sde_vbif.c 17 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2015-2020, The Linux Foundation. All rights reserved.
  4. */
  5. #define pr_fmt(fmt) "[drm:%s:%d] " fmt, __func__, __LINE__
  6. #include <linux/debugfs.h>
  7. #include "sde_vbif.h"
  8. #include "sde_hw_vbif.h"
  9. #include "sde_trace.h"
  10. #include "sde_rotator_vbif.h"
  11. #define MAX_XIN_CLIENT 16
  12. /**
  13. * _sde_vbif_wait_for_xin_halt - wait for the xin to halt
  14. * @vbif: Pointer to hardware vbif driver
  15. * @xin_id: Client interface identifier
  16. * @return: 0 if success; error code otherwise
  17. */
  18. static int _sde_vbif_wait_for_xin_halt(struct sde_hw_vbif *vbif, u32 xin_id)
  19. {
  20. ktime_t timeout;
  21. bool status;
  22. int rc;
  23. if (!vbif || !vbif->cap || !vbif->ops.get_xin_halt_status) {
  24. SDE_ERROR("invalid arguments vbif %d\n", !vbif);
  25. return -EINVAL;
  26. }
  27. timeout = ktime_add_us(ktime_get(), vbif->cap->xin_halt_timeout);
  28. for (;;) {
  29. status = vbif->ops.get_xin_halt_status(vbif, xin_id);
  30. if (status)
  31. break;
  32. if (ktime_compare_safe(ktime_get(), timeout) > 0) {
  33. status = vbif->ops.get_xin_halt_status(vbif, xin_id);
  34. break;
  35. }
  36. usleep_range(501, 1000);
  37. }
  38. if (!status) {
  39. rc = -ETIMEDOUT;
  40. SDE_ERROR("VBIF %d client %d not halting. TIMEDOUT.\n",
  41. vbif->idx - VBIF_0, xin_id);
  42. } else {
  43. rc = 0;
  44. SDE_DEBUG("VBIF %d client %d is halted\n",
  45. vbif->idx - VBIF_0, xin_id);
  46. }
  47. return rc;
  48. }
  49. static int _sde_vbif_wait_for_axi_halt(struct sde_hw_vbif *vbif)
  50. {
  51. int rc;
  52. if (!vbif || !vbif->cap || !vbif->ops.get_axi_halt_status) {
  53. SDE_ERROR("invalid arguments vbif %d\n", !vbif);
  54. return -EINVAL;
  55. }
  56. rc = vbif->ops.get_axi_halt_status(vbif);
  57. if (rc)
  58. SDE_ERROR("VBIF %d AXI port(s) not halting. TIMEDOUT.\n",
  59. vbif->idx - VBIF_0);
  60. else
  61. SDE_DEBUG("VBIF %d AXI port(s) halted\n",
  62. vbif->idx - VBIF_0);
  63. return rc;
  64. }
  65. int sde_vbif_halt_plane_xin(struct sde_kms *sde_kms, u32 xin_id, u32 clk_ctrl)
  66. {
  67. struct sde_hw_vbif *vbif = NULL;
  68. struct sde_hw_mdp *mdp;
  69. bool forced_on = false;
  70. bool status;
  71. int rc = 0;
  72. if (!sde_kms) {
  73. SDE_ERROR("invalid argument\n");
  74. return -EINVAL;
  75. }
  76. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  77. SDE_DEBUG("vbif operations not permitted\n");
  78. return 0;
  79. }
  80. vbif = sde_kms->hw_vbif[VBIF_RT];
  81. mdp = sde_kms->hw_mdp;
  82. if (!vbif || !mdp || !vbif->ops.get_xin_halt_status ||
  83. !vbif->ops.set_xin_halt ||
  84. !mdp->ops.setup_clk_force_ctrl) {
  85. SDE_ERROR("invalid vbif or mdp arguments\n");
  86. return -EINVAL;
  87. }
  88. mutex_lock(&vbif->mutex);
  89. SDE_EVT32_VERBOSE(vbif->idx, xin_id);
  90. /*
  91. * If status is 0, then make sure client clock is not gated
  92. * while halting by forcing it ON only if it was not previously
  93. * forced on. If status is 1 then its already halted.
