panel-dsi-cm.c 27 KB

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  1. /*
  2. * Generic DSI Command Mode panel driver
  3. *
  4. * Copyright (C) 2013 Texas Instruments
  5. * Author: Tomi Valkeinen <tomi.valkeinen@ti.com>
  6. *
  7. * This program is free software; you can redistribute it and/or modify it
  8. * under the terms of the GNU General Public License version 2 as published by
  9. * the Free Software Foundation.
  10. */
  11. /* #define DEBUG */
  12. #include <linux/backlight.h>
  13. #include <linux/delay.h>
  14. #include <linux/gpio/consumer.h>
  15. #include <linux/interrupt.h>
  16. #include <linux/jiffies.h>
  17. #include <linux/module.h>
  18. #include <linux/platform_device.h>
  19. #include <linux/sched/signal.h>
  20. #include <linux/slab.h>
  21. #include <linux/workqueue.h>
  22. #include <linux/of_device.h>
  23. #include <linux/of_gpio.h>
  24. #include <video/mipi_display.h>
  25. #include "../dss/omapdss.h"
  26. /* DSI Virtual channel. Hardcoded for now. */
  27. #define TCH 0
  28. #define DCS_READ_NUM_ERRORS 0x05
  29. #define DCS_BRIGHTNESS 0x51
  30. #define DCS_CTRL_DISPLAY 0x53
  31. #define DCS_GET_ID1 0xda
  32. #define DCS_GET_ID2 0xdb
  33. #define DCS_GET_ID3 0xdc
  34. struct panel_drv_data {
  35. struct omap_dss_device dssdev;
  36. struct omap_dss_device *in;
  37. struct videomode vm;
  38. struct platform_device *pdev;
  39. struct mutex lock;
  40. struct backlight_device *bldev;
  41. unsigned long hw_guard_end; /* next value of jiffies when we can
  42. * issue the next sleep in/out command
  43. */
  44. unsigned long hw_guard_wait; /* max guard time in jiffies */
  45. /* panel HW configuration from DT or platform data */
  46. int reset_gpio;
  47. int ext_te_gpio;
  48. bool use_dsi_backlight;
  49. struct omap_dsi_pin_config pin_config;
  50. /* runtime variables */
  51. bool enabled;
  52. bool te_enabled;
  53. atomic_t do_update;
  54. int channel;
  55. struct delayed_work te_timeout_work;
  56. bool intro_printed;
  57. struct workqueue_struct *workqueue;
  58. bool ulps_enabled;
  59. unsigned ulps_timeout;
  60. struct delayed_work ulps_work;
  61. };
  62. #define to_panel_data(p) container_of(p, struct panel_drv_data, dssdev)
  63. static irqreturn_t dsicm_te_isr(int irq, void *data);
  64. static void dsicm_te_timeout_work_callback(struct work_struct *work);
  65. static int _dsicm_enable_te(struct panel_drv_data *ddata, bool enable);
  66. static int dsicm_panel_reset(struct panel_drv_data *ddata);
  67. static void dsicm_ulps_work(struct work_struct *work);
  68. static void hw_guard_start(struct panel_drv_data *ddata, int guard_msec)
  69. {
  70. ddata->hw_guard_wait = msecs_to_jiffies(guard_msec);
  71. ddata->hw_guard_end = jiffies + ddata->hw_guard_wait;
  72. }
  73. static void hw_guard_wait(struct panel_drv_data *ddata)
  74. {
  75. unsigned long wait = ddata->hw_guard_end - jiffies;
  76. if ((long)wait > 0 && wait <= ddata->hw_guard_wait) {
  77. set_current_state(TASK_UNINTERRUPTIBLE);
  78. schedule_timeout(wait);
  79. }
  80. }
  81. static int dsicm_dcs_read_1(struct panel_drv_data *ddata, u8 dcs_cmd, u8 *data)
  82. {
  83. struct omap_dss_device *in = ddata->in;
  84. int r;
  85. u8 buf[1];
  86. r = in->ops.dsi->dcs_read(in, ddata->channel, dcs_cmd, buf, 1);
  87. if (r < 0)
  88. return r;
  89. *data = buf[0];
  90. return 0;
  91. }
  92. static int dsicm_dcs_write_0(struct panel_drv_data *ddata, u8 dcs_cmd)
  93. {
  94. struct omap_dss_device *in = ddata->in;
  95. return in->ops.dsi->dcs_write(in, ddata->channel, &dcs_cmd, 1);
  96. }
  97. static int dsicm_dcs_write_1(struct panel_drv_data *ddata, u8 dcs_cmd, u8 param)
  98. {
  99. struct omap_dss_device *in = ddata->in;
  100. u8 buf[2] = { dcs_cmd, param };
  101. return in->ops.dsi->dcs_write(in, ddata->channel, buf, 2);
  102. }
  103. static int dsicm_sleep_in(struct panel_drv_data *ddata)
  104. {
  105. struct omap_dss_device *in = ddata->in;
  106. u8 cmd;
  107. int r;
  108. hw_guard_wait(ddata);
  109. cmd = MIPI_DCS_ENTER_SLEEP_MODE;
  110. r = in->ops.dsi->dcs_write_nosync(in, ddata->channel, &cmd, 1);
  111. if (r)
  112. return r;
  113. hw_guard_start(ddata, 120);
