobj, tx.ofdma); \
  745. DP_STATS_AGGR(_tgtobj, _srcobj, tx.stbc); \
  746. DP_STATS_AGGR(_tgtobj, _srcobj, tx.ldpc); \
  747. DP_STATS_AGGR(_tgtobj, _srcobj, tx.retries); \
  748. DP_STATS_AGGR(_tgtobj, _srcobj, tx.non_amsdu_cnt); \
  749. DP_STATS_AGGR(_tgtobj, _srcobj, tx.amsdu_cnt); \
  750. DP_STATS_AGGR(_tgtobj, _srcobj, tx.non_ampdu_cnt); \
  751. DP_STATS_AGGR(_tgtobj, _srcobj, tx.ampdu_cnt); \
  752. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, tx.dropped.fw_rem); \
  753. DP_STATS_AGGR(_tgtobj, _srcobj, tx.dropped.fw_rem_tx); \
  754. DP_STATS_AGGR(_tgtobj, _srcobj, tx.dropped.fw_rem_notx); \
  755. DP_STATS_AGGR(_tgtobj, _srcobj, tx.dropped.fw_reason1); \
  756. DP_STATS_AGGR(_tgtobj, _srcobj, tx.dropped.fw_reason2); \
  757. DP_STATS_AGGR(_tgtobj, _srcobj, tx.dropped.fw_reason3); \
  758. DP_STATS_AGGR(_tgtobj, _srcobj, tx.dropped.age_out); \
  759. \
  760. DP_STATS_AGGR(_tgtobj, _srcobj, rx.err.mic_err); \
  761. if (_srcobj->stats.rx.rssi != 0) \
  762. DP_STATS_UPD_STRUCT(_tgtobj, _srcobj, rx.rssi); \
  763. DP_STATS_UPD_STRUCT(_tgtobj, _srcobj, rx.rx_rate); \
  764. DP_STATS_AGGR(_tgtobj, _srcobj, rx.err.decrypt_err); \
  765. DP_STATS_AGGR(_tgtobj, _srcobj, rx.non_ampdu_cnt); \
  766. DP_STATS_AGGR(_tgtobj, _srcobj, rx.ampdu_cnt); \
  767. DP_STATS_AGGR(_tgtobj, _srcobj, rx.non_amsdu_cnt); \
  768. DP_STATS_AGGR(_tgtobj, _srcobj, rx.amsdu_cnt); \
  769. DP_STATS_AGGR(_tgtobj, _srcobj, rx.nawds_mcast_drop); \
  770. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.to_stack); \
  771. \
  772. for (i = 0; i < CDP_MAX_RX_RINGS; i++) \
  773. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.rcvd_reo[i]); \
  774. \
  775. _srcobj->stats.rx.unicast.num = \
  776. _srcobj->stats.rx.to_stack.num - \
  777. _srcobj->stats.rx.multicast.num; \
  778. _srcobj->stats.rx.unicast.bytes = \
  779. _srcobj->stats.rx.to_stack.bytes - \
  780. _srcobj->stats.rx.multicast.bytes; \
  781. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.unicast); \
  782. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.multicast); \
  783. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.bcast); \
  784. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.raw); \
  785. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.intra_bss.pkts); \
  786. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.intra_bss.fail); \
  787. DP_STATS_AGGR_PKT(_tgtobj, _srcobj, rx.mec_drop); \
  788. \
  789. _tgtobj->stats.tx.last_ack_rssi = \
  790. _srcobj->stats.tx.last_ack_rssi; \
  791. DP_STATS_AGGR(_tgtobj, _srcobj, rx.multipass_rx_pkt_drop); \
  792. } while (0)
  793. extern int dp_peer_find_attach(struct dp_soc *soc);
  794. extern void dp_peer_find_detach(struct dp_soc *soc);
  795. extern void dp_peer_find_hash_add(struct dp_soc *soc, struct dp_peer *peer);
  796. extern void dp_peer_find_hash_remove(struct dp_soc *soc, struct dp_peer *peer);
  797. extern void dp_peer_find_hash_erase(struct dp_soc *soc);
  798. /*
  799. * dp_peer_ppdu_delayed_ba_init() Initialize ppdu in peer
  800. * @peer: Datapath peer
  801. *
  802. * return: void
  803. */
  804. void dp_peer_ppdu_delayed_ba_init(struct dp_peer *peer);
  805. /*
  806. * dp_peer_ppdu_delayed_ba_cleanup() free ppdu allocated in peer
  807. * @peer: Datapath peer
  808. *
  809. * return: void
  810. */
  811. void dp_peer_ppdu_delayed_ba_cleanup(struct dp_peer *peer);
  812. extern void dp_peer_rx_init(struct dp_pdev *pdev, struct dp_peer *peer);
  813. void dp_peer_tx_init(struct dp_pdev *pdev, struct dp_peer *peer);
  814. void dp_peer_cleanup(struct dp_vdev *vdev, struct dp_peer *peer,
  815. bool reuse);
  816. void dp_peer_rx_cleanup(struct dp_vdev *vdev, struct dp_peer *peer,
  817. bool reuse);
  818. void dp_peer_unref_delete(struct dp_peer *peer);
  819. extern void *dp_find_peer_by_addr(struct cdp_pdev *dev,
  820. uint8_t *peer_mac_addr);
  821. extern struct dp_peer *dp_peer_find_hash_find(struct dp_soc *soc,
  822. uint8_t *peer_mac_addr, int mac_addr_is_aligned, uint8_t vdev_id);
  823. #ifdef DP_PEER_EXTENDED_API
  824. QDF_STATUS dp_register_peer(struct cdp_pdev *pdev_handle,
  825. struct ol_txrx_desc_type *sta_desc);
  826. QDF_STATUS dp_clear_peer(struct cdp_pdev *pdev_handle,
  827. struct qdf_mac_addr peer_addr);
  828. void *dp_find_peer_by_addr_and_vdev(struct cdp_pdev *pdev_handle,
  829. struct cdp_vdev *vdev,
  830. uint8_t *peer_addr);
  831. QDF_STATUS dp_peer_state_update(struct cdp_pdev *pdev_handle, uint8_t *peer_mac,
  832. enum ol_txrx_peer_state state);
  833. QDF_STATUS dp_get_vdevid(void *peer_handle, uint8_t *vdev_id);
