drm_edid.c 36 KB

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  1. /*
  2. * Copyright (c) 2006 Luc Verhaegen (quirks list)
  3. * Copyright (c) 2007-2008 Intel Corporation
  4. * Jesse Barnes <jesse.barnes@intel.com>
  5. * Copyright 2010 Red Hat, Inc.
  6. *
  7. * DDC probing routines (drm_ddc_read & drm_do_probe_ddc_edid) originally from
  8. * FB layer.
  9. * Copyright (C) 2006 Dennis Munsie <dmunsie@cecropia.com>
  10. *
  11. * Permission is hereby granted, free of charge, to any person obtaining a
  12. * copy of this software and associated documentation files (the "Software"),
  13. * to deal in the Software without restriction, including without limitation
  14. * the rights to use, copy, modify, merge, publish, distribute, sub license,
  15. * and/or sell copies of the Software, and to permit persons to whom the
  16. * Software is furnished to do so, subject to the following conditions:
  17. *
  18. * The above copyright notice and this permission notice (including the
  19. * next paragraph) shall be included in all copies or substantial portions
  20. * of the Software.
  21. *
  22. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  23. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  24. * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
  25. * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  26. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  27. * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
  28. * DEALINGS IN THE SOFTWARE.
  29. */
  30. #include <linux/kernel.h>
  31. #include <linux/slab.h>
  32. #include <linux/i2c.h>
  33. #include <linux/i2c-algo-bit.h>
  34. #include "drmP.h"
  35. #include "drm_edid.h"
  36. #include "drm_edid_modes.h"
  37. #define version_greater(edid, maj, min) \
  38. (((edid)->version > (maj)) || \
  39. ((edid)->version == (maj) && (edid)->revision > (min)))
  40. #define EDID_EST_TIMINGS 16
  41. #define EDID_STD_TIMINGS 8
  42. #define EDID_DETAILED_TIMINGS 4
  43. /*
  44. * EDID blocks out in the wild have a variety of bugs, try to collect
  45. * them here (note that userspace may work around broken monitors first,
  46. * but fixes should make their way here so that the kernel "just works"
  47. * on as many displays as possible).
  48. */
  49. /* First detailed mode wrong, use largest 60Hz mode */
  50. #define EDID_QUIRK_PREFER_LARGE_60 (1 << 0)
  51. /* Reported 135MHz pixel clock is too high, needs adjustment */
  52. #define EDID_QUIRK_135_CLOCK_TOO_HIGH (1 << 1)
  53. /* Prefer the largest mode at 75 Hz */
  54. #define EDID_QUIRK_PREFER_LARGE_75 (1 << 2)
  55. /* Detail timing is in cm not mm */
  56. #define EDID_QUIRK_DETAILED_IN_CM (1 << 3)
  57. /* Detailed timing descriptors have bogus size values, so just take the
  58. * maximum size and use that.
  59. */
  60. #define EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE (1 << 4)
  61. /* Monitor forgot to set the first detailed is preferred bit. */
  62. #define EDID_QUIRK_FIRST_DETAILED_PREFERRED (1 << 5)
  63. /* use +hsync +vsync for detailed mode */
  64. #define EDID_QUIRK_DETAILED_SYNC_PP (1 << 6)
  65. struct detailed_mode_closure {
  66. struct drm_connector *connector;
  67. struct edid *edid;
  68. bool preferred;
  69. u32 quirks;
  70. int modes;
  71. };
  72. #define LEVEL_DMT 0
  73. #define LEVEL_GTF 1
  74. #define LEVEL_GTF2 2
  75. #define LEVEL_CVT 3
  76. static struct edid_quirk {
  77. char *vendor;
  78. int product_id;
  79. u32 quirks;
  80. } edid_quirk_list[] = {
  81. /* Acer AL1706 */
  82. { "ACR", 44358, EDID_QUIRK_PREFER_LARGE_60 },
  83. /* Acer F51 */
  84. { "API", 0x7602, EDID_QUIRK_PREFER_LARGE_60 },
  85. /* Unknown Acer */
  86. { "ACR", 2423, EDID_QUIRK_FIRST_DETAILED_PREFERRED },
  87. /* Belinea 10 15 55 */
  88. { "MAX", 1516, EDID_QUIRK_PREFER_LARGE_60 },
  89. { "MAX", 0x77e, EDID_QUIRK_PREFER_LARGE_60 },
  90. /* Envision Peripherals, Inc. EN-7100e */
  91. { "EPI", 59264, EDID_QUIRK_135_CLOCK_TOO_HIGH },
  92. /* Envision EN2028 */
  93. { "EPI", 8232, EDID_QUIRK_PREFER_LARGE_60 },
  94. /* Funai Electronics PM36B */
  95. { "FCM", 13600, EDID_QUIRK_PREFER_LARGE_75 |
  96. EDID_QUIRK_DETAILED_IN_CM },
  97. /* LG Philips LCD LP154W01-A5 */
  98. { "LPL", 0, EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE },
  99. { "LPL", 0x2a00, EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE },
  100. /* Philips 107p5 CRT */
  101. { "PHL", 57364, EDID_QUIRK_FIRST_DETAILED_PREFERRED },
  102. /* Proview AY765C */
  103. { "PTS", 765, EDID_QUIRK_FIRST_DETAILED_PREFERRED },
  104. /* Samsung SyncMaster 205BW. Note: irony */
  105. { "SAM", 541, EDID_QUIRK_DETAILED_SYNC_PP },
  106. /* Samsung SyncMaster 22[5-6]BW */
  107. { "SAM", 596, EDID_QUIRK_PREFER_LARGE_60 },
  108. { "SAM", 638, EDID_QUIRK_PREFER_LARGE_60 },
  109. };
  110. /*** DDC fetch and block validation ***/
  111. static const u8 edid_header[] = {
  112. 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00
  113. };
  114. /*
  115. * Sanity check the EDID block (base or extension). Return 0 if the block
  116. * doesn't check out, or 1 if it's valid.
