dp_mlo.c 26 KB

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  1. /*
  2. * Copyright (c) 2021-2023 Qualcomm Innovation Center, Inc. All rights reserved.
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for any
  5. * purpose with or without fee is hereby granted, provided that the above
  6. * copyright notice and this permission notice appear in all copies.
  7. *
  8. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  9. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  10. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  11. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  12. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  13. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  14. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  15. */
  16. #include <wlan_utility.h>
  17. #include <dp_internal.h>
  18. #include <dp_htt.h>
  19. #include <hal_be_api.h>
  20. #include "dp_mlo.h"
  21. #include <dp_be.h>
  22. #include <dp_be_rx.h>
  23. #include <dp_htt.h>
  24. #include <dp_internal.h>
  25. #include <wlan_cfg.h>
  26. #include <wlan_mlo_mgr_cmn.h>
  27. /*
  28. * dp_mlo_ctxt_attach_wifi3 () – Attach DP MLO context
  29. *
  30. * Return: DP MLO context handle on success, NULL on failure
  31. */
  32. struct cdp_mlo_ctxt *
  33. dp_mlo_ctxt_attach_wifi3(struct cdp_ctrl_mlo_mgr *ctrl_ctxt)
  34. {
  35. struct dp_mlo_ctxt *mlo_ctxt =
  36. qdf_mem_malloc(sizeof(struct dp_mlo_ctxt));
  37. if (!mlo_ctxt) {
  38. dp_err("Failed to allocate DP MLO Context");
  39. return NULL;
  40. }
  41. mlo_ctxt->ctrl_ctxt = ctrl_ctxt;
  42. if (dp_mlo_peer_find_hash_attach_be
  43. (mlo_ctxt, DP_MAX_MLO_PEER) != QDF_STATUS_SUCCESS) {
  44. dp_err("Failed to allocate peer hash");
  45. qdf_mem_free(mlo_ctxt);
  46. return NULL;
  47. }
  48. qdf_get_random_bytes(mlo_ctxt->toeplitz_hash_ipv4,
  49. (sizeof(mlo_ctxt->toeplitz_hash_ipv4[0]) *
  50. LRO_IPV4_SEED_ARR_SZ));
  51. qdf_get_random_bytes(mlo_ctxt->toeplitz_hash_ipv6,
  52. (sizeof(mlo_ctxt->toeplitz_hash_ipv6[0]) *
  53. LRO_IPV6_SEED_ARR_SZ));
  54. qdf_spinlock_create(&mlo_ctxt->ml_soc_list_lock);
  55. return dp_mlo_ctx_to_cdp(mlo_ctxt);
  56. }
  57. qdf_export_symbol(dp_mlo_ctxt_attach_wifi3);
  58. /*
  59. * dp_mlo_ctxt_detach_wifi3 () – Detach DP MLO context
  60. *
  61. * @ml_ctxt: pointer to DP MLO context
  62. *
  63. * Return: void
  64. */
  65. void dp_mlo_ctxt_detach_wifi3(struct cdp_mlo_ctxt *cdp_ml_ctxt)
  66. {
  67. struct dp_mlo_ctxt *mlo_ctxt = cdp_mlo_ctx_to_dp(cdp_ml_ctxt);
  68. if (!cdp_ml_ctxt)
  69. return;
  70. qdf_spinlock_destroy(&mlo_ctxt->ml_soc_list_lock);
  71. dp_mlo_peer_find_hash_detach_be(mlo_ctxt);
  72. qdf_mem_free(mlo_ctxt);
  73. }
  74. qdf_export_symbol(dp_mlo_ctxt_detach_wifi3);
  75. /*
  76. * dp_mlo_set_soc_by_chip_id() – Add DP soc to ML context soc list
  77. *
  78. * @ml_ctxt: DP ML context handle
  79. * @soc: DP soc handle
  80. * @chip_id: MLO chip id
  81. *
  82. * Return: void
  83. */
  84. void dp_mlo_set_soc_by_chip_id(struct dp_mlo_ctxt *ml_ctxt,
  85. struct dp_soc *soc,
  86. uint8_t chip_id)
  87. {
  88. qdf_spin_lock_bh(&ml_ctxt->ml_soc_list_lock);
  89. ml_ctxt->ml_soc_list[chip_id] = soc;
  90. qdf_spin_unlock_bh(&ml_ctxt->ml_soc_list_lock);
  91. }
  92. /*
  93. * dp_mlo_get_soc_ref_by_chip_id() – Get DP soc from DP ML context.
  94. * This API will increment a reference count for DP soc. Caller has
  95. * to take care for decrementing refcount.
