sde_connector.c 78 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2016-2020, The Linux Foundation. All rights reserved.
  4. */
  5. #define pr_fmt(fmt) "[drm:%s:%d] " fmt, __func__, __LINE__
  6. #include "msm_drv.h"
  7. #include "sde_dbg.h"
  8. #include "sde_kms.h"
  9. #include "sde_connector.h"
  10. #include "sde_encoder.h"
  11. #include "msm_cooling_device.h"
  12. #include <linux/backlight.h>
  13. #include <linux/string.h>
  14. #include "dsi_drm.h"
  15. #include "dsi_display.h"
  16. #include "sde_crtc.h"
  17. #include "sde_rm.h"
  18. #include "sde_vm.h"
  19. #include <drm/drm_probe_helper.h>
  20. #define BL_NODE_NAME_SIZE 32
  21. #define HDR10_PLUS_VSIF_TYPE_CODE 0x81
  22. /* Autorefresh will occur after FRAME_CNT frames. Large values are unlikely */
  23. #define AUTOREFRESH_MAX_FRAME_CNT 6
  24. #define SDE_DEBUG_CONN(c, fmt, ...) SDE_DEBUG("conn%d " fmt,\
  25. (c) ? (c)->base.base.id : -1, ##__VA_ARGS__)
  26. #define SDE_ERROR_CONN(c, fmt, ...) SDE_ERROR("conn%d " fmt,\
  27. (c) ? (c)->base.base.id : -1, ##__VA_ARGS__)
  28. static const struct drm_prop_enum_list e_topology_name[] = {
  29. {SDE_RM_TOPOLOGY_NONE, "sde_none"},
  30. {SDE_RM_TOPOLOGY_SINGLEPIPE, "sde_singlepipe"},
  31. {SDE_RM_TOPOLOGY_SINGLEPIPE_DSC, "sde_singlepipe_dsc"},
  32. {SDE_RM_TOPOLOGY_SINGLEPIPE_VDC, "sde_singlepipe_vdc"},
  33. {SDE_RM_TOPOLOGY_DUALPIPE, "sde_dualpipe"},
  34. {SDE_RM_TOPOLOGY_DUALPIPE_DSC, "sde_dualpipe_dsc"},
  35. {SDE_RM_TOPOLOGY_DUALPIPE_3DMERGE, "sde_dualpipemerge"},
  36. {SDE_RM_TOPOLOGY_DUALPIPE_3DMERGE_DSC, "sde_dualpipemerge_dsc"},
  37. {SDE_RM_TOPOLOGY_DUALPIPE_3DMERGE_VDC, "sde_dualpipemerge_vdc"},
  38. {SDE_RM_TOPOLOGY_DUALPIPE_DSCMERGE, "sde_dualpipe_dscmerge"},
  39. {SDE_RM_TOPOLOGY_PPSPLIT, "sde_ppsplit"},
  40. {SDE_RM_TOPOLOGY_QUADPIPE_3DMERGE, "sde_quadpipemerge"},
  41. {SDE_RM_TOPOLOGY_QUADPIPE_3DMERGE_DSC, "sde_quadpipe_3dmerge_dsc"},
  42. {SDE_RM_TOPOLOGY_QUADPIPE_DSCMERGE, "sde_quadpipe_dscmerge"},
  43. {SDE_RM_TOPOLOGY_QUADPIPE_DSC4HSMERGE, "sde_quadpipe_dsc4hsmerge"},
  44. };
  45. static const struct drm_prop_enum_list e_topology_control[] = {
  46. {SDE_RM_TOPCTL_RESERVE_LOCK, "reserve_lock"},
  47. {SDE_RM_TOPCTL_RESERVE_CLEAR, "reserve_clear"},
  48. {SDE_RM_TOPCTL_DSPP, "dspp"},
  49. {SDE_RM_TOPCTL_DS, "ds"},
  50. };
  51. static const struct drm_prop_enum_list e_power_mode[] = {
  52. {SDE_MODE_DPMS_ON, "ON"},
  53. {SDE_MODE_DPMS_LP1, "LP1"},
  54. {SDE_MODE_DPMS_LP2, "LP2"},
  55. {SDE_MODE_DPMS_OFF, "OFF"},
  56. };
  57. static const struct drm_prop_enum_list e_qsync_mode[] = {
  58. {SDE_RM_QSYNC_DISABLED, "none"},
  59. {SDE_RM_QSYNC_CONTINUOUS_MODE, "continuous"},
  60. {SDE_RM_QSYNC_ONE_SHOT_MODE, "one_shot"},
  61. };
  62. static const struct drm_prop_enum_list e_frame_trigger_mode[] = {
  63. {FRAME_DONE_WAIT_DEFAULT, "default"},
  64. {FRAME_DONE_WAIT_SERIALIZE, "serialize_frame_trigger"},
  65. {FRAME_DONE_WAIT_POSTED_START, "posted_start"},
  66. };
  67. static int sde_backlight_device_update_status(struct backlight_device *bd)
  68. {
  69. int brightness;
  70. struct dsi_display *display;
  71. struct sde_connector *c_conn;
  72. int bl_lvl;
  73. struct drm_event event;
  74. int rc = 0;
  75. struct msm_drm_private *priv;
  76. struct sde_kms *sde_kms;
  77. brightness = bd->props.brightness;
  78. if ((bd->props.power != FB_BLANK_UNBLANK) ||
  79. (bd->props.state & BL_CORE_FBBLANK) ||
  80. (bd->props.state & BL_CORE_SUSPENDED))
  81. brightness = 0;
  82. c_conn = bl_get_data(bd);
  83. priv = c_conn->base.dev->dev_private;
  84. sde_kms = to_sde_kms(priv->kms);
  85. display = (struct dsi_display *) c_conn->display;
  86. if (brightness > display->panel->bl_config.bl_max_level)
  87. brightness = display->panel->bl_config.bl_max_level;
  88. if (brightness > c_conn->thermal_max_brightness)
  89. brightness = c_conn->thermal_max_brightness;
  90. /* map UI brightness into driver backlight level with rounding */
  91. bl_lvl = mult_frac(brightness, display->panel->bl_config.bl_max_level,
  92. display->panel->bl_config.brightness_max_level);
  93. if (!bl_lvl && brightness)
  94. bl_lvl = 1;
  95. if (!c_conn->allow_bl_update) {
  96. c_conn->unset_bl_level = bl_lvl;
  97. return 0;
  98. }
  99. if (sde_kms->vm) {
  100. struct sde_vm_ops *vm_ops = &sde_kms->vm->vm_ops;
  101. mutex_lock(&sde_kms->vm->vm_res_lock);
  102. if (vm_ops->vm_owns_hw && !vm_ops->vm_owns_hw(sde_kms)) {
  103. SDE_DEBUG(
  104. "skipping bl update due to HW unavailablity\n");
  105. mutex_unlock(&sde_kms->vm->vm_res_lock);
  106. return 0;
  107. }
  108. }
  109. if (c_conn->ops.set_backlight) {
  110. /* skip notifying user space if bl is 0 */
  111. if (brightness != 0) {
  112. event.type = DRM_EVENT_SYS_BACKLIGHT;
  113. event.length = sizeof(u32);
  114. msm_mode_object_event_notify(&c_conn->base.base,
  115. c_conn->base.dev, &event, (u8 *)&brightness);
  116. }
  117. rc = c_conn->ops.set_backlight(&c_conn->base,
  118. c_conn->display, bl_lvl);
  119. c_conn->unset_bl_level = 0;
  120. }
  121. if (sde_kms->vm)
  122. mutex_unlock(&sde_kms->vm->vm_res_lock);
  123. return rc;
  124. }
  125. static int sde_backlight_device_get_brightness(struct backlight_device *bd)
  126. {
  127. return 0;
  128. }
  129. static const struct backlight_ops sde_backlight_device_ops = {
  130. .update_status = sde_backlight_device_update_status,
  131. .get_brightness = sde_backlight_device_get_brightness,
  132. };
  133. static int sde_backlight_cooling_cb(struct notifier_block *nb,
  134. unsigned long val, void *data)
  135. {
  136. struct sde_connector *c_conn;
  137. struct backlight_device *bd = (struct backlight_device *)data;
  138. c_conn = bl_get_data(bd);
  139. SDE_DEBUG("bl: thermal max brightness cap:%lu\n", val);
  140. c_conn->thermal_max_brightness = val;
  141. sde_backlight_device_update_status(bd);
  142. return 0;
  143. }
  144. static int sde_backlight_setup(struct sde_connector *c_conn,
  145. struct drm_device *dev)
  146. {
  147. struct backlight_properties props;
  148. struct dsi_display *display;
  149. struct dsi_backlight_config *bl_config;
  150. struct msm_drm_private *priv;
  151. struct sde_kms *sde_kms;
  152. static int display_count;
  153. char bl_node_name[BL_NODE_NAME_SIZE];
  154. if (!c_conn || !dev || !dev->dev || !dev->dev_private) {
  155. SDE_ERROR("invalid param\n");
  156. return -EINVAL;
  157. } else if (c_conn->connector_type != DRM_MODE_CONNECTOR_DSI) {
  158. return 0;
  159. }
  160. priv = dev->dev_private;
  161. if (!priv->kms)
  162. return -EINVAL;
  163. sde_kms = to_sde_kms(priv->kms);
  164. if (sde_in_trusted_vm(sde_kms))
  165. return 0;
  166. memset(&props, 0, sizeof(props));
  167. props.type = BACKLIGHT_RAW;
  168. props.power = FB_BLANK_UNBLANK;
  169. display = (struct dsi_display *) c_conn->display;
  170. bl_config = &display->panel->bl_config;
  171. props.max_brightness = bl_config->brightness_max_level;
  172. props.brightness = bl_config->brightness_max_level;
  173. snprintf(bl_node_name, BL_NODE_NAME_SIZE, "panel%u-backlight",
  174. display_count);
  175. c_conn->bl_device = backlight_device_register(bl_node_name, dev->dev,
  176. c_conn, &sde_backlight_device_ops, &props);
  177. if (IS_ERR_OR_NULL(c_conn->bl_device)) {
  178. SDE_ERROR("Failed to register backlight: %ld\n",
  179. PTR_ERR(c_conn->bl_device));
  180. c_conn->bl_device = NULL;
  181. return -ENODEV;
  182. }
  183. c_conn->thermal_max_brightness = bl_config->brightness_max_level;
  184. c_conn->n.notifier_call = sde_backlight_cooling_cb;
  185. c_conn->cdev = backlight_cdev_register(dev->dev, c_conn->bl_device,
  186. &c_conn->n);
  187. if (IS_ERR_OR_NULL(c_conn->cdev)) {
  188. SDE_ERROR("Failed to register backlight cdev: %ld\n",
  189. PTR_ERR(c_conn->cdev));
  190. backlight_device_unregister(c_conn->bl_device);
  191. c_conn->bl_device = NULL;
  192. return -ENODEV;
  193. }
  194. display_count++;
  195. return 0;
  196. }
  197. int sde_connector_trigger_event(void *drm_connector,
  198. uint32_t event_idx, uint32_t instance_idx,
  199. uint32_t data0, uint32_t data1,
  200. uint32_t data2, uint32_t data3)
  201. {
  202. struct sde_connector *c_conn;
  203. unsigned long irq_flags;
  204. int (*cb_func)(uint32_t event_idx,
  205. uint32_t instance_idx, void *usr,
  206. uint32_t data0, uint32_t data1,
  207. uint32_t data2, uint32_t data3);
  208. void *usr;
  209. int rc = 0;
  210. /*
  211. * This function may potentially be called from an ISR context, so
  212. * avoid excessive logging/etc.
  213. */
  214. if (!drm_connector)
  215. return -EINVAL;
  216. else if (event_idx >= SDE_CONN_EVENT_COUNT)
  217. return -EINVAL;
  218. c_conn = to_sde_connector(drm_connector);
  219. spin_lock_irqsave(&c_conn->event_lock, irq_flags);
  220. cb_func = c_conn->event_table[event_idx].cb_func;
  221. usr = c_conn->event_table[event_idx].usr;
  222. spin_unlock_irqrestore(&c_conn->event_lock, irq_flags);
  223. if (cb_func)
  224. rc = cb_func(event_idx, instance_idx, usr,
  225. data0, data1, data2, data3);
  226. else
  227. rc = -EAGAIN;
  228. return rc;
  229. }
  230. int sde_connector_register_event(struct drm_connector *connector,
  231. uint32_t event_idx,
  232. int (*cb_func)(uint32_t event_idx,
  233. uint32_t instance_idx, void *usr,
  234. uint32_t data0, uint32_t data1,
  235. uint32_t data2, uint32_t data3),
  236. void *usr)
  237. {
  238. struct sde_connector *c_conn;
  239. unsigned long irq_flags;
  240. if (!connector) {
  241. SDE_ERROR("invalid connector\n");
  242. return -EINVAL;
  243. } else if (event_idx >= SDE_CONN_EVENT_COUNT) {
  244. SDE_ERROR("conn%d, invalid event %d\n",
  245. connector->base.id, event_idx);
  246. return -EINVAL;
  247. }
  248. c_conn = to_sde_connector(connector);
  249. spin_lock_irqsave(&c_conn->event_lock, irq_flags);
  250. c_conn->event_table[event_idx].cb_func = cb_func;
  251. c_conn->event_table[event_idx].usr = usr;
  252. spin_unlock_irqrestore(&c_conn->event_lock, irq_flags);
  253. /* optionally notify display of event registration */
  254. if (c_conn->ops.enable_event && c_conn->display)
  255. c_conn->ops.enable_event(connector, event_idx,
  256. cb_func != NULL, c_conn->display);
  257. return 0;
  258. }
  259. void sde_connector_unregister_event(struct drm_connector *connector,
  260. uint32_t event_idx)
  261. {
  262. (void)sde_connector_register_event(connector, event_idx, 0, 0);
  263. }
  264. static void _sde_connector_install_dither_property(struct drm_device *dev,
  265. struct sde_kms *sde_kms, struct sde_connector *c_conn)
  266. {
  267. char prop_name[DRM_PROP_NAME_LEN];
  268. struct sde_mdss_cfg *catalog = NULL;
  269. u32 version = 0;
  270. if (!dev || !sde_kms || !c_conn) {
  271. SDE_ERROR("invld args (s), dev %pK, sde_kms %pK, c_conn %pK\n",
  272. dev, sde_kms, c_conn);
  273. return;
  274. }
  275. catalog = sde_kms->catalog;
  276. version = SDE_COLOR_PROCESS_MAJOR(
  277. catalog->pingpong[0].sblk->dither.version);
  278. snprintf(prop_name, ARRAY_SIZE(prop_name), "%s%d",
  279. "SDE_PP_DITHER_V", version);
  280. switch (version) {
  281. case 1:
  282. case 2:
  283. msm_property_install_blob(&c_conn->property_info, prop_name,
  284. DRM_MODE_PROP_BLOB,
  285. CONNECTOR_PROP_PP_DITHER);
  286. break;
  287. default:
  288. SDE_ERROR("unsupported dither version %d\n", version);
  289. return;
  290. }
  291. }
  292. int sde_connector_get_dither_cfg(struct drm_connector *conn,
  293. struct drm_connector_state *state, void **cfg,
  294. size_t *len, bool idle_pc)
  295. {
  296. struct sde_connector *c_conn = NULL;
  297. struct sde_connector_state *c_state = NULL;
  298. size_t dither_sz = 0;
  299. bool is_dirty;
  300. u32 *p = (u32 *)cfg;
  301. if (!conn || !state || !p) {
  302. SDE_ERROR("invalid arguments\n");
  303. return -EINVAL;
  304. }
  305. c_conn = to_sde_connector(conn);
  306. c_state = to_sde_connector_state(state);
  307. is_dirty = msm_property_is_dirty(&c_conn->property_info,
  308. &c_state->property_state,
  309. CONNECTOR_PROP_PP_DITHER);
  310. if (!is_dirty && !idle_pc) {
  311. return -ENODATA;
  312. } else if (is_dirty || idle_pc) {
  313. *cfg = msm_property_get_blob(&c_conn->property_info,
  314. &c_state->property_state,
  315. &dither_sz,
  316. CONNECTOR_PROP_PP_DITHER);
  317. /*
  318. * in idle_pc use case return early,
  319. * when dither is already disabled.
