vmwgfx_scrn.c 13 KB

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  1. /**************************************************************************
  2. *
  3. * Copyright © 2011 VMware, Inc., Palo Alto, CA., USA
  4. * All Rights Reserved.
  5. *
  6. * Permission is hereby granted, free of charge, to any person obtaining a
  7. * copy of this software and associated documentation files (the
  8. * "Software"), to deal in the Software without restriction, including
  9. * without limitation the rights to use, copy, modify, merge, publish,
  10. * distribute, sub license, and/or sell copies of the Software, and to
  11. * permit persons to whom the Software is furnished to do so, subject to
  12. * the following conditions:
  13. *
  14. * The above copyright notice and this permission notice (including the
  15. * next paragraph) shall be included in all copies or substantial portions
  16. * of the Software.
  17. *
  18. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  19. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  20. * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
  21. * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
  22. * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
  23. * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
  24. * USE OR OTHER DEALINGS IN THE SOFTWARE.
  25. *
  26. **************************************************************************/
  27. #include "vmwgfx_kms.h"
  28. #define vmw_crtc_to_sou(x) \
  29. container_of(x, struct vmw_screen_object_unit, base.crtc)
  30. #define vmw_encoder_to_sou(x) \
  31. container_of(x, struct vmw_screen_object_unit, base.encoder)
  32. #define vmw_connector_to_sou(x) \
  33. container_of(x, struct vmw_screen_object_unit, base.connector)
  34. struct vmw_screen_object_display {
  35. unsigned num_implicit;
  36. struct vmw_framebuffer *implicit_fb;
  37. };
  38. /**
  39. * Display unit using screen objects.
  40. */
  41. struct vmw_screen_object_unit {
  42. struct vmw_display_unit base;
  43. unsigned long buffer_size; /**< Size of allocated buffer */
  44. struct vmw_dma_buffer *buffer; /**< Backing store buffer */
  45. bool defined;
  46. bool active_implicit;
  47. };
  48. static void vmw_sou_destroy(struct vmw_screen_object_unit *sou)
  49. {
  50. vmw_display_unit_cleanup(&sou->base);
  51. kfree(sou);
  52. }
  53. /*
  54. * Screen Object Display Unit CRTC functions
  55. */
  56. static void vmw_sou_crtc_destroy(struct drm_crtc *crtc)
  57. {
  58. vmw_sou_destroy(vmw_crtc_to_sou(crtc));
  59. }
  60. static void vmw_sou_del_active(struct vmw_private *vmw_priv,
  61. struct vmw_screen_object_unit *sou)
  62. {
  63. struct vmw_screen_object_display *ld = vmw_priv->sou_priv;
  64. if (sou->active_implicit) {
  65. if (--(ld->num_implicit) == 0)
  66. ld->implicit_fb = NULL;
  67. sou->active_implicit = false;
  68. }
  69. }
  70. static void vmw_sou_add_active(struct vmw_private *vmw_priv,
  71. struct vmw_screen_object_unit *sou,
  72. struct vmw_framebuffer *vfb)
  73. {
  74. struct vmw_screen_object_display *ld = vmw_priv->sou_priv;
  75. BUG_ON(!ld->num_implicit && ld->implicit_fb);
  76. if (!sou->active_implicit && sou->base.is_implicit) {
  77. ld->implicit_fb = vfb;
  78. sou->active_implicit = true;
  79. ld->num_implicit++;
  80. }
  81. }
  82. /**
  83. * Send the fifo command to create a screen.
  84. */
  85. static int vmw_sou_fifo_create(struct vmw_private *dev_priv,
  86. struct vmw_screen_object_unit *sou,
  87. uint32_t x, uint32_t y,
  88. struct drm_display_mode *mode)
  89. {
  90. size_t fifo_size;
  91. struct {
  92. struct {
  93. uint32_t cmdType;
  94. } header;
  95. SVGAScreenObject obj;
  96. } *cmd;
  97. BUG_ON(!sou->buffer);
  98. fifo_size = sizeof(*cmd);
  99. cmd = vmw_fifo_reserve(dev_priv, fifo_size);
  100. /* The hardware has hung, nothing we can do about it here. */
  101. if (unlikely(cmd == NULL)) {
  102. DRM_ERROR("Fifo reserve failed.\n");
  103. return -ENOMEM;
  104. }
  105. memset(cmd, 0, fifo_size);
  106. cmd->header.cmdType = SVGA_CMD_DEFINE_SCREEN;
  107. cmd->obj.structSize = sizeof(SVGAScreenObject);
  108. cmd->obj.id = sou->base.unit;
  109. cmd->obj.flags = SVGA_SCREEN_HAS_ROOT |
  110. (sou->base.unit == 0 ? SVGA_SCREEN_IS_PRIMARY : 0);
  111. cmd->obj.size.width = mode->hdisplay;
  112. cmd->obj.size.height = mode->vdisplay;
  113. if (sou->base.is_implicit) {
  114. cmd->obj.root.x = x;
  115. cmd->obj.root.y = y;
  116. } else {
  117. cmd->obj.root.x = sou->base.gui_x;
  118. cmd->obj.root.y = sou->base.gui_y;
  119. }
  120. /* Ok to assume that buffer is pinned in vram */
  121. vmw_bo_get_guest_ptr(&sou->buffer->base, &cmd->obj.backingStore.ptr);
  122. cmd->obj.backingStore.pitch = mode->hdisplay * 4;
  123. vmw_fifo_commit(dev_priv, fifo_size);
  124. sou->defined = true;
  125. return 0;
  126. }
  127. /**
  128. * Send the fifo command to destroy a screen.
