manager.c 36 KB

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  1. /*
  2. * linux/drivers/video/omap2/dss/manager.c
  3. *
  4. * Copyright (C) 2009 Nokia Corporation
  5. * Author: Tomi Valkeinen <tomi.valkeinen@nokia.com>
  6. *
  7. * Some code and ideas taken from drivers/video/omap/ driver
  8. * by Imre Deak.
  9. *
  10. * This program is free software; you can redistribute it and/or modify it
  11. * under the terms of the GNU General Public License version 2 as published by
  12. * the Free Software Foundation.
  13. *
  14. * This program is distributed in the hope that it will be useful, but WITHOUT
  15. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  16. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  17. * more details.
  18. *
  19. * You should have received a copy of the GNU General Public License along with
  20. * this program. If not, see <http://www.gnu.org/licenses/>.
  21. */
  22. #define DSS_SUBSYS_NAME "MANAGER"
  23. #include <linux/kernel.h>
  24. #include <linux/slab.h>
  25. #include <linux/module.h>
  26. #include <linux/platform_device.h>
  27. #include <linux/spinlock.h>
  28. #include <linux/jiffies.h>
  29. #include <video/omapdss.h>
  30. #include <plat/cpu.h>
  31. #include "dss.h"
  32. #include "dss_features.h"
  33. static int num_managers;
  34. static struct list_head manager_list;
  35. static ssize_t manager_name_show(struct omap_overlay_manager *mgr, char *buf)
  36. {
  37. return snprintf(buf, PAGE_SIZE, "%s\n", mgr->name);
  38. }
  39. static ssize_t manager_display_show(struct omap_overlay_manager *mgr, char *buf)
  40. {
  41. return snprintf(buf, PAGE_SIZE, "%s\n",
  42. mgr->device ? mgr->device->name : "<none>");
  43. }
  44. static ssize_t manager_display_store(struct omap_overlay_manager *mgr,
  45. const char *buf, size_t size)
  46. {
  47. int r = 0;
  48. size_t len = size;
  49. struct omap_dss_device *dssdev = NULL;
  50. int match(struct omap_dss_device *dssdev, void *data)
  51. {
  52. const char *str = data;
  53. return sysfs_streq(dssdev->name, str);
  54. }
  55. if (buf[size-1] == '\n')
  56. --len;
  57. if (len > 0)
  58. dssdev = omap_dss_find_device((void *)buf, match);
  59. if (len > 0 && dssdev == NULL)
  60. return -EINVAL;
  61. if (dssdev)
  62. DSSDBG("display %s found\n", dssdev->name);
  63. if (mgr->device) {
  64. r = mgr->unset_device(mgr);
  65. if (r) {
  66. DSSERR("failed to unset display\n");
  67. goto put_device;
  68. }
  69. }
  70. if (dssdev) {
  71. r = mgr->set_device(mgr, dssdev);
  72. if (r) {
  73. DSSERR("failed to set manager\n");
  74. goto put_device;
  75. }
  76. r = mgr->apply(mgr);
  77. if (r) {
  78. DSSERR("failed to apply dispc config\n");
  79. goto put_device;
  80. }
  81. }
  82. put_device:
  83. if (dssdev)
  84. omap_dss_put_device(dssdev);
  85. return r ? r : size;
  86. }
  87. static ssize_t manager_default_color_show(struct omap_overlay_manager *mgr,
  88. char *buf)
  89. {
  90. return snprintf(buf, PAGE_SIZE, "%d\n", mgr->info.default_color);
  91. }
  92. static ssize_t manager_default_color_store(struct omap_overlay_manager *mgr,
  93. const char *buf, size_t size)
  94. {
  95. struct omap_overlay_manager_info info;
  96. u32 color;
  97. int r;
  98. if (sscanf(buf, "%d", &color) != 1)
  99. return -EINVAL;
  100. mgr->get_manager_info(mgr, &info);
  101. info.default_color = color;
  102. r = mgr->set_manager_info(mgr, &info);
  103. if (r)
  104. return r;
  105. r = mgr->apply(mgr);
  106. if (r)
  107. return r;
  108. return size;
  109. }
  110. static const char *trans_key_type_str[] = {
  111. "gfx-destination",
  112. "video-source",
  113. };
  114. static ssize_t manager_trans_key_type_show(struct omap_overlay_manager *mgr,
  115. char *buf)
  116. {
  117. enum omap_dss_trans_key_type key_type;
  118. key_type = mgr->info.trans_key_type;
  119. BUG_ON(key_type >= ARRAY_SIZE(trans_key_type_str));
  120. return snprintf(buf, PAGE_SIZE, "%s\n", trans_key_type_str[key_type]);
  121. }
  122. static ssize_t manager_trans_key_type_store(struct omap_overlay_manager *mgr,
  123. const char *buf, size_t size)
  124. {
  125. enum omap_dss_trans_key_type key_type;
  126. struct omap_overlay_manager_info info;
  127. int r;
  128. for (key_type = OMAP_DSS_COLOR_KEY_GFX_DST;
  129. key_type < ARRAY_SIZE(trans_key_type_str); key_type++) {
  130. if (sysfs_streq(buf, trans_key_type_str[key_type]))
  131. break;
  132. }
  133. if (key_type == ARRAY_SIZE(trans_key_type_str))
  134. return -EINVAL;
  135. mgr->get_manager_info(mgr, &info);
  136. info.trans_key_type = key_type;
  137. r = mgr->set_manager_info(mgr, &info);
  138. if (r)
  139. return r;
  140. r = mgr->apply(mgr);
  141. if (r)
  142. return r;
  143. return size;
  144. }
  145. static ssize_t manager_trans_key_value_show(struct omap_overlay_manager *mgr,
  146. char *buf)
  147. {
  148. return snprintf(buf, PAGE_SIZE, "%d\n", mgr->info.trans_key);
  149. }
  150. static ssize_t manager_trans_key_value_store(struct omap_overlay_manager *mgr,
  151. const char *buf, size_t size)
  152. {
  153. struct omap_overlay_manager_info info;
  154. u32 key_value;
  155. int r;
  156. if (sscanf(buf, "%d", &key_value) != 1)
  157. return -EINVAL;
  158. mgr->get_manager_info(mgr, &info);
  159. info.trans_key = key_value;
  160. r = mgr->set_manager_info(mgr, &info);
  161. if (r)
  162. return r;
  163. r = mgr->apply(mgr);
  164. if (r)
  165. return r;
  166. return size;
  167. }
  168. static ssize_t manager_trans_key_enabled_show(struct omap_overlay_manager *mgr,
  169. char *buf)
  170. {
  171. return snprintf(buf, PAGE_SIZE, "%d\n", mgr->info.trans_enabled);
  172. }
  173. static ssize_t manager_trans_key_enabled_store(struct omap_overlay_manager *mgr,
  174. const char *buf, size_t size)
  175. {
  176. struct omap_overlay_manager_info info;
  177. int enable;
  178. int r;
  179. if (sscanf(buf, "%d", &enable) != 1)
  180. return -EINVAL;
  181. mgr->get_manager_info(mgr, &info);
  182. info.trans_enabled = enable ? true : false;
  183. r = mgr->set_manager_info(mgr, &info);
  184. if (r)
  185. return r;
  186. r = mgr->apply(mgr);
  187. if (r)
  188. return r;
  189. return size;
  190. }
  191. static ssize_t manager_alpha_blending_enabled_show(