  320. */
  321. if (idle_pc && *cfg == NULL)
  322. return -ENODATA;
  323. /* disable dither based on user config data */
  324. else if (*cfg == NULL)
  325. return 0;
  326. }
  327. *len = dither_sz;
  328. return 0;
  329. }
  330. static void sde_connector_get_avail_res_info(struct drm_connector *conn,
  331. struct msm_resource_caps_info *avail_res)
  332. {
  333. struct msm_drm_private *priv;
  334. struct sde_kms *sde_kms;
  335. struct drm_encoder *drm_enc = NULL;
  336. if (!conn || !conn->dev || !conn->dev->dev_private)
  337. return;
  338. priv = conn->dev->dev_private;
  339. sde_kms = to_sde_kms(priv->kms);
  340. if (!sde_kms)
  341. return;
  342. if (conn->state && conn->state->best_encoder)
  343. drm_enc = conn->state->best_encoder;
  344. else
  345. drm_enc = conn->encoder;
  346. sde_rm_get_resource_info(&sde_kms->rm, drm_enc, avail_res);
  347. avail_res->max_mixer_width = sde_kms->catalog->max_mixer_width;
  348. }
  349. int sde_connector_get_mode_info(struct drm_connector *conn,
  350. const struct drm_display_mode *drm_mode,
  351. struct msm_mode_info *mode_info)
  352. {
  353. struct sde_connector *sde_conn;
  354. struct msm_resource_caps_info avail_res;
  355. memset(&avail_res, 0, sizeof(avail_res));
  356. sde_conn = to_sde_connector(conn);
  357. if (!sde_conn)
  358. return -EINVAL;
  359. sde_connector_get_avail_res_info(conn, &avail_res);
  360. return sde_conn->ops.get_mode_info(conn, drm_mode,
  361. mode_info, sde_conn->display, &avail_res);
  362. }
  363. int sde_connector_state_get_mode_info(struct drm_connector_state *conn_state,
  364. struct msm_mode_info *mode_info)
  365. {
  366. struct sde_connector_state *sde_conn_state = NULL;
  367. if (!conn_state || !mode_info) {
  368. SDE_ERROR("Invalid arguments\n");
  369. return -EINVAL;
  370. }
  371. sde_conn_state = to_sde_connector_state(conn_state);
  372. memcpy(mode_info, &sde_conn_state->mode_info,
  373. sizeof(sde_conn_state->mode_info));
  374. return 0;
  375. }
  376. static int sde_connector_handle_panel_id(uint32_t event_idx,
  377. uint32_t instance_idx, void *usr,
  378. uint32_t data0, uint32_t data1,
  379. uint32_t data2, uint32_t data3)
  380. {
  381. struct sde_connector *c_conn = usr;
  382. int i;
  383. u64 panel_id;
  384. u8 arr[8], shift;
  385. u64 mask = 0xff;
  386. if (!c_conn)
  387. return -EINVAL;
  388. panel_id = (((u64)data0) << 31) | data1;
  389. if (panel_id == ~0x0)
  390. return 0;
  391. for (i = 0; i < 8; i++) {
  392. shift = 8 * i;
  393. arr[7 - i] = (u8)((panel_id & (mask << shift)) >> shift);
  394. }
  395. /* update the panel id */
  396. msm_property_set_blob(&c_conn->property_info,
  397. &c_conn->blob_panel_id, arr, sizeof(arr),
  398. CONNECTOR_PROP_DEMURA_PANEL_ID);
  399. sde_connector_register_event(&c_conn->base,
  400. SDE_CONN_EVENT_PANEL_ID, NULL, c_conn);
  401. return 0;
  402. }
  403. static int sde_connector_handle_disp_recovery(uint32_t event_idx,
  404. uint32_t instance_idx, void *usr,
  405. uint32_t data0, uint32_t data1,
  406. uint32_t data2, uint32_t data3)
  407. {
  408. struct sde_connector *c_conn = usr;
  409. int rc = 0;
  410. if (!c_conn)
  411. return -EINVAL;
  412. rc = sde_kms_handle_recovery(c_conn->encoder);
  413. return rc;
  414. }
  415. int sde_connector_get_info(struct drm_connector *connector,
  416. struct msm_display_info *info)
  417. {
  418. struct sde_connector *c_conn;
  419. if (!connector || !info) {
  420. SDE_ERROR("invalid argument(s), conn %pK, info %pK\n",
  421. connector, info);
  422. return -EINVAL;
  423. }
  424. c_conn = to_sde_connector(connector);
  425. if (!c_conn->display || !c_conn->ops.get_info) {
  426. SDE_ERROR("display info not supported for %pK\n",
  427. c_conn->display);
  428. return -EINVAL;
  429. }
  430. return c_conn->ops.get_info(&c_conn->base, info, c_conn->display);
  431. }
  432. void sde_connector_schedule_status_work(struct drm_connector *connector,
  433. bool en)
  434. {
  435. struct sde_connector *c_conn;
  436. struct msm_display_info info;
  437. c_conn = to_sde_connector(connector);
  438. if (!c_conn)
  439. return;
  440. /* Return if there is no change in ESD status check condition */
  441. if (en == c_conn->esd_status_check)
  442. return;
  443. sde_connector_get_info(connector, &info);
  444. if (c_conn->ops.check_status &&
  445. (info.capabilities & MSM_DISPLAY_ESD_ENABLED)) {
  446. if (en) {
  447. u32 interval;
  448. /*
  449. * If debugfs property is not set then take
  450. * default value
  451. */
  452. interval = c_conn->esd_status_interval ?
  453. c_conn->esd_status_interval :
  454. STATUS_CHECK_INTERVAL_MS;
  455. /* Schedule ESD status check */
  456. schedule_delayed_work(&c_conn->status_work,
  457. msecs_to_jiffies(interval));
  458. c_conn->esd_status_check = true;
  459. } else {
  460. /* Cancel any pending ESD status check */
  461. cancel_delayed_work_sync(&c_conn->status_work);
  462. c_conn->esd_status_check = false;
  463. }
  464. }
  465. }
  466. static int _sde_connector_update_power_locked(struct sde_connector *c_conn)
  467. {
  468. struct drm_connector *connector;
  469. void *display;
  470. int (*set_power)(struct drm_connector *conn, int status, void *disp);
  471. int mode, rc = 0;
  472. if (!c_conn)
  473. return -EINVAL;
  474. connector = &c_conn->base;
  475. switch (c_conn->dpms_mode) {
  476. case DRM_MODE_DPMS_ON:
  477. mode = c_conn->lp_mode;
  478. break;
  479. case DRM_MODE_DPMS_STANDBY:
  480. mode = SDE_MODE_DPMS_STANDBY;
  481. break;
  482. case DRM_MODE_DPMS_SUSPEND:
  483. mode = SDE_MODE_DPMS_SUSPEND;
  484. break;
  485. case DRM_MODE_DPMS_OFF:
  486. mode = SDE_MODE_DPMS_OFF;
  487. break;
  488. default:
  489. mode = c_conn->lp_mode;
  490. SDE_ERROR("conn %d dpms set to unrecognized mode %d\n",
  491. connector->base.id, mode);
  492. break;
  493. }
  494. SDE_EVT32(connector->base.id, c_conn->dpms_mode, c_conn->lp_mode, mode);
  495. SDE_DEBUG("conn %d - dpms %d, lp %d, panel %d\n", connector->base.id,
  496. c_conn->dpms_mode, c_conn->lp_mode, mode);
  497. if (mode != c_conn->last_panel_power_mode && c_conn->ops.set_power) {
  498. display = c_conn->display;
  499. set_power = c_conn->ops.set_power;
  500. mutex_unlock(&c_conn->lock);
  501. rc = set_power(connector, mode, display);
  502. mutex_lock(&c_conn->lock);
  503. }
  504. c_conn->last_panel_power_mode = mode;
  505. mutex_unlock(&c_conn->lock);
  506. if (mode != SDE_MODE_DPMS_ON)
  507. sde_connector_schedule_status_work(connector, false);
  508. else
  509. sde_connector_schedule_status_work(connector, true);
  510. mutex_lock(&c_conn->lock);
  511. return rc;
  512. }
  513. static int _sde_connector_update_bl_scale(struct sde_connector *c_conn)
  514. {
  515. struct dsi_display *dsi_display;
  516. struct dsi_backlight_config *bl_config;
  517. int rc = 0;
  518. if (!c_conn) {
  519. SDE_ERROR("Invalid params sde_connector null\n");
  520. return -EINVAL;
  521. }
  522. dsi_display = c_conn->display;
  523. if (!dsi_display || !dsi_display->panel) {
  524. SDE_ERROR("Invalid params(s) dsi_display %pK, panel %pK\n",
  525. dsi_display,
  526. ((dsi_display) ? dsi_display->panel : NULL));
  527. return -EINVAL;
  528. }
  529. bl_config = &dsi_display->panel->bl_config;
  530. if (!c_conn->allow_bl_update) {
  531. c_conn->unset_bl_level = bl_config->bl_level;
  532. return 0;
  533. }
  534. if (c_conn->unset_bl_level)
  535. bl_config->bl_level = c_conn->unset_bl_level;
  536. bl_config->bl_scale = c_conn->bl_scale > MAX_BL_SCALE_LEVEL ?
  537. MAX_BL_SCALE_LEVEL : c_conn->bl_scale;
  538. bl_config->bl_scale_sv = c_conn->bl_scale_sv > MAX_SV_BL_SCALE_LEVEL ?
  539. MAX_SV_BL_SCALE_LEVEL : c_conn->bl_scale_sv;
  540. SDE_DEBUG("bl_scale = %u, bl_scale_sv = %u, bl_level = %u\n",
  541. bl_config->bl_scale, bl_config->bl_scale_sv,
  542. bl_config->bl_level);
  543. rc = c_conn->ops.set_backlight(&c_conn->base,
  544. dsi_display, bl_config->bl_level);
  545. c_conn->unset_bl_level = 0;
  546. return rc;
  547. }
  548. void sde_connector_set_colorspace(struct sde_connector *c_conn)
  549. {
  550. int rc = 0;
  551. if (c_conn->ops.set_colorspace)
  552. rc = c_conn->ops.set_colorspace(&c_conn->base,
  553. c_conn->display);
  554. if (rc)
  555. SDE_ERROR_CONN(c_conn, "cannot apply new colorspace %d\n", rc);
  556. }
  557. void sde_connector_set_qsync_params(struct drm_connector *connector)
  558. {
  559. struct sde_connector *c_conn;
  560. struct sde_connector_state *c_state;
  561. u32 qsync_propval = 0;
  562. bool prop_dirty;
  563. if (!connector)
  564. return;
  565. c_conn = to_sde_connector(connector);
  566. c_state = to_sde_connector_state(connector->state);
  567. c_conn->qsync_updated = false;
  568. prop_dirty = msm_property_is_dirty(&c_conn->property_info,
  569. &c_state->property_state,
  570. CONNECTOR_PROP_QSYNC_MODE);
  571. if (prop_dirty) {
  572. qsync_propval = sde_connector_get_property(c_conn->base.state,
  573. CONNECTOR_PROP_QSYNC_MODE);
  574. if (qsync_propval != c_conn->qsync_mode) {
  575. SDE_DEBUG("updated qsync mode %d -> %d\n",
  576. c_conn->qsync_mode, qsync_propval);
  577. c_conn->qsync_updated = true;
  578. c_conn->qsync_mode = qsync_propval;
  579. }
  580. }
  581. }
  582. void sde_connector_complete_qsync_commit(struct drm_connector *conn,
  583. struct msm_display_conn_params *params)
  584. {
  585. struct sde_connector *c_conn;
  586. if (!conn || !params) {
  587. SDE_ERROR("invalid params\n");
  588. return;
  589. }
  590. c_conn = to_sde_connector(conn);
  591. if (c_conn && c_conn->qsync_updated &&
  592. (c_conn->qsync_mode == SDE_RM_QSYNC_ONE_SHOT_MODE)) {
  593. /* Reset qsync states if mode is one shot */
  594. params->qsync_mode = c_conn->qsync_mode = 0;
  595. params->qsync_update = true;
  596. SDE_EVT32(conn->base.id, c_conn->qsync_mode);
  597. }
  598. }
  599. static int _sde_connector_update_hdr_metadata(struct sde_connector *c_conn,
  600. struct sde_connector_state *c_state)
  601. {
  602. int rc = 0;
  603. if (c_conn->ops.config_hdr)
  604. rc = c_conn->ops.config_hdr(&c_conn->base, c_conn->display,
  605. c_state);
  606. if (rc)
  607. SDE_ERROR_CONN(c_conn, "cannot apply hdr metadata %d\n", rc);
  608. SDE_DEBUG_CONN(c_conn, "updated hdr metadata: %d\n", rc);
  609. return rc;
  610. }
  611. static int _sde_connector_update_dirty_properties(
  612. struct drm_connector *connector)
  613. {
  614. struct sde_connector *c_conn;
  615. struct sde_connector_state *c_state;
  616. int idx;
  617. if (!connector) {
  618. SDE_ERROR("invalid argument\n");
  619. return -EINVAL;
  620. }
  621. c_conn = to_sde_connector(connector);
  622. c_state = to_sde_connector_state(connector->state);
  623. mutex_lock(&c_conn->property_info.property_lock);
  624. while ((idx = msm_property_pop_dirty(&c_conn->property_info,
  625. &c_state->property_state)) >= 0) {
  626. switch (idx) {
  627. case CONNECTOR_PROP_LP:
  628. mutex_lock(&c_conn->lock);
  629. c_conn->lp_mode = sde_connector_get_property(
  630. connector->state, CONNECTOR_PROP_LP);
  631. _sde_connector_update_power_locked(c_conn);
  632. mutex_unlock(&c_conn->lock);
  633. break;
  634. case CONNECTOR_PROP_BL_SCALE:
  635. case CONNECTOR_PROP_SV_BL_SCALE:
  636. _sde_connector_update_bl_scale(c_conn);
  637. break;
  638. case CONNECTOR_PROP_HDR_METADATA:
  639. _sde_connector_update_hdr_metadata(c_conn, c_state);
  640. break;
  641. default:
  642. /* nothing to do for most properties */
  643. break;
  644. }
  645. }
  646. mutex_unlock(&c_conn->property_info.property_lock);
  647. /* if colorspace needs to be updated do it first */
  648. if (c_conn->colorspace_updated) {
  649. c_conn->colorspace_updated = false;
  650. sde_connector_set_colorspace(c_conn);
  651. }
  652. /*
  653. * Special handling for postproc properties and
  654. * for updating backlight if any unset backlight level is present
  655. */
  656. if (c_conn->bl_scale_dirty || c_conn->unset_bl_level) {
  657. _sde_connector_update_bl_scale(c_conn);
  658. c_conn->bl_scale_dirty = false;
  659. }
  660. return 0;
  661. }
  662. struct sde_connector_dyn_hdr_metadata *sde_connector_get_dyn_hdr_meta(
  663. struct drm_connector *connector)
  664. {
  665. struct sde_connector_state *c_state;
  666. if (!connector)
  667. return NULL;
  668. c_state = to_sde_connector_state(connector->state);
  669. return &c_state->dyn_hdr_meta;
  670. }
  671. int sde_connector_pre_kickoff(struct drm_connector *connector)
  672. {
  673. struct sde_connector *c_conn;
  674. struct sde_connector_state *c_state;
  675. struct msm_display_kickoff_params params;
  676. struct dsi_display *display;
  677. int rc;
  678. if (!connector) {
  679. SDE_ERROR("invalid argument\n");
  680. return -EINVAL;
  681. }
  682. c_conn = to_sde_connector(connector);
  683. c_state = to_sde_connector_state(connector->state);
  684. if (!c_conn->display) {
  685. SDE_ERROR("invalid connector display\n");
  686. return -EINVAL;
  687. }
  688. /*
  689. * During pre kickoff DCS commands have to have an
  690. * asynchronous wait to avoid an unnecessary stall
  691. * in pre-kickoff. This flag must be reset at the
  692. * end of display pre-kickoff.