  96. *
  97. * @ml_ctxt: DP ML context handle
  98. * @chip_id: MLO chip id
  99. *
  100. * Return: dp_soc
  101. */
  102. struct dp_soc*
  103. dp_mlo_get_soc_ref_by_chip_id(struct dp_mlo_ctxt *ml_ctxt,
  104. uint8_t chip_id)
  105. {
  106. struct dp_soc *soc = NULL;
  107. if (!ml_ctxt) {
  108. dp_warn("MLO context not created, MLO not enabled");
  109. return NULL;
  110. }
  111. qdf_spin_lock_bh(&ml_ctxt->ml_soc_list_lock);
  112. soc = ml_ctxt->ml_soc_list[chip_id];
  113. if (!soc) {
  114. qdf_spin_unlock_bh(&ml_ctxt->ml_soc_list_lock);
  115. return NULL;
  116. }
  117. qdf_atomic_inc(&soc->ref_count);
  118. qdf_spin_unlock_bh(&ml_ctxt->ml_soc_list_lock);
  119. return soc;
  120. }
  121. static QDF_STATUS dp_partner_soc_rx_hw_cc_init(struct dp_mlo_ctxt *mlo_ctxt,
  122. struct dp_soc_be *be_soc)
  123. {
  124. uint8_t i;
  125. struct dp_soc *partner_soc;
  126. struct dp_soc_be *be_partner_soc;
  127. uint8_t pool_id;
  128. QDF_STATUS qdf_status = QDF_STATUS_SUCCESS;
  129. for (i = 0; i < WLAN_MAX_MLO_CHIPS; i++) {
  130. partner_soc = dp_mlo_get_soc_ref_by_chip_id(mlo_ctxt, i);
  131. if (!partner_soc) {
  132. dp_err("partner_soc is NULL");
  133. continue;
  134. }
  135. be_partner_soc = dp_get_be_soc_from_dp_soc(partner_soc);
  136. for (pool_id = 0; pool_id < MAX_RXDESC_POOLS; pool_id++) {
  137. qdf_status =
  138. dp_hw_cookie_conversion_init
  139. (be_soc,
  140. &be_partner_soc->rx_cc_ctx[pool_id]);
  141. if (!QDF_IS_STATUS_SUCCESS(qdf_status)) {
  142. dp_alert("MLO partner soc RX CC init failed");
  143. return qdf_status;
  144. }
  145. }
  146. }
  147. return qdf_status;
  148. }
  149. static void dp_mlo_soc_drain_rx_buf(struct dp_soc *soc, void *arg)
  150. {
  151. uint8_t i = 0;
  152. uint8_t cpu = 0;
  153. uint8_t rx_ring_mask[WLAN_CFG_INT_NUM_CONTEXTS] = {0};
  154. uint8_t rx_err_ring_mask[WLAN_CFG_INT_NUM_CONTEXTS] = {0};
  155. uint8_t rx_wbm_rel_ring_mask[WLAN_CFG_INT_NUM_CONTEXTS] = {0};
  156. uint8_t reo_status_ring_mask[WLAN_CFG_INT_NUM_CONTEXTS] = {0};
  157. /* Save the current interrupt mask and disable the interrupts */
  158. for (i = 0; i < wlan_cfg_get_num_contexts(soc->wlan_cfg_ctx); i++) {
  159. rx_ring_mask[i] = soc->intr_ctx[i].rx_ring_mask;
  160. rx_err_ring_mask[i] = soc->intr_ctx[i].rx_err_ring_mask;
  161. rx_wbm_rel_ring_mask[i] = soc->intr_ctx[i].rx_wbm_rel_ring_mask;
  162. reo_status_ring_mask[i] = soc->intr_ctx[i].reo_status_ring_mask;
  163. soc->intr_ctx[i].rx_ring_mask = 0;
  164. soc->intr_ctx[i].rx_err_ring_mask = 0;
  165. soc->intr_ctx[i].rx_wbm_rel_ring_mask = 0;
  166. soc->intr_ctx[i].reo_status_ring_mask = 0;
  167. }
  168. /* make sure dp_service_srngs not running on any of the CPU */
  169. for (cpu = 0; cpu < NR_CPUS; cpu++) {
  170. while (qdf_atomic_test_bit(cpu,
  171. &soc->service_rings_running))
  172. ;
  173. }
  174. for (i = 0; i < wlan_cfg_get_num_contexts(soc->wlan_cfg_ctx); i++) {
  175. uint8_t ring = 0;
  176. uint32_t num_entries = 0;
  177. hal_ring_handle_t hal_ring_hdl = NULL;
  178. uint8_t rx_mask = wlan_cfg_get_rx_ring_mask(
  179. soc->wlan_cfg_ctx, i);
  180. uint8_t rx_err_mask = wlan_cfg_get_rx_err_ring_mask(
  181. soc->wlan_cfg_ctx, i);
  182. uint8_t rx_wbm_rel_mask = wlan_cfg_get_rx_wbm_rel_ring_mask(
  183. soc->wlan_cfg_ctx, i);
  184. if (rx_mask) {
  185. /* iterate through each reo ring and process the buf */
  186. for (ring = 0; ring < soc->num_reo_dest_rings; ring++) {
  187. if (!(rx_mask & (1 << ring)))
  188. continue;
  189. hal_ring_hdl =
  190. soc->reo_dest_ring[ring].hal_srng;
  191. num_entries = hal_srng_get_num_entries(
  192. soc->hal_soc,
  193. hal_ring_hdl);
  194. dp_rx_process_be(&soc->intr_ctx[i],
  195. hal_ring_hdl,
  196. ring,
  197. num_entries);
