blob: c4c5e455a65275b6396b33e56e40d3336bb65b40 [file] [log] [blame]
Ronald G. Minnichb3b72f32013-03-13 14:35:01 -07001/*
2 * Copyright 2013 Google Inc.
3 * Copyright 2006-2012 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 * on the rights to use, copy, modify, merge, publish, distribute, sub
9 * license, and/or sell copies of the Software, and to permit persons to whom
10 * the Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice (including the next
13 * paragraph) shall be included in all copies or substantial portions of the
14 * Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
20 * IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
21 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
22 */
23/* Author: Adam Jackson <ajax@nwnk.net> */
24
25/* this is a pretty robust parser for EDID, and we're tasked with parsing
26 * an arbitrary panel. We will pass it a raw EDID block and a struct which
27 * it must fill in with values. The set of values we need is pretty limited
28 * at present.
29 */
30
31#include <stddef.h>
32#include <console/console.h>
33#include <arch/io.h>
34#include <arch/byteorder.h>
35#include <stdint.h>
36#include <string.h>
37#include <stdlib.h>
38#include <edid.h>
Ronald G. Minnichb2893a012013-04-23 10:59:11 -070039#include <boot/coreboot_tables.h>
40#include <vbe.h>
Ronald G. Minnichb3b72f32013-03-13 14:35:01 -070041
42static int claims_one_point_oh = 0;
43static int claims_one_point_two = 0;
44static int claims_one_point_three = 0;
45static int claims_one_point_four = 0;
46static int nonconformant_digital_display = 0;
47static int nonconformant_extension = 0;
48static int did_detailed_timing = 0;
49static int has_name_descriptor = 0;
50static int name_descriptor_terminated = 0;
51static int has_range_descriptor = 0;
52static int has_preferred_timing = 0;
53static int has_valid_checksum = 0;
54static int has_valid_cvt = 1;
55static int has_valid_dummy_block = 1;
56static int has_valid_week = 0;
57static int has_valid_year = 0;
58static int has_valid_detailed_blocks = 0;
59static int has_valid_extension_count = 0;
60static int has_valid_descriptor_ordering = 1;
61static int has_valid_descriptor_pad = 1;
62static int has_valid_range_descriptor = 1;
63static int has_valid_max_dotclock = 1;
64static int has_valid_string_termination = 1;
65static int manufacturer_name_well_formed = 0;
66static int seen_non_detailed_descriptor = 0;
67
68static int warning_excessive_dotclock_correction = 0;
69static int warning_zero_preferred_refresh = 0;
70
71static int conformant = 1;
72
Ronald G. Minnichb2893a012013-04-23 10:59:11 -070073static int vbe_valid;
74static struct lb_framebuffer edid_fb;
75
Ronald G. Minnichb3b72f32013-03-13 14:35:01 -070076static char *manufacturer_name(struct edid *out, unsigned char *x)
77{
78 out->manuf_name[0] = ((x[0] & 0x7C) >> 2) + '@';
79 out->manuf_name[1] = ((x[0] & 0x03) << 3) + ((x[1] & 0xE0) >> 5) + '@';
80 out->manuf_name[2] = (x[1] & 0x1F) + '@';
81 out->manuf_name[3] = 0;
82
83 if (isupper(out->manuf_name[0]) &&
84 isupper(out->manuf_name[1]) &&
85 isupper(out->manuf_name[2]))
86 manufacturer_name_well_formed = 1;
87
88 return out->manuf_name;
89}
90
91static int
92detailed_cvt_descriptor(struct edid *out, unsigned char *x, int first)
93{
94 const unsigned char empty[3] = { 0, 0, 0 };
95 const char *names[] = { "50", "60", "75", "85" };
96 int width = 0, height = 0;
97 int valid = 1;
98 int fifty = 0, sixty = 0, seventyfive = 0, eightyfive = 0, reduced = 0;
99
100 if (!first && !memcmp(x, empty, 3))
101 return valid;
102
103 height = x[0];
104 height |= (x[1] & 0xf0) << 4;
105 height++;
106 height *= 2;
107
108 switch (x[1] & 0x0c) {
109 case 0x00:
110 width = (height * 4) / 3; break;
111 case 0x04:
112 width = (height * 16) / 9; break;
113 case 0x08:
114 width = (height * 16) / 10; break;
115 case 0x0c:
116 width = (height * 15) / 9; break;
117 }
118
119 if (x[1] & 0x03)
120 valid = 0;
121 if (x[2] & 0x80)
122 valid = 0;
123 if (!(x[2] & 0x1f))
124 valid = 0;
125
126 fifty = (x[2] & 0x10);
127 sixty = (x[2] & 0x08);
128 seventyfive = (x[2] & 0x04);
129 eightyfive = (x[2] & 0x02);
130 reduced = (x[2] & 0x01);
131
132 if (!valid) {
133 printk(BIOS_SPEW, " (broken)\n");
134 } else {
135 printk(BIOS_SPEW, " %dx%d @ ( %s%s%s%s%s) Hz (%s%s preferred)\n",
136 width, height,
137 fifty ? "50 " : "",
138 sixty ? "60 " : "",
139 seventyfive ? "75 " : "",
140 eightyfive ? "85 " : "",
141 reduced ? "60RB " : "",
142 names[(x[2] & 0x60) >> 5],
143 (((x[2] & 0x60) == 0x20) && reduced) ? "RB" : "");
144 }
145
146 return valid;
147}
148
149static int isalnum(char x)
150{
151 if (x >= 'a' && x <= 'z')
152 return 1;
153 if (x >= 'A' && x <= 'Z')
154 return 1;
155 if (x >= '0' && x <= '9')
156 return 1;
157 return 0;
158
159}
160/* extract a string from a detailed subblock, checking for termination */
161static char *
162extract_string(unsigned char *x, int *valid_termination, int len)
163{
164 static char ret[128];
165 int i, seen_newline = 0;
166
167 memset(ret, 0, sizeof(ret));
168
169 for (i = 0; i < len; i++) {
170 if (isalnum(x[i])) {
171 ret[i] = x[i];
172 } else if (!seen_newline) {
173 if (x[i] == 0x0a) {
174 seen_newline = 1;
175 } else {
176 *valid_termination = 0;
177 return ret;
178 }
179 } else {
180 if (x[i] != 0x20) {
181 *valid_termination = 0;
182 return ret;
183 }
184 }
185 }
186
187 return ret;
188}
189
190/* 1 means valid data */
191static int
192detailed_block(struct edid *out, unsigned char *x, int in_extension)
193{
194 static unsigned char name[53];
195 int i;
196#if 1
197 printk(BIOS_SPEW, "Hex of detail: ");
198 for (i = 0; i < 18; i++)
199 printk(BIOS_SPEW, "%02x", x[i]);
200 printk(BIOS_SPEW, "\n");
201#endif
202
203 if (x[0] == 0 && x[1] == 0) {
204 /* Monitor descriptor block, not detailed timing descriptor. */
205 if (x[2] != 0) {
206 /* 1.3, 3.10.3 */
207 printk(BIOS_SPEW, "Monitor descriptor block has byte 2 nonzero (0x%02x)\n",
208 x[2]);
209 has_valid_descriptor_pad = 0;
210 }
211 if (x[3] != 0xfd && x[4] != 0x00) {
212 /* 1.3, 3.10.3 */
213 printk(BIOS_SPEW, "Monitor descriptor block has byte 4 nonzero (0x%02x)\n",
214 x[4]);
215 has_valid_descriptor_pad = 0;
216 }
217
218 seen_non_detailed_descriptor = 1;
219 if (x[3] <= 0xF) {
220 /*
221 * in principle we can decode these, if we know what they are.