  693. */
  694. if (c_conn->connector_type == DRM_MODE_CONNECTOR_DSI) {
  695. display = (struct dsi_display *)c_conn->display;
  696. display->queue_cmd_waits = true;
  697. }
  698. rc = _sde_connector_update_dirty_properties(connector);
  699. if (rc) {
  700. SDE_EVT32(connector->base.id, SDE_EVTLOG_ERROR);
  701. goto end;
  702. }
  703. if (!c_conn->ops.pre_kickoff)
  704. return 0;
  705. params.rois = &c_state->rois;
  706. params.hdr_meta = &c_state->hdr_meta;
  707. SDE_EVT32_VERBOSE(connector->base.id);
  708. rc = c_conn->ops.pre_kickoff(connector, c_conn->display, &params);
  709. if (c_conn->connector_type == DRM_MODE_CONNECTOR_DSI)
  710. display->queue_cmd_waits = false;
  711. end:
  712. return rc;
  713. }
  714. int sde_connector_prepare_commit(struct drm_connector *connector)
  715. {
  716. struct sde_connector *c_conn;
  717. struct sde_connector_state *c_state;
  718. struct msm_display_conn_params params;
  719. int rc;
  720. if (!connector) {
  721. SDE_ERROR("invalid argument\n");
  722. return -EINVAL;
  723. }
  724. c_conn = to_sde_connector(connector);
  725. c_state = to_sde_connector_state(connector->state);
  726. if (!c_conn->display) {
  727. SDE_ERROR("invalid connector display\n");
  728. return -EINVAL;
  729. }
  730. if (!c_conn->ops.prepare_commit)
  731. return 0;
  732. memset(&params, 0, sizeof(params));
  733. if (c_conn->qsync_updated) {
  734. params.qsync_mode = c_conn->qsync_mode;
  735. params.qsync_update = true;
  736. }
  737. rc = c_conn->ops.prepare_commit(c_conn->display, &params);
  738. SDE_EVT32(connector->base.id, params.qsync_mode,
  739. params.qsync_update, rc);
  740. return rc;
  741. }
  742. void sde_connector_helper_bridge_disable(struct drm_connector *connector)
  743. {
  744. int rc;
  745. struct sde_connector *c_conn = NULL;
  746. struct dsi_display *display;
  747. bool poms_pending = false;
  748. if (!connector)
  749. return;
  750. c_conn = to_sde_connector(connector);
  751. if (c_conn->connector_type == DRM_MODE_CONNECTOR_DSI) {
  752. display = (struct dsi_display *) c_conn->display;
  753. poms_pending = display->poms_pending;
  754. }
  755. if (!poms_pending) {
  756. rc = _sde_connector_update_dirty_properties(connector);
  757. if (rc) {
  758. SDE_ERROR("conn %d final pre kickoff failed %d\n",
  759. connector->base.id, rc);
  760. SDE_EVT32(connector->base.id, SDE_EVTLOG_ERROR);
  761. }
  762. }
  763. /* Disable ESD thread */
  764. sde_connector_schedule_status_work(connector, false);
  765. if (c_conn->bl_device) {
  766. c_conn->bl_device->props.power = FB_BLANK_POWERDOWN;
  767. c_conn->bl_device->props.state |= BL_CORE_FBBLANK;
  768. backlight_update_status(c_conn->bl_device);
  769. }
  770. c_conn->allow_bl_update = false;
  771. }
  772. void sde_connector_helper_bridge_enable(struct drm_connector *connector)
  773. {
  774. struct sde_connector *c_conn = NULL;
  775. struct dsi_display *display;
  776. if (!connector)
  777. return;
  778. c_conn = to_sde_connector(connector);
  779. display = (struct dsi_display *) c_conn->display;
  780. /*
  781. * Special handling for some panels which need atleast
  782. * one frame to be transferred to GRAM before enabling backlight.
  783. * So delay backlight update to these panels until the
  784. * first frame commit is received from the HW.
  785. */
  786. if (display->panel->bl_config.bl_update ==
  787. BL_UPDATE_DELAY_UNTIL_FIRST_FRAME)
  788. sde_encoder_wait_for_event(c_conn->encoder,
  789. MSM_ENC_TX_COMPLETE);
  790. c_conn->allow_bl_update = true;
  791. if (c_conn->bl_device) {
  792. c_conn->bl_device->props.power = FB_BLANK_UNBLANK;
  793. c_conn->bl_device->props.state &= ~BL_CORE_FBBLANK;
  794. backlight_update_status(c_conn->bl_device);
  795. }
  796. c_conn->panel_dead = false;
  797. }
  798. int sde_connector_clk_ctrl(struct drm_connector *connector, bool enable)
  799. {
  800. struct sde_connector *c_conn;
  801. struct dsi_display *display;
  802. u32 state = enable ? DSI_CLK_ON : DSI_CLK_OFF;
  803. int rc = 0;
  804. if (!connector) {
  805. SDE_ERROR("invalid connector\n");
  806. return -EINVAL;
  807. }
  808. c_conn = to_sde_connector(connector);
  809. display = (struct dsi_display *) c_conn->display;
  810. if (display && c_conn->ops.clk_ctrl)
  811. rc = c_conn->ops.clk_ctrl(display->mdp_clk_handle,
  812. DSI_ALL_CLKS, state);
  813. return rc;
  814. }
  815. void sde_connector_destroy(struct drm_connector *connector)
  816. {
  817. struct sde_connector *c_conn;
  818. if (!connector) {
  819. SDE_ERROR("invalid connector\n");
  820. return;
  821. }
  822. c_conn = to_sde_connector(connector);
  823. /* cancel if any pending esd work */
  824. sde_connector_schedule_status_work(connector, false);
  825. if (c_conn->ops.pre_destroy)
  826. c_conn->ops.pre_destroy(connector, c_conn->display);
  827. if (c_conn->blob_caps)
  828. drm_property_blob_put(c_conn->blob_caps);
  829. if (c_conn->blob_hdr)
  830. drm_property_blob_put(c_conn->blob_hdr);
  831. if (c_conn->blob_dither)
  832. drm_property_blob_put(c_conn->blob_dither);
  833. if (c_conn->blob_mode_info)
  834. drm_property_blob_put(c_conn->blob_mode_info);
  835. if (c_conn->blob_ext_hdr)
  836. drm_property_blob_put(c_conn->blob_ext_hdr);
  837. if (c_conn->cdev)
  838. backlight_cdev_unregister(c_conn->cdev);
  839. if (c_conn->bl_device)
  840. backlight_device_unregister(c_conn->bl_device);
  841. drm_connector_unregister(connector);
  842. mutex_destroy(&c_conn->lock);
  843. sde_fence_deinit(c_conn->retire_fence);
  844. drm_connector_cleanup(connector);
  845. msm_property_destroy(&c_conn->property_info);
  846. kfree(c_conn);
  847. }
  848. /**
  849. * _sde_connector_destroy_fb - clean up connector state's out_fb buffer
  850. * @c_conn: Pointer to sde connector structure
  851. * @c_state: Pointer to sde connector state structure
  852. */
  853. static void _sde_connector_destroy_fb(struct sde_connector *c_conn,
  854. struct sde_connector_state *c_state)
  855. {
  856. if (!c_state || !c_state->out_fb) {
  857. SDE_ERROR("invalid state %pK\n", c_state);
  858. return;
  859. }
  860. drm_framebuffer_put(c_state->out_fb);
  861. c_state->out_fb = NULL;
  862. if (c_conn)
  863. c_state->property_values[CONNECTOR_PROP_OUT_FB].value =
  864. msm_property_get_default(&c_conn->property_info,
  865. CONNECTOR_PROP_OUT_FB);
  866. else
  867. c_state->property_values[CONNECTOR_PROP_OUT_FB].value = ~0;
  868. }
  869. static void sde_connector_atomic_destroy_state(struct drm_connector *connector,
  870. struct drm_connector_state *state)
  871. {
  872. struct sde_connector *c_conn = NULL;
  873. struct sde_connector_state *c_state = NULL;
  874. if (!state) {
  875. SDE_ERROR("invalid state\n");
  876. return;
  877. }
  878. /*
  879. * The base DRM framework currently always passes in a NULL
  880. * connector pointer. This is not correct, but attempt to
  881. * handle that case as much as possible.