  117. */
  118. static bool
  119. drm_edid_block_valid(u8 *raw_edid)
  120. {
  121. int i;
  122. u8 csum = 0;
  123. struct edid *edid = (struct edid *)raw_edid;
  124. if (raw_edid[0] == 0x00) {
  125. int score = 0;
  126. for (i = 0; i < sizeof(edid_header); i++)
  127. if (raw_edid[i] == edid_header[i])
  128. score++;
  129. if (score == 8) ;
  130. else if (score >= 6) {
  131. DRM_DEBUG("Fixing EDID header, your hardware may be failing\n");
  132. memcpy(raw_edid, edid_header, sizeof(edid_header));
  133. } else {
  134. goto bad;
  135. }
  136. }
  137. for (i = 0; i < EDID_LENGTH; i++)
  138. csum += raw_edid[i];
  139. if (csum) {
  140. DRM_ERROR("EDID checksum is invalid, remainder is %d\n", csum);
  141. /* allow CEA to slide through, switches mangle this */
  142. if (raw_edid[0] != 0x02)
  143. goto bad;
  144. }
  145. /* per-block-type checks */
  146. switch (raw_edid[0]) {
  147. case 0: /* base */
  148. if (edid->version != 1) {
  149. DRM_ERROR("EDID has major version %d, instead of 1\n", edid->version);
  150. goto bad;
  151. }
  152. if (edid->revision > 4)
  153. DRM_DEBUG("EDID minor > 4, assuming backward compatibility\n");
  154. break;
  155. default:
  156. break;
  157. }
  158. return 1;
  159. bad:
  160. if (raw_edid) {
  161. DRM_ERROR("Raw EDID:\n");
  162. print_hex_dump_bytes(KERN_ERR, DUMP_PREFIX_NONE, raw_edid, EDID_LENGTH);
  163. printk("\n");
  164. }
  165. return 0;
  166. }
  167. /**
  168. * drm_edid_is_valid - sanity check EDID data
  169. * @edid: EDID data
  170. *
  171. * Sanity-check an entire EDID record (including extensions)
  172. */
  173. bool drm_edid_is_valid(struct edid *edid)
  174. {
  175. int i;
  176. u8 *raw = (u8 *)edid;
  177. if (!edid)
  178. return false;
  179. for (i = 0; i <= edid->extensions; i++)
  180. if (!drm_edid_block_valid(raw + i * EDID_LENGTH))
  181. return false;
  182. return true;
  183. }
  184. EXPORT_SYMBOL(drm_edid_is_valid);
  185. #define DDC_ADDR 0x50
  186. #define DDC_SEGMENT_ADDR 0x30
  187. /**
  188. * Get EDID information via I2C.
  189. *
  190. * \param adapter : i2c device adaptor
  191. * \param buf : EDID data buffer to be filled
  192. * \param len : EDID data buffer length
  193. * \return 0 on success or -1 on failure.
  194. *
  195. * Try to fetch EDID information by calling i2c driver function.
  196. */
  197. static int
  198. drm_do_probe_ddc_edid(struct i2c_adapter *adapter, unsigned char *buf,
  199. int block, int len)
  200. {
  201. unsigned char start = block * EDID_LENGTH;
  202. struct i2c_msg msgs[] = {
  203. {
  204. .addr = DDC_ADDR,
  205. .flags = 0,
  206. .len = 1,
  207. .buf = &start,
  208. }, {
  209. .addr = DDC_ADDR,
  210. .flags = I2C_M_RD,
  211. .len = len,
  212. .buf = buf + start,
  213. }
  214. };
  215. if (i2c_transfer(adapter, msgs, 2) == 2)
  216. return 0;
  217. return -1;
  218. }
  219. static u8 *
  220. drm_do_get_edid(struct drm_connector *connector, struct i2c_adapter *adapter)
  221. {
  222. int i, j = 0;
  223. u8 *block, *new;
  224. if ((block = kmalloc(EDID_LENGTH, GFP_KERNEL)) == NULL)
  225. return NULL;
  226. /* base block fetch */
  227. for (i = 0; i < 4; i++) {
  228. if (drm_do_probe_ddc_edid(adapter, block, 0, EDID_LENGTH))
  229. goto out;
  230. if (drm_edid_block_valid(block))
  231. break;
  232. }
  233. if (i == 4)
  234. goto carp;
  235. /* if there's no extensions, we're done */
  236. if (block[0x7e] == 0)
  237. return block;
  238. new = krealloc(block, (block[0x7e] + 1) * EDID_LENGTH, GFP_KERNEL);
  239. if (!new)
  240. goto out;
  241. block = new;
  242. for (j = 1; j <= block[0x7e]; j++) {
  243. for (i = 0; i < 4; i++) {
  244. if (drm_do_probe_ddc_edid(adapter, block, j,
  245. EDID_LENGTH))
  246. goto out;
  247. if (drm_edid_block_valid(block + j * EDID_LENGTH))
  248. break;
  249. }
  250. if (i == 4)
  251. goto carp;
  252. }
  253. return block;
  254. carp:
  255. dev_warn(connector->dev->dev, "%s: EDID block %d invalid.\n",
  256. drm_get_connector_name(connector), j);
  257. out:
  258. kfree(block);
  259. return NULL;
  260. }
  261. /**
  262. * Probe DDC presence.
  263. *
  264. * \param adapter : i2c device adaptor
  265. * \return 1 on success
  266. */
  267. static bool
  268. drm_probe_ddc(struct i2c_adapter *adapter)
  269. {
  270. unsigned char out;
  271. return (drm_do_probe_ddc_edid(adapter, &out, 0, 1) == 0);
  272. }
  273. /**
  274. * drm_get_edid - get EDID data, if available
  275. * @connector: connector we're probing
  276. * @adapter: i2c adapter to use for DDC
  277. *
  278. * Poke the given i2c channel to grab EDID data if possible. If found,
  279. * attach it to the connector.
  280. *
  281. * Return edid data or NULL if we couldn't find any.
  282. */
  283. struct edid *drm_get_edid(struct drm_connector *connector,
  284. struct i2c_adapter *adapter)
  285. {
  286. struct edid *edid = NULL;
  287. if (drm_probe_ddc(adapter))
  288. edid = (struct edid *)drm_do_get_edid(connector, adapter);
  289. connector->display_info.raw_edid = (char *)edid;
  290. return edid;
  291. }
  292. EXPORT_SYMBOL(drm_get_edid);
  293. /*** EDID parsing ***/
  294. /**
  295. * edid_vendor - match a string against EDID's obfuscated vendor field
  296. * @edid: EDID to match
  297. * @vendor: vendor string
  298. *
  299. * Returns true if @vendor is in @edid, false otherwise
  300. */
  301. static bool edid_vendor(struct edid *edid, char *vendor)
  302. {
  303. char edid_vendor[3];
  304. edid_vendor[0] = ((edid->mfg_id[0] & 0x7c) >> 2) + '@';
  305. edid_vendor[1] = (((edid->mfg_id[0] & 0x3) << 3) |
  306. ((edid->mfg_id[1] & 0xe0) >> 5)) + '@';
  307. edid_vendor[2] = (edid->mfg_id[1] & 0x1f) + '@';
  308. return !strncmp(edid_vendor, vendor, 3);
  309. }
  310. /**
  311. * edid_get_quirks - return quirk flags for a given EDID
  312. * @edid: EDID to process
  313. *
  314. * This tells subsequent routines what fixes they need to apply.
