amdgpu_display.c 27 KB

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  1. /*
  2. * Copyright 2007-8 Advanced Micro Devices, Inc.
  3. * Copyright 2008 Red Hat Inc.
  4. *
  5. * Permission is hereby granted, free of charge, to any person obtaining a
  6. * copy of this software and associated documentation files (the "Software"),
  7. * to deal in the Software without restriction, including without limitation
  8. * the rights to use, copy, modify, merge, publish, distribute, sublicense,
  9. * and/or sell copies of the Software, and to permit persons to whom the
  10. * Software is furnished to do so, subject to the following conditions:
  11. *
  12. * The above copyright notice and this permission notice shall be included in
  13. * all copies or substantial portions of the Software.
  14. *
  15. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  16. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  17. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
  18. * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  19. * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  20. * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  21. * OTHER DEALINGS IN THE SOFTWARE.
  22. *
  23. * Authors: Dave Airlie
  24. * Alex Deucher
  25. */
  26. #include <drm/drmP.h>
  27. #include <drm/amdgpu_drm.h>
  28. #include "amdgpu.h"
  29. #include "amdgpu_i2c.h"
  30. #include "atom.h"
  31. #include "amdgpu_connectors.h"
  32. #include <asm/div64.h>
  33. #include <linux/pm_runtime.h>
  34. #include <drm/drm_crtc_helper.h>
  35. #include <drm/drm_edid.h>
  36. static void amdgpu_flip_callback(struct fence *f, struct fence_cb *cb)
  37. {
  38. struct amdgpu_flip_work *work =
  39. container_of(cb, struct amdgpu_flip_work, cb);
  40. fence_put(f);
  41. schedule_work(&work->flip_work);
  42. }
  43. static bool amdgpu_flip_handle_fence(struct amdgpu_flip_work *work,
  44. struct fence **f)
  45. {
  46. struct fence *fence= *f;
  47. if (fence == NULL)
  48. return false;
  49. *f = NULL;
  50. if (!fence_add_callback(fence, &work->cb, amdgpu_flip_callback))
  51. return true;
  52. fence_put(fence);
  53. return false;
  54. }
  55. static void amdgpu_flip_work_func(struct work_struct *__work)
  56. {
  57. struct amdgpu_flip_work *work =
  58. container_of(__work, struct amdgpu_flip_work, flip_work);
  59. struct amdgpu_device *adev = work->adev;
  60. struct amdgpu_crtc *amdgpuCrtc = adev->mode_info.crtcs[work->crtc_id];
  61. struct drm_crtc *crtc = &amdgpuCrtc->base;
  62. unsigned long flags;
  63. unsigned i, repcnt = 4;
  64. int vpos, hpos, stat, min_udelay = 0;
  65. struct drm_vblank_crtc *vblank = &crtc->dev->vblank[work->crtc_id];
  66. if (amdgpu_flip_handle_fence(work, &work->excl))
  67. return;
  68. for (i = 0; i < work->shared_count; ++i)
  69. if (amdgpu_flip_handle_fence(work, &work->shared[i]))
  70. return;
  71. /* We borrow the event spin lock for protecting flip_status */
  72. spin_lock_irqsave(&crtc->dev->event_lock, flags);
  73. /* If this happens to execute within the "virtually extended" vblank
  74. * interval before the start of the real vblank interval then it needs
  75. * to delay programming the mmio flip until the real vblank is entered.
  76. * This prevents completing a flip too early due to the way we fudge
  77. * our vblank counter and vblank timestamps in order to work around the
  78. * problem that the hw fires vblank interrupts before actual start of
  79. * vblank (when line buffer refilling is done for a frame). It
  80. * complements the fudging logic in amdgpu_get_crtc_scanoutpos() for
  81. * timestamping and amdgpu_get_vblank_counter_kms() for vblank counts.
  82. *
  83. * In practice this won't execute very often unless on very fast
  84. * machines because the time window for this to happen is very small.
  85. */
  86. while (amdgpuCrtc->enabled && --repcnt) {
  87. /* GET_DISTANCE_TO_VBLANKSTART returns distance to real vblank
  88. * start in hpos, and to the "fudged earlier" vblank start in
  89. * vpos.