  882. */
  883. if (connector)
  884. c_conn = to_sde_connector(connector);
  885. c_state = to_sde_connector_state(state);
  886. if (c_state->out_fb)
  887. _sde_connector_destroy_fb(c_conn, c_state);
  888. __drm_atomic_helper_connector_destroy_state(&c_state->base);
  889. if (!c_conn) {
  890. kfree(c_state);
  891. } else {
  892. /* destroy value helper */
  893. msm_property_destroy_state(&c_conn->property_info, c_state,
  894. &c_state->property_state);
  895. }
  896. }
  897. static void sde_connector_atomic_reset(struct drm_connector *connector)
  898. {
  899. struct sde_connector *c_conn;
  900. struct sde_connector_state *c_state;
  901. if (!connector) {
  902. SDE_ERROR("invalid connector\n");
  903. return;
  904. }
  905. c_conn = to_sde_connector(connector);
  906. if (connector->state &&
  907. !sde_crtc_is_reset_required(connector->state->crtc)) {
  908. SDE_DEBUG_CONN(c_conn, "avoid reset for connector\n");
  909. return;
  910. }
  911. if (connector->state) {
  912. sde_connector_atomic_destroy_state(connector, connector->state);
  913. connector->state = 0;
  914. }
  915. c_state = msm_property_alloc_state(&c_conn->property_info);
  916. if (!c_state) {
  917. SDE_ERROR("state alloc failed\n");
  918. return;
  919. }
  920. /* reset value helper, zero out state structure and reset properties */
  921. msm_property_reset_state(&c_conn->property_info, c_state,
  922. &c_state->property_state,
  923. c_state->property_values);
  924. __drm_atomic_helper_connector_reset(connector, &c_state->base);
  925. }
  926. static struct drm_connector_state *
  927. sde_connector_atomic_duplicate_state(struct drm_connector *connector)
  928. {
  929. struct sde_connector *c_conn;
  930. struct sde_connector_state *c_state, *c_oldstate;
  931. if (!connector || !connector->state) {
  932. SDE_ERROR("invalid connector %pK\n", connector);
  933. return NULL;
  934. }
  935. c_conn = to_sde_connector(connector);
  936. c_oldstate = to_sde_connector_state(connector->state);
  937. c_state = msm_property_alloc_state(&c_conn->property_info);
  938. if (!c_state) {
  939. SDE_ERROR("state alloc failed\n");
  940. return NULL;
  941. }
  942. /* duplicate value helper */
  943. msm_property_duplicate_state(&c_conn->property_info,
  944. c_oldstate, c_state,
  945. &c_state->property_state, c_state->property_values);
  946. __drm_atomic_helper_connector_duplicate_state(connector,
  947. &c_state->base);
  948. /* additional handling for drm framebuffer objects */
  949. if (c_state->out_fb)
  950. drm_framebuffer_get(c_state->out_fb);
  951. /* clear dynamic HDR metadata from prev state */
  952. if (c_state->dyn_hdr_meta.dynamic_hdr_update) {
  953. c_state->dyn_hdr_meta.dynamic_hdr_update = false;
  954. c_state->dyn_hdr_meta.dynamic_hdr_payload_size = 0;
  955. }
  956. return &c_state->base;
  957. }
  958. int sde_connector_roi_v1_check_roi(struct drm_connector_state *conn_state)
  959. {
  960. const struct msm_roi_alignment *align = NULL;
  961. struct sde_connector *c_conn = NULL;
  962. struct msm_mode_info mode_info;
  963. struct sde_connector_state *c_state;
  964. int i, w, h;
  965. if (!conn_state)
  966. return -EINVAL;
  967. memset(&mode_info, 0, sizeof(mode_info));
  968. c_state = to_sde_connector_state(conn_state);
  969. c_conn = to_sde_connector(conn_state->connector);
  970. memcpy(&mode_info, &c_state->mode_info, sizeof(c_state->mode_info));
  971. if (!mode_info.roi_caps.enabled)
  972. return 0;
  973. if (c_state->rois.num_rects > mode_info.roi_caps.num_roi) {
  974. SDE_ERROR_CONN(c_conn, "too many rects specified: %d > %d\n",
  975. c_state->rois.num_rects,
  976. mode_info.roi_caps.num_roi);
  977. return -E2BIG;
  978. }
  979. align = &mode_info.roi_caps.align;
  980. for (i = 0; i < c_state->rois.num_rects; ++i) {
  981. struct drm_clip_rect *roi_conn;
  982. roi_conn = &c_state->rois.roi[i];
  983. w = roi_conn->x2 - roi_conn->x1;
  984. h = roi_conn->y2 - roi_conn->y1;
  985. SDE_EVT32_VERBOSE(DRMID(&c_conn->base),
  986. roi_conn->x1, roi_conn->y1,
  987. roi_conn->x2, roi_conn->y2);
  988. if (w <= 0 || h <= 0) {
  989. SDE_ERROR_CONN(c_conn, "invalid conn roi w %d h %d\n",
  990. w, h);
  991. return -EINVAL;
  992. }
  993. if (w < align->min_width || w % align->width_pix_align) {
  994. SDE_ERROR_CONN(c_conn,
  995. "invalid conn roi width %d min %d align %d\n",
  996. w, align->min_width,
  997. align->width_pix_align);
  998. return -EINVAL;
  999. }
  1000. if (h < align->min_height || h % align->height_pix_align) {
  1001. SDE_ERROR_CONN(c_conn,
  1002. "invalid conn roi height %d min %d align %d\n",
  1003. h, align->min_height,
  1004. align->height_pix_align);
  1005. return -EINVAL;
  1006. }
  1007. if (roi_conn->x1 % align->xstart_pix_align) {
  1008. SDE_ERROR_CONN(c_conn,
  1009. "invalid conn roi x1 %d align %d\n",
  1010. roi_conn->x1, align->xstart_pix_align);
  1011. return -EINVAL;
  1012. }
  1013. if (roi_conn->y1 % align->ystart_pix_align) {
  1014. SDE_ERROR_CONN(c_conn,
  1015. "invalid conn roi y1 %d align %d\n",
  1016. roi_conn->y1, align->ystart_pix_align);
  1017. return -EINVAL;
  1018. }
  1019. }
  1020. return 0;
  1021. }
  1022. static int _sde_connector_set_roi_v1(
  1023. struct sde_connector *c_conn,
  1024. struct sde_connector_state *c_state,
  1025. void __user *usr_ptr)
  1026. {
  1027. struct sde_drm_roi_v1 roi_v1;
  1028. int i;
  1029. if (!c_conn || !c_state) {
  1030. SDE_ERROR("invalid args\n");
  1031. return -EINVAL;
  1032. }
  1033. memset(&c_state->rois, 0, sizeof(c_state->rois));
  1034. if (!usr_ptr) {
  1035. SDE_DEBUG_CONN(c_conn, "rois cleared\n");
  1036. return 0;
  1037. }
  1038. if (copy_from_user(&roi_v1, usr_ptr, sizeof(roi_v1))) {
  1039. SDE_ERROR_CONN(c_conn, "failed to copy roi_v1 data\n");
  1040. return -EINVAL;
  1041. }
  1042. SDE_DEBUG_CONN(c_conn, "num_rects %d\n", roi_v1.num_rects);
  1043. if (roi_v1.num_rects == 0) {
  1044. SDE_DEBUG_CONN(c_conn, "rois cleared\n");
  1045. return 0;
  1046. }
  1047. if (roi_v1.num_rects > SDE_MAX_ROI_V1) {
  1048. SDE_ERROR_CONN(c_conn, "num roi rects more than supported: %d",
  1049. roi_v1.num_rects);
  1050. return -EINVAL;
  1051. }
  1052. c_state->rois.num_rects = roi_v1.num_rects;
  1053. for (i = 0; i < roi_v1.num_rects; ++i) {
  1054. c_state->rois.roi[i] = roi_v1.roi[i];
  1055. SDE_DEBUG_CONN(c_conn, "roi%d: roi (%d,%d) (%d,%d)\n", i,
  1056. c_state->rois.roi[i].x1,
  1057. c_state->rois.roi[i].y1,
  1058. c_state->rois.roi[i].x2,
  1059. c_state->rois.roi[i].y2);
  1060. }
  1061. return 0;
  1062. }
  1063. static int _sde_connector_set_ext_hdr_info(
  1064. struct sde_connector *c_conn,
  1065. struct sde_connector_state *c_state,
  1066. void __user *usr_ptr)
  1067. {
  1068. int rc = 0;
  1069. struct drm_msm_ext_hdr_metadata *hdr_meta;
  1070. size_t payload_size = 0;
  1071. u8 *payload = NULL;
  1072. int i;
  1073. if (!c_conn || !c_state) {
  1074. SDE_ERROR_CONN(c_conn, "invalid args\n");
  1075. rc = -EINVAL;
  1076. goto end;
  1077. }
  1078. memset(&c_state->hdr_meta, 0, sizeof(c_state->hdr_meta));
  1079. if (!usr_ptr) {
  1080. SDE_DEBUG_CONN(c_conn, "hdr metadata cleared\n");
  1081. goto end;
  1082. }
  1083. if (!c_conn->hdr_supported) {
  1084. SDE_ERROR_CONN(c_conn, "sink doesn't support HDR\n");
  1085. rc = -ENOTSUPP;
  1086. goto end;
  1087. }
  1088. if (copy_from_user(&c_state->hdr_meta,
  1089. (void __user *)usr_ptr,
  1090. sizeof(*hdr_meta))) {
  1091. SDE_ERROR_CONN(c_conn, "failed to copy hdr metadata\n");
  1092. rc = -EFAULT;
  1093. goto end;
  1094. }
  1095. hdr_meta = &c_state->hdr_meta;
  1096. /* dynamic metadata support */
  1097. if (!hdr_meta->hdr_plus_payload_size || !hdr_meta->hdr_plus_payload)
  1098. goto skip_dhdr;
  1099. if (!c_conn->hdr_plus_app_ver) {
  1100. SDE_ERROR_CONN(c_conn, "sink doesn't support dynamic HDR\n");
  1101. rc = -ENOTSUPP;
  1102. goto end;
  1103. }
  1104. payload_size = hdr_meta->hdr_plus_payload_size;
  1105. if (payload_size > sizeof(c_state->dyn_hdr_meta.dynamic_hdr_payload)) {
  1106. SDE_ERROR_CONN(c_conn, "payload size exceeds limit\n");
  1107. rc = -EINVAL;
  1108. goto end;
  1109. }
  1110. payload = c_state->dyn_hdr_meta.dynamic_hdr_payload;
  1111. if (copy_from_user(payload,
  1112. (void __user *)c_state->hdr_meta.hdr_plus_payload,
  1113. payload_size)) {
  1114. SDE_ERROR_CONN(c_conn, "failed to copy dhdr metadata\n");
  1115. rc = -EFAULT;
  1116. goto end;
  1117. }
  1118. /* verify 1st header byte, programmed in DP Infoframe SDP header */
  1119. if (payload_size < 1 || (payload[0] != HDR10_PLUS_VSIF_TYPE_CODE)) {
  1120. SDE_ERROR_CONN(c_conn, "invalid payload detected, size: %zd\n",
  1121. payload_size);
  1122. rc = -EINVAL;
  1123. goto end;
  1124. }
  1125. c_state->dyn_hdr_meta.dynamic_hdr_update = true;
  1126. skip_dhdr:
  1127. c_state->dyn_hdr_meta.dynamic_hdr_payload_size = payload_size;
  1128. SDE_DEBUG_CONN(c_conn, "hdr_state %d\n", hdr_meta->hdr_state);
  1129. SDE_DEBUG_CONN(c_conn, "hdr_supported %d\n", hdr_meta->hdr_supported);
  1130. SDE_DEBUG_CONN(c_conn, "eotf %d\n", hdr_meta->eotf);
  1131. SDE_DEBUG_CONN(c_conn, "white_point_x %d\n", hdr_meta->white_point_x);
  1132. SDE_DEBUG_CONN(c_conn, "white_point_y %d\n", hdr_meta->white_point_y);
  1133. SDE_DEBUG_CONN(c_conn, "max_luminance %d\n", hdr_meta->max_luminance);
  1134. SDE_DEBUG_CONN(c_conn, "max_content_light_level %d\n",
  1135. hdr_meta->max_content_light_level);
  1136. SDE_DEBUG_CONN(c_conn, "max_average_light_level %d\n",
  1137. hdr_meta->max_average_light_level);
  1138. for (i = 0; i < HDR_PRIMARIES_COUNT; i++) {
  1139. SDE_DEBUG_CONN(c_conn, "display_primaries_x [%d]\n",
  1140. hdr_meta->display_primaries_x[i]);
  1141. SDE_DEBUG_CONN(c_conn, "display_primaries_y [%d]\n",
  1142. hdr_meta->display_primaries_y[i]);
  1143. }
  1144. SDE_DEBUG_CONN(c_conn, "hdr_plus payload%s updated, size %d\n",
  1145. c_state->dyn_hdr_meta.dynamic_hdr_update ? "" : " NOT",
  1146. c_state->dyn_hdr_meta.dynamic_hdr_payload_size);
  1147. end:
  1148. return rc;
  1149. }
  1150. static int sde_connector_atomic_set_property(struct drm_connector *connector,
  1151. struct drm_connector_state *state,
  1152. struct drm_property *property,
  1153. uint64_t val)
  1154. {
  1155. struct sde_connector *c_conn;
  1156. struct sde_connector_state *c_state;
  1157. int idx, rc;
  1158. uint64_t fence_user_fd;
  1159. uint64_t __user prev_user_fd;
  1160. if (!connector || !state || !property) {
  1161. SDE_ERROR("invalid argument(s), conn %pK, state %pK, prp %pK\n",
  1162. connector, state, property);
  1163. return -EINVAL;
  1164. }
  1165. c_conn = to_sde_connector(connector);
  1166. c_state = to_sde_connector_state(state);
  1167. /* generic property handling */
  1168. rc = msm_property_atomic_set(&c_conn->property_info,
  1169. &c_state->property_state, property, val);
  1170. if (rc)
  1171. goto end;
  1172. /* connector-specific property handling */
  1173. idx = msm_property_index(&c_conn->property_info, property);
  1174. switch (idx) {
  1175. case CONNECTOR_PROP_OUT_FB:
  1176. /* clear old fb, if present */
  1177. if (c_state->out_fb)
  1178. _sde_connector_destroy_fb(c_conn, c_state);
  1179. /* convert fb val to drm framebuffer and prepare it */
  1180. c_state->out_fb =
  1181. drm_framebuffer_lookup(connector->dev, NULL, val);
  1182. if (!c_state->out_fb && val) {
  1183. SDE_ERROR("failed to look up fb %lld\n", val);
  1184. rc = -EFAULT;
  1185. } else if (!c_state->out_fb && !val) {
  1186. SDE_DEBUG("cleared fb_id\n");
  1187. rc = 0;
  1188. }
  1189. break;
  1190. case CONNECTOR_PROP_RETIRE_FENCE:
  1191. if (!val)
  1192. goto end;
  1193. rc = copy_from_user(&prev_user_fd, (void __user *)val,
  1194. sizeof(uint64_t));
  1195. if (rc) {
  1196. SDE_ERROR("copy from user failed rc:%d\n", rc);
  1197. rc = -EFAULT;
  1198. goto end;
  1199. }
  1200. /*
  1201. * client is expected to reset the property to -1 before
  1202. * requesting for the retire fence
  1203. */
  1204. if (prev_user_fd == -1) {
  1205. /*
  1206. * update the offset to a timeline for
  1207. * commit completion
  1208. */
  1209. rc = sde_fence_create(c_conn->retire_fence,
  1210. &fence_user_fd, 1);
  1211. if (rc) {
  1212. SDE_ERROR("fence create failed rc:%d\n", rc);
  1213. goto end;
  1214. }
  1215. rc = copy_to_user((uint64_t __user *)(uintptr_t)val,
  1216. &fence_user_fd, sizeof(uint64_t));
  1217. if (rc) {
  1218. SDE_ERROR("copy to user failed rc:%d\n", rc);
  1219. /*
  1220. * fence will be released with timeline
  1221. * update
  1222. */
  1223. put_unused_fd(fence_user_fd);
  1224. rc = -EFAULT;
  1225. goto end;
  1226. }
  1227. }
  1228. break;
  1229. case CONNECTOR_PROP_ROI_V1:
  1230. rc = _sde_connector_set_roi_v1(c_conn, c_state,
  1231. (void *)(uintptr_t)val);
  1232. if (rc)
  1233. SDE_ERROR_CONN(c_conn, "invalid roi_v1, rc: %d\n", rc);
  1234. break;
  1235. /* CONNECTOR_PROP_BL_SCALE and CONNECTOR_PROP_SV_BL_SCALE are
  1236. * color-processing properties. These two properties require
  1237. * special handling since they don't quite fit the current standard
  1238. * atomic set property framework.