  315. */
  316. static u32 edid_get_quirks(struct edid *edid)
  317. {
  318. struct edid_quirk *quirk;
  319. int i;
  320. for (i = 0; i < ARRAY_SIZE(edid_quirk_list); i++) {
  321. quirk = &edid_quirk_list[i];
  322. if (edid_vendor(edid, quirk->vendor) &&
  323. (EDID_PRODUCT_ID(edid) == quirk->product_id))
  324. return quirk->quirks;
  325. }
  326. return 0;
  327. }
  328. #define MODE_SIZE(m) ((m)->hdisplay * (m)->vdisplay)
  329. #define MODE_REFRESH_DIFF(m,r) (abs((m)->vrefresh - target_refresh))
  330. /**
  331. * edid_fixup_preferred - set preferred modes based on quirk list
  332. * @connector: has mode list to fix up
  333. * @quirks: quirks list
  334. *
  335. * Walk the mode list for @connector, clearing the preferred status
  336. * on existing modes and setting it anew for the right mode ala @quirks.
  337. */
  338. static void edid_fixup_preferred(struct drm_connector *connector,
  339. u32 quirks)
  340. {
  341. struct drm_display_mode *t, *cur_mode, *preferred_mode;
  342. int target_refresh = 0;
  343. if (list_empty(&connector->probed_modes))
  344. return;
  345. if (quirks & EDID_QUIRK_PREFER_LARGE_60)
  346. target_refresh = 60;
  347. if (quirks & EDID_QUIRK_PREFER_LARGE_75)
  348. target_refresh = 75;
  349. preferred_mode = list_first_entry(&connector->probed_modes,
  350. struct drm_display_mode, head);
  351. list_for_each_entry_safe(cur_mode, t, &connector->probed_modes, head) {
  352. cur_mode->type &= ~DRM_MODE_TYPE_PREFERRED;
  353. if (cur_mode == preferred_mode)
  354. continue;
  355. /* Largest mode is preferred */
  356. if (MODE_SIZE(cur_mode) > MODE_SIZE(preferred_mode))
  357. preferred_mode = cur_mode;
  358. /* At a given size, try to get closest to target refresh */
  359. if ((MODE_SIZE(cur_mode) == MODE_SIZE(preferred_mode)) &&
  360. MODE_REFRESH_DIFF(cur_mode, target_refresh) <
  361. MODE_REFRESH_DIFF(preferred_mode, target_refresh)) {
  362. preferred_mode = cur_mode;
  363. }
  364. }
  365. preferred_mode->type |= DRM_MODE_TYPE_PREFERRED;
  366. }
  367. struct drm_display_mode *drm_mode_find_dmt(struct drm_device *dev,
  368. int hsize, int vsize, int fresh)
  369. {
  370. int i;
  371. struct drm_display_mode *ptr, *mode;
  372. mode = NULL;
  373. for (i = 0; i < drm_num_dmt_modes; i++) {
  374. ptr = &drm_dmt_modes[i];
  375. if (hsize == ptr->hdisplay &&
  376. vsize == ptr->vdisplay &&
  377. fresh == drm_mode_vrefresh(ptr)) {
  378. /* get the expected default mode */
  379. mode = drm_mode_duplicate(dev, ptr);
  380. break;
  381. }
  382. }
  383. return mode;
  384. }
  385. EXPORT_SYMBOL(drm_mode_find_dmt);
  386. typedef void detailed_cb(struct detailed_timing *timing, void *closure);
  387. static void
  388. cea_for_each_detailed_block(u8 *ext, detailed_cb *cb, void *closure)
  389. {
  390. int i, n = 0;
  391. u8 rev = ext[0x01], d = ext[0x02];
  392. u8 *det_base = ext + d;
  393. switch (rev) {
  394. case 0:
  395. /* can't happen */
  396. return;
  397. case 1:
  398. /* have to infer how many blocks we have, check pixel clock */
  399. for (i = 0; i < 6; i++)
  400. if (det_base[18*i] || det_base[18*i+1])
  401. n++;
  402. break;
  403. default:
  404. /* explicit count */
  405. n = min(ext[0x03] & 0x0f, 6);
  406. break;
  407. }
  408. for (i = 0; i < n; i++)
  409. cb((struct detailed_timing *)(det_base + 18 * i), closure);
  410. }
  411. static void
  412. vtb_for_each_detailed_block(u8 *ext, detailed_cb *cb, void *closure)
  413. {
  414. unsigned int i, n = min((int)ext[0x02], 6);
  415. u8 *det_base = ext + 5;
  416. if (ext[0x01] != 1)
  417. return; /* unknown version */
  418. for (i = 0; i < n; i++)
  419. cb((struct detailed_timing *)(det_base + 18 * i), closure);
  420. }
  421. static void
  422. drm_for_each_detailed_block(u8 *raw_edid, detailed_cb *cb, void *closure)
  423. {
  424. int i;
  425. struct edid *edid = (struct edid *)raw_edid;
  426. if (edid == NULL)
  427. return;
  428. for (i = 0; i < EDID_DETAILED_TIMINGS; i++)
  429. cb(&(edid->detailed_timings[i]), closure);
  430. for (i = 1; i <= raw_edid[0x7e]; i++) {
  431. u8 *ext = raw_edid + (i * EDID_LENGTH);
  432. switch (*ext) {
  433. case CEA_EXT:
  434. cea_for_each_detailed_block(ext, cb, closure);
  435. break;
  436. case VTB_EXT:
  437. vtb_for_each_detailed_block(ext, cb, closure);
  438. break;
  439. default:
  440. break;
  441. }
  442. }
  443. }
  444. static void
  445. is_rb(struct detailed_timing *t, void *data)
  446. {
  447. u8 *r = (u8 *)t;
  448. if (r[3] == EDID_DETAIL_MONITOR_RANGE)
  449. if (r[15] & 0x10)
  450. *(bool *)data = true;
  451. }
  452. /* EDID 1.4 defines this explicitly. For EDID 1.3, we guess, badly. */
  453. static bool
  454. drm_monitor_supports_rb(struct edid *edid)
  455. {
  456. if (edid->revision >= 4) {
  457. bool ret;
  458. drm_for_each_detailed_block((u8 *)edid, is_rb, &ret);
  459. return ret;
  460. }
  461. return ((edid->input & DRM_EDID_INPUT_DIGITAL) != 0);
  462. }
  463. static void
  464. find_gtf2(struct detailed_timing *t, void *data)