  192. struct omap_overlay_manager *mgr, char *buf)
  193. {
  194. return snprintf(buf, PAGE_SIZE, "%d\n", mgr->info.alpha_enabled);
  195. }
  196. static ssize_t manager_alpha_blending_enabled_store(
  197. struct omap_overlay_manager *mgr,
  198. const char *buf, size_t size)
  199. {
  200. struct omap_overlay_manager_info info;
  201. int enable;
  202. int r;
  203. if (sscanf(buf, "%d", &enable) != 1)
  204. return -EINVAL;
  205. mgr->get_manager_info(mgr, &info);
  206. info.alpha_enabled = enable ? true : false;
  207. r = mgr->set_manager_info(mgr, &info);
  208. if (r)
  209. return r;
  210. r = mgr->apply(mgr);
  211. if (r)
  212. return r;
  213. return size;
  214. }
  215. static ssize_t manager_cpr_enable_show(struct omap_overlay_manager *mgr,
  216. char *buf)
  217. {
  218. return snprintf(buf, PAGE_SIZE, "%d\n", mgr->info.cpr_enable);
  219. }
  220. static ssize_t manager_cpr_enable_store(struct omap_overlay_manager *mgr,
  221. const char *buf, size_t size)
  222. {
  223. struct omap_overlay_manager_info info;
  224. int v;
  225. int r;
  226. bool enable;
  227. if (!dss_has_feature(FEAT_CPR))
  228. return -ENODEV;
  229. r = kstrtoint(buf, 0, &v);
  230. if (r)
  231. return r;
  232. enable = !!v;
  233. mgr->get_manager_info(mgr, &info);
  234. if (info.cpr_enable == enable)
  235. return size;
  236. info.cpr_enable = enable;
  237. r = mgr->set_manager_info(mgr, &info);
  238. if (r)
  239. return r;
  240. r = mgr->apply(mgr);
  241. if (r)
  242. return r;
  243. return size;
  244. }
  245. static ssize_t manager_cpr_coef_show(struct omap_overlay_manager *mgr,
  246. char *buf)
  247. {
  248. struct omap_overlay_manager_info info;
  249. mgr->get_manager_info(mgr, &info);
  250. return snprintf(buf, PAGE_SIZE,
  251. "%d %d %d %d %d %d %d %d %d\n",
  252. info.cpr_coefs.rr,
  253. info.cpr_coefs.rg,
  254. info.cpr_coefs.rb,
  255. info.cpr_coefs.gr,
  256. info.cpr_coefs.gg,
  257. info.cpr_coefs.gb,
  258. info.cpr_coefs.br,
  259. info.cpr_coefs.bg,
  260. info.cpr_coefs.bb);
  261. }
  262. static ssize_t manager_cpr_coef_store(struct omap_overlay_manager *mgr,
  263. const char *buf, size_t size)
  264. {
  265. struct omap_overlay_manager_info info;
  266. struct omap_dss_cpr_coefs coefs;
  267. int r, i;
  268. s16 *arr;
  269. if (!dss_has_feature(FEAT_CPR))
  270. return -ENODEV;
  271. if (sscanf(buf, "%hd %hd %hd %hd %hd %hd %hd %hd %hd",
  272. &coefs.rr, &coefs.rg, &coefs.rb,
  273. &coefs.gr, &coefs.gg, &coefs.gb,
  274. &coefs.br, &coefs.bg, &coefs.bb) != 9)
  275. return -EINVAL;
  276. arr = (s16[]){ coefs.rr, coefs.rg, coefs.rb,
  277. coefs.gr, coefs.gg, coefs.gb,
  278. coefs.br, coefs.bg, coefs.bb };
  279. for (i = 0; i < 9; ++i) {
  280. if (arr[i] < -512 || arr[i] > 511)
  281. return -EINVAL;
  282. }
  283. mgr->get_manager_info(mgr, &info);
  284. info.cpr_coefs = coefs;
  285. r = mgr->set_manager_info(mgr, &info);
  286. if (r)
  287. return r;
  288. r = mgr->apply(mgr);
  289. if (r)
  290. return r;
  291. return size;
  292. }
  293. struct manager_attribute {
  294. struct attribute attr;
  295. ssize_t (*show)(struct omap_overlay_manager *, char *);
  296. ssize_t (*store)(struct omap_overlay_manager *, const char *, size_t);
  297. };
  298. #define MANAGER_ATTR(_name, _mode, _show, _store) \
  299. struct manager_attribute manager_attr_##_name = \
  300. __ATTR(_name, _mode, _show, _store)
  301. static MANAGER_ATTR(name, S_IRUGO, manager_name_show, NULL);
  302. static MANAGER_ATTR(display, S_IRUGO|S_IWUSR,
  303. manager_display_show, manager_display_store);
  304. static MANAGER_ATTR(default_color, S_IRUGO|S_IWUSR,
  305. manager_default_color_show, manager_default_color_store);
  306. static MANAGER_ATTR(trans_key_type, S_IRUGO|S_IWUSR,
  307. manager_trans_key_type_show, manager_trans_key_type_store);
  308. static MANAGER_ATTR(trans_key_value, S_IRUGO|S_IWUSR,
  309. manager_trans_key_value_show, manager_trans_key_value_store);
  310. static MANAGER_ATTR(trans_key_enabled, S_IRUGO|S_IWUSR,
  311. manager_trans_key_enabled_show,
  312. manager_trans_key_enabled_store);
  313. static MANAGER_ATTR(alpha_blending_enabled, S_IRUGO|S_IWUSR,
  314. manager_alpha_blending_enabled_show,
  315. manager_alpha_blending_enabled_store);
  316. static MANAGER_ATTR(cpr_enable, S_IRUGO|S_IWUSR,
  317. manager_cpr_enable_show,
  318. manager_cpr_enable_store);
  319. static MANAGER_ATTR(cpr_coef, S_IRUGO|S_IWUSR,
  320. manager_cpr_coef_show,
  321. manager_cpr_coef_store);
  322. static struct attribute *manager_sysfs_attrs[] = {
  323. &manager_attr_name.attr,
  324. &manager_attr_display.attr,
  325. &manager_attr_default_color.attr,
  326. &manager_attr_trans_key_type.attr,
  327. &manager_attr_trans_key_value.attr,
  328. &manager_attr_trans_key_enabled.attr,
  329. &manager_attr_alpha_blending_enabled.attr,
  330. &manager_attr_cpr_enable.attr,
  331. &manager_attr_cpr_coef.attr,
  332. NULL
  333. };
  334. static ssize_t manager_attr_show(struct kobject *kobj, struct attribute *attr,
  335. char *buf)
  336. {
  337. struct omap_overlay_manager *manager;
  338. struct manager_attribute *manager_attr;
  339. manager = container_of(kobj, struct omap_overlay_manager, kobj);
  340. manager_attr = container_of(attr, struct manager_attribute, attr);
  341. if (!manager_attr->show)
  342. return -ENOENT;
  343. return manager_attr->show(manager, buf);
  344. }
  345. static ssize_t manager_attr_store(struct kobject *kobj, struct attribute *attr,
  346. const char *buf, size_t size)
  347. {
  348. struct omap_overlay_manager *manager;
  349. struct manager_attribute *manager_attr;
  350. manager = container_of(kobj, struct omap_overlay_manager, kobj);
  351. manager_attr = container_of(attr, struct manager_attribute, attr);
  352. if (!manager_attr->store)
  353. return -ENOENT;
  354. return manager_attr->store(manager, buf, size);
  355. }
  356. static const struct sysfs_ops manager_sysfs_ops = {
  357. .show = manager_attr_show,
  358. .store = manager_attr_store,
  359. };
  360. static struct kobj_type manager_ktype = {
  361. .sysfs_ops = &manager_sysfs_ops,
  362. .default_attrs = manager_sysfs_attrs,
  363. };
  364. /*
  365. * We have 4 levels of cache for the dispc settings. First two are in SW and
  366. * the latter two in HW.