  90. */
  91. stat = amdgpu_get_crtc_scanoutpos(adev->ddev, work->crtc_id,
  92. GET_DISTANCE_TO_VBLANKSTART,
  93. &vpos, &hpos, NULL, NULL,
  94. &crtc->hwmode);
  95. if ((stat & (DRM_SCANOUTPOS_VALID | DRM_SCANOUTPOS_ACCURATE)) !=
  96. (DRM_SCANOUTPOS_VALID | DRM_SCANOUTPOS_ACCURATE) ||
  97. !(vpos >= 0 && hpos <= 0))
  98. break;
  99. /* Sleep at least until estimated real start of hw vblank */
  100. min_udelay = (-hpos + 1) * max(vblank->linedur_ns / 1000, 5);
  101. if (min_udelay > vblank->framedur_ns / 2000) {
  102. /* Don't wait ridiculously long - something is wrong */
  103. repcnt = 0;
  104. break;
  105. }
  106. spin_unlock_irqrestore(&crtc->dev->event_lock, flags);
  107. usleep_range(min_udelay, 2 * min_udelay);
  108. spin_lock_irqsave(&crtc->dev->event_lock, flags);
  109. }
  110. if (!repcnt)
  111. DRM_DEBUG_DRIVER("Delay problem on crtc %d: min_udelay %d, "
  112. "framedur %d, linedur %d, stat %d, vpos %d, "
  113. "hpos %d\n", work->crtc_id, min_udelay,
  114. vblank->framedur_ns / 1000,
  115. vblank->linedur_ns / 1000, stat, vpos, hpos);
  116. /* Do the flip (mmio) */
  117. adev->mode_info.funcs->page_flip(adev, work->crtc_id, work->base, work->async);
  118. /* Set the flip status */
  119. amdgpuCrtc->pflip_status = AMDGPU_FLIP_SUBMITTED;
  120. spin_unlock_irqrestore(&crtc->dev->event_lock, flags);
  121. DRM_DEBUG_DRIVER("crtc:%d[%p], pflip_stat:AMDGPU_FLIP_SUBMITTED, work: %p,\n",
  122. amdgpuCrtc->crtc_id, amdgpuCrtc, work);
  123. }
  124. /*
  125. * Handle unpin events outside the interrupt handler proper.
  126. */
  127. static void amdgpu_unpin_work_func(struct work_struct *__work)
  128. {
  129. struct amdgpu_flip_work *work =
  130. container_of(__work, struct amdgpu_flip_work, unpin_work);
  131. int r;
  132. /* unpin of the old buffer */
  133. r = amdgpu_bo_reserve(work->old_rbo, false);
  134. if (likely(r == 0)) {
  135. r = amdgpu_bo_unpin(work->old_rbo);
  136. if (unlikely(r != 0)) {
  137. DRM_ERROR("failed to unpin buffer after flip\n");
  138. }
  139. amdgpu_bo_unreserve(work->old_rbo);
  140. } else
  141. DRM_ERROR("failed to reserve buffer after flip\n");
  142. amdgpu_bo_unref(&work->old_rbo);
  143. kfree(work->shared);
  144. kfree(work);
  145. }
  146. int amdgpu_crtc_page_flip(struct drm_crtc *crtc,
  147. struct drm_framebuffer *fb,
  148. struct drm_pending_vblank_event *event,
  149. uint32_t page_flip_flags)
  150. {
  151. struct drm_device *dev = crtc->dev;
  152. struct amdgpu_device *adev = dev->dev_private;
  153. struct amdgpu_crtc *amdgpu_crtc = to_amdgpu_crtc(crtc);
  154. struct amdgpu_framebuffer *old_amdgpu_fb;
  155. struct amdgpu_framebuffer *new_amdgpu_fb;
  156. struct drm_gem_object *obj;
  157. struct amdgpu_flip_work *work;
  158. struct amdgpu_bo *new_rbo;
  159. unsigned long flags;
  160. u64 tiling_flags;
  161. u64 base;
  162. int i, r;
  163. work = kzalloc(sizeof *work, GFP_KERNEL);
  164. if (work == NULL)
  165. return -ENOMEM;
  166. INIT_WORK(&work->flip_work, amdgpu_flip_work_func);
  167. INIT_WORK(&work->unpin_work, amdgpu_unpin_work_func);
  168. work->event = event;
  169. work->adev = adev;
  170. work->crtc_id = amdgpu_crtc->crtc_id;
  171. work->async = (page_flip_flags & DRM_MODE_PAGE_FLIP_ASYNC) != 0;
  172. /* schedule unpin of the old buffer */
  173. old_amdgpu_fb = to_amdgpu_framebuffer(crtc->primary->fb);
  174. obj = old_amdgpu_fb->obj;
  175. /* take a reference to the old object */
  176. work->old_rbo = gem_to_amdgpu_bo(obj);
  177. amdgpu_bo_ref(work->old_rbo);
  178. new_amdgpu_fb = to_amdgpu_framebuffer(fb);
  179. obj = new_amdgpu_fb->obj;
  180. new_rbo = gem_to_amdgpu_bo(obj);
  181. /* pin the new buffer */
  182. r = amdgpu_bo_reserve(new_rbo, false);
  183. if (unlikely(r != 0)) {
  184. DRM_ERROR("failed to reserve new rbo buffer before flip\n");
  185. goto cleanup;
  186. }
  187. r = amdgpu_bo_pin_restricted(new_rbo, AMDGPU_GEM_DOMAIN_VRAM, 0, 0, &base);