  465. {
  466. u8 *r = (u8 *)t;
  467. if (r[3] == EDID_DETAIL_MONITOR_RANGE && r[10] == 0x02)
  468. *(u8 **)data = r;
  469. }
  470. /* Secondary GTF curve kicks in above some break frequency */
  471. static int
  472. drm_gtf2_hbreak(struct edid *edid)
  473. {
  474. u8 *r = NULL;
  475. drm_for_each_detailed_block((u8 *)edid, find_gtf2, &r);
  476. return r ? (r[12] * 2) : 0;
  477. }
  478. static int
  479. drm_gtf2_2c(struct edid *edid)
  480. {
  481. u8 *r = NULL;
  482. drm_for_each_detailed_block((u8 *)edid, find_gtf2, &r);
  483. return r ? r[13] : 0;
  484. }
  485. static int
  486. drm_gtf2_m(struct edid *edid)
  487. {
  488. u8 *r = NULL;
  489. drm_for_each_detailed_block((u8 *)edid, find_gtf2, &r);
  490. return r ? (r[15] << 8) + r[14] : 0;
  491. }
  492. static int
  493. drm_gtf2_k(struct edid *edid)
  494. {
  495. u8 *r = NULL;
  496. drm_for_each_detailed_block((u8 *)edid, find_gtf2, &r);
  497. return r ? r[16] : 0;
  498. }
  499. static int
  500. drm_gtf2_2j(struct edid *edid)
  501. {
  502. u8 *r = NULL;
  503. drm_for_each_detailed_block((u8 *)edid, find_gtf2, &r);
  504. return r ? r[17] : 0;
  505. }
  506. /**
  507. * standard_timing_level - get std. timing level(CVT/GTF/DMT)
  508. * @edid: EDID block to scan
  509. */
  510. static int standard_timing_level(struct edid *edid)
  511. {
  512. if (edid->revision >= 2) {
  513. if (edid->revision >= 4 && (edid->features & DRM_EDID_FEATURE_DEFAULT_GTF))
  514. return LEVEL_CVT;
  515. if (drm_gtf2_hbreak(edid))
  516. return LEVEL_GTF2;
  517. return LEVEL_GTF;
  518. }
  519. return LEVEL_DMT;
  520. }
  521. /*
  522. * 0 is reserved. The spec says 0x01 fill for unused timings. Some old
  523. * monitors fill with ascii space (0x20) instead.
  524. */
  525. static int
  526. bad_std_timing(u8 a, u8 b)
  527. {
  528. return (a == 0x00 && b == 0x00) ||
  529. (a == 0x01 && b == 0x01) ||
  530. (a == 0x20 && b == 0x20);
  531. }
  532. /**
  533. * drm_mode_std - convert standard mode info (width, height, refresh) into mode
  534. * @t: standard timing params
  535. * @timing_level: standard timing level
  536. *
  537. * Take the standard timing params (in this case width, aspect, and refresh)
  538. * and convert them into a real mode using CVT/GTF/DMT.
  539. */
  540. static struct drm_display_mode *
  541. drm_mode_std(struct drm_connector *connector, struct edid *edid,
  542. struct std_timing *t, int revision)
  543. {
  544. struct drm_device *dev = connector->dev;
  545. struct drm_display_mode *m, *mode = NULL;
  546. int hsize, vsize;
  547. int vrefresh_rate;
  548. unsigned aspect_ratio = (t->vfreq_aspect & EDID_TIMING_ASPECT_MASK)
  549. >> EDID_TIMING_ASPECT_SHIFT;
  550. unsigned vfreq = (t->vfreq_aspect & EDID_TIMING_VFREQ_MASK)
  551. >> EDID_TIMING_VFREQ_SHIFT;
  552. int timing_level = standard_timing_level(edid);
  553. if (bad_std_timing(t->hsize, t->vfreq_aspect))
  554. return NULL;
  555. /* According to the EDID spec, the hdisplay = hsize * 8 + 248 */
  556. hsize = t->hsize * 8 + 248;
  557. /* vrefresh_rate = vfreq + 60 */
  558. vrefresh_rate = vfreq + 60;
  559. /* the vdisplay is calculated based on the aspect ratio */
  560. if (aspect_ratio == 0) {
  561. if (revision < 3)
  562. vsize = hsize;
  563. else
  564. vsize = (hsize * 10) / 16;
  565. } else if (aspect_ratio == 1)
  566. vsize = (hsize * 3) / 4;
  567. else if (aspect_ratio == 2)
  568. vsize = (hsize * 4) / 5;
  569. else
  570. vsize = (hsize * 9) / 16;
  571. /* HDTV hack, part 1 */
  572. if (vrefresh_rate == 60 &&
  573. ((hsize == 1360 && vsize == 765) ||
  574. (hsize == 1368 && vsize == 769))) {
  575. hsize = 1366;
  576. vsize = 768;
  577. }
  578. /*
  579. * If this connector already has a mode for this size and refresh
  580. * rate (because it came from detailed or CVT info), use that
  581. * instead. This way we don't have to guess at interlace or
  582. * reduced blanking.
  583. */
  584. list_for_each_entry(m, &connector->probed_modes, head)
  585. if (m->hdisplay == hsize && m->vdisplay == vsize &&
  586. drm_mode_vrefresh(m) == vrefresh_rate)
  587. return NULL;
  588. /* HDTV hack, part 2 */
  589. if (hsize == 1366 && vsize == 768 && vrefresh_rate == 60) {
  590. mode = drm_cvt_mode(dev, 1366, 768, vrefresh_rate, 0, 0,
  591. false);
  592. mode->hdisplay = 1366;
  593. mode->hsync_start = mode->hsync_start - 1;
  594. mode->hsync_end = mode->hsync_end - 1;
  595. return mode;
  596. }
  597. /* check whether it can be found in default mode table */
  598. mode = drm_mode_find_dmt(dev, hsize, vsize, vrefresh_rate);
  599. if (mode)
  600. return mode;
  601. switch (timing_level) {
  602. case LEVEL_DMT:
  603. break;
  604. case LEVEL_GTF:
  605. mode = drm_gtf_mode(dev, hsize, vsize, vrefresh_rate, 0, 0);
  606. break;
  607. case LEVEL_GTF2:
  608. /*
  609. * This is potentially wrong if there's ever a monitor with
  610. * more than one ranges section, each claiming a different
  611. * secondary GTF curve. Please don't do that.
