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.
7 * DDC probing routines (drm_ddc_read & drm_do_probe_ddc_edid) originally from
9 * Copyright (C) 2006 Dennis Munsie <dmunsie@cecropia.com>
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:
18 * The above copyright notice and this permission notice (including the
19 * next paragraph) shall be included in all copies or substantial portions
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.
30 #include <linux/kernel.h>
31 #include <linux/slab.h>
32 #include <linux/i2c.h>
35 #include "drm_edid_modes.h"
37 #define version_greater(edid, maj, min) \
38 (((edid)->version > (maj)) || \
39 ((edid)->version == (maj) && (edid)->revision > (min)))
41 #define EDID_EST_TIMINGS 16
42 #define EDID_STD_TIMINGS 8
43 #define EDID_DETAILED_TIMINGS 4
46 * EDID blocks out in the wild have a variety of bugs, try to collect
47 * them here (note that userspace may work around broken monitors first,
48 * but fixes should make their way here so that the kernel "just works"
49 * on as many displays as possible).
52 /* First detailed mode wrong, use largest 60Hz mode */
53 #define EDID_QUIRK_PREFER_LARGE_60 (1 << 0)
54 /* Reported 135MHz pixel clock is too high, needs adjustment */
55 #define EDID_QUIRK_135_CLOCK_TOO_HIGH (1 << 1)
56 /* Prefer the largest mode at 75 Hz */
57 #define EDID_QUIRK_PREFER_LARGE_75 (1 << 2)
58 /* Detail timing is in cm not mm */
59 #define EDID_QUIRK_DETAILED_IN_CM (1 << 3)
60 /* Detailed timing descriptors have bogus size values, so just take the
61 * maximum size and use that.
63 #define EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE (1 << 4)
64 /* Monitor forgot to set the first detailed is preferred bit. */
65 #define EDID_QUIRK_FIRST_DETAILED_PREFERRED (1 << 5)
66 /* use +hsync +vsync for detailed mode */
67 #define EDID_QUIRK_DETAILED_SYNC_PP (1 << 6)
69 struct detailed_mode_closure
{
70 struct drm_connector
*connector
;
82 static struct edid_quirk
{
86 } edid_quirk_list
[] = {
88 { "ACR", 44358, EDID_QUIRK_PREFER_LARGE_60
},
90 { "API", 0x7602, EDID_QUIRK_PREFER_LARGE_60
},
92 { "ACR", 2423, EDID_QUIRK_FIRST_DETAILED_PREFERRED
},
94 /* Belinea 10 15 55 */
95 { "MAX", 1516, EDID_QUIRK_PREFER_LARGE_60
},
96 { "MAX", 0x77e, EDID_QUIRK_PREFER_LARGE_60
},
98 /* Envision Peripherals, Inc. EN-7100e */
99 { "EPI", 59264, EDID_QUIRK_135_CLOCK_TOO_HIGH
},
100 /* Envision EN2028 */
101 { "EPI", 8232, EDID_QUIRK_PREFER_LARGE_60
},
103 /* Funai Electronics PM36B */
104 { "FCM", 13600, EDID_QUIRK_PREFER_LARGE_75
|
105 EDID_QUIRK_DETAILED_IN_CM
},
107 /* LG Philips LCD LP154W01-A5 */
108 { "LPL", 0, EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE
},
109 { "LPL", 0x2a00, EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE
},
111 /* Philips 107p5 CRT */
112 { "PHL", 57364, EDID_QUIRK_FIRST_DETAILED_PREFERRED
},
115 { "PTS", 765, EDID_QUIRK_FIRST_DETAILED_PREFERRED
},
117 /* Samsung SyncMaster 205BW. Note: irony */
118 { "SAM", 541, EDID_QUIRK_DETAILED_SYNC_PP
},
119 /* Samsung SyncMaster 22[5-6]BW */
120 { "SAM", 596, EDID_QUIRK_PREFER_LARGE_60
},
121 { "SAM", 638, EDID_QUIRK_PREFER_LARGE_60
},
124 /*** DDC fetch and block validation ***/
126 static const u8 edid_header
[] = {
127 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00
131 * Sanity check the EDID block (base or extension). Return 0 if the block
132 * doesn't check out, or 1 if it's valid.
135 drm_edid_block_valid(u8
*raw_edid
)
139 struct edid
*edid
= (struct edid
*)raw_edid
;
141 if (raw_edid
[0] == 0x00) {
144 for (i
= 0; i
< sizeof(edid_header
); i
++)
145 if (raw_edid
[i
] == edid_header
[i
])
149 else if (score
>= 6) {
150 DRM_DEBUG("Fixing EDID header, your hardware may be failing\n");
151 memcpy(raw_edid
, edid_header
, sizeof(edid_header
));
157 for (i
= 0; i
< EDID_LENGTH
; i
++)
160 DRM_ERROR("EDID checksum is invalid, remainder is %d\n", csum
);
162 /* allow CEA to slide through, switches mangle this */
163 if (raw_edid
[0] != 0x02)
167 /* per-block-type checks */
168 switch (raw_edid
[0]) {
170 if (edid
->version
!= 1) {
171 DRM_ERROR("EDID has major version %d, instead of 1\n", edid
->version
);
175 if (edid
->revision
> 4)
176 DRM_DEBUG("EDID minor > 4, assuming backward compatibility\n");
187 DRM_ERROR("Raw EDID:\n");
188 print_hex_dump_bytes(KERN_ERR
, DUMP_PREFIX_NONE
, raw_edid
, EDID_LENGTH
);
195 * drm_edid_is_valid - sanity check EDID data
198 * Sanity-check an entire EDID record (including extensions)
200 bool drm_edid_is_valid(struct edid
*edid
)
203 u8
*raw
= (u8
*)edid
;
208 for (i
= 0; i
<= edid
->extensions
; i
++)
209 if (!drm_edid_block_valid(raw
+ i
* EDID_LENGTH
))
214 EXPORT_SYMBOL(drm_edid_is_valid
);
216 #define DDC_ADDR 0x50
217 #define DDC_SEGMENT_ADDR 0x30
219 * Get EDID information via I2C.