222 * 0x0f seems to be common in laptop panels.
223 * 0x0e is used by EPI: http://www.epi-standard.org/
224 */
225 printk(BIOS_SPEW, "Manufacturer-specified data, tag %d\n", x[3]);
226 return 0;
227 }
228 switch (x[3]) {
229 case 0x10:
230 printk(BIOS_SPEW, "Dummy block\n");
231 for (i = 5; i < 18; i++)
232 if (x[i] != 0x00)
233 has_valid_dummy_block = 0;
234 return 0;
235 case 0xF7:
236 /* TODO */
237 printk(BIOS_SPEW, "Established timings III\n");
238 return 0;
239 case 0xF8:
240 {
241 int valid_cvt = 1; /* just this block */
242 printk(BIOS_SPEW, "CVT 3-byte code descriptor:\n");
243 if (x[5] != 0x01) {
244 has_valid_cvt = 0;
245 return 0;
246 }
247 for (i = 0; i < 4; i++)
248 valid_cvt &= detailed_cvt_descriptor(out, x + 6 + (i * 3), (i == 0));
249 has_valid_cvt &= valid_cvt;
250 return 0;
251 }
252 case 0xF9:
253 /* TODO */
254 printk(BIOS_SPEW, "Color management data\n");
255 return 0;
256 case 0xFA:
257 /* TODO */
258 printk(BIOS_SPEW, "More standard timings\n");
259 return 0;
260 case 0xFB:
261 /* TODO */
262 printk(BIOS_SPEW, "Color point\n");
263 return 0;
264 case 0xFC:
265 /* XXX should check for spaces after the \n */
266 /* XXX check: terminated with 0x0A, padded with 0x20 */
267 has_name_descriptor = 1;
268 if (strchr((char *)name, '\n')) return 0;
269 /* avoid strncat
270 strncat((char *)name, (char *)x + 5, 13);
271 */
272 if (strchr((char *)name, '\n') || strchr((char *)x+5, '\n')) {
273 name_descriptor_terminated = 1;
274 /* later.
275 printk(BIOS_SPEW, "Monitor name: %s\n",
276 extract_string(name, &has_valid_string_termination,
277 strlen((char *)name)));
278 */
279 }
280 return 0;
281 case 0xFD:
282 {
283 int h_max_offset = 0, h_min_offset = 0;
284 int v_max_offset = 0, v_min_offset = 0;
285 int is_cvt = 0;
286 has_range_descriptor = 1;
287 out->range_class = "";
288 /*
289 * XXX todo: implement feature flags, vtd blocks
290 * XXX check: ranges are well-formed; block termination if no vtd
291 */
292 if (claims_one_point_four) {
293 if (x[4] & 0x02) {
294 v_max_offset = 255;
295 if (x[4] & 0x01) {
296 v_min_offset = 255;
297 }
298 }
299 if (x[4] & 0x04) {
300 h_max_offset = 255;
301 if (x[4] & 0x03) {
302 h_min_offset = 255;
303 }
304 }
305 } else if (x[4]) {
306 has_valid_range_descriptor = 0;
307 }
308
309 /*
310 * despite the values, this is not a bitfield.
311 */
312 switch (x[10]) {
313 case 0x00: /* default gtf */
314 out->range_class = "GTF";
315 break;
316 case 0x01: /* range limits only */
317 out->range_class = "bare limits";
318 if (!claims_one_point_four)
319 has_valid_range_descriptor = 0;
320 break;
321 case 0x02: /* secondary gtf curve */
322 out->range_class = "GTF with icing";
323 break;
324 case 0x04: /* cvt */
325 out->range_class = "CVT";
326 is_cvt = 1;
327 if (!claims_one_point_four)
328 has_valid_range_descriptor = 0;
329 break;
330 default: /* invalid */
331 has_valid_range_descriptor = 0;
332 out->range_class = "invalid";
333 break;
334 }
335
336 if (x[5] + v_min_offset > x[6] + v_max_offset)
337 has_valid_range_descriptor = 0;
338 if (x[7] + h_min_offset > x[8] + h_max_offset)
339 has_valid_range_descriptor = 0;
340 printk(BIOS_SPEW, "Monitor ranges (%s): %d-%dHz V, %d-%dkHz H",
341 out->range_class,
342 x[5] + v_min_offset, x[6] + v_max_offset,
343 x[7] + h_min_offset, x[8] + h_max_offset);
344 if (x[9])
345 printk(BIOS_SPEW, ", max dotclock %dMHz\n", x[9] * 10);
346 else {
347 if (claims_one_point_four)
348 has_valid_max_dotclock = 0;
349 printk(BIOS_SPEW, "\n");
350 }
351
352 if (is_cvt) {
353 int max_h_pixels = 0;
354
355 printk(BIOS_SPEW, "CVT version %d.%d\n", x[11] & 0xf0 >> 4, x[11] & 0x0f);
356
357 if (x[12] & 0xfc) {
358 int raw_offset = (x[12] & 0xfc) >> 2;
359 printk(BIOS_SPEW, "Real max dotclock: %.2fMHz\n",
360 (x[9] * 10) - (raw_offset * 0.25));
361 if (raw_offset >= 40)
362 warning_excessive_dotclock_correction = 1;
363 }
364
365 max_h_pixels = x[12] & 0x03;
366 max_h_pixels <<= 8;
367 max_h_pixels |= x[13];
368 max_h_pixels *= 8;
369 if (max_h_pixels)
370 printk(BIOS_SPEW, "Max active pixels per line: %d\n", max_h_pixels);
371
372 printk(BIOS_SPEW, "Supported aspect ratios: %s %s %s %s %s\n",
373 x[14] & 0x80 ? "4:3" : "",
374 x[14] & 0x40 ? "16:9" : "",
375 x[14] & 0x20 ? "16:10" : "",
376 x[14] & 0x10 ? "5:4" : "",
377 x[14] & 0x08 ? "15:9" : "");
378 if (x[14] & 0x07)
379 has_valid_range_descriptor = 0;
380
381 printk(BIOS_SPEW, "Preferred aspect ratio: ");
382 switch((x[15] & 0xe0) >> 5) {
383 case 0x00: printk(BIOS_SPEW, "4:3"); break;
384 case 0x01: printk(BIOS_SPEW, "16:9"); break;
385 case 0x02: printk(BIOS_SPEW, "16:10"); break;
386 case 0x03: printk(BIOS_SPEW, "5:4"); break;
387 case 0x04: printk(BIOS_SPEW, "15:9"); break;
388 default: printk(BIOS_SPEW, "(broken)"); break;
389 }
390 printk(BIOS_SPEW, "\n");
391
392 if (x[15] & 0x04)
393 printk(BIOS_SPEW, "Supports CVT standard blanking\n");
394 if (x[15] & 0x10)
395 printk(BIOS_SPEW, "Supports CVT reduced blanking\n");
396
397 if (x[15] & 0x07)
398 has_valid_range_descriptor = 0;
399
400 if (x[16] & 0xf0) {
401 printk(BIOS_SPEW, "Supported display scaling:\n");
402 if (x[16] & 0x80)
403 printk(BIOS_SPEW, " Horizontal shrink\n");
404 if (x[16] & 0x40)
405 printk(BIOS_SPEW, " Horizontal stretch\n");
406 if (x[16] & 0x20)
407 printk(BIOS_SPEW, " Vertical shrink\n");
408 if (x[16] & 0x10)
409 printk(BIOS_SPEW, " Vertical stretch\n");
410 }
411
412 if (x[16] & 0x0f)
413 has_valid_range_descriptor = 0;
414
415 if (x[17])
416 printk(BIOS_SPEW, "Preferred vertical refresh: %d Hz\n", x[17]);
417 else
418 warning_zero_preferred_refresh = 1;
419 }
420
421 /*
422 * Slightly weird to return a global, but I've never seen any
423 * EDID block wth two range descriptors, so it's harmless.