  612. */
  613. mode = drm_gtf_mode(dev, hsize, vsize, vrefresh_rate, 0, 0);
  614. if (drm_mode_hsync(mode) > drm_gtf2_hbreak(edid)) {
  615. kfree(mode);
  616. mode = drm_gtf_mode_complex(dev, hsize, vsize,
  617. vrefresh_rate, 0, 0,
  618. drm_gtf2_m(edid),
  619. drm_gtf2_2c(edid),
  620. drm_gtf2_k(edid),
  621. drm_gtf2_2j(edid));
  622. }
  623. break;
  624. case LEVEL_CVT:
  625. mode = drm_cvt_mode(dev, hsize, vsize, vrefresh_rate, 0, 0,
  626. false);
  627. break;
  628. }
  629. return mode;
  630. }
  631. /*
  632. * EDID is delightfully ambiguous about how interlaced modes are to be
  633. * encoded. Our internal representation is of frame height, but some
  634. * HDTV detailed timings are encoded as field height.
  635. *
  636. * The format list here is from CEA, in frame size. Technically we
  637. * should be checking refresh rate too. Whatever.
  638. */
  639. static void
  640. drm_mode_do_interlace_quirk(struct drm_display_mode *mode,
  641. struct detailed_pixel_timing *pt)
  642. {
  643. int i;
  644. static const struct {
  645. int w, h;
  646. } cea_interlaced[] = {
  647. { 1920, 1080 },
  648. { 720, 480 },
  649. { 1440, 480 },
  650. { 2880, 480 },
  651. { 720, 576 },
  652. { 1440, 576 },
  653. { 2880, 576 },
  654. };
  655. if (!(pt->misc & DRM_EDID_PT_INTERLACED))
  656. return;
  657. for (i = 0; i < ARRAY_SIZE(cea_interlaced); i++) {
  658. if ((mode->hdisplay == cea_interlaced[i].w) &&
  659. (mode->vdisplay == cea_interlaced[i].h / 2)) {
  660. mode->vdisplay *= 2;
  661. mode->vsync_start *= 2;
  662. mode->vsync_end *= 2;
  663. mode->vtotal *= 2;
  664. mode->vtotal |= 1;
  665. }
  666. }
  667. mode->flags |= DRM_MODE_FLAG_INTERLACE;
  668. }
  669. /**
  670. * drm_mode_detailed - create a new mode from an EDID detailed timing section
  671. * @dev: DRM device (needed to create new mode)
  672. * @edid: EDID block
  673. * @timing: EDID detailed timing info
  674. * @quirks: quirks to apply
  675. *
  676. * An EDID detailed timing block contains enough info for us to create and
  677. * return a new struct drm_display_mode.
  678. */
  679. static struct drm_display_mode *drm_mode_detailed(struct drm_device *dev,
  680. struct edid *edid,
  681. struct detailed_timing *timing,
  682. u32 quirks)
  683. {
  684. struct drm_display_mode *mode;
  685. struct detailed_pixel_timing *pt = &timing->data.pixel_data;
  686. unsigned hactive = (pt->hactive_hblank_hi & 0xf0) << 4 | pt->hactive_lo;
  687. unsigned vactive = (pt->vactive_vblank_hi & 0xf0) << 4 | pt->vactive_lo;
  688. unsigned hblank = (pt->hactive_hblank_hi & 0xf) << 8 | pt->hblank_lo;
  689. unsigned vblank = (pt->vactive_vblank_hi & 0xf) << 8 | pt->vblank_lo;
  690. unsigned hsync_offset = (pt->hsync_vsync_offset_pulse_width_hi & 0xc0) << 2 | pt->hsync_offset_lo;
  691. unsigned hsync_pulse_width = (pt->hsync_vsync_offset_pulse_width_hi & 0x30) << 4 | pt->hsync_pulse_width_lo;
  692. unsigned vsync_offset = (pt->hsync_vsync_offset_pulse_width_hi & 0xc) >> 2 | pt->vsync_offset_pulse_width_lo >> 4;
  693. unsigned vsync_pulse_width = (pt->hsync_vsync_offset_pulse_width_hi & 0x3) << 4 | (pt->vsync_offset_pulse_width_lo & 0xf);
  694. /* ignore tiny modes */
  695. if (hactive < 64 || vactive < 64)
  696. return NULL;
  697. if (pt->misc & DRM_EDID_PT_STEREO) {
  698. printk(KERN_WARNING "stereo mode not supported\n");
  699. return NULL;
  700. }
  701. if (!(pt->misc & DRM_EDID_PT_SEPARATE_SYNC)) {
  702. printk(KERN_WARNING "composite sync not supported\n");
  703. }
  704. /* it is incorrect if hsync/vsync width is zero */
  705. if (!hsync_pulse_width || !vsync_pulse_width) {
  706. DRM_DEBUG_KMS("Incorrect Detailed timing. "
  707. "Wrong Hsync/Vsync pulse width\n");
  708. return NULL;
  709. }
  710. mode = drm_mode_create(dev);
  711. if (!mode)
  712. return NULL;
  713. mode->type = DRM_MODE_TYPE_DRIVER;
  714. if (quirks & EDID_QUIRK_135_CLOCK_TOO_HIGH)
  715. timing->pixel_clock = cpu_to_le16(1088);
  716. mode->clock = le16_to_cpu(timing->pixel_clock) * 10;
  717. mode->hdisplay = hactive;
  718. mode->hsync_start = mode->hdisplay + hsync_offset;
  719. mode->hsync_end = mode->hsync_start + hsync_pulse_width;
  720. mode->htotal = mode->hdisplay + hblank;
  721. mode->vdisplay = vactive;
  722. mode->vsync_start = mode->vdisplay + vsync_offset;
  723. mode->vsync_end = mode->vsync_start + vsync_pulse_width;
  724. mode->vtotal = mode->vdisplay + vblank;
  725. /* Some EDIDs have bogus h/vtotal values */
  726. if (mode->hsync_end > mode->htotal)
  727. mode->htotal = mode->hsync_end + 1;
  728. if (mode->vsync_end > mode->vtotal)
  729. mode->vtotal = mode->vsync_end + 1;
  730. drm_mode_do_interlace_quirk(mode, pt);
  731. drm_mode_set_name(mode);
  732. if (quirks & EDID_QUIRK_DETAILED_SYNC_PP) {
  733. pt->misc |= DRM_EDID_PT_HSYNC_POSITIVE | DRM_EDID_PT_VSYNC_POSITIVE;
  734. }
  735. mode->flags |= (pt->misc & DRM_EDID_PT_HSYNC_POSITIVE) ?
  736. DRM_MODE_FLAG_PHSYNC : DRM_MODE_FLAG_NHSYNC;
  737. mode->flags |= (pt->misc & DRM_EDID_PT_VSYNC_POSITIVE) ?