221 * \param adapter : i2c device adaptor
222 * \param buf : EDID data buffer to be filled
223 * \param len : EDID data buffer length
224 * \return 0 on success or -1 on failure.
226 * Try to fetch EDID information by calling i2c driver function.
229 drm_do_probe_ddc_edid(struct i2c_adapter
*adapter
, unsigned char *buf
,
232 unsigned char start
= block
* EDID_LENGTH
;
233 int ret
, retries
= 5;
235 /* The core i2c driver will automatically retry the transfer if the
236 * adapter reports EAGAIN. However, we find that bit-banging transfers
237 * are susceptible to errors under a heavily loaded machine and
238 * generate spurious NAKs and timeouts. Retrying the transfer
239 * of the individual block a few times seems to overcome this.
242 struct i2c_msg msgs
[] = {
255 ret
= i2c_transfer(adapter
, msgs
, 2);
256 } while (ret
!= 2 && --retries
);
258 return ret
== 2 ? 0 : -1;
262 drm_do_get_edid(struct drm_connector
*connector
, struct i2c_adapter
*adapter
)
264 int i
, j
= 0, valid_extensions
= 0;
267 if ((block
= kmalloc(EDID_LENGTH
, GFP_KERNEL
)) == NULL
)
270 /* base block fetch */
271 for (i
= 0; i
< 4; i
++) {
272 if (drm_do_probe_ddc_edid(adapter
, block
, 0, EDID_LENGTH
))
274 if (drm_edid_block_valid(block
))
280 /* if there's no extensions, we're done */
281 if (block
[0x7e] == 0)
284 new = krealloc(block
, (block
[0x7e] + 1) * EDID_LENGTH
, GFP_KERNEL
);
289 for (j
= 1; j
<= block
[0x7e]; j
++) {
290 for (i
= 0; i
< 4; i
++) {
291 if (drm_do_probe_ddc_edid(adapter
,
292 block
+ (valid_extensions
+ 1) * EDID_LENGTH
,
295 if (drm_edid_block_valid(block
+ (valid_extensions
+ 1) * EDID_LENGTH
)) {
301 dev_warn(connector
->dev
->dev
,
302 "%s: Ignoring invalid EDID block %d.\n",
303 drm_get_connector_name(connector
), j
);
306 if (valid_extensions
!= block
[0x7e]) {
307 block
[EDID_LENGTH
-1] += block
[0x7e] - valid_extensions
;
308 block
[0x7e] = valid_extensions
;
309 new = krealloc(block
, (valid_extensions
+ 1) * EDID_LENGTH
, GFP_KERNEL
);
318 dev_warn(connector
->dev
->dev
, "%s: EDID block %d invalid.\n",
319 drm_get_connector_name(connector
), j
);
327 * Probe DDC presence.
329 * \param adapter : i2c device adaptor
330 * \return 1 on success
333 drm_probe_ddc(struct i2c_adapter
*adapter
)
337 return (drm_do_probe_ddc_edid(adapter
, &out
, 0, 1) == 0);
341 * drm_get_edid - get EDID data, if available
342 * @connector: connector we're probing
343 * @adapter: i2c adapter to use for DDC
345 * Poke the given i2c channel to grab EDID data if possible. If found,
346 * attach it to the connector.
348 * Return edid data or NULL if we couldn't find any.
350 struct edid
*drm_get_edid(struct drm_connector
*connector
,
351 struct i2c_adapter
*adapter
)
353 struct edid
*edid
= NULL
;
355 if (drm_probe_ddc(adapter
))
356 edid
= (struct edid
*)drm_do_get_edid(connector
, adapter
);
358 connector
->display_info
.raw_edid
= (char *)edid
;
363 EXPORT_SYMBOL(drm_get_edid
);
365 /*** EDID parsing ***/
368 * edid_vendor - match a string against EDID's obfuscated vendor field
369 * @edid: EDID to match
370 * @vendor: vendor string
372 * Returns true if @vendor is in @edid, false otherwise
374 static bool edid_vendor(struct edid
*edid
, char *vendor
)
378 edid_vendor
[0] = ((edid
->mfg_id
[0] & 0x7c) >> 2) + '@';
379 edid_vendor
[1] = (((edid
->mfg_id
[0] & 0x3) << 3) |
380 ((edid
->mfg_id
[1] & 0xe0) >> 5)) + '@';
381 edid_vendor
[2] = (edid
->mfg_id
[1] & 0x1f) + '@';
383 return !strncmp(edid_vendor
, vendor
, 3);
387 * edid_get_quirks - return quirk flags for a given EDID
388 * @edid: EDID to process
390 * This tells subsequent routines what fixes they need to apply.
392 static u32
edid_get_quirks(struct edid
*edid
)
394 struct edid_quirk
*quirk
;
397 for (i
= 0; i
< ARRAY_SIZE(edid_quirk_list
); i
++) {
398 quirk
= &edid_quirk_list
[i
];
400 if (edid_vendor(edid
, quirk
->vendor
) &&
401 (EDID_PRODUCT_ID(edid
) == quirk
->product_id
))
402 return quirk
->quirks
;
408 #define MODE_SIZE(m) ((m)->hdisplay * (m)->vdisplay)
409 #define MODE_REFRESH_DIFF(m,r) (abs((m)->vrefresh - target_refresh))
412 * edid_fixup_preferred - set preferred modes based on quirk list
413 * @connector: has mode list to fix up
414 * @quirks: quirks list
416 * Walk the mode list for @connector, clearing the preferred status
417 * on existing modes and setting it anew for the right mode ala @quirks.