  834. struct cdp_vdev *dp_get_vdev_by_peer_addr(struct cdp_pdev *pdev_handle,
  835. struct qdf_mac_addr peer_addr);
  836. struct cdp_vdev *dp_get_vdev_for_peer(void *peer);
  837. uint8_t *dp_peer_get_peer_mac_addr(void *peer);
  838. int dp_get_peer_state(void *peer_handle);
  839. void dp_local_peer_id_pool_init(struct dp_pdev *pdev);
  840. void dp_local_peer_id_alloc(struct dp_pdev *pdev, struct dp_peer *peer);
  841. void dp_local_peer_id_free(struct dp_pdev *pdev, struct dp_peer *peer);
  842. #else
  843. static inline
  844. QDF_STATUS dp_get_vdevid(void *peer_handle, uint8_t *vdev_id)
  845. {
  846. return QDF_STATUS_E_NOSUPPORT;
  847. }
  848. static inline void dp_local_peer_id_pool_init(struct dp_pdev *pdev)
  849. {
  850. }
  851. static inline
  852. void dp_local_peer_id_alloc(struct dp_pdev *pdev, struct dp_peer *peer)
  853. {
  854. }
  855. static inline
  856. void dp_local_peer_id_free(struct dp_pdev *pdev, struct dp_peer *peer)
  857. {
  858. }
  859. #endif
  860. int dp_addba_resp_tx_completion_wifi3(struct cdp_soc_t *cdp_soc,
  861. uint8_t *peer_mac, uint16_t vdev_id,
  862. uint8_t tid,
  863. int status);
  864. int dp_addba_requestprocess_wifi3(struct cdp_soc_t *cdp_soc,
  865. uint8_t *peer_mac, uint16_t vdev_id,
  866. uint8_t dialogtoken, uint16_t tid,
  867. uint16_t batimeout,
  868. uint16_t buffersize,
  869. uint16_t startseqnum);
  870. QDF_STATUS dp_addba_responsesetup_wifi3(struct cdp_soc_t *cdp_soc,
  871. uint8_t *peer_mac, uint16_t vdev_id,
  872. uint8_t tid, uint8_t *dialogtoken,
  873. uint16_t *statuscode,
  874. uint16_t *buffersize,
  875. uint16_t *batimeout);
  876. QDF_STATUS dp_set_addba_response(struct cdp_soc_t *cdp_soc,
  877. uint8_t *peer_mac,
  878. uint16_t vdev_id, uint8_t tid,
  879. uint16_t statuscode);
  880. int dp_delba_process_wifi3(struct cdp_soc_t *cdp_soc, uint8_t *peer_mac,
  881. uint16_t vdev_id, int tid,
  882. uint16_t reasoncode);
  883. /*
  884. * dp_delba_tx_completion_wifi3() - Handle delba tx completion
  885. *
  886. * @cdp_soc: soc handle
  887. * @vdev_id: id of the vdev handle
  888. * @peer_mac: peer mac address
  889. * @tid: Tid number
  890. * @status: Tx completion status
  891. * Indicate status of delba Tx to DP for stats update and retry
  892. * delba if tx failed.
  893. *
  894. */
  895. int dp_delba_tx_completion_wifi3(struct cdp_soc_t *cdp_soc, uint8_t *peer_mac,
  896. uint16_t vdev_id, uint8_t tid,
  897. int status);
  898. extern QDF_STATUS dp_rx_tid_setup_wifi3(struct dp_peer *peer, int tid,
  899. uint32_t ba_window_size,
  900. uint32_t start_seq);
  901. extern QDF_STATUS dp_reo_send_cmd(struct dp_soc *soc,
  902. enum hal_reo_cmd_type type, struct hal_reo_cmd_params *params,
  903. void (*callback_fn), void *data);
  904. extern void dp_reo_cmdlist_destroy(struct dp_soc *soc);
  905. /**
  906. * dp_reo_status_ring_handler - Handler for REO Status ring
  907. * @int_ctx: pointer to DP interrupt context
  908. * @soc: DP Soc handle
  909. *
  910. * Returns: Number of descriptors reaped
  911. */
  912. uint32_t dp_reo_status_ring_handler(struct dp_intr *int_ctx,
  913. struct dp_soc *soc);
  914. void dp_aggregate_vdev_stats(struct dp_vdev *vdev,
  915. struct cdp_vdev_stats *vdev_stats);
  916. void dp_rx_tid_stats_cb(struct dp_soc *soc, void *cb_ctxt,
  917. union hal_reo_status *reo_status);
  918. void dp_rx_bar_stats_cb(struct dp_soc *soc, void *cb_ctxt,
  919. union hal_reo_status *reo_status);
  920. uint16_t dp_tx_me_send_convert_ucast(struct cdp_soc_t *soc, uint8_t vdev_id,
  921. qdf_nbuf_t nbuf,
  922. uint8_t newmac[][QDF_MAC_ADDR_SIZE],
  923. uint8_t new_mac_cnt);
  924. void dp_tx_me_alloc_descriptor(struct cdp_soc_t *soc, uint8_t pdev_id);
  925. void dp_tx_me_free_descriptor(struct cdp_soc_t *soc, uint8_t pdev_id);
  926. QDF_STATUS dp_h2t_ext_stats_msg_send(struct dp_pdev *pdev,
  927. uint32_t stats_type_upload_mask, uint32_t config_param_0,
  928. uint32_t config_param_1, uint32_t config_param_2,
  929. uint32_t config_param_3, int cookie, int cookie_msb,
  930. uint8_t mac_id);
  931. void dp_htt_stats_print_tag(struct dp_pdev *pdev,
  932. uint8_t tag_type, uint32_t *tag_buf);
  933. void dp_htt_stats_copy_tag(struct dp_pdev *pdev, uint8_t tag_type, uint32_t *tag_buf);
  934. void dp_peer_rxtid_stats(struct dp_peer *peer, void (*callback_fn),
  935. void *cb_ctxt);
  936. QDF_STATUS
  937. dp_set_pn_check_wifi3(struct cdp_soc_t *soc, uint8_t vdev_id,
  938. uint8_t *peer_mac, enum cdp_sec_type sec_type,
  939. uint32_t *rx_pn);