  1239. */
  1240. case CONNECTOR_PROP_BL_SCALE:
  1241. c_conn->bl_scale = val;
  1242. c_conn->bl_scale_dirty = true;
  1243. break;
  1244. case CONNECTOR_PROP_SV_BL_SCALE:
  1245. c_conn->bl_scale_sv = val;
  1246. c_conn->bl_scale_dirty = true;
  1247. break;
  1248. case CONNECTOR_PROP_HDR_METADATA:
  1249. rc = _sde_connector_set_ext_hdr_info(c_conn,
  1250. c_state, (void *)(uintptr_t)val);
  1251. if (rc)
  1252. SDE_ERROR_CONN(c_conn, "cannot set hdr info %d\n", rc);
  1253. break;
  1254. case CONNECTOR_PROP_QSYNC_MODE:
  1255. msm_property_set_dirty(&c_conn->property_info,
  1256. &c_state->property_state, idx);
  1257. break;
  1258. default:
  1259. break;
  1260. }
  1261. /* check for custom property handling */
  1262. if (!rc && c_conn->ops.set_property) {
  1263. rc = c_conn->ops.set_property(connector,
  1264. state,
  1265. idx,
  1266. val,
  1267. c_conn->display);
  1268. /* potentially clean up out_fb if rc != 0 */
  1269. if ((idx == CONNECTOR_PROP_OUT_FB) && rc)
  1270. _sde_connector_destroy_fb(c_conn, c_state);
  1271. }
  1272. end:
  1273. return rc;
  1274. }
  1275. static int sde_connector_atomic_get_property(struct drm_connector *connector,
  1276. const struct drm_connector_state *state,
  1277. struct drm_property *property,
  1278. uint64_t *val)
  1279. {
  1280. struct sde_connector *c_conn;
  1281. struct sde_connector_state *c_state;
  1282. int idx, rc = -EINVAL;
  1283. if (!connector || !state) {
  1284. SDE_ERROR("invalid argument(s), conn %pK, state %pK\n",
  1285. connector, state);
  1286. return -EINVAL;
  1287. }
  1288. c_conn = to_sde_connector(connector);
  1289. c_state = to_sde_connector_state(state);
  1290. idx = msm_property_index(&c_conn->property_info, property);
  1291. if (idx == CONNECTOR_PROP_RETIRE_FENCE) {
  1292. *val = ~0;
  1293. rc = 0;
  1294. } else {
  1295. /* get cached property value */
  1296. rc = msm_property_atomic_get(&c_conn->property_info,
  1297. &c_state->property_state, property, val);
  1298. }
  1299. /* allow for custom override */
  1300. if (c_conn->ops.get_property)
  1301. rc = c_conn->ops.get_property(connector,
  1302. (struct drm_connector_state *)state,
  1303. idx,
  1304. val,
  1305. c_conn->display);
  1306. return rc;
  1307. }
  1308. void sde_conn_timeline_status(struct drm_connector *conn)
  1309. {
  1310. struct sde_connector *c_conn;
  1311. if (!conn) {
  1312. SDE_ERROR("invalid connector\n");
  1313. return;
  1314. }
  1315. c_conn = to_sde_connector(conn);
  1316. sde_fence_timeline_status(c_conn->retire_fence, &conn->base);
  1317. }
  1318. void sde_connector_prepare_fence(struct drm_connector *connector)
  1319. {
  1320. if (!connector) {
  1321. SDE_ERROR("invalid connector\n");
  1322. return;
  1323. }
  1324. sde_fence_prepare(to_sde_connector(connector)->retire_fence);
  1325. }
  1326. void sde_connector_complete_commit(struct drm_connector *connector,
  1327. ktime_t ts, enum sde_fence_event fence_event)
  1328. {
  1329. if (!connector) {
  1330. SDE_ERROR("invalid connector\n");
  1331. return;
  1332. }
  1333. /* signal connector's retire fence */
  1334. sde_fence_signal(to_sde_connector(connector)->retire_fence,
  1335. ts, fence_event);
  1336. }
  1337. void sde_connector_commit_reset(struct drm_connector *connector, ktime_t ts)
  1338. {
  1339. if (!connector) {
  1340. SDE_ERROR("invalid connector\n");
  1341. return;
  1342. }
  1343. /* signal connector's retire fence */
  1344. sde_fence_signal(to_sde_connector(connector)->retire_fence,
  1345. ts, SDE_FENCE_RESET_TIMELINE);
  1346. }
  1347. static void sde_connector_update_hdr_props(struct drm_connector *connector)
  1348. {
  1349. struct sde_connector *c_conn = to_sde_connector(connector);
  1350. struct drm_msm_ext_hdr_properties hdr = {0};
  1351. hdr.hdr_metadata_type_one = c_conn->hdr_metadata_type_one ? 1 : 0;
  1352. hdr.hdr_supported = c_conn->hdr_supported ? 1 : 0;
  1353. hdr.hdr_eotf = c_conn->hdr_eotf;
  1354. hdr.hdr_max_luminance = c_conn->hdr_max_luminance;
  1355. hdr.hdr_avg_luminance = c_conn->hdr_avg_luminance;
  1356. hdr.hdr_min_luminance = c_conn->hdr_min_luminance;
  1357. hdr.hdr_plus_supported = c_conn->hdr_plus_app_ver;
  1358. msm_property_set_blob(&c_conn->property_info, &c_conn->blob_ext_hdr,
  1359. &hdr, sizeof(hdr), CONNECTOR_PROP_EXT_HDR_INFO);
  1360. }
  1361. static void sde_connector_update_colorspace(struct drm_connector *connector)
  1362. {
  1363. int ret;
  1364. struct sde_connector *c_conn = to_sde_connector(connector);
  1365. ret = msm_property_set_property(
  1366. sde_connector_get_propinfo(connector),
  1367. sde_connector_get_property_state(connector->state),
  1368. CONNECTOR_PROP_SUPPORTED_COLORSPACES,
  1369. c_conn->color_enc_fmt);
  1370. if (ret)
  1371. SDE_ERROR("failed to set colorspace property for connector\n");
  1372. }
  1373. static enum drm_connector_status
  1374. sde_connector_detect(struct drm_connector *connector, bool force)
  1375. {
  1376. enum drm_connector_status status = connector_status_unknown;
  1377. struct sde_connector *c_conn;
  1378. if (!connector) {
  1379. SDE_ERROR("invalid connector\n");
  1380. return status;
  1381. }
  1382. c_conn = to_sde_connector(connector);
  1383. if (c_conn->ops.detect)
  1384. status = c_conn->ops.detect(connector,
  1385. force,
  1386. c_conn->display);
  1387. return status;
  1388. }
  1389. int sde_connector_get_dpms(struct drm_connector *connector)
  1390. {
  1391. struct sde_connector *c_conn;
  1392. int rc;
  1393. if (!connector) {
  1394. SDE_DEBUG("invalid connector\n");
  1395. return DRM_MODE_DPMS_OFF;
  1396. }
  1397. c_conn = to_sde_connector(connector);
  1398. mutex_lock(&c_conn->lock);
  1399. rc = c_conn->dpms_mode;
  1400. mutex_unlock(&c_conn->lock);
  1401. return rc;
  1402. }
  1403. int sde_connector_set_property_for_commit(struct drm_connector *connector,
  1404. struct drm_atomic_state *atomic_state,
  1405. uint32_t property_idx, uint64_t value)
  1406. {
  1407. struct drm_connector_state *state;
  1408. struct drm_property *property;
  1409. struct sde_connector *c_conn;
  1410. if (!connector || !atomic_state) {
  1411. SDE_ERROR("invalid argument(s), conn %d, state %d\n",
  1412. connector != NULL, atomic_state != NULL);
  1413. return -EINVAL;
  1414. }
  1415. c_conn = to_sde_connector(connector);
  1416. property = msm_property_index_to_drm_property(
  1417. &c_conn->property_info, property_idx);
  1418. if (!property) {
  1419. SDE_ERROR("invalid property index %d\n", property_idx);
  1420. return -EINVAL;
  1421. }
  1422. state = drm_atomic_get_connector_state(atomic_state, connector);
  1423. if (IS_ERR_OR_NULL(state)) {
  1424. SDE_ERROR("failed to get conn %d state\n",
  1425. connector->base.id);
  1426. return -EINVAL;
  1427. }
  1428. return sde_connector_atomic_set_property(
  1429. connector, state, property, value);
  1430. }
  1431. int sde_connector_helper_reset_custom_properties(
  1432. struct drm_connector *connector,
  1433. struct drm_connector_state *connector_state)
  1434. {
  1435. struct sde_connector *c_conn;
  1436. struct sde_connector_state *c_state;
  1437. struct drm_property *drm_prop;
  1438. enum msm_mdp_conn_property prop_idx;
  1439. if (!connector || !connector_state) {
  1440. SDE_ERROR("invalid params\n");
  1441. return -EINVAL;
  1442. }
  1443. c_conn = to_sde_connector(connector);
  1444. c_state = to_sde_connector_state(connector_state);
  1445. for (prop_idx = 0; prop_idx < CONNECTOR_PROP_COUNT; prop_idx++) {
  1446. uint64_t val = c_state->property_values[prop_idx].value;
  1447. uint64_t def;
  1448. int ret;
  1449. drm_prop = msm_property_index_to_drm_property(
  1450. &c_conn->property_info, prop_idx);
  1451. if (!drm_prop) {
  1452. /* not all props will be installed, based on caps */
  1453. SDE_DEBUG_CONN(c_conn, "invalid property index %d\n",
  1454. prop_idx);
  1455. continue;
  1456. }
  1457. def = msm_property_get_default(&c_conn->property_info,
  1458. prop_idx);
  1459. if (val == def)
  1460. continue;
  1461. SDE_DEBUG_CONN(c_conn, "set prop %s idx %d from %llu to %llu\n",
  1462. drm_prop->name, prop_idx, val, def);
  1463. ret = sde_connector_atomic_set_property(connector,
  1464. connector_state, drm_prop, def);
  1465. if (ret) {
  1466. SDE_ERROR_CONN(c_conn,
  1467. "set property failed, idx %d ret %d\n",
  1468. prop_idx, ret);
  1469. continue;
  1470. }
  1471. }
  1472. return 0;
  1473. }
  1474. static int _sde_connector_lm_preference(struct sde_connector *sde_conn,
  1475. struct sde_kms *sde_kms, uint32_t disp_type)
  1476. {
  1477. int ret = 0;
  1478. u32 num_lm = 0;
  1479. if (!sde_conn || !sde_kms || !sde_conn->ops.get_default_lms) {
  1480. SDE_DEBUG("invalid input params");
  1481. return -EINVAL;
  1482. }
  1483. if (!disp_type || disp_type >= SDE_CONNECTOR_MAX) {
  1484. SDE_DEBUG("invalid display_type");
  1485. return -EINVAL;
  1486. }
  1487. ret = sde_conn->ops.get_default_lms(sde_conn->display, &num_lm);
  1488. if (ret || !num_lm) {
  1489. SDE_DEBUG("failed to get default lm count");
  1490. return ret;
  1491. }
  1492. if (num_lm > sde_kms->catalog->mixer_count) {
  1493. SDE_DEBUG(
  1494. "topology requesting more lms [%d] than hw exists [%d]",
  1495. num_lm, sde_kms->catalog->mixer_count);
  1496. return -EINVAL;
  1497. }
  1498. sde_hw_mixer_set_preference(sde_kms->catalog, num_lm, disp_type);
  1499. return ret;
  1500. }
  1501. int sde_connector_get_panel_vfp(struct drm_connector *connector,
  1502. struct drm_display_mode *mode)
  1503. {
  1504. struct sde_connector *c_conn;
  1505. int vfp = -EINVAL;
  1506. if (!connector || !mode) {
  1507. SDE_ERROR("invalid connector\n");
  1508. return vfp;
  1509. }
  1510. c_conn = to_sde_connector(connector);
  1511. if (!c_conn->ops.get_panel_vfp)
  1512. return vfp;
  1513. vfp = c_conn->ops.get_panel_vfp(c_conn->display,
  1514. mode->hdisplay, mode->vdisplay);
  1515. if (vfp <= 0)
  1516. SDE_ERROR("Failed get_panel_vfp %d\n", vfp);
  1517. return vfp;
  1518. }
  1519. static int _sde_debugfs_conn_cmd_tx_open(struct inode *inode, struct file *file)
  1520. {
  1521. /* non-seekable */
  1522. file->private_data = inode->i_private;
  1523. return nonseekable_open(inode, file);
  1524. }
  1525. static ssize_t _sde_debugfs_conn_cmd_tx_sts_read(struct file *file,
  1526. char __user *buf, size_t count, loff_t *ppos)
  1527. {
  1528. struct drm_connector *connector = file->private_data;
  1529. struct sde_connector *c_conn = NULL;
  1530. char buffer[MAX_CMD_PAYLOAD_SIZE] = {0};
  1531. int blen = 0;
  1532. if (*ppos)
  1533. return 0;
  1534. if (!connector) {
  1535. SDE_ERROR("invalid argument, conn is NULL\n");
  1536. return -EINVAL;
  1537. }
  1538. c_conn = to_sde_connector(connector);
  1539. mutex_lock(&c_conn->lock);
  1540. blen = snprintf(buffer, MAX_CMD_PAYLOAD_SIZE,
  1541. "last_cmd_tx_sts:0x%x",
  1542. c_conn->last_cmd_tx_sts);
  1543. mutex_unlock(&c_conn->lock);
  1544. SDE_DEBUG("output: %s\n", buffer);
  1545. if (blen <= 0) {
  1546. SDE_ERROR("snprintf failed, blen %d\n", blen);
  1547. return -EINVAL;
  1548. }
  1549. if (blen > count)
  1550. blen = count;
  1551. blen = min_t(size_t, blen, MAX_CMD_PAYLOAD_SIZE);
  1552. if (copy_to_user(buf, buffer, blen)) {
  1553. SDE_ERROR("copy to user buffer failed\n");
  1554. return -EFAULT;
  1555. }
  1556. *ppos += blen;
  1557. return blen;
  1558. }
  1559. static ssize_t _sde_debugfs_conn_cmd_tx_write(struct file *file,
  1560. const char __user *p, size_t count, loff_t *ppos)
  1561. {
  1562. struct drm_connector *connector = file->private_data;
  1563. struct sde_connector *c_conn = NULL;
  1564. char *input, *token, *input_copy, *input_dup = NULL;
  1565. const char *delim = " ";
  1566. char buffer[MAX_CMD_PAYLOAD_SIZE] = {0};
  1567. int rc = 0, strtoint = 0;
  1568. u32 buf_size = 0;
  1569. if (*ppos || !connector) {
  1570. SDE_ERROR("invalid argument(s), conn %d\n", connector != NULL);
  1571. return -EINVAL;
  1572. }
  1573. c_conn = to_sde_connector(connector);
  1574. if (!c_conn->ops.cmd_transfer) {
  1575. SDE_ERROR("no cmd transfer support for connector name %s\n",
  1576. c_conn->name);
  1577. return -EINVAL;
  1578. }
  1579. input = kzalloc(count + 1, GFP_KERNEL);
  1580. if (!input)
  1581. return -ENOMEM;
  1582. if (copy_from_user(input, p, count)) {
  1583. SDE_ERROR("copy from user failed\n");
  1584. rc = -EFAULT;
  1585. goto end;
  1586. }
  1587. input[count] = '\0';
  1588. SDE_INFO("Command requested for transfer to panel: %s\n", input);
  1589. input_copy = kstrdup(input, GFP_KERNEL);
  1590. if (!input_copy) {
  1591. rc = -ENOMEM;
  1592. goto end;
  1593. }
  1594. input_dup = input_copy;
  1595. token = strsep(&input_copy, delim);
  1596. while (token) {
  1597. rc = kstrtoint(token, 0, &strtoint);
  1598. if (rc) {
  1599. SDE_ERROR("input buffer conversion failed\n");
  1600. goto end1;
  1601. }
  1602. buffer[buf_size++] = (strtoint & 0xff);
  1603. if (buf_size >= MAX_CMD_PAYLOAD_SIZE) {
  1604. SDE_ERROR("buffer size exceeding the limit %d\n",
  1605. MAX_CMD_PAYLOAD_SIZE);
  1606. rc = -EFAULT;
  1607. goto end1;
  1608. }
  1609. token = strsep(&input_copy, delim);
  1610. }
  1611. SDE_DEBUG("command packet size in bytes: %u\n", buf_size);
  1612. if (!buf_size) {
  1613. rc = -EFAULT;
  1614. goto end1;
  1615. }
  1616. mutex_lock(&c_conn->lock);
  1617. rc = c_conn->ops.cmd_transfer(&c_conn->base, c_conn->display, buffer,
  1618. buf_size);
  1619. c_conn->last_cmd_tx_sts = !rc ? true : false;
  1620. mutex_unlock(&c_conn->lock);
  1621. rc = count;
  1622. end1:
  1623. kfree(input_dup);
  1624. end:
  1625. kfree(input);
  1626. return rc;
  1627. }
  1628. static const struct file_operations conn_cmd_tx_fops = {
  1629. .open = _sde_debugfs_conn_cmd_tx_open,
  1630. .read = _sde_debugfs_conn_cmd_tx_sts_read,
  1631. .write = _sde_debugfs_conn_cmd_tx_write,
  1632. };
  1633. static int _sde_debugfs_conn_cmd_rx_open(struct inode *inode, struct file *file)
  1634. {
  1635. /* non-seekable */
  1636. file->private_data = inode->i_private;
  1637. return nonseekable_open(inode, file);
  1638. }
  1639. static ssize_t _sde_debugfs_conn_cmd_rx_read(struct file *file,
  1640. char __user *buf, size_t count, loff_t *ppos)
  1641. {
  1642. struct drm_connector *connector = file->private_data;
  1643. struct sde_connector *c_conn = NULL;
  1644. char *strs = NULL;
  1645. char *strs_temp = NULL;
  1646. int blen = 0, i = 0, n = 0, left_size = 0;
  1647. if (*ppos)
  1648. return 0;
  1649. if (!connector) {
  1650. SDE_ERROR("invalid argument, conn is NULL\n");
  1651. return -EINVAL;
  1652. }
  1653. c_conn = to_sde_connector(connector);
  1654. if (c_conn->rx_len <= 0 || c_conn->rx_len > MAX_CMD_RECEIVE_SIZE) {
  1655. SDE_ERROR("no valid data from panel\n");
  1656. return -EINVAL;
  1657. }
  1658. /*
  1659. * Rx data was stored as HEX value in rx buffer,
  1660. * convert 1 HEX value to strings for display, need 5 bytes.