  198. }
  199. }
  200. /* Process REO Exception ring */
  201. if (rx_err_mask) {
  202. hal_ring_hdl = soc->reo_exception_ring.hal_srng;
  203. num_entries = hal_srng_get_num_entries(
  204. soc->hal_soc,
  205. hal_ring_hdl);
  206. dp_rx_err_process(&soc->intr_ctx[i], soc,
  207. hal_ring_hdl, num_entries);
  208. }
  209. /* Process Rx WBM release ring */
  210. if (rx_wbm_rel_mask) {
  211. hal_ring_hdl = soc->rx_rel_ring.hal_srng;
  212. num_entries = hal_srng_get_num_entries(
  213. soc->hal_soc,
  214. hal_ring_hdl);
  215. dp_rx_wbm_err_process(&soc->intr_ctx[i], soc,
  216. hal_ring_hdl, num_entries);
  217. }
  218. }
  219. /* restore the interrupt mask */
  220. for (i = 0; i < wlan_cfg_get_num_contexts(soc->wlan_cfg_ctx); i++) {
  221. soc->intr_ctx[i].rx_ring_mask = rx_ring_mask[i];
  222. soc->intr_ctx[i].rx_err_ring_mask = rx_err_ring_mask[i];
  223. soc->intr_ctx[i].rx_wbm_rel_ring_mask = rx_wbm_rel_ring_mask[i];
  224. soc->intr_ctx[i].reo_status_ring_mask = reo_status_ring_mask[i];
  225. }
  226. }
  227. static void dp_mlo_soc_setup(struct cdp_soc_t *soc_hdl,
  228. struct cdp_mlo_ctxt *cdp_ml_ctxt)
  229. {
  230. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  231. struct dp_mlo_ctxt *mlo_ctxt = cdp_mlo_ctx_to_dp(cdp_ml_ctxt);
  232. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  233. uint8_t pdev_id;
  234. if (!cdp_ml_ctxt)
  235. return;
  236. be_soc->ml_ctxt = mlo_ctxt;
  237. for (pdev_id = 0; pdev_id < MAX_PDEV_CNT; pdev_id++) {
  238. if (soc->pdev_list[pdev_id])
  239. dp_mlo_update_link_to_pdev_map(soc,
  240. soc->pdev_list[pdev_id]);
  241. }
  242. dp_mlo_set_soc_by_chip_id(mlo_ctxt, soc, be_soc->mlo_chip_id);
  243. }
  244. static void dp_mlo_soc_teardown(struct cdp_soc_t *soc_hdl,
  245. struct cdp_mlo_ctxt *cdp_ml_ctxt,
  246. bool is_force_down)
  247. {
  248. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  249. struct dp_mlo_ctxt *mlo_ctxt = cdp_mlo_ctx_to_dp(cdp_ml_ctxt);
  250. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  251. if (!cdp_ml_ctxt)
  252. return;
  253. /* During the teardown drain the Rx buffers if any exist in the ring */
  254. dp_mcast_mlo_iter_ptnr_soc(be_soc,
  255. dp_mlo_soc_drain_rx_buf,
  256. NULL);
  257. dp_mlo_set_soc_by_chip_id(mlo_ctxt, NULL, be_soc->mlo_chip_id);
  258. }
  259. static QDF_STATUS dp_mlo_add_ptnr_vdev(struct dp_vdev *vdev1,
  260. struct dp_vdev *vdev2,
  261. struct dp_soc *soc, uint8_t pdev_id)
  262. {
  263. struct dp_soc_be *soc_be = dp_get_be_soc_from_dp_soc(soc);
  264. struct dp_vdev_be *vdev2_be = dp_get_be_vdev_from_dp_vdev(vdev2);
  265. /* return when valid entry exists */
  266. if (vdev2_be->partner_vdev_list[soc_be->mlo_chip_id][pdev_id] !=
  267. CDP_INVALID_VDEV_ID)
  268. return QDF_STATUS_SUCCESS;
  269. if (dp_vdev_get_ref(soc, vdev1, DP_MOD_ID_RX) !=
  270. QDF_STATUS_SUCCESS) {
  271. qdf_info("%pK: unable to get vdev reference vdev %pK vdev_id %u",
  272. soc, vdev1, vdev1->vdev_id);
  273. return QDF_STATUS_E_FAILURE;
  274. }
  275. vdev2_be->partner_vdev_list[soc_be->mlo_chip_id][pdev_id] =
  276. vdev1->vdev_id;
  277. mlo_debug("Add vdev%d to vdev%d list, mlo_chip_id = %d pdev_id = %d\n",
  278. vdev1->vdev_id, vdev2->vdev_id, soc_be->mlo_chip_id, pdev_id);
  279. return QDF_STATUS_SUCCESS;
  280. }
  281. QDF_STATUS dp_update_mlo_ptnr_list(struct cdp_soc_t *soc_hdl,
  282. int8_t partner_vdev_ids[], uint8_t num_vdevs,
  283. uint8_t self_vdev_id)
  284. {
  285. int i, j;
  286. struct dp_soc *self_soc = cdp_soc_t_to_dp_soc(soc_hdl);
  287. struct dp_vdev *self_vdev;
  288. QDF_STATUS ret = QDF_STATUS_SUCCESS;
  289. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(self_soc);
  290. struct dp_mlo_ctxt *dp_mlo = be_soc->ml_ctxt;