  129. */
  130. static int vmw_sou_fifo_destroy(struct vmw_private *dev_priv,
  131. struct vmw_screen_object_unit *sou)
  132. {
  133. size_t fifo_size;
  134. int ret;
  135. struct {
  136. struct {
  137. uint32_t cmdType;
  138. } header;
  139. SVGAFifoCmdDestroyScreen body;
  140. } *cmd;
  141. /* no need to do anything */
  142. if (unlikely(!sou->defined))
  143. return 0;
  144. fifo_size = sizeof(*cmd);
  145. cmd = vmw_fifo_reserve(dev_priv, fifo_size);
  146. /* the hardware has hung, nothing we can do about it here */
  147. if (unlikely(cmd == NULL)) {
  148. DRM_ERROR("Fifo reserve failed.\n");
  149. return -ENOMEM;
  150. }
  151. memset(cmd, 0, fifo_size);
  152. cmd->header.cmdType = SVGA_CMD_DESTROY_SCREEN;
  153. cmd->body.screenId = sou->base.unit;
  154. vmw_fifo_commit(dev_priv, fifo_size);
  155. /* Force sync */
  156. ret = vmw_fallback_wait(dev_priv, false, true, 0, false, 3*HZ);
  157. if (unlikely(ret != 0))
  158. DRM_ERROR("Failed to sync with HW");
  159. else
  160. sou->defined = false;
  161. return ret;
  162. }
  163. /**
  164. * Free the backing store.
  165. */
  166. static void vmw_sou_backing_free(struct vmw_private *dev_priv,
  167. struct vmw_screen_object_unit *sou)
  168. {
  169. struct ttm_buffer_object *bo;
  170. if (unlikely(sou->buffer == NULL))
  171. return;
  172. bo = &sou->buffer->base;
  173. ttm_bo_unref(&bo);
  174. sou->buffer = NULL;
  175. sou->buffer_size = 0;
  176. }
  177. /**
  178. * Allocate the backing store for the buffer.
  179. */
  180. static int vmw_sou_backing_alloc(struct vmw_private *dev_priv,
  181. struct vmw_screen_object_unit *sou,
  182. unsigned long size)
  183. {
  184. int ret;
  185. if (sou->buffer_size == size)
  186. return 0;
  187. if (sou->buffer)
  188. vmw_sou_backing_free(dev_priv, sou);
  189. sou->buffer = kzalloc(sizeof(*sou->buffer), GFP_KERNEL);
  190. if (unlikely(sou->buffer == NULL))
  191. return -ENOMEM;
  192. /* After we have alloced the backing store might not be able to
  193. * resume the overlays, this is preferred to failing to alloc.
