sde_rsc.c 51 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2016-2021, The Linux Foundation. All rights reserved.
  4. */
  5. #define pr_fmt(fmt) "[sde_rsc:%s:%d]: " fmt, __func__, __LINE__
  6. #include <linux/kernel.h>
  7. #include <linux/debugfs.h>
  8. #include <linux/of.h>
  9. #include <linux/string.h>
  10. #include <linux/of_address.h>
  11. #include <linux/component.h>
  12. #include <linux/slab.h>
  13. #include <linux/mutex.h>
  14. #include <linux/of_platform.h>
  15. #include <linux/delay.h>
  16. #include <linux/uaccess.h>
  17. #include <linux/module.h>
  18. #include <soc/qcom/rpmh.h>
  19. #include <drm/drm_irq.h>
  20. #include "msm_drv.h"
  21. #include "sde_rsc_priv.h"
  22. #include "sde_dbg.h"
  23. #include "sde_trace.h"
  24. #define SDE_RSC_DRV_DBG_NAME "sde_rsc_drv"
  25. #define SDE_RSC_WRAPPER_DBG_NAME "sde_rsc_wrapper"
  26. #define SINGLE_TCS_EXECUTION_TIME_V1 1064000
  27. #define SINGLE_TCS_EXECUTION_TIME_V2 930000
  28. #define RSC_MODE_INSTRUCTION_TIME 100
  29. #define RSC_MODE_THRESHOLD_OVERHEAD 2700
  30. /**
  31. * rsc_min_threshold will be set to MIN_THRESHOLD_OVERHEAD_TIME which
  32. * takes into account back off time + overhead from RSC/RSC_WRAPPER. The
  33. * overhead buffer time is required to be greater than 14. Program it
  34. * with a higher value (3.3 ms), so it has sufficient time to complete
  35. * the sequence in rare cases.
  36. */
  37. #define MIN_THRESHOLD_OVERHEAD_TIME 64
  38. #define DEFAULT_PANEL_FPS 60
  39. #define DEFAULT_PANEL_JITTER_NUMERATOR 2
  40. #define DEFAULT_PANEL_JITTER_DENOMINATOR 1
  41. #define DEFAULT_PANEL_PREFILL_LINES 25
  42. #define DEFAULT_PANEL_VTOTAL (480 + DEFAULT_PANEL_PREFILL_LINES)
  43. #define TICKS_IN_NANO_SECOND 1000000000
  44. #define MAX_BUFFER_SIZE 256
  45. #define CMD_MODE_SWITCH_SUCCESS 0xFFFF
  46. #define VID_MODE_SWITCH_SUCCESS 0xFFFE
  47. #define CLK_MODE_SWITCH_SUCCESS 0xFFFD
  48. #define STATE_UPDATE_NOT_ALLOWED 0xFFFC
  49. /* Primary panel worst case VSYNC expected to be no less than 30fps */
  50. #define PRIMARY_VBLANK_WORST_CASE_MS 34
  51. #define DEFAULT_PANEL_MIN_V_PREFILL 35
  52. static struct sde_rsc_priv *rsc_prv_list[MAX_RSC_COUNT];
  53. static struct device *rpmh_dev[MAX_RSC_COUNT];
  54. /**
  55. * sde_rsc_client_create() - create the client for sde rsc.
  56. * Different displays like DSI, HDMI, DP, WB, etc should call this
  57. * api to register their vote for rpmh. They still need to vote for
  58. * power handle to get the clocks.
  59. * @rsc_index: A client will be created on this RSC. As of now only
  60. * SDE_RSC_INDEX is valid rsc index.
  61. * @name: Caller needs to provide some valid string to identify
  62. * the client. "primary", "dp", "hdmi" are suggested name.
  63. * @is_primary: Caller needs to provide information if client is primary
  64. * or not. Primary client votes will be redirected to
  65. * display rsc.
  66. * @vsync_source: This parameter is only valid for primary display. It provides
  67. * vsync source information
  68. *
  69. * Return: client node pointer.
  70. */
  71. struct sde_rsc_client *sde_rsc_client_create(u32 rsc_index, char *client_name,
  72. enum sde_rsc_client_type client_type, u32 vsync_source)
  73. {
  74. struct sde_rsc_client *client;
  75. struct sde_rsc_priv *rsc;
  76. static int id;
  77. if (!client_name) {
  78. pr_err("client name is null- not supported\n");
  79. return ERR_PTR(-EINVAL);
  80. } else if (rsc_index >= MAX_RSC_COUNT) {
  81. pr_err("invalid rsc index\n");
  82. return ERR_PTR(-EINVAL);
  83. } else if (!rsc_prv_list[rsc_index]) {
  84. pr_debug("rsc not probed yet or not available\n");
  85. return NULL;
  86. }
  87. rsc = rsc_prv_list[rsc_index];
  88. client = kzalloc(sizeof(struct sde_rsc_client), GFP_KERNEL);
  89. if (!client)
  90. return ERR_PTR(-ENOMEM);
  91. mutex_lock(&rsc->client_lock);
  92. strlcpy(client->name, client_name, MAX_RSC_CLIENT_NAME_LEN);
  93. client->current_state = SDE_RSC_IDLE_STATE;
  94. client->rsc_index = rsc_index;
  95. client->id = id;
  96. client->client_type = client_type;
  97. if (client->client_type == SDE_RSC_PRIMARY_DISP_CLIENT) {
  98. rsc->primary_client = client;
  99. rsc->vsync_source = vsync_source;
  100. }
  101. pr_debug("client %s rsc index:%d client_type:%d\n", client_name,
  102. rsc_index, client->client_type);
  103. list_add(&client->list, &rsc->client_list);
  104. id++;
  105. mutex_unlock(&rsc->client_lock);
  106. return client;
  107. }
  108. EXPORT_SYMBOL(sde_rsc_client_create);
  109. /**
  110. * sde_rsc_client_destroy() - Destroy the sde rsc client.
  111. *
  112. * @client: Client pointer provided by sde_rsc_client_create().
  113. *
  114. * Return: none
  115. */
  116. void sde_rsc_client_destroy(struct sde_rsc_client *client)
  117. {
  118. struct sde_rsc_priv *rsc;
  119. enum sde_rsc_state state;
  120. if (!client) {
  121. pr_debug("invalid client\n");
  122. goto end;
  123. } else if (client->rsc_index >= MAX_RSC_COUNT) {
  124. pr_err("invalid rsc index\n");
  125. goto end;
  126. }
  127. pr_debug("client %s destroyed\n", client->name);
  128. rsc = rsc_prv_list[client->rsc_index];
  129. if (!rsc)
  130. goto end;
  131. mutex_lock(&rsc->client_lock);
  132. state = client->current_state;
  133. mutex_unlock(&rsc->client_lock);
  134. if (state != SDE_RSC_IDLE_STATE) {
  135. int wait_vblank_crtc_id;
  136. sde_rsc_client_state_update(client, SDE_RSC_IDLE_STATE, NULL,
  137. SDE_RSC_INVALID_CRTC_ID, &wait_vblank_crtc_id);
  138. /* if vblank wait required at shutdown, use a simple sleep */
  139. if (wait_vblank_crtc_id != SDE_RSC_INVALID_CRTC_ID) {
  140. pr_err("unexpected sleep required on crtc %d at rsc client destroy\n",
  141. wait_vblank_crtc_id);
  142. SDE_EVT32(client->id, state, rsc->current_state,
  143. client->crtc_id, wait_vblank_crtc_id,
  144. SDE_EVTLOG_ERROR);
  145. msleep(PRIMARY_VBLANK_WORST_CASE_MS);
  146. }
  147. }
  148. mutex_lock(&rsc->client_lock);
  149. list_del_init(&client->list);
  150. mutex_unlock(&rsc->client_lock);
  151. kfree(client);
  152. end:
  153. return;
  154. }
  155. EXPORT_SYMBOL(sde_rsc_client_destroy);
  156. struct sde_rsc_event *sde_rsc_register_event(int rsc_index, uint32_t event_type,
  157. void (*cb_func)(uint32_t event_type, void *usr), void *usr)
  158. {
  159. struct sde_rsc_event *evt;
  160. struct sde_rsc_priv *rsc;
  161. if (rsc_index >= MAX_RSC_COUNT) {
  162. pr_err("invalid rsc index:%d\n", rsc_index);
  163. return ERR_PTR(-EINVAL);
  164. } else if (!rsc_prv_list[rsc_index]) {
  165. pr_err("rsc idx:%d not probed yet or not available\n",
  166. rsc_index);
  167. return ERR_PTR(-EINVAL);
  168. } else if (!cb_func || !event_type) {
  169. pr_err("no event or cb func\n");
  170. return ERR_PTR(-EINVAL);
  171. }
  172. rsc = rsc_prv_list[rsc_index];
  173. evt = kzalloc(sizeof(struct sde_rsc_event), GFP_KERNEL);
  174. if (!evt)
  175. return ERR_PTR(-ENOMEM);
  176. evt->event_type = event_type;
  177. evt->rsc_index = rsc_index;
  178. evt->usr = usr;
  179. evt->cb_func = cb_func;
  180. pr_debug("event register type:%d rsc index:%d\n",
  181. event_type, rsc_index);
  182. mutex_lock(&rsc->client_lock);
  183. list_add(&evt->list, &rsc->event_list);
  184. mutex_unlock(&rsc->client_lock);
  185. return evt;
  186. }
  187. EXPORT_SYMBOL(sde_rsc_register_event);
  188. void sde_rsc_unregister_event(struct sde_rsc_event *event)
  189. {
  190. struct sde_rsc_priv *rsc;
  191. if (!event) {
  192. pr_debug("invalid event client\n");
  193. goto end;
  194. } else if (event->rsc_index >= MAX_RSC_COUNT) {
  195. pr_err("invalid rsc index\n");
  196. goto end;
  197. }
  198. pr_debug("event client destroyed\n");
  199. rsc = rsc_prv_list[event->rsc_index];
  200. if (!rsc)
  201. goto end;
  202. mutex_lock(&rsc->client_lock);
  203. list_del_init(&event->list);
  204. mutex_unlock(&rsc->client_lock);
  205. kfree(event);
  206. end:
  207. return;
  208. }
  209. EXPORT_SYMBOL(sde_rsc_unregister_event);
  210. bool is_sde_rsc_available(int rsc_index)
  211. {
  212. if (rsc_index >= MAX_RSC_COUNT) {
  213. pr_err("invalid rsc index:%d\n", rsc_index);
  214. return false;
  215. } else if (!rsc_prv_list[rsc_index]) {
  216. pr_debug("rsc idx:%d not probed yet or not available\n",
  217. rsc_index);
  218. return false;
  219. }
  220. return true;
  221. }
  222. EXPORT_SYMBOL(is_sde_rsc_available);