419 static void edid_fixup_preferred(struct drm_connector
*connector
,
422 struct drm_display_mode
*t
, *cur_mode
, *preferred_mode
;
423 int target_refresh
= 0;
425 if (list_empty(&connector
->probed_modes
))
428 if (quirks
& EDID_QUIRK_PREFER_LARGE_60
)
430 if (quirks
& EDID_QUIRK_PREFER_LARGE_75
)
433 preferred_mode
= list_first_entry(&connector
->probed_modes
,
434 struct drm_display_mode
, head
);
436 list_for_each_entry_safe(cur_mode
, t
, &connector
->probed_modes
, head
) {
437 cur_mode
->type
&= ~DRM_MODE_TYPE_PREFERRED
;
439 if (cur_mode
== preferred_mode
)
442 /* Largest mode is preferred */
443 if (MODE_SIZE(cur_mode
) > MODE_SIZE(preferred_mode
))
444 preferred_mode
= cur_mode
;
446 /* At a given size, try to get closest to target refresh */
447 if ((MODE_SIZE(cur_mode
) == MODE_SIZE(preferred_mode
)) &&
448 MODE_REFRESH_DIFF(cur_mode
, target_refresh
) <
449 MODE_REFRESH_DIFF(preferred_mode
, target_refresh
)) {
450 preferred_mode
= cur_mode
;
454 preferred_mode
->type
|= DRM_MODE_TYPE_PREFERRED
;
457 struct drm_display_mode
*drm_mode_find_dmt(struct drm_device
*dev
,
458 int hsize
, int vsize
, int fresh
)
460 struct drm_display_mode
*mode
= NULL
;
463 for (i
= 0; i
< drm_num_dmt_modes
; i
++) {
464 const struct drm_display_mode
*ptr
= &drm_dmt_modes
[i
];
465 if (hsize
== ptr
->hdisplay
&&
466 vsize
== ptr
->vdisplay
&&
467 fresh
== drm_mode_vrefresh(ptr
)) {
468 /* get the expected default mode */
469 mode
= drm_mode_duplicate(dev
, ptr
);
475 EXPORT_SYMBOL(drm_mode_find_dmt
);
477 typedef void detailed_cb(struct detailed_timing
*timing
, void *closure
);
480 cea_for_each_detailed_block(u8
*ext
, detailed_cb
*cb
, void *closure
)
483 u8 rev
= ext
[0x01], d
= ext
[0x02];
484 u8
*det_base
= ext
+ d
;
491 /* have to infer how many blocks we have, check pixel clock */
492 for (i
= 0; i
< 6; i
++)
493 if (det_base
[18*i
] || det_base
[18*i
+1])
498 n
= min(ext
[0x03] & 0x0f, 6);
502 for (i
= 0; i
< n
; i
++)
503 cb((struct detailed_timing
*)(det_base
+ 18 * i
), closure
);
507 vtb_for_each_detailed_block(u8
*ext
, detailed_cb
*cb
, void *closure
)
509 unsigned int i
, n
= min((int)ext
[0x02], 6);
510 u8
*det_base
= ext
+ 5;
513 return; /* unknown version */
515 for (i
= 0; i
< n
; i
++)
516 cb((struct detailed_timing
*)(det_base
+ 18 * i
), closure
);
520 drm_for_each_detailed_block(u8
*raw_edid
, detailed_cb
*cb
, void *closure
)
523 struct edid
*edid
= (struct edid
*)raw_edid
;
528 for (i
= 0; i
< EDID_DETAILED_TIMINGS
; i
++)
529 cb(&(edid
->detailed_timings
[i
]), closure
);
531 for (i
= 1; i
<= raw_edid
[0x7e]; i
++) {
532 u8
*ext
= raw_edid
+ (i
* EDID_LENGTH
);
535 cea_for_each_detailed_block(ext
, cb
, closure
);
538 vtb_for_each_detailed_block(ext
, cb
, closure
);
547 is_rb(struct detailed_timing
*t
, void *data
)
550 if (r
[3] == EDID_DETAIL_MONITOR_RANGE
)
552 *(bool *)data
= true;
555 /* EDID 1.4 defines this explicitly. For EDID 1.3, we guess, badly. */
557 drm_monitor_supports_rb(struct edid
*edid
)
559 if (edid
->revision
>= 4) {
561 drm_for_each_detailed_block((u8
*)edid
, is_rb
, &ret
);
565 return ((edid
->input
& DRM_EDID_INPUT_DIGITAL
) != 0);
569 find_gtf2(struct detailed_timing
*t
, void *data
)
572 if (r
[3] == EDID_DETAIL_MONITOR_RANGE
&& r
[10] == 0x02)
576 /* Secondary GTF curve kicks in above some break frequency */
578 drm_gtf2_hbreak(struct edid
*edid
)
581 drm_for_each_detailed_block((u8
*)edid
, find_gtf2
, &r
);
582 return r
? (r
[12] * 2) : 0;
586 drm_gtf2_2c(struct edid
*edid
)
589 drm_for_each_detailed_block((u8
*)edid
, find_gtf2
, &r
);
590 return r
? r
[13] : 0;
594 drm_gtf2_m(struct edid
*edid
)
597 drm_for_each_detailed_block((u8
*)edid
, find_gtf2
, &r
);
598 return r
? (r
[15] << 8) + r
[14] : 0;
602 drm_gtf2_k(struct edid
*edid
)
605 drm_for_each_detailed_block((u8
*)edid
, find_gtf2
, &r
);
606 return r
? r
[16] : 0;
610 drm_gtf2_2j(struct edid
*edid
)
613 drm_for_each_detailed_block((u8
*)edid
, find_gtf2
, &r
);
614 return r
? r
[17] : 0;
618 * standard_timing_level - get std. timing level(CVT/GTF/DMT)
619 * @edid: EDID block to scan
621 static int standard_timing_level(struct edid
*edid
)
623 if (edid
->revision
>= 2) {
624 if (edid
->revision
>= 4 && (edid
->features
& DRM_EDID_FEATURE_DEFAULT_GTF
))
626 if (drm_gtf2_hbreak(edid
))
634 * 0 is reserved. The spec says 0x01 fill for unused timings. Some old
635 * monitors fill with ascii space (0x20) instead.