  188. if (unlikely(r != 0)) {
  189. r = -EINVAL;
  190. DRM_ERROR("failed to pin new rbo buffer before flip\n");
  191. goto unreserve;
  192. }
  193. r = reservation_object_get_fences_rcu(new_rbo->tbo.resv, &work->excl,
  194. &work->shared_count,
  195. &work->shared);
  196. if (unlikely(r != 0)) {
  197. DRM_ERROR("failed to get fences for buffer\n");
  198. goto unpin;
  199. }
  200. amdgpu_bo_get_tiling_flags(new_rbo, &tiling_flags);
  201. amdgpu_bo_unreserve(new_rbo);
  202. work->base = base;
  203. r = drm_crtc_vblank_get(crtc);
  204. if (r) {
  205. DRM_ERROR("failed to get vblank before flip\n");
  206. goto pflip_cleanup;
  207. }
  208. /* we borrow the event spin lock for protecting flip_wrok */
  209. spin_lock_irqsave(&crtc->dev->event_lock, flags);
  210. if (amdgpu_crtc->pflip_status != AMDGPU_FLIP_NONE) {
  211. DRM_DEBUG_DRIVER("flip queue: crtc already busy\n");
  212. spin_unlock_irqrestore(&crtc->dev->event_lock, flags);
  213. r = -EBUSY;
  214. goto vblank_cleanup;
  215. }
  216. amdgpu_crtc->pflip_status = AMDGPU_FLIP_PENDING;
  217. amdgpu_crtc->pflip_works = work;
  218. DRM_DEBUG_DRIVER("crtc:%d[%p], pflip_stat:AMDGPU_FLIP_PENDING, work: %p,\n",
  219. amdgpu_crtc->crtc_id, amdgpu_crtc, work);
  220. /* update crtc fb */
  221. crtc->primary->fb = fb;
  222. spin_unlock_irqrestore(&crtc->dev->event_lock, flags);
  223. amdgpu_flip_work_func(&work->flip_work);
  224. return 0;
  225. vblank_cleanup:
  226. drm_crtc_vblank_put(crtc);
  227. pflip_cleanup:
  228. if (unlikely(amdgpu_bo_reserve(new_rbo, false) != 0)) {
  229. DRM_ERROR("failed to reserve new rbo in error path\n");
  230. goto cleanup;
  231. }
  232. unpin:
  233. if (unlikely(amdgpu_bo_unpin(new_rbo) != 0)) {
  234. DRM_ERROR("failed to unpin new rbo in error path\n");
  235. }
  236. unreserve:
  237. amdgpu_bo_unreserve(new_rbo);
  238. cleanup:
  239. amdgpu_bo_unref(&work->old_rbo);
  240. fence_put(work->excl);
  241. for (i = 0; i < work->shared_count; ++i)
  242. fence_put(work->shared[i]);
  243. kfree(work->shared);
  244. kfree(work);
  245. return r;
  246. }
  247. int amdgpu_crtc_set_config(struct drm_mode_set *set)
  248. {
  249. struct drm_device *dev;
  250. struct amdgpu_device *adev;
  251. struct drm_crtc *crtc;
  252. bool active = false;
  253. int ret;
  254. if (!set || !set->crtc)
  255. return -EINVAL;
  256. dev = set->crtc->dev;
  257. ret = pm_runtime_get_sync(dev->dev);
  258. if (ret < 0)
  259. return ret;
  260. ret = drm_crtc_helper_set_config(set);
  261. list_for_each_entry(crtc, &dev->mode_config.crtc_list, head)
  262. if (crtc->enabled)
  263. active = true;
  264. pm_runtime_mark_last_busy(dev->dev);
  265. adev = dev->dev_private;
  266. /* if we have active crtcs and we don't have a power ref,
  267. take the current one */
  268. if (active && !adev->have_disp_power_ref) {
  269. adev->have_disp_power_ref = true;
  270. return ret;
  271. }
  272. /* if we have no active crtcs, then drop the power ref
  273. we got before */
  274. if (!active && adev->have_disp_power_ref) {
  275. pm_runtime_put_autosuspend(dev->dev);
  276. adev->have_disp_power_ref = false;
  277. }
  278. /* drop the power reference we got coming in here */
  279. pm_runtime_put_autosuspend(dev->dev);
  280. return ret;
  281. }
  282. static const char *encoder_names[41] = {
  283. "NONE",
  284. "INTERNAL_LVDS",
  285. "INTERNAL_TMDS1",
  286. "INTERNAL_TMDS2",
  287. "INTERNAL_DAC1",
  288. "INTERNAL_DAC2",
  289. "INTERNAL_SDVOA",
  290. "INTERNAL_SDVOB",
  291. "SI170B",
  292. "CH7303",
  293. "CH7301",
  294. "INTERNAL_DVO1",
  295. "EXTERNAL_SDVOA",
  296. "EXTERNAL_SDVOB",
  297. "TITFP513",
  298. "INTERNAL_LVTM1",
  299. "VT1623",
  300. "HDMI_SI1930",
  301. "HDMI_INTERNAL",
  302. "INTERNAL_KLDSCP_TMDS1",
  303. "INTERNAL_KLDSCP_DVO1",
  304. "INTERNAL_KLDSCP_DAC1",
  305. "INTERNAL_KLDSCP_DAC2",
  306. "SI178",
  307. "MVPU_FPGA",