  223. enum sde_rsc_state get_sde_rsc_current_state(int rsc_index)
  224. {
  225. struct sde_rsc_priv *rsc;
  226. if (rsc_index >= MAX_RSC_COUNT) {
  227. pr_err("invalid rsc index:%d\n", rsc_index);
  228. return SDE_RSC_IDLE_STATE;
  229. } else if (!rsc_prv_list[rsc_index]) {
  230. pr_err("rsc idx:%d not probed yet or not available\n",
  231. rsc_index);
  232. return SDE_RSC_IDLE_STATE;
  233. }
  234. rsc = rsc_prv_list[rsc_index];
  235. return rsc->current_state;
  236. }
  237. EXPORT_SYMBOL(get_sde_rsc_current_state);
  238. static u32 sde_rsc_timer_calculate(struct sde_rsc_priv *rsc,
  239. struct sde_rsc_cmd_config *cmd_config, enum sde_rsc_state state)
  240. {
  241. const u32 cxo_period_ns = 52;
  242. u64 rsc_backoff_time_ns = rsc->backoff_time_ns;
  243. u64 rsc_mode_threshold_time_ns = rsc->mode_threshold_time_ns;
  244. u64 rsc_time_slot_0_ns = rsc->time_slot_0_ns;
  245. u64 rsc_time_slot_1_ns;
  246. const u64 pdc_jitter = 20; /* 20% more */
  247. u64 frame_time_ns, frame_jitter;
  248. u64 line_time_ns, prefill_time_ns;
  249. u64 pdc_backoff_time_ns;
  250. s64 total;
  251. int ret = 0;
  252. u32 default_prefill_lines;
  253. if (cmd_config)
  254. memcpy(&rsc->cmd_config, cmd_config, sizeof(*cmd_config));
  255. /* calculate for 640x480 60 fps resolution by default */
  256. if (!rsc->cmd_config.fps)
  257. rsc->cmd_config.fps = DEFAULT_PANEL_FPS;
  258. if (!rsc->cmd_config.jitter_numer)
  259. rsc->cmd_config.jitter_numer = DEFAULT_PANEL_JITTER_NUMERATOR;
  260. if (!rsc->cmd_config.jitter_denom)
  261. rsc->cmd_config.jitter_denom = DEFAULT_PANEL_JITTER_DENOMINATOR;
  262. if (!rsc->cmd_config.vtotal)
  263. rsc->cmd_config.vtotal = DEFAULT_PANEL_VTOTAL;
  264. default_prefill_lines = (rsc->cmd_config.fps *
  265. DEFAULT_PANEL_MIN_V_PREFILL) / DEFAULT_PANEL_FPS;
  266. if ((state == SDE_RSC_CMD_STATE) || !rsc->cmd_config.prefill_lines)
  267. rsc->cmd_config.prefill_lines = default_prefill_lines;
  268. pr_debug("frame fps:%d jitter_numer:%d jitter_denom:%d vtotal:%d prefill lines:%d\n",
  269. rsc->cmd_config.fps, rsc->cmd_config.jitter_numer,
  270. rsc->cmd_config.jitter_denom, rsc->cmd_config.vtotal,
  271. rsc->cmd_config.prefill_lines);
  272. /* 1 nano second */
  273. frame_time_ns = TICKS_IN_NANO_SECOND;
  274. frame_time_ns = div_u64(frame_time_ns, rsc->cmd_config.fps);
  275. frame_jitter = frame_time_ns * rsc->cmd_config.jitter_numer;
  276. frame_jitter = div_u64(frame_jitter, rsc->cmd_config.jitter_denom);
  277. /* convert it to percentage */
  278. frame_jitter = div_u64(frame_jitter, 100);
  279. line_time_ns = frame_time_ns;
  280. line_time_ns = div_u64(line_time_ns, rsc->cmd_config.vtotal);
  281. prefill_time_ns = line_time_ns * rsc->cmd_config.prefill_lines;
  282. /* only take jitter into account for CMD mode */
  283. if (state == SDE_RSC_CMD_STATE)
  284. total = frame_time_ns - frame_jitter - prefill_time_ns;
  285. else
  286. total = frame_time_ns - prefill_time_ns;
  287. if (total < 0) {
  288. pr_err("invalid total time period time:%llu jiter_time:%llu blanking time:%llu\n",
  289. frame_time_ns, frame_jitter, prefill_time_ns);
  290. total = 0;
  291. }
  292. total = div_u64(total, cxo_period_ns);
  293. rsc->timer_config.static_wakeup_time_ns = total;
  294. pr_debug("frame time:%llu frame jiter_time:%llu\n",
  295. frame_time_ns, frame_jitter);
  296. pr_debug("line time:%llu prefill time ps:%llu\n",
  297. line_time_ns, prefill_time_ns);
  298. pr_debug("static wakeup time:%lld cxo:%u\n", total, cxo_period_ns);
  299. pdc_backoff_time_ns = rsc_backoff_time_ns;
  300. rsc_backoff_time_ns = div_u64(rsc_backoff_time_ns, cxo_period_ns);
  301. rsc->timer_config.rsc_backoff_time_ns = (u32) rsc_backoff_time_ns;
  302. pdc_backoff_time_ns *= pdc_jitter;
  303. pdc_backoff_time_ns = div_u64(pdc_backoff_time_ns, 100);
  304. rsc->timer_config.pdc_backoff_time_ns = (u32) pdc_backoff_time_ns;
  305. rsc_mode_threshold_time_ns =
  306. div_u64(rsc_mode_threshold_time_ns, cxo_period_ns);
  307. rsc->timer_config.rsc_mode_threshold_time_ns
  308. = (u32) rsc_mode_threshold_time_ns;
  309. /* time_slot_0 for mode0 latency */
  310. rsc_time_slot_0_ns = div_u64(rsc_time_slot_0_ns, cxo_period_ns);
  311. rsc->timer_config.rsc_time_slot_0_ns = (u32) rsc_time_slot_0_ns;
  312. /* time_slot_1 for mode1 latency */
  313. rsc_time_slot_1_ns = frame_time_ns;
  314. rsc_time_slot_1_ns = div_u64(rsc_time_slot_1_ns, cxo_period_ns);
  315. rsc->timer_config.rsc_time_slot_1_ns = (u32) rsc_time_slot_1_ns;
  316. /* mode 2 is infinite */
  317. rsc->timer_config.rsc_time_slot_2_ns = 0xFFFFFFFF;
  318. rsc->timer_config.min_threshold_time_ns = MIN_THRESHOLD_OVERHEAD_TIME;
  319. rsc->timer_config.bwi_threshold_time_ns =
  320. rsc->timer_config.rsc_time_slot_0_ns;
  321. /* timer update should be called with client call */
  322. if (cmd_config && rsc->hw_ops.timer_update) {
  323. ret = rsc->hw_ops.timer_update(rsc);
  324. if (ret)
  325. pr_err("sde rsc: hw timer update failed ret:%d\n", ret);
  326. /* rsc init should be called during rsc probe - one time only */
  327. } else if (rsc->hw_ops.init) {
  328. ret = rsc->hw_ops.init(rsc);
  329. if (ret)
  330. pr_err("sde rsc: hw init failed ret:%d\n", ret);
  331. }
  332. return ret;
  333. }
  334. static int sde_rsc_resource_disable(struct sde_rsc_priv *rsc)
  335. {
  336. struct sde_power_handle *phandle;
  337. struct dss_module_power *mp;
  338. if (!rsc) {
  339. pr_err("invalid drv data\n");
  340. return -EINVAL;
  341. }
  342. if (atomic_read(&rsc->resource_refcount) == 0) {
  343. pr_err("%pS: invalid rsc resource disable call\n",
  344. __builtin_return_address(0));
  345. return -EINVAL;
  346. }
  347. if (atomic_dec_return(&rsc->resource_refcount) != 0)
  348. return 0;
  349. phandle = &rsc->phandle;
  350. mp = &phandle->mp;
  351. msm_dss_enable_clk(mp->clk_config, mp->num_clk, false);
  352. sde_power_scale_reg_bus(phandle, VOTE_INDEX_DISABLE, false);
  353. msm_dss_enable_vreg(mp->vreg_config, mp->num_vreg, false);
  354. return 0;
  355. }
  356. static int sde_rsc_resource_enable(struct sde_rsc_priv *rsc)
  357. {
  358. struct sde_power_handle *phandle;
  359. struct dss_module_power *mp;
  360. int rc = 0;
  361. if (!rsc) {
  362. pr_err("invalid drv data\n");
  363. return -EINVAL;
  364. }
  365. if (atomic_inc_return(&rsc->resource_refcount) != 1)
  366. return 0;
  367. phandle = &rsc->phandle;
  368. mp = &phandle->mp;
  369. rc = msm_dss_enable_vreg(mp->vreg_config, mp->num_vreg, true);
  370. if (rc) {
  371. pr_err("failed to enable vregs rc=%d\n", rc);
  372. goto end;
  373. }
  374. rc = sde_power_scale_reg_bus(phandle, VOTE_INDEX_LOW, false);
  375. if (rc) {
  376. pr_err("failed to set reg bus vote rc=%d\n", rc);
  377. goto reg_bus_hdl_err;
  378. }
  379. rc = msm_dss_enable_clk(mp->clk_config, mp->num_clk, true);
  380. if (rc) {
  381. pr_err("clock enable failed rc:%d\n", rc);
  382. goto clk_err;
  383. }
  384. return rc;
  385. clk_err:
  386. sde_power_scale_reg_bus(phandle, VOTE_INDEX_DISABLE, false);
  387. reg_bus_hdl_err:
  388. msm_dss_enable_vreg(mp->vreg_config, mp->num_vreg, false);
  389. end:
  390. atomic_dec(&rsc->resource_refcount);
  391. return rc;
  392. }
  393. static int sde_rsc_switch_to_cmd(struct sde_rsc_priv *rsc,
  394. struct sde_rsc_cmd_config *config,
  395. struct sde_rsc_client *caller_client,
  396. int *wait_vblank_crtc_id)
  397. {
  398. struct sde_rsc_client *client;
  399. int rc = STATE_UPDATE_NOT_ALLOWED;
  400. if (!rsc->primary_client) {
  401. pr_err("primary client not available for cmd state switch\n");
  402. rc = -EINVAL;
  403. goto end;
  404. } else if (caller_client != rsc->primary_client) {
  405. pr_err("primary client state:%d not cmd state request\n",
  406. rsc->primary_client->current_state);
  407. rc = -EINVAL;
  408. goto end;
  409. }
  410. /* update timers - might not be available at next switch */
  411. if (config)
  412. sde_rsc_timer_calculate(rsc, config, SDE_RSC_CMD_STATE);
  413. /**
  414. * rsc clients can still send config at any time. If a config is
  415. * received during cmd_state then vsync_wait will execute with the logic
  416. * below. If a config is received when rsc is in AMC mode; A mode
  417. * switch will do the vsync wait. updated checks still support all cases
  418. * for dynamic mode switch and inline rotation.