  291. if (!dp_mlo)
  292. return QDF_STATUS_E_FAILURE;
  293. self_vdev = dp_vdev_get_ref_by_id(self_soc, self_vdev_id, DP_MOD_ID_RX);
  294. if (!self_vdev)
  295. return QDF_STATUS_E_FAILURE;
  296. /* go through the input vdev id list and if there are partner vdevs,
  297. * - then add the current vdev's id to partner vdev's list using pdev_id and
  298. * increase the reference
  299. * - add partner vdev to self list and increase the reference
  300. */
  301. for (i = 0; i < num_vdevs; i++) {
  302. if (partner_vdev_ids[i] == CDP_INVALID_VDEV_ID)
  303. continue;
  304. for (j = 0; j < WLAN_MAX_MLO_CHIPS; j++) {
  305. struct dp_soc *soc =
  306. dp_mlo_get_soc_ref_by_chip_id(dp_mlo, j);
  307. if (soc) {
  308. struct dp_vdev *vdev;
  309. vdev = dp_vdev_get_ref_by_id(soc,
  310. partner_vdev_ids[i], DP_MOD_ID_RX);
  311. if (vdev) {
  312. if (vdev == self_vdev) {
  313. dp_vdev_unref_delete(soc,
  314. vdev, DP_MOD_ID_RX);
  315. /*dp_soc_unref_delete(soc); */
  316. continue;
  317. }
  318. if (qdf_is_macaddr_equal(
  319. (struct qdf_mac_addr *)self_vdev->mld_mac_addr.raw,
  320. (struct qdf_mac_addr *)vdev->mld_mac_addr.raw)) {
  321. if (dp_mlo_add_ptnr_vdev(self_vdev,
  322. vdev, self_soc,
  323. self_vdev->pdev->pdev_id) !=
  324. QDF_STATUS_SUCCESS) {
  325. dp_err("Unable to add self to partner vdev's list");
  326. dp_vdev_unref_delete(soc,
  327. vdev, DP_MOD_ID_RX);
  328. /* TODO - release soc ref here */
  329. /* dp_soc_unref_delete(soc);*/
  330. ret = QDF_STATUS_E_FAILURE;
  331. goto exit;
  332. }
  333. /* add to self list */
  334. if (dp_mlo_add_ptnr_vdev(vdev, self_vdev, soc,
  335. vdev->pdev->pdev_id) !=
  336. QDF_STATUS_SUCCESS) {
  337. dp_err("Unable to add vdev to self vdev's list");
  338. dp_vdev_unref_delete(self_soc,
  339. vdev, DP_MOD_ID_RX);
  340. /* TODO - release soc ref here */
  341. /* dp_soc_unref_delete(soc);*/
  342. ret = QDF_STATUS_E_FAILURE;
  343. goto exit;
  344. }
  345. }
  346. dp_vdev_unref_delete(soc, vdev,
  347. DP_MOD_ID_RX);
  348. } /* vdev */
  349. /* TODO - release soc ref here */
  350. /* dp_soc_unref_delete(soc); */
  351. } /* soc */
  352. } /* for */
  353. } /* for */
  354. exit:
  355. dp_vdev_unref_delete(self_soc, self_vdev, DP_MOD_ID_RX);
  356. return ret;
  357. }
  358. void dp_clr_mlo_ptnr_list(struct dp_soc *soc, struct dp_vdev *vdev)
  359. {
  360. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  361. struct dp_vdev_be *vdev_be = dp_get_be_vdev_from_dp_vdev(vdev);
  362. struct dp_mlo_ctxt *dp_mlo = be_soc->ml_ctxt;
  363. uint8_t soc_id = be_soc->mlo_chip_id;
  364. uint8_t pdev_id = vdev->pdev->pdev_id;
  365. int i, j;
  366. for (i = 0; i < WLAN_MAX_MLO_CHIPS; i++) {
  367. for (j = 0; j < WLAN_MAX_MLO_LINKS_PER_SOC; j++) {
  368. struct dp_vdev *pr_vdev;
  369. struct dp_soc *pr_soc;
  370. struct dp_soc_be *pr_soc_be;
  371. struct dp_pdev *pr_pdev;
  372. struct dp_vdev_be *pr_vdev_be;
  373. if (vdev_be->partner_vdev_list[i][j] ==
  374. CDP_INVALID_VDEV_ID)
  375. continue;
  376. pr_soc = dp_mlo_get_soc_ref_by_chip_id(dp_mlo, i);
  377. if (!pr_soc)
  378. continue;
  379. pr_soc_be = dp_get_be_soc_from_dp_soc(pr_soc);
  380. pr_vdev = dp_vdev_get_ref_by_id(pr_soc,
  381. vdev_be->partner_vdev_list[i][j],
  382. DP_MOD_ID_RX);
  383. if (!pr_vdev)
  384. continue;
  385. /* release ref and remove self vdev from partner list */
  386. pr_vdev_be = dp_get_be_vdev_from_dp_vdev(pr_vdev);
  387. dp_vdev_unref_delete(soc, vdev, DP_MOD_ID_RX);
  388. pr_vdev_be->partner_vdev_list[soc_id][pdev_id] =
  389. CDP_INVALID_VDEV_ID;
  390. /* release ref and remove partner vdev from self list */
  391. dp_vdev_unref_delete(pr_soc, pr_vdev, DP_MOD_ID_RX);
  392. pr_pdev = pr_vdev->pdev;