  308. "INTERNAL_DDI",
  309. "VT1625",
  310. "HDMI_SI1932",
  311. "DP_AN9801",
  312. "DP_DP501",
  313. "INTERNAL_UNIPHY",
  314. "INTERNAL_KLDSCP_LVTMA",
  315. "INTERNAL_UNIPHY1",
  316. "INTERNAL_UNIPHY2",
  317. "NUTMEG",
  318. "TRAVIS",
  319. "INTERNAL_VCE",
  320. "INTERNAL_UNIPHY3",
  321. "HDMI_ANX9805",
  322. "INTERNAL_AMCLK",
  323. "VIRTUAL",
  324. };
  325. static const char *hpd_names[6] = {
  326. "HPD1",
  327. "HPD2",
  328. "HPD3",
  329. "HPD4",
  330. "HPD5",
  331. "HPD6",
  332. };
  333. void amdgpu_print_display_setup(struct drm_device *dev)
  334. {
  335. struct drm_connector *connector;
  336. struct amdgpu_connector *amdgpu_connector;
  337. struct drm_encoder *encoder;
  338. struct amdgpu_encoder *amdgpu_encoder;
  339. uint32_t devices;
  340. int i = 0;
  341. DRM_INFO("AMDGPU Display Connectors\n");
  342. list_for_each_entry(connector, &dev->mode_config.connector_list, head) {
  343. amdgpu_connector = to_amdgpu_connector(connector);
  344. DRM_INFO("Connector %d:\n", i);
  345. DRM_INFO(" %s\n", connector->name);
  346. if (amdgpu_connector->hpd.hpd != AMDGPU_HPD_NONE)
  347. DRM_INFO(" %s\n", hpd_names[amdgpu_connector->hpd.hpd]);
  348. if (amdgpu_connector->ddc_bus) {
  349. DRM_INFO(" DDC: 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x 0x%x\n",
  350. amdgpu_connector->ddc_bus->rec.mask_clk_reg,
  351. amdgpu_connector->ddc_bus->rec.mask_data_reg,
  352. amdgpu_connector->ddc_bus->rec.a_clk_reg,
  353. amdgpu_connector->ddc_bus->rec.a_data_reg,
  354. amdgpu_connector->ddc_bus->rec.en_clk_reg,
  355. amdgpu_connector->ddc_bus->rec.en_data_reg,
  356. amdgpu_connector->ddc_bus->rec.y_clk_reg,
  357. amdgpu_connector->ddc_bus->rec.y_data_reg);
  358. if (amdgpu_connector->router.ddc_valid)
  359. DRM_INFO(" DDC Router 0x%x/0x%x\n",
  360. amdgpu_connector->router.ddc_mux_control_pin,
  361. amdgpu_connector->router.ddc_mux_state);
  362. if (amdgpu_connector->router.cd_valid)
  363. DRM_INFO(" Clock/Data Router 0x%x/0x%x\n",
  364. amdgpu_connector->router.cd_mux_control_pin,
  365. amdgpu_connector->router.cd_mux_state);
  366. } else {
  367. if (connector->connector_type == DRM_MODE_CONNECTOR_VGA ||
  368. connector->connector_type == DRM_MODE_CONNECTOR_DVII ||
  369. connector->connector_type == DRM_MODE_CONNECTOR_DVID ||
  370. connector->connector_type == DRM_MODE_CONNECTOR_DVIA ||
  371. connector->connector_type == DRM_MODE_CONNECTOR_HDMIA ||
  372. connector->connector_type == DRM_MODE_CONNECTOR_HDMIB)
  373. DRM_INFO(" DDC: no ddc bus - possible BIOS bug - please report to xorg-driver-ati@lists.x.org\n");
  374. }
  375. DRM_INFO(" Encoders:\n");
  376. list_for_each_entry(encoder, &dev->mode_config.encoder_list, head) {
  377. amdgpu_encoder = to_amdgpu_encoder(encoder);
  378. devices = amdgpu_encoder->devices & amdgpu_connector->devices;
  379. if (devices) {
  380. if (devices & ATOM_DEVICE_CRT1_SUPPORT)
  381. DRM_INFO(" CRT1: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  382. if (devices & ATOM_DEVICE_CRT2_SUPPORT)
  383. DRM_INFO(" CRT2: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  384. if (devices & ATOM_DEVICE_LCD1_SUPPORT)
  385. DRM_INFO(" LCD1: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  386. if (devices & ATOM_DEVICE_DFP1_SUPPORT)
  387. DRM_INFO(" DFP1: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  388. if (devices & ATOM_DEVICE_DFP2_SUPPORT)
  389. DRM_INFO(" DFP2: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  390. if (devices & ATOM_DEVICE_DFP3_SUPPORT)
  391. DRM_INFO(" DFP3: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  392. if (devices & ATOM_DEVICE_DFP4_SUPPORT)
  393. DRM_INFO(" DFP4: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  394. if (devices & ATOM_DEVICE_DFP5_SUPPORT)
  395. DRM_INFO(" DFP5: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  396. if (devices & ATOM_DEVICE_DFP6_SUPPORT)