  419. */
  420. if (rsc->current_state == SDE_RSC_CMD_STATE) {
  421. rc = 0;
  422. if (config && rsc->version < SDE_RSC_REV_3)
  423. goto vsync_wait;
  424. else
  425. goto end;
  426. }
  427. /* any non-primary clk state client blocks the cmd state switch */
  428. list_for_each_entry(client, &rsc->client_list, list)
  429. if (client->current_state == SDE_RSC_CLK_STATE &&
  430. client->client_type == SDE_RSC_EXTERNAL_DISP_CLIENT)
  431. goto end;
  432. if (rsc->hw_ops.state_update) {
  433. rc = rsc->hw_ops.state_update(rsc, SDE_RSC_CMD_STATE);
  434. if (!rc)
  435. rpmh_mode_solver_set(rsc->rpmh_dev, true);
  436. }
  437. /* vsync wait not needed during VID->CMD switch (rev 4+ HW only) */
  438. if (rsc->current_state == SDE_RSC_VID_STATE &&
  439. rsc->version >= SDE_RSC_REV_4) {
  440. rc = 0;
  441. goto end;
  442. }
  443. vsync_wait:
  444. /* indicate wait for vsync for vid to cmd state switch & cfg update */
  445. if (!rc && (rsc->current_state == SDE_RSC_VID_STATE ||
  446. rsc->current_state == SDE_RSC_CMD_STATE)) {
  447. rsc->post_poms = true;
  448. /* clear VSYNC timestamp for indication when update completes */
  449. if (rsc->hw_ops.hw_vsync)
  450. rsc->hw_ops.hw_vsync(rsc, VSYNC_ENABLE, NULL, 0, 0);
  451. if (!wait_vblank_crtc_id) {
  452. pr_err("invalid crtc id wait pointer, client %d\n",
  453. caller_client->id);
  454. SDE_EVT32(caller_client->id, rsc->current_state,
  455. caller_client->crtc_id,
  456. wait_vblank_crtc_id, SDE_EVTLOG_ERROR);
  457. msleep(PRIMARY_VBLANK_WORST_CASE_MS);
  458. } else {
  459. *wait_vblank_crtc_id = rsc->primary_client->crtc_id;
  460. }
  461. }
  462. end:
  463. return rc;
  464. }
  465. static int sde_rsc_switch_to_clk(struct sde_rsc_priv *rsc,
  466. int *wait_vblank_crtc_id)
  467. {
  468. struct sde_rsc_client *client;
  469. int rc = STATE_UPDATE_NOT_ALLOWED;
  470. bool multi_display_active = false;
  471. bool vid_display_active = false, cmd_display_active = false;
  472. list_for_each_entry(client, &rsc->client_list, list) {
  473. if (client->current_state == SDE_RSC_CLK_STATE &&
  474. client->client_type == SDE_RSC_EXTERNAL_DISP_CLIENT)
  475. multi_display_active = true;
  476. else if (client->current_state == SDE_RSC_VID_STATE)
  477. vid_display_active = true;
  478. else if (client->current_state == SDE_RSC_CMD_STATE)
  479. cmd_display_active = true;
  480. }
  481. pr_debug("multi_display:%d vid_display:%d cmd_display:%d\n",
  482. multi_display_active, vid_display_active, cmd_display_active);
  483. if (!multi_display_active && (vid_display_active || cmd_display_active))
  484. goto end;
  485. if (rsc->hw_ops.state_update) {
  486. rc = rsc->hw_ops.state_update(rsc, SDE_RSC_CLK_STATE);
  487. if (!rc)
  488. rpmh_mode_solver_set(rsc->rpmh_dev, false);
  489. }
  490. /* indicate wait for vsync for cmd/vid to clk state switch */
  491. if (!rc && rsc->primary_client &&
  492. (rsc->current_state == SDE_RSC_CMD_STATE ||
  493. rsc->current_state == SDE_RSC_VID_STATE)) {
  494. /* clear VSYNC timestamp for indication when update completes */
  495. if (rsc->hw_ops.hw_vsync)
  496. rsc->hw_ops.hw_vsync(rsc, VSYNC_ENABLE, NULL, 0, 0);
  497. if (!wait_vblank_crtc_id) {
  498. pr_err("invalid crtc id wait pointer provided\n");
  499. msleep(PRIMARY_VBLANK_WORST_CASE_MS);
  500. } else {
  501. *wait_vblank_crtc_id = rsc->primary_client->crtc_id;
  502. /* increase refcount, so we wait for the next vsync */
  503. atomic_inc(&rsc->rsc_vsync_wait);
  504. SDE_EVT32(atomic_read(&rsc->rsc_vsync_wait));
  505. }
  506. } else if (atomic_read(&rsc->rsc_vsync_wait)) {
  507. SDE_EVT32(rsc->primary_client, rsc->current_state,
  508. atomic_read(&rsc->rsc_vsync_wait));
  509. /* Wait for the vsync, if the refcount is set */
  510. rc = wait_event_timeout(rsc->rsc_vsync_waitq,
  511. atomic_read(&rsc->rsc_vsync_wait) == 0,
  512. msecs_to_jiffies(PRIMARY_VBLANK_WORST_CASE_MS*2));
  513. if (!rc) {
  514. pr_err("Timeout waiting for vsync\n");
  515. rc = -ETIMEDOUT;
  516. SDE_EVT32(atomic_read(&rsc->rsc_vsync_wait), rc,
  517. SDE_EVTLOG_ERROR);
  518. } else {
  519. SDE_EVT32(atomic_read(&rsc->rsc_vsync_wait), rc);
  520. rc = 0;
  521. }
  522. }
  523. end:
  524. return rc;
  525. }
  526. static int sde_rsc_switch_to_vid(struct sde_rsc_priv *rsc,
  527. struct sde_rsc_cmd_config *config,
  528. struct sde_rsc_client *caller_client,
  529. int *wait_vblank_crtc_id)
  530. {
  531. struct sde_rsc_client *client;
  532. int rc = STATE_UPDATE_NOT_ALLOWED;
  533. if (!rsc->primary_client) {
  534. pr_err("primary client not available for vid state switch\n");
  535. rc = -EINVAL;
  536. goto end;
  537. } else if (caller_client != rsc->primary_client) {
  538. pr_err("primary client state:%d not vid state request\n",
  539. rsc->primary_client->current_state);
  540. rc = -EINVAL;
  541. goto end;
  542. }
  543. /* update timers - might not be available at next switch */
  544. if (config)
  545. sde_rsc_timer_calculate(rsc, config, SDE_RSC_VID_STATE);
  546. /**
  547. * rsc clients can still send config at any time. If a config is
  548. * received during vid_state then vsync_wait will execute with the logic
  549. * below.