638 bad_std_timing(u8 a
, u8 b
)
640 return (a
== 0x00 && b
== 0x00) ||
641 (a
== 0x01 && b
== 0x01) ||
642 (a
== 0x20 && b
== 0x20);
646 * drm_mode_std - convert standard mode info (width, height, refresh) into mode
647 * @t: standard timing params
648 * @timing_level: standard timing level
650 * Take the standard timing params (in this case width, aspect, and refresh)
651 * and convert them into a real mode using CVT/GTF/DMT.
653 static struct drm_display_mode
*
654 drm_mode_std(struct drm_connector
*connector
, struct edid
*edid
,
655 struct std_timing
*t
, int revision
)
657 struct drm_device
*dev
= connector
->dev
;
658 struct drm_display_mode
*m
, *mode
= NULL
;
661 unsigned aspect_ratio
= (t
->vfreq_aspect
& EDID_TIMING_ASPECT_MASK
)
662 >> EDID_TIMING_ASPECT_SHIFT
;
663 unsigned vfreq
= (t
->vfreq_aspect
& EDID_TIMING_VFREQ_MASK
)
664 >> EDID_TIMING_VFREQ_SHIFT
;
665 int timing_level
= standard_timing_level(edid
);
667 if (bad_std_timing(t
->hsize
, t
->vfreq_aspect
))
670 /* According to the EDID spec, the hdisplay = hsize * 8 + 248 */
671 hsize
= t
->hsize
* 8 + 248;
672 /* vrefresh_rate = vfreq + 60 */
673 vrefresh_rate
= vfreq
+ 60;
674 /* the vdisplay is calculated based on the aspect ratio */
675 if (aspect_ratio
== 0) {
679 vsize
= (hsize
* 10) / 16;
680 } else if (aspect_ratio
== 1)
681 vsize
= (hsize
* 3) / 4;
682 else if (aspect_ratio
== 2)
683 vsize
= (hsize
* 4) / 5;
685 vsize
= (hsize
* 9) / 16;
687 /* HDTV hack, part 1 */
688 if (vrefresh_rate
== 60 &&
689 ((hsize
== 1360 && vsize
== 765) ||
690 (hsize
== 1368 && vsize
== 769))) {
696 * If this connector already has a mode for this size and refresh
697 * rate (because it came from detailed or CVT info), use that
698 * instead. This way we don't have to guess at interlace or
701 list_for_each_entry(m
, &connector
->probed_modes
, head
)
702 if (m
->hdisplay
== hsize
&& m
->vdisplay
== vsize
&&
703 drm_mode_vrefresh(m
) == vrefresh_rate
)
706 /* HDTV hack, part 2 */
707 if (hsize
== 1366 && vsize
== 768 && vrefresh_rate
== 60) {
708 mode
= drm_cvt_mode(dev
, 1366, 768, vrefresh_rate
, 0, 0,
710 mode
->hdisplay
= 1366;
711 mode
->hsync_start
= mode
->hsync_start
- 1;
712 mode
->hsync_end
= mode
->hsync_end
- 1;
716 /* check whether it can be found in default mode table */
717 mode
= drm_mode_find_dmt(dev
, hsize
, vsize
, vrefresh_rate
);
721 switch (timing_level
) {
725 mode
= drm_gtf_mode(dev
, hsize
, vsize
, vrefresh_rate
, 0, 0);
729 * This is potentially wrong if there's ever a monitor with
730 * more than one ranges section, each claiming a different
731 * secondary GTF curve. Please don't do that.
733 mode
= drm_gtf_mode(dev
, hsize
, vsize
, vrefresh_rate
, 0, 0);
734 if (drm_mode_hsync(mode
) > drm_gtf2_hbreak(edid
)) {
736 mode
= drm_gtf_mode_complex(dev
, hsize
, vsize
,
745 mode
= drm_cvt_mode(dev
, hsize
, vsize
, vrefresh_rate
, 0, 0,
753 * EDID is delightfully ambiguous about how interlaced modes are to be
754 * encoded. Our internal representation is of frame height, but some
755 * HDTV detailed timings are encoded as field height.
757 * The format list here is from CEA, in frame size. Technically we
758 * should be checking refresh rate too. Whatever.
761 drm_mode_do_interlace_quirk(struct drm_display_mode
*mode
,
762 struct detailed_pixel_timing
*pt
)
765 static const struct {
767 } cea_interlaced
[] = {
777 if (!(pt
->misc
& DRM_EDID_PT_INTERLACED
))
780 for (i
= 0; i
< ARRAY_SIZE(cea_interlaced
); i
++) {
781 if ((mode
->hdisplay
== cea_interlaced
[i
].w
) &&
782 (mode
->vdisplay
== cea_interlaced
[i
].h
/ 2)) {
784 mode
->vsync_start
*= 2;
785 mode
->vsync_end
*= 2;
791 mode
->flags
|= DRM_MODE_FLAG_INTERLACE
;
795 * drm_mode_detailed - create a new mode from an EDID detailed timing section
796 * @dev: DRM device (needed to create new mode)
798 * @timing: EDID detailed timing info
799 * @quirks: quirks to apply
801 * An EDID detailed timing block contains enough info for us to create and
802 * return a new struct drm_display_mode.