  397. DRM_INFO(" DFP6: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  398. if (devices & ATOM_DEVICE_TV1_SUPPORT)
  399. DRM_INFO(" TV1: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  400. if (devices & ATOM_DEVICE_CV_SUPPORT)
  401. DRM_INFO(" CV: %s\n", encoder_names[amdgpu_encoder->encoder_id]);
  402. }
  403. }
  404. i++;
  405. }
  406. }
  407. /**
  408. * amdgpu_ddc_probe
  409. *
  410. */
  411. bool amdgpu_ddc_probe(struct amdgpu_connector *amdgpu_connector,
  412. bool use_aux)
  413. {
  414. u8 out = 0x0;
  415. u8 buf[8];
  416. int ret;
  417. struct i2c_msg msgs[] = {
  418. {
  419. .addr = DDC_ADDR,
  420. .flags = 0,
  421. .len = 1,
  422. .buf = &out,
  423. },
  424. {
  425. .addr = DDC_ADDR,
  426. .flags = I2C_M_RD,
  427. .len = 8,
  428. .buf = buf,
  429. }
  430. };
  431. /* on hw with routers, select right port */
  432. if (amdgpu_connector->router.ddc_valid)
  433. amdgpu_i2c_router_select_ddc_port(amdgpu_connector);
  434. if (use_aux) {
  435. ret = i2c_transfer(&amdgpu_connector->ddc_bus->aux.ddc, msgs, 2);
  436. } else {
  437. ret = i2c_transfer(&amdgpu_connector->ddc_bus->adapter, msgs, 2);
  438. }
  439. if (ret != 2)
  440. /* Couldn't find an accessible DDC on this connector */
  441. return false;
  442. /* Probe also for valid EDID header
  443. * EDID header starts with:
  444. * 0x00,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0x00.
  445. * Only the first 6 bytes must be valid as
  446. * drm_edid_block_valid() can fix the last 2 bytes */
  447. if (drm_edid_header_is_valid(buf) < 6) {
  448. /* Couldn't find an accessible EDID on this
  449. * connector */
  450. return false;
  451. }
  452. return true;
  453. }
  454. static void amdgpu_user_framebuffer_destroy(struct drm_framebuffer *fb)
  455. {
  456. struct amdgpu_framebuffer *amdgpu_fb = to_amdgpu_framebuffer(fb);
  457. drm_gem_object_unreference_unlocked(amdgpu_fb->obj);
  458. drm_framebuffer_cleanup(fb);
  459. kfree(amdgpu_fb);
  460. }
  461. static int amdgpu_user_framebuffer_create_handle(struct drm_framebuffer *fb,
  462. struct drm_file *file_priv,
  463. unsigned int *handle)
  464. {
  465. struct amdgpu_framebuffer *amdgpu_fb = to_amdgpu_framebuffer(fb);
  466. return drm_gem_handle_create(file_priv, amdgpu_fb->obj, handle);
  467. }
  468. static const struct drm_framebuffer_funcs amdgpu_fb_funcs = {
  469. .destroy = amdgpu_user_framebuffer_destroy,
  470. .create_handle = amdgpu_user_framebuffer_create_handle,
  471. };
  472. int
  473. amdgpu_framebuffer_init(struct drm_device *dev,
  474. struct amdgpu_framebuffer *rfb,
  475. const struct drm_mode_fb_cmd2 *mode_cmd,
  476. struct drm_gem_object *obj)
  477. {
  478. int ret;
  479. rfb->obj = obj;
  480. drm_helper_mode_fill_fb_struct(&rfb->base, mode_cmd);
  481. ret = drm_framebuffer_init(dev, &rfb->base, &amdgpu_fb_funcs);
  482. if (ret) {
  483. rfb->obj = NULL;
  484. return ret;
  485. }
  486. return 0;
  487. }
  488. static struct drm_framebuffer *
  489. amdgpu_user_framebuffer_create(struct drm_device *dev,
  490. struct drm_file *file_priv,
  491. const struct drm_mode_fb_cmd2 *mode_cmd)
  492. {
  493. struct drm_gem_object *obj;
  494. struct amdgpu_framebuffer *amdgpu_fb;
  495. int ret;
  496. obj = drm_gem_object_lookup(file_priv, mode_cmd->handles[0]);
  497. if (obj == NULL) {
  498. dev_err(&dev->pdev->dev, "No GEM object associated to handle 0x%08X, "
  499. "can't create framebuffer\n", mode_cmd->handles[0]);
  500. return ERR_PTR(-ENOENT);
  501. }
  502. amdgpu_fb = kzalloc(sizeof(*amdgpu_fb), GFP_KERNEL);
  503. if (amdgpu_fb == NULL) {
  504. drm_gem_object_unreference_unlocked(obj);
  505. return ERR_PTR(-ENOMEM);
  506. }
  507. ret = amdgpu_framebuffer_init(dev, amdgpu_fb, mode_cmd, obj);
  508. if (ret) {
  509. kfree(amdgpu_fb);
  510. drm_gem_object_unreference_unlocked(obj);
  511. return ERR_PTR(ret);
  512. }
  513. return &amdgpu_fb->base;
  514. }