  367. *
  368. * +--------------------+
  369. * |overlay/manager_info|
  370. * +--------------------+
  371. * v
  372. * apply()
  373. * v
  374. * +--------------------+
  375. * | dss_cache |
  376. * +--------------------+
  377. * v
  378. * configure()
  379. * v
  380. * +--------------------+
  381. * | shadow registers |
  382. * +--------------------+
  383. * v
  384. * VFP or lcd/digit_enable
  385. * v
  386. * +--------------------+
  387. * | registers |
  388. * +--------------------+
  389. */
  390. struct overlay_cache_data {
  391. /* If true, cache changed, but not written to shadow registers. Set
  392. * in apply(), cleared when registers written. */
  393. bool dirty;
  394. /* If true, shadow registers contain changed values not yet in real
  395. * registers. Set when writing to shadow registers, cleared at
  396. * VSYNC/EVSYNC */
  397. bool shadow_dirty;
  398. bool enabled;
  399. struct omap_overlay_info info;
  400. enum omap_channel channel;
  401. bool replication;
  402. bool ilace;
  403. u32 fifo_low;
  404. u32 fifo_high;
  405. };
  406. struct manager_cache_data {
  407. /* If true, cache changed, but not written to shadow registers. Set
  408. * in apply(), cleared when registers written. */
  409. bool dirty;
  410. /* If true, shadow registers contain changed values not yet in real
  411. * registers. Set when writing to shadow registers, cleared at
  412. * VSYNC/EVSYNC */
  413. bool shadow_dirty;
  414. struct omap_overlay_manager_info info;
  415. bool manual_update;
  416. bool do_manual_update;
  417. /* manual update region */
  418. u16 x, y, w, h;
  419. /* enlarge the update area if the update area contains scaled
  420. * overlays */
  421. bool enlarge_update_area;
  422. };
  423. static struct {
  424. spinlock_t lock;
  425. struct overlay_cache_data overlay_cache[MAX_DSS_OVERLAYS];
  426. struct manager_cache_data manager_cache[MAX_DSS_MANAGERS];
  427. bool irq_enabled;
  428. } dss_cache;
  429. static int omap_dss_set_device(struct omap_overlay_manager *mgr,
  430. struct omap_dss_device *dssdev)
  431. {
  432. int i;
  433. int r;
  434. if (dssdev->manager) {
  435. DSSERR("display '%s' already has a manager '%s'\n",
  436. dssdev->name, dssdev->manager->name);
  437. return -EINVAL;
  438. }
  439. if ((mgr->supported_displays & dssdev->type) == 0) {
  440. DSSERR("display '%s' does not support manager '%s'\n",
  441. dssdev->name, mgr->name);
  442. return -EINVAL;
  443. }
  444. for (i = 0; i < mgr->num_overlays; i++) {
  445. struct omap_overlay *ovl = mgr->overlays[i];
  446. if (ovl->manager != mgr || !ovl->info.enabled)
  447. continue;
  448. r = dss_check_overlay(ovl, dssdev);
  449. if (r)
  450. return r;
  451. }
  452. dssdev->manager = mgr;
  453. mgr->device = dssdev;
  454. mgr->device_changed = true;
  455. return 0;
  456. }
  457. static int omap_dss_unset_device(struct omap_overlay_manager *mgr)
  458. {
  459. if (!mgr->device) {
  460. DSSERR("failed to unset display, display not set.\n");
  461. return -EINVAL;
  462. }
  463. mgr->device->manager = NULL;
  464. mgr->device = NULL;
  465. mgr->device_changed = true;
  466. return 0;
  467. }
  468. static int dss_mgr_wait_for_vsync(struct omap_overlay_manager *mgr)
  469. {
  470. unsigned long timeout = msecs_to_jiffies(500);
  471. u32 irq;
  472. if (mgr->device->type == OMAP_DISPLAY_TYPE_VENC) {
  473. irq = DISPC_IRQ_EVSYNC_ODD;
  474. } else if (mgr->device->type == OMAP_DISPLAY_TYPE_HDMI) {
  475. irq = DISPC_IRQ_EVSYNC_EVEN;
  476. } else {
  477. if (mgr->id == OMAP_DSS_CHANNEL_LCD)
  478. irq = DISPC_IRQ_VSYNC;
  479. else
  480. irq = DISPC_IRQ_VSYNC2;
  481. }
  482. return omap_dispc_wait_for_irq_interruptible_timeout(irq, timeout);
  483. }
  484. static int dss_mgr_wait_for_go(struct omap_overlay_manager *mgr)
  485. {
  486. unsigned long timeout = msecs_to_jiffies(500);
  487. struct manager_cache_data *mc;
  488. u32 irq;
  489. int r;
  490. int i;
  491. struct omap_dss_device *dssdev = mgr->device;
  492. if (!dssdev || dssdev->state != OMAP_DSS_DISPLAY_ACTIVE)
  493. return 0;
  494. if (dssdev->caps & OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE)
  495. return 0;
  496. if (dssdev->type == OMAP_DISPLAY_TYPE_VENC
  497. || dssdev->type == OMAP_DISPLAY_TYPE_HDMI) {
  498. irq = DISPC_IRQ_EVSYNC_ODD | DISPC_IRQ_EVSYNC_EVEN;
  499. } else {
  500. irq = (dssdev->manager->id == OMAP_DSS_CHANNEL_LCD) ?