  738. DRM_MODE_FLAG_PVSYNC : DRM_MODE_FLAG_NVSYNC;
  739. mode->width_mm = pt->width_mm_lo | (pt->width_height_mm_hi & 0xf0) << 4;
  740. mode->height_mm = pt->height_mm_lo | (pt->width_height_mm_hi & 0xf) << 8;
  741. if (quirks & EDID_QUIRK_DETAILED_IN_CM) {
  742. mode->width_mm *= 10;
  743. mode->height_mm *= 10;
  744. }
  745. if (quirks & EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE) {
  746. mode->width_mm = edid->width_cm * 10;
  747. mode->height_mm = edid->height_cm * 10;
  748. }
  749. return mode;
  750. }
  751. static bool
  752. mode_is_rb(struct drm_display_mode *mode)
  753. {
  754. return (mode->htotal - mode->hdisplay == 160) &&
  755. (mode->hsync_end - mode->hdisplay == 80) &&
  756. (mode->hsync_end - mode->hsync_start == 32) &&
  757. (mode->vsync_start - mode->vdisplay == 3);
  758. }
  759. static bool
  760. mode_in_hsync_range(struct drm_display_mode *mode, struct edid *edid, u8 *t)
  761. {
  762. int hsync, hmin, hmax;
  763. hmin = t[7];
  764. if (edid->revision >= 4)
  765. hmin += ((t[4] & 0x04) ? 255 : 0);
  766. hmax = t[8];
  767. if (edid->revision >= 4)
  768. hmax += ((t[4] & 0x08) ? 255 : 0);
  769. hsync = drm_mode_hsync(mode);
  770. return (hsync <= hmax && hsync >= hmin);
  771. }
  772. static bool
  773. mode_in_vsync_range(struct drm_display_mode *mode, struct edid *edid, u8 *t)
  774. {
  775. int vsync, vmin, vmax;
  776. vmin = t[5];
  777. if (edid->revision >= 4)
  778. vmin += ((t[4] & 0x01) ? 255 : 0);
  779. vmax = t[6];
  780. if (edid->revision >= 4)
  781. vmax += ((t[4] & 0x02) ? 255 : 0);
  782. vsync = drm_mode_vrefresh(mode);
  783. return (vsync <= vmax && vsync >= vmin);
  784. }
  785. static u32
  786. range_pixel_clock(struct edid *edid, u8 *t)
  787. {
  788. /* unspecified */
  789. if (t[9] == 0 || t[9] == 255)
  790. return 0;
  791. /* 1.4 with CVT support gives us real precision, yay */
  792. if (edid->revision >= 4 && t[10] == 0x04)
  793. return (t[9] * 10000) - ((t[12] >> 2) * 250);
  794. /* 1.3 is pathetic, so fuzz up a bit */
  795. return t[9] * 10000 + 5001;
  796. }
  797. static bool
  798. mode_in_range(struct drm_display_mode *mode, struct edid *edid,
  799. struct detailed_timing *timing)
  800. {
  801. u32 max_clock;
  802. u8 *t = (u8 *)timing;
  803. if (!mode_in_hsync_range(mode, edid, t))
  804. return false;
  805. if (!mode_in_vsync_range(mode, edid, t))
  806. return false;
  807. if ((max_clock = range_pixel_clock(edid, t)))
  808. if (mode->clock > max_clock)
  809. return false;
  810. /* 1.4 max horizontal check */
  811. if (edid->revision >= 4 && t[10] == 0x04)
  812. if (t[13] && mode->hdisplay > 8 * (t[13] + (256 * (t[12]&0x3))))
  813. return false;
  814. if (mode_is_rb(mode) && !drm_monitor_supports_rb(edid))
  815. return false;
  816. return true;
  817. }
  818. /*
  819. * XXX If drm_dmt_modes ever regrows the CVT-R modes (and it will) this will
  820. * need to account for them.
  821. */
  822. static int
  823. drm_gtf_modes_for_range(struct drm_connector *connector, struct edid *edid,
  824. struct detailed_timing *timing)
  825. {
  826. int i, modes = 0;
  827. struct drm_display_mode *newmode;
  828. struct drm_device *dev = connector->dev;
  829. for (i = 0; i < drm_num_dmt_modes; i++) {
  830. if (mode_in_range(drm_dmt_modes + i, edid, timing)) {
  831. newmode = drm_mode_duplicate(dev, &drm_dmt_modes[i]);
  832. if (newmode) {
  833. drm_mode_probed_add(connector, newmode);
  834. modes++;
  835. }
  836. }
  837. }
  838. return modes;
  839. }
  840. static void
  841. do_inferred_modes(struct detailed_timing *timing, void *c)
  842. {
  843. struct detailed_mode_closure *closure = c;
  844. struct detailed_non_pixel *data = &timing->data.other_data;
  845. int gtf = (closure->edid->features & DRM_EDID_FEATURE_DEFAULT_GTF);
  846. if (gtf && data->type == EDID_DETAIL_MONITOR_RANGE)
  847. closure->modes += drm_gtf_modes_for_range(closure->connector,
  848. closure->edid,
  849. timing);
  850. }
  851. static int
  852. add_inferred_modes(struct drm_connector *connector, struct edid *edid)
  853. {
  854. struct detailed_mode_closure closure = {
  855. connector, edid, 0, 0, 0
  856. };
  857. if (version_greater(edid, 1, 0))
  858. drm_for_each_detailed_block((u8 *)edid, do_inferred_modes,
  859. &closure);
  860. return closure.modes;
  861. }
  862. static int
  863. drm_est3_modes(struct drm_connector *connector, struct detailed_timing *timing)
  864. {
  865. int i, j, m, modes = 0;
  866. struct drm_display_mode *mode;
  867. u8 *est = ((u8 *)timing) + 5;
  868. for (i = 0; i < 6; i++) {
  869. for (j = 7; j > 0; j--) {
  870. m = (i * 8) + (7 - j);
  871. if (m >= ARRAY_SIZE(est3_modes))
  872. break;
  873. if (est[i] & (1 << j)) {
  874. mode = drm_mode_find_dmt(connector->dev,
  875. est3_modes[m].w,
  876. est3_modes[m].h,
  877. est3_modes[m].r
  878. /*, est3_modes[m].rb */);
  879. if (mode) {
  880. drm_mode_probed_add(connector, mode);
  881. modes++;
  882. }
  883. }
  884. }
  885. }
  886. return modes;
  887. }
  888. static void
  889. do_established_modes(struct detailed_timing *timing, void *c)
  890. {
  891. struct detailed_mode_closure *closure = c;
  892. struct detailed_non_pixel *data = &timing->data.other_data;
  893. if (data->type == EDID_DETAIL_EST_TIMINGS)
  894. closure->modes += drm_est3_modes(closure->connector, timing);
  895. }
  896. /**
  897. * add_established_modes - get est. modes from EDID and add them
  898. * @edid: EDID block to scan
  899. *
  900. * Each EDID block contains a bitmap of the supported "established modes" list
  901. * (defined above). Tease them out and add them to the global modes list.