  393. vdev_be->partner_vdev_list[pr_soc_be->mlo_chip_id][pr_pdev->pdev_id] =
  394. CDP_INVALID_VDEV_ID;
  395. dp_vdev_unref_delete(pr_soc, pr_vdev, DP_MOD_ID_RX);
  396. }
  397. }
  398. }
  399. static void dp_mlo_setup_complete(struct cdp_mlo_ctxt *cdp_ml_ctxt)
  400. {
  401. struct dp_mlo_ctxt *mlo_ctxt = cdp_mlo_ctx_to_dp(cdp_ml_ctxt);
  402. int i;
  403. struct dp_soc *soc;
  404. struct dp_soc_be *be_soc;
  405. QDF_STATUS qdf_status;
  406. if (!cdp_ml_ctxt)
  407. return;
  408. for (i = 0; i < WLAN_MAX_MLO_CHIPS; i++) {
  409. soc = dp_mlo_get_soc_ref_by_chip_id(mlo_ctxt, i);
  410. if (!soc)
  411. continue;
  412. be_soc = dp_get_be_soc_from_dp_soc(soc);
  413. qdf_status = dp_partner_soc_rx_hw_cc_init(mlo_ctxt, be_soc);
  414. if (!QDF_IS_STATUS_SUCCESS(qdf_status)) {
  415. dp_alert("MLO partner SOC Rx desc CC init failed");
  416. qdf_assert_always(0);
  417. }
  418. }
  419. }
  420. static void dp_mlo_update_delta_tsf2(struct cdp_soc_t *soc_hdl,
  421. uint8_t pdev_id, uint64_t delta_tsf2)
  422. {
  423. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  424. struct dp_pdev *pdev;
  425. struct dp_pdev_be *be_pdev;
  426. pdev = dp_get_pdev_from_soc_pdev_id_wifi3((struct dp_soc *)soc,
  427. pdev_id);
  428. if (!pdev) {
  429. dp_err("pdev is NULL for pdev_id %u", pdev_id);
  430. return;
  431. }
  432. be_pdev = dp_get_be_pdev_from_dp_pdev(pdev);
  433. be_pdev->delta_tsf2 = delta_tsf2;
  434. }
  435. static void dp_mlo_update_delta_tqm(struct cdp_soc_t *soc_hdl,
  436. uint64_t delta_tqm)
  437. {
  438. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  439. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  440. be_soc->delta_tqm = delta_tqm;
  441. }
  442. static void dp_mlo_update_mlo_ts_offset(struct cdp_soc_t *soc_hdl,
  443. uint64_t offset)
  444. {
  445. struct dp_soc *soc = cdp_soc_t_to_dp_soc(soc_hdl);
  446. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  447. be_soc->mlo_tstamp_offset = offset;
  448. }
  449. static struct cdp_mlo_ops dp_mlo_ops = {
  450. .mlo_soc_setup = dp_mlo_soc_setup,
  451. .mlo_soc_teardown = dp_mlo_soc_teardown,
  452. .update_mlo_ptnr_list = dp_update_mlo_ptnr_list,
  453. .mlo_setup_complete = dp_mlo_setup_complete,
  454. .mlo_update_delta_tsf2 = dp_mlo_update_delta_tsf2,
  455. .mlo_update_delta_tqm = dp_mlo_update_delta_tqm,
  456. .mlo_update_mlo_ts_offset = dp_mlo_update_mlo_ts_offset,
  457. .mlo_ctxt_attach = dp_mlo_ctxt_attach_wifi3,
  458. .mlo_ctxt_detach = dp_mlo_ctxt_detach_wifi3,
  459. };
  460. void dp_soc_mlo_fill_params(struct dp_soc *soc,
  461. struct cdp_soc_attach_params *params)
  462. {
  463. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  464. if (!params->mlo_enabled) {
  465. dp_warn("MLO not enabled on SOC");
  466. return;
  467. }
  468. be_soc->mlo_chip_id = params->mlo_chip_id;
  469. be_soc->ml_ctxt = cdp_mlo_ctx_to_dp(params->ml_context);
  470. be_soc->mlo_enabled = 1;
  471. soc->cdp_soc.ops->mlo_ops = &dp_mlo_ops;
  472. }
  473. void dp_mlo_update_link_to_pdev_map(struct dp_soc *soc, struct dp_pdev *pdev)
  474. {
  475. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  476. struct dp_pdev_be *be_pdev = dp_get_be_pdev_from_dp_pdev(pdev);
  477. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  478. uint8_t link_id;
  479. if (!be_soc->mlo_enabled)
  480. return;
  481. if (!ml_ctxt)
  482. return;
  483. link_id = be_pdev->mlo_link_id;
  484. if (link_id < WLAN_MAX_MLO_CHIPS * WLAN_MAX_MLO_LINKS_PER_SOC) {
  485. if (!ml_ctxt->link_to_pdev_map[link_id])
  486. ml_ctxt->link_to_pdev_map[link_id] = be_pdev;
  487. else
  488. dp_alert("Attempt to update existing map for link %u",
  489. link_id);
  490. }
  491. }
  492. void dp_mlo_update_link_to_pdev_unmap(struct dp_soc *soc, struct dp_pdev *pdev)