  114. usleep_range(5000, 10000);
  115. return 0;
  116. }
  117. static int dsicm_sleep_out(struct panel_drv_data *ddata)
  118. {
  119. int r;
  120. hw_guard_wait(ddata);
  121. r = dsicm_dcs_write_0(ddata, MIPI_DCS_EXIT_SLEEP_MODE);
  122. if (r)
  123. return r;
  124. hw_guard_start(ddata, 120);
  125. usleep_range(5000, 10000);
  126. return 0;
  127. }
  128. static int dsicm_get_id(struct panel_drv_data *ddata, u8 *id1, u8 *id2, u8 *id3)
  129. {
  130. int r;
  131. r = dsicm_dcs_read_1(ddata, DCS_GET_ID1, id1);
  132. if (r)
  133. return r;
  134. r = dsicm_dcs_read_1(ddata, DCS_GET_ID2, id2);
  135. if (r)
  136. return r;
  137. r = dsicm_dcs_read_1(ddata, DCS_GET_ID3, id3);
  138. if (r)
  139. return r;
  140. return 0;
  141. }
  142. static int dsicm_set_update_window(struct panel_drv_data *ddata,
  143. u16 x, u16 y, u16 w, u16 h)
  144. {
  145. struct omap_dss_device *in = ddata->in;
  146. int r;
  147. u16 x1 = x;
  148. u16 x2 = x + w - 1;
  149. u16 y1 = y;
  150. u16 y2 = y + h - 1;
  151. u8 buf[5];
  152. buf[0] = MIPI_DCS_SET_COLUMN_ADDRESS;
  153. buf[1] = (x1 >> 8) & 0xff;
  154. buf[2] = (x1 >> 0) & 0xff;
  155. buf[3] = (x2 >> 8) & 0xff;
  156. buf[4] = (x2 >> 0) & 0xff;
  157. r = in->ops.dsi->dcs_write_nosync(in, ddata->channel, buf, sizeof(buf));
  158. if (r)
  159. return r;
  160. buf[0] = MIPI_DCS_SET_PAGE_ADDRESS;
  161. buf[1] = (y1 >> 8) & 0xff;
  162. buf[2] = (y1 >> 0) & 0xff;
  163. buf[3] = (y2 >> 8) & 0xff;
  164. buf[4] = (y2 >> 0) & 0xff;
  165. r = in->ops.dsi->dcs_write_nosync(in, ddata->channel, buf, sizeof(buf));
  166. if (r)
  167. return r;
  168. in->ops.dsi->bta_sync(in, ddata->channel);
  169. return r;
  170. }
  171. static void dsicm_queue_ulps_work(struct panel_drv_data *ddata)
  172. {
  173. if (ddata->ulps_timeout > 0)
  174. queue_delayed_work(ddata->workqueue, &ddata->ulps_work,
  175. msecs_to_jiffies(ddata->ulps_timeout));
  176. }
  177. static void dsicm_cancel_ulps_work(struct panel_drv_data *ddata)
  178. {
  179. cancel_delayed_work(&ddata->ulps_work);
  180. }
  181. static int dsicm_enter_ulps(struct panel_drv_data *ddata)
  182. {
  183. struct omap_dss_device *in = ddata->in;
  184. int r;
  185. if (ddata->ulps_enabled)
  186. return 0;
  187. dsicm_cancel_ulps_work(ddata);
  188. r = _dsicm_enable_te(ddata, false);
  189. if (r)
  190. goto err;
  191. if (gpio_is_valid(ddata->ext_te_gpio))
  192. disable_irq(gpio_to_irq(ddata->ext_te_gpio));
  193. in->ops.dsi->disable(in, false, true);
  194. ddata->ulps_enabled = true;
  195. return 0;
  196. err:
  197. dev_err(&ddata->pdev->dev, "enter ULPS failed");
  198. dsicm_panel_reset(ddata);
  199. ddata->ulps_enabled = false;
  200. dsicm_queue_ulps_work(ddata);
  201. return r;
  202. }
  203. static int dsicm_exit_ulps(struct panel_drv_data *ddata)
  204. {
  205. struct omap_dss_device *in = ddata->in;
  206. int r;
  207. if (!ddata->ulps_enabled)
  208. return 0;
  209. r = in->ops.dsi->enable(in);
  210. if (r) {
  211. dev_err(&ddata->pdev->dev, "failed to enable DSI\n");
  212. goto err1;
  213. }
  214. in->ops.dsi->enable_hs(in, ddata->channel, true);
  215. r = _dsicm_enable_te(ddata, true);
  216. if (r) {
  217. dev_err(&ddata->pdev->dev, "failed to re-enable TE");
  218. goto err2;
  219. }
  220. if (gpio_is_valid(ddata->ext_te_gpio))
  221. enable_irq(gpio_to_irq(ddata->ext_te_gpio));
  222. dsicm_queue_ulps_work(ddata);
  223. ddata->ulps_enabled = false;
  224. return 0;
  225. err2:
  226. dev_err(&ddata->pdev->dev, "failed to exit ULPS");
  227. r = dsicm_panel_reset(ddata);
  228. if (!r) {
  229. if (gpio_is_valid(ddata->ext_te_gpio))
  230. enable_irq(gpio_to_irq(ddata->ext_te_gpio));
  231. ddata->ulps_enabled = false;
  232. }
  233. err1:
  234. dsicm_queue_ulps_work(ddata);
  235. return r;
  236. }
  237. static int dsicm_wake_up(struct panel_drv_data *ddata)
  238. {
  239. if (ddata->ulps_enabled)
  240. return dsicm_exit_ulps(ddata);
  241. dsicm_cancel_ulps_work(ddata);
  242. dsicm_queue_ulps_work(ddata);
  243. return 0;
  244. }
  245. static int dsicm_bl_update_status(struct backlight_device *dev)
  246. {
  247. struct panel_drv_data *ddata = dev_get_drvdata(&dev->dev);