  550. */
  551. if (rsc->current_state == SDE_RSC_VID_STATE) {
  552. rc = 0;
  553. if (config && rsc->version < SDE_RSC_REV_3)
  554. goto vsync_wait;
  555. else
  556. goto end;
  557. }
  558. /* any non-primary clk state client blocks the vid state switch */
  559. list_for_each_entry(client, &rsc->client_list, list)
  560. if (client->current_state == SDE_RSC_CLK_STATE &&
  561. client->client_type == SDE_RSC_EXTERNAL_DISP_CLIENT)
  562. goto end;
  563. if (rsc->hw_ops.state_update) {
  564. rc = rsc->hw_ops.state_update(rsc, SDE_RSC_VID_STATE);
  565. if (!rc)
  566. rpmh_mode_solver_set(rsc->rpmh_dev,
  567. rsc->version >= SDE_RSC_REV_3);
  568. }
  569. /* vsync wait not needed during CMD->VID switch (rev 4+ HW only) */
  570. if (rsc->current_state == SDE_RSC_CMD_STATE &&
  571. rsc->version >= SDE_RSC_REV_4) {
  572. rc = 0;
  573. goto end;
  574. }
  575. vsync_wait:
  576. /* indicate wait for vsync for vid to cmd state switch & cfg update */
  577. if (!rc && (rsc->current_state == SDE_RSC_VID_STATE ||
  578. rsc->current_state == SDE_RSC_CMD_STATE)) {
  579. rsc->post_poms = true;
  580. /* clear VSYNC timestamp for indication when update completes */
  581. if (rsc->hw_ops.hw_vsync)
  582. rsc->hw_ops.hw_vsync(rsc, VSYNC_ENABLE, NULL, 0, 0);
  583. if (!wait_vblank_crtc_id) {
  584. pr_err("invalid crtc id wait pointer, client %d\n",
  585. caller_client->id);
  586. SDE_EVT32(caller_client->id, rsc->current_state,
  587. caller_client->crtc_id,
  588. wait_vblank_crtc_id, SDE_EVTLOG_ERROR);
  589. msleep(PRIMARY_VBLANK_WORST_CASE_MS);
  590. } else {
  591. *wait_vblank_crtc_id = rsc->primary_client->crtc_id;
  592. }
  593. }
  594. end:
  595. return rc;
  596. }
  597. static int sde_rsc_switch_to_idle(struct sde_rsc_priv *rsc,
  598. struct sde_rsc_cmd_config *config,
  599. struct sde_rsc_client *caller_client,
  600. int *wait_vblank_crtc_id)
  601. {
  602. struct sde_rsc_client *client;
  603. int rc = STATE_UPDATE_NOT_ALLOWED;
  604. bool clk_client_active = false, multi_display_active = false;
  605. bool vid_display_active = false, cmd_display_active = false;
  606. /*
  607. * following code needs to run the loop through each
  608. * client because they might be in different order
  609. * sorting is not possible; only preference is available
  610. */
  611. list_for_each_entry(client, &rsc->client_list, list) {
  612. if (client->current_state == SDE_RSC_CLK_STATE &&
  613. client->client_type == SDE_RSC_EXTERNAL_DISP_CLIENT)
  614. multi_display_active = true;
  615. else if (client->current_state == SDE_RSC_CLK_STATE &&
  616. client->client_type == SDE_RSC_CLK_CLIENT)
  617. clk_client_active = true;
  618. else if (client->current_state == SDE_RSC_VID_STATE)
  619. vid_display_active = true;
  620. else if (client->current_state == SDE_RSC_CMD_STATE)
  621. cmd_display_active = true;
  622. pr_debug("client state:%d type:%d\n",
  623. client->current_state, client->client_type);
  624. }
  625. pr_debug("multi_display:%d clk_client:%d vid_display:%d cmd_display:%d\n",
  626. multi_display_active, clk_client_active, vid_display_active,
  627. cmd_display_active);
  628. if (vid_display_active && !multi_display_active) {
  629. rc = sde_rsc_switch_to_vid(rsc, NULL, rsc->primary_client,
  630. wait_vblank_crtc_id);
  631. if (!rc)
  632. rc = VID_MODE_SWITCH_SUCCESS;
  633. } else if (cmd_display_active && !multi_display_active) {
  634. rc = sde_rsc_switch_to_cmd(rsc, NULL, rsc->primary_client,
  635. wait_vblank_crtc_id);
  636. if (!rc)
  637. rc = CMD_MODE_SWITCH_SUCCESS;
  638. } else if (clk_client_active) {
  639. rc = sde_rsc_switch_to_clk(rsc, wait_vblank_crtc_id);
  640. if (!rc)
  641. rc = CLK_MODE_SWITCH_SUCCESS;
  642. } else if (rsc->hw_ops.state_update) {
  643. rc = rsc->hw_ops.state_update(rsc, SDE_RSC_IDLE_STATE);
  644. rsc->post_poms = false;
  645. if (!rc)
  646. rpmh_mode_solver_set(rsc->rpmh_dev, true);
  647. }
  648. return rc;
  649. }
  650. /**
  651. * sde_rsc_client_get_vsync_refcount() - returns the status of the vsync
  652. * refcount, to signal if the client needs to reset the refcounting logic
  653. * @client: Client pointer provided by sde_rsc_client_create().
  654. *
  655. * Return: value of the vsync refcount.
  656. */
  657. int sde_rsc_client_get_vsync_refcount(
  658. struct sde_rsc_client *caller_client)
  659. {
  660. struct sde_rsc_priv *rsc;
  661. if (!caller_client) {
  662. pr_err("invalid client for rsc state update\n");
  663. return -EINVAL;
  664. } else if (caller_client->rsc_index >= MAX_RSC_COUNT) {
  665. pr_err("invalid rsc index\n");
  666. return -EINVAL;
  667. }
  668. rsc = rsc_prv_list[caller_client->rsc_index];
  669. if (!rsc)
  670. return 0;
  671. return atomic_read(&rsc->rsc_vsync_wait);
  672. }
  673. /**
  674. * sde_rsc_client_reset_vsync_refcount() - reduces the refcounting
  675. * logic that waits for the vsync.
  676. * @client: Client pointer provided by sde_rsc_client_create().
  677. *
  678. * Return: zero if refcount was already zero.
  679. */
  680. int sde_rsc_client_reset_vsync_refcount(
  681. struct sde_rsc_client *caller_client)
  682. {
  683. struct sde_rsc_priv *rsc;
  684. int ret;
  685. if (!caller_client) {
  686. pr_err("invalid client for rsc state update\n");
  687. return -EINVAL;
  688. } else if (caller_client->rsc_index >= MAX_RSC_COUNT) {
  689. pr_err("invalid rsc index\n");
  690. return -EINVAL;
  691. }
  692. rsc = rsc_prv_list[caller_client->rsc_index];
  693. if (!rsc)
  694. return 0;
  695. ret = atomic_add_unless(&rsc->rsc_vsync_wait, -1, 0);
  696. wake_up_all(&rsc->rsc_vsync_waitq);
  697. SDE_EVT32(atomic_read(&rsc->rsc_vsync_wait));
  698. return ret;
  699. }
  700. /**
  701. * sde_rsc_client_is_state_update_complete() - check if state update is complete
  702. * RSC state transition is not complete until HW receives VBLANK signal. This
  703. * function checks RSC HW to determine whether that signal has been received.
  704. * @client: Client pointer provided by sde_rsc_client_create().
  705. *
  706. * Return: true if the state update has completed.
  707. */
  708. bool sde_rsc_client_is_state_update_complete(
  709. struct sde_rsc_client *caller_client)
  710. {
  711. struct sde_rsc_priv *rsc;
  712. u32 vsync_timestamp0 = 0;
  713. if (!caller_client) {
  714. pr_err("invalid client for rsc state update\n");
  715. return false;
  716. } else if (caller_client->rsc_index >= MAX_RSC_COUNT) {
  717. pr_err("invalid rsc index\n");
  718. return false;
  719. }
  720. rsc = rsc_prv_list[caller_client->rsc_index];
  721. if (!rsc)
  722. return false;
  723. /**
  724. * state updates clear VSYNC timestamp, check if a new one arrived.
  725. * use VSYNC mode 0 (CMD TE) always for this, per HW recommendation.
  726. */
  727. if (rsc->hw_ops.hw_vsync)
  728. vsync_timestamp0 = rsc->hw_ops.hw_vsync(rsc, VSYNC_READ_VSYNC0,
  729. NULL, 0, 0);
  730. return vsync_timestamp0 != 0;
  731. }
  732. /**
  733. * sde_rsc_client_state_update() - rsc client state update
  734. * Video mode, cmd mode and clk state are suppoed as modes. A client need to
  735. * set this property during panel config time. A switching client can set the
  736. * property to change the state
  737. *
  738. * @client: Client pointer provided by sde_rsc_client_create().
  739. * @state: Client state - video/cmd
  740. * @config: fps, vtotal, porches, etc configuration for command mode
  741. * panel
  742. * @crtc_id: current client's crtc id
  743. * @wait_vblank_crtc_id: Output parameter. If set to non-zero, rsc hw
  744. * state update requires a wait for one vblank on
  745. * the primary crtc. In that case, this output
  746. * param will be set to the crtc on which to wait.
  747. * If SDE_RSC_INVALID_CRTC_ID, no wait necessary
  748. *
  749. * Return: error code.
  750. */
  751. int sde_rsc_client_state_update(struct sde_rsc_client *caller_client,
  752. enum sde_rsc_state state,
  753. struct sde_rsc_cmd_config *config, int crtc_id,
  754. int *wait_vblank_crtc_id)
  755. {
  756. int rc = 0;
  757. struct sde_rsc_priv *rsc;
  758. if (!caller_client) {
  759. pr_err("invalid client for rsc state update\n");
  760. return -EINVAL;
  761. } else if (caller_client->rsc_index >= MAX_RSC_COUNT) {
  762. pr_err("invalid rsc index\n");
  763. return -EINVAL;
  764. }
  765. rsc = rsc_prv_list[caller_client->rsc_index];
  766. if (!rsc)
  767. return -EINVAL;
  768. if (wait_vblank_crtc_id)
  769. *wait_vblank_crtc_id = SDE_RSC_INVALID_CRTC_ID;
  770. mutex_lock(&rsc->client_lock);
  771. SDE_EVT32_VERBOSE(caller_client->id, caller_client->current_state,
  772. state, rsc->current_state, SDE_EVTLOG_FUNC_ENTRY);
  773. pr_debug("%pS: rsc state:%d request client:%s state:%d\n",
  774. __builtin_return_address(0), rsc->current_state,
  775. caller_client->name, state);
  776. /**
  777. * This can only happen if splash is active or qsync is enabled.