  493. {
  494. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  495. struct dp_pdev_be *be_pdev = dp_get_be_pdev_from_dp_pdev(pdev);
  496. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  497. uint8_t link_id;
  498. if (!be_soc->mlo_enabled)
  499. return;
  500. if (!ml_ctxt)
  501. return;
  502. link_id = be_pdev->mlo_link_id;
  503. if (link_id < WLAN_MAX_MLO_CHIPS * WLAN_MAX_MLO_LINKS_PER_SOC)
  504. ml_ctxt->link_to_pdev_map[link_id] = NULL;
  505. }
  506. static struct dp_pdev_be *
  507. dp_mlo_get_be_pdev_from_link_id(struct dp_mlo_ctxt *ml_ctxt, uint8_t link_id)
  508. {
  509. if (link_id < WLAN_MAX_MLO_CHIPS * WLAN_MAX_MLO_LINKS_PER_SOC)
  510. return ml_ctxt->link_to_pdev_map[link_id];
  511. return NULL;
  512. }
  513. void dp_pdev_mlo_fill_params(struct dp_pdev *pdev,
  514. struct cdp_pdev_attach_params *params)
  515. {
  516. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(pdev->soc);
  517. struct dp_pdev_be *be_pdev = dp_get_be_pdev_from_dp_pdev(pdev);
  518. if (!be_soc->mlo_enabled) {
  519. dp_info("MLO not enabled on SOC");
  520. return;
  521. }
  522. be_pdev->mlo_link_id = params->mlo_link_id;
  523. }
  524. void dp_mlo_partner_chips_map(struct dp_soc *soc,
  525. struct dp_peer *peer,
  526. uint16_t peer_id)
  527. {
  528. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  529. struct dp_mlo_ctxt *mlo_ctxt = NULL;
  530. bool is_ml_peer_id =
  531. HTT_RX_PEER_META_DATA_V1_ML_PEER_VALID_GET(peer_id);
  532. uint8_t chip_id;
  533. struct dp_soc *temp_soc;
  534. /* for non ML peer dont map on partner chips*/
  535. if (!is_ml_peer_id)
  536. return;
  537. mlo_ctxt = be_soc->ml_ctxt;
  538. if (!mlo_ctxt)
  539. return;
  540. qdf_spin_lock_bh(&mlo_ctxt->ml_soc_list_lock);
  541. for (chip_id = 0; chip_id < DP_MAX_MLO_CHIPS; chip_id++) {
  542. temp_soc = mlo_ctxt->ml_soc_list[chip_id];
  543. if (!temp_soc)
  544. continue;
  545. /* skip if this is current soc */
  546. if (temp_soc == soc)
  547. continue;
  548. dp_peer_find_id_to_obj_add(temp_soc, peer, peer_id);
  549. }
  550. qdf_spin_unlock_bh(&mlo_ctxt->ml_soc_list_lock);
  551. }
  552. qdf_export_symbol(dp_mlo_partner_chips_map);
  553. void dp_mlo_partner_chips_unmap(struct dp_soc *soc,
  554. uint16_t peer_id)
  555. {
  556. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  557. struct dp_mlo_ctxt *mlo_ctxt = be_soc->ml_ctxt;
  558. bool is_ml_peer_id =
  559. HTT_RX_PEER_META_DATA_V1_ML_PEER_VALID_GET(peer_id);
  560. uint8_t chip_id;
  561. struct dp_soc *temp_soc;
  562. if (!is_ml_peer_id)
  563. return;
  564. if (!mlo_ctxt)
  565. return;
  566. qdf_spin_lock_bh(&mlo_ctxt->ml_soc_list_lock);
  567. for (chip_id = 0; chip_id < DP_MAX_MLO_CHIPS; chip_id++) {
  568. temp_soc = mlo_ctxt->ml_soc_list[chip_id];
  569. if (!temp_soc)
  570. continue;
  571. /* skip if this is current soc */
  572. if (temp_soc == soc)
  573. continue;
  574. dp_peer_find_id_to_obj_remove(temp_soc, peer_id);
  575. }
  576. qdf_spin_unlock_bh(&mlo_ctxt->ml_soc_list_lock);
  577. }
  578. qdf_export_symbol(dp_mlo_partner_chips_unmap);
  579. uint8_t dp_mlo_get_chip_id(struct dp_soc *soc)
  580. {
  581. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  582. return be_soc->mlo_chip_id;
  583. }
  584. qdf_export_symbol(dp_mlo_get_chip_id);
  585. struct dp_peer *
  586. dp_link_peer_hash_find_by_chip_id(struct dp_soc *soc,
  587. uint8_t *peer_mac_addr,
  588. int mac_addr_is_aligned,
  589. uint8_t vdev_id,
  590. uint8_t chip_id,
  591. enum dp_mod_id mod_id)
  592. {
  593. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  594. struct dp_mlo_ctxt *mlo_ctxt = be_soc->ml_ctxt;
  595. struct dp_soc *link_peer_soc = NULL;
  596. struct dp_peer *peer = NULL;