424 */
425 return 0;
426 }
427 case 0xFE:
428 /*
429 * TODO: Two of these in a row, in the third and fourth slots,
430 * seems to be specified by SPWG: http://www.spwg.org/
431 */
432 printk(BIOS_SPEW, "ASCII string: %s\n",
433 extract_string(x + 5, &has_valid_string_termination, 13));
434 return 0;
435 case 0xFF:
436 printk(BIOS_SPEW, "Serial number: %s\n",
437 extract_string(x + 5, &has_valid_string_termination, 13));
438 return 0;
439 default:
440 printk(BIOS_SPEW, "Unknown monitor description type %d\n", x[3]);
441 return 0;
442 }
443 }
444
445 if (seen_non_detailed_descriptor && !in_extension) {
446 has_valid_descriptor_ordering = 0;
447 }
448
449 if (! did_detailed_timing){
450 out->ha = (x[2] + ((x[4] & 0xF0) << 4));
451 out->hbl = (x[3] + ((x[4] & 0x0F) << 8));
452 out->hso = (x[8] + ((x[11] & 0xC0) << 2));
453 out->hspw = (x[9] + ((x[11] & 0x30) << 4));
454 out->hborder = x[15];
455 out->va = (x[5] + ((x[7] & 0xF0) << 4));
456 out->vbl = (x[6] + ((x[7] & 0x0F) << 8));
457 out->vso = ((x[10] >> 4) + ((x[11] & 0x0C) << 2));
458 out->vspw = ((x[10] & 0x0F) + ((x[11] & 0x03) << 4));
459 out->vborder = x[16];
460 printk(BIOS_SPEW, "Did detailed timing\n");
461 }
462 did_detailed_timing = 1;
463 switch ((x[17] & 0x18) >> 3) {
464 case 0x00:
465 out->syncmethod = " analog composite";
466 break;
467 case 0x01:
468 out->syncmethod = " bipolar analog composite";
469 break;
470 case 0x02:
471 out->syncmethod = " digital composite";
472 break;
473 case 0x03:
474 out->syncmethod = "";
475 break;
476 }
477 out->pvsync = (x[17] & (1 << 2)) ? '+' : '-';
478 out->phsync = (x[17] & (1 << 1)) ? '+' : '-';
479 switch (x[17] & 0x61) {
480 case 0x20:
481 out->stereo = "field sequential L/R";
482 break;
483 case 0x40:
484 out->stereo = "field sequential R/L";
485 break;
486 case 0x21:
487 out->stereo = "interleaved right even";
488 break;
489 case 0x41:
490 out->stereo = "interleaved left even";
491 break;
492 case 0x60:
493 out->stereo = "four way interleaved";
494 break;
495 case 0x61:
496 out->stereo = "side by side interleaved";
497 break;
498 default:
499 out->stereo = "";
500 break;
501 }
502
503 printk(BIOS_SPEW, "Detailed mode (IN HEX): Clock %d0 KHz, %x mm x %x mm\n"
504 " %04x %04x %04x %04x hborder %x\n"
505 " %04x %04x %04x %04x vborder %x\n"
506 " %chsync %cvsync%s%s %s\n",
507 (x[0] + (x[1] << 8)),
508 (x[12] + ((x[14] & 0xF0) << 4)),
509 (x[13] + ((x[14] & 0x0F) << 8)),
510 out->ha, out->ha + out->hso, out->ha + out->hso + out->hspw,
511 out->ha + out->hbl, out->hborder,
512 out->va, out->va + out->vso, out->va + out->vso + out->vspw,
513 out->va + out->vbl, out->vborder,
514 out->phsync, out->pvsync,
515 out->syncmethod, x[17] & 0x80 ?" interlaced" : "",
516 out->stereo
517 );
518 return 1;
519}
520
521static int
522do_checksum(unsigned char *x)
523{
524 printk(BIOS_SPEW, "Checksum: 0x%hx", x[0x7f]);
525 {
526 unsigned char sum = 0;
527 int i;
528 for (i = 0; i < 128; i++)
529 sum += x[i];
530 if (sum) {
531 printk(BIOS_SPEW, " (should be 0x%hx)", (unsigned char)(x[0x7f] - sum));
532 has_valid_checksum = 0;
533 } else {
534 has_valid_checksum = 1;
535 printk(BIOS_SPEW, " (valid)");
536 }
537 }
538 printk(BIOS_SPEW, "\n");
539 return has_valid_checksum;
540}
541
542/* CEA extension */
543
544static const char *
545audio_format(unsigned char x)
546{
547 switch (x) {
548 case 0: return "RESERVED";
549 case 1: return "Linear PCM";
550 case 2: return "AC-3";
551 case 3: return "MPEG 1 (Layers 1 & 2)";
552 case 4: return "MPEG 1 Layer 3 (MP3)";
553 case 5: return "MPEG2 (multichannel)";
554 case 6: return "AAC";
555 case 7: return "DTS";
556 case 8: return "ATRAC";
557 case 9: return "One Bit Audio";
558 case 10: return "Dolby Digital+";
559 case 11: return "DTS-HD";
560 case 12: return "MAT (MLP)";
561 case 13: return "DST";
562 case 14: return "WMA Pro";
563 case 15: return "RESERVED";
564 }
565 return "BROKEN"; /* can't happen */
566}
567
568static void
569cea_audio_block(unsigned char *x)
570{
571 int i, format;
572 int length = x[0] & 0x1f;
573
574 if (length % 3) {
575 printk(BIOS_SPEW, "Broken CEA audio block length %d\n", length);
576 /* XXX non-conformant */
577 return;
578 }
579
580 for (i = 1; i < length; i += 3) {
581 format = (x[i] & 0x78) >> 3;
582 printk(BIOS_SPEW, " %s, max channels %d\n", audio_format(format),
583 x[i] & 0x07);
584 printk(BIOS_SPEW, " Supported sample rates (kHz):%s%s%s%s%s%s%s\n",
585 (x[i+1] & 0x40) ? " 192" : "",
586 (x[i+1] & 0x20) ? " 176.4" : "",
587 (x[i+1] & 0x10) ? " 96" : "",
588 (x[i+1] & 0x08) ? " 88.2" : "",
589 (x[i+1] & 0x04) ? " 48" : "",
590 (x[i+1] & 0x02) ? " 44.1" : "",
591 (x[i+1] & 0x01) ? " 32" : "");
592 if (format == 1) {
593 printk(BIOS_SPEW, " Supported sample sizes (bits):%s%s%s\n",
594 (x[2] & 0x04) ? " 24" : "",
595 (x[2] & 0x02) ? " 20" : "",
596 (x[2] & 0x01) ? " 16" : "");