  515. static void amdgpu_output_poll_changed(struct drm_device *dev)
  516. {
  517. struct amdgpu_device *adev = dev->dev_private;
  518. amdgpu_fb_output_poll_changed(adev);
  519. }
  520. const struct drm_mode_config_funcs amdgpu_mode_funcs = {
  521. .fb_create = amdgpu_user_framebuffer_create,
  522. .output_poll_changed = amdgpu_output_poll_changed
  523. };
  524. static const struct drm_prop_enum_list amdgpu_underscan_enum_list[] =
  525. { { UNDERSCAN_OFF, "off" },
  526. { UNDERSCAN_ON, "on" },
  527. { UNDERSCAN_AUTO, "auto" },
  528. };
  529. static const struct drm_prop_enum_list amdgpu_audio_enum_list[] =
  530. { { AMDGPU_AUDIO_DISABLE, "off" },
  531. { AMDGPU_AUDIO_ENABLE, "on" },
  532. { AMDGPU_AUDIO_AUTO, "auto" },
  533. };
  534. /* XXX support different dither options? spatial, temporal, both, etc. */
  535. static const struct drm_prop_enum_list amdgpu_dither_enum_list[] =
  536. { { AMDGPU_FMT_DITHER_DISABLE, "off" },
  537. { AMDGPU_FMT_DITHER_ENABLE, "on" },
  538. };
  539. int amdgpu_modeset_create_props(struct amdgpu_device *adev)
  540. {
  541. int sz;
  542. if (adev->is_atom_bios) {
  543. adev->mode_info.coherent_mode_property =
  544. drm_property_create_range(adev->ddev, 0 , "coherent", 0, 1);
  545. if (!adev->mode_info.coherent_mode_property)
  546. return -ENOMEM;
  547. }
  548. adev->mode_info.load_detect_property =
  549. drm_property_create_range(adev->ddev, 0, "load detection", 0, 1);
  550. if (!adev->mode_info.load_detect_property)
  551. return -ENOMEM;
  552. drm_mode_create_scaling_mode_property(adev->ddev);
  553. sz = ARRAY_SIZE(amdgpu_underscan_enum_list);
  554. adev->mode_info.underscan_property =
  555. drm_property_create_enum(adev->ddev, 0,
  556. "underscan",
  557. amdgpu_underscan_enum_list, sz);
  558. adev->mode_info.underscan_hborder_property =
  559. drm_property_create_range(adev->ddev, 0,
  560. "underscan hborder", 0, 128);
  561. if (!adev->mode_info.underscan_hborder_property)
  562. return -ENOMEM;
  563. adev->mode_info.underscan_vborder_property =
  564. drm_property_create_range(adev->ddev, 0,
  565. "underscan vborder", 0, 128);
  566. if (!adev->mode_info.underscan_vborder_property)
  567. return -ENOMEM;
  568. sz = ARRAY_SIZE(amdgpu_audio_enum_list);
  569. adev->mode_info.audio_property =
  570. drm_property_create_enum(adev->ddev, 0,
  571. "audio",
  572. amdgpu_audio_enum_list, sz);
  573. sz = ARRAY_SIZE(amdgpu_dither_enum_list);
  574. adev->mode_info.dither_property =
  575. drm_property_create_enum(adev->ddev, 0,
  576. "dither",
  577. amdgpu_dither_enum_list, sz);
  578. return 0;
  579. }
  580. void amdgpu_update_display_priority(struct amdgpu_device *adev)
  581. {
  582. /* adjustment options for the display watermarks */
  583. if ((amdgpu_disp_priority == 0) || (amdgpu_disp_priority > 2))
  584. adev->mode_info.disp_priority = 0;
  585. else
  586. adev->mode_info.disp_priority = amdgpu_disp_priority;
  587. }
  588. static bool is_hdtv_mode(const struct drm_display_mode *mode)
  589. {
  590. /* try and guess if this is a tv or a monitor */
  591. if ((mode->vdisplay == 480 && mode->hdisplay == 720) || /* 480p */
  592. (mode->vdisplay == 576) || /* 576p */
  593. (mode->vdisplay == 720) || /* 720p */
  594. (mode->vdisplay == 1080)) /* 1080p */
  595. return true;
  596. else
  597. return false;
  598. }
  599. bool amdgpu_crtc_scaling_mode_fixup(struct drm_crtc *crtc,
  600. const struct drm_display_mode *mode,
  601. struct drm_display_mode *adjusted_mode)
  602. {
  603. struct drm_device *dev = crtc->dev;
  604. struct drm_encoder *encoder;
  605. struct amdgpu_crtc *amdgpu_crtc = to_amdgpu_crtc(crtc);
  606. struct amdgpu_encoder *amdgpu_encoder;
  607. struct drm_connector *connector;
  608. struct amdgpu_connector *amdgpu_connector;
  609. u32 src_v = 1, dst_v = 1;
  610. u32 src_h = 1, dst_h = 1;
  611. amdgpu_crtc->h_border = 0;
  612. amdgpu_crtc->v_border = 0;
  613. list_for_each_entry(encoder, &dev->mode_config.encoder_list, head) {