  597. if (!mlo_ctxt)
  598. return NULL;
  599. link_peer_soc = dp_mlo_get_soc_ref_by_chip_id(mlo_ctxt, chip_id);
  600. if (!link_peer_soc)
  601. return NULL;
  602. peer = dp_peer_find_hash_find(link_peer_soc, peer_mac_addr,
  603. mac_addr_is_aligned, vdev_id,
  604. mod_id);
  605. qdf_atomic_dec(&link_peer_soc->ref_count);
  606. return peer;
  607. }
  608. qdf_export_symbol(dp_link_peer_hash_find_by_chip_id);
  609. void dp_mlo_get_rx_hash_key(struct dp_soc *soc,
  610. struct cdp_lro_hash_config *lro_hash)
  611. {
  612. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  613. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  614. if (!be_soc->mlo_enabled || !ml_ctxt)
  615. return dp_get_rx_hash_key_bytes(lro_hash);
  616. qdf_mem_copy(lro_hash->toeplitz_hash_ipv4, ml_ctxt->toeplitz_hash_ipv4,
  617. (sizeof(lro_hash->toeplitz_hash_ipv4[0]) *
  618. LRO_IPV4_SEED_ARR_SZ));
  619. qdf_mem_copy(lro_hash->toeplitz_hash_ipv6, ml_ctxt->toeplitz_hash_ipv6,
  620. (sizeof(lro_hash->toeplitz_hash_ipv6[0]) *
  621. LRO_IPV6_SEED_ARR_SZ));
  622. }
  623. void dp_mlo_set_rx_fst(struct dp_soc *soc, struct dp_rx_fst *fst)
  624. {
  625. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  626. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  627. if (be_soc->mlo_enabled && ml_ctxt)
  628. ml_ctxt->rx_fst = fst;
  629. }
  630. struct dp_rx_fst *dp_mlo_get_rx_fst(struct dp_soc *soc)
  631. {
  632. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  633. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  634. if (be_soc->mlo_enabled && ml_ctxt)
  635. return ml_ctxt->rx_fst;
  636. return NULL;
  637. }
  638. void dp_mlo_rx_fst_ref(struct dp_soc *soc)
  639. {
  640. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  641. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  642. if (be_soc->mlo_enabled && ml_ctxt)
  643. ml_ctxt->rx_fst_ref_cnt++;
  644. }
  645. uint8_t dp_mlo_rx_fst_deref(struct dp_soc *soc)
  646. {
  647. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  648. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  649. uint8_t rx_fst_ref_cnt;
  650. if (be_soc->mlo_enabled && ml_ctxt) {
  651. rx_fst_ref_cnt = ml_ctxt->rx_fst_ref_cnt;
  652. ml_ctxt->rx_fst_ref_cnt--;
  653. return rx_fst_ref_cnt;
  654. }
  655. return 1;
  656. }
  657. struct dp_soc *
  658. dp_rx_replensih_soc_get(struct dp_soc *soc, uint8_t chip_id)
  659. {
  660. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  661. struct dp_mlo_ctxt *mlo_ctxt = be_soc->ml_ctxt;
  662. struct dp_soc *replenish_soc;
  663. if (!be_soc->mlo_enabled || !mlo_ctxt)
  664. return soc;
  665. if (be_soc->mlo_chip_id == chip_id)
  666. return soc;
  667. replenish_soc = dp_mlo_get_soc_ref_by_chip_id(mlo_ctxt, chip_id);
  668. if (qdf_unlikely(!replenish_soc)) {
  669. dp_alert("replenish SOC is NULL");
  670. qdf_assert_always(0);
  671. }
  672. return replenish_soc;
  673. }
  674. struct dp_soc *
  675. dp_soc_get_by_idle_bm_id(struct dp_soc *soc, uint8_t idle_bm_id)
  676. {
  677. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  678. struct dp_mlo_ctxt *mlo_ctxt = be_soc->ml_ctxt;
  679. struct dp_soc *partner_soc = NULL;
  680. uint8_t chip_id;
  681. if (!be_soc->mlo_enabled || !mlo_ctxt)
  682. return soc;
  683. for (chip_id = 0; chip_id < WLAN_MAX_MLO_CHIPS; chip_id++) {
  684. partner_soc = dp_mlo_get_soc_ref_by_chip_id(mlo_ctxt, chip_id);
  685. if (!partner_soc)
  686. continue;
  687. if (partner_soc->idle_link_bm_id == idle_bm_id)
  688. return partner_soc;
  689. }
  690. return NULL;
  691. }
  692. #ifdef WLAN_MCAST_MLO
  693. void dp_mcast_mlo_iter_ptnr_soc(struct dp_soc_be *be_soc,
  694. dp_ptnr_soc_iter_func func,
  695. void *arg)
  696. {
  697. int i = 0;