  501. DISPC_IRQ_VSYNC : DISPC_IRQ_VSYNC2;
  502. }
  503. mc = &dss_cache.manager_cache[mgr->id];
  504. i = 0;
  505. while (1) {
  506. unsigned long flags;
  507. bool shadow_dirty, dirty;
  508. spin_lock_irqsave(&dss_cache.lock, flags);
  509. dirty = mc->dirty;
  510. shadow_dirty = mc->shadow_dirty;
  511. spin_unlock_irqrestore(&dss_cache.lock, flags);
  512. if (!dirty && !shadow_dirty) {
  513. r = 0;
  514. break;
  515. }
  516. /* 4 iterations is the worst case:
  517. * 1 - initial iteration, dirty = true (between VFP and VSYNC)
  518. * 2 - first VSYNC, dirty = true
  519. * 3 - dirty = false, shadow_dirty = true
  520. * 4 - shadow_dirty = false */
  521. if (i++ == 3) {
  522. DSSERR("mgr(%d)->wait_for_go() not finishing\n",
  523. mgr->id);
  524. r = 0;
  525. break;
  526. }
  527. r = omap_dispc_wait_for_irq_interruptible_timeout(irq, timeout);
  528. if (r == -ERESTARTSYS)
  529. break;
  530. if (r) {
  531. DSSERR("mgr(%d)->wait_for_go() timeout\n", mgr->id);
  532. break;
  533. }
  534. }
  535. return r;
  536. }
  537. int dss_mgr_wait_for_go_ovl(struct omap_overlay *ovl)
  538. {
  539. unsigned long timeout = msecs_to_jiffies(500);
  540. struct overlay_cache_data *oc;
  541. struct omap_dss_device *dssdev;
  542. u32 irq;
  543. int r;
  544. int i;
  545. if (!ovl->manager)
  546. return 0;
  547. dssdev = ovl->manager->device;
  548. if (!dssdev || dssdev->state != OMAP_DSS_DISPLAY_ACTIVE)
  549. return 0;
  550. if (dssdev->caps & OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE)
  551. return 0;
  552. if (dssdev->type == OMAP_DISPLAY_TYPE_VENC
  553. || dssdev->type == OMAP_DISPLAY_TYPE_HDMI) {
  554. irq = DISPC_IRQ_EVSYNC_ODD | DISPC_IRQ_EVSYNC_EVEN;
  555. } else {
  556. irq = (dssdev->manager->id == OMAP_DSS_CHANNEL_LCD) ?
  557. DISPC_IRQ_VSYNC : DISPC_IRQ_VSYNC2;
  558. }
  559. oc = &dss_cache.overlay_cache[ovl->id];
  560. i = 0;
  561. while (1) {
  562. unsigned long flags;
  563. bool shadow_dirty, dirty;
  564. spin_lock_irqsave(&dss_cache.lock, flags);
  565. dirty = oc->dirty;
  566. shadow_dirty = oc->shadow_dirty;
  567. spin_unlock_irqrestore(&dss_cache.lock, flags);
  568. if (!dirty && !shadow_dirty) {
  569. r = 0;
  570. break;
  571. }
  572. /* 4 iterations is the worst case:
  573. * 1 - initial iteration, dirty = true (between VFP and VSYNC)
  574. * 2 - first VSYNC, dirty = true
  575. * 3 - dirty = false, shadow_dirty = true
  576. * 4 - shadow_dirty = false */
  577. if (i++ == 3) {
  578. DSSERR("ovl(%d)->wait_for_go() not finishing\n",
  579. ovl->id);
  580. r = 0;
  581. break;
  582. }
  583. r = omap_dispc_wait_for_irq_interruptible_timeout(irq, timeout);
  584. if (r == -ERESTARTSYS)
  585. break;
  586. if (r) {
  587. DSSERR("ovl(%d)->wait_for_go() timeout\n", ovl->id);
  588. break;
  589. }
  590. }
  591. return r;
  592. }
  593. static int overlay_enabled(struct omap_overlay *ovl)
  594. {
  595. return ovl->info.enabled && ovl->manager && ovl->manager->device;
  596. }
  597. /* Is rect1 a subset of rect2? */
  598. static bool rectangle_subset(int x1, int y1, int w1, int h1,
  599. int x2, int y2, int w2, int h2)
  600. {
  601. if (x1 < x2 || y1 < y2)
  602. return false;
  603. if (x1 + w1 > x2 + w2)
  604. return false;
  605. if (y1 + h1 > y2 + h2)
  606. return false;
  607. return true;
  608. }
  609. /* Do rect1 and rect2 overlap? */
  610. static bool rectangle_intersects(int x1, int y1, int w1, int h1,
  611. int x2, int y2, int w2, int h2)
  612. {
  613. if (x1 >= x2 + w2)
  614. return false;
  615. if (x2 >= x1 + w1)
  616. return false;
  617. if (y1 >= y2 + h2)
  618. return false;
  619. if (y2 >= y1 + h1)
  620. return false;
  621. return true;
  622. }
  623. static bool dispc_is_overlay_scaled(struct overlay_cache_data *oc)
  624. {
  625. struct omap_overlay_info *oi = &oc->info;
  626. if (oi->out_width != 0 && oi->width != oi->out_width)
  627. return true;
  628. if (oi->out_height != 0 && oi->height != oi->out_height)
  629. return true;
  630. return false;
  631. }
  632. static int configure_overlay(enum omap_plane plane)
  633. {
  634. struct overlay_cache_data *c;
  635. struct manager_cache_data *mc;
  636. struct omap_overlay_info *oi;
  637. struct omap_overlay_manager_info *mi;
  638. u16 outw, outh;
  639. u16 x, y, w, h;
  640. u32 paddr;
  641. int r;
  642. u16 orig_w, orig_h, orig_outw, orig_outh;
  643. DSSDBGF("%d", plane);
  644. c = &dss_cache.overlay_cache[plane];
  645. oi = &c->info;
  646. if (!c->enabled) {
  647. dispc_enable_plane(plane, 0);
  648. return 0;
  649. }
  650. mc = &dss_cache.manager_cache[c->channel];
  651. mi = &mc->info;
  652. x = oi->pos_x;
  653. y = oi->pos_y;
  654. w = oi->width;
  655. h = oi->height;
  656. outw = oi->out_width == 0 ? oi->width : oi->out_width;
  657. outh = oi->out_height == 0 ? oi->height : oi->out_height;
  658. paddr = oi->paddr;
  659. orig_w = w;
  660. orig_h = h;
  661. orig_outw = outw;
  662. orig_outh = outh;
  663. if (mc->manual_update && mc->do_manual_update) {
  664. unsigned bpp;
  665. unsigned scale_x_m = w, scale_x_d = outw;
  666. unsigned scale_y_m = h, scale_y_d = outh;
  667. /* If the overlay is outside the update region, disable it */
  668. if (!rectangle_intersects(mc->x, mc->y, mc->w, mc->h,
  669. x, y, outw, outh)) {
  670. dispc_enable_plane(plane, 0);
  671. return 0;
  672. }
  673. switch (oi->color_mode) {
  674. case OMAP_DSS_COLOR_NV12:
  675. bpp = 8;
  676. break;
  677. case OMAP_DSS_COLOR_RGB16:
  678. case OMAP_DSS_COLOR_ARGB16:
  679. case OMAP_DSS_COLOR_YUV2:
  680. case OMAP_DSS_COLOR_UYVY:
  681. case OMAP_DSS_COLOR_RGBA16:
  682. case OMAP_DSS_COLOR_RGBX16:
  683. case OMAP_DSS_COLOR_ARGB16_1555:
  684. case OMAP_DSS_COLOR_XRGB16_1555:
  685. bpp = 16;
  686. break;
  687. case OMAP_DSS_COLOR_RGB24P:
  688. bpp = 24;
  689. break;
  690. case OMAP_DSS_COLOR_RGB24U:
  691. case OMAP_DSS_COLOR_ARGB32:
  692. case OMAP_DSS_COLOR_RGBA32:
  693. case OMAP_DSS_COLOR_RGBX32:
  694. bpp = 32;
  695. break;
  696. default:
  697. BUG();
  698. }
  699. if (mc->x > oi->pos_x) {