  902. */
  903. static int
  904. add_established_modes(struct drm_connector *connector, struct edid *edid)
  905. {
  906. struct drm_device *dev = connector->dev;
  907. unsigned long est_bits = edid->established_timings.t1 |
  908. (edid->established_timings.t2 << 8) |
  909. ((edid->established_timings.mfg_rsvd & 0x80) << 9);
  910. int i, modes = 0;
  911. struct detailed_mode_closure closure = {
  912. connector, edid, 0, 0, 0
  913. };
  914. for (i = 0; i <= EDID_EST_TIMINGS; i++) {
  915. if (est_bits & (1<<i)) {
  916. struct drm_display_mode *newmode;
  917. newmode = drm_mode_duplicate(dev, &edid_est_modes[i]);
  918. if (newmode) {
  919. drm_mode_probed_add(connector, newmode);
  920. modes++;
  921. }
  922. }
  923. }
  924. if (version_greater(edid, 1, 0))
  925. drm_for_each_detailed_block((u8 *)edid,
  926. do_established_modes, &closure);
  927. return modes + closure.modes;
  928. }
  929. static void
  930. do_standard_modes(struct detailed_timing *timing, void *c)
  931. {
  932. struct detailed_mode_closure *closure = c;
  933. struct detailed_non_pixel *data = &timing->data.other_data;
  934. struct drm_connector *connector = closure->connector;
  935. struct edid *edid = closure->edid;
  936. if (data->type == EDID_DETAIL_STD_MODES) {
  937. int i;
  938. for (i = 0; i < 6; i++) {
  939. struct std_timing *std;
  940. struct drm_display_mode *newmode;
  941. std = &data->data.timings[i];
  942. newmode = drm_mode_std(connector, edid, std,
  943. edid->revision);
  944. if (newmode) {
  945. drm_mode_probed_add(connector, newmode);
  946. closure->modes++;
  947. }
  948. }
  949. }
  950. }
  951. /**
  952. * add_standard_modes - get std. modes from EDID and add them
  953. * @edid: EDID block to scan
  954. *
  955. * Standard modes can be calculated using the appropriate standard (DMT,
  956. * GTF or CVT. Grab them from @edid and add them to the list.
  957. */
  958. static int
  959. add_standard_modes(struct drm_connector *connector, struct edid *edid)
  960. {
  961. int i, modes = 0;
  962. struct detailed_mode_closure closure = {
  963. connector, edid, 0, 0, 0
  964. };
  965. for (i = 0; i < EDID_STD_TIMINGS; i++) {
  966. struct drm_display_mode *newmode;
  967. newmode = drm_mode_std(connector, edid,
  968. &edid->standard_timings[i],
  969. edid->revision);
  970. if (newmode) {
  971. drm_mode_probed_add(connector, newmode);
  972. modes++;
  973. }
  974. }
  975. if (version_greater(edid, 1, 0))
  976. drm_for_each_detailed_block((u8 *)edid, do_standard_modes,
  977. &closure);
  978. /* XXX should also look for standard codes in VTB blocks */
  979. return modes + closure.modes;
  980. }
  981. static int drm_cvt_modes(struct drm_connector *connector,
  982. struct detailed_timing *timing)
  983. {
  984. int i, j, modes = 0;
  985. struct drm_display_mode *newmode;
  986. struct drm_device *dev = connector->dev;
  987. struct cvt_timing *cvt;
  988. const int rates[] = { 60, 85, 75, 60, 50 };
  989. const u8 empty[3] = { 0, 0, 0 };
  990. for (i = 0; i < 4; i++) {
  991. int uninitialized_var(width), height;
  992. cvt = &(timing->data.other_data.data.cvt[i]);
  993. if (!memcmp(cvt->code, empty, 3))
  994. continue;
  995. height = (cvt->code[0] + ((cvt->code[1] & 0xf0) << 4) + 1) * 2;
  996. switch (cvt->code[1] & 0x0c) {
  997. case 0x00:
  998. width = height * 4 / 3;
  999. break;
  1000. case 0x04:
  1001. width = height * 16 / 9;
  1002. break;
  1003. case 0x08:
  1004. width = height * 16 / 10;
  1005. break;
  1006. case 0x0c:
  1007. width = height * 15 / 9;
  1008. break;
  1009. }
  1010. for (j = 1; j < 5; j++) {
  1011. if (cvt->code[2] & (1 << j)) {
  1012. newmode = drm_cvt_mode(dev, width, height,
  1013. rates[j], j == 0,
  1014. false, false);
  1015. if (newmode) {
  1016. drm_mode_probed_add(connector, newmode);
  1017. modes++;
  1018. }
  1019. }
  1020. }
  1021. }
  1022. return modes;
  1023. }
  1024. static void
  1025. do_cvt_mode(struct detailed_timing *timing, void *c)
  1026. {
  1027. struct detailed_mode_closure *closure = c;
  1028. struct detailed_non_pixel *data = &timing->data.other_data;
  1029. if (data->type == EDID_DETAIL_CVT_3BYTE)
  1030. closure->modes += drm_cvt_modes(closure->connector, timing);
  1031. }
  1032. static int
  1033. add_cvt_modes(struct drm_connector *connector, struct edid *edid)
  1034. {
  1035. struct detailed_mode_closure closure = {
  1036. connector, edid, 0, 0, 0
  1037. };
  1038. if (version_greater(edid, 1, 2))
  1039. drm_for_each_detailed_block((u8 *)edid, do_cvt_mode, &closure);
  1040. /* XXX should also look for CVT codes in VTB blocks */
  1041. return closure.modes;
  1042. }
  1043. static void
  1044. do_detailed_mode(struct detailed_timing *timing, void *c)
  1045. {
  1046. struct detailed_mode_closure *closure = c;
  1047. struct drm_display_mode *newmode;
  1048. if (timing->pixel_clock) {
  1049. newmode = drm_mode_detailed(closure->connector->dev,
  1050. closure->edid, timing,
  1051. closure->quirks);
  1052. if (!newmode)
  1053. return;
  1054. if (closure->preferred)
  1055. newmode->type |= DRM_MODE_TYPE_PREFERRED;
  1056. drm_mode_probed_add(closure->connector, newmode);
  1057. closure->modes++;
  1058. closure->preferred = 0;
  1059. }
  1060. }
  1061. /*
  1062. * add_detailed_modes - Add modes from detailed timings
  1063. * @connector: attached connector
  1064. * @edid: EDID block to scan
  1065. * @quirks: quirks to apply
  1066. */
  1067. static int
  1068. add_detailed_modes(struct drm_connector *connector, struct edid *edid,
  1069. u32 quirks)
  1070. {
  1071. struct detailed_mode_closure closure = {
  1072. connector,
  1073. edid,
  1074. 1,
  1075. quirks,
  1076. 0
  1077. };
  1078. if (closure.preferred && !version_greater(edid, 1, 3))
  1079. closure.preferred =
  1080. (edid->features & DRM_EDID_FEATURE_PREFERRED_TIMING);
  1081. drm_for_each_detailed_block((u8 *)edid, do_detailed_mode, &closure);
  1082. return closure.modes;
  1083. }
  1084. #define HDMI_IDENTIFIER 0x000C03
  1085. #define VENDOR_BLOCK 0x03
  1086. /**
  1087. * drm_detect_hdmi_monitor - detect whether monitor is hdmi.