  194. */
  195. vmw_overlay_pause_all(dev_priv);
  196. ret = vmw_dmabuf_init(dev_priv, sou->buffer, size,
  197. &vmw_vram_ne_placement,
  198. false, &vmw_dmabuf_bo_free);
  199. vmw_overlay_resume_all(dev_priv);
  200. if (unlikely(ret != 0))
  201. sou->buffer = NULL; /* vmw_dmabuf_init frees on error */
  202. else
  203. sou->buffer_size = size;
  204. return ret;
  205. }
  206. static int vmw_sou_crtc_set_config(struct drm_mode_set *set)
  207. {
  208. struct vmw_private *dev_priv;
  209. struct vmw_screen_object_unit *sou;
  210. struct drm_connector *connector;
  211. struct drm_display_mode *mode;
  212. struct drm_encoder *encoder;
  213. struct vmw_framebuffer *vfb;
  214. struct drm_framebuffer *fb;
  215. struct drm_crtc *crtc;
  216. int ret = 0;
  217. if (!set)
  218. return -EINVAL;
  219. if (!set->crtc)
  220. return -EINVAL;
  221. /* get the sou */
  222. crtc = set->crtc;
  223. sou = vmw_crtc_to_sou(crtc);
  224. vfb = set->fb ? vmw_framebuffer_to_vfb(set->fb) : NULL;
  225. dev_priv = vmw_priv(crtc->dev);
  226. if (set->num_connectors > 1) {
  227. DRM_ERROR("to many connectors\n");
  228. return -EINVAL;
  229. }
  230. if (set->num_connectors == 1 &&
  231. set->connectors[0] != &sou->base.connector) {
  232. DRM_ERROR("connector doesn't match %p %p\n",
  233. set->connectors[0], &sou->base.connector);
  234. return -EINVAL;
  235. }
  236. /* sou only supports one fb active at the time */
  237. if (sou->base.is_implicit &&
  238. dev_priv->sou_priv->implicit_fb && vfb &&
  239. !(dev_priv->sou_priv->num_implicit == 1 &&
  240. sou->active_implicit) &&
  241. dev_priv->sou_priv->implicit_fb != vfb) {
  242. DRM_ERROR("Multiple framebuffers not supported\n");
  243. return -EINVAL;
  244. }
  245. /* since they always map one to one these are safe */
  246. connector = &sou->base.connector;
  247. encoder = &sou->base.encoder;
  248. /* should we turn the crtc off */
  249. if (set->num_connectors == 0 || !set->mode || !set->fb) {
  250. ret = vmw_sou_fifo_destroy(dev_priv, sou);
  251. /* the hardware has hung don't do anything more */
  252. if (unlikely(ret != 0))
  253. return ret;
  254. connector->encoder = NULL;
  255. encoder->crtc = NULL;
  256. crtc->fb = NULL;
  257. crtc->x = 0;
  258. crtc->y = 0;
  259. vmw_sou_del_active(dev_priv, sou);
  260. vmw_sou_backing_free(dev_priv, sou);
  261. return 0;
  262. }
  263. /* we now know we want to set a mode */
  264. mode = set->mode;
  265. fb = set->fb;
  266. if (set->x + mode->hdisplay > fb->width ||
  267. set->y + mode->vdisplay > fb->height) {
  268. DRM_ERROR("set outside of framebuffer\n");
  269. return -EINVAL;
  270. }
  271. vmw_fb_off(dev_priv);
  272. if (mode->hdisplay != crtc->mode.hdisplay ||
  273. mode->vdisplay != crtc->mode.vdisplay) {
  274. /* no need to check if depth is different, because backing
  275. * store depth is forced to 4 by the device.
  276. */
  277. ret = vmw_sou_fifo_destroy(dev_priv, sou);
  278. /* the hardware has hung don't do anything more */
  279. if (unlikely(ret != 0))
  280. return ret;
  281. vmw_sou_backing_free(dev_priv, sou);
  282. }
  283. if (!sou->buffer) {
  284. /* forced to depth 4 by the device */
  285. size_t size = mode->hdisplay * mode->vdisplay * 4;
  286. ret = vmw_sou_backing_alloc(dev_priv, sou, size);
  287. if (unlikely(ret != 0))
  288. return ret;
  289. }
  290. ret = vmw_sou_fifo_create(dev_priv, sou, set->x, set->y, mode);
  291. if (unlikely(ret != 0)) {
  292. /*
  293. * We are in a bit of a situation here, the hardware has
  294. * hung and we may or may not have a buffer hanging of
  295. * the screen object, best thing to do is not do anything
  296. * if we where defined, if not just turn the crtc of.
  297. * Not what userspace wants but it needs to htfu.
  298. */
  299. if (sou->defined)
  300. return ret;
  301. connector->encoder = NULL;
  302. encoder->crtc = NULL;
  303. crtc->fb = NULL;
  304. crtc->x = 0;
  305. crtc->y = 0;
  306. return ret;
  307. }
  308. vmw_sou_add_active(dev_priv, sou, vfb);
  309. connector->encoder = encoder;
  310. encoder->crtc = crtc;
  311. crtc->mode = *mode;
  312. crtc->fb = fb;
  313. crtc->x = set->x;
  314. crtc->y = set->y;
  315. return 0;
  316. }
  317. static struct drm_crtc_funcs vmw_screen_object_crtc_funcs = {