804 static struct drm_display_mode
*drm_mode_detailed(struct drm_device
*dev
,
806 struct detailed_timing
*timing
,
809 struct drm_display_mode
*mode
;
810 struct detailed_pixel_timing
*pt
= &timing
->data
.pixel_data
;
811 unsigned hactive
= (pt
->hactive_hblank_hi
& 0xf0) << 4 | pt
->hactive_lo
;
812 unsigned vactive
= (pt
->vactive_vblank_hi
& 0xf0) << 4 | pt
->vactive_lo
;
813 unsigned hblank
= (pt
->hactive_hblank_hi
& 0xf) << 8 | pt
->hblank_lo
;
814 unsigned vblank
= (pt
->vactive_vblank_hi
& 0xf) << 8 | pt
->vblank_lo
;
815 unsigned hsync_offset
= (pt
->hsync_vsync_offset_pulse_width_hi
& 0xc0) << 2 | pt
->hsync_offset_lo
;
816 unsigned hsync_pulse_width
= (pt
->hsync_vsync_offset_pulse_width_hi
& 0x30) << 4 | pt
->hsync_pulse_width_lo
;
817 unsigned vsync_offset
= (pt
->hsync_vsync_offset_pulse_width_hi
& 0xc) >> 2 | pt
->vsync_offset_pulse_width_lo
>> 4;
818 unsigned vsync_pulse_width
= (pt
->hsync_vsync_offset_pulse_width_hi
& 0x3) << 4 | (pt
->vsync_offset_pulse_width_lo
& 0xf);
820 /* ignore tiny modes */
821 if (hactive
< 64 || vactive
< 64)
824 if (pt
->misc
& DRM_EDID_PT_STEREO
) {
825 printk(KERN_WARNING
"stereo mode not supported\n");
828 if (!(pt
->misc
& DRM_EDID_PT_SEPARATE_SYNC
)) {
829 printk(KERN_WARNING
"composite sync not supported\n");
832 /* it is incorrect if hsync/vsync width is zero */
833 if (!hsync_pulse_width
|| !vsync_pulse_width
) {
834 DRM_DEBUG_KMS("Incorrect Detailed timing. "
835 "Wrong Hsync/Vsync pulse width\n");
838 mode
= drm_mode_create(dev
);
842 mode
->type
= DRM_MODE_TYPE_DRIVER
;
844 if (quirks
& EDID_QUIRK_135_CLOCK_TOO_HIGH
)
845 timing
->pixel_clock
= cpu_to_le16(1088);
847 mode
->clock
= le16_to_cpu(timing
->pixel_clock
) * 10;
849 mode
->hdisplay
= hactive
;
850 mode
->hsync_start
= mode
->hdisplay
+ hsync_offset
;
851 mode
->hsync_end
= mode
->hsync_start
+ hsync_pulse_width
;
852 mode
->htotal
= mode
->hdisplay
+ hblank
;
854 mode
->vdisplay
= vactive
;
855 mode
->vsync_start
= mode
->vdisplay
+ vsync_offset
;
856 mode
->vsync_end
= mode
->vsync_start
+ vsync_pulse_width
;
857 mode
->vtotal
= mode
->vdisplay
+ vblank
;
859 /* Some EDIDs have bogus h/vtotal values */
860 if (mode
->hsync_end
> mode
->htotal
)
861 mode
->htotal
= mode
->hsync_end
+ 1;
862 if (mode
->vsync_end
> mode
->vtotal
)
863 mode
->vtotal
= mode
->vsync_end
+ 1;
865 drm_mode_do_interlace_quirk(mode
, pt
);
867 drm_mode_set_name(mode
);
869 if (quirks
& EDID_QUIRK_DETAILED_SYNC_PP
) {
870 pt
->misc
|= DRM_EDID_PT_HSYNC_POSITIVE
| DRM_EDID_PT_VSYNC_POSITIVE
;
873 mode
->flags
|= (pt
->misc
& DRM_EDID_PT_HSYNC_POSITIVE
) ?
874 DRM_MODE_FLAG_PHSYNC
: DRM_MODE_FLAG_NHSYNC
;
875 mode
->flags
|= (pt
->misc
& DRM_EDID_PT_VSYNC_POSITIVE
) ?