  1088. * @edid: monitor EDID information
  1089. *
  1090. * Parse the CEA extension according to CEA-861-B.
  1091. * Return true if HDMI, false if not or unknown.
  1092. */
  1093. bool drm_detect_hdmi_monitor(struct edid *edid)
  1094. {
  1095. char *edid_ext = NULL;
  1096. int i, hdmi_id;
  1097. int start_offset, end_offset;
  1098. bool is_hdmi = false;
  1099. /* No EDID or EDID extensions */
  1100. if (edid == NULL || edid->extensions == 0)
  1101. goto end;
  1102. /* Find CEA extension */
  1103. for (i = 0; i < edid->extensions; i++) {
  1104. edid_ext = (char *)edid + EDID_LENGTH * (i + 1);
  1105. /* This block is CEA extension */
  1106. if (edid_ext[0] == 0x02)
  1107. break;
  1108. }
  1109. if (i == edid->extensions)
  1110. goto end;
  1111. /* Data block offset in CEA extension block */
  1112. start_offset = 4;
  1113. end_offset = edid_ext[2];
  1114. /*
  1115. * Because HDMI identifier is in Vendor Specific Block,
  1116. * search it from all data blocks of CEA extension.
  1117. */
  1118. for (i = start_offset; i < end_offset;
  1119. /* Increased by data block len */
  1120. i += ((edid_ext[i] & 0x1f) + 1)) {
  1121. /* Find vendor specific block */
  1122. if ((edid_ext[i] >> 5) == VENDOR_BLOCK) {
  1123. hdmi_id = edid_ext[i + 1] | (edid_ext[i + 2] << 8) |
  1124. edid_ext[i + 3] << 16;
  1125. /* Find HDMI identifier */
  1126. if (hdmi_id == HDMI_IDENTIFIER)
  1127. is_hdmi = true;
  1128. break;
  1129. }
  1130. }
  1131. end:
  1132. return is_hdmi;
  1133. }
  1134. EXPORT_SYMBOL(drm_detect_hdmi_monitor);
  1135. /**
  1136. * drm_add_edid_modes - add modes from EDID data, if available
  1137. * @connector: connector we're probing
  1138. * @edid: edid data
  1139. *
  1140. * Add the specified modes to the connector's mode list.
  1141. *
  1142. * Return number of modes added or 0 if we couldn't find any.
  1143. */
  1144. int drm_add_edid_modes(struct drm_connector *connector, struct edid *edid)
  1145. {
  1146. int num_modes = 0;
  1147. u32 quirks;
  1148. if (edid == NULL) {
  1149. return 0;
  1150. }
  1151. if (!drm_edid_is_valid(edid)) {
  1152. dev_warn(connector->dev->dev, "%s: EDID invalid.\n",
  1153. drm_get_connector_name(connector));
  1154. return 0;
  1155. }
  1156. quirks = edid_get_quirks(edid);
  1157. /*
  1158. * EDID spec says modes should be preferred in this order:
  1159. * - preferred detailed mode
  1160. * - other detailed modes from base block
  1161. * - detailed modes from extension blocks
  1162. * - CVT 3-byte code modes
  1163. * - standard timing codes
  1164. * - established timing codes
  1165. * - modes inferred from GTF or CVT range information
  1166. *
  1167. * We get this pretty much right.
  1168. *
  1169. * XXX order for additional mode types in extension blocks?
  1170. */
  1171. num_modes += add_detailed_modes(connector, edid, quirks);
  1172. num_modes += add_cvt_modes(connector, edid);
  1173. num_modes += add_standard_modes(connector, edid);
  1174. num_modes += add_established_modes(connector, edid);
  1175. num_modes += add_inferred_modes(connector, edid);
  1176. if (quirks & (EDID_QUIRK_PREFER_LARGE_60 | EDID_QUIRK_PREFER_LARGE_75))
  1177. edid_fixup_preferred(connector, quirks);
  1178. connector->display_info.width_mm = edid->width_cm * 10;
  1179. connector->display_info.height_mm = edid->height_cm * 10;
  1180. return num_modes;
  1181. }
  1182. EXPORT_SYMBOL(drm_add_edid_modes);
  1183. /**
  1184. * drm_add_modes_noedid - add modes for the connectors without EDID
  1185. * @connector: connector we're probing
  1186. * @hdisplay: the horizontal display limit
  1187. * @vdisplay: the vertical display limit
  1188. *
  1189. * Add the specified modes to the connector's mode list. Only when the
  1190. * hdisplay/vdisplay is not beyond the given limit, it will be added.
  1191. *
  1192. * Return number of modes added or 0 if we couldn't find any.
  1193. */
  1194. int drm_add_modes_noedid(struct drm_connector *connector,
  1195. int hdisplay, int vdisplay)
  1196. {
  1197. int i, count, num_modes = 0;
  1198. struct drm_display_mode *mode, *ptr;
  1199. struct drm_device *dev = connector->dev;
  1200. count = sizeof(drm_dmt_modes) / sizeof(struct drm_display_mode);
  1201. if (hdisplay < 0)
  1202. hdisplay = 0;
  1203. if (vdisplay < 0)
  1204. vdisplay = 0;
  1205. for (i = 0; i < count; i++) {
  1206. ptr = &drm_dmt_modes[i];
  1207. if (hdisplay && vdisplay) {
  1208. /*
  1209. * Only when two are valid, they will be used to check
  1210. * whether the mode should be added to the mode list of
  1211. * the connector.
  1212. */
  1213. if (ptr->hdisplay > hdisplay ||
  1214. ptr->vdisplay > vdisplay)
  1215. continue;
  1216. }
  1217. if (drm_mode_vrefresh(ptr) > 61)
  1218. continue;
  1219. mode = drm_mode_duplicate(dev, ptr);
  1220. if (mode) {
  1221. drm_mode_probed_add(connector, mode);
  1222. num_modes++;
  1223. }
  1224. }
  1225. return num_modes;
  1226. }
  1227. EXPORT_SYMBOL(drm_add_modes_noedid);