  1661. * for example: HEX value 0xFF, converted to strings, should be '0',
  1662. * 'x','F','F' and 1 space.
  1663. */
  1664. left_size = c_conn->rx_len * 5 + 1;
  1665. strs = kzalloc(left_size, GFP_KERNEL);
  1666. if (!strs)
  1667. return -ENOMEM;
  1668. strs_temp = strs;
  1669. mutex_lock(&c_conn->lock);
  1670. for (i = 0; i < c_conn->rx_len; i++) {
  1671. n = scnprintf(strs_temp, left_size, "0x%.2x ",
  1672. c_conn->cmd_rx_buf[i]);
  1673. strs_temp += n;
  1674. left_size -= n;
  1675. }
  1676. mutex_unlock(&c_conn->lock);
  1677. blen = strlen(strs);
  1678. if (blen <= 0) {
  1679. SDE_ERROR("snprintf failed, blen %d\n", blen);
  1680. blen = -EFAULT;
  1681. goto err;
  1682. }
  1683. if (copy_to_user(buf, strs, blen)) {
  1684. SDE_ERROR("copy to user buffer failed\n");
  1685. blen = -EFAULT;
  1686. goto err;
  1687. }
  1688. *ppos += blen;
  1689. err:
  1690. kfree(strs);
  1691. return blen;
  1692. }
  1693. static ssize_t _sde_debugfs_conn_cmd_rx_write(struct file *file,
  1694. const char __user *p, size_t count, loff_t *ppos)
  1695. {
  1696. struct drm_connector *connector = file->private_data;
  1697. struct sde_connector *c_conn = NULL;
  1698. char *input, *token, *input_copy, *input_dup = NULL;
  1699. const char *delim = " ";
  1700. unsigned char buffer[MAX_CMD_PAYLOAD_SIZE] = {0};
  1701. int rc = 0, strtoint = 0;
  1702. u32 buf_size = 0;
  1703. if (*ppos || !connector) {
  1704. SDE_ERROR("invalid argument(s), conn %d\n", connector != NULL);
  1705. return -EINVAL;
  1706. }
  1707. c_conn = to_sde_connector(connector);
  1708. if (!c_conn->ops.cmd_receive) {
  1709. SDE_ERROR("no cmd receive support for connector name %s\n",
  1710. c_conn->name);
  1711. return -EINVAL;
  1712. }
  1713. memset(c_conn->cmd_rx_buf, 0x0, MAX_CMD_RECEIVE_SIZE);
  1714. c_conn->rx_len = 0;
  1715. input = kzalloc(count + 1, GFP_KERNEL);
  1716. if (!input)
  1717. return -ENOMEM;
  1718. if (copy_from_user(input, p, count)) {
  1719. SDE_ERROR("copy from user failed\n");
  1720. rc = -EFAULT;
  1721. goto end;
  1722. }
  1723. input[count] = '\0';
  1724. SDE_INFO("Command requested for rx from panel: %s\n", input);
  1725. input_copy = kstrdup(input, GFP_KERNEL);
  1726. if (!input_copy) {
  1727. rc = -ENOMEM;
  1728. goto end;
  1729. }
  1730. input_dup = input_copy;
  1731. token = strsep(&input_copy, delim);
  1732. while (token) {
  1733. rc = kstrtoint(token, 0, &strtoint);
  1734. if (rc) {
  1735. SDE_ERROR("input buffer conversion failed\n");
  1736. goto end1;
  1737. }
  1738. buffer[buf_size++] = (strtoint & 0xff);
  1739. if (buf_size >= MAX_CMD_PAYLOAD_SIZE) {
  1740. SDE_ERROR("buffer size = %d exceeding the limit %d\n",
  1741. buf_size, MAX_CMD_PAYLOAD_SIZE);
  1742. rc = -EFAULT;
  1743. goto end1;
  1744. }
  1745. token = strsep(&input_copy, delim);
  1746. }
  1747. if (!buffer[0] || buffer[0] > MAX_CMD_RECEIVE_SIZE) {
  1748. SDE_ERROR("invalid rx length\n");
  1749. rc = -EFAULT;
  1750. goto end1;
  1751. }
  1752. SDE_DEBUG("command packet size in bytes: %u, rx len: %u\n",
  1753. buf_size, buffer[0]);
  1754. if (!buf_size) {
  1755. rc = -EFAULT;
  1756. goto end1;
  1757. }
  1758. mutex_lock(&c_conn->lock);
  1759. c_conn->rx_len = c_conn->ops.cmd_receive(c_conn->display, buffer + 1,
  1760. buf_size - 1, c_conn->cmd_rx_buf, buffer[0]);
  1761. mutex_unlock(&c_conn->lock);
  1762. if (c_conn->rx_len <= 0)
  1763. rc = -EINVAL;
  1764. else
  1765. rc = count;
  1766. end1:
  1767. kfree(input_dup);
  1768. end:
  1769. kfree(input);
  1770. return rc;
  1771. }
  1772. static const struct file_operations conn_cmd_rx_fops = {
  1773. .open = _sde_debugfs_conn_cmd_rx_open,
  1774. .read = _sde_debugfs_conn_cmd_rx_read,
  1775. .write = _sde_debugfs_conn_cmd_rx_write,
  1776. };
  1777. #ifdef CONFIG_DEBUG_FS
  1778. /**
  1779. * sde_connector_init_debugfs - initialize connector debugfs
  1780. * @connector: Pointer to drm connector
  1781. */
  1782. static int sde_connector_init_debugfs(struct drm_connector *connector)
  1783. {
  1784. struct sde_connector *sde_connector;
  1785. struct msm_display_info info;
  1786. if (!connector || !connector->debugfs_entry) {
  1787. SDE_ERROR("invalid connector\n");
  1788. return -EINVAL;
  1789. }
  1790. sde_connector = to_sde_connector(connector);
  1791. sde_connector_get_info(connector, &info);
  1792. if (sde_connector->ops.check_status &&
  1793. (info.capabilities & MSM_DISPLAY_ESD_ENABLED)) {
  1794. debugfs_create_u32("esd_status_interval", 0600,
  1795. connector->debugfs_entry,
  1796. &sde_connector->esd_status_interval);
  1797. }
  1798. if (sde_connector->ops.cmd_transfer) {
  1799. if (!debugfs_create_file("tx_cmd", 0600,
  1800. connector->debugfs_entry,
  1801. connector, &conn_cmd_tx_fops)) {
  1802. SDE_ERROR("failed to create connector cmd_tx\n");
  1803. return -ENOMEM;
  1804. }
  1805. }
  1806. if (sde_connector->ops.cmd_receive) {
  1807. if (!debugfs_create_file("rx_cmd", 0600,
  1808. connector->debugfs_entry,
  1809. connector, &conn_cmd_rx_fops)) {
  1810. SDE_ERROR("failed to create connector cmd_rx\n");
  1811. return -ENOMEM;
  1812. }
  1813. }
  1814. return 0;
  1815. }
  1816. #else
  1817. static int sde_connector_init_debugfs(struct drm_connector *connector)
  1818. {
  1819. return 0;
  1820. }
  1821. #endif
  1822. static int sde_connector_late_register(struct drm_connector *connector)
  1823. {
  1824. return sde_connector_init_debugfs(connector);
  1825. }
  1826. static void sde_connector_early_unregister(struct drm_connector *connector)
  1827. {
  1828. /* debugfs under connector->debugfs are deleted by drm_debugfs */
  1829. }
  1830. static int sde_connector_fill_modes(struct drm_connector *connector,
  1831. uint32_t max_width, uint32_t max_height)
  1832. {
  1833. int rc, mode_count = 0;
  1834. struct sde_connector *sde_conn = NULL;
  1835. sde_conn = to_sde_connector(connector);
  1836. if (!sde_conn) {
  1837. SDE_ERROR("invalid arguments\n");
  1838. return 0;
  1839. }
  1840. mode_count = drm_helper_probe_single_connector_modes(connector,
  1841. max_width, max_height);
  1842. rc = sde_connector_set_blob_data(connector,
  1843. connector->state,
  1844. CONNECTOR_PROP_MODE_INFO);
  1845. if (rc) {
  1846. SDE_ERROR_CONN(sde_conn,
  1847. "failed to setup mode info prop, rc = %d\n", rc);
  1848. return 0;
  1849. }
  1850. return mode_count;
  1851. }
  1852. static const struct drm_connector_funcs sde_connector_ops = {
  1853. .reset = sde_connector_atomic_reset,
  1854. .detect = sde_connector_detect,
  1855. .destroy = sde_connector_destroy,
  1856. .fill_modes = sde_connector_fill_modes,
  1857. .atomic_duplicate_state = sde_connector_atomic_duplicate_state,
  1858. .atomic_destroy_state = sde_connector_atomic_destroy_state,
  1859. .atomic_set_property = sde_connector_atomic_set_property,
  1860. .atomic_get_property = sde_connector_atomic_get_property,
  1861. .late_register = sde_connector_late_register,
  1862. .early_unregister = sde_connector_early_unregister,
  1863. };
  1864. static int sde_connector_get_modes(struct drm_connector *connector)
  1865. {
  1866. struct sde_connector *c_conn;
  1867. struct msm_resource_caps_info avail_res;
  1868. int mode_count = 0;
  1869. if (!connector) {
  1870. SDE_ERROR("invalid connector\n");
  1871. return 0;
  1872. }
  1873. c_conn = to_sde_connector(connector);
  1874. if (!c_conn->ops.get_modes) {
  1875. SDE_DEBUG("missing get_modes callback\n");
  1876. return 0;
  1877. }
  1878. memset(&avail_res, 0, sizeof(avail_res));
  1879. sde_connector_get_avail_res_info(connector, &avail_res);
  1880. mode_count = c_conn->ops.get_modes(connector, c_conn->display,
  1881. &avail_res);
  1882. if (!mode_count) {
  1883. SDE_ERROR_CONN(c_conn, "failed to get modes\n");
  1884. return 0;
  1885. }
  1886. if (c_conn->hdr_capable)
  1887. sde_connector_update_hdr_props(connector);
  1888. if (c_conn->connector_type == DRM_MODE_CONNECTOR_DisplayPort)
  1889. sde_connector_update_colorspace(connector);
  1890. return mode_count;
  1891. }
  1892. static enum drm_mode_status
  1893. sde_connector_mode_valid(struct drm_connector *connector,
  1894. struct drm_display_mode *mode)
  1895. {
  1896. struct sde_connector *c_conn;
  1897. struct msm_resource_caps_info avail_res;
  1898. if (!connector || !mode) {
  1899. SDE_ERROR("invalid argument(s), conn %pK, mode %pK\n",
  1900. connector, mode);
  1901. return MODE_ERROR;
  1902. }
  1903. c_conn = to_sde_connector(connector);
  1904. memset(&avail_res, 0, sizeof(avail_res));
  1905. sde_connector_get_avail_res_info(connector, &avail_res);
  1906. if (c_conn->ops.mode_valid)
  1907. return c_conn->ops.mode_valid(connector, mode, c_conn->display,
  1908. &avail_res);
  1909. /* assume all modes okay by default */
  1910. return MODE_OK;
  1911. }
  1912. static struct drm_encoder *
  1913. sde_connector_best_encoder(struct drm_connector *connector)
  1914. {
  1915. struct sde_connector *c_conn = to_sde_connector(connector);
  1916. if (!connector) {
  1917. SDE_ERROR("invalid connector\n");
  1918. return NULL;
  1919. }
  1920. /*
  1921. * This is true for now, revisit this code when multiple encoders are
  1922. * supported.