  248. struct omap_dss_device *in = ddata->in;
  249. int r;
  250. int level;
  251. if (dev->props.fb_blank == FB_BLANK_UNBLANK &&
  252. dev->props.power == FB_BLANK_UNBLANK)
  253. level = dev->props.brightness;
  254. else
  255. level = 0;
  256. dev_dbg(&ddata->pdev->dev, "update brightness to %d\n", level);
  257. mutex_lock(&ddata->lock);
  258. if (ddata->enabled) {
  259. in->ops.dsi->bus_lock(in);
  260. r = dsicm_wake_up(ddata);
  261. if (!r)
  262. r = dsicm_dcs_write_1(ddata, DCS_BRIGHTNESS, level);
  263. in->ops.dsi->bus_unlock(in);
  264. } else {
  265. r = 0;
  266. }
  267. mutex_unlock(&ddata->lock);
  268. return r;
  269. }
  270. static int dsicm_bl_get_intensity(struct backlight_device *dev)
  271. {
  272. if (dev->props.fb_blank == FB_BLANK_UNBLANK &&
  273. dev->props.power == FB_BLANK_UNBLANK)
  274. return dev->props.brightness;
  275. return 0;
  276. }
  277. static const struct backlight_ops dsicm_bl_ops = {
  278. .get_brightness = dsicm_bl_get_intensity,
  279. .update_status = dsicm_bl_update_status,
  280. };
  281. static ssize_t dsicm_num_errors_show(struct device *dev,
  282. struct device_attribute *attr, char *buf)
  283. {
  284. struct platform_device *pdev = to_platform_device(dev);
  285. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  286. struct omap_dss_device *in = ddata->in;
  287. u8 errors = 0;
  288. int r;
  289. mutex_lock(&ddata->lock);
  290. if (ddata->enabled) {
  291. in->ops.dsi->bus_lock(in);
  292. r = dsicm_wake_up(ddata);
  293. if (!r)
  294. r = dsicm_dcs_read_1(ddata, DCS_READ_NUM_ERRORS,
  295. &errors);
  296. in->ops.dsi->bus_unlock(in);
  297. } else {
  298. r = -ENODEV;
  299. }
  300. mutex_unlock(&ddata->lock);
  301. if (r)
  302. return r;
  303. return snprintf(buf, PAGE_SIZE, "%d\n", errors);
  304. }
  305. static ssize_t dsicm_hw_revision_show(struct device *dev,
  306. struct device_attribute *attr, char *buf)
  307. {
  308. struct platform_device *pdev = to_platform_device(dev);
  309. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  310. struct omap_dss_device *in = ddata->in;
  311. u8 id1, id2, id3;
  312. int r;
  313. mutex_lock(&ddata->lock);
  314. if (ddata->enabled) {
  315. in->ops.dsi->bus_lock(in);
  316. r = dsicm_wake_up(ddata);
  317. if (!r)
  318. r = dsicm_get_id(ddata, &id1, &id2, &id3);
  319. in->ops.dsi->bus_unlock(in);
  320. } else {
  321. r = -ENODEV;
  322. }
  323. mutex_unlock(&ddata->lock);
  324. if (r)
  325. return r;
  326. return snprintf(buf, PAGE_SIZE, "%02x.%02x.%02x\n", id1, id2, id3);
  327. }
  328. static ssize_t dsicm_store_ulps(struct device *dev,
  329. struct device_attribute *attr,
  330. const char *buf, size_t count)
  331. {
  332. struct platform_device *pdev = to_platform_device(dev);
  333. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  334. struct omap_dss_device *in = ddata->in;
  335. unsigned long t;
  336. int r;
  337. r = kstrtoul(buf, 0, &t);
  338. if (r)
  339. return r;
  340. mutex_lock(&ddata->lock);
  341. if (ddata->enabled) {
  342. in->ops.dsi->bus_lock(in);
  343. if (t)
  344. r = dsicm_enter_ulps(ddata);
  345. else
  346. r = dsicm_wake_up(ddata);
  347. in->ops.dsi->bus_unlock(in);
  348. }
  349. mutex_unlock(&ddata->lock);
  350. if (r)
  351. return r;
  352. return count;
  353. }
  354. static ssize_t dsicm_show_ulps(struct device *dev,
  355. struct device_attribute *attr,
  356. char *buf)
  357. {
  358. struct platform_device *pdev = to_platform_device(dev);
  359. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  360. unsigned t;
  361. mutex_lock(&ddata->lock);
  362. t = ddata->ulps_enabled;
  363. mutex_unlock(&ddata->lock);
  364. return snprintf(buf, PAGE_SIZE, "%u\n", t);
  365. }
  366. static ssize_t dsicm_store_ulps_timeout(struct device *dev,
  367. struct device_attribute *attr,
  368. const char *buf, size_t count)
  369. {
  370. struct platform_device *pdev = to_platform_device(dev);
  371. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  372. struct omap_dss_device *in = ddata->in;
  373. unsigned long t;
  374. int r;
  375. r = kstrtoul(buf, 0, &t);
  376. if (r)
  377. return r;