  778. * In both cases timers need to be updated for when a transition to
  779. * solver occurs. Update timers now as config might not be available
  780. * at next switch. Updates for cmd/vid are handled when switching to
  781. * those states.
  782. */
  783. if (config && (state == SDE_RSC_CLK_STATE) &&
  784. (caller_client == rsc->primary_client))
  785. sde_rsc_timer_calculate(rsc, config, state);
  786. if ((state == SDE_RSC_VID_STATE) && (rsc->version >= SDE_RSC_REV_3))
  787. state = SDE_RSC_CLK_STATE;
  788. caller_client->crtc_id = crtc_id;
  789. caller_client->current_state = state;
  790. if ((rsc->current_state == state) && !config) {
  791. SDE_EVT32(caller_client->id, caller_client->current_state,
  792. state, rsc->current_state, SDE_EVTLOG_FUNC_CASE3);
  793. goto end;
  794. }
  795. if (rsc->current_state == SDE_RSC_IDLE_STATE)
  796. sde_rsc_resource_enable(rsc);
  797. switch (state) {
  798. case SDE_RSC_IDLE_STATE:
  799. rc = sde_rsc_switch_to_idle(rsc, NULL, rsc->primary_client,
  800. wait_vblank_crtc_id);
  801. if (rc == CMD_MODE_SWITCH_SUCCESS) {
  802. state = SDE_RSC_CMD_STATE;
  803. rc = 0;
  804. } else if (rc == VID_MODE_SWITCH_SUCCESS) {
  805. state = SDE_RSC_VID_STATE;
  806. rc = 0;
  807. } else if (rc == CLK_MODE_SWITCH_SUCCESS) {
  808. state = SDE_RSC_CLK_STATE;
  809. rc = 0;
  810. }
  811. break;
  812. case SDE_RSC_CMD_STATE:
  813. rc = sde_rsc_switch_to_cmd(rsc, config, caller_client,
  814. wait_vblank_crtc_id);
  815. break;
  816. case SDE_RSC_VID_STATE:
  817. rc = sde_rsc_switch_to_vid(rsc, config, caller_client,
  818. wait_vblank_crtc_id);
  819. break;
  820. case SDE_RSC_CLK_STATE:
  821. rc = sde_rsc_switch_to_clk(rsc, wait_vblank_crtc_id);
  822. break;
  823. default:
  824. pr_err("invalid state handling %d\n", state);
  825. break;
  826. }
  827. if (rc == STATE_UPDATE_NOT_ALLOWED) {
  828. rc = 0;
  829. SDE_EVT32(caller_client->id, caller_client->current_state,
  830. state, rsc->current_state, rc, SDE_EVTLOG_FUNC_CASE1);
  831. goto clk_disable;
  832. } else if (rc) {
  833. pr_debug("state:%d update failed rc:%d\n", state, rc);
  834. SDE_EVT32(caller_client->id, caller_client->current_state,
  835. state, rsc->current_state, rc, SDE_EVTLOG_FUNC_CASE2);
  836. goto clk_disable;
  837. }
  838. pr_debug("state switch successfully complete: %d\n", state);
  839. SDE_ATRACE_INT("rsc_state", state);
  840. SDE_EVT32(caller_client->id, caller_client->current_state,
  841. state, rsc->current_state, SDE_EVTLOG_FUNC_EXIT);
  842. rsc->current_state = state;
  843. rsc->update_tcs_content = true;
  844. clk_disable:
  845. if (rsc->current_state == SDE_RSC_IDLE_STATE)
  846. sde_rsc_resource_disable(rsc);
  847. end:
  848. mutex_unlock(&rsc->client_lock);
  849. return rc;
  850. }
  851. EXPORT_SYMBOL(sde_rsc_client_state_update);
  852. /**
  853. * sde_rsc_client_vote() - ab/ib vote from rsc client
  854. *
  855. * @client: Client pointer provided by sde_rsc_client_create().
  856. * @bus_id: data bus for which to be voted
  857. * @ab: aggregated bandwidth vote from client.
  858. * @ib: instant bandwidth vote from client.
  859. *
  860. * Return: error code.
  861. */
  862. int sde_rsc_client_vote(struct sde_rsc_client *caller_client,
  863. u32 bus_id, u64 ab_vote, u64 ib_vote)
  864. {
  865. int rsc_index;
  866. struct sde_rsc_priv *rsc;
  867. if (caller_client && caller_client->rsc_index >= MAX_RSC_COUNT) {
  868. pr_err("invalid rsc client or client index\n");
  869. return -EINVAL;
  870. }
  871. rsc_index = caller_client ? caller_client->rsc_index : SDE_RSC_INDEX;
  872. rsc = rsc_prv_list[rsc_index];
  873. if (!rsc || bus_id >= SDE_POWER_HANDLE_DBUS_ID_MAX)
  874. return -EINVAL;
  875. pr_debug("client:%s ab:%llu ib:%llu\n",
  876. caller_client ? caller_client->name : "unknown",
  877. ab_vote, ib_vote);
  878. mutex_lock(&rsc->client_lock);
  879. rsc->bw_config.new_ab_vote[bus_id] = ab_vote;
  880. rsc->bw_config.new_ib_vote[bus_id] = ib_vote;
  881. mutex_unlock(&rsc->client_lock);
  882. return 0;
  883. }
  884. EXPORT_SYMBOL(sde_rsc_client_vote);
  885. int sde_rsc_client_trigger_vote(struct sde_rsc_client *caller_client,
  886. bool delta_vote)
  887. {
  888. int rc = 0, rsc_index, i;
  889. struct sde_rsc_priv *rsc;
  890. bool bw_increase = false;
  891. if (caller_client && caller_client->rsc_index >= MAX_RSC_COUNT) {
  892. pr_err("invalid rsc index\n");
  893. return -EINVAL;
  894. }
  895. rsc_index = caller_client ? caller_client->rsc_index : SDE_RSC_INDEX;
  896. rsc = rsc_prv_list[rsc_index];
  897. if (!rsc)
  898. return -EINVAL;
  899. pr_debug("client:%s trigger bw delta vote:%d\n",
  900. caller_client ? caller_client->name : "unknown", delta_vote);
  901. mutex_lock(&rsc->client_lock);
  902. if (!delta_vote && !rsc->update_tcs_content &&
  903. (rsc->current_state == SDE_RSC_CLK_STATE))
  904. goto end;
  905. for (i = 0; i < SDE_POWER_HANDLE_DBUS_ID_MAX && delta_vote; i++) {
  906. if (rsc->bw_config.new_ab_vote[i] > rsc->bw_config.ab_vote[i] ||
  907. rsc->bw_config.new_ib_vote[i] > rsc->bw_config.ib_vote[i])
  908. bw_increase = true;
  909. rsc->bw_config.ab_vote[i] = rsc->bw_config.new_ab_vote[i];
  910. rsc->bw_config.ib_vote[i] = rsc->bw_config.new_ib_vote[i];
  911. }
  912. rc = sde_rsc_resource_enable(rsc);
  913. if (rc < 0)
  914. goto end;
  915. if (delta_vote) {
  916. if (rsc->hw_ops.tcs_wait) {
  917. rc = rsc->hw_ops.tcs_wait(rsc);
  918. if (rc) {
  919. pr_err("tcs is still busy; can't send command\n");
  920. if (rsc->hw_ops.tcs_use_ok)
  921. rsc->hw_ops.tcs_use_ok(rsc);
  922. goto tcs_wait_failed;
  923. }
  924. }
  925. rpmh_invalidate(rsc->rpmh_dev);
  926. for (i = 0; i < SDE_POWER_HANDLE_DBUS_ID_MAX; i++)
  927. sde_power_data_bus_set_quota(&rsc->phandle,
  928. i, rsc->bw_config.ab_vote[i],
  929. rsc->bw_config.ib_vote[i]);
  930. rpmh_write_sleep_and_wake(rsc->rpmh_dev);
  931. }
  932. if (rsc->hw_ops.bwi_status &&
  933. (rsc->current_state == SDE_RSC_CMD_STATE ||
  934. rsc->current_state == SDE_RSC_VID_STATE))
  935. rsc->hw_ops.bwi_status(rsc, bw_increase);
  936. else if (rsc->hw_ops.tcs_use_ok)
  937. rsc->hw_ops.tcs_use_ok(rsc);
  938. rsc->update_tcs_content = false;
  939. tcs_wait_failed:
  940. sde_rsc_resource_disable(rsc);
  941. end:
  942. mutex_unlock(&rsc->client_lock);
  943. return rc;
  944. }
  945. EXPORT_SYMBOL(sde_rsc_client_trigger_vote);
  946. #if defined(CONFIG_DEBUG_FS)
  947. void sde_rsc_debug_dump(u32 mux_sel)
  948. {
  949. struct sde_rsc_priv *rsc;
  950. rsc = rsc_prv_list[SDE_RSC_INDEX];
  951. if (!rsc)
  952. return;
  953. /* this must be called with rsc clocks enabled */
  954. if (rsc->hw_ops.debug_dump)
  955. rsc->hw_ops.debug_dump(rsc, mux_sel);
  956. }
  957. static int _sde_debugfs_status_show(struct seq_file *s, void *data)
  958. {
  959. struct sde_rsc_priv *rsc;
  960. struct sde_rsc_client *client;
  961. int ret;
  962. if (!s || !s->private)
  963. return -EINVAL;
  964. rsc = s->private;
  965. mutex_lock(&rsc->client_lock);
  966. seq_printf(s, "rsc current state:%d\n", rsc->current_state);
  967. seq_printf(s, "wraper backoff time(ns):%d\n",
  968. rsc->timer_config.static_wakeup_time_ns);
  969. seq_printf(s, "rsc backoff time(ns):%d\n",
  970. rsc->timer_config.rsc_backoff_time_ns);
  971. seq_printf(s, "pdc backoff time(ns):%d\n",
  972. rsc->timer_config.pdc_backoff_time_ns);
  973. seq_printf(s, "rsc mode threshold time(ns):%d\n",
  974. rsc->timer_config.rsc_mode_threshold_time_ns);