876 DRM_MODE_FLAG_PVSYNC
: DRM_MODE_FLAG_NVSYNC
;
878 mode
->width_mm
= pt
->width_mm_lo
| (pt
->width_height_mm_hi
& 0xf0) << 4;
879 mode
->height_mm
= pt
->height_mm_lo
| (pt
->width_height_mm_hi
& 0xf) << 8;
881 if (quirks
& EDID_QUIRK_DETAILED_IN_CM
) {
882 mode
->width_mm
*= 10;
883 mode
->height_mm
*= 10;
886 if (quirks
& EDID_QUIRK_DETAILED_USE_MAXIMUM_SIZE
) {
887 mode
->width_mm
= edid
->width_cm
* 10;
888 mode
->height_mm
= edid
->height_cm
* 10;
895 mode_is_rb(const struct drm_display_mode
*mode
)
897 return (mode
->htotal
- mode
->hdisplay
== 160) &&
898 (mode
->hsync_end
- mode
->hdisplay
== 80) &&
899 (mode
->hsync_end
- mode
->hsync_start
== 32) &&
900 (mode
->vsync_start
- mode
->vdisplay
== 3);
904 mode_in_hsync_range(const struct drm_display_mode
*mode
,
905 struct edid
*edid
, u8
*t
)
907 int hsync
, hmin
, hmax
;
910 if (edid
->revision
>= 4)
911 hmin
+= ((t
[4] & 0x04) ? 255 : 0);
913 if (edid
->revision
>= 4)
914 hmax
+= ((t
[4] & 0x08) ? 255 : 0);
915 hsync
= drm_mode_hsync(mode
);
917 return (hsync
<= hmax
&& hsync
>= hmin
);
921 mode_in_vsync_range(const struct drm_display_mode
*mode
,
922 struct edid
*edid
, u8
*t
)
924 int vsync
, vmin
, vmax
;
927 if (edid
->revision
>= 4)
928 vmin
+= ((t
[4] & 0x01) ? 255 : 0);
930 if (edid
->revision
>= 4)
931 vmax
+= ((t
[4] & 0x02) ? 255 : 0);
932 vsync
= drm_mode_vrefresh(mode
);
934 return (vsync
<= vmax
&& vsync
>= vmin
);
938 range_pixel_clock(struct edid
*edid
, u8
*t
)
941 if (t
[9] == 0 || t
[9] == 255)
944 /* 1.4 with CVT support gives us real precision, yay */
945 if (edid
->revision
>= 4 && t
[10] == 0x04)
946 return (t
[9] * 10000) - ((t
[12] >> 2) * 250);
948 /* 1.3 is pathetic, so fuzz up a bit */
949 return t
[9] * 10000 + 5001;
953 mode_in_range(const struct drm_display_mode
*mode
, struct edid
*edid
,
954 struct detailed_timing
*timing
)
957 u8
*t
= (u8
*)timing
;
959 if (!mode_in_hsync_range(mode
, edid
, t
))
962 if (!mode_in_vsync_range(mode
, edid
, t
))
965 if ((max_clock
= range_pixel_clock(edid
, t
)))
966 if (mode
->clock
> max_clock
)
969 /* 1.4 max horizontal check */
970 if (edid
->revision
>= 4 && t
[10] == 0x04)
971 if (t
[13] && mode
->hdisplay
> 8 * (t
[13] + (256 * (t
[12]&0x3))))
974 if (mode_is_rb(mode
) && !drm_monitor_supports_rb(edid
))
981 * XXX If drm_dmt_modes ever regrows the CVT-R modes (and it will) this will
982 * need to account for them.
985 drm_gtf_modes_for_range(struct drm_connector
*connector
, struct edid
*edid
,
986 struct detailed_timing
*timing
)
989 struct drm_display_mode
*newmode
;
990 struct drm_device
*dev
= connector
->dev
;
992 for (i
= 0; i
< drm_num_dmt_modes
; i
++) {
993 if (mode_in_range(drm_dmt_modes
+ i
, edid
, timing
)) {
994 newmode
= drm_mode_duplicate(dev
, &drm_dmt_modes
[i
]);
996 drm_mode_probed_add(connector
, newmode
);
1006 do_inferred_modes(struct detailed_timing
*timing
, void *c
)
1008 struct detailed_mode_closure
*closure
= c
;
1009 struct detailed_non_pixel
*data
= &timing
->data
.other_data
;
1010 int gtf
= (closure
->edid
->features
& DRM_EDID_FEATURE_DEFAULT_GTF
);
1012 if (gtf
&& data
->type
== EDID_DETAIL_MONITOR_RANGE
)
1013 closure
->modes
+= drm_gtf_modes_for_range(closure
->connector
,
1019 add_inferred_modes(struct drm_connector
*connector
, struct edid
*edid
)
1021 struct detailed_mode_closure closure
= {
1022 connector
, edid
, 0, 0, 0
1025 if (version_greater(edid
, 1, 0))
1026 drm_for_each_detailed_block((u8
*)edid
, do_inferred_modes
,
1029 return closure
.modes
;
1033 drm_est3_modes(struct drm_connector
*connector
, struct detailed_timing
*timing
)
1035 int i
, j
, m
, modes
= 0;
1036 struct drm_display_mode
*mode
;
1037 u8
*est
= ((u8
*)timing
) + 5;
1039 for (i
= 0; i
< 6; i
++) {
1040 for (j
= 7; j
> 0; j
--) {
1041 m
= (i
* 8) + (7 - j
);
1042 if (m
>= ARRAY_SIZE(est3_modes
))
1044 if (est
[i
] & (1 << j
)) {
1045 mode
= drm_mode_find_dmt(connector
->dev
,
1049 /*, est3_modes[m].rb */);
1051 drm_mode_probed_add(connector
, mode
);
1062 do_established_modes(struct detailed_timing
*timing
, void *c
)
1064 struct detailed_mode_closure
*closure
= c
;
1065 struct detailed_non_pixel
*data
= &timing
->data
.other_data
;
1067 if (data
->type
== EDID_DETAIL_EST_TIMINGS
)
1068 closure
->modes
+= drm_est3_modes(closure
->connector
, timing
);
1072 * add_established_modes - get est. modes from EDID and add them
1073 * @edid: EDID block to scan
1075 * Each EDID block contains a bitmap of the supported "established modes" list
1076 * (defined above). Tease them out and add them to the global modes list.