  378. mutex_lock(&ddata->lock);
  379. ddata->ulps_timeout = t;
  380. if (ddata->enabled) {
  381. /* dsicm_wake_up will restart the timer */
  382. in->ops.dsi->bus_lock(in);
  383. r = dsicm_wake_up(ddata);
  384. in->ops.dsi->bus_unlock(in);
  385. }
  386. mutex_unlock(&ddata->lock);
  387. if (r)
  388. return r;
  389. return count;
  390. }
  391. static ssize_t dsicm_show_ulps_timeout(struct device *dev,
  392. struct device_attribute *attr,
  393. char *buf)
  394. {
  395. struct platform_device *pdev = to_platform_device(dev);
  396. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  397. unsigned t;
  398. mutex_lock(&ddata->lock);
  399. t = ddata->ulps_timeout;
  400. mutex_unlock(&ddata->lock);
  401. return snprintf(buf, PAGE_SIZE, "%u\n", t);
  402. }
  403. static DEVICE_ATTR(num_dsi_errors, S_IRUGO, dsicm_num_errors_show, NULL);
  404. static DEVICE_ATTR(hw_revision, S_IRUGO, dsicm_hw_revision_show, NULL);
  405. static DEVICE_ATTR(ulps, S_IRUGO | S_IWUSR,
  406. dsicm_show_ulps, dsicm_store_ulps);
  407. static DEVICE_ATTR(ulps_timeout, S_IRUGO | S_IWUSR,
  408. dsicm_show_ulps_timeout, dsicm_store_ulps_timeout);
  409. static struct attribute *dsicm_attrs[] = {
  410. &dev_attr_num_dsi_errors.attr,
  411. &dev_attr_hw_revision.attr,
  412. &dev_attr_ulps.attr,
  413. &dev_attr_ulps_timeout.attr,
  414. NULL,
  415. };
  416. static const struct attribute_group dsicm_attr_group = {
  417. .attrs = dsicm_attrs,
  418. };
  419. static void dsicm_hw_reset(struct panel_drv_data *ddata)
  420. {
  421. if (!gpio_is_valid(ddata->reset_gpio))
  422. return;
  423. gpio_set_value(ddata->reset_gpio, 1);
  424. udelay(10);
  425. /* reset the panel */
  426. gpio_set_value(ddata->reset_gpio, 0);
  427. /* assert reset */
  428. udelay(10);
  429. gpio_set_value(ddata->reset_gpio, 1);
  430. /* wait after releasing reset */
  431. usleep_range(5000, 10000);
  432. }
  433. static int dsicm_power_on(struct panel_drv_data *ddata)
  434. {
  435. struct omap_dss_device *in = ddata->in;
  436. u8 id1, id2, id3;
  437. int r;
  438. struct omap_dss_dsi_config dsi_config = {
  439. .mode = OMAP_DSS_DSI_CMD_MODE,
  440. .pixel_format = OMAP_DSS_DSI_FMT_RGB888,
  441. .vm = &ddata->vm,
  442. .hs_clk_min = 150000000,
  443. .hs_clk_max = 300000000,
  444. .lp_clk_min = 7000000,
  445. .lp_clk_max = 10000000,
  446. };
  447. if (ddata->pin_config.num_pins > 0) {
  448. r = in->ops.dsi->configure_pins(in, &ddata->pin_config);
  449. if (r) {
  450. dev_err(&ddata->pdev->dev,
  451. "failed to configure DSI pins\n");
  452. goto err0;
  453. }
  454. }
  455. r = in->ops.dsi->set_config(in, &dsi_config);
  456. if (r) {
  457. dev_err(&ddata->pdev->dev, "failed to configure DSI\n");
  458. goto err0;
  459. }
  460. r = in->ops.dsi->enable(in);
  461. if (r) {
  462. dev_err(&ddata->pdev->dev, "failed to enable DSI\n");
  463. goto err0;
  464. }
  465. dsicm_hw_reset(ddata);
  466. in->ops.dsi->enable_hs(in, ddata->channel, false);
  467. r = dsicm_sleep_out(ddata);
  468. if (r)
  469. goto err;
  470. r = dsicm_get_id(ddata, &id1, &id2, &id3);
  471. if (r)
  472. goto err;
  473. r = dsicm_dcs_write_1(ddata, DCS_BRIGHTNESS, 0xff);
  474. if (r)
  475. goto err;
  476. r = dsicm_dcs_write_1(ddata, DCS_CTRL_DISPLAY,
  477. (1<<2) | (1<<5)); /* BL | BCTRL */
  478. if (r)
  479. goto err;
  480. r = dsicm_dcs_write_1(ddata, MIPI_DCS_SET_PIXEL_FORMAT,
  481. MIPI_DCS_PIXEL_FMT_24BIT);
  482. if (r)
  483. goto err;
  484. r = dsicm_dcs_write_0(ddata, MIPI_DCS_SET_DISPLAY_ON);
  485. if (r)
  486. goto err;
  487. r = _dsicm_enable_te(ddata, ddata->te_enabled);
  488. if (r)
  489. goto err;
  490. r = in->ops.dsi->enable_video_output(in, ddata->channel);
  491. if (r)
  492. goto err;
  493. ddata->enabled = 1;
  494. if (!ddata->intro_printed) {
  495. dev_info(&ddata->pdev->dev, "panel revision %02x.%02x.%02x\n",
  496. id1, id2, id3);
  497. ddata->intro_printed = true;
  498. }
  499. in->ops.dsi->enable_hs(in, ddata->channel, true);
  500. return 0;
  501. err:
  502. dev_err(&ddata->pdev->dev, "error while enabling panel, issuing HW reset\n");
  503. dsicm_hw_reset(ddata);
  504. in->ops.dsi->disable(in, true, false);