  975. seq_printf(s, "rsc time slot 0(ns):%d\n",
  976. rsc->timer_config.rsc_time_slot_0_ns);
  977. seq_printf(s, "rsc time slot 1(ns):%d\n",
  978. rsc->timer_config.rsc_time_slot_1_ns);
  979. seq_printf(s, "frame fps:%d jitter_numer:%d jitter_denom:%d vtotal:%d prefill lines:%d\n",
  980. rsc->cmd_config.fps, rsc->cmd_config.jitter_numer,
  981. rsc->cmd_config.jitter_denom,
  982. rsc->cmd_config.vtotal, rsc->cmd_config.prefill_lines);
  983. seq_puts(s, "\n");
  984. list_for_each_entry(client, &rsc->client_list, list)
  985. seq_printf(s, "\t client:%s state:%d\n",
  986. client->name, client->current_state);
  987. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  988. pr_debug("debug node is not supported during idle state\n");
  989. seq_puts(s, "hw state is not supported during idle pc\n");
  990. goto end;
  991. }
  992. if (rsc->hw_ops.debug_show) {
  993. ret = rsc->hw_ops.debug_show(s, rsc);
  994. if (ret)
  995. pr_err("sde rsc: hw debug failed ret:%d\n", ret);
  996. }
  997. end:
  998. mutex_unlock(&rsc->client_lock);
  999. return 0;
  1000. }
  1001. static int _sde_debugfs_status_open(struct inode *inode, struct file *file)
  1002. {
  1003. return single_open(file, _sde_debugfs_status_show, inode->i_private);
  1004. }
  1005. static int _sde_debugfs_counters_show(struct seq_file *s, void *data)
  1006. {
  1007. struct sde_rsc_priv *rsc = s->private;
  1008. u32 counters[NUM_RSC_PROFILING_COUNTERS];
  1009. int i, ret;
  1010. if (!rsc)
  1011. return -EINVAL;
  1012. if (!rsc->hw_ops.get_counters) {
  1013. seq_puts(s, "counters are not supported on this target\n");
  1014. return 0;
  1015. }
  1016. memset(counters, 0, sizeof(counters));
  1017. mutex_lock(&rsc->client_lock);
  1018. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1019. pr_debug("counters are not supported during idle state\n");
  1020. seq_puts(s, "no access to counters during idle pc\n");
  1021. goto end;
  1022. }
  1023. ret = rsc->hw_ops.get_counters(rsc, counters);
  1024. if (ret) {
  1025. pr_err("sde rsc: get_counters failed ret:%d\n", ret);
  1026. seq_puts(s, "failed to retrieve counts!\n");
  1027. goto end;
  1028. }
  1029. seq_puts(s, "rsc profiling counters:\n");
  1030. for (i = 0; i < NUM_RSC_PROFILING_COUNTERS; ++i)
  1031. seq_printf(s, "\tmode[%d] = 0x%08x:\n", i, counters[i]);
  1032. end:
  1033. mutex_unlock(&rsc->client_lock);
  1034. return 0;
  1035. }
  1036. static int _sde_debugfs_counters_open(struct inode *inode, struct file *file)
  1037. {
  1038. return single_open(file, _sde_debugfs_counters_show, inode->i_private);
  1039. }
  1040. static int _sde_debugfs_generic_noseek_open(struct inode *inode,
  1041. struct file *file)
  1042. {
  1043. /* non-seekable */
  1044. file->private_data = inode->i_private;
  1045. return nonseekable_open(inode, file);
  1046. }
  1047. static ssize_t _sde_debugfs_profiling_read(struct file *file, char __user *buf,
  1048. size_t count, loff_t *ppos)
  1049. {
  1050. struct sde_rsc_priv *rsc = file->private_data;
  1051. size_t max_size = min_t(size_t, count, MAX_BUFFER_SIZE);
  1052. char buffer[MAX_BUFFER_SIZE];
  1053. int blen = 0;
  1054. if (*ppos || !rsc)
  1055. return 0;
  1056. if (!rsc->hw_ops.setup_counters) {
  1057. blen += scnprintf(&buffer[blen], max_size - blen,
  1058. "counters are not supported on this target\n");
  1059. goto end;
  1060. }
  1061. mutex_lock(&rsc->client_lock);
  1062. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1063. pr_debug("counters are not supported during idle state\n");
  1064. blen += scnprintf(&buffer[blen], max_size - blen,
  1065. "no access to counters during idle pc\n");
  1066. goto unlock;
  1067. }
  1068. blen += scnprintf(&buffer[blen], max_size - blen,
  1069. "%s\n", rsc->profiling_en ? "Y" : "N");
  1070. unlock:
  1071. mutex_unlock(&rsc->client_lock);
  1072. end:
  1073. if (copy_to_user(buf, buffer, blen))
  1074. return -EFAULT;
  1075. *ppos += blen;
  1076. return blen;
  1077. }
  1078. static ssize_t _sde_debugfs_profiling_write(struct file *file,
  1079. const char __user *p, size_t count, loff_t *ppos)
  1080. {
  1081. struct sde_rsc_priv *rsc = file->private_data;
  1082. bool input_valid, input_value;
  1083. char *input;
  1084. int rc;
  1085. if (!rsc || !rsc->hw_ops.setup_counters || !count ||
  1086. count > MAX_COUNT_SIZE_SUPPORTED)
  1087. return 0;
  1088. input = kmalloc(count + 1, GFP_KERNEL);
  1089. if (!input)
  1090. return -ENOMEM;
  1091. if (copy_from_user(input, p, count)) {
  1092. kfree(input);
  1093. return -EFAULT;
  1094. }
  1095. input[count] = '\0';
  1096. switch (input[0]) {
  1097. case 'y':
  1098. case 'Y':
  1099. case '1':
  1100. input_valid = true;
  1101. input_value = true;
  1102. break;
  1103. case 'n':
  1104. case 'N':
  1105. case '0':
  1106. input_valid = true;
  1107. input_value = false;
  1108. break;
  1109. default:
  1110. input_valid = false;
  1111. count = 0;
  1112. break;
  1113. }
  1114. mutex_lock(&rsc->client_lock);
  1115. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1116. pr_debug("debug node is not supported during idle state\n");
  1117. count = 0;
  1118. goto end;
  1119. }
  1120. pr_debug("input %s, profiling_en: %d\n",
  1121. input_valid ? "valid" : "invalid", rsc->profiling_en);
  1122. if (input_valid) {
  1123. rsc->profiling_en = input_value;
  1124. rc = rsc->hw_ops.setup_counters(rsc, rsc->profiling_en);
  1125. if (rc)
  1126. pr_err("setup_counters failed, rc:%d\n", rc);
  1127. }
  1128. end:
  1129. mutex_unlock(&rsc->client_lock);
  1130. kfree(input);
  1131. return count;
  1132. }
  1133. static ssize_t _sde_debugfs_mode_ctrl_read(struct file *file, char __user *buf,
  1134. size_t count, loff_t *ppos)
  1135. {
  1136. struct sde_rsc_priv *rsc = file->private_data;
  1137. char buffer[MAX_BUFFER_SIZE];
  1138. int blen = 0;
  1139. size_t max_size = min_t(size_t, count, MAX_BUFFER_SIZE);
  1140. if (*ppos || !rsc || !rsc->hw_ops.mode_ctrl)
  1141. return 0;
  1142. mutex_lock(&rsc->client_lock);
  1143. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1144. pr_debug("debug node is not supported during idle state\n");
  1145. blen = scnprintf(buffer, max_size,
  1146. "hw state is not supported during idle pc\n");
  1147. goto end;
  1148. }
  1149. blen = rsc->hw_ops.mode_ctrl(rsc, MODE_READ, buffer, max_size, 0);
  1150. end:
  1151. mutex_unlock(&rsc->client_lock);
  1152. if (blen <= 0)
  1153. return 0;
  1154. if (blen > count) {
  1155. blen = count;
  1156. buffer[count - 1] = '\0';
  1157. }
  1158. if (copy_to_user(buf, buffer, blen))
  1159. return -EFAULT;
  1160. *ppos += blen;
  1161. return blen;
  1162. }
  1163. static ssize_t _sde_debugfs_mode_ctrl_write(struct file *file,
  1164. const char __user *p, size_t count, loff_t *ppos)
  1165. {
  1166. struct sde_rsc_priv *rsc = file->private_data;
  1167. char *input;
  1168. u32 mode_state = 0;
  1169. int rc;
  1170. if (!rsc || !rsc->hw_ops.mode_ctrl || !count ||
  1171. count > MAX_COUNT_SIZE_SUPPORTED)
  1172. return 0;
  1173. input = kmalloc(count + 1, GFP_KERNEL);
  1174. if (!input)
  1175. return -ENOMEM;
  1176. if (copy_from_user(input, p, count)) {
  1177. kfree(input);
  1178. return -EFAULT;
  1179. }
  1180. input[count] = '\0';
  1181. rc = kstrtoint(input, 0, &mode_state);
  1182. if (rc) {
  1183. pr_err("mode_state: int conversion failed rc:%d\n", rc);
  1184. goto end;
  1185. }
  1186. pr_debug("mode_state: %d\n", mode_state);
  1187. mode_state &= 0x7;