1079 add_established_modes(struct drm_connector
*connector
, struct edid
*edid
)
1081 struct drm_device
*dev
= connector
->dev
;
1082 unsigned long est_bits
= edid
->established_timings
.t1
|
1083 (edid
->established_timings
.t2
<< 8) |
1084 ((edid
->established_timings
.mfg_rsvd
& 0x80) << 9);
1086 struct detailed_mode_closure closure
= {
1087 connector
, edid
, 0, 0, 0
1090 for (i
= 0; i
<= EDID_EST_TIMINGS
; i
++) {
1091 if (est_bits
& (1<<i
)) {
1092 struct drm_display_mode
*newmode
;
1093 newmode
= drm_mode_duplicate(dev
, &edid_est_modes
[i
]);
1095 drm_mode_probed_add(connector
, newmode
);
1101 if (version_greater(edid
, 1, 0))
1102 drm_for_each_detailed_block((u8
*)edid
,
1103 do_established_modes
, &closure
);
1105 return modes
+ closure
.modes
;
1109 do_standard_modes(struct detailed_timing
*timing
, void *c
)
1111 struct detailed_mode_closure
*closure
= c
;
1112 struct detailed_non_pixel
*data
= &timing
->data
.other_data
;
1113 struct drm_connector
*connector
= closure
->connector
;
1114 struct edid
*edid
= closure
->edid
;
1116 if (data
->type
== EDID_DETAIL_STD_MODES
) {
1118 for (i
= 0; i
< 6; i
++) {
1119 struct std_timing
*std
;
1120 struct drm_display_mode
*newmode
;
1122 std
= &data
->data
.timings
[i
];
1123 newmode
= drm_mode_std(connector
, edid
, std
,
1126 drm_mode_probed_add(connector
, newmode
);
1134 * add_standard_modes - get std. modes from EDID and add them
1135 * @edid: EDID block to scan
1137 * Standard modes can be calculated using the appropriate standard (DMT,
1138 * GTF or CVT. Grab them from @edid and add them to the list.
1141 add_standard_modes(struct drm_connector
*connector
, struct edid
*edid
)
1144 struct detailed_mode_closure closure
= {
1145 connector
, edid
, 0, 0, 0
1148 for (i
= 0; i
< EDID_STD_TIMINGS
; i
++) {
1149 struct drm_display_mode
*newmode
;
1151 newmode
= drm_mode_std(connector
, edid
,
1152 &edid
->standard_timings
[i
],
1155 drm_mode_probed_add(connector
, newmode
);
1160 if (version_greater(edid
, 1, 0))
1161 drm_for_each_detailed_block((u8
*)edid
, do_standard_modes
,
1164 /* XXX should also look for standard codes in VTB blocks */
1166 return modes
+ closure
.modes
;
1169 static int drm_cvt_modes(struct drm_connector
*connector
,
1170 struct detailed_timing
*timing
)
1172 int i
, j
, modes
= 0;
1173 struct drm_display_mode
*newmode
;
1174 struct drm_device
*dev
= connector
->dev
;
1175 struct cvt_timing
*cvt
;
1176 const int rates
[] = { 60, 85, 75, 60, 50 };
1177 const u8 empty
[3] = { 0, 0, 0 };
1179 for (i
= 0; i
< 4; i
++) {
1180 int uninitialized_var(width
), height
;
1181 cvt
= &(timing
->data
.other_data
.data
.cvt
[i
]);
1183 if (!memcmp(cvt
->code
, empty
, 3))
1186 height
= (cvt
->code
[0] + ((cvt
->code
[1] & 0xf0) << 4) + 1) * 2;
1187 switch (cvt
->code
[1] & 0x0c) {
1189 width
= height
* 4 / 3;
1192 width
= height
* 16 / 9;
1195 width
= height
* 16 / 10;
1198 width
= height
* 15 / 9;
1202 for (j
= 1; j
< 5; j
++) {
1203 if (cvt
->code
[2] & (1 << j
)) {
1204 newmode
= drm_cvt_mode(dev
, width
, height
,
1208 drm_mode_probed_add(connector
, newmode
);
1219 do_cvt_mode(struct detailed_timing
*timing
, void *c
)
1221 struct detailed_mode_closure
*closure
= c
;
1222 struct detailed_non_pixel
*data
= &timing
->data
.other_data
;
1224 if (data
->type
== EDID_DETAIL_CVT_3BYTE
)
1225 closure
->modes
+= drm_cvt_modes(closure
->connector
, timing
);
1229 add_cvt_modes(struct drm_connector
*connector
, struct edid
*edid
)
1231 struct detailed_mode_closure closure
= {
1232 connector
, edid
, 0, 0, 0
1235 if (version_greater(edid
, 1, 2))
1236 drm_for_each_detailed_block((u8
*)edid
, do_cvt_mode
, &closure
);
1238 /* XXX should also look for CVT codes in VTB blocks */
1240 return closure
.modes
;
1244 do_detailed_mode(struct detailed_timing
*timing
, void *c
)
1246 struct detailed_mode_closure
*closure
= c
;
1247 struct drm_display_mode
*newmode
;
1249 if (timing
->pixel_clock
) {
1250 newmode
= drm_mode_detailed(closure
->connector
->dev
,
1251 closure
->edid
, timing
,
1256 if (closure
->preferred
)
1257 newmode
->type
|= DRM_MODE_TYPE_PREFERRED
;
1259 drm_mode_probed_add(closure
->connector
, newmode
);
1261 closure
->preferred
= 0;
1266 * add_detailed_modes - Add modes from detailed timings
1267 * @connector: attached connector
1268 * @edid: EDID block to scan
1269 * @quirks: quirks to apply
1272 add_detailed_modes(struct drm_connector
*connector
, struct edid
*edid
,
1275 struct detailed_mode_closure closure
= {
1283 if (closure
.preferred
&& !version_greater(edid
, 1, 3))
1285 (edid
->features
& DRM_EDID_FEATURE_PREFERRED_TIMING
);
1287 drm_for_each_detailed_block((u8
*)edid
, do_detailed_mode
, &closure
);
1289 return closure
.modes
;
1292 #define HDMI_IDENTIFIER 0x000C03
1293 #define AUDIO_BLOCK 0x01
1294 #define VENDOR_BLOCK 0x03
1295 #define EDID_BASIC_AUDIO (1 << 6)
1298 * Search EDID for CEA extension block.