  1923. */
  1924. return c_conn->encoder;
  1925. }
  1926. static struct drm_encoder *
  1927. sde_connector_atomic_best_encoder(struct drm_connector *connector,
  1928. struct drm_connector_state *connector_state)
  1929. {
  1930. struct sde_connector *c_conn;
  1931. struct drm_encoder *encoder = NULL;
  1932. if (!connector) {
  1933. SDE_ERROR("invalid connector\n");
  1934. return NULL;
  1935. }
  1936. c_conn = to_sde_connector(connector);
  1937. if (c_conn->ops.atomic_best_encoder)
  1938. encoder = c_conn->ops.atomic_best_encoder(connector,
  1939. c_conn->display, connector_state);
  1940. return encoder;
  1941. }
  1942. static int sde_connector_atomic_check(struct drm_connector *connector,
  1943. struct drm_atomic_state *state)
  1944. {
  1945. struct sde_connector *c_conn;
  1946. struct sde_connector_state *c_state;
  1947. bool qsync_dirty = false, has_modeset = false;
  1948. struct drm_connector_state *new_conn_state;
  1949. if (!connector) {
  1950. SDE_ERROR("invalid connector\n");
  1951. return -EINVAL;
  1952. }
  1953. c_conn = to_sde_connector(connector);
  1954. new_conn_state = drm_atomic_get_new_connector_state(state, connector);
  1955. if (!new_conn_state) {
  1956. SDE_ERROR("invalid connector state\n");
  1957. return -EINVAL;
  1958. }
  1959. c_state = to_sde_connector_state(new_conn_state);
  1960. has_modeset = sde_crtc_atomic_check_has_modeset(new_conn_state->state,
  1961. new_conn_state->crtc);
  1962. qsync_dirty = msm_property_is_dirty(&c_conn->property_info,
  1963. &c_state->property_state,
  1964. CONNECTOR_PROP_QSYNC_MODE);
  1965. SDE_DEBUG("has_modeset %d qsync_dirty %d\n", has_modeset, qsync_dirty);
  1966. if (has_modeset && qsync_dirty) {
  1967. SDE_ERROR("invalid qsync update during modeset\n");
  1968. return -EINVAL;
  1969. }
  1970. new_conn_state = drm_atomic_get_new_connector_state(state, connector);
  1971. if (c_conn->ops.atomic_check)
  1972. return c_conn->ops.atomic_check(connector,
  1973. c_conn->display, state);
  1974. return 0;
  1975. }
  1976. static void _sde_connector_report_panel_dead(struct sde_connector *conn,
  1977. bool skip_pre_kickoff)
  1978. {
  1979. struct drm_event event;
  1980. if (!conn)
  1981. return;
  1982. /* Panel dead notification can come:
  1983. * 1) ESD thread
  1984. * 2) Commit thread (if TE stops coming)
  1985. * So such case, avoid failure notification twice.
  1986. */
  1987. if (conn->panel_dead)
  1988. return;
  1989. conn->panel_dead = true;
  1990. event.type = DRM_EVENT_PANEL_DEAD;
  1991. event.length = sizeof(bool);
  1992. msm_mode_object_event_notify(&conn->base.base,
  1993. conn->base.dev, &event, (u8 *)&conn->panel_dead);
  1994. sde_encoder_display_failure_notification(conn->encoder,
  1995. skip_pre_kickoff);
  1996. SDE_EVT32(SDE_EVTLOG_ERROR);
  1997. SDE_ERROR("esd check failed report PANEL_DEAD conn_id: %d enc_id: %d\n",
  1998. conn->base.base.id, conn->encoder->base.id);
  1999. }
  2000. int sde_connector_esd_status(struct drm_connector *conn)
  2001. {
  2002. struct sde_connector *sde_conn = NULL;
  2003. struct dsi_display *display;
  2004. int ret = 0;
  2005. if (!conn)
  2006. return ret;
  2007. sde_conn = to_sde_connector(conn);
  2008. if (!sde_conn || !sde_conn->ops.check_status)
  2009. return ret;
  2010. display = sde_conn->display;
  2011. /* protect this call with ESD status check call */
  2012. mutex_lock(&sde_conn->lock);
  2013. if (atomic_read(&(display->panel->esd_recovery_pending))) {
  2014. SDE_ERROR("ESD recovery already pending\n");
  2015. mutex_unlock(&sde_conn->lock);
  2016. return -ETIMEDOUT;
  2017. }
  2018. ret = sde_conn->ops.check_status(&sde_conn->base,
  2019. sde_conn->display, true);
  2020. mutex_unlock(&sde_conn->lock);
  2021. if (ret <= 0) {
  2022. /* cancel if any pending esd work */
  2023. sde_connector_schedule_status_work(conn, false);
  2024. _sde_connector_report_panel_dead(sde_conn, true);
  2025. ret = -ETIMEDOUT;
  2026. } else {
  2027. SDE_DEBUG("Successfully received TE from panel\n");
  2028. ret = 0;
  2029. }
  2030. SDE_EVT32(ret);
  2031. return ret;
  2032. }
  2033. static void sde_connector_check_status_work(struct work_struct *work)
  2034. {
  2035. struct sde_connector *conn;
  2036. int rc = 0;
  2037. struct device *dev;
  2038. conn = container_of(to_delayed_work(work),
  2039. struct sde_connector, status_work);
  2040. if (!conn) {
  2041. SDE_ERROR("not able to get connector object\n");
  2042. return;
  2043. }
  2044. mutex_lock(&conn->lock);
  2045. dev = conn->base.dev->dev;
  2046. if (!conn->ops.check_status || dev->power.is_suspended ||
  2047. (conn->dpms_mode != DRM_MODE_DPMS_ON)) {
  2048. SDE_DEBUG("dpms mode: %d\n", conn->dpms_mode);
  2049. mutex_unlock(&conn->lock);
  2050. return;
  2051. }
  2052. rc = conn->ops.check_status(&conn->base, conn->display, false);
  2053. mutex_unlock(&conn->lock);
  2054. if (rc > 0) {
  2055. u32 interval;
  2056. SDE_DEBUG("esd check status success conn_id: %d enc_id: %d\n",
  2057. conn->base.base.id, conn->encoder->base.id);
  2058. /* If debugfs property is not set then take default value */
  2059. interval = conn->esd_status_interval ?
  2060. conn->esd_status_interval : STATUS_CHECK_INTERVAL_MS;
  2061. schedule_delayed_work(&conn->status_work,
  2062. msecs_to_jiffies(interval));
  2063. return;
  2064. }
  2065. _sde_connector_report_panel_dead(conn, false);
  2066. }
  2067. static const struct drm_connector_helper_funcs sde_connector_helper_ops = {
  2068. .get_modes = sde_connector_get_modes,
  2069. .mode_valid = sde_connector_mode_valid,
  2070. .best_encoder = sde_connector_best_encoder,
  2071. .atomic_check = sde_connector_atomic_check,
  2072. };
  2073. static const struct drm_connector_helper_funcs sde_connector_helper_ops_v2 = {
  2074. .get_modes = sde_connector_get_modes,
  2075. .mode_valid = sde_connector_mode_valid,
  2076. .best_encoder = sde_connector_best_encoder,
  2077. .atomic_best_encoder = sde_connector_atomic_best_encoder,
  2078. .atomic_check = sde_connector_atomic_check,
  2079. };
  2080. static int sde_connector_populate_mode_info(struct drm_connector *conn,
  2081. struct sde_kms_info *info)
  2082. {
  2083. struct msm_drm_private *priv;
  2084. struct sde_kms *sde_kms;
  2085. struct sde_connector *c_conn = NULL;
  2086. struct drm_display_mode *mode;
  2087. struct msm_mode_info mode_info;
  2088. int rc = 0;
  2089. if (!conn || !conn->dev || !conn->dev->dev_private) {
  2090. SDE_ERROR("invalid arguments\n");
  2091. return -EINVAL;
  2092. }
  2093. priv = conn->dev->dev_private;
  2094. sde_kms = to_sde_kms(priv->kms);
  2095. c_conn = to_sde_connector(conn);
  2096. if (!c_conn->ops.get_mode_info) {
  2097. SDE_ERROR_CONN(c_conn, "get_mode_info not defined\n");
  2098. return -EINVAL;
  2099. }
  2100. list_for_each_entry(mode, &conn->modes, head) {
  2101. int topology_idx = 0;
  2102. memset(&mode_info, 0, sizeof(mode_info));
  2103. rc = sde_connector_get_mode_info(&c_conn->base, mode,
  2104. &mode_info);
  2105. if (rc) {
  2106. SDE_ERROR_CONN(c_conn,
  2107. "failed to get mode info for mode %s\n",
  2108. mode->name);
  2109. continue;
  2110. }
  2111. sde_kms_info_add_keystr(info, "mode_name", mode->name);
  2112. sde_kms_info_add_keyint(info, "bit_clk_rate",
  2113. mode_info.clk_rate);
  2114. topology_idx = (int)sde_rm_get_topology_name(&sde_kms->rm,
  2115. mode_info.topology);
  2116. if (topology_idx < SDE_RM_TOPOLOGY_MAX) {
  2117. sde_kms_info_add_keystr(info, "topology",
  2118. e_topology_name[topology_idx].name);
  2119. } else {
  2120. SDE_ERROR_CONN(c_conn, "invalid topology\n");
  2121. continue;
  2122. }
  2123. sde_kms_info_add_keyint(info, "mdp_transfer_time_us",
  2124. mode_info.mdp_transfer_time_us);
  2125. if (!mode_info.roi_caps.num_roi)
  2126. continue;
  2127. sde_kms_info_add_keyint(info, "partial_update_num_roi",
  2128. mode_info.roi_caps.num_roi);
  2129. sde_kms_info_add_keyint(info, "partial_update_xstart",
  2130. mode_info.roi_caps.align.xstart_pix_align);
  2131. sde_kms_info_add_keyint(info, "partial_update_walign",
  2132. mode_info.roi_caps.align.width_pix_align);
  2133. sde_kms_info_add_keyint(info, "partial_update_wmin",
  2134. mode_info.roi_caps.align.min_width);
  2135. sde_kms_info_add_keyint(info, "partial_update_ystart",
  2136. mode_info.roi_caps.align.ystart_pix_align);
  2137. sde_kms_info_add_keyint(info, "partial_update_halign",
  2138. mode_info.roi_caps.align.height_pix_align);
  2139. sde_kms_info_add_keyint(info, "partial_update_hmin",
  2140. mode_info.roi_caps.align.min_height);
  2141. sde_kms_info_add_keyint(info, "partial_update_roimerge",
  2142. mode_info.roi_caps.merge_rois);
  2143. }
  2144. return rc;
  2145. }
  2146. int sde_connector_set_blob_data(struct drm_connector *conn,
  2147. struct drm_connector_state *state,
  2148. enum msm_mdp_conn_property prop_id)
  2149. {
  2150. struct sde_kms_info *info;
  2151. struct sde_connector *c_conn = NULL;
  2152. struct sde_connector_state *sde_conn_state = NULL;
  2153. struct msm_mode_info mode_info;
  2154. struct drm_property_blob **blob = NULL;
  2155. int rc = 0;
  2156. c_conn = to_sde_connector(conn);
  2157. if (!c_conn) {
  2158. SDE_ERROR("invalid argument\n");
  2159. return -EINVAL;
  2160. }
  2161. info = kzalloc(sizeof(*info), GFP_KERNEL);
  2162. if (!info)
  2163. return -ENOMEM;
  2164. sde_kms_info_reset(info);
  2165. switch (prop_id) {
  2166. case CONNECTOR_PROP_SDE_INFO:
  2167. memset(&mode_info, 0, sizeof(mode_info));
  2168. if (state) {
  2169. sde_conn_state = to_sde_connector_state(state);
  2170. memcpy(&mode_info, &sde_conn_state->mode_info,
  2171. sizeof(sde_conn_state->mode_info));
  2172. } else {
  2173. /**
  2174. * connector state is assigned only on first
  2175. * atomic_commit. But this function is allowed to be
  2176. * invoked during probe/init sequence. So not throwing
  2177. * an error.