  1188. if (mode_state != ALL_MODES_DISABLED &&
  1189. mode_state != ALL_MODES_ENABLED &&
  1190. mode_state != ONLY_MODE_0_ENABLED &&
  1191. mode_state != ONLY_MODE_0_1_ENABLED) {
  1192. pr_err("invalid mode:%d combination\n", mode_state);
  1193. goto end;
  1194. }
  1195. mutex_lock(&rsc->client_lock);
  1196. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1197. pr_debug("debug node is not supported during idle state\n");
  1198. goto state_check;
  1199. }
  1200. rsc->hw_ops.mode_ctrl(rsc, MODE_UPDATE, NULL, 0, mode_state);
  1201. state_check:
  1202. mutex_unlock(&rsc->client_lock);
  1203. end:
  1204. kfree(input);
  1205. return count;
  1206. }
  1207. static ssize_t _sde_debugfs_vsync_mode_read(struct file *file, char __user *buf,
  1208. size_t count, loff_t *ppos)
  1209. {
  1210. struct sde_rsc_priv *rsc = file->private_data;
  1211. char buffer[MAX_BUFFER_SIZE];
  1212. int blen = 0;
  1213. size_t max_size = min_t(size_t, count, MAX_BUFFER_SIZE);
  1214. if (*ppos || !rsc || !rsc->hw_ops.hw_vsync)
  1215. return 0;
  1216. mutex_lock(&rsc->client_lock);
  1217. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1218. pr_debug("debug node is not supported during idle state\n");
  1219. blen = scnprintf(buffer, max_size,
  1220. "hw state is not supported during idle pc\n");
  1221. goto end;
  1222. }
  1223. blen = rsc->hw_ops.hw_vsync(rsc, VSYNC_READ, buffer, max_size, 0);
  1224. end:
  1225. mutex_unlock(&rsc->client_lock);
  1226. if (blen <= 0)
  1227. return 0;
  1228. if (blen > count) {
  1229. blen = count;
  1230. buffer[count - 1] = '\0';
  1231. }
  1232. if (copy_to_user(buf, buffer, blen))
  1233. return -EFAULT;
  1234. *ppos += blen;
  1235. return blen;
  1236. }
  1237. static ssize_t _sde_debugfs_vsync_mode_write(struct file *file,
  1238. const char __user *p, size_t count, loff_t *ppos)
  1239. {
  1240. struct sde_rsc_priv *rsc = file->private_data;
  1241. char *input;
  1242. u32 vsync_state = 0;
  1243. int rc;
  1244. if (!rsc || !rsc->hw_ops.hw_vsync || !count ||
  1245. count > MAX_COUNT_SIZE_SUPPORTED)
  1246. return 0;
  1247. input = kmalloc(count + 1, GFP_KERNEL);
  1248. if (!input)
  1249. return -ENOMEM;
  1250. if (copy_from_user(input, p, count)) {
  1251. kfree(input);
  1252. return -EFAULT;
  1253. }
  1254. input[count] = '\0';
  1255. rc = kstrtoint(input, 0, &vsync_state);
  1256. if (rc) {
  1257. pr_err("vsync_state: int conversion failed rc:%d\n", rc);
  1258. goto end;
  1259. }
  1260. pr_debug("vsync_state: %d\n", vsync_state);
  1261. vsync_state &= 0x7;
  1262. mutex_lock(&rsc->client_lock);
  1263. if (rsc->current_state == SDE_RSC_IDLE_STATE) {
  1264. pr_debug("debug node is not supported during idle state\n");
  1265. goto state_check;
  1266. }
  1267. if (vsync_state)
  1268. rsc->hw_ops.hw_vsync(rsc, VSYNC_ENABLE, NULL,
  1269. 0, vsync_state - 1);
  1270. else
  1271. rsc->hw_ops.hw_vsync(rsc, VSYNC_DISABLE, NULL, 0, 0);
  1272. state_check:
  1273. mutex_unlock(&rsc->client_lock);
  1274. end:
  1275. kfree(input);
  1276. return count;
  1277. }
  1278. static const struct file_operations debugfs_status_fops = {
  1279. .open = _sde_debugfs_status_open,
  1280. .read = seq_read,
  1281. .llseek = seq_lseek,
  1282. .release = single_release,
  1283. };
  1284. static const struct file_operations mode_control_fops = {
  1285. .open = _sde_debugfs_generic_noseek_open,
  1286. .read = _sde_debugfs_mode_ctrl_read,
  1287. .write = _sde_debugfs_mode_ctrl_write,
  1288. };
  1289. static const struct file_operations vsync_status_fops = {
  1290. .open = _sde_debugfs_generic_noseek_open,
  1291. .read = _sde_debugfs_vsync_mode_read,
  1292. .write = _sde_debugfs_vsync_mode_write,
  1293. };
  1294. static const struct file_operations profiling_enable_fops = {
  1295. .open = _sde_debugfs_generic_noseek_open,
  1296. .read = _sde_debugfs_profiling_read,
  1297. .write = _sde_debugfs_profiling_write,
  1298. };
  1299. static const struct file_operations profiling_counts_fops = {
  1300. .open = _sde_debugfs_counters_open,
  1301. .read = seq_read,
  1302. .llseek = seq_lseek,
  1303. .release = single_release,
  1304. };
  1305. static void _sde_rsc_init_debugfs(struct sde_rsc_priv *rsc, char *name)
  1306. {
  1307. rsc->debugfs_root = debugfs_create_dir(name, NULL);
  1308. if (!rsc->debugfs_root)
  1309. return;
  1310. /* don't error check these */
  1311. debugfs_create_file("status", 0400, rsc->debugfs_root, rsc,
  1312. &debugfs_status_fops);
  1313. debugfs_create_file("mode_control", 0600, rsc->debugfs_root, rsc,
  1314. &mode_control_fops);
  1315. debugfs_create_file("vsync_mode", 0600, rsc->debugfs_root, rsc,
  1316. &vsync_status_fops);
  1317. if (rsc->profiling_supp) {
  1318. debugfs_create_file("profiling_en", 0600, rsc->debugfs_root,
  1319. rsc, &profiling_enable_fops);
  1320. debugfs_create_file("profiling_counts", 0400,
  1321. rsc->debugfs_root, rsc,
  1322. &profiling_counts_fops);
  1323. }
  1324. debugfs_create_x32("debug_mode", 0600, rsc->debugfs_root,
  1325. &rsc->debug_mode);
  1326. }
  1327. #else
  1328. static void _sde_rsc_init_debugfs(struct sde_rsc_priv *rsc, char *name)
  1329. {
  1330. }
  1331. #endif /* defined(CONFIG_DEBUG_FS) */
  1332. static void sde_rsc_deinit(struct platform_device *pdev,
  1333. struct sde_rsc_priv *rsc)
  1334. {
  1335. if (!rsc)
  1336. return;
  1337. sde_rsc_resource_disable(rsc);
  1338. if (rsc->sw_fs_enabled)
  1339. regulator_disable(rsc->fs);
  1340. if (rsc->fs)
  1341. devm_regulator_put(rsc->fs);
  1342. if (rsc->wrapper_io.base)
  1343. msm_dss_iounmap(&rsc->wrapper_io);
  1344. if (rsc->drv_io.base)
  1345. msm_dss_iounmap(&rsc->drv_io);
  1346. sde_power_resource_deinit(pdev, &rsc->phandle);
  1347. debugfs_remove_recursive(rsc->debugfs_root);
  1348. kfree(rsc);
  1349. }
  1350. /**
  1351. * sde_rsc_get_io_resources - collect register ranges for the device to
  1352. * perform access control on TUI transition
  1353. * @io_res: io resource list
  1354. * @data: payload data provided during msm_register_vm_event
  1355. * Returns: zero on success
  1356. */
  1357. static int sde_rsc_get_io_resources(struct msm_io_res *io_res, void *data)
  1358. {
  1359. int rc = 0;
  1360. struct sde_rsc_priv *rsc = (struct sde_rsc_priv *)data;
  1361. struct platform_device *pdev = to_platform_device(rsc->dev);
  1362. rc = msm_dss_get_io_mem(pdev, &io_res->mem);
  1363. if (rc) {
  1364. pr_err("failed to get rsc io mem, rc = %d\n", rc);
  1365. return rc;
  1366. }
  1367. return 0;
  1368. }
  1369. /**
  1370. * sde_rsc_bind - bind rsc device with controlling device
  1371. * @dev: Pointer to base of platform device
  1372. * @master: Pointer to container of drm device
  1373. * @data: Pointer to private data
  1374. * Returns: Zero on success
  1375. */
  1376. static int sde_rsc_bind(struct device *dev,
  1377. struct device *master,
  1378. void *data)
  1379. {
  1380. struct sde_rsc_priv *rsc;
  1381. struct drm_device *drm;
  1382. struct platform_device *pdev = to_platform_device(dev);
  1383. struct msm_vm_ops vm_event_ops = {
  1384. .vm_get_io_resources = sde_rsc_get_io_resources,
  1385. };
  1386. if (!dev || !pdev || !master) {
  1387. pr_err("invalid param(s), dev %pK, pdev %pK, master %pK\n",
  1388. dev, pdev, master);
  1389. return -EINVAL;
  1390. }
  1391. drm = dev_get_drvdata(master);
  1392. rsc = platform_get_drvdata(pdev);
  1393. if (!drm || !rsc) {
  1394. pr_err("invalid param(s), drm %pK, rsc %pK\n",