  700. x = 0;
  701. outw -= (mc->x - oi->pos_x);
  702. paddr += (mc->x - oi->pos_x) *
  703. scale_x_m / scale_x_d * bpp / 8;
  704. } else {
  705. x = oi->pos_x - mc->x;
  706. }
  707. if (mc->y > oi->pos_y) {
  708. y = 0;
  709. outh -= (mc->y - oi->pos_y);
  710. paddr += (mc->y - oi->pos_y) *
  711. scale_y_m / scale_y_d *
  712. oi->screen_width * bpp / 8;
  713. } else {
  714. y = oi->pos_y - mc->y;
  715. }
  716. if (mc->w < (x + outw))
  717. outw -= (x + outw) - (mc->w);
  718. if (mc->h < (y + outh))
  719. outh -= (y + outh) - (mc->h);
  720. w = w * outw / orig_outw;
  721. h = h * outh / orig_outh;
  722. /* YUV mode overlay's input width has to be even and the
  723. * algorithm above may adjust the width to be odd.
  724. *
  725. * Here we adjust the width if needed, preferring to increase
  726. * the width if the original width was bigger.
  727. */
  728. if ((w & 1) &&
  729. (oi->color_mode == OMAP_DSS_COLOR_YUV2 ||
  730. oi->color_mode == OMAP_DSS_COLOR_UYVY)) {
  731. if (orig_w > w)
  732. w += 1;
  733. else
  734. w -= 1;
  735. }
  736. }
  737. r = dispc_setup_plane(plane,
  738. paddr,
  739. oi->screen_width,
  740. x, y,
  741. w, h,
  742. outw, outh,
  743. oi->color_mode,
  744. c->ilace,
  745. oi->rotation_type,
  746. oi->rotation,
  747. oi->mirror,
  748. oi->global_alpha,
  749. oi->pre_mult_alpha,
  750. c->channel,
  751. oi->p_uv_addr);
  752. if (r) {
  753. /* this shouldn't happen */
  754. DSSERR("dispc_setup_plane failed for ovl %d\n", plane);
  755. dispc_enable_plane(plane, 0);
  756. return r;
  757. }
  758. dispc_enable_replication(plane, c->replication);
  759. dispc_set_fifo_threshold(plane, c->fifo_low, c->fifo_high);
  760. dispc_enable_plane(plane, 1);
  761. return 0;
  762. }
  763. static void configure_manager(enum omap_channel channel)
  764. {
  765. struct omap_overlay_manager_info *mi;
  766. DSSDBGF("%d", channel);
  767. /* picking info from the cache */
  768. mi = &dss_cache.manager_cache[channel].info;
  769. dispc_set_default_color(channel, mi->default_color);
  770. dispc_set_trans_key(channel, mi->trans_key_type, mi->trans_key);
  771. dispc_enable_trans_key(channel, mi->trans_enabled);
  772. dispc_enable_alpha_blending(channel, mi->alpha_enabled);
  773. if (dss_has_feature(FEAT_CPR)) {
  774. dispc_enable_cpr(channel, mi->cpr_enable);
  775. dispc_set_cpr_coef(channel, &mi->cpr_coefs);
  776. }
  777. }
  778. /* configure_dispc() tries to write values from cache to shadow registers.
  779. * It writes only to those managers/overlays that are not busy.
  780. * returns 0 if everything could be written to shadow registers.
  781. * returns 1 if not everything could be written to shadow registers. */
  782. static int configure_dispc(void)
  783. {
  784. struct overlay_cache_data *oc;
  785. struct manager_cache_data *mc;
  786. const int num_ovls = dss_feat_get_num_ovls();
  787. const int num_mgrs = dss_feat_get_num_mgrs();
  788. int i;
  789. int r;
  790. bool mgr_busy[MAX_DSS_MANAGERS];
  791. bool mgr_go[MAX_DSS_MANAGERS];
  792. bool busy;
  793. r = 0;
  794. busy = false;
  795. for (i = 0; i < num_mgrs; i++) {
  796. mgr_busy[i] = dispc_go_busy(i);
  797. mgr_go[i] = false;
  798. }
  799. /* Commit overlay settings */
  800. for (i = 0; i < num_ovls; ++i) {
  801. oc = &dss_cache.overlay_cache[i];
  802. mc = &dss_cache.manager_cache[oc->channel];
  803. if (!oc->dirty)
  804. continue;
  805. if (mc->manual_update && !mc->do_manual_update)
  806. continue;
  807. if (mgr_busy[oc->channel]) {
  808. busy = true;
  809. continue;
  810. }
  811. r = configure_overlay(i);
  812. if (r)
  813. DSSERR("configure_overlay %d failed\n", i);
  814. oc->dirty = false;
  815. oc->shadow_dirty = true;
  816. mgr_go[oc->channel] = true;
  817. }
  818. /* Commit manager settings */
  819. for (i = 0; i < num_mgrs; ++i) {
  820. mc = &dss_cache.manager_cache[i];
  821. if (!mc->dirty)
  822. continue;
  823. if (mc->manual_update && !mc->do_manual_update)
  824. continue;
  825. if (mgr_busy[i]) {
  826. busy = true;
  827. continue;
  828. }
  829. configure_manager(i);
  830. mc->dirty = false;
  831. mc->shadow_dirty = true;
  832. mgr_go[i] = true;
  833. }
  834. /* set GO */
  835. for (i = 0; i < num_mgrs; ++i) {
  836. mc = &dss_cache.manager_cache[i];
  837. if (!mgr_go[i])
  838. continue;
  839. /* We don't need GO with manual update display. LCD iface will
  840. * always be turned off after frame, and new settings will be
  841. * taken in to use at next update */
  842. if (!mc->manual_update)
  843. dispc_go(i);
  844. }
  845. if (busy)
  846. r = 1;
  847. else
  848. r = 0;
  849. return r;
  850. }
  851. /* Make the coordinates even. There are some strange problems with OMAP and
  852. * partial DSI update when the update widths are odd. */
  853. static void make_even(u16 *x, u16 *w)
  854. {
  855. u16 x1, x2;
  856. x1 = *x;
  857. x2 = *x + *w;
  858. x1 &= ~1;
  859. x2 = ALIGN(x2, 2);
  860. *x = x1;
  861. *w = x2 - x1;
  862. }
  863. /* Configure dispc for partial update. Return possibly modified update
  864. * area */
  865. void dss_setup_partial_planes(struct omap_dss_device *dssdev,
  866. u16 *xi, u16 *yi, u16 *wi, u16 *hi, bool enlarge_update_area)
  867. {
  868. struct overlay_cache_data *oc;
  869. struct manager_cache_data *mc;
  870. struct omap_overlay_info *oi;
  871. const int num_ovls = dss_feat_get_num_ovls();
  872. struct omap_overlay_manager *mgr;
  873. int i;
  874. u16 x, y, w, h;
  875. unsigned long flags;
  876. bool area_changed;
  877. x = *xi;
  878. y = *yi;
  879. w = *wi;
  880. h = *hi;
  881. DSSDBG("dispc_setup_partial_planes %d,%d %dx%d\n",
  882. *xi, *yi, *wi, *hi);
  883. mgr = dssdev->manager;
  884. if (!mgr) {
  885. DSSDBG("no manager\n");
  886. return;
  887. }
  888. make_even(&x, &w);
  889. spin_lock_irqsave(&dss_cache.lock, flags);
  890. /*
  891. * Execute the outer loop until the inner loop has completed
  892. * once without increasing the update area. This will ensure that
  893. * all scaled overlays end up completely within the update area.