  505. err0:
  506. return r;
  507. }
  508. static void dsicm_power_off(struct panel_drv_data *ddata)
  509. {
  510. struct omap_dss_device *in = ddata->in;
  511. int r;
  512. in->ops.dsi->disable_video_output(in, ddata->channel);
  513. r = dsicm_dcs_write_0(ddata, MIPI_DCS_SET_DISPLAY_OFF);
  514. if (!r)
  515. r = dsicm_sleep_in(ddata);
  516. if (r) {
  517. dev_err(&ddata->pdev->dev,
  518. "error disabling panel, issuing HW reset\n");
  519. dsicm_hw_reset(ddata);
  520. }
  521. in->ops.dsi->disable(in, true, false);
  522. ddata->enabled = 0;
  523. }
  524. static int dsicm_panel_reset(struct panel_drv_data *ddata)
  525. {
  526. dev_err(&ddata->pdev->dev, "performing LCD reset\n");
  527. dsicm_power_off(ddata);
  528. dsicm_hw_reset(ddata);
  529. return dsicm_power_on(ddata);
  530. }
  531. static int dsicm_connect(struct omap_dss_device *dssdev)
  532. {
  533. struct panel_drv_data *ddata = to_panel_data(dssdev);
  534. struct omap_dss_device *in = ddata->in;
  535. struct device *dev = &ddata->pdev->dev;
  536. int r;
  537. if (omapdss_device_is_connected(dssdev))
  538. return 0;
  539. r = in->ops.dsi->connect(in, dssdev);
  540. if (r) {
  541. dev_err(dev, "Failed to connect to video source\n");
  542. return r;
  543. }
  544. r = in->ops.dsi->request_vc(ddata->in, &ddata->channel);
  545. if (r) {
  546. dev_err(dev, "failed to get virtual channel\n");
  547. goto err_req_vc;
  548. }
  549. r = in->ops.dsi->set_vc_id(ddata->in, ddata->channel, TCH);
  550. if (r) {
  551. dev_err(dev, "failed to set VC_ID\n");
  552. goto err_vc_id;
  553. }
  554. return 0;
  555. err_vc_id:
  556. in->ops.dsi->release_vc(ddata->in, ddata->channel);
  557. err_req_vc:
  558. in->ops.dsi->disconnect(in, dssdev);
  559. return r;
  560. }
  561. static void dsicm_disconnect(struct omap_dss_device *dssdev)
  562. {
  563. struct panel_drv_data *ddata = to_panel_data(dssdev);
  564. struct omap_dss_device *in = ddata->in;
  565. if (!omapdss_device_is_connected(dssdev))
  566. return;
  567. in->ops.dsi->release_vc(in, ddata->channel);
  568. in->ops.dsi->disconnect(in, dssdev);
  569. }
  570. static int dsicm_enable(struct omap_dss_device *dssdev)
  571. {
  572. struct panel_drv_data *ddata = to_panel_data(dssdev);
  573. struct omap_dss_device *in = ddata->in;
  574. int r;
  575. dev_dbg(&ddata->pdev->dev, "enable\n");
  576. mutex_lock(&ddata->lock);
  577. if (!omapdss_device_is_connected(dssdev)) {
  578. r = -ENODEV;
  579. goto err;
  580. }
  581. if (omapdss_device_is_enabled(dssdev)) {
  582. r = 0;
  583. goto err;
  584. }
  585. in->ops.dsi->bus_lock(in);
  586. r = dsicm_power_on(ddata);
  587. in->ops.dsi->bus_unlock(in);
  588. if (r)
  589. goto err;
  590. dssdev->state = OMAP_DSS_DISPLAY_ACTIVE;
  591. mutex_unlock(&ddata->lock);
  592. return 0;
  593. err:
  594. dev_dbg(&ddata->pdev->dev, "enable failed\n");
  595. mutex_unlock(&ddata->lock);
  596. return r;
  597. }
  598. static void dsicm_disable(struct omap_dss_device *dssdev)
  599. {
  600. struct panel_drv_data *ddata = to_panel_data(dssdev);
  601. struct omap_dss_device *in = ddata->in;
  602. int r;
  603. dev_dbg(&ddata->pdev->dev, "disable\n");
  604. mutex_lock(&ddata->lock);
  605. dsicm_cancel_ulps_work(ddata);
  606. in->ops.dsi->bus_lock(in);
  607. if (omapdss_device_is_enabled(dssdev)) {
  608. r = dsicm_wake_up(ddata);
  609. if (!r)
  610. dsicm_power_off(ddata);
  611. }
  612. in->ops.dsi->bus_unlock(in);
  613. dssdev->state = OMAP_DSS_DISPLAY_DISABLED;
  614. mutex_unlock(&ddata->lock);
  615. }
  616. static void dsicm_framedone_cb(int err, void *data)
  617. {
  618. struct panel_drv_data *ddata = data;
  619. struct omap_dss_device *in = ddata->in;
  620. dev_dbg(&ddata->pdev->dev, "framedone, err %d\n", err);
  621. in->ops.dsi->bus_unlock(ddata->in);
  622. }
  623. static irqreturn_t dsicm_te_isr(int irq, void *data)
  624. {
  625. struct panel_drv_data *ddata = data;
  626. struct omap_dss_device *in = ddata->in;
  627. int old;
  628. int r;
  629. old = atomic_cmpxchg(&ddata->do_update, 1, 0);
  630. if (old) {
  631. cancel_delayed_work(&ddata->te_timeout_work);
  632. r = in->ops.dsi->update(in, ddata->channel, dsicm_framedone_cb,