  1395. drm, rsc);
  1396. return -EINVAL;
  1397. }
  1398. sde_dbg_reg_register_base(SDE_RSC_DRV_DBG_NAME, rsc->drv_io.base,
  1399. rsc->drv_io.len, msm_get_phys_addr(pdev, "drv"), SDE_DBG_RSC);
  1400. sde_dbg_reg_register_base(SDE_RSC_WRAPPER_DBG_NAME, rsc->wrapper_io.base,
  1401. rsc->wrapper_io.len, msm_get_phys_addr(pdev, "wrapper"), SDE_DBG_RSC);
  1402. msm_register_vm_event(master, dev, &vm_event_ops, (void *)rsc);
  1403. return 0;
  1404. }
  1405. /**
  1406. * sde_rsc_unbind - unbind rsc from controlling device
  1407. * @dev: Pointer to base of platform device
  1408. * @master: Pointer to container of drm device
  1409. * @data: Pointer to private data
  1410. */
  1411. static void sde_rsc_unbind(struct device *dev,
  1412. struct device *master, void *data)
  1413. {
  1414. struct sde_rsc_priv *rsc;
  1415. struct platform_device *pdev = to_platform_device(dev);
  1416. if (!dev || !pdev) {
  1417. pr_err("invalid param(s)\n");
  1418. return;
  1419. }
  1420. rsc = platform_get_drvdata(pdev);
  1421. if (!rsc) {
  1422. pr_err("invalid display rsc\n");
  1423. return;
  1424. }
  1425. msm_unregister_vm_event(master, dev);
  1426. }
  1427. static const struct component_ops sde_rsc_comp_ops = {
  1428. .bind = sde_rsc_bind,
  1429. .unbind = sde_rsc_unbind,
  1430. };
  1431. static int sde_rsc_probe(struct platform_device *pdev)
  1432. {
  1433. int ret;
  1434. struct sde_rsc_priv *rsc;
  1435. static int counter;
  1436. char name[MAX_RSC_CLIENT_NAME_LEN];
  1437. if (counter >= MAX_RSC_COUNT) {
  1438. pr_err("sde rsc supports probe till MAX_RSC_COUNT=%d devices\n",
  1439. MAX_RSC_COUNT);
  1440. return -EINVAL;
  1441. }
  1442. rsc = kzalloc(sizeof(*rsc), GFP_KERNEL);
  1443. if (!rsc) {
  1444. ret = -ENOMEM;
  1445. goto rsc_alloc_fail;
  1446. }
  1447. platform_set_drvdata(pdev, rsc);
  1448. rsc->dev = &pdev->dev;
  1449. of_property_read_u32(pdev->dev.of_node, "qcom,sde-rsc-version",
  1450. &rsc->version);
  1451. if (rsc->version >= SDE_RSC_REV_2)
  1452. rsc->single_tcs_execution_time = SINGLE_TCS_EXECUTION_TIME_V2;
  1453. else
  1454. rsc->single_tcs_execution_time = SINGLE_TCS_EXECUTION_TIME_V1;
  1455. if (rsc->version >= SDE_RSC_REV_3) {
  1456. rsc->time_slot_0_ns = rsc->single_tcs_execution_time
  1457. + RSC_MODE_INSTRUCTION_TIME;
  1458. rsc->backoff_time_ns = RSC_MODE_INSTRUCTION_TIME;
  1459. rsc->mode_threshold_time_ns = rsc->time_slot_0_ns;
  1460. } else {
  1461. rsc->time_slot_0_ns = (rsc->single_tcs_execution_time * 2)
  1462. + RSC_MODE_INSTRUCTION_TIME;
  1463. rsc->backoff_time_ns = rsc->single_tcs_execution_time
  1464. + RSC_MODE_INSTRUCTION_TIME;
  1465. rsc->mode_threshold_time_ns = rsc->backoff_time_ns
  1466. + RSC_MODE_THRESHOLD_OVERHEAD;
  1467. }
  1468. if (rsc->version >= SDE_RSC_REV_4)
  1469. rsc->profiling_supp = true;
  1470. ret = sde_power_resource_init(pdev, &rsc->phandle);
  1471. if (ret) {
  1472. pr_err("sde rsc:power resource init failed ret:%d\n", ret);
  1473. goto sde_rsc_fail;
  1474. }
  1475. rsc->rpmh_dev = rpmh_dev[SDE_RSC_INDEX + counter];
  1476. if (IS_ERR_OR_NULL(rsc->rpmh_dev)) {
  1477. ret = !rsc->rpmh_dev ? -EINVAL : PTR_ERR(rsc->rpmh_dev);
  1478. rsc->rpmh_dev = NULL;
  1479. pr_err("rpmh device node is not available ret:%d\n", ret);
  1480. goto sde_rsc_fail;
  1481. }
  1482. ret = msm_dss_ioremap_byname(pdev, &rsc->wrapper_io, "wrapper");
  1483. if (ret) {
  1484. pr_err("sde rsc: wrapper io data mapping failed ret=%d\n", ret);
  1485. goto sde_rsc_fail;
  1486. }
  1487. ret = msm_dss_ioremap_byname(pdev, &rsc->drv_io, "drv");
  1488. if (ret) {
  1489. pr_err("sde rsc: drv io data mapping failed ret:%d\n", ret);
  1490. goto sde_rsc_fail;
  1491. }
  1492. rsc->fs = devm_regulator_get(&pdev->dev, "vdd");
  1493. if (IS_ERR_OR_NULL(rsc->fs)) {
  1494. rsc->fs = NULL;
  1495. pr_err("unable to get regulator\n");
  1496. goto sde_rsc_fail;
  1497. }
  1498. if (rsc->version >= SDE_RSC_REV_3)
  1499. ret = sde_rsc_hw_register_v3(rsc);
  1500. else
  1501. ret = sde_rsc_hw_register(rsc);
  1502. if (ret) {
  1503. pr_err("sde rsc: hw register failed ret:%d\n", ret);
  1504. goto sde_rsc_fail;
  1505. }
  1506. ret = regulator_enable(rsc->fs);
  1507. if (ret) {
  1508. pr_err("sde rsc: fs on failed ret:%d\n", ret);
  1509. goto sde_rsc_fail;
  1510. }
  1511. rsc->sw_fs_enabled = true;
  1512. ret = sde_rsc_resource_enable(rsc);
  1513. if (ret < 0) {
  1514. pr_err("failed to enable sde rsc power resources rc:%d\n", ret);
  1515. goto sde_rsc_fail;
  1516. }
  1517. if (sde_rsc_timer_calculate(rsc, NULL, SDE_RSC_IDLE_STATE))
  1518. goto sde_rsc_fail;
  1519. sde_rsc_resource_disable(rsc);
  1520. INIT_LIST_HEAD(&rsc->client_list);
  1521. INIT_LIST_HEAD(&rsc->event_list);
  1522. mutex_init(&rsc->client_lock);
  1523. init_waitqueue_head(&rsc->rsc_vsync_waitq);
  1524. atomic_set(&rsc->resource_refcount, 0);
  1525. pr_info("sde rsc index:%d probed successfully\n",
  1526. SDE_RSC_INDEX + counter);
  1527. rsc_prv_list[SDE_RSC_INDEX + counter] = rsc;
  1528. snprintf(name, MAX_RSC_CLIENT_NAME_LEN, "%s%d", "sde_rsc", counter);
  1529. _sde_rsc_init_debugfs(rsc, name);
  1530. counter++;
  1531. ret = component_add(&pdev->dev, &sde_rsc_comp_ops);
  1532. if (ret)
  1533. pr_debug("component add failed, ret=%d\n", ret);
  1534. ret = 0;
  1535. return ret;
  1536. sde_rsc_fail:
  1537. sde_rsc_deinit(pdev, rsc);
  1538. rsc_alloc_fail:
  1539. return ret;
  1540. }
  1541. static int sde_rsc_remove(struct platform_device *pdev)
  1542. {
  1543. struct sde_rsc_priv *rsc = platform_get_drvdata(pdev);
  1544. sde_rsc_deinit(pdev, rsc);
  1545. return 0;
  1546. }
  1547. static int sde_rsc_rpmh_probe(struct platform_device *pdev)
  1548. {
  1549. int ret = 0;
  1550. uint32_t index = 0;
  1551. ret = of_property_read_u32(pdev->dev.of_node, "cell-index", &index);
  1552. if (ret) {
  1553. pr_err("unable to find sde rsc cell index\n");
  1554. return ret;
  1555. } else if (index >= MAX_RSC_COUNT) {
  1556. pr_err("invalid cell index for sde rsc:%d\n", index);
  1557. return -EINVAL;
  1558. }
  1559. rpmh_dev[index] = &pdev->dev;
  1560. return 0;
  1561. }
  1562. int sde_rsc_rpmh_remove(struct platform_device *pdev)
  1563. {
  1564. int i;
  1565. for (i = 0; i < MAX_RSC_COUNT; i++)
  1566. rpmh_dev[i] = NULL;
  1567. return 0;
  1568. }
  1569. static const struct of_device_id dt_match[] = {
  1570. { .compatible = "qcom,sde-rsc"},
  1571. {},
  1572. };
  1573. static struct platform_driver sde_rsc_platform_driver = {
  1574. .probe = sde_rsc_probe,
  1575. .remove = sde_rsc_remove,
  1576. .driver = {
  1577. .name = "sde_rsc",
  1578. .of_match_table = dt_match,
  1579. .suppress_bind_attrs = true,
  1580. },
  1581. };
  1582. static const struct of_device_id sde_rsc_rpmh_match[] = {
  1583. {.compatible = "qcom,sde-rsc-rpmh"},
  1584. {},
  1585. };
  1586. static struct platform_driver sde_rsc_rpmh_driver = {
  1587. .probe = sde_rsc_rpmh_probe,
  1588. .remove = sde_rsc_rpmh_remove,
  1589. .driver = {
  1590. .name = "sde_rsc_rpmh",
  1591. .of_match_table = sde_rsc_rpmh_match,
  1592. },
  1593. };
  1594. void __init sde_rsc_register(void)
  1595. {
  1596. platform_driver_register(&sde_rsc_platform_driver);
  1597. }
  1598. void __exit sde_rsc_unregister(void)
  1599. {
  1600. platform_driver_unregister(&sde_rsc_platform_driver);
  1601. }
  1602. void __init sde_rsc_rpmh_register(void)
  1603. {
  1604. platform_driver_register(&sde_rsc_rpmh_driver);
  1605. }