597 } else if (format <= 8) {
598 printk(BIOS_SPEW, " Maximum bit rate: %d kHz\n", x[2] * 8);
599 }
600 }
601}
602
603static void
604cea_video_block(unsigned char *x)
605{
606 int i;
607 int length = x[0] & 0x1f;
608
609 for (i = 1; i < length; i++)
610 printk(BIOS_SPEW," VIC %02d %s\n", x[i] & 0x7f,
611 x[i] & 0x80 ? "(native)" : "");
612}
613
614static void
615cea_hdmi_block(struct edid *out, unsigned char *x)
616{
617 int length = x[0] & 0x1f;
618
619 printk(BIOS_SPEW, " (HDMI)\n");
620 printk(BIOS_SPEW,
621 " Source physical address %d.%d.%d.%d\n",
622 x[4] >> 4, x[4] & 0x0f, x[5] >> 4, x[5] & 0x0f);
623
624 if (length > 5) {
625 if (x[6] & 0x80)
626 printk(BIOS_SPEW, " Supports_AI\n");
627 if (x[6] & 0x40)
628 printk(BIOS_SPEW, " DC_48bit\n");
629 if (x[6] & 0x20)
630 printk(BIOS_SPEW, " DC_36bit\n");
631 if (x[6] & 0x10)
632 printk(BIOS_SPEW, " DC_30bit\n");
633 if (x[6] & 0x08)
634 printk(BIOS_SPEW, " DC_Y444\n");
635 /* two reserved */
636 if (x[6] & 0x01)
637 printk(BIOS_SPEW, " DVI_Dual\n");
638 }
639
640 if (length > 6)
641 printk(BIOS_SPEW, " Maximum TMDS clock: %dMHz\n", x[7] * 5);
642
643 /* XXX the walk here is really ugly, and needs to be length-checked */
644 if (length > 7) {
645 int b = 0;
646
647 if (x[8] & 0x80) {
648 printk(BIOS_SPEW, " Video latency: %d\n", x[9 + b]);
649 printk(BIOS_SPEW, " Audio latency: %d\n", x[10 + b]);
650 b += 2;
651 }
652
653 if (x[8] & 0x40) {
654 printk(BIOS_SPEW, " Interlaced video latency: %d\n", x[9 + b]);
655 printk(BIOS_SPEW, " Interlaced audio latency: %d\n", x[10 + b]);
656 b += 2;
657 }
658
659 if (x[8] & 0x20) {
660 int mask = 0, formats = 0;
661 int len_xx, len_3d;
662 printk(BIOS_SPEW, " Extended HDMI video details:\n");
663 if (x[9 + b] & 0x80)
664 printk(BIOS_SPEW, " 3D present\n");
665 if ((x[9 + b] & 0x60) == 0x20) {
666 printk(BIOS_SPEW, " All advertised VICs are 3D-capable\n");
667 formats = 1;
668 }
669 if ((x[9 + b] & 0x60) == 0x40) {
670 printk(BIOS_SPEW, " 3D-capable-VIC mask present\n");
671 formats = 1;
672 mask = 1;
673 }
674 switch (x[9 + b] & 0x18) {
675 case 0x00: break;
676 case 0x08:
677 printk(BIOS_SPEW, " Base EDID image size is aspect ratio\n");
678 break;
679 case 0x10:
680 printk(BIOS_SPEW, " Base EDID image size is in units of 1cm\n");
681 break;
682 case 0x18:
683 printk(BIOS_SPEW, " Base EDID image size is in units of 5cm\n");
684 break;
685 }
686 len_xx = (x[10 + b] & 0xe0) >> 5;
687 len_3d = (x[10 + b] & 0x1f) >> 0;
688 b += 2;
689
690 if (len_xx) {
691 printk(BIOS_SPEW, " Skipping %d bytes that HDMI refuses to publicly"
692 " document\n", len_xx);
693 b += len_xx;
694 }
695
696 if (len_3d) {
697 if (formats) {
698 if (x[9 + b] & 0x01)
699 printk(BIOS_SPEW, " Side-by-side 3D supported\n");
700 if (x[10 + b] & 0x40)
701 printk(BIOS_SPEW, " Top-and-bottom 3D supported\n");
702 if (x[10 + b] & 0x01)
703 printk(BIOS_SPEW, " Frame-packing 3D supported\n");
704 b += 2;
705 }
706 if (mask) {
707 int i;
708 printk(BIOS_SPEW, " 3D VIC indices:");
709 /* worst bit ordering ever */
710 for (i = 0; i < 8; i++)
711 if (x[10 + b] & (1 << i))
712 printk(BIOS_SPEW, " %d", i);
713 for (i = 0; i < 8; i++)
714 if (x[9 + b] & (1 << i))
715 printk(BIOS_SPEW, " %d", i + 8);
716 printk(BIOS_SPEW, "\n");
717 b += 2;
718 }
719
720 /*
721 * XXX list of nibbles:
722 * 2D_VIC_Order_X
723 * 3D_Structure_X
724 * (optionally: 3D_Detail_X and reserved)
725 */
726 }
727
728 }
729 }
730}
731
732static void
733cea_block(struct edid *out, unsigned char *x)
734{
735 unsigned int oui;
736
737 switch ((x[0] & 0xe0) >> 5) {
738 case 0x01:
739 printk(BIOS_SPEW, " Audio data block\n");
740 cea_audio_block(x);
741 break;
742 case 0x02:
743 printk(BIOS_SPEW, " Video data block\n");
744 cea_video_block(x);
745 break;
746 case 0x03:
747 /* yes really, endianness lols */
748 oui = (x[3] << 16) + (x[2] << 8) + x[1];
749 printk(BIOS_SPEW, " Vendor-specific data block, OUI %06x", oui);
750 if (oui == 0x000c03)
751 cea_hdmi_block(out, x);
752 else
753 printk(BIOS_SPEW, "\n");
754 break;
755 case 0x04:
756 printk(BIOS_SPEW, " Speaker allocation data block\n");
757 break;
758 case 0x05:
759 printk(BIOS_SPEW, " VESA DTC data block\n");
760 break;
761 case 0x07:
762 printk(BIOS_SPEW, " Extended tag: ");
763 switch (x[1]) {
764 case 0x00:
765 printk(BIOS_SPEW, "video capability data block\n");
766 break;
767 case 0x01:
768 printk(BIOS_SPEW, "vendor-specific video data block\n");
769 break;
770 case 0x02:
771 printk(BIOS_SPEW, "VESA video display device information data block\n");
772 break;
773 case 0x03:
774 printk(BIOS_SPEW, "VESA video data block\n");
775 break;
776 case 0x04:
777 printk(BIOS_SPEW, "HDMI video data block\n");
778 break;
779 case 0x05:
780 printk(BIOS_SPEW, "Colorimetry data block\n");
781 break;
782 case 0x10:
783 printk(BIOS_SPEW, "CEA miscellaneous audio fields\n");
784 break;
785 case 0x11:
786 printk(BIOS_SPEW, "Vendor-specific audio data block\n");
787 break;
788 case 0x12:
789 printk(BIOS_SPEW, "HDMI audio data block\n");
790 break;
791 default:
792 if (x[1] >= 6 && x[1] <= 15)
793 printk(BIOS_SPEW, "Reserved video block (%02x)\n", x[1]);
794 else if (x[1] >= 19 && x[1] <= 31)
795 printk(BIOS_SPEW, "Reserved audio block (%02x)\n", x[1]);
796 else
797 printk(BIOS_SPEW, "Unknown (%02x)\n", x[1]);
798 break;
799 }
800 break;
801 default:
802 {
803 int tag = (*x & 0xe0) >> 5;
804 int length = *x & 0x1f;
805 printk(BIOS_SPEW,
806 " Unknown tag %d, length %d (raw %02x)\n", tag, length, *x);
807 break;
808 }
809 }
810}
811
812static int
813parse_cea(struct edid *out, unsigned char *x)
814{
815 int ret = 0;
816 int version = x[1];
817 int offset = x[2];
818 unsigned char *detailed;
819
820 if (version >= 1) do {
821 if (version == 1 && x[3] != 0)
822 ret = 1;
823
824 if (offset < 4)
825 break;
826
827 if (version < 3) {
828 printk(BIOS_SPEW, "%d 8-byte timing descriptors\n", (offset - 4) / 8);
829 if (offset - 4 > 0)
830 /* do stuff */ ;
831 } else if (version == 3) {
832 int i;
833 printk(BIOS_SPEW, "%d bytes of CEA data\n", offset - 4);
834 for (i = 4; i < offset; i += (x[i] & 0x1f) + 1) {
835 cea_block(out, x + i);
836 }
837 }
838
839 if (version >= 2) {
840 if (x[3] & 0x80)
841 printk(BIOS_SPEW, "Underscans PC formats by default\n");
842 if (x[3] & 0x40)
843 printk(BIOS_SPEW, "Basic audio support\n");
844 if (x[3] & 0x20)
845 printk(BIOS_SPEW, "Supports YCbCr 4:4:4\n");
846 if (x[3] & 0x10)
847 printk(BIOS_SPEW, "Supports YCbCr 4:2:2\n");
848 printk(BIOS_SPEW, "%d native detailed modes\n", x[3] & 0x0f);
849 }
850
851 for (detailed = x + offset; detailed + 18 < x + 127; detailed += 18)
852 if (detailed[0])
853 detailed_block(out, detailed, 1);
854 } while (0);
855
856 do_checksum(x);
857
858 return ret;
859}
860
861/* generic extension code */
862
863static void
864extension_version(struct edid *out, unsigned char *x)
865{
866 printk(BIOS_SPEW, "Extension version: %d\n", x[1]);
867}
868
869static int
870parse_extension(struct edid *out, unsigned char *x)
871{
872 int conformant_extension = 0;
873 printk(BIOS_SPEW, "\n");
874
875 switch(x[0]) {
876 case 0x02:
877 printk(BIOS_SPEW, "CEA extension block\n");
878 extension_version(out, x);
879 conformant_extension = parse_cea(out, x);
880 break;
881 case 0x10: printk(BIOS_SPEW, "VTB extension block\n"); break;
882 case 0x40: printk(BIOS_SPEW, "DI extension block\n"); break;
883 case 0x50: printk(BIOS_SPEW, "LS extension block\n"); break;
884 case 0x60: printk(BIOS_SPEW, "DPVL extension block\n"); break;
885 case 0xF0: printk(BIOS_SPEW, "Block map\n"); break;
886 case 0xFF: printk(BIOS_SPEW, "Manufacturer-specific extension block\n");
887 default:
888 printk(BIOS_SPEW, "Unknown extension block\n");
889 break;
890 }
891
892 printk(BIOS_SPEW, "\n");
893
894 return conformant_extension;
895}
896
897static const struct {
898 int x, y, refresh;
899} established_timings[] = {
900 /* 0x23 bit 7 - 0 */
901 {720, 400, 70},
902 {720, 400, 88},
903 {640, 480, 60},
904 {640, 480, 67},
905 {640, 480, 72},
906 {640, 480, 75},
907 {800, 600, 56},
908 {800, 600, 60},
909 /* 0x24 bit 7 - 0 */
910 {800, 600, 72},
911 {800, 600, 75},
912 {832, 624, 75},
913 {1280, 768, 87},
914 {1024, 768, 60},
915 {1024, 768, 70},
916 {1024, 768, 75},
917 {1280, 1024, 75},
918 /* 0x25 bit 7*/
919 {1152, 870, 75},
920};
921
922static void print_subsection(const char *name, unsigned char *edid, int start,
923 int end)
924{
925 int i;
926
927 printk(BIOS_SPEW, "%s:", name);
928 for (i = strlen(name); i < 15; i++)
929 printk(BIOS_SPEW, " ");
930 for (i = start; i <= end; i++)
931 printk(BIOS_SPEW, " %02x", edid[i]);
932 printk(BIOS_SPEW, "\n");
933}
934
935static void dump_breakdown(unsigned char *edid)
936{
937 printk(BIOS_SPEW, "Extracted contents:\n");
938 print_subsection("header", edid, 0, 7);
939 print_subsection("serial number", edid, 8, 17);
940 print_subsection("version", edid,18, 19);
941 print_subsection("basic params", edid, 20, 24);
942 print_subsection("chroma info", edid, 25, 34);
943 print_subsection("established", edid, 35, 37);
944 print_subsection("standard", edid, 38, 53);
945 print_subsection("descriptor 1", edid, 54, 71);
946 print_subsection("descriptor 2", edid, 72, 89);
947 print_subsection("descriptor 3", edid, 90, 107);
948 print_subsection("descriptor 4", edid, 108, 125);
949 print_subsection("extensions", edid, 126, 126);
950 print_subsection("checksum", edid, 127, 127);
951 printk(BIOS_SPEW, "\n");
952}
953
954/*
955 * Given a raw edid bloc, decode it into a form
956 * that other parts of coreboot can use -- mainly
957 * graphics bringup functions. The raw block is
958 * required to be 128 bytes long, per the standard,
959 * but we have no way of checking this minimum length.
960 * We accept what we are given.