  633. ddata);
  634. if (r)
  635. goto err;
  636. }
  637. return IRQ_HANDLED;
  638. err:
  639. dev_err(&ddata->pdev->dev, "start update failed\n");
  640. in->ops.dsi->bus_unlock(in);
  641. return IRQ_HANDLED;
  642. }
  643. static void dsicm_te_timeout_work_callback(struct work_struct *work)
  644. {
  645. struct panel_drv_data *ddata = container_of(work, struct panel_drv_data,
  646. te_timeout_work.work);
  647. struct omap_dss_device *in = ddata->in;
  648. dev_err(&ddata->pdev->dev, "TE not received for 250ms!\n");
  649. atomic_set(&ddata->do_update, 0);
  650. in->ops.dsi->bus_unlock(in);
  651. }
  652. static int dsicm_update(struct omap_dss_device *dssdev,
  653. u16 x, u16 y, u16 w, u16 h)
  654. {
  655. struct panel_drv_data *ddata = to_panel_data(dssdev);
  656. struct omap_dss_device *in = ddata->in;
  657. int r;
  658. dev_dbg(&ddata->pdev->dev, "update %d, %d, %d x %d\n", x, y, w, h);
  659. mutex_lock(&ddata->lock);
  660. in->ops.dsi->bus_lock(in);
  661. r = dsicm_wake_up(ddata);
  662. if (r)
  663. goto err;
  664. if (!ddata->enabled) {
  665. r = 0;
  666. goto err;
  667. }
  668. /* XXX no need to send this every frame, but dsi break if not done */
  669. r = dsicm_set_update_window(ddata, 0, 0,
  670. dssdev->panel.vm.hactive,
  671. dssdev->panel.vm.vactive);
  672. if (r)
  673. goto err;
  674. if (ddata->te_enabled && gpio_is_valid(ddata->ext_te_gpio)) {
  675. schedule_delayed_work(&ddata->te_timeout_work,
  676. msecs_to_jiffies(250));
  677. atomic_set(&ddata->do_update, 1);
  678. } else {
  679. r = in->ops.dsi->update(in, ddata->channel, dsicm_framedone_cb,
  680. ddata);
  681. if (r)
  682. goto err;
  683. }
  684. /* note: no bus_unlock here. unlock is in framedone_cb */
  685. mutex_unlock(&ddata->lock);
  686. return 0;
  687. err:
  688. in->ops.dsi->bus_unlock(in);
  689. mutex_unlock(&ddata->lock);
  690. return r;
  691. }
  692. static int dsicm_sync(struct omap_dss_device *dssdev)
  693. {
  694. struct panel_drv_data *ddata = to_panel_data(dssdev);
  695. struct omap_dss_device *in = ddata->in;
  696. dev_dbg(&ddata->pdev->dev, "sync\n");
  697. mutex_lock(&ddata->lock);
  698. in->ops.dsi->bus_lock(in);
  699. in->ops.dsi->bus_unlock(in);
  700. mutex_unlock(&ddata->lock);
  701. dev_dbg(&ddata->pdev->dev, "sync done\n");
  702. return 0;
  703. }
  704. static int _dsicm_enable_te(struct panel_drv_data *ddata, bool enable)
  705. {
  706. struct omap_dss_device *in = ddata->in;
  707. int r;
  708. if (enable)
  709. r = dsicm_dcs_write_1(ddata, MIPI_DCS_SET_TEAR_ON, 0);
  710. else
  711. r = dsicm_dcs_write_0(ddata, MIPI_DCS_SET_TEAR_OFF);
  712. if (!gpio_is_valid(ddata->ext_te_gpio))
  713. in->ops.dsi->enable_te(in, enable);
  714. /* possible panel bug */
  715. msleep(100);
  716. return r;
  717. }
  718. static int dsicm_enable_te(struct omap_dss_device *dssdev, bool enable)
  719. {
  720. struct panel_drv_data *ddata = to_panel_data(dssdev);
  721. struct omap_dss_device *in = ddata->in;
  722. int r;
  723. mutex_lock(&ddata->lock);
  724. if (ddata->te_enabled == enable)
  725. goto end;
  726. in->ops.dsi->bus_lock(in);
  727. if (ddata->enabled) {
  728. r = dsicm_wake_up(ddata);
  729. if (r)
  730. goto err;
  731. r = _dsicm_enable_te(ddata, enable);
  732. if (r)
  733. goto err;
  734. }
  735. ddata->te_enabled = enable;
  736. in->ops.dsi->bus_unlock(in);
  737. end:
  738. mutex_unlock(&ddata->lock);
  739. return 0;
  740. err:
  741. in->ops.dsi->bus_unlock(in);
  742. mutex_unlock(&ddata->lock);
  743. return r;
  744. }
  745. static int dsicm_get_te(struct omap_dss_device *dssdev)
  746. {
  747. struct panel_drv_data *ddata = to_panel_data(dssdev);
  748. int r;
  749. mutex_lock(&ddata->lock);
  750. r = ddata->te_enabled;
  751. mutex_unlock(&ddata->lock);
  752. return r;
  753. }
  754. static int dsicm_memory_read(struct omap_dss_device *dssdev,
  755. void *buf, size_t size,
  756. u16 x, u16 y, u16 w, u16 h)
  757. {
  758. struct panel_drv_data *ddata = to_panel_data(dssdev);
  759. struct omap_dss_device *in = ddata->in;
  760. int r;
  761. int first = 1;
  762. int plen;
  763. unsigned buf_used = 0;