  2178. */
  2179. SDE_DEBUG_CONN(c_conn, "invalid connector state\n");
  2180. }
  2181. if (c_conn->ops.set_info_blob) {
  2182. rc = c_conn->ops.set_info_blob(conn, info,
  2183. c_conn->display, &mode_info);
  2184. if (rc) {
  2185. SDE_ERROR_CONN(c_conn,
  2186. "set_info_blob failed, %d\n",
  2187. rc);
  2188. goto exit;
  2189. }
  2190. }
  2191. blob = &c_conn->blob_caps;
  2192. break;
  2193. case CONNECTOR_PROP_MODE_INFO:
  2194. rc = sde_connector_populate_mode_info(conn, info);
  2195. if (rc) {
  2196. SDE_ERROR_CONN(c_conn,
  2197. "mode info population failed, %d\n",
  2198. rc);
  2199. goto exit;
  2200. }
  2201. blob = &c_conn->blob_mode_info;
  2202. break;
  2203. default:
  2204. SDE_ERROR_CONN(c_conn, "invalid prop_id: %d\n", prop_id);
  2205. goto exit;
  2206. }
  2207. msm_property_set_blob(&c_conn->property_info,
  2208. blob,
  2209. SDE_KMS_INFO_DATA(info),
  2210. SDE_KMS_INFO_DATALEN(info),
  2211. prop_id);
  2212. exit:
  2213. kfree(info);
  2214. return rc;
  2215. }
  2216. static int _sde_connector_install_properties(struct drm_device *dev,
  2217. struct sde_kms *sde_kms, struct sde_connector *c_conn,
  2218. int connector_type, void *display,
  2219. struct msm_display_info *display_info)
  2220. {
  2221. struct dsi_display *dsi_display;
  2222. int rc;
  2223. struct drm_connector *connector;
  2224. u64 panel_id = ~0x0;
  2225. msm_property_install_blob(&c_conn->property_info, "capabilities",
  2226. DRM_MODE_PROP_IMMUTABLE, CONNECTOR_PROP_SDE_INFO);
  2227. rc = sde_connector_set_blob_data(&c_conn->base,
  2228. NULL, CONNECTOR_PROP_SDE_INFO);
  2229. if (rc) {
  2230. SDE_ERROR_CONN(c_conn,
  2231. "failed to setup connector info, rc = %d\n", rc);
  2232. return rc;
  2233. }
  2234. connector = &c_conn->base;
  2235. msm_property_install_blob(&c_conn->property_info, "mode_properties",
  2236. DRM_MODE_PROP_IMMUTABLE, CONNECTOR_PROP_MODE_INFO);
  2237. if (connector_type == DRM_MODE_CONNECTOR_DSI) {
  2238. dsi_display = (struct dsi_display *)(display);
  2239. if (dsi_display && dsi_display->panel &&
  2240. dsi_display->panel->hdr_props.hdr_enabled == true) {
  2241. msm_property_install_blob(&c_conn->property_info,
  2242. "hdr_properties",
  2243. DRM_MODE_PROP_IMMUTABLE,
  2244. CONNECTOR_PROP_HDR_INFO);
  2245. msm_property_set_blob(&c_conn->property_info,
  2246. &c_conn->blob_hdr,
  2247. &dsi_display->panel->hdr_props,
  2248. sizeof(dsi_display->panel->hdr_props),
  2249. CONNECTOR_PROP_HDR_INFO);
  2250. }
  2251. }
  2252. msm_property_install_volatile_range(
  2253. &c_conn->property_info, "sde_drm_roi_v1", 0x0,
  2254. 0, ~0, 0, CONNECTOR_PROP_ROI_V1);
  2255. /* install PP_DITHER properties */
  2256. _sde_connector_install_dither_property(dev, sde_kms, c_conn);
  2257. if (connector_type == DRM_MODE_CONNECTOR_DisplayPort) {
  2258. struct drm_msm_ext_hdr_properties hdr = {0};
  2259. c_conn->hdr_capable = true;
  2260. msm_property_install_blob(&c_conn->property_info,
  2261. "ext_hdr_properties",
  2262. DRM_MODE_PROP_IMMUTABLE,
  2263. CONNECTOR_PROP_EXT_HDR_INFO);
  2264. /* set default values to avoid reading uninitialized data */
  2265. msm_property_set_blob(&c_conn->property_info,
  2266. &c_conn->blob_ext_hdr,
  2267. &hdr,
  2268. sizeof(hdr),
  2269. CONNECTOR_PROP_EXT_HDR_INFO);
  2270. /* create and attach colorspace property for DP */
  2271. if (!drm_mode_create_dp_colorspace_property(connector))
  2272. drm_object_attach_property(&connector->base,
  2273. connector->colorspace_property, 0);
  2274. }
  2275. msm_property_install_volatile_range(&c_conn->property_info,
  2276. "hdr_metadata", 0x0, 0, ~0, 0, CONNECTOR_PROP_HDR_METADATA);
  2277. msm_property_install_volatile_range(&c_conn->property_info,
  2278. "RETIRE_FENCE", 0x0, 0, ~0, 0, CONNECTOR_PROP_RETIRE_FENCE);
  2279. msm_property_install_range(&c_conn->property_info, "autorefresh",
  2280. 0x0, 0, AUTOREFRESH_MAX_FRAME_CNT, 0,
  2281. CONNECTOR_PROP_AUTOREFRESH);
  2282. if (connector_type == DRM_MODE_CONNECTOR_DSI) {
  2283. if (sde_kms->catalog->has_qsync && display_info->qsync_min_fps)
  2284. msm_property_install_enum(&c_conn->property_info,
  2285. "qsync_mode", 0, 0, e_qsync_mode,
  2286. ARRAY_SIZE(e_qsync_mode), 0,
  2287. CONNECTOR_PROP_QSYNC_MODE);
  2288. if (display_info->capabilities & MSM_DISPLAY_CAP_CMD_MODE)
  2289. msm_property_install_enum(&c_conn->property_info,
  2290. "frame_trigger_mode", 0, 0,
  2291. e_frame_trigger_mode,
  2292. ARRAY_SIZE(e_frame_trigger_mode), 0,
  2293. CONNECTOR_PROP_CMD_FRAME_TRIGGER_MODE);
  2294. if (sde_kms->catalog->has_demura) {
  2295. msm_property_install_blob(&c_conn->property_info,
  2296. "DEMURA_PANEL_ID", DRM_MODE_PROP_IMMUTABLE,
  2297. CONNECTOR_PROP_DEMURA_PANEL_ID);
  2298. msm_property_set_blob(&c_conn->property_info,
  2299. &c_conn->blob_panel_id,
  2300. &panel_id,
  2301. sizeof(panel_id),
  2302. CONNECTOR_PROP_DEMURA_PANEL_ID);
  2303. }
  2304. }
  2305. msm_property_install_range(&c_conn->property_info, "bl_scale",
  2306. 0x0, 0, MAX_BL_SCALE_LEVEL, MAX_BL_SCALE_LEVEL,
  2307. CONNECTOR_PROP_BL_SCALE);
  2308. msm_property_install_range(&c_conn->property_info, "sv_bl_scale",
  2309. 0x0, 0, MAX_SV_BL_SCALE_LEVEL, MAX_SV_BL_SCALE_LEVEL,
  2310. CONNECTOR_PROP_SV_BL_SCALE);
  2311. c_conn->bl_scale_dirty = false;
  2312. c_conn->bl_scale = MAX_BL_SCALE_LEVEL;
  2313. c_conn->bl_scale_sv = MAX_SV_BL_SCALE_LEVEL;
  2314. if (connector_type == DRM_MODE_CONNECTOR_DisplayPort)
  2315. msm_property_install_range(&c_conn->property_info,
  2316. "supported_colorspaces",
  2317. DRM_MODE_PROP_IMMUTABLE, 0, 0xffff, 0,
  2318. CONNECTOR_PROP_SUPPORTED_COLORSPACES);
  2319. /* enum/bitmask properties */
  2320. msm_property_install_enum(&c_conn->property_info, "topology_name",
  2321. DRM_MODE_PROP_IMMUTABLE, 0, e_topology_name,
  2322. ARRAY_SIZE(e_topology_name), 0,
  2323. CONNECTOR_PROP_TOPOLOGY_NAME);
  2324. msm_property_install_enum(&c_conn->property_info, "topology_control",
  2325. 0, 1, e_topology_control,
  2326. ARRAY_SIZE(e_topology_control), 0,
  2327. CONNECTOR_PROP_TOPOLOGY_CONTROL);
  2328. msm_property_install_enum(&c_conn->property_info, "LP",
  2329. 0, 0, e_power_mode,
  2330. ARRAY_SIZE(e_power_mode), 0,
  2331. CONNECTOR_PROP_LP);
  2332. return 0;
  2333. }
  2334. struct drm_connector *sde_connector_init(struct drm_device *dev,
  2335. struct drm_encoder *encoder,
  2336. struct drm_panel *panel,
  2337. void *display,
  2338. const struct sde_connector_ops *ops,
  2339. int connector_poll,
  2340. int connector_type)
  2341. {
  2342. struct msm_drm_private *priv;
  2343. struct sde_kms *sde_kms;
  2344. struct sde_connector *c_conn = NULL;
  2345. struct msm_display_info display_info;
  2346. int rc;
  2347. if (!dev || !dev->dev_private || !encoder) {
  2348. SDE_ERROR("invalid argument(s), dev %pK, enc %pK\n",
  2349. dev, encoder);
  2350. return ERR_PTR(-EINVAL);
  2351. }
  2352. priv = dev->dev_private;
  2353. if (!priv->kms) {
  2354. SDE_ERROR("invalid kms reference\n");
  2355. return ERR_PTR(-EINVAL);
  2356. }
  2357. c_conn = kzalloc(sizeof(*c_conn), GFP_KERNEL);
  2358. if (!c_conn) {
  2359. SDE_ERROR("failed to alloc sde connector\n");
  2360. return ERR_PTR(-ENOMEM);
  2361. }
  2362. memset(&display_info, 0, sizeof(display_info));
  2363. rc = drm_connector_init(dev,
  2364. &c_conn->base,
  2365. &sde_connector_ops,
  2366. connector_type);
  2367. if (rc)
  2368. goto error_free_conn;
  2369. spin_lock_init(&c_conn->event_lock);
  2370. c_conn->base.panel = panel;
  2371. c_conn->connector_type = connector_type;
  2372. c_conn->encoder = encoder;
  2373. c_conn->display = display;
  2374. c_conn->dpms_mode = DRM_MODE_DPMS_ON;
  2375. c_conn->lp_mode = 0;
  2376. c_conn->last_panel_power_mode = SDE_MODE_DPMS_ON;
  2377. sde_kms = to_sde_kms(priv->kms);
  2378. if (sde_kms->vbif[VBIF_NRT]) {
  2379. c_conn->aspace[SDE_IOMMU_DOMAIN_UNSECURE] =
  2380. sde_kms->aspace[MSM_SMMU_DOMAIN_NRT_UNSECURE];
  2381. c_conn->aspace[SDE_IOMMU_DOMAIN_SECURE] =
  2382. sde_kms->aspace[MSM_SMMU_DOMAIN_NRT_SECURE];
  2383. } else {
  2384. c_conn->aspace[SDE_IOMMU_DOMAIN_UNSECURE] =
  2385. sde_kms->aspace[MSM_SMMU_DOMAIN_UNSECURE];
  2386. c_conn->aspace[SDE_IOMMU_DOMAIN_SECURE] =
  2387. sde_kms->aspace[MSM_SMMU_DOMAIN_SECURE];
  2388. }
  2389. if (ops)
  2390. c_conn->ops = *ops;
  2391. if (ops && ops->atomic_best_encoder && ops->atomic_check)
  2392. c_conn->base.helper_private = &sde_connector_helper_ops_v2;
  2393. else
  2394. c_conn->base.helper_private = &sde_connector_helper_ops;
  2395. c_conn->base.polled = connector_poll;
  2396. c_conn->base.interlace_allowed = 0;
  2397. c_conn->base.doublescan_allowed = 0;
  2398. snprintf(c_conn->name,
  2399. SDE_CONNECTOR_NAME_SIZE,
  2400. "conn%u",
  2401. c_conn->base.base.id);
  2402. c_conn->retire_fence = sde_fence_init(c_conn->name,
  2403. c_conn->base.base.id);
  2404. if (IS_ERR(c_conn->retire_fence)) {
  2405. rc = PTR_ERR(c_conn->retire_fence);
  2406. SDE_ERROR("failed to init fence, %d\n", rc);
  2407. goto error_cleanup_conn;
  2408. }
  2409. mutex_init(&c_conn->lock);
  2410. rc = drm_connector_attach_encoder(&c_conn->base, encoder);
  2411. if (rc) {
  2412. SDE_ERROR("failed to attach encoder to connector, %d\n", rc);
  2413. goto error_cleanup_fence;
  2414. }
  2415. rc = sde_backlight_setup(c_conn, dev);
  2416. if (rc) {
  2417. SDE_ERROR("failed to setup backlight, rc=%d\n", rc);
  2418. goto error_cleanup_fence;
  2419. }
  2420. /* create properties */
  2421. msm_property_init(&c_conn->property_info, &c_conn->base.base, dev,
  2422. priv->conn_property, c_conn->property_data,
  2423. CONNECTOR_PROP_COUNT, CONNECTOR_PROP_BLOBCOUNT,
  2424. sizeof(struct sde_connector_state));
  2425. if (c_conn->ops.post_init) {
  2426. rc = c_conn->ops.post_init(&c_conn->base, display);
  2427. if (rc) {
  2428. SDE_ERROR("post-init failed, %d\n", rc);
  2429. goto error_cleanup_fence;
  2430. }
  2431. }
  2432. rc = sde_connector_get_info(&c_conn->base, &display_info);
  2433. if (!rc && (connector_type == DRM_MODE_CONNECTOR_DSI) &&
  2434. (display_info.capabilities & MSM_DISPLAY_CAP_VID_MODE))
  2435. sde_connector_register_event(&c_conn->base,
  2436. SDE_CONN_EVENT_VID_FIFO_OVERFLOW,
  2437. sde_connector_handle_disp_recovery,
  2438. c_conn);
  2439. rc = _sde_connector_install_properties(dev, sde_kms, c_conn,
  2440. connector_type, display, &display_info);
  2441. if (rc)
  2442. goto error_cleanup_fence;
  2443. if (connector_type == DRM_MODE_CONNECTOR_DSI &&
  2444. sde_kms->catalog->has_demura) {
  2445. rc = sde_connector_register_event(&c_conn->base,
  2446. SDE_CONN_EVENT_PANEL_ID,
  2447. sde_connector_handle_panel_id, c_conn);
  2448. if (rc)
  2449. SDE_ERROR("register panel id event err %d\n", rc);
  2450. }
  2451. rc = msm_property_install_get_status(&c_conn->property_info);
  2452. if (rc) {
  2453. SDE_ERROR("failed to create one or more properties\n");
  2454. goto error_destroy_property;
  2455. }
  2456. _sde_connector_lm_preference(c_conn, sde_kms,
  2457. display_info.display_type);
  2458. SDE_DEBUG("connector %d attach encoder %d\n",
  2459. c_conn->base.base.id, encoder->base.id);
  2460. INIT_DELAYED_WORK(&c_conn->status_work,
  2461. sde_connector_check_status_work);
  2462. return &c_conn->base;
  2463. error_destroy_property:
  2464. if (c_conn->blob_caps)
  2465. drm_property_blob_put(c_conn->blob_caps);
  2466. if (c_conn->blob_hdr)
  2467. drm_property_blob_put(c_conn->blob_hdr);
  2468. if (c_conn->blob_dither)
  2469. drm_property_blob_put(c_conn->blob_dither);
  2470. if (c_conn->blob_mode_info)
  2471. drm_property_blob_put(c_conn->blob_mode_info);
  2472. if (c_conn->blob_ext_hdr)
  2473. drm_property_blob_put(c_conn->blob_ext_hdr);
  2474. msm_property_destroy(&c_conn->property_info);
  2475. error_cleanup_fence:
  2476. mutex_destroy(&c_conn->lock);
  2477. sde_fence_deinit(c_conn->retire_fence);
  2478. error_cleanup_conn:
  2479. drm_connector_cleanup(&c_conn->base);
  2480. error_free_conn:
  2481. kfree(c_conn);
  2482. return ERR_PTR(rc);
  2483. }
  2484. static int _sde_conn_hw_recovery_handler(
  2485. struct drm_connector *connector, bool val)
  2486. {
  2487. struct sde_connector *c_conn;
  2488. if (!connector) {
  2489. SDE_ERROR("invalid connector\n");
  2490. return -EINVAL;
  2491. }
  2492. c_conn = to_sde_connector(connector);
  2493. if (c_conn->encoder)
  2494. sde_encoder_recovery_events_handler(c_conn->encoder, val);
  2495. return 0;
  2496. }
  2497. int sde_connector_register_custom_event(struct sde_kms *kms,
  2498. struct drm_connector *conn_drm, u32 event, bool val)
  2499. {
  2500. int ret = -EINVAL;
  2501. switch (event) {
  2502. case DRM_EVENT_SYS_BACKLIGHT:
  2503. ret = 0;
  2504. break;
  2505. case DRM_EVENT_PANEL_DEAD:
  2506. ret = 0;
  2507. break;
  2508. case DRM_EVENT_SDE_HW_RECOVERY:
  2509. ret = _sde_conn_hw_recovery_handler(conn_drm, val);
  2510. break;
  2511. default:
  2512. break;
  2513. }
  2514. return ret;
  2515. }
  2516. int sde_connector_event_notify(struct drm_connector *connector, uint32_t type,
  2517. uint32_t len, uint32_t val)
  2518. {
  2519. struct drm_event event;
  2520. int ret;
  2521. if (!connector) {
  2522. SDE_ERROR("invalid connector\n");
  2523. return -EINVAL;
  2524. }
  2525. switch (type) {
  2526. case DRM_EVENT_SYS_BACKLIGHT:
  2527. case DRM_EVENT_PANEL_DEAD:
  2528. case DRM_EVENT_SDE_HW_RECOVERY:
  2529. ret = 0;
  2530. break;
  2531. default:
  2532. SDE_ERROR("connector %d, Unsupported event %d\n",
  2533. connector->base.id, type);
  2534. return -EINVAL;
  2535. }
  2536. event.type = type;
  2537. event.length = len;
  2538. msm_mode_object_event_notify(&connector->base, connector->dev, &event,
  2539. (u8 *)&val);
  2540. SDE_EVT32(connector->base.id, type, len, val);
  2541. SDE_DEBUG("connector:%d hw recovery event(%d) value (%d) notified\n",
  2542. connector->base.id, type, val);
  2543. return ret;
  2544. }