  94. */
  95. status = vbif->ops.get_xin_halt_status(vbif, xin_id);
  96. if (status) {
  97. mutex_unlock(&vbif->mutex);
  98. return 0;
  99. }
  100. forced_on = mdp->ops.setup_clk_force_ctrl(mdp, clk_ctrl, true);
  101. /* send halt request for unused plane's xin client */
  102. vbif->ops.set_xin_halt(vbif, xin_id, true);
  103. rc = _sde_vbif_wait_for_xin_halt(vbif, xin_id);
  104. if (rc) {
  105. SDE_ERROR(
  106. "wait failed for pipe halt:xin_id %u, clk_ctrl %u, rc %u\n",
  107. xin_id, clk_ctrl, rc);
  108. SDE_EVT32(xin_id, clk_ctrl, rc, SDE_EVTLOG_ERROR);
  109. }
  110. /* open xin client to enable transactions */
  111. vbif->ops.set_xin_halt(vbif, xin_id, false);
  112. if (forced_on)
  113. mdp->ops.setup_clk_force_ctrl(mdp, clk_ctrl, false);
  114. mutex_unlock(&vbif->mutex);
  115. return rc;
  116. }
  117. /**
  118. * _sde_vbif_apply_dynamic_ot_limit - determine OT based on usecase parameters
  119. * @vbif: Pointer to hardware vbif driver
  120. * @ot_lim: Pointer to OT limit to be modified
  121. * @params: Pointer to usecase parameters
  122. */
  123. static void _sde_vbif_apply_dynamic_ot_limit(struct sde_hw_vbif *vbif,
  124. u32 *ot_lim, struct sde_vbif_set_ot_params *params)
  125. {
  126. u64 pps;
  127. const struct sde_vbif_dynamic_ot_tbl *tbl;
  128. u32 i;
  129. if (!vbif || !(vbif->cap->features & BIT(SDE_VBIF_QOS_OTLIM)))
  130. return;
  131. /* Dynamic OT setting done only for WFD */
  132. if (!params->is_wfd)
  133. return;
  134. pps = params->frame_rate;
  135. pps *= params->width;
  136. pps *= params->height;
  137. tbl = params->rd ? &vbif->cap->dynamic_ot_rd_tbl :
  138. &vbif->cap->dynamic_ot_wr_tbl;
  139. for (i = 0; i < tbl->count; i++) {
  140. if (pps <= tbl->cfg[i].pps) {
  141. *ot_lim = tbl->cfg[i].ot_limit;
  142. break;
  143. }
  144. }
  145. SDE_DEBUG("vbif:%d xin:%d w:%d h:%d fps:%d pps:%llu ot:%u\n",
  146. vbif->idx - VBIF_0, params->xin_id,
  147. params->width, params->height, params->frame_rate,
  148. pps, *ot_lim);
  149. }
  150. /**
  151. * _sde_vbif_get_ot_limit - get OT based on usecase & configuration parameters
  152. * @vbif: Pointer to hardware vbif driver
  153. * @params: Pointer to usecase parameters
  154. * @return: OT limit
  155. */
  156. static u32 _sde_vbif_get_ot_limit(struct sde_hw_vbif *vbif,
  157. struct sde_vbif_set_ot_params *params)
  158. {
  159. u32 ot_lim = 0;
  160. u32 val;
  161. if (!vbif || !vbif->cap) {
  162. SDE_ERROR("invalid arguments vbif %d\n", !vbif);
  163. return -EINVAL;
  164. }
  165. if (vbif->cap->default_ot_wr_limit && !params->rd)
  166. ot_lim = vbif->cap->default_ot_wr_limit;
  167. else if (vbif->cap->default_ot_rd_limit && params->rd)
  168. ot_lim = vbif->cap->default_ot_rd_limit;
  169. /*
  170. * If default ot is not set from dt/catalog,
  171. * then do not configure it.
  172. */
  173. if (ot_lim == 0)
  174. goto exit;
  175. /* Modify the limits if the target and the use case requires it */
  176. _sde_vbif_apply_dynamic_ot_limit(vbif, &ot_lim, params);
  177. if (vbif && vbif->ops.get_limit_conf) {
  178. val = vbif->ops.get_limit_conf(vbif,
  179. params->xin_id, params->rd);
  180. if (val == ot_lim)
  181. ot_lim = 0;
  182. }
  183. exit:
  184. SDE_DEBUG("vbif:%d xin:%d ot_lim:%d\n",
  185. vbif->idx - VBIF_0, params->xin_id, ot_lim);
  186. return ot_lim;
  187. }
  188. /**
  189. * sde_vbif_set_ot_limit - set OT based on usecase & configuration parameters
  190. * @vbif: Pointer to hardware vbif driver
  191. * @params: Pointer to usecase parameters
  192. *
  193. * Note this function would block waiting for bus halt.