  764. if (size < w * h * 3)
  765. return -ENOMEM;
  766. mutex_lock(&ddata->lock);
  767. if (!ddata->enabled) {
  768. r = -ENODEV;
  769. goto err1;
  770. }
  771. size = min((u32)w * h * 3,
  772. dssdev->panel.vm.hactive * dssdev->panel.vm.vactive * 3);
  773. in->ops.dsi->bus_lock(in);
  774. r = dsicm_wake_up(ddata);
  775. if (r)
  776. goto err2;
  777. /* plen 1 or 2 goes into short packet. until checksum error is fixed,
  778. * use short packets. plen 32 works, but bigger packets seem to cause
  779. * an error. */
  780. if (size % 2)
  781. plen = 1;
  782. else
  783. plen = 2;
  784. dsicm_set_update_window(ddata, x, y, w, h);
  785. r = in->ops.dsi->set_max_rx_packet_size(in, ddata->channel, plen);
  786. if (r)
  787. goto err2;
  788. while (buf_used < size) {
  789. u8 dcs_cmd = first ? 0x2e : 0x3e;
  790. first = 0;
  791. r = in->ops.dsi->dcs_read(in, ddata->channel, dcs_cmd,
  792. buf + buf_used, size - buf_used);
  793. if (r < 0) {
  794. dev_err(dssdev->dev, "read error\n");
  795. goto err3;
  796. }
  797. buf_used += r;
  798. if (r < plen) {
  799. dev_err(&ddata->pdev->dev, "short read\n");
  800. break;
  801. }
  802. if (signal_pending(current)) {
  803. dev_err(&ddata->pdev->dev, "signal pending, "
  804. "aborting memory read\n");
  805. r = -ERESTARTSYS;
  806. goto err3;
  807. }
  808. }
  809. r = buf_used;
  810. err3:
  811. in->ops.dsi->set_max_rx_packet_size(in, ddata->channel, 1);
  812. err2:
  813. in->ops.dsi->bus_unlock(in);
  814. err1:
  815. mutex_unlock(&ddata->lock);
  816. return r;
  817. }
  818. static void dsicm_ulps_work(struct work_struct *work)
  819. {
  820. struct panel_drv_data *ddata = container_of(work, struct panel_drv_data,
  821. ulps_work.work);
  822. struct omap_dss_device *dssdev = &ddata->dssdev;
  823. struct omap_dss_device *in = ddata->in;
  824. mutex_lock(&ddata->lock);
  825. if (dssdev->state != OMAP_DSS_DISPLAY_ACTIVE || !ddata->enabled) {
  826. mutex_unlock(&ddata->lock);
  827. return;
  828. }
  829. in->ops.dsi->bus_lock(in);
  830. dsicm_enter_ulps(ddata);
  831. in->ops.dsi->bus_unlock(in);
  832. mutex_unlock(&ddata->lock);
  833. }
  834. static struct omap_dss_driver dsicm_ops = {
  835. .connect = dsicm_connect,
  836. .disconnect = dsicm_disconnect,
  837. .enable = dsicm_enable,
  838. .disable = dsicm_disable,
  839. .update = dsicm_update,
  840. .sync = dsicm_sync,
  841. .enable_te = dsicm_enable_te,
  842. .get_te = dsicm_get_te,
  843. .memory_read = dsicm_memory_read,
  844. };
  845. static int dsicm_probe_of(struct platform_device *pdev)
  846. {
  847. struct device_node *node = pdev->dev.of_node;
  848. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  849. struct omap_dss_device *in;
  850. int gpio;
  851. gpio = of_get_named_gpio(node, "reset-gpios", 0);
  852. if (!gpio_is_valid(gpio)) {
  853. dev_err(&pdev->dev, "failed to parse reset gpio\n");
  854. return gpio;
  855. }
  856. ddata->reset_gpio = gpio;
  857. gpio = of_get_named_gpio(node, "te-gpios", 0);
  858. if (gpio_is_valid(gpio) || gpio == -ENOENT) {
  859. ddata->ext_te_gpio = gpio;
  860. } else {
  861. dev_err(&pdev->dev, "failed to parse TE gpio\n");
  862. return gpio;
  863. }
  864. in = omapdss_of_find_source_for_first_ep(node);
  865. if (IS_ERR(in)) {
  866. dev_err(&pdev->dev, "failed to find video source\n");
  867. return PTR_ERR(in);
  868. }
  869. ddata->in = in;
  870. /* TODO: ulps, backlight */
  871. return 0;
  872. }
  873. static int dsicm_probe(struct platform_device *pdev)
  874. {
  875. struct backlight_properties props;
  876. struct panel_drv_data *ddata;
  877. struct backlight_device *bldev = NULL;
  878. struct device *dev = &pdev->dev;
  879. struct omap_dss_device *dssdev;
  880. int r;
  881. dev_dbg(dev, "probe\n");
  882. ddata = devm_kzalloc(dev, sizeof(*ddata), GFP_KERNEL);
  883. if (!ddata)
  884. return -ENOMEM;
  885. platform_set_drvdata(pdev, ddata);
  886. ddata->pdev = pdev;
  887. if (!pdev->dev.of_node)
  888. return -ENODEV;
  889. r = dsicm_probe_of(pdev);
  890. if (r)
  891. return r;
  892. ddata->vm.hactive = 864;
  893. ddata->vm.vactive = 480;
  894. ddata->vm.pixelclock = 864 * 480 * 60;