  614. if (encoder->crtc != crtc)
  615. continue;
  616. amdgpu_encoder = to_amdgpu_encoder(encoder);
  617. connector = amdgpu_get_connector_for_encoder(encoder);
  618. amdgpu_connector = to_amdgpu_connector(connector);
  619. /* set scaling */
  620. if (amdgpu_encoder->rmx_type == RMX_OFF)
  621. amdgpu_crtc->rmx_type = RMX_OFF;
  622. else if (mode->hdisplay < amdgpu_encoder->native_mode.hdisplay ||
  623. mode->vdisplay < amdgpu_encoder->native_mode.vdisplay)
  624. amdgpu_crtc->rmx_type = amdgpu_encoder->rmx_type;
  625. else
  626. amdgpu_crtc->rmx_type = RMX_OFF;
  627. /* copy native mode */
  628. memcpy(&amdgpu_crtc->native_mode,
  629. &amdgpu_encoder->native_mode,
  630. sizeof(struct drm_display_mode));
  631. src_v = crtc->mode.vdisplay;
  632. dst_v = amdgpu_crtc->native_mode.vdisplay;
  633. src_h = crtc->mode.hdisplay;
  634. dst_h = amdgpu_crtc->native_mode.hdisplay;
  635. /* fix up for overscan on hdmi */
  636. if ((!(mode->flags & DRM_MODE_FLAG_INTERLACE)) &&
  637. ((amdgpu_encoder->underscan_type == UNDERSCAN_ON) ||
  638. ((amdgpu_encoder->underscan_type == UNDERSCAN_AUTO) &&
  639. drm_detect_hdmi_monitor(amdgpu_connector_edid(connector)) &&
  640. is_hdtv_mode(mode)))) {
  641. if (amdgpu_encoder->underscan_hborder != 0)
  642. amdgpu_crtc->h_border = amdgpu_encoder->underscan_hborder;
  643. else
  644. amdgpu_crtc->h_border = (mode->hdisplay >> 5) + 16;
  645. if (amdgpu_encoder->underscan_vborder != 0)
  646. amdgpu_crtc->v_border = amdgpu_encoder->underscan_vborder;
  647. else
  648. amdgpu_crtc->v_border = (mode->vdisplay >> 5) + 16;
  649. amdgpu_crtc->rmx_type = RMX_FULL;
  650. src_v = crtc->mode.vdisplay;
  651. dst_v = crtc->mode.vdisplay - (amdgpu_crtc->v_border * 2);
  652. src_h = crtc->mode.hdisplay;
  653. dst_h = crtc->mode.hdisplay - (amdgpu_crtc->h_border * 2);
  654. }
  655. }
  656. if (amdgpu_crtc->rmx_type != RMX_OFF) {
  657. fixed20_12 a, b;
  658. a.full = dfixed_const(src_v);
  659. b.full = dfixed_const(dst_v);
  660. amdgpu_crtc->vsc.full = dfixed_div(a, b);
  661. a.full = dfixed_const(src_h);
  662. b.full = dfixed_const(dst_h);
  663. amdgpu_crtc->hsc.full = dfixed_div(a, b);
  664. } else {
  665. amdgpu_crtc->vsc.full = dfixed_const(1);
  666. amdgpu_crtc->hsc.full = dfixed_const(1);
  667. }
  668. return true;
  669. }
  670. /*
  671. * Retrieve current video scanout position of crtc on a given gpu, and
  672. * an optional accurate timestamp of when query happened.
  673. *
  674. * \param dev Device to query.
  675. * \param pipe Crtc to query.
  676. * \param flags Flags from caller (DRM_CALLED_FROM_VBLIRQ or 0).
  677. * For driver internal use only also supports these flags:
  678. *
  679. * USE_REAL_VBLANKSTART to use the real start of vblank instead
  680. * of a fudged earlier start of vblank.
  681. *
  682. * GET_DISTANCE_TO_VBLANKSTART to return distance to the
  683. * fudged earlier start of vblank in *vpos and the distance
  684. * to true start of vblank in *hpos.
  685. *
  686. * \param *vpos Location where vertical scanout position should be stored.
  687. * \param *hpos Location where horizontal scanout position should go.
  688. * \param *stime Target location for timestamp taken immediately before
  689. * scanout position query. Can be NULL to skip timestamp.
  690. * \param *etime Target location for timestamp taken immediately after
  691. * scanout position query. Can be NULL to skip timestamp.
  692. *
  693. * Returns vpos as a positive number while in active scanout area.
  694. * Returns vpos as a negative number inside vblank, counting the number
  695. * of scanlines to go until end of vblank, e.g., -1 means "one scanline
  696. * until start of active scanout / end of vblank."
  697. *
  698. * \return Flags, or'ed together as follows:
  699. *
  700. * DRM_SCANOUTPOS_VALID = Query successful.
  701. * DRM_SCANOUTPOS_INVBL = Inside vblank.