  194. */
  195. void sde_vbif_set_ot_limit(struct sde_kms *sde_kms,
  196. struct sde_vbif_set_ot_params *params)
  197. {
  198. struct sde_hw_vbif *vbif = NULL;
  199. struct sde_hw_mdp *mdp;
  200. bool forced_on = false;
  201. u32 ot_lim;
  202. int ret, i;
  203. if (!sde_kms) {
  204. SDE_ERROR("invalid arguments\n");
  205. return;
  206. }
  207. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  208. SDE_DEBUG("vbif operations not permitted\n");
  209. return;
  210. }
  211. mdp = sde_kms->hw_mdp;
  212. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  213. if (sde_kms->hw_vbif[i] &&
  214. sde_kms->hw_vbif[i]->idx == params->vbif_idx) {
  215. vbif = sde_kms->hw_vbif[i];
  216. break;
  217. }
  218. }
  219. if (!vbif || !mdp) {
  220. SDE_DEBUG("invalid arguments vbif %d mdp %d\n",
  221. vbif != NULL, mdp != NULL);
  222. return;
  223. }
  224. if (!mdp->ops.setup_clk_force_ctrl ||
  225. !vbif->ops.set_limit_conf ||
  226. !vbif->ops.set_xin_halt)
  227. return;
  228. mutex_lock(&vbif->mutex);
  229. SDE_EVT32_VERBOSE(vbif->idx, params->xin_id);
  230. /* set write_gather_en for all write clients */
  231. if (vbif->ops.set_write_gather_en && !params->rd)
  232. vbif->ops.set_write_gather_en(vbif, params->xin_id);
  233. ot_lim = _sde_vbif_get_ot_limit(vbif, params) & 0xFF;
  234. if (ot_lim == 0)
  235. goto exit;
  236. trace_sde_perf_set_ot(params->num, params->xin_id, ot_lim,
  237. params->vbif_idx);
  238. forced_on = mdp->ops.setup_clk_force_ctrl(mdp, params->clk_ctrl, true);
  239. vbif->ops.set_limit_conf(vbif, params->xin_id, params->rd, ot_lim);
  240. vbif->ops.set_xin_halt(vbif, params->xin_id, true);
  241. ret = _sde_vbif_wait_for_xin_halt(vbif, params->xin_id);
  242. if (ret)
  243. SDE_EVT32(vbif->idx, params->xin_id);
  244. vbif->ops.set_xin_halt(vbif, params->xin_id, false);
  245. if (forced_on)
  246. mdp->ops.setup_clk_force_ctrl(mdp, params->clk_ctrl, false);
  247. exit:
  248. mutex_unlock(&vbif->mutex);
  249. }
  250. void mdp_vbif_lock(struct platform_device *parent_pdev, bool enable)
  251. {
  252. struct drm_device *ddev;
  253. struct sde_kms *sde_kms;
  254. struct sde_hw_vbif *vbif = NULL;
  255. int i;
  256. ddev = platform_get_drvdata(parent_pdev);
  257. if (!ddev || !ddev_to_msm_kms(ddev)) {
  258. SDE_ERROR("invalid drm device\n");
  259. return;
  260. }
  261. sde_kms = to_sde_kms(ddev_to_msm_kms(ddev));
  262. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  263. if (sde_kms->hw_vbif[i] &&
  264. sde_kms->hw_vbif[i]->idx == VBIF_RT) {
  265. vbif = sde_kms->hw_vbif[i];
  266. break;
  267. }
  268. }
  269. if (!vbif) {
  270. SDE_DEBUG("invalid vbif structure\n");
  271. return;
  272. }
  273. if (enable)
  274. mutex_lock(&vbif->mutex);
  275. else
  276. mutex_unlock(&vbif->mutex);
  277. }
  278. bool sde_vbif_set_xin_halt(struct sde_kms *sde_kms,
  279. struct sde_vbif_set_xin_halt_params *params)
  280. {
  281. struct sde_hw_vbif *vbif = NULL;
  282. struct sde_hw_mdp *mdp;
  283. bool forced_on = false;
  284. int ret, i;
  285. if (!sde_kms || !params) {
  286. SDE_ERROR("invalid arguments\n");
  287. return false;
  288. }
  289. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  290. SDE_DEBUG("vbif operations not permitted\n");
  291. return true;
  292. }