  895. dssdev = &ddata->dssdev;
  896. dssdev->dev = dev;
  897. dssdev->driver = &dsicm_ops;
  898. dssdev->panel.vm = ddata->vm;
  899. dssdev->type = OMAP_DISPLAY_TYPE_DSI;
  900. dssdev->owner = THIS_MODULE;
  901. dssdev->panel.dsi_pix_fmt = OMAP_DSS_DSI_FMT_RGB888;
  902. dssdev->caps = OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE |
  903. OMAP_DSS_DISPLAY_CAP_TEAR_ELIM;
  904. r = omapdss_register_display(dssdev);
  905. if (r) {
  906. dev_err(dev, "Failed to register panel\n");
  907. goto err_reg;
  908. }
  909. mutex_init(&ddata->lock);
  910. atomic_set(&ddata->do_update, 0);
  911. if (gpio_is_valid(ddata->reset_gpio)) {
  912. r = devm_gpio_request_one(dev, ddata->reset_gpio,
  913. GPIOF_OUT_INIT_LOW, "taal rst");
  914. if (r) {
  915. dev_err(dev, "failed to request reset gpio\n");
  916. return r;
  917. }
  918. }
  919. if (gpio_is_valid(ddata->ext_te_gpio)) {
  920. r = devm_gpio_request_one(dev, ddata->ext_te_gpio,
  921. GPIOF_IN, "taal irq");
  922. if (r) {
  923. dev_err(dev, "GPIO request failed\n");
  924. return r;
  925. }
  926. r = devm_request_irq(dev, gpio_to_irq(ddata->ext_te_gpio),
  927. dsicm_te_isr,
  928. IRQF_TRIGGER_RISING,
  929. "taal vsync", ddata);
  930. if (r) {
  931. dev_err(dev, "IRQ request failed\n");
  932. return r;
  933. }
  934. INIT_DEFERRABLE_WORK(&ddata->te_timeout_work,
  935. dsicm_te_timeout_work_callback);
  936. dev_dbg(dev, "Using GPIO TE\n");
  937. }
  938. ddata->workqueue = create_singlethread_workqueue("dsicm_wq");
  939. if (ddata->workqueue == NULL) {
  940. dev_err(dev, "can't create workqueue\n");
  941. return -ENOMEM;
  942. }
  943. INIT_DELAYED_WORK(&ddata->ulps_work, dsicm_ulps_work);
  944. dsicm_hw_reset(ddata);
  945. if (ddata->use_dsi_backlight) {
  946. memset(&props, 0, sizeof(props));
  947. props.max_brightness = 255;
  948. props.type = BACKLIGHT_RAW;
  949. bldev = backlight_device_register(dev_name(dev),
  950. dev, ddata, &dsicm_bl_ops, &props);
  951. if (IS_ERR(bldev)) {
  952. r = PTR_ERR(bldev);
  953. goto err_bl;
  954. }
  955. ddata->bldev = bldev;
  956. bldev->props.fb_blank = FB_BLANK_UNBLANK;
  957. bldev->props.power = FB_BLANK_UNBLANK;
  958. bldev->props.brightness = 255;
  959. dsicm_bl_update_status(bldev);
  960. }
  961. r = sysfs_create_group(&dev->kobj, &dsicm_attr_group);
  962. if (r) {
  963. dev_err(dev, "failed to create sysfs files\n");
  964. goto err_sysfs_create;
  965. }
  966. return 0;
  967. err_sysfs_create:
  968. backlight_device_unregister(bldev);
  969. err_bl:
  970. destroy_workqueue(ddata->workqueue);
  971. err_reg:
  972. return r;
  973. }
  974. static int __exit dsicm_remove(struct platform_device *pdev)
  975. {
  976. struct panel_drv_data *ddata = platform_get_drvdata(pdev);
  977. struct omap_dss_device *dssdev = &ddata->dssdev;
  978. struct backlight_device *bldev;
  979. dev_dbg(&pdev->dev, "remove\n");
  980. omapdss_unregister_display(dssdev);
  981. dsicm_disable(dssdev);
  982. dsicm_disconnect(dssdev);
  983. sysfs_remove_group(&pdev->dev.kobj, &dsicm_attr_group);
  984. bldev = ddata->bldev;
  985. if (bldev != NULL) {
  986. bldev->props.power = FB_BLANK_POWERDOWN;
  987. dsicm_bl_update_status(bldev);
  988. backlight_device_unregister(bldev);
  989. }
  990. omap_dss_put_device(ddata->in);
  991. dsicm_cancel_ulps_work(ddata);
  992. destroy_workqueue(ddata->workqueue);
  993. /* reset, to be sure that the panel is in a valid state */
  994. dsicm_hw_reset(ddata);
  995. return 0;
  996. }
  997. static const struct of_device_id dsicm_of_match[] = {
  998. { .compatible = "omapdss,panel-dsi-cm", },
  999. {},
  1000. };
  1001. MODULE_DEVICE_TABLE(of, dsicm_of_match);
  1002. static struct platform_driver dsicm_driver = {
  1003. .probe = dsicm_probe,
  1004. .remove = __exit_p(dsicm_remove),
  1005. .driver = {
  1006. .name = "panel-dsi-cm",
  1007. .of_match_table = dsicm_of_match,
  1008. .suppress_bind_attrs = true,
  1009. },
  1010. };
  1011. module_platform_driver(dsicm_driver);
  1012. MODULE_AUTHOR("Tomi Valkeinen <tomi.valkeinen@ti.com>");
  1013. MODULE_DESCRIPTION("Generic DSI Command Mode Panel Driver");
  1014. MODULE_LICENSE("GPL");