  940. void *dp_get_pdev_for_mac_id(struct dp_soc *soc, uint32_t mac_id);
  941. QDF_STATUS
  942. dp_set_michael_key(struct cdp_soc_t *soc, uint8_t vdev_id,
  943. uint8_t *peer_mac,
  944. bool is_unicast, uint32_t *key);
  945. /**
  946. * dp_check_pdev_exists() - Validate pdev before use
  947. * @soc - dp soc handle
  948. * @data - pdev handle
  949. *
  950. * Return: 0 - success/invalid - failure
  951. */
  952. bool dp_check_pdev_exists(struct dp_soc *soc, struct dp_pdev *data);
  953. /**
  954. * dp_update_delay_stats() - Update delay statistics in structure
  955. * and fill min, max and avg delay
  956. * @pdev: pdev handle
  957. * @delay: delay in ms
  958. * @tid: tid value
  959. * @mode: type of tx delay mode
  960. * @ring id: ring number
  961. *
  962. * Return: none
  963. */
  964. void dp_update_delay_stats(struct dp_pdev *pdev, uint32_t delay,
  965. uint8_t tid, uint8_t mode, uint8_t ring_id);
  966. /**
  967. * dp_print_ring_stats(): Print tail and head pointer
  968. * @pdev: DP_PDEV handle
  969. *
  970. * Return:void
  971. */
  972. void dp_print_ring_stats(struct dp_pdev *pdev);
  973. /**
  974. * dp_print_pdev_cfg_params() - Print the pdev cfg parameters
  975. * @pdev_handle: DP pdev handle
  976. *
  977. * Return - void
  978. */
  979. void dp_print_pdev_cfg_params(struct dp_pdev *pdev);
  980. /**
  981. * dp_print_soc_cfg_params()- Dump soc wlan config parameters
  982. * @soc_handle: Soc handle
  983. *
  984. * Return: void
  985. */
  986. void dp_print_soc_cfg_params(struct dp_soc *soc);
  987. /**
  988. * dp_srng_get_str_from_ring_type() - Return string name for a ring
  989. * @ring_type: Ring
  990. *
  991. * Return: char const pointer
  992. */
  993. const
  994. char *dp_srng_get_str_from_hal_ring_type(enum hal_ring_type ring_type);
  995. /*
  996. * dp_txrx_path_stats() - Function to display dump stats
  997. * @soc - soc handle
  998. *
  999. * return: none
  1000. */
  1001. void dp_txrx_path_stats(struct dp_soc *soc);
  1002. /*
  1003. * dp_print_per_ring_stats(): Packet count per ring
  1004. * @soc - soc handle
  1005. *
  1006. * Return - None
  1007. */
  1008. void dp_print_per_ring_stats(struct dp_soc *soc);
  1009. /**
  1010. * dp_aggregate_pdev_stats(): Consolidate stats at PDEV level
  1011. * @pdev: DP PDEV handle
  1012. *
  1013. * return: void
  1014. */
  1015. void dp_aggregate_pdev_stats(struct dp_pdev *pdev);
  1016. /**
  1017. * dp_print_rx_rates(): Print Rx rate stats
  1018. * @vdev: DP_VDEV handle
  1019. *
  1020. * Return:void
  1021. */
  1022. void dp_print_rx_rates(struct dp_vdev *vdev);
  1023. /**
  1024. * dp_print_tx_rates(): Print tx rates
  1025. * @vdev: DP_VDEV handle
  1026. *
  1027. * Return:void
  1028. */
  1029. void dp_print_tx_rates(struct dp_vdev *vdev);
  1030. /**
  1031. * dp_print_peer_stats():print peer stats
  1032. * @peer: DP_PEER handle
  1033. *
  1034. * return void
  1035. */
  1036. void dp_print_peer_stats(struct dp_peer *peer);
  1037. /**
  1038. * dp_print_pdev_tx_stats(): Print Pdev level TX stats
  1039. * @pdev: DP_PDEV Handle
  1040. *
  1041. * Return:void
  1042. */
  1043. void
  1044. dp_print_pdev_tx_stats(struct dp_pdev *pdev);
  1045. /**
  1046. * dp_print_pdev_rx_stats(): Print Pdev level RX stats
  1047. * @pdev: DP_PDEV Handle
  1048. *
  1049. * Return: void
  1050. */
  1051. void
  1052. dp_print_pdev_rx_stats(struct dp_pdev *pdev);
  1053. /**
  1054. * dp_print_pdev_rx_mon_stats(): Print Pdev level RX monitor stats
  1055. * @pdev: DP_PDEV Handle
  1056. *
  1057. * Return: void
  1058. */
  1059. void
  1060. dp_print_pdev_rx_mon_stats(struct dp_pdev *pdev);
  1061. /**
  1062. * dp_print_soc_tx_stats(): Print SOC level stats
  1063. * @soc DP_SOC Handle
  1064. *
  1065. * Return: void
  1066. */
  1067. void dp_print_soc_tx_stats(struct dp_soc *soc);
  1068. /**
  1069. * dp_print_soc_interrupt_stats() - Print interrupt stats for the soc
  1070. * @soc: dp_soc handle
  1071. *
  1072. * Return: None
  1073. */
  1074. void dp_print_soc_interrupt_stats(struct dp_soc *soc);
  1075. /**
  1076. * dp_print_soc_rx_stats: Print SOC level Rx stats
  1077. * @soc: DP_SOC Handle
  1078. *
  1079. * Return:void
  1080. */
  1081. void dp_print_soc_rx_stats(struct dp_soc *soc);
  1082. /**
  1083. * dp_get_mac_id_for_pdev() - Return mac corresponding to pdev for mac
  1084. *
  1085. * @mac_id: MAC id
  1086. * @pdev_id: pdev_id corresponding to pdev, 0 for MCL
  1087. *
  1088. * Single pdev using both MACs will operate on both MAC rings,
  1089. * which is the case for MCL.