  293. mdp = sde_kms->hw_mdp;
  294. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  295. if (sde_kms->hw_vbif[i] &&
  296. sde_kms->hw_vbif[i]->idx == params->vbif_idx) {
  297. vbif = sde_kms->hw_vbif[i];
  298. break;
  299. }
  300. }
  301. if (!vbif || !mdp) {
  302. SDE_DEBUG("invalid arguments vbif %d mdp %d\n",
  303. vbif != NULL, mdp != NULL);
  304. return false;
  305. }
  306. if (!mdp->ops.setup_clk_force_ctrl ||
  307. !vbif->ops.set_xin_halt)
  308. return false;
  309. mutex_lock(&vbif->mutex);
  310. SDE_EVT32_VERBOSE(vbif->idx, params->xin_id);
  311. if (params->enable) {
  312. forced_on = mdp->ops.setup_clk_force_ctrl(mdp,
  313. params->clk_ctrl, true);
  314. vbif->ops.set_xin_halt(vbif, params->xin_id, true);
  315. ret = _sde_vbif_wait_for_xin_halt(vbif, params->xin_id);
  316. if (ret)
  317. SDE_EVT32(vbif->idx, params->xin_id, SDE_EVTLOG_ERROR);
  318. } else {
  319. vbif->ops.set_xin_halt(vbif, params->xin_id, false);
  320. if (params->forced_on)
  321. mdp->ops.setup_clk_force_ctrl(mdp,
  322. params->clk_ctrl, false);
  323. }
  324. mutex_unlock(&vbif->mutex);
  325. return forced_on;
  326. }
  327. bool sde_vbif_get_xin_status(struct sde_kms *sde_kms,
  328. struct sde_vbif_get_xin_status_params *params)
  329. {
  330. struct sde_hw_vbif *vbif = NULL;
  331. struct sde_hw_mdp *mdp;
  332. int i, rc;
  333. bool status;
  334. if (!sde_kms || !params) {
  335. SDE_ERROR("invalid arguments\n");
  336. return false;
  337. }
  338. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  339. SDE_DEBUG("vbif operations not permitted\n");
  340. return true;
  341. }
  342. mdp = sde_kms->hw_mdp;
  343. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  344. if (sde_kms->hw_vbif[i] &&
  345. sde_kms->hw_vbif[i]->idx == params->vbif_idx) {
  346. vbif = sde_kms->hw_vbif[i];
  347. break;
  348. }
  349. }
  350. if (!vbif || !mdp) {
  351. SDE_DEBUG("invalid arguments vbif:%d mdp:%d vbif idx:%d\n",
  352. vbif != NULL, mdp != NULL, params->vbif_idx);
  353. return false;
  354. }
  355. if (!mdp->ops.get_clk_ctrl_status ||
  356. !vbif->ops.get_xin_halt_status)
  357. return false;
  358. mutex_lock(&vbif->mutex);
  359. SDE_EVT32_VERBOSE(vbif->idx, params->xin_id);
  360. status = vbif->ops.get_xin_halt_status(vbif, params->xin_id);
  361. if (status) {
  362. rc = !mdp->ops.get_clk_ctrl_status(mdp, params->clk_ctrl,
  363. &status);
  364. if (rc)
  365. status = false;
  366. }
  367. mutex_unlock(&vbif->mutex);
  368. return status;
  369. }
  370. void sde_vbif_set_qos_remap(struct sde_kms *sde_kms,
  371. struct sde_vbif_set_qos_params *params)
  372. {
  373. struct sde_hw_vbif *vbif = NULL;
  374. struct sde_hw_mdp *mdp;
  375. bool forced_on = false;
  376. const struct sde_vbif_qos_tbl *qos_tbl;
  377. int i;
  378. if (!sde_kms || !params || !sde_kms->hw_mdp) {
  379. SDE_ERROR("invalid arguments\n");
  380. return;
  381. }
  382. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  383. SDE_DEBUG("vbif operations not permitted\n");
  384. return;
  385. }
  386. mdp = sde_kms->hw_mdp;
  387. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  388. if (sde_kms->hw_vbif[i] &&
  389. sde_kms->hw_vbif[i]->idx == params->vbif_idx) {
  390. vbif = sde_kms->hw_vbif[i];
  391. break;
  392. }
  393. }
  394. if (!vbif || !vbif->cap) {
