edid.c 14 KB

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  1. /*
  2. * Copyright (c) 2012 The Chromium OS Authors.
  3. *
  4. * (C) Copyright 2010
  5. * Petr Stetiar <ynezz@true.cz>
  6. *
  7. * SPDX-License-Identifier: GPL-2.0+
  8. *
  9. * Contains stolen code from ddcprobe project which is:
  10. * Copyright (C) Nalin Dahyabhai <bigfun@pobox.com>
  11. */
  12. #include <common.h>
  13. #include <edid.h>
  14. #include <errno.h>
  15. #include <fdtdec.h>
  16. #include <linux/ctype.h>
  17. #include <linux/string.h>
  18. int edid_check_info(struct edid1_info *edid_info)
  19. {
  20. if ((edid_info == NULL) || (edid_info->version == 0))
  21. return -1;
  22. if (memcmp(edid_info->header, "\x0\xff\xff\xff\xff\xff\xff\x0", 8))
  23. return -1;
  24. if (edid_info->version == 0xff && edid_info->revision == 0xff)
  25. return -1;
  26. return 0;
  27. }
  28. int edid_check_checksum(u8 *edid_block)
  29. {
  30. u8 checksum = 0;
  31. int i;
  32. for (i = 0; i < 128; i++)
  33. checksum += edid_block[i];
  34. return (checksum == 0) ? 0 : -EINVAL;
  35. }
  36. int edid_get_ranges(struct edid1_info *edid, unsigned int *hmin,
  37. unsigned int *hmax, unsigned int *vmin,
  38. unsigned int *vmax)
  39. {
  40. int i;
  41. struct edid_monitor_descriptor *monitor;
  42. *hmin = *hmax = *vmin = *vmax = 0;
  43. if (edid_check_info(edid))
  44. return -1;
  45. for (i = 0; i < ARRAY_SIZE(edid->monitor_details.descriptor); i++) {
  46. monitor = &edid->monitor_details.descriptor[i];
  47. if (monitor->type == EDID_MONITOR_DESCRIPTOR_RANGE) {
  48. *hmin = monitor->data.range_data.horizontal_min;
  49. *hmax = monitor->data.range_data.horizontal_max;
  50. *vmin = monitor->data.range_data.vertical_min;
  51. *vmax = monitor->data.range_data.vertical_max;
  52. return 0;
  53. }
  54. }
  55. return -1;
  56. }
  57. /* Set all parts of a timing entry to the same value */
  58. static void set_entry(struct timing_entry *entry, u32 value)
  59. {
  60. entry->min = value;
  61. entry->typ = value;
  62. entry->max = value;
  63. }
  64. /**
  65. * decode_timing() - Decoding an 18-byte detailed timing record
  66. *
  67. * @buf: Pointer to EDID detailed timing record
  68. * @timing: Place to put timing
  69. */
  70. static void decode_timing(u8 *buf, struct display_timing *timing)
  71. {
  72. uint x_mm, y_mm;
  73. unsigned int ha, hbl, hso, hspw, hborder;
  74. unsigned int va, vbl, vso, vspw, vborder;
  75. struct edid_detailed_timing *t = (struct edid_detailed_timing *)buf;
  76. /* Edid contains pixel clock in terms of 10KHz */
  77. set_entry(&timing->pixelclock, (buf[0] + (buf[1] << 8)) * 10000);
  78. x_mm = (buf[12] + ((buf[14] & 0xf0) << 4));
  79. y_mm = (buf[13] + ((buf[14] & 0x0f) << 8));
  80. ha = (buf[2] + ((buf[4] & 0xf0) << 4));
  81. hbl = (buf[3] + ((buf[4] & 0x0f) << 8));
  82. hso = (buf[8] + ((buf[11] & 0xc0) << 2));
  83. hspw = (buf[9] + ((buf[11] & 0x30) << 4));
  84. hborder = buf[15];
  85. va = (buf[5] + ((buf[7] & 0xf0) << 4));
  86. vbl = (buf[6] + ((buf[7] & 0x0f) << 8));
  87. vso = ((buf[10] >> 4) + ((buf[11] & 0x0c) << 2));
  88. vspw = ((buf[10] & 0x0f) + ((buf[11] & 0x03) << 4));
  89. vborder = buf[16];
  90. set_entry(&timing->hactive, ha);
  91. set_entry(&timing->hfront_porch, hso);
  92. set_entry(&timing->hback_porch, hbl - hso - hspw);
  93. set_entry(&timing->hsync_len, hspw);
  94. set_entry(&timing->vactive, va);
  95. set_entry(&timing->vfront_porch, vso);
  96. set_entry(&timing->vback_porch, vbl - vso - vspw);