  1090. * For WIN each PDEV will operate one ring, so index is zero.
  1091. *
  1092. */
  1093. static inline int dp_get_mac_id_for_pdev(uint32_t mac_id, uint32_t pdev_id)
  1094. {
  1095. if (mac_id && pdev_id) {
  1096. qdf_print("Both mac_id and pdev_id cannot be non zero");
  1097. QDF_BUG(0);
  1098. return 0;
  1099. }
  1100. return (mac_id + pdev_id);
  1101. }
  1102. /**
  1103. * dp_get_lmac_id_for_pdev_id() - Return lmac id corresponding to host pdev id
  1104. * @soc: soc pointer
  1105. * @mac_id: MAC id
  1106. * @pdev_id: pdev_id corresponding to pdev, 0 for MCL
  1107. *
  1108. * For MCL, Single pdev using both MACs will operate on both MAC rings.
  1109. *
  1110. * For WIN, each PDEV will operate one ring.
  1111. *
  1112. */
  1113. static inline int
  1114. dp_get_lmac_id_for_pdev_id
  1115. (struct dp_soc *soc, uint32_t mac_id, uint32_t pdev_id)
  1116. {
  1117. if (!wlan_cfg_per_pdev_lmac_ring(soc->wlan_cfg_ctx)) {
  1118. if (mac_id && pdev_id) {
  1119. qdf_print("Both mac_id and pdev_id cannot be non zero");
  1120. QDF_BUG(0);
  1121. return 0;
  1122. }
  1123. return (mac_id + pdev_id);
  1124. }
  1125. return soc->pdev_list[pdev_id]->lmac_id;
  1126. }
  1127. /**
  1128. * dp_get_pdev_for_lmac_id() - Return pdev pointer corresponding to lmac id
  1129. * @soc: soc pointer
  1130. * @lmac_id: LMAC id
  1131. *
  1132. * For MCL, Single pdev exists
  1133. *
  1134. * For WIN, each PDEV will operate one ring.
  1135. *
  1136. */
  1137. static inline struct dp_pdev *
  1138. dp_get_pdev_for_lmac_id(struct dp_soc *soc, uint32_t lmac_id)
  1139. {
  1140. int i = 0;
  1141. if (wlan_cfg_per_pdev_lmac_ring(soc->wlan_cfg_ctx)) {
  1142. i = wlan_cfg_get_pdev_idx(soc->wlan_cfg_ctx, lmac_id);
  1143. qdf_assert_always(i < MAX_PDEV_CNT);
  1144. return soc->pdev_list[i];
  1145. }
  1146. /* Typically for MCL as there only 1 PDEV*/
  1147. return soc->pdev_list[0];
  1148. }
  1149. /**
  1150. * dp_get_target_pdev_id_for_host_pdev_id() - Return target pdev corresponding
  1151. * to host pdev id
  1152. * @soc: soc pointer
  1153. * @mac_for_pdev: pdev_id corresponding to host pdev for WIN, mac id for MCL
  1154. *
  1155. * returns target pdev_id for host pdev id. For WIN, this is derived through
  1156. * a two step process:
  1157. * 1. Get lmac_id corresponding to host pdev_id (lmac_id can change
  1158. * during mode switch)
  1159. * 2. Get target pdev_id (set up during WMI ready) from lmac_id
  1160. *
  1161. * For MCL, return the offset-1 translated mac_id
  1162. */
  1163. static inline int
  1164. dp_get_target_pdev_id_for_host_pdev_id
  1165. (struct dp_soc *soc, uint32_t mac_for_pdev)
  1166. {
  1167. struct dp_pdev *pdev;
  1168. if (!wlan_cfg_per_pdev_lmac_ring(soc->wlan_cfg_ctx))
  1169. return DP_SW2HW_MACID(mac_for_pdev);
  1170. pdev = soc->pdev_list[mac_for_pdev];
  1171. /*non-MCL case, get original target_pdev mapping*/
  1172. return wlan_cfg_get_target_pdev_id(soc->wlan_cfg_ctx, pdev->lmac_id);
  1173. }
  1174. /**
  1175. * dp_get_host_pdev_id_for_target_pdev_id() - Return host pdev corresponding
  1176. * to target pdev id
  1177. * @soc: soc pointer
  1178. * @pdev_id: pdev_id corresponding to target pdev
  1179. *
  1180. * returns host pdev_id for target pdev id. For WIN, this is derived through
  1181. * a two step process:
  1182. * 1. Get lmac_id corresponding to target pdev_id
  1183. * 2. Get host pdev_id (set up during WMI ready) from lmac_id
  1184. *
  1185. * For MCL, return the 0-offset pdev_id
  1186. */
  1187. static inline int
  1188. dp_get_host_pdev_id_for_target_pdev_id
  1189. (struct dp_soc *soc, uint32_t pdev_id)
  1190. {
  1191. struct dp_pdev *pdev;
  1192. int lmac_id;
  1193. if (!wlan_cfg_per_pdev_lmac_ring(soc->wlan_cfg_ctx))
  1194. return DP_HW2SW_MACID(pdev_id);
  1195. /*non-MCL case, get original target_lmac mapping from target pdev*/
  1196. lmac_id = wlan_cfg_get_hw_mac_idx(soc->wlan_cfg_ctx,
  1197. DP_HW2SW_MACID(pdev_id));
  1198. /*Get host pdev from lmac*/
  1199. pdev = dp_get_pdev_for_lmac_id(soc, lmac_id);
  1200. return pdev->pdev_id;
  1201. }
  1202. /*
  1203. * dp_get_mac_id_for_mac() - Return mac corresponding WIN and MCL mac_ids
  1204. *
  1205. * @soc: handle to DP soc
  1206. * @mac_id: MAC id
  1207. *
  1208. * Single pdev using both MACs will operate on both MAC rings,
  1209. * which is the case for MCL.