  702. * DRM_SCANOUTPOS_ACCURATE = Returned position is accurate. A lack of
  703. * this flag means that returned position may be offset by a constant but
  704. * unknown small number of scanlines wrt. real scanout position.
  705. *
  706. */
  707. int amdgpu_get_crtc_scanoutpos(struct drm_device *dev, unsigned int pipe,
  708. unsigned int flags, int *vpos, int *hpos,
  709. ktime_t *stime, ktime_t *etime,
  710. const struct drm_display_mode *mode)
  711. {
  712. u32 vbl = 0, position = 0;
  713. int vbl_start, vbl_end, vtotal, ret = 0;
  714. bool in_vbl = true;
  715. struct amdgpu_device *adev = dev->dev_private;
  716. /* preempt_disable_rt() should go right here in PREEMPT_RT patchset. */
  717. /* Get optional system timestamp before query. */
  718. if (stime)
  719. *stime = ktime_get();
  720. if (amdgpu_display_page_flip_get_scanoutpos(adev, pipe, &vbl, &position) == 0)
  721. ret |= DRM_SCANOUTPOS_VALID;
  722. /* Get optional system timestamp after query. */
  723. if (etime)
  724. *etime = ktime_get();
  725. /* preempt_enable_rt() should go right here in PREEMPT_RT patchset. */
  726. /* Decode into vertical and horizontal scanout position. */
  727. *vpos = position & 0x1fff;
  728. *hpos = (position >> 16) & 0x1fff;
  729. /* Valid vblank area boundaries from gpu retrieved? */
  730. if (vbl > 0) {
  731. /* Yes: Decode. */
  732. ret |= DRM_SCANOUTPOS_ACCURATE;
  733. vbl_start = vbl & 0x1fff;
  734. vbl_end = (vbl >> 16) & 0x1fff;
  735. }
  736. else {
  737. /* No: Fake something reasonable which gives at least ok results. */
  738. vbl_start = mode->crtc_vdisplay;
  739. vbl_end = 0;
  740. }
  741. /* Called from driver internal vblank counter query code? */
  742. if (flags & GET_DISTANCE_TO_VBLANKSTART) {
  743. /* Caller wants distance from real vbl_start in *hpos */
  744. *hpos = *vpos - vbl_start;
  745. }
  746. /* Fudge vblank to start a few scanlines earlier to handle the
  747. * problem that vblank irqs fire a few scanlines before start
  748. * of vblank. Some driver internal callers need the true vblank
  749. * start to be used and signal this via the USE_REAL_VBLANKSTART flag.
  750. *
  751. * The cause of the "early" vblank irq is that the irq is triggered
  752. * by the line buffer logic when the line buffer read position enters
  753. * the vblank, whereas our crtc scanout position naturally lags the
  754. * line buffer read position.
  755. */
  756. if (!(flags & USE_REAL_VBLANKSTART))
  757. vbl_start -= adev->mode_info.crtcs[pipe]->lb_vblank_lead_lines;
  758. /* Test scanout position against vblank region. */
  759. if ((*vpos < vbl_start) && (*vpos >= vbl_end))
  760. in_vbl = false;
  761. /* In vblank? */
  762. if (in_vbl)
  763. ret |= DRM_SCANOUTPOS_IN_VBLANK;
  764. /* Called from driver internal vblank counter query code? */
  765. if (flags & GET_DISTANCE_TO_VBLANKSTART) {
  766. /* Caller wants distance from fudged earlier vbl_start */
  767. *vpos -= vbl_start;
  768. return ret;
  769. }
  770. /* Check if inside vblank area and apply corrective offsets:
  771. * vpos will then be >=0 in video scanout area, but negative
  772. * within vblank area, counting down the number of lines until
  773. * start of scanout.
  774. */
  775. /* Inside "upper part" of vblank area? Apply corrective offset if so: */
  776. if (in_vbl && (*vpos >= vbl_start)) {
  777. vtotal = mode->crtc_vtotal;
  778. *vpos = *vpos - vtotal;
  779. }
  780. /* Correct for shifted end of vbl at vbl_end. */
  781. *vpos = *vpos - vbl_end;
  782. return ret;
  783. }
  784. int amdgpu_crtc_idx_to_irq_type(struct amdgpu_device *adev, int crtc)
  785. {
  786. if (crtc < 0 || crtc >= adev->mode_info.num_crtc)
  787. return AMDGPU_CRTC_IRQ_NONE;
  788. switch (crtc) {
  789. case 0:
  790. return AMDGPU_CRTC_IRQ_VBLANK1;
  791. case 1:
  792. return AMDGPU_CRTC_IRQ_VBLANK2;
  793. case 2:
  794. return AMDGPU_CRTC_IRQ_VBLANK3;
  795. case 3:
  796. return AMDGPU_CRTC_IRQ_VBLANK4;
  797. case 4:
  798. return AMDGPU_CRTC_IRQ_VBLANK5;
  799. case 5:
  800. return AMDGPU_CRTC_IRQ_VBLANK6;
  801. default:
  802. return AMDGPU_CRTC_IRQ_NONE;
  803. }
  804. }