  97. set_entry(&timing->vsync_len, vspw);
  98. timing->flags = 0;
  99. if (EDID_DETAILED_TIMING_FLAG_HSYNC_POLARITY(*t))
  100. timing->flags |= DISPLAY_FLAGS_HSYNC_HIGH;
  101. else
  102. timing->flags |= DISPLAY_FLAGS_HSYNC_LOW;
  103. if (EDID_DETAILED_TIMING_FLAG_VSYNC_POLARITY(*t))
  104. timing->flags |= DISPLAY_FLAGS_VSYNC_HIGH;
  105. else
  106. timing->flags |= DISPLAY_FLAGS_VSYNC_LOW;
  107. if (EDID_DETAILED_TIMING_FLAG_INTERLACED(*t))
  108. timing->flags = DISPLAY_FLAGS_INTERLACED;
  109. debug("Detailed mode clock %u Hz, %d mm x %d mm\n"
  110. " %04x %04x %04x %04x hborder %x\n"
  111. " %04x %04x %04x %04x vborder %x\n",
  112. timing->pixelclock.typ,
  113. x_mm, y_mm,
  114. ha, ha + hso, ha + hso + hspw,
  115. ha + hbl, hborder,
  116. va, va + vso, va + vso + vspw,
  117. va + vbl, vborder);
  118. }
  119. /**
  120. * Check if HDMI vendor specific data block is present in CEA block
  121. * @param info CEA extension block
  122. * @return true if block is found
  123. */
  124. static bool cea_is_hdmi_vsdb_present(struct edid_cea861_info *info)
  125. {
  126. u8 end, i = 0;
  127. /* check for end of data block */
  128. end = info->dtd_offset;
  129. if (end == 0)
  130. end = sizeof(info->data);
  131. if (end < 4 || end > sizeof(info->data))
  132. return false;
  133. end -= 4;
  134. while (i < end) {
  135. /* Look for vendor specific data block of appropriate size */
  136. if ((EDID_CEA861_DB_TYPE(*info, i) == EDID_CEA861_DB_VENDOR) &&
  137. (EDID_CEA861_DB_LEN(*info, i) >= 5)) {
  138. u8 *db = &info->data[i + 1];
  139. u32 oui = db[0] | (db[1] << 8) | (db[2] << 16);
  140. if (oui == HDMI_IEEE_OUI)
  141. return true;
  142. }
  143. i += EDID_CEA861_DB_LEN(*info, i) + 1;
  144. }
  145. return false;
  146. }
  147. int edid_get_timing(u8 *buf, int buf_size, struct display_timing *timing,
  148. int *panel_bits_per_colourp)
  149. {
  150. struct edid1_info *edid = (struct edid1_info *)buf;
  151. bool timing_done;
  152. int i;
  153. if (buf_size < sizeof(*edid) || edid_check_info(edid)) {
  154. debug("%s: Invalid buffer\n", __func__);
  155. return -EINVAL;
  156. }
  157. if (!EDID1_INFO_FEATURE_PREFERRED_TIMING_MODE(*edid)) {
  158. debug("%s: No preferred timing\n", __func__);
  159. return -ENOENT;
  160. }
  161. /* Look for detailed timing */
  162. timing_done = false;
  163. for (i = 0; i < 4; i++) {
  164. struct edid_monitor_descriptor *desc;
  165. desc = &edid->monitor_details.descriptor[i];
  166. if (desc->zero_flag_1 != 0) {
  167. decode_timing((u8 *)desc, timing);
  168. timing_done = true;
  169. break;
  170. }
  171. }
  172. if (!timing_done)
  173. return -EINVAL;
  174. if (!EDID1_INFO_VIDEO_INPUT_DIGITAL(*edid)) {
  175. debug("%s: Not a digital display\n", __func__);
  176. return -ENOSYS;
  177. }
  178. if (edid->version != 1 || edid->revision < 4) {
  179. debug("%s: EDID version %d.%d does not have required info\n",
  180. __func__, edid->version, edid->revision);
  181. *panel_bits_per_colourp = -1;
  182. } else {
  183. *panel_bits_per_colourp =
  184. ((edid->video_input_definition & 0x70) >> 3) + 4;
  185. }
  186. timing->hdmi_monitor = false;
  187. if (edid->extension_flag && (buf_size >= EDID_EXT_SIZE)) {
  188. struct edid_cea861_info *info =
  189. (struct edid_cea861_info *)(buf + sizeof(*edid));
  190. if (info->extension_tag == EDID_CEA861_EXTENSION_TAG)
  191. timing->hdmi_monitor = cea_is_hdmi_vsdb_present(info);
  192. }
  193. return 0;
  194. }
  195. /**
  196. * Snip the tailing whitespace/return of a string.