  894. */
  895. do {
  896. area_changed = false;
  897. /* We need to show the whole overlay if it is scaled. So look
  898. * for those, and make the update area larger if found.
  899. * Also mark the overlay cache dirty */
  900. for (i = 0; i < num_ovls; ++i) {
  901. unsigned x1, y1, x2, y2;
  902. unsigned outw, outh;
  903. oc = &dss_cache.overlay_cache[i];
  904. oi = &oc->info;
  905. if (oc->channel != mgr->id)
  906. continue;
  907. oc->dirty = true;
  908. if (!enlarge_update_area)
  909. continue;
  910. if (!oc->enabled)
  911. continue;
  912. if (!dispc_is_overlay_scaled(oc))
  913. continue;
  914. outw = oi->out_width == 0 ?
  915. oi->width : oi->out_width;
  916. outh = oi->out_height == 0 ?
  917. oi->height : oi->out_height;
  918. /* is the overlay outside the update region? */
  919. if (!rectangle_intersects(x, y, w, h,
  920. oi->pos_x, oi->pos_y,
  921. outw, outh))
  922. continue;
  923. /* if the overlay totally inside the update region? */
  924. if (rectangle_subset(oi->pos_x, oi->pos_y, outw, outh,
  925. x, y, w, h))
  926. continue;
  927. if (x > oi->pos_x)
  928. x1 = oi->pos_x;
  929. else
  930. x1 = x;
  931. if (y > oi->pos_y)
  932. y1 = oi->pos_y;
  933. else
  934. y1 = y;
  935. if ((x + w) < (oi->pos_x + outw))
  936. x2 = oi->pos_x + outw;
  937. else
  938. x2 = x + w;
  939. if ((y + h) < (oi->pos_y + outh))
  940. y2 = oi->pos_y + outh;
  941. else
  942. y2 = y + h;
  943. x = x1;
  944. y = y1;
  945. w = x2 - x1;
  946. h = y2 - y1;
  947. make_even(&x, &w);
  948. DSSDBG("changing upd area due to ovl(%d) "
  949. "scaling %d,%d %dx%d\n",
  950. i, x, y, w, h);
  951. area_changed = true;
  952. }
  953. } while (area_changed);
  954. mc = &dss_cache.manager_cache[mgr->id];
  955. mc->do_manual_update = true;
  956. mc->enlarge_update_area = enlarge_update_area;
  957. mc->x = x;
  958. mc->y = y;
  959. mc->w = w;
  960. mc->h = h;
  961. configure_dispc();
  962. mc->do_manual_update = false;
  963. spin_unlock_irqrestore(&dss_cache.lock, flags);
  964. *xi = x;
  965. *yi = y;
  966. *wi = w;
  967. *hi = h;
  968. }
  969. void dss_start_update(struct omap_dss_device *dssdev)
  970. {
  971. struct manager_cache_data *mc;
  972. struct overlay_cache_data *oc;
  973. const int num_ovls = dss_feat_get_num_ovls();
  974. const int num_mgrs = dss_feat_get_num_mgrs();
  975. struct omap_overlay_manager *mgr;
  976. int i;
  977. mgr = dssdev->manager;
  978. for (i = 0; i < num_ovls; ++i) {
  979. oc = &dss_cache.overlay_cache[i];
  980. if (oc->channel != mgr->id)
  981. continue;
  982. oc->shadow_dirty = false;
  983. }
  984. for (i = 0; i < num_mgrs; ++i) {
  985. mc = &dss_cache.manager_cache[i];
  986. if (mgr->id != i)
  987. continue;
  988. mc->shadow_dirty = false;
  989. }
  990. dssdev->manager->enable(dssdev->manager);
  991. }
  992. static void dss_apply_irq_handler(void *data, u32 mask)
  993. {
  994. struct manager_cache_data *mc;
  995. struct overlay_cache_data *oc;
  996. const int num_ovls = dss_feat_get_num_ovls();
  997. const int num_mgrs = dss_feat_get_num_mgrs();
  998. int i, r;
  999. bool mgr_busy[MAX_DSS_MANAGERS];
  1000. u32 irq_mask;
  1001. for (i = 0; i < num_mgrs; i++)
  1002. mgr_busy[i] = dispc_go_busy(i);
  1003. spin_lock(&dss_cache.lock);
  1004. for (i = 0; i < num_ovls; ++i) {
  1005. oc = &dss_cache.overlay_cache[i];
  1006. if (!mgr_busy[oc->channel])
  1007. oc->shadow_dirty = false;
  1008. }
  1009. for (i = 0; i < num_mgrs; ++i) {
  1010. mc = &dss_cache.manager_cache[i];
  1011. if (!mgr_busy[i])
  1012. mc->shadow_dirty = false;
  1013. }
  1014. r = configure_dispc();
  1015. if (r == 1)
  1016. goto end;
  1017. /* re-read busy flags */
  1018. for (i = 0; i < num_mgrs; i++)
  1019. mgr_busy[i] = dispc_go_busy(i);
  1020. /* keep running as long as there are busy managers, so that
  1021. * we can collect overlay-applied information */
  1022. for (i = 0; i < num_mgrs; ++i) {
  1023. if (mgr_busy[i])
  1024. goto end;
  1025. }
  1026. irq_mask = DISPC_IRQ_VSYNC | DISPC_IRQ_EVSYNC_ODD |
  1027. DISPC_IRQ_EVSYNC_EVEN;
  1028. if (dss_has_feature(FEAT_MGR_LCD2))
  1029. irq_mask |= DISPC_IRQ_VSYNC2;
  1030. omap_dispc_unregister_isr(dss_apply_irq_handler, NULL, irq_mask);
  1031. dss_cache.irq_enabled = false;
  1032. end:
  1033. spin_unlock(&dss_cache.lock);
  1034. }
  1035. static int omap_dss_mgr_apply(struct omap_overlay_manager *mgr)
  1036. {
  1037. struct overlay_cache_data *oc;
  1038. struct manager_cache_data *mc;
  1039. int i;
  1040. struct omap_overlay *ovl;
  1041. int num_planes_enabled = 0;
  1042. bool use_fifomerge;
  1043. unsigned long flags;