  698. struct dp_mlo_ctxt *dp_mlo = be_soc->ml_ctxt;
  699. for (i = 0; i < WLAN_MAX_MLO_CHIPS ; i++) {
  700. struct dp_soc *ptnr_soc =
  701. dp_mlo_get_soc_ref_by_chip_id(dp_mlo, i);
  702. if (!ptnr_soc)
  703. continue;
  704. (*func)(ptnr_soc, arg);
  705. }
  706. }
  707. qdf_export_symbol(dp_mcast_mlo_iter_ptnr_soc);
  708. void dp_mcast_mlo_iter_ptnr_vdev(struct dp_soc_be *be_soc,
  709. struct dp_vdev_be *be_vdev,
  710. dp_ptnr_vdev_iter_func func,
  711. void *arg,
  712. enum dp_mod_id mod_id)
  713. {
  714. int i = 0;
  715. int j = 0;
  716. struct dp_mlo_ctxt *dp_mlo = be_soc->ml_ctxt;
  717. for (i = 0; i < WLAN_MAX_MLO_CHIPS ; i++) {
  718. struct dp_soc *ptnr_soc =
  719. dp_mlo_get_soc_ref_by_chip_id(dp_mlo, i);
  720. if (!ptnr_soc)
  721. continue;
  722. for (j = 0 ; j < WLAN_MAX_MLO_LINKS_PER_SOC ; j++) {
  723. struct dp_vdev *ptnr_vdev;
  724. ptnr_vdev = dp_vdev_get_ref_by_id(
  725. ptnr_soc,
  726. be_vdev->partner_vdev_list[i][j],
  727. mod_id);
  728. if (!ptnr_vdev)
  729. continue;
  730. (*func)(be_vdev, ptnr_vdev, arg);
  731. dp_vdev_unref_delete(ptnr_vdev->pdev->soc,
  732. ptnr_vdev,
  733. mod_id);
  734. }
  735. }
  736. }
  737. qdf_export_symbol(dp_mcast_mlo_iter_ptnr_vdev);
  738. struct dp_vdev *dp_mlo_get_mcast_primary_vdev(struct dp_soc_be *be_soc,
  739. struct dp_vdev_be *be_vdev,
  740. enum dp_mod_id mod_id)
  741. {
  742. int i = 0;
  743. int j = 0;
  744. struct dp_mlo_ctxt *dp_mlo = be_soc->ml_ctxt;
  745. for (i = 0; i < WLAN_MAX_MLO_CHIPS ; i++) {
  746. struct dp_soc *ptnr_soc =
  747. dp_mlo_get_soc_ref_by_chip_id(dp_mlo, i);
  748. if (!ptnr_soc)
  749. continue;
  750. for (j = 0 ; j < WLAN_MAX_MLO_LINKS_PER_SOC ; j++) {
  751. struct dp_vdev *ptnr_vdev = NULL;
  752. struct dp_vdev_be *be_ptnr_vdev = NULL;
  753. ptnr_vdev = dp_vdev_get_ref_by_id(
  754. ptnr_soc,
  755. be_vdev->partner_vdev_list[i][j],
  756. mod_id);
  757. if (!ptnr_vdev)
  758. continue;
  759. be_ptnr_vdev = dp_get_be_vdev_from_dp_vdev(ptnr_vdev);
  760. if (be_ptnr_vdev->mcast_primary)
  761. return ptnr_vdev;
  762. dp_vdev_unref_delete(be_ptnr_vdev->vdev.pdev->soc,
  763. &be_ptnr_vdev->vdev,
  764. mod_id);
  765. }
  766. }
  767. return NULL;
  768. }
  769. qdf_export_symbol(dp_mlo_get_mcast_primary_vdev);
  770. #endif
  771. static inline uint64_t dp_mlo_get_mlo_ts_offset(struct dp_pdev_be *be_pdev)
  772. {
  773. struct dp_soc *soc;
  774. struct dp_pdev *pdev;
  775. struct dp_soc_be *be_soc;
  776. uint32_t mlo_offset;
  777. pdev = &be_pdev->pdev;
  778. soc = pdev->soc;
  779. be_soc = dp_get_be_soc_from_dp_soc(soc);
  780. mlo_offset = be_soc->mlo_tstamp_offset;
  781. return mlo_offset;
  782. }
  783. int32_t dp_mlo_get_delta_tsf2_wrt_mlo_offset(struct dp_soc *soc,
  784. uint8_t hw_link_id)
  785. {
  786. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  787. struct dp_mlo_ctxt *ml_ctxt = be_soc->ml_ctxt;
  788. struct dp_pdev_be *be_pdev;
  789. int32_t delta_tsf2_mlo_offset;
  790. int32_t mlo_offset, delta_tsf2;
  791. if (!ml_ctxt)
  792. return 0;
  793. be_pdev = dp_mlo_get_be_pdev_from_link_id(ml_ctxt, hw_link_id);
  794. if (!be_pdev)
  795. return 0;
  796. mlo_offset = dp_mlo_get_mlo_ts_offset(be_pdev);
  797. delta_tsf2 = be_pdev->delta_tsf2;
  798. delta_tsf2_mlo_offset = mlo_offset - delta_tsf2;
  799. return delta_tsf2_mlo_offset;
  800. }
  801. int32_t dp_mlo_get_delta_tqm_wrt_mlo_offset(struct dp_soc *soc)
  802. {
  803. struct dp_soc_be *be_soc = dp_get_be_soc_from_dp_soc(soc);
  804. int32_t delta_tqm_mlo_offset;
  805. int32_t mlo_offset, delta_tqm;
  806. mlo_offset = be_soc->mlo_tstamp_offset;
  807. delta_tqm = be_soc->delta_tqm;
  808. delta_tqm_mlo_offset = mlo_offset - delta_tqm;
  809. return delta_tqm_mlo_offset;
  810. }