  1210. * For WIN each PDEV will operate one ring, so index is zero.
  1211. *
  1212. */
  1213. static inline int dp_get_mac_id_for_mac(struct dp_soc *soc, uint32_t mac_id)
  1214. {
  1215. /*
  1216. * Single pdev using both MACs will operate on both MAC rings,
  1217. * which is the case for MCL.
  1218. */
  1219. if (!wlan_cfg_per_pdev_lmac_ring(soc->wlan_cfg_ctx))
  1220. return mac_id;
  1221. /* For WIN each PDEV will operate one ring, so index is zero. */
  1222. return 0;
  1223. }
  1224. bool dp_is_soc_reinit(struct dp_soc *soc);
  1225. /*
  1226. * dp_is_subtype_data() - check if the frame subtype is data
  1227. *
  1228. * @frame_ctrl: Frame control field
  1229. *
  1230. * check the frame control field and verify if the packet
  1231. * is a data packet.
  1232. *
  1233. * Return: true or false
  1234. */
  1235. static inline bool dp_is_subtype_data(uint16_t frame_ctrl)
  1236. {
  1237. if (((qdf_cpu_to_le16(frame_ctrl) & QDF_IEEE80211_FC0_TYPE_MASK) ==
  1238. QDF_IEEE80211_FC0_TYPE_DATA) &&
  1239. (((qdf_cpu_to_le16(frame_ctrl) & QDF_IEEE80211_FC0_SUBTYPE_MASK) ==
  1240. QDF_IEEE80211_FC0_SUBTYPE_DATA) ||
  1241. ((qdf_cpu_to_le16(frame_ctrl) & QDF_IEEE80211_FC0_SUBTYPE_MASK) ==
  1242. QDF_IEEE80211_FC0_SUBTYPE_QOS))) {
  1243. return true;
  1244. }
  1245. return false;
  1246. }
  1247. #ifdef WDI_EVENT_ENABLE
  1248. QDF_STATUS dp_h2t_cfg_stats_msg_send(struct dp_pdev *pdev,
  1249. uint32_t stats_type_upload_mask,
  1250. uint8_t mac_id);
  1251. int dp_wdi_event_unsub(struct cdp_soc_t *soc, uint8_t pdev_id,
  1252. wdi_event_subscribe *event_cb_sub_handle,
  1253. uint32_t event);
  1254. int dp_wdi_event_sub(struct cdp_soc_t *soc, uint8_t pdev_id,
  1255. wdi_event_subscribe *event_cb_sub_handle,
  1256. uint32_t event);
  1257. void dp_wdi_event_handler(enum WDI_EVENT event, struct dp_soc *soc,
  1258. void *data, u_int16_t peer_id,
  1259. int status, u_int8_t pdev_id);
  1260. int dp_wdi_event_attach(struct dp_pdev *txrx_pdev);
  1261. int dp_wdi_event_detach(struct dp_pdev *txrx_pdev);
  1262. int dp_set_pktlog_wifi3(struct dp_pdev *pdev, uint32_t event,
  1263. bool enable);
  1264. /**
  1265. * dp_get_pldev() - function to get pktlog device handle
  1266. * @soc_hdl: datapath soc handle
  1267. * @pdev_id: physical device id
  1268. *
  1269. * Return: pktlog device handle or NULL
  1270. */
  1271. void *dp_get_pldev(struct cdp_soc_t *soc_hdl, uint8_t pdev_id);
  1272. void dp_pkt_log_init(struct cdp_soc_t *soc_hdl, uint8_t pdev_id, void *scn);
  1273. static inline void
  1274. dp_hif_update_pipe_callback(struct dp_soc *dp_soc,
  1275. void *cb_context,
  1276. QDF_STATUS (*callback)(void *, qdf_nbuf_t, uint8_t),
  1277. uint8_t pipe_id)
  1278. {
  1279. struct hif_msg_callbacks hif_pipe_callbacks;
  1280. /* TODO: Temporary change to bypass HTC connection for this new
  1281. * HIF pipe, which will be used for packet log and other high-
  1282. * priority HTT messages. Proper HTC connection to be added
  1283. * later once required FW changes are available
  1284. */
  1285. hif_pipe_callbacks.rxCompletionHandler = callback;
  1286. hif_pipe_callbacks.Context = cb_context;
  1287. hif_update_pipe_callback(dp_soc->hif_handle,
  1288. DP_HTT_T2H_HP_PIPE, &hif_pipe_callbacks);
  1289. }
  1290. QDF_STATUS dp_peer_stats_notify(struct dp_pdev *pdev, struct dp_peer *peer);
  1291. #else
  1292. static inline int dp_wdi_event_unsub(struct cdp_soc_t *soc, uint8_t pdev_id,
  1293. wdi_event_subscribe *event_cb_sub_handle,
  1294. uint32_t event)
  1295. {
  1296. return 0;
  1297. }
  1298. static inline int dp_wdi_event_sub(struct cdp_soc_t *soc, uint8_t pdev_id,
  1299. wdi_event_subscribe *event_cb_sub_handle,
  1300. uint32_t event)
  1301. {
  1302. return 0;
  1303. }
  1304. static inline
  1305. void dp_wdi_event_handler(enum WDI_EVENT event,
  1306. struct dp_soc *soc,
  1307. void *data, u_int16_t peer_id,
  1308. int status, u_int8_t pdev_id)
  1309. {
  1310. }
  1311. static inline int dp_wdi_event_attach(struct dp_pdev *txrx_pdev)
  1312. {
  1313. return 0;
  1314. }