  197. *
  198. * @param string The string to be snipped
  199. * @return the snipped string
  200. */
  201. static char *snip(char *string)
  202. {
  203. char *s;
  204. /*
  205. * This is always a 13 character buffer
  206. * and it's not always terminated.
  207. */
  208. string[12] = '\0';
  209. s = &string[strlen(string) - 1];
  210. while (s >= string && (isspace(*s) || *s == '\n' || *s == '\r' ||
  211. *s == '\0'))
  212. *(s--) = '\0';
  213. return string;
  214. }
  215. /**
  216. * Print an EDID monitor descriptor block
  217. *
  218. * @param monitor The EDID monitor descriptor block
  219. * @have_timing Modifies to 1 if the desciptor contains timing info
  220. */
  221. static void edid_print_dtd(struct edid_monitor_descriptor *monitor,
  222. unsigned int *have_timing)
  223. {
  224. unsigned char *bytes = (unsigned char *)monitor;
  225. struct edid_detailed_timing *timing =
  226. (struct edid_detailed_timing *)monitor;
  227. if (bytes[0] == 0 && bytes[1] == 0) {
  228. if (monitor->type == EDID_MONITOR_DESCRIPTOR_SERIAL)
  229. printf("Monitor serial number: %s\n",
  230. snip(monitor->data.string));
  231. else if (monitor->type == EDID_MONITOR_DESCRIPTOR_ASCII)
  232. printf("Monitor ID: %s\n",
  233. snip(monitor->data.string));
  234. else if (monitor->type == EDID_MONITOR_DESCRIPTOR_NAME)
  235. printf("Monitor name: %s\n",
  236. snip(monitor->data.string));
  237. else if (monitor->type == EDID_MONITOR_DESCRIPTOR_RANGE)
  238. printf("Monitor range limits, horizontal sync: "
  239. "%d-%d kHz, vertical refresh: "
  240. "%d-%d Hz, max pixel clock: "
  241. "%d MHz\n",
  242. monitor->data.range_data.horizontal_min,
  243. monitor->data.range_data.horizontal_max,
  244. monitor->data.range_data.vertical_min,
  245. monitor->data.range_data.vertical_max,
  246. monitor->data.range_data.pixel_clock_max * 10);
  247. } else {
  248. uint32_t pixclock, h_active, h_blanking, v_active, v_blanking;
  249. uint32_t h_total, v_total, vfreq;
  250. pixclock = EDID_DETAILED_TIMING_PIXEL_CLOCK(*timing);
  251. h_active = EDID_DETAILED_TIMING_HORIZONTAL_ACTIVE(*timing);
  252. h_blanking = EDID_DETAILED_TIMING_HORIZONTAL_BLANKING(*timing);
  253. v_active = EDID_DETAILED_TIMING_VERTICAL_ACTIVE(*timing);
  254. v_blanking = EDID_DETAILED_TIMING_VERTICAL_BLANKING(*timing);
  255. h_total = h_active + h_blanking;
  256. v_total = v_active + v_blanking;
  257. if (v_total > 0 && h_total > 0)
  258. vfreq = pixclock / (v_total * h_total);
  259. else
  260. vfreq = 1; /* Error case */
  261. printf("\t%dx%d\%c\t%d Hz (detailed)\n", h_active,
  262. v_active, h_active > 1000 ? ' ' : '\t', vfreq);
  263. *have_timing = 1;
  264. }
  265. }
  266. /**
  267. * Get the manufacturer name from an EDID info.