  395. SDE_ERROR("invalid vbif %d\n", params->vbif_idx);
  396. return;
  397. }
  398. if (!vbif->ops.set_qos_remap || !mdp->ops.setup_clk_force_ctrl) {
  399. SDE_DEBUG("qos remap not supported\n");
  400. return;
  401. }
  402. if (params->client_type > VBIF_MAX_CLIENT) {
  403. SDE_ERROR("invalid client type:%d\n", params->client_type);
  404. return;
  405. }
  406. qos_tbl = &vbif->cap->qos_tbl[params->client_type];
  407. if (!qos_tbl->npriority_lvl || !qos_tbl->priority_lvl) {
  408. SDE_DEBUG("qos tbl not defined\n");
  409. return;
  410. }
  411. mutex_lock(&vbif->mutex);
  412. forced_on = mdp->ops.setup_clk_force_ctrl(mdp, params->clk_ctrl, true);
  413. for (i = 0; i < qos_tbl->npriority_lvl; i++) {
  414. SDE_DEBUG("vbif:%d xin:%d lvl:%d/%d\n",
  415. params->vbif_idx, params->xin_id, i,
  416. qos_tbl->priority_lvl[i]);
  417. vbif->ops.set_qos_remap(vbif, params->xin_id, i,
  418. qos_tbl->priority_lvl[i]);
  419. }
  420. if (forced_on)
  421. mdp->ops.setup_clk_force_ctrl(mdp, params->clk_ctrl, false);
  422. mutex_unlock(&vbif->mutex);
  423. }
  424. void sde_vbif_clear_errors(struct sde_kms *sde_kms)
  425. {
  426. struct sde_hw_vbif *vbif;
  427. u32 i, pnd, src;
  428. if (!sde_kms) {
  429. SDE_ERROR("invalid argument\n");
  430. return;
  431. }
  432. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  433. SDE_DEBUG("vbif operations not permitted\n");
  434. return;
  435. }
  436. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  437. vbif = sde_kms->hw_vbif[i];
  438. if (vbif && vbif->ops.clear_errors) {
  439. mutex_lock(&vbif->mutex);
  440. vbif->ops.clear_errors(vbif, &pnd, &src);
  441. if (pnd || src) {
  442. SDE_EVT32(i, pnd, src);
  443. SDE_DEBUG("VBIF %d: pnd 0x%X, src 0x%X\n",
  444. vbif->idx - VBIF_0, pnd, src);
  445. }
  446. mutex_unlock(&vbif->mutex);
  447. }
  448. }
  449. }
  450. void sde_vbif_init_memtypes(struct sde_kms *sde_kms)
  451. {
  452. struct sde_hw_vbif *vbif;
  453. int i, j;
  454. if (!sde_kms) {
  455. SDE_ERROR("invalid argument\n");
  456. return;
  457. }
  458. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  459. SDE_DEBUG("vbif operations not permitted\n");
  460. return;
  461. }
  462. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  463. vbif = sde_kms->hw_vbif[i];
  464. if (vbif && vbif->cap && vbif->ops.set_mem_type) {
  465. mutex_lock(&vbif->mutex);
  466. for (j = 0; j < vbif->cap->memtype_count; j++)
  467. vbif->ops.set_mem_type(
  468. vbif, j, vbif->cap->memtype[j]);
  469. mutex_unlock(&vbif->mutex);
  470. }
  471. }
  472. }
  473. void sde_vbif_axi_halt_request(struct sde_kms *sde_kms)
  474. {
  475. struct sde_hw_vbif *vbif;
  476. int i;
  477. if (!sde_kms) {
  478. SDE_ERROR("invalid argument\n");
  479. return;
  480. }
  481. if (!sde_kms_is_vbif_operation_allowed(sde_kms)) {
  482. SDE_DEBUG("vbif operations not permitted\n");
  483. return;
  484. }
  485. for (i = 0; i < ARRAY_SIZE(sde_kms->hw_vbif); i++) {
  486. vbif = sde_kms->hw_vbif[i];
  487. if (vbif && vbif->cap && vbif->ops.set_axi_halt) {
  488. mutex_lock(&vbif->mutex);
  489. vbif->ops.set_axi_halt(vbif);
  490. _sde_vbif_wait_for_axi_halt(vbif);
  491. mutex_unlock(&vbif->mutex);
  492. }
  493. }
  494. }
  495. int sde_vbif_halt_xin_mask(struct sde_kms *sde_kms, u32 xin_id_mask,