  1315. static inline int dp_wdi_event_detach(struct dp_pdev *txrx_pdev)
  1316. {
  1317. return 0;
  1318. }
  1319. static inline int dp_set_pktlog_wifi3(struct dp_pdev *pdev, uint32_t event,
  1320. bool enable)
  1321. {
  1322. return 0;
  1323. }
  1324. static inline QDF_STATUS dp_h2t_cfg_stats_msg_send(struct dp_pdev *pdev,
  1325. uint32_t stats_type_upload_mask, uint8_t mac_id)
  1326. {
  1327. return 0;
  1328. }
  1329. static inline void
  1330. dp_hif_update_pipe_callback(struct dp_soc *dp_soc, void *cb_context,
  1331. QDF_STATUS (*callback)(void *, qdf_nbuf_t, uint8_t),
  1332. uint8_t pipe_id)
  1333. {
  1334. }
  1335. static inline QDF_STATUS dp_peer_stats_notify(struct dp_pdev *pdev,
  1336. struct dp_peer *peer)
  1337. {
  1338. return QDF_STATUS_SUCCESS;
  1339. }
  1340. #endif /* CONFIG_WIN */
  1341. #ifdef QCA_LL_TX_FLOW_CONTROL_V2
  1342. void dp_tx_dump_flow_pool_info(struct cdp_soc_t *soc_hdl);
  1343. int dp_tx_delete_flow_pool(struct dp_soc *soc, struct dp_tx_desc_pool_s *pool,
  1344. bool force);
  1345. #endif /* QCA_LL_TX_FLOW_CONTROL_V2 */
  1346. #ifdef PEER_PROTECTED_ACCESS
  1347. /**
  1348. * dp_peer_unref_del_find_by_id() - dec ref and del peer if ref count is
  1349. * taken by dp_peer_find_by_id
  1350. * @peer: peer context
  1351. *
  1352. * Return: none
  1353. */
  1354. static inline void dp_peer_unref_del_find_by_id(struct dp_peer *peer)
  1355. {
  1356. dp_peer_unref_delete(peer);
  1357. }
  1358. #else
  1359. static inline void dp_peer_unref_del_find_by_id(struct dp_peer *peer)
  1360. {
  1361. }
  1362. #endif
  1363. #ifdef WLAN_FEATURE_DP_EVENT_HISTORY
  1364. /**
  1365. * dp_srng_access_start() - Wrapper function to log access start of a hal ring
  1366. * @int_ctx: pointer to DP interrupt context
  1367. * @soc: DP Soc handle
  1368. * @hal_ring: opaque pointer to the HAL Rx Error Ring, which will be serviced
  1369. *
  1370. * Return: 0 on success; error on failure
  1371. */
  1372. int dp_srng_access_start(struct dp_intr *int_ctx, struct dp_soc *dp_soc,
  1373. hal_ring_handle_t hal_ring_hdl);
  1374. /**
  1375. * dp_srng_access_end() - Wrapper function to log access end of a hal ring
  1376. * @int_ctx: pointer to DP interrupt context
  1377. * @soc: DP Soc handle
  1378. * @hal_ring: opaque pointer to the HAL Rx Error Ring, which will be serviced
  1379. *
  1380. * Return: void
  1381. */
  1382. void dp_srng_access_end(struct dp_intr *int_ctx, struct dp_soc *dp_soc,
  1383. hal_ring_handle_t hal_ring_hdl);
  1384. #else
  1385. static inline int dp_srng_access_start(struct dp_intr *int_ctx,
  1386. struct dp_soc *dp_soc,
  1387. hal_ring_handle_t hal_ring_hdl)
  1388. {
  1389. hal_soc_handle_t hal_soc = dp_soc->hal_soc;
  1390. return hal_srng_access_start(hal_soc, hal_ring_hdl);
  1391. }
  1392. static inline void dp_srng_access_end(struct dp_intr *int_ctx,
  1393. struct dp_soc *dp_soc,
  1394. hal_ring_handle_t hal_ring_hdl)
  1395. {
  1396. hal_soc_handle_t hal_soc = dp_soc->hal_soc;
  1397. return hal_srng_access_end(hal_soc, hal_ring_hdl);
  1398. }
  1399. #endif /* WLAN_FEATURE_DP_EVENT_HISTORY */
  1400. #ifdef QCA_ENH_V3_STATS_SUPPORT
  1401. /**
  1402. * dp_pdev_print_delay_stats(): Print pdev level delay stats
  1403. * @pdev: DP_PDEV handle
  1404. *
  1405. * Return:void
  1406. */
  1407. void dp_pdev_print_delay_stats(struct dp_pdev *pdev);
  1408. /**
  1409. * dp_pdev_print_tid_stats(): Print pdev level tid stats
  1410. * @pdev: DP_PDEV handle
  1411. *
  1412. * Return:void
  1413. */
  1414. void dp_pdev_print_tid_stats(struct dp_pdev *pdev);
  1415. #endif /* CONFIG_WIN */
  1416. void dp_soc_set_txrx_ring_map(struct dp_soc *soc);
  1417. #ifndef WLAN_TX_PKT_CAPTURE_ENH
  1418. /**
  1419. * dp_tx_ppdu_stats_attach - Initialize Tx PPDU stats and enhanced capture
  1420. * @pdev: DP PDEV
  1421. *
  1422. * Return: none
  1423. */
  1424. static inline void dp_tx_ppdu_stats_attach(struct dp_pdev *pdev)
  1425. {
  1426. }
  1427. /**
  1428. * dp_tx_ppdu_stats_detach - Cleanup Tx PPDU stats and enhanced capture
  1429. * @pdev: DP PDEV