  268. *
  269. * @param edid_info The EDID info to be printed
  270. * @param name Returns the string of the manufacturer name
  271. */
  272. static void edid_get_manufacturer_name(struct edid1_info *edid, char *name)
  273. {
  274. name[0] = EDID1_INFO_MANUFACTURER_NAME_CHAR1(*edid) + 'A' - 1;
  275. name[1] = EDID1_INFO_MANUFACTURER_NAME_CHAR2(*edid) + 'A' - 1;
  276. name[2] = EDID1_INFO_MANUFACTURER_NAME_CHAR3(*edid) + 'A' - 1;
  277. name[3] = '\0';
  278. }
  279. void edid_print_info(struct edid1_info *edid_info)
  280. {
  281. int i;
  282. char manufacturer[4];
  283. unsigned int have_timing = 0;
  284. uint32_t serial_number;
  285. if (edid_check_info(edid_info)) {
  286. printf("Not a valid EDID\n");
  287. return;
  288. }
  289. printf("EDID version: %d.%d\n",
  290. edid_info->version, edid_info->revision);
  291. printf("Product ID code: %04x\n", EDID1_INFO_PRODUCT_CODE(*edid_info));
  292. edid_get_manufacturer_name(edid_info, manufacturer);
  293. printf("Manufacturer: %s\n", manufacturer);
  294. serial_number = EDID1_INFO_SERIAL_NUMBER(*edid_info);
  295. if (serial_number != 0xffffffff) {
  296. if (strcmp(manufacturer, "MAG") == 0)
  297. serial_number -= 0x7000000;
  298. if (strcmp(manufacturer, "OQI") == 0)
  299. serial_number -= 456150000;
  300. if (strcmp(manufacturer, "VSC") == 0)
  301. serial_number -= 640000000;
  302. }
  303. printf("Serial number: %08x\n", serial_number);
  304. printf("Manufactured in week: %d year: %d\n",
  305. edid_info->week, edid_info->year + 1990);
  306. printf("Video input definition: %svoltage level %d%s%s%s%s%s\n",
  307. EDID1_INFO_VIDEO_INPUT_DIGITAL(*edid_info) ?
  308. "digital signal, " : "analog signal, ",
  309. EDID1_INFO_VIDEO_INPUT_VOLTAGE_LEVEL(*edid_info),
  310. EDID1_INFO_VIDEO_INPUT_BLANK_TO_BLACK(*edid_info) ?
  311. ", blank to black" : "",
  312. EDID1_INFO_VIDEO_INPUT_SEPARATE_SYNC(*edid_info) ?
  313. ", separate sync" : "",
  314. EDID1_INFO_VIDEO_INPUT_COMPOSITE_SYNC(*edid_info) ?
  315. ", composite sync" : "",
  316. EDID1_INFO_VIDEO_INPUT_SYNC_ON_GREEN(*edid_info) ?
  317. ", sync on green" : "",
  318. EDID1_INFO_VIDEO_INPUT_SERRATION_V(*edid_info) ?
  319. ", serration v" : "");
  320. printf("Monitor is %s\n",
  321. EDID1_INFO_FEATURE_RGB(*edid_info) ? "RGB" : "non-RGB");
  322. printf("Maximum visible display size: %d cm x %d cm\n",
  323. edid_info->max_size_horizontal,
  324. edid_info->max_size_vertical);