961 */
962int decode_edid(unsigned char *edid, int size, struct edid *out)
963{
964 int analog, i;
965
966 dump_breakdown(edid);
967
968 if (!edid || memcmp(edid, "\x00\xFF\xFF\xFF\xFF\xFF\xFF\x00", 8)) {
969 printk(BIOS_SPEW, "No header found\n");
970 return 1;
971 }
972 memset(out, 0, sizeof(*out));
973 manufacturer_name(out, edid + 0x08);
974 out->model = (unsigned short)(edid[0x0A] + (edid[0x0B] << 8));
975 out->serial = (unsigned int)(edid[0x0C] + (edid[0x0D] << 8)
976 + (edid[0x0E] << 16) + (edid[0x0F] << 24));
977
978 printk(BIOS_SPEW, "Manufacturer: %s Model %x Serial Number %u\n",
979 out->manuf_name,
980 (unsigned short)(edid[0x0A] + (edid[0x0B] << 8)),
981 (unsigned int)(edid[0x0C] + (edid[0x0D] << 8)
982 + (edid[0x0E] << 16) + (edid[0x0F] << 24)));
983 /* XXX need manufacturer ID table */
984
985 if (edid[0x10] < 55 || edid[0x10] == 0xff) {
986 has_valid_week = 1;
987 if (edid[0x11] > 0x0f) {
988 if (edid[0x10] == 0xff) {
989 has_valid_year = 1;
990 printk(BIOS_SPEW, "Made week %hd of model year %hd\n", edid[0x10],
991 edid[0x11]);
992 out->week = edid[0x10];
993 out->year = edid[0x11];
994 } else {
995 /* we know it's at least 2013, when this code was written */
996 if (edid[0x11] + 90 <= 2013) {
997 has_valid_year = 1;
998 printk(BIOS_SPEW, "Made week %hd of %hd\n",
999 edid[0x10], edid[0x11] + 1990);
1000 out->week = edid[0x10];
1001 out->year = edid[0x11] + 1990;
1002 }
1003 }
1004 }
1005 }
1006
1007
1008 printk(BIOS_SPEW, "EDID version: %hd.%hd\n", edid[0x12], edid[0x13]);
1009 out->version[0] = edid[0x12];
1010 out->version[1] = edid[0x13];
1011
1012 if (edid[0x12] == 1) {
1013 if (edid[0x13] > 4) {
1014 printk(BIOS_SPEW, "Claims > 1.4, assuming 1.4 conformance\n");
1015 edid[0x13] = 4;
1016 }
1017 switch (edid[0x13]) {
1018 case 4:
1019 claims_one_point_four = 1;
1020 case 3:
1021 claims_one_point_three = 1;
1022 case 2:
1023 claims_one_point_two = 1;
1024 default:
1025 break;
1026 }
1027 claims_one_point_oh = 1;
1028 }
1029
1030 /* display section */
1031
1032 if (edid[0x14] & 0x80) {
1033 int conformance_mask;
1034 analog = 0;
1035 printk(BIOS_SPEW, "Digital display\n");
1036 if (claims_one_point_four) {
1037 conformance_mask = 0;
1038 if ((edid[0x14] & 0x70) == 0x00)
1039 printk(BIOS_SPEW, "Color depth is undefined\n");
1040 else if ((edid[0x14] & 0x70) == 0x70)
1041 nonconformant_digital_display = 1;
1042 else
1043 printk(BIOS_SPEW, "%d bits per primary color channel\n",
1044 ((edid[0x14] & 0x70) >> 3) + 4);
1045 out->bpp = ((edid[0x14] & 0x70) >> 3) + 4;
1046
1047 switch (edid[0x14] & 0x0f) {
1048 case 0x00: printk(BIOS_SPEW, "Digital interface is not defined\n"); break;
1049 case 0x01: printk(BIOS_SPEW, "DVI interface\n"); break;
1050 case 0x02: printk(BIOS_SPEW, "HDMI-a interface\n"); break;
1051 case 0x03: printk(BIOS_SPEW, "HDMI-b interface\n"); break;
1052 case 0x04: printk(BIOS_SPEW, "MDDI interface\n"); break;
1053 case 0x05: printk(BIOS_SPEW, "DisplayPort interface\n"); break;
1054 default:
1055 nonconformant_digital_display = 1;
1056 }
1057 out->type = edid[0x14] & 0x0f;
1058 } else if (claims_one_point_two) {
1059 conformance_mask = 0x7E;
1060 if (edid[0x14] & 0x01) {
1061 printk(BIOS_SPEW, "DFP 1.x compatible TMDS\n");
1062 }
1063 } else
1064 conformance_mask = 0x7F;
1065
1066 if (!nonconformant_digital_display)
1067 nonconformant_digital_display = edid[0x14] & conformance_mask;
1068 out->nonconformant = nonconformant_digital_display;
1069 } else {
1070 analog = 1;
1071 int voltage = (edid[0x14] & 0x60) >> 5;
1072 int sync = (edid[0x14] & 0x0F);
1073 out->voltage = voltage;
1074 out->sync = sync;
1075
1076 printk(BIOS_SPEW, "Analog display, Input voltage level: %s V\n",
1077 voltage == 3 ? "0.7/0.7" :
1078 voltage == 2 ? "1.0/0.4" :
1079 voltage == 1 ? "0.714/0.286" :
1080 "0.7/0.3");
1081
1082 if (claims_one_point_four) {
1083 if (edid[0x14] & 0x10)
1084 printk(BIOS_SPEW, "Blank-to-black setup/pedestal\n");
1085 else
1086 printk(BIOS_SPEW, "Blank level equals black level\n");
1087 } else if (edid[0x14] & 0x10) {
1088 /*
1089 * XXX this is just the X text. 1.3 says "if set, display expects
1090 * a blank-to-black setup or pedestal per appropriate Signal
1091 * Level Standard". Whatever _that_ means.
1092 */
1093 printk(BIOS_SPEW, "Configurable signal levels\n");
1094 }
1095
1096 printk(BIOS_SPEW, "Sync: %s%s%s%s\n", sync & 0x08 ? "Separate " : "",
1097 sync & 0x04 ? "Composite " : "",
1098 sync & 0x02 ? "SyncOnGreen " : "",
1099 sync & 0x01 ? "Serration " : "");
1100 }
1101
1102
1103 if (edid[0x15] && edid[0x16]) {
1104 printk(BIOS_SPEW, "Maximum image size: %d cm x %d cm\n",
1105 edid[0x15], edid[0x16]);
1106 out->xsize_cm = edid[0x15];
1107 out->ysize_cm = edid[0x16];
1108 } else if (claims_one_point_four && (edid[0x15] || edid[0x16])) {
1109 if (edid[0x15]) {
1110 printk(BIOS_SPEW, "Aspect ratio is %f (landscape)\n",
1111 100.0/(edid[0x16] + 99));
1112 /* truncated to integer %. We try to avoid floating point */
1113 out->aspect_landscape = 10000 /(edid[0x16] + 99);
1114 } else {
1115 printk(BIOS_SPEW, "Aspect ratio is %f (portrait)\n",
1116 100.0/(edid[0x15] + 99));
1117 out->aspect_portrait = 10000 /(edid[0x16] + 99);
1118 }
1119 } else {
1120 /* Either or both can be zero for 1.3 and before */
1121 printk(BIOS_SPEW, "Image size is variable\n");
1122 }
1123
1124 if (edid[0x17] == 0xff) {
1125 if (claims_one_point_four)
1126 printk(BIOS_SPEW, "Gamma is defined in an extension block\n");
1127 else
1128 /* XXX Technically 1.3 doesn't say this... */
1129 printk(BIOS_SPEW, "Gamma: 1.0\n");
1130 } else printk(BIOS_SPEW, "Gamma: %d%%\n", ((edid[0x17] + 100)));
1131 printk(BIOS_SPEW, "Check DPMS levels\n");
1132 if (edid[0x18] & 0xE0) {
1133 printk(BIOS_SPEW, "DPMS levels:");
1134 if (edid[0x18] & 0x80) printk(BIOS_SPEW, " Standby");
1135 if (edid[0x18] & 0x40) printk(BIOS_SPEW, " Suspend");
1136 if (edid[0x18] & 0x20) printk(BIOS_SPEW, " Off");
1137 printk(BIOS_SPEW, "\n");
1138 }
1139
1140/* FIXME: this is from 1.4 spec, check earlier */
1141 if (analog) {
1142 switch (edid[0x18] & 0x18) {
1143 case 0x00: printk(BIOS_SPEW, "Monochrome or grayscale display\n"); break;
1144 case 0x08: printk(BIOS_SPEW, "RGB color display\n"); break;
1145 case 0x10: printk(BIOS_SPEW, "Non-RGB color display\n"); break;
1146 case 0x18: printk(BIOS_SPEW, "Undefined display color type\n");
1147 }
1148 } else {
1149 printk(BIOS_SPEW, "Supported color formats: RGB 4:4:4");
1150 if (edid[0x18] & 0x10)
1151 printk(BIOS_SPEW, ", YCrCb 4:4:4");
1152 if (edid[0x18] & 0x08)
1153 printk(BIOS_SPEW, ", YCrCb 4:2:2");
1154 printk(BIOS_SPEW, "\n");
1155 }
1156
1157 if (edid[0x18] & 0x04)
1158 printk(BIOS_SPEW, "Default (sRGB) color space is primary color space\n");
1159 if (edid[0x18] & 0x02) {
1160 printk(BIOS_SPEW, "First detailed timing is preferred timing\n");
1161 has_preferred_timing = 1;
1162 }
1163 if (edid[0x18] & 0x01)
1164 printk(BIOS_SPEW, "Supports GTF timings within operating range\n");
1165
1166 /* XXX color section */
1167
1168 printk(BIOS_SPEW, "Established timings supported:\n");
1169 /* it's not yet clear we want all this stuff in the edid struct.