  1430. *
  1431. * Return: none
  1432. */
  1433. static inline void dp_tx_ppdu_stats_detach(struct dp_pdev *pdev)
  1434. {
  1435. }
  1436. /**
  1437. * dp_tx_ppdu_stats_process - Deferred PPDU stats handler
  1438. * @context: Opaque work context (PDEV)
  1439. *
  1440. * Return: none
  1441. */
  1442. static inline void dp_tx_ppdu_stats_process(void *context)
  1443. {
  1444. }
  1445. /**
  1446. * dp_tx_add_to_comp_queue() - add completion msdu to queue
  1447. * @soc: DP Soc handle
  1448. * @tx_desc: software Tx descriptor
  1449. * @ts : Tx completion status from HAL/HTT descriptor
  1450. * @peer: DP peer
  1451. *
  1452. * Return: none
  1453. */
  1454. static inline
  1455. QDF_STATUS dp_tx_add_to_comp_queue(struct dp_soc *soc,
  1456. struct dp_tx_desc_s *desc,
  1457. struct hal_tx_completion_status *ts,
  1458. struct dp_peer *peer)
  1459. {
  1460. return QDF_STATUS_E_FAILURE;
  1461. }
  1462. /*
  1463. * dp_tx_capture_htt_frame_counter: increment counter for htt_frame_type
  1464. * pdev: DP pdev handle
  1465. * htt_frame_type: htt frame type received from fw
  1466. *
  1467. * return: void
  1468. */
  1469. static inline
  1470. void dp_tx_capture_htt_frame_counter(struct dp_pdev *pdev,
  1471. uint32_t htt_frame_type)
  1472. {
  1473. }
  1474. /*
  1475. * dp_tx_cature_stats: print tx capture stats
  1476. * @pdev: DP PDEV handle
  1477. *
  1478. * return: void
  1479. */
  1480. static inline
  1481. void dp_print_pdev_tx_capture_stats(struct dp_pdev *pdev)
  1482. {
  1483. }
  1484. #endif
  1485. #ifdef FEATURE_PERPKT_INFO
  1486. void dp_deliver_mgmt_frm(struct dp_pdev *pdev, qdf_nbuf_t nbuf);
  1487. #else
  1488. static inline
  1489. void dp_deliver_mgmt_frm(struct dp_pdev *pdev, qdf_nbuf_t nbuf)
  1490. {
  1491. }
  1492. #endif
  1493. /**
  1494. * dp_vdev_to_cdp_vdev() - typecast dp vdev to cdp vdev
  1495. * @vdev: DP vdev handle
  1496. *
  1497. * Return: struct cdp_vdev pointer
  1498. */
  1499. static inline
  1500. struct cdp_vdev *dp_vdev_to_cdp_vdev(struct dp_vdev *vdev)
  1501. {
  1502. return (struct cdp_vdev *)vdev;
  1503. }
  1504. /**
  1505. * dp_pdev_to_cdp_pdev() - typecast dp pdev to cdp pdev
  1506. * @pdev: DP pdev handle
  1507. *
  1508. * Return: struct cdp_pdev pointer
  1509. */
  1510. static inline
  1511. struct cdp_pdev *dp_pdev_to_cdp_pdev(struct dp_pdev *pdev)
  1512. {
  1513. return (struct cdp_pdev *)pdev;
  1514. }
  1515. /**
  1516. * dp_soc_to_cdp_soc() - typecast dp psoc to cdp psoc
  1517. * @psoc: DP psoc handle
  1518. *
  1519. * Return: struct cdp_soc pointer
  1520. */
  1521. static inline
  1522. struct cdp_soc *dp_soc_to_cdp_soc(struct dp_soc *psoc)
  1523. {
  1524. return (struct cdp_soc *)psoc;
  1525. }
  1526. /**
  1527. * dp_soc_to_cdp_soc_t() - typecast dp psoc to
  1528. * ol txrx soc handle
  1529. * @psoc: DP psoc handle
  1530. *
  1531. * Return: struct cdp_soc_t pointer
  1532. */
  1533. static inline
  1534. struct cdp_soc_t *dp_soc_to_cdp_soc_t(struct dp_soc *psoc)
  1535. {
  1536. return (struct cdp_soc_t *)psoc;
  1537. }
  1538. /**
  1539. * cdp_soc_t_to_dp_soc() - typecast cdp_soc_t to
  1540. * dp soc handle
  1541. * @psoc: CDP psoc handle
  1542. *
  1543. * Return: struct dp_soc pointer
  1544. */
  1545. static inline
  1546. struct dp_soc *cdp_soc_t_to_dp_soc(struct cdp_soc_t *psoc)
  1547. {
  1548. return (struct dp_soc *)psoc;
  1549. }
  1550. #ifdef WLAN_SUPPORT_RX_FLOW_TAG
  1551. /**
  1552. * dp_rx_flow_update_fse_stats() - Update a flow's statistics
  1553. * @pdev: pdev handle
  1554. * @flow_id: flow index (truncated hash) in the Rx FST
  1555. *
  1556. * Return: Success when flow statistcs is updated, error on failure
  1557. */
  1558. QDF_STATUS dp_rx_flow_get_fse_stats(struct dp_pdev *pdev,
  1559. struct cdp_rx_flow_info *rx_flow_info,
  1560. struct cdp_flow_stats *stats);
  1561. /**
  1562. * dp_rx_flow_delete_entry() - Delete a flow entry from flow search table
  1563. * @pdev: pdev handle
  1564. * @rx_flow_info: DP flow parameters
  1565. *
  1566. * Return: Success when flow is deleted, error on failure