  325. printf("Power management features: %s%s, %s%s, %s%s\n",
  326. EDID1_INFO_FEATURE_ACTIVE_OFF(*edid_info) ?
  327. "" : "no ", "active off",
  328. EDID1_INFO_FEATURE_SUSPEND(*edid_info) ? "" : "no ", "suspend",
  329. EDID1_INFO_FEATURE_STANDBY(*edid_info) ? "" : "no ", "standby");
  330. printf("Estabilished timings:\n");
  331. if (EDID1_INFO_ESTABLISHED_TIMING_720X400_70(*edid_info))
  332. printf("\t720x400\t\t70 Hz (VGA 640x400, IBM)\n");
  333. if (EDID1_INFO_ESTABLISHED_TIMING_720X400_88(*edid_info))
  334. printf("\t720x400\t\t88 Hz (XGA2)\n");
  335. if (EDID1_INFO_ESTABLISHED_TIMING_640X480_60(*edid_info))
  336. printf("\t640x480\t\t60 Hz (VGA)\n");
  337. if (EDID1_INFO_ESTABLISHED_TIMING_640X480_67(*edid_info))
  338. printf("\t640x480\t\t67 Hz (Mac II, Apple)\n");
  339. if (EDID1_INFO_ESTABLISHED_TIMING_640X480_72(*edid_info))
  340. printf("\t640x480\t\t72 Hz (VESA)\n");
  341. if (EDID1_INFO_ESTABLISHED_TIMING_640X480_75(*edid_info))
  342. printf("\t640x480\t\t75 Hz (VESA)\n");
  343. if (EDID1_INFO_ESTABLISHED_TIMING_800X600_56(*edid_info))
  344. printf("\t800x600\t\t56 Hz (VESA)\n");
  345. if (EDID1_INFO_ESTABLISHED_TIMING_800X600_60(*edid_info))
  346. printf("\t800x600\t\t60 Hz (VESA)\n");
  347. if (EDID1_INFO_ESTABLISHED_TIMING_800X600_72(*edid_info))
  348. printf("\t800x600\t\t72 Hz (VESA)\n");
  349. if (EDID1_INFO_ESTABLISHED_TIMING_800X600_75(*edid_info))
  350. printf("\t800x600\t\t75 Hz (VESA)\n");
  351. if (EDID1_INFO_ESTABLISHED_TIMING_832X624_75(*edid_info))
  352. printf("\t832x624\t\t75 Hz (Mac II)\n");
  353. if (EDID1_INFO_ESTABLISHED_TIMING_1024X768_87I(*edid_info))
  354. printf("\t1024x768\t87 Hz Interlaced (8514A)\n");
  355. if (EDID1_INFO_ESTABLISHED_TIMING_1024X768_60(*edid_info))
  356. printf("\t1024x768\t60 Hz (VESA)\n");
  357. if (EDID1_INFO_ESTABLISHED_TIMING_1024X768_70(*edid_info))
  358. printf("\t1024x768\t70 Hz (VESA)\n");
  359. if (EDID1_INFO_ESTABLISHED_TIMING_1024X768_75(*edid_info))
  360. printf("\t1024x768\t75 Hz (VESA)\n");
  361. if (EDID1_INFO_ESTABLISHED_TIMING_1280X1024_75(*edid_info))
  362. printf("\t1280x1024\t75 (VESA)\n");
  363. if (EDID1_INFO_ESTABLISHED_TIMING_1152X870_75(*edid_info))
  364. printf("\t1152x870\t75 (Mac II)\n");
  365. /* Standard timings. */
  366. printf("Standard timings:\n");
  367. for (i = 0; i < ARRAY_SIZE(edid_info->standard_timings); i++) {
  368. unsigned int aspect = 10000;
  369. unsigned int x, y;
  370. unsigned char xres, vfreq;
  371. xres = EDID1_INFO_STANDARD_TIMING_XRESOLUTION(*edid_info, i);
  372. vfreq = EDID1_INFO_STANDARD_TIMING_VFREQ(*edid_info, i);
  373. if ((xres != vfreq) ||
  374. ((xres != 0) && (xres != 1)) ||
  375. ((vfreq != 0) && (vfreq != 1))) {
  376. switch (EDID1_INFO_STANDARD_TIMING_ASPECT(*edid_info,
  377. i)) {
  378. case ASPECT_625:
  379. aspect = 6250;
  380. break;
  381. case ASPECT_75:
  382. aspect = 7500;
  383. break;
  384. case ASPECT_8:
  385. aspect = 8000;
  386. break;
  387. case ASPECT_5625:
  388. aspect = 5625;
  389. break;
  390. }
  391. x = (xres + 31) * 8;
  392. y = x * aspect / 10000;
  393. printf("\t%dx%d%c\t%d Hz\n", x, y,
  394. x > 1000 ? ' ' : '\t', (vfreq & 0x3f) + 60);
  395. have_timing = 1;
  396. }
  397. }
  398. /* Detailed timing information. */
  399. for (i = 0; i < ARRAY_SIZE(edid_info->monitor_details.descriptor);
  400. i++) {
  401. edid_print_dtd(&edid_info->monitor_details.descriptor[i],
  402. &have_timing);
  403. }
  404. if (!have_timing)
  405. printf("\tNone\n");
  406. }