  318. .save = vmw_du_crtc_save,
  319. .restore = vmw_du_crtc_restore,
  320. .cursor_set = vmw_du_crtc_cursor_set,
  321. .cursor_move = vmw_du_crtc_cursor_move,
  322. .gamma_set = vmw_du_crtc_gamma_set,
  323. .destroy = vmw_sou_crtc_destroy,
  324. .set_config = vmw_sou_crtc_set_config,
  325. };
  326. /*
  327. * Screen Object Display Unit encoder functions
  328. */
  329. static void vmw_sou_encoder_destroy(struct drm_encoder *encoder)
  330. {
  331. vmw_sou_destroy(vmw_encoder_to_sou(encoder));
  332. }
  333. static struct drm_encoder_funcs vmw_screen_object_encoder_funcs = {
  334. .destroy = vmw_sou_encoder_destroy,
  335. };
  336. /*
  337. * Screen Object Display Unit connector functions
  338. */
  339. static void vmw_sou_connector_destroy(struct drm_connector *connector)
  340. {
  341. vmw_sou_destroy(vmw_connector_to_sou(connector));
  342. }
  343. static struct drm_connector_funcs vmw_legacy_connector_funcs = {
  344. .dpms = vmw_du_connector_dpms,
  345. .save = vmw_du_connector_save,
  346. .restore = vmw_du_connector_restore,
  347. .detect = vmw_du_connector_detect,
  348. .fill_modes = vmw_du_connector_fill_modes,
  349. .set_property = vmw_du_connector_set_property,
  350. .destroy = vmw_sou_connector_destroy,
  351. };
  352. static int vmw_sou_init(struct vmw_private *dev_priv, unsigned unit)
  353. {
  354. struct vmw_screen_object_unit *sou;
  355. struct drm_device *dev = dev_priv->dev;
  356. struct drm_connector *connector;
  357. struct drm_encoder *encoder;
  358. struct drm_crtc *crtc;
  359. sou = kzalloc(sizeof(*sou), GFP_KERNEL);
  360. if (!sou)
  361. return -ENOMEM;
  362. sou->base.unit = unit;
  363. crtc = &sou->base.crtc;
  364. encoder = &sou->base.encoder;
  365. connector = &sou->base.connector;
  366. sou->active_implicit = false;
  367. sou->base.pref_active = (unit == 0);
  368. sou->base.pref_width = 800;
  369. sou->base.pref_height = 600;
  370. sou->base.pref_mode = NULL;
  371. sou->base.is_implicit = true;
  372. drm_connector_init(dev, connector, &vmw_legacy_connector_funcs,
  373. DRM_MODE_CONNECTOR_VIRTUAL);
  374. connector->status = vmw_du_connector_detect(connector, true);
  375. drm_encoder_init(dev, encoder, &vmw_screen_object_encoder_funcs,
  376. DRM_MODE_ENCODER_VIRTUAL);
  377. drm_mode_connector_attach_encoder(connector, encoder);
  378. encoder->possible_crtcs = (1 << unit);
  379. encoder->possible_clones = 0;
  380. drm_crtc_init(dev, crtc, &vmw_screen_object_crtc_funcs);
  381. drm_mode_crtc_set_gamma_size(crtc, 256);
  382. drm_connector_attach_property(connector,
  383. dev->mode_config.dirty_info_property,
  384. 1);
  385. return 0;
  386. }
  387. int vmw_kms_init_screen_object_display(struct vmw_private *dev_priv)
  388. {
  389. struct drm_device *dev = dev_priv->dev;
  390. int i, ret;
  391. if (dev_priv->sou_priv) {
  392. DRM_INFO("sou system already on\n");
  393. return -EINVAL;
  394. }
  395. if (!(dev_priv->fifo.capabilities & SVGA_FIFO_CAP_SCREEN_OBJECT_2)) {
  396. DRM_INFO("Not using screen objects,"
  397. " missing cap SCREEN_OBJECT_2\n");
  398. return -ENOSYS;
  399. }
  400. ret = -ENOMEM;
  401. dev_priv->sou_priv = kmalloc(sizeof(*dev_priv->sou_priv), GFP_KERNEL);
  402. if (unlikely(!dev_priv->sou_priv))
  403. goto err_no_mem;
  404. dev_priv->sou_priv->num_implicit = 0;
  405. dev_priv->sou_priv->implicit_fb = NULL;
  406. ret = drm_vblank_init(dev, VMWGFX_NUM_DISPLAY_UNITS);
  407. if (unlikely(ret != 0))
  408. goto err_free;
  409. ret = drm_mode_create_dirty_info_property(dev);
  410. if (unlikely(ret != 0))
  411. goto err_vblank_cleanup;
  412. for (i = 0; i < VMWGFX_NUM_DISPLAY_UNITS; ++i)
  413. vmw_sou_init(dev_priv, i);
  414. DRM_INFO("Screen objects system initialized\n");
  415. return 0;
  416. err_vblank_cleanup:
  417. drm_vblank_cleanup(dev);
  418. err_free:
  419. kfree(dev_priv->sou_priv);
  420. dev_priv->sou_priv = NULL;
  421. err_no_mem:
  422. return ret;
  423. }
  424. int vmw_kms_close_screen_object_display(struct vmw_private *dev_priv)
  425. {
  426. struct drm_device *dev = dev_priv->dev;
  427. if (!dev_priv->sou_priv)
  428. return -ENOSYS;
  429. drm_vblank_cleanup(dev);
  430. kfree(dev_priv->sou_priv);
  431. return 0;
  432. }