  1567. */
  1568. QDF_STATUS dp_rx_flow_delete_entry(struct dp_pdev *pdev,
  1569. struct cdp_rx_flow_info *rx_flow_info);
  1570. /**
  1571. * dp_rx_flow_add_entry() - Add a flow entry to flow search table
  1572. * @pdev: DP pdev instance
  1573. * @rx_flow_info: DP flow paramaters
  1574. *
  1575. * Return: Success when flow is added, no-memory or already exists on error
  1576. */
  1577. QDF_STATUS dp_rx_flow_add_entry(struct dp_pdev *pdev,
  1578. struct cdp_rx_flow_info *rx_flow_info);
  1579. /**
  1580. * dp_rx_fst_attach() - Initialize Rx FST and setup necessary parameters
  1581. * @soc: SoC handle
  1582. * @pdev: Pdev handle
  1583. *
  1584. * Return: Handle to flow search table entry
  1585. */
  1586. QDF_STATUS dp_rx_fst_attach(struct dp_soc *soc, struct dp_pdev *pdev);
  1587. /**
  1588. * dp_rx_fst_detach() - De-initialize Rx FST
  1589. * @soc: SoC handle
  1590. * @pdev: Pdev handle
  1591. *
  1592. * Return: None
  1593. */
  1594. void dp_rx_fst_detach(struct dp_soc *soc, struct dp_pdev *pdev);
  1595. /**
  1596. * dp_rx_flow_send_fst_fw_setup() - Program FST parameters in FW/HW post-attach
  1597. * @soc: SoC handle
  1598. * @pdev: Pdev handle
  1599. *
  1600. * Return: Success when fst parameters are programmed in FW, error otherwise
  1601. */
  1602. QDF_STATUS dp_rx_flow_send_fst_fw_setup(struct dp_soc *soc,
  1603. struct dp_pdev *pdev);
  1604. #else
  1605. /**
  1606. * dp_rx_fst_attach() - Initialize Rx FST and setup necessary parameters
  1607. * @soc: SoC handle
  1608. * @pdev: Pdev handle
  1609. *
  1610. * Return: Handle to flow search table entry
  1611. */
  1612. static inline
  1613. QDF_STATUS dp_rx_fst_attach(struct dp_soc *soc, struct dp_pdev *pdev)
  1614. {
  1615. return QDF_STATUS_SUCCESS;
  1616. }
  1617. /**
  1618. * dp_rx_fst_detach() - De-initialize Rx FST
  1619. * @soc: SoC handle
  1620. * @pdev: Pdev handle
  1621. *
  1622. * Return: None
  1623. */
  1624. static inline
  1625. void dp_rx_fst_detach(struct dp_soc *soc, struct dp_pdev *pdev)
  1626. {
  1627. }
  1628. #endif /* WLAN_SUPPORT_RX_FLOW_TAG */
  1629. /**
  1630. * dp_get_vdev_from_soc_vdev_id_wifi3() - Returns vdev object given the vdev id
  1631. * @soc: core DP soc context
  1632. * @vdev_id: vdev id from vdev object can be retrieved
  1633. *
  1634. * Return: struct dp_vdev*: Pointer to DP vdev object
  1635. */
  1636. static inline struct dp_vdev *
  1637. dp_get_vdev_from_soc_vdev_id_wifi3(struct dp_soc *soc,
  1638. uint8_t vdev_id)
  1639. {
  1640. if (qdf_unlikely(vdev_id >= MAX_VDEV_CNT))
  1641. return NULL;
  1642. return soc->vdev_id_map[vdev_id];
  1643. }
  1644. /**
  1645. * dp_get_pdev_from_soc_pdev_id_wifi3() - Returns pdev object given the pdev id
  1646. * @soc: core DP soc context
  1647. * @pdev_id: pdev id from pdev object can be retrieved
  1648. *
  1649. * Return: struct dp_pdev*: Pointer to DP pdev object
  1650. */
  1651. static inline struct dp_pdev *
  1652. dp_get_pdev_from_soc_pdev_id_wifi3(struct dp_soc *soc,
  1653. uint8_t pdev_id)
  1654. {
  1655. if (qdf_unlikely(pdev_id >= MAX_PDEV_CNT))
  1656. return NULL;
  1657. return soc->pdev_list[pdev_id];
  1658. }
  1659. /*
  1660. * dp_rx_tid_update_wifi3() – Update receive TID state
  1661. * @peer: Datapath peer handle
  1662. * @tid: TID
  1663. * @ba_window_size: BlockAck window size
  1664. * @start_seq: Starting sequence number
  1665. *
  1666. * Return: QDF_STATUS code
  1667. */
  1668. QDF_STATUS dp_rx_tid_update_wifi3(struct dp_peer *peer, int tid, uint32_t
  1669. ba_window_size, uint32_t start_seq);
  1670. /**
  1671. * dp_get_peer_mac_list(): function to get peer mac list of vdev
  1672. * @soc: Datapath soc handle
  1673. * @vdev_id: vdev id
  1674. * @newmac: Table of the clients mac
  1675. * @mac_cnt: No. of MACs required
  1676. *
  1677. * return: no of clients
  1678. */
  1679. uint16_t dp_get_peer_mac_list(ol_txrx_soc_handle soc, uint8_t vdev_id,
  1680. u_int8_t newmac[][QDF_MAC_ADDR_SIZE],
  1681. u_int16_t mac_cnt);
  1682. #endif /* #ifndef _DP_INTERNAL_H_ */