1170 * Let's wait.
1171 */
1172 for (i = 0; i < 17; i++) {
1173 if (edid[0x23 + i / 8] & (1 << (7 - i % 8))) {
1174 printk(BIOS_SPEW, " %dx%d@%dHz\n", established_timings[i].x,
1175 established_timings[i].y, established_timings[i].refresh);
1176 }
1177 }
1178
1179 printk(BIOS_SPEW, "Standard timings supported:\n");
1180 for (i = 0; i < 8; i++) {
1181 uint8_t b1 = edid[0x26 + i * 2], b2 = edid[0x26 + i * 2 + 1];
Gerd Hoffmann0ea36642013-06-18 23:52:26 +02001182 unsigned int x, y = 0, refresh;
Ronald G. Minnichb3b72f32013-03-13 14:35:01 -07001183
1184 if (b1 == 0x01 && b2 == 0x01)
1185 continue;
1186
1187 if (b1 == 0) {
1188 printk(BIOS_SPEW, "non-conformant standard timing (0 horiz)\n");
1189 continue;
1190 }
1191 x = (b1 + 31) * 8;
1192 switch ((b2 >> 6) & 0x3) {
1193 case 0x00:
1194 if (claims_one_point_three)
1195 y = x * 10 / 16;
1196 else
1197 y = x;
1198 break;
1199 case 0x01:
1200 y = x * 3 / 4;
1201 break;
1202 case 0x02:
1203 y = x * 4 / 5;
1204 break;
1205 case 0x03:
1206 y = x * 9 / 16;
1207 break;
1208 }
1209 refresh = 60 + (b2 & 0x3f);
1210
1211 printk(BIOS_SPEW, " %dx%d@%dHz\n", x, y, refresh);
1212 }
1213
1214 /* detailed timings */
1215 printk(BIOS_SPEW, "Detailed timings\n");
1216 has_valid_detailed_blocks = detailed_block(out, edid + 0x36, 0);
1217 if (has_preferred_timing && !did_detailed_timing)
1218 has_preferred_timing = 0; /* not really accurate... */
1219 has_valid_detailed_blocks &= detailed_block(out, edid + 0x48, 0);
1220 has_valid_detailed_blocks &= detailed_block(out, edid + 0x5A, 0);
1221 has_valid_detailed_blocks &= detailed_block(out, edid + 0x6C, 0);
1222
1223 /* check this, 1.4 verification guide says otherwise */
1224 if (edid[0x7e]) {
1225 printk(BIOS_SPEW, "Has %d extension blocks\n", edid[0x7e]);
1226 /* 2 is impossible because of the block map */
1227 if (edid[0x7e] != 2)
1228 has_valid_extension_count = 1;
1229 } else {
1230 has_valid_extension_count = 1;
1231 }
1232
1233 printk(BIOS_SPEW, "Checksum\n");
Ronald G. Minnichb2893a012013-04-23 10:59:11 -07001234 vbe_valid = do_checksum(edid);
Ronald G. Minnichb3b72f32013-03-13 14:35:01 -07001235 for(i = 0; i < size; i += 128)
1236 nonconformant_extension = parse_extension(out, &edid[i]);
1237/*
1238 x = edid;
1239 for (edid_lines /= 8; edid_lines > 1; edid_lines--) {
1240 x += 128;
1241 nonconformant_extension += parse_extension(x);
1242 }
1243*/
1244
1245 if (claims_one_point_three) {
1246 if (nonconformant_digital_display ||
1247 !has_valid_string_termination ||
1248 !has_valid_descriptor_pad ||
1249 !has_name_descriptor ||
1250 !name_descriptor_terminated ||
1251 !has_preferred_timing ||
1252 !has_range_descriptor)
1253 conformant = 0;
1254 if (!conformant)
1255 printk(BIOS_ERR, "EDID block does NOT conform to EDID 1.3!\n");
1256 if (nonconformant_digital_display)
1257 printk(BIOS_ERR, "\tDigital display field contains garbage: %x\n",
1258 nonconformant_digital_display);
1259 if (!has_name_descriptor)
1260 printk(BIOS_ERR, "\tMissing name descriptor\n");
1261 else if (!name_descriptor_terminated)
1262 printk(BIOS_ERR, "\tName descriptor not terminated with a newline\n");
1263 if (!has_preferred_timing)
1264 printk(BIOS_ERR, "\tMissing preferred timing\n");
1265 if (!has_range_descriptor)
1266 printk(BIOS_ERR, "\tMissing monitor ranges\n");
1267 if (!has_valid_descriptor_pad) /* Might be more than just 1.3 */
1268 printk(BIOS_ERR, "\tInvalid descriptor block padding\n");
1269 if (!has_valid_string_termination) /* Likewise */
1270 printk(BIOS_ERR, "\tDetailed block string not properly terminated\n");
1271 } else if (claims_one_point_two) {
1272 if (nonconformant_digital_display ||
1273 (has_name_descriptor && !name_descriptor_terminated))
1274 conformant = 0;
1275 if (!conformant)
1276 printk(BIOS_ERR, "EDID block does NOT conform to EDID 1.2!\n");
1277 if (nonconformant_digital_display)
1278 printk(BIOS_ERR, "\tDigital display field contains garbage: %x\n",
1279 nonconformant_digital_display);
1280 if (has_name_descriptor && !name_descriptor_terminated)
1281 printk(BIOS_ERR, "\tName descriptor not terminated with a newline\n");
1282 } else if (claims_one_point_oh) {
1283 if (seen_non_detailed_descriptor)
1284 conformant = 0;
1285 if (!conformant)
1286 printk(BIOS_ERR, "EDID block does NOT conform to EDID 1.0!\n");
1287 if (seen_non_detailed_descriptor)
1288 printk(BIOS_ERR, "\tHas descriptor blocks other than detailed timings\n");
1289 }
1290
1291 if (nonconformant_extension ||
1292 !has_valid_checksum ||
1293 !has_valid_cvt ||
1294 !has_valid_year ||
1295 !has_valid_week ||
1296 !has_valid_detailed_blocks ||
1297 !has_valid_dummy_block ||
1298 !has_valid_extension_count ||
1299 !has_valid_descriptor_ordering ||
1300 !has_valid_range_descriptor ||
1301 !manufacturer_name_well_formed) {
1302 conformant = 0;
1303 printk(BIOS_ERR, "EDID block does not conform at all!\n");
1304 if (nonconformant_extension)
1305 printk(BIOS_ERR, "\tHas %d nonconformant extension block(s)\n",
1306 nonconformant_extension);
1307 if (!has_valid_checksum)
1308 printk(BIOS_ERR, "\tBlock has broken checksum\n");
1309 if (!has_valid_cvt)
1310 printk(BIOS_ERR, "\tBroken 3-byte CVT blocks\n");
1311 if (!has_valid_year)
1312 printk(BIOS_ERR, "\tBad year of manufacture\n");
1313 if (!has_valid_week)
1314 printk(BIOS_ERR, "\tBad week of manufacture\n");
1315 if (!has_valid_detailed_blocks)
1316 printk(BIOS_ERR, "\tDetailed blocks filled with garbage\n");