  496. bool halt)
  497. {
  498. struct sde_hw_vbif *vbif;
  499. int i = 0, status, rc;
  500. if (!sde_kms) {
  501. SDE_ERROR("invalid argument\n");
  502. return -EINVAL;
  503. }
  504. vbif = sde_kms->hw_vbif[VBIF_RT];
  505. if (!vbif->ops.get_xin_halt_status || !vbif->ops.set_xin_halt)
  506. return 0;
  507. SDE_EVT32(xin_id_mask, halt);
  508. for (i = 0; i < MAX_XIN_CLIENT; i++) {
  509. if (xin_id_mask & BIT(i)) {
  510. /* unhalt the xin-clients */
  511. if (!halt) {
  512. vbif->ops.set_xin_halt(vbif, i, false);
  513. continue;
  514. }
  515. status = vbif->ops.get_xin_halt_status(vbif, i);
  516. if (status)
  517. continue;
  518. /* halt xin-clients and wait for ack */
  519. vbif->ops.set_xin_halt(vbif, i, true);
  520. rc = _sde_vbif_wait_for_xin_halt(vbif, i);
  521. if (rc) {
  522. SDE_ERROR("xin_halt failed for xin:%d, rc:%d\n",
  523. i, rc);
  524. SDE_EVT32(xin_id_mask, i, rc, SDE_EVTLOG_ERROR);
  525. return rc;
  526. }
  527. }
  528. }
  529. return 0;
  530. }
  531. #ifdef CONFIG_DEBUG_FS
  532. void sde_debugfs_vbif_destroy(struct sde_kms *sde_kms)
  533. {
  534. debugfs_remove_recursive(sde_kms->debugfs_vbif);
  535. sde_kms->debugfs_vbif = NULL;
  536. }
  537. int sde_debugfs_vbif_init(struct sde_kms *sde_kms, struct dentry *debugfs_root)
  538. {
  539. char vbif_name[32];
  540. struct dentry *debugfs_vbif;
  541. int i, j;
  542. sde_kms->debugfs_vbif = debugfs_create_dir("vbif", debugfs_root);
  543. if (!sde_kms->debugfs_vbif) {
  544. SDE_ERROR("failed to create vbif debugfs\n");
  545. return -EINVAL;
  546. }
  547. for (i = 0; i < sde_kms->catalog->vbif_count; i++) {
  548. struct sde_vbif_cfg *vbif = &sde_kms->catalog->vbif[i];
  549. snprintf(vbif_name, sizeof(vbif_name), "%d", vbif->id);
  550. debugfs_vbif = debugfs_create_dir(vbif_name,
  551. sde_kms->debugfs_vbif);
  552. debugfs_create_u32("features", 0400, debugfs_vbif,
  553. (u32 *)&vbif->features);
  554. debugfs_create_u32("xin_halt_timeout", 0400, debugfs_vbif,
  555. (u32 *)&vbif->xin_halt_timeout);
  556. debugfs_create_u32("default_rd_ot_limit", 0400, debugfs_vbif,
  557. (u32 *)&vbif->default_ot_rd_limit);
  558. debugfs_create_u32("default_wr_ot_limit", 0400, debugfs_vbif,
  559. (u32 *)&vbif->default_ot_wr_limit);
  560. for (j = 0; j < vbif->dynamic_ot_rd_tbl.count; j++) {
  561. struct sde_vbif_dynamic_ot_cfg *cfg =
  562. &vbif->dynamic_ot_rd_tbl.cfg[j];
  563. snprintf(vbif_name, sizeof(vbif_name),
  564. "dynamic_ot_rd_%d_pps", j);
  565. debugfs_create_u64(vbif_name, 0400, debugfs_vbif,
  566. (u64 *)&cfg->pps);
  567. snprintf(vbif_name, sizeof(vbif_name),
  568. "dynamic_ot_rd_%d_ot_limit", j);
  569. debugfs_create_u32(vbif_name, 0400, debugfs_vbif,
  570. (u32 *)&cfg->ot_limit);
  571. }
  572. for (j = 0; j < vbif->dynamic_ot_wr_tbl.count; j++) {
  573. struct sde_vbif_dynamic_ot_cfg *cfg =
  574. &vbif->dynamic_ot_wr_tbl.cfg[j];
  575. snprintf(vbif_name, sizeof(vbif_name),
  576. "dynamic_ot_wr_%d_pps", j);
  577. debugfs_create_u64(vbif_name, 0400, debugfs_vbif,
  578. (u64 *)&cfg->pps);
  579. snprintf(vbif_name, sizeof(vbif_name),
  580. "dynamic_ot_wr_%d_ot_limit", j);
  581. debugfs_create_u32(vbif_name, 0400, debugfs_vbif,
  582. (u32 *)&cfg->ot_limit);
  583. }
  584. }
  585. return 0;
  586. }
  587. #endif