  1044. int r;
  1045. DSSDBG("omap_dss_mgr_apply(%s)\n", mgr->name);
  1046. spin_lock_irqsave(&dss_cache.lock, flags);
  1047. /* Configure overlays */
  1048. for (i = 0; i < omap_dss_get_num_overlays(); ++i) {
  1049. struct omap_dss_device *dssdev;
  1050. ovl = omap_dss_get_overlay(i);
  1051. if (!(ovl->caps & OMAP_DSS_OVL_CAP_DISPC))
  1052. continue;
  1053. oc = &dss_cache.overlay_cache[ovl->id];
  1054. if (!overlay_enabled(ovl)) {
  1055. if (oc->enabled) {
  1056. oc->enabled = false;
  1057. oc->dirty = true;
  1058. }
  1059. continue;
  1060. }
  1061. if (!ovl->info_dirty) {
  1062. if (oc->enabled)
  1063. ++num_planes_enabled;
  1064. continue;
  1065. }
  1066. dssdev = ovl->manager->device;
  1067. if (dss_check_overlay(ovl, dssdev)) {
  1068. if (oc->enabled) {
  1069. oc->enabled = false;
  1070. oc->dirty = true;
  1071. }
  1072. continue;
  1073. }
  1074. ovl->info_dirty = false;
  1075. oc->dirty = true;
  1076. oc->info = ovl->info;
  1077. oc->replication =
  1078. dss_use_replication(dssdev, ovl->info.color_mode);
  1079. oc->ilace = dssdev->type == OMAP_DISPLAY_TYPE_VENC;
  1080. oc->channel = ovl->manager->id;
  1081. oc->enabled = true;
  1082. ++num_planes_enabled;
  1083. }
  1084. /* Configure managers */
  1085. list_for_each_entry(mgr, &manager_list, list) {
  1086. struct omap_dss_device *dssdev;
  1087. if (!(mgr->caps & OMAP_DSS_OVL_MGR_CAP_DISPC))
  1088. continue;
  1089. mc = &dss_cache.manager_cache[mgr->id];
  1090. if (mgr->device_changed) {
  1091. mgr->device_changed = false;
  1092. mgr->info_dirty = true;
  1093. }
  1094. if (!mgr->info_dirty)
  1095. continue;
  1096. if (!mgr->device)
  1097. continue;
  1098. dssdev = mgr->device;
  1099. mgr->info_dirty = false;
  1100. mc->dirty = true;
  1101. mc->info = mgr->info;
  1102. mc->manual_update =
  1103. dssdev->caps & OMAP_DSS_DISPLAY_CAP_MANUAL_UPDATE;
  1104. }
  1105. /* XXX TODO: Try to get fifomerge working. The problem is that it
  1106. * affects both managers, not individually but at the same time. This
  1107. * means the change has to be well synchronized. I guess the proper way
  1108. * is to have a two step process for fifo merge:
  1109. * fifomerge enable:
  1110. * 1. disable other planes, leaving one plane enabled
  1111. * 2. wait until the planes are disabled on HW
  1112. * 3. config merged fifo thresholds, enable fifomerge
  1113. * fifomerge disable:
  1114. * 1. config unmerged fifo thresholds, disable fifomerge
  1115. * 2. wait until fifo changes are in HW
  1116. * 3. enable planes
  1117. */
  1118. use_fifomerge = false;
  1119. /* Configure overlay fifos */
  1120. for (i = 0; i < omap_dss_get_num_overlays(); ++i) {
  1121. struct omap_dss_device *dssdev;
  1122. u32 size, burst_size;
  1123. ovl = omap_dss_get_overlay(i);
  1124. if (!(ovl->caps & OMAP_DSS_OVL_CAP_DISPC))
  1125. continue;
  1126. oc = &dss_cache.overlay_cache[ovl->id];
  1127. if (!oc->enabled)
  1128. continue;
  1129. dssdev = ovl->manager->device;
  1130. size = dispc_get_plane_fifo_size(ovl->id);
  1131. if (use_fifomerge)
  1132. size *= 3;
  1133. burst_size = dispc_get_burst_size(ovl->id);
  1134. switch (dssdev->type) {
  1135. case OMAP_DISPLAY_TYPE_DPI:
  1136. case OMAP_DISPLAY_TYPE_DBI:
  1137. case OMAP_DISPLAY_TYPE_SDI:
  1138. case OMAP_DISPLAY_TYPE_VENC:
  1139. case OMAP_DISPLAY_TYPE_HDMI:
  1140. default_get_overlay_fifo_thresholds(ovl->id, size,
  1141. burst_size, &oc->fifo_low,
  1142. &oc->fifo_high);
  1143. break;
  1144. #ifdef CONFIG_OMAP2_DSS_DSI
  1145. case OMAP_DISPLAY_TYPE_DSI:
  1146. dsi_get_overlay_fifo_thresholds(ovl->id, size,
  1147. burst_size, &oc->fifo_low,
  1148. &oc->fifo_high);
  1149. break;
  1150. #endif
  1151. default:
  1152. BUG();
  1153. }
  1154. }
  1155. r = 0;
  1156. dss_clk_enable(DSS_CLK_ICK | DSS_CLK_FCK);
  1157. if (!dss_cache.irq_enabled) {
  1158. u32 mask;
  1159. mask = DISPC_IRQ_VSYNC | DISPC_IRQ_EVSYNC_ODD |
  1160. DISPC_IRQ_EVSYNC_EVEN;
  1161. if (dss_has_feature(FEAT_MGR_LCD2))
  1162. mask |= DISPC_IRQ_VSYNC2;
  1163. r = omap_dispc_register_isr(dss_apply_irq_handler, NULL, mask);
  1164. dss_cache.irq_enabled = true;
  1165. }
  1166. configure_dispc();
  1167. dss_clk_disable(DSS_CLK_ICK | DSS_CLK_FCK);
  1168. spin_unlock_irqrestore(&dss_cache.lock, flags);
  1169. return r;
  1170. }
  1171. static int dss_check_manager(struct omap_overlay_manager *mgr)
  1172. {
  1173. /* OMAP supports only graphics source transparency color key and alpha
  1174. * blending simultaneously. See TRM 15.4.2.4.2.2 Alpha Mode */
  1175. if (mgr->info.alpha_enabled && mgr->info.trans_enabled &&