1317 if (!has_valid_dummy_block)
1318 printk(BIOS_ERR, "\tDummy block filled with garbage\n");
1319 if (!has_valid_extension_count)
1320 printk(BIOS_ERR, "\tImpossible extension block count\n");
1321 if (!manufacturer_name_well_formed)
1322 printk(BIOS_ERR, "\tManufacturer name field contains garbage\n");
1323 if (!has_valid_descriptor_ordering)
1324 printk(BIOS_ERR, "\tInvalid detailed timing descriptor ordering\n");
1325 if (!has_valid_range_descriptor)
1326 printk(BIOS_ERR, "\tRange descriptor contains garbage\n");
1327 if (!has_valid_max_dotclock)
1328 printk(BIOS_ERR, "\tEDID 1.4 block does not set max dotclock\n");
1329 }
1330
1331 if (warning_excessive_dotclock_correction)
1332 printk(BIOS_ERR,
1333 "Warning: CVT block corrects dotclock by more than 9.75MHz\n");
1334 if (warning_zero_preferred_refresh)
1335 printk(BIOS_ERR,
1336 "Warning: CVT block does not set preferred refresh rate\n");
1337 return !conformant;
1338 }
1339
1340/*
1341 * Notes on panel extensions: (TODO, implement me in the code)
1342 *
1343 * EPI: http://www.epi-standard.org/fileadmin/spec/EPI_Specification1.0.pdf
1344 * at offset 0x6c (fourth detailed block): (all other bits reserved)
1345 * 0x6c: 00 00 00 0e 00
1346 * 0x71: bit 6-5: data color mapping (00 conventional/fpdi/vesa, 01 openldi)
1347 * bit 4-3: pixels per clock (00 1, 01 2, 10 4, 11 reserved)
1348 * bit 2-0: bits per pixel (000 18, 001 24, 010 30, else reserved)
1349 * 0x72: bit 5: FPSCLK polarity (0 normal 1 inverted)
1350 * bit 4: DE polarity (0 high active 1 low active)
1351 * bit 3-0: interface (0000 LVDS TFT
1352 * 0001 mono STN 4/8bit
1353 * 0010 color STN 8/16 bit
1354 * 0011 18 bit tft
1355 * 0100 24 bit tft
1356 * 0101 tmds
1357 * else reserved)
1358 * 0x73: bit 1: horizontal display mode (0 normal 1 right/left reverse)
1359 * bit 0: vertical display mode (0 normal 1 up/down reverse)
1360 * 0x74: bit 7-4: total poweroff seq delay (0000 vga controller default
1361 * else time in 10ms (10ms to 150ms))
1362 * bit 3-0: total poweron seq delay (as above)
1363 * 0x75: contrast power on/off seq delay, same as 0x74
1364 * 0x76: bit 7: backlight control enable (1 means this field is valid)
1365 * bit 6: backlight enabled at boot (0 on 1 off)
1366 * bit 5-0: backlight brightness control steps (0..63)
1367 * 0x77: bit 7: contrast control, same bit pattern as 0x76 except bit 6 resvd
1368 * 0x78 - 0x7c: reserved
1369 * 0x7d: bit 7-4: EPI descriptor major version (1)
1370 * bit 3-0: EPI descriptor minor version (0)
1371 *
1372 * ----
1373 *
1374 * SPWG: http://www.spwg.org/spwg_spec_version3.8_3-14-2007.pdf
1375 *
1376 * Since these are "dummy" blocks, terminate with 0a 20 20 20 ... as usual
1377 *
1378 * detailed descriptor 3:
1379 * 0x5a - 0x5e: 00 00 00 fe 00
1380 * 0x5f - 0x63: PC maker part number
1381 * 0x64: LCD supplier revision #
1382 * 0x65 - 0x6b: manufacturer part number
1383 *
1384 * detailed descriptor 4:
1385 * 0x6c - 0x70: 00 00 00 fe 00
1386 * 0x71 - 0x78: smbus nits values (whut)
1387 * 0x79: number of lvds channels (1 or 2)
1388 * 0x7A: panel self test (1 if present)
1389 * and then dummy terminator
1390 *
1391 * SPWG also says something strange about the LSB of detailed descriptor 1:
1392 * "LSB is set to "1" if panel is DE-timing only. H/V can be ignored."
1393 */
Ronald G. Minnichb2893a012013-04-23 10:59:11 -07001394/*
1395 * Take an edid, and create a framebuffer. Set vbe_valid to 1.
1396 */
1397
1398void set_vbe_mode_info_valid(struct edid *edid, uintptr_t fb_addr);
1399void set_vbe_mode_info_valid(struct edid *edid, uintptr_t fb_addr)
1400{
1401 edid_fb.physical_address = fb_addr;
1402 edid_fb.x_resolution = edid->ha;
1403 edid_fb.y_resolution = edid->va;
1404 /* In the case of (e.g.) 24bpp, the convention nowadays
1405 * seems to be to round it up to the nearest reasonable
1406 * boundary, because otherwise the byte-packing is hideous.
1407 * So, for example, in RGB with no alpha, the bytes are still
1408 * packed into 32-bit words, the so-called 32bpp-no-alpha mode.
1409 * Or, in 5:6:5 mode, the bytes are also packed into 32-bit words,
1410 * and in 4:4:4 mode, they are packed into 16-bit words.
1411 * Good call on the hardware guys part.
1412 * It's not clear we're covering all cases here, but
1413 * I'm not sure with grahpics you ever can.
1414 */
1415 edid_fb.bits_per_pixel = edid->bpp;
1416 switch(edid->bpp){
1417 case 32:
1418 case 24:
1419 /* packed into 4-byte words */
1420 edid_fb.bytes_per_line = edid->ha * 4;
1421 edid_fb.red_mask_pos = 16;
1422 edid_fb.red_mask_size = 8;
1423 edid_fb.green_mask_pos = 8;
1424 edid_fb.green_mask_size = 8;
1425 edid_fb.blue_mask_pos = 0;
1426 edid_fb.blue_mask_size = 8;
1427 break;
1428 case 16:
1429 /* packed into 2-byte words */
1430 edid_fb.bytes_per_line = edid->ha * 2;
1431 edid_fb.red_mask_pos = 12;
1432 edid_fb.red_mask_size = 4;
1433 edid_fb.green_mask_pos = 8;
1434 edid_fb.green_mask_size = 4;
1435 edid_fb.blue_mask_pos = 0;
1436 edid_fb.blue_mask_size = 4;
1437 break;
1438 default:
1439 printk(BIOS_SPEW, "%s: unsupported BPP %d\n", __func__,
1440 edid->bpp);
1441 return;
1442 }
1443
1444 edid_fb.reserved_mask_pos = 0;
1445 edid_fb.reserved_mask_size = 0;
1446 vbe_valid = 1;
1447}
1448
1449int vbe_mode_info_valid(void)
1450{
1451 return vbe_valid;
1452}
1453
1454void fill_lb_framebuffer(struct lb_framebuffer *framebuffer)
1455{
1456 *framebuffer = edid_fb;
1457}