  1176. mgr->info.trans_key_type != OMAP_DSS_COLOR_KEY_GFX_DST)
  1177. return -EINVAL;
  1178. return 0;
  1179. }
  1180. static int omap_dss_mgr_set_info(struct omap_overlay_manager *mgr,
  1181. struct omap_overlay_manager_info *info)
  1182. {
  1183. int r;
  1184. struct omap_overlay_manager_info old_info;
  1185. old_info = mgr->info;
  1186. mgr->info = *info;
  1187. r = dss_check_manager(mgr);
  1188. if (r) {
  1189. mgr->info = old_info;
  1190. return r;
  1191. }
  1192. mgr->info_dirty = true;
  1193. return 0;
  1194. }
  1195. static void omap_dss_mgr_get_info(struct omap_overlay_manager *mgr,
  1196. struct omap_overlay_manager_info *info)
  1197. {
  1198. *info = mgr->info;
  1199. }
  1200. static int dss_mgr_enable(struct omap_overlay_manager *mgr)
  1201. {
  1202. dispc_enable_channel(mgr->id, 1);
  1203. return 0;
  1204. }
  1205. static int dss_mgr_disable(struct omap_overlay_manager *mgr)
  1206. {
  1207. dispc_enable_channel(mgr->id, 0);
  1208. return 0;
  1209. }
  1210. static void omap_dss_add_overlay_manager(struct omap_overlay_manager *manager)
  1211. {
  1212. ++num_managers;
  1213. list_add_tail(&manager->list, &manager_list);
  1214. }
  1215. int dss_init_overlay_managers(struct platform_device *pdev)
  1216. {
  1217. int i, r;
  1218. spin_lock_init(&dss_cache.lock);
  1219. INIT_LIST_HEAD(&manager_list);
  1220. num_managers = 0;
  1221. for (i = 0; i < dss_feat_get_num_mgrs(); ++i) {
  1222. struct omap_overlay_manager *mgr;
  1223. mgr = kzalloc(sizeof(*mgr), GFP_KERNEL);
  1224. BUG_ON(mgr == NULL);
  1225. switch (i) {
  1226. case 0:
  1227. mgr->name = "lcd";
  1228. mgr->id = OMAP_DSS_CHANNEL_LCD;
  1229. break;
  1230. case 1:
  1231. mgr->name = "tv";
  1232. mgr->id = OMAP_DSS_CHANNEL_DIGIT;
  1233. break;
  1234. case 2:
  1235. mgr->name = "lcd2";
  1236. mgr->id = OMAP_DSS_CHANNEL_LCD2;
  1237. break;
  1238. }
  1239. mgr->set_device = &omap_dss_set_device;
  1240. mgr->unset_device = &omap_dss_unset_device;
  1241. mgr->apply = &omap_dss_mgr_apply;
  1242. mgr->set_manager_info = &omap_dss_mgr_set_info;
  1243. mgr->get_manager_info = &omap_dss_mgr_get_info;
  1244. mgr->wait_for_go = &dss_mgr_wait_for_go;
  1245. mgr->wait_for_vsync = &dss_mgr_wait_for_vsync;
  1246. mgr->enable = &dss_mgr_enable;
  1247. mgr->disable = &dss_mgr_disable;
  1248. mgr->caps = OMAP_DSS_OVL_MGR_CAP_DISPC;
  1249. mgr->supported_displays =
  1250. dss_feat_get_supported_displays(mgr->id);
  1251. dss_overlay_setup_dispc_manager(mgr);
  1252. omap_dss_add_overlay_manager(mgr);
  1253. r = kobject_init_and_add(&mgr->kobj, &manager_ktype,
  1254. &pdev->dev.kobj, "manager%d", i);
  1255. if (r) {
  1256. DSSERR("failed to create sysfs file\n");
  1257. continue;
  1258. }
  1259. }
  1260. #ifdef L4_EXAMPLE
  1261. {
  1262. int omap_dss_mgr_apply_l4(struct omap_overlay_manager *mgr)
  1263. {
  1264. DSSDBG("omap_dss_mgr_apply_l4(%s)\n", mgr->name);
  1265. return 0;
  1266. }
  1267. struct omap_overlay_manager *mgr;
  1268. mgr = kzalloc(sizeof(*mgr), GFP_KERNEL);
  1269. BUG_ON(mgr == NULL);
  1270. mgr->name = "l4";
  1271. mgr->supported_displays =
  1272. OMAP_DISPLAY_TYPE_DBI | OMAP_DISPLAY_TYPE_DSI;
  1273. mgr->set_device = &omap_dss_set_device;
  1274. mgr->unset_device = &omap_dss_unset_device;
  1275. mgr->apply = &omap_dss_mgr_apply_l4;
  1276. mgr->set_manager_info = &omap_dss_mgr_set_info;
  1277. mgr->get_manager_info = &omap_dss_mgr_get_info;
  1278. dss_overlay_setup_l4_manager(mgr);
  1279. omap_dss_add_overlay_manager(mgr);
  1280. r = kobject_init_and_add(&mgr->kobj, &manager_ktype,
  1281. &pdev->dev.kobj, "managerl4");
  1282. if (r)
  1283. DSSERR("failed to create sysfs file\n");
  1284. }
  1285. #endif
  1286. return 0;
  1287. }
  1288. void dss_uninit_overlay_managers(struct platform_device *pdev)
  1289. {
  1290. struct omap_overlay_manager *mgr;
  1291. while (!list_empty(&manager_list)) {
  1292. mgr = list_first_entry(&manager_list,
  1293. struct omap_overlay_manager, list);
  1294. list_del(&mgr->list);
  1295. kobject_del(&mgr->kobj);
  1296. kobject_put(&mgr->kobj);
  1297. kfree(mgr);
  1298. }
  1299. num_managers = 0;
  1300. }
  1301. int omap_dss_get_num_overlay_managers(void)
  1302. {
  1303. return num_managers;
  1304. }
  1305. EXPORT_SYMBOL(omap_dss_get_num_overlay_managers);
  1306. struct omap_overlay_manager *omap_dss_get_overlay_manager(int num)
  1307. {
  1308. int i = 0;
  1309. struct omap_overlay_manager *mgr;
  1310. list_for_each_entry(mgr, &manager_list, list) {
  1311. if (i++ == num)
  1312. return mgr;
  1313. }
  1314. return NULL;
  1315. }
  1316. EXPORT_SYMBOL(omap_dss_get_overlay_manager);