1300 static u8
*drm_find_cea_extension(struct edid
*edid
)
1302 u8
*edid_ext
= NULL
;
1305 /* No EDID or EDID extensions */
1306 if (edid
== NULL
|| edid
->extensions
== 0)
1309 /* Find CEA extension */
1310 for (i
= 0; i
< edid
->extensions
; i
++) {
1311 edid_ext
= (u8
*)edid
+ EDID_LENGTH
* (i
+ 1);
1312 if (edid_ext
[0] == CEA_EXT
)
1316 if (i
== edid
->extensions
)
1323 * drm_detect_hdmi_monitor - detect whether monitor is hdmi.
1324 * @edid: monitor EDID information
1326 * Parse the CEA extension according to CEA-861-B.
1327 * Return true if HDMI, false if not or unknown.
1329 bool drm_detect_hdmi_monitor(struct edid
*edid
)
1333 int start_offset
, end_offset
;
1334 bool is_hdmi
= false;
1336 edid_ext
= drm_find_cea_extension(edid
);
1340 /* Data block offset in CEA extension block */
1342 end_offset
= edid_ext
[2];
1345 * Because HDMI identifier is in Vendor Specific Block,
1346 * search it from all data blocks of CEA extension.
1348 for (i
= start_offset
; i
< end_offset
;
1349 /* Increased by data block len */
1350 i
+= ((edid_ext
[i
] & 0x1f) + 1)) {
1351 /* Find vendor specific block */
1352 if ((edid_ext
[i
] >> 5) == VENDOR_BLOCK
) {
1353 hdmi_id
= edid_ext
[i
+ 1] | (edid_ext
[i
+ 2] << 8) |
1354 edid_ext
[i
+ 3] << 16;
1355 /* Find HDMI identifier */
1356 if (hdmi_id
== HDMI_IDENTIFIER
)
1365 EXPORT_SYMBOL(drm_detect_hdmi_monitor
);
1368 * drm_detect_monitor_audio - check monitor audio capability
1370 * Monitor should have CEA extension block.
1371 * If monitor has 'basic audio', but no CEA audio blocks, it's 'basic
1372 * audio' only. If there is any audio extension block and supported
1373 * audio format, assume at least 'basic audio' support, even if 'basic
1374 * audio' is not defined in EDID.
1377 bool drm_detect_monitor_audio(struct edid
*edid
)
1381 bool has_audio
= false;
1382 int start_offset
, end_offset
;
1384 edid_ext
= drm_find_cea_extension(edid
);
1388 has_audio
= ((edid_ext
[3] & EDID_BASIC_AUDIO
) != 0);
1391 DRM_DEBUG_KMS("Monitor has basic audio support\n");
1395 /* Data block offset in CEA extension block */
1397 end_offset
= edid_ext
[2];
1399 for (i
= start_offset
; i
< end_offset
;
1400 i
+= ((edid_ext
[i
] & 0x1f) + 1)) {
1401 if ((edid_ext
[i
] >> 5) == AUDIO_BLOCK
) {
1403 for (j
= 1; j
< (edid_ext
[i
] & 0x1f); j
+= 3)
1404 DRM_DEBUG_KMS("CEA audio format %d\n",
1405 (edid_ext
[i
+ j
] >> 3) & 0xf);
1412 EXPORT_SYMBOL(drm_detect_monitor_audio
);
1415 * drm_add_edid_modes - add modes from EDID data, if available
1416 * @connector: connector we're probing
1419 * Add the specified modes to the connector's mode list.
1421 * Return number of modes added or 0 if we couldn't find any.
1423 int drm_add_edid_modes(struct drm_connector
*connector
, struct edid
*edid
)
1431 if (!drm_edid_is_valid(edid
)) {
1432 dev_warn(connector
->dev
->dev
, "%s: EDID invalid.\n",
1433 drm_get_connector_name(connector
));
1437 quirks
= edid_get_quirks(edid
);
1440 * EDID spec says modes should be preferred in this order:
1441 * - preferred detailed mode
1442 * - other detailed modes from base block
1443 * - detailed modes from extension blocks
1444 * - CVT 3-byte code modes
1445 * - standard timing codes
1446 * - established timing codes
1447 * - modes inferred from GTF or CVT range information
1449 * We get this pretty much right.
1451 * XXX order for additional mode types in extension blocks?
1453 num_modes
+= add_detailed_modes(connector
, edid
, quirks
);
1454 num_modes
+= add_cvt_modes(connector
, edid
);
1455 num_modes
+= add_standard_modes(connector
, edid
);
1456 num_modes
+= add_established_modes(connector
, edid
);
1457 num_modes
+= add_inferred_modes(connector
, edid
);
1459 if (quirks
& (EDID_QUIRK_PREFER_LARGE_60
| EDID_QUIRK_PREFER_LARGE_75
))
1460 edid_fixup_preferred(connector
, quirks
);
1462 connector
->display_info
.width_mm
= edid
->width_cm
* 10;
1463 connector
->display_info
.height_mm
= edid
->height_cm
* 10;
1467 EXPORT_SYMBOL(drm_add_edid_modes
);
1470 * drm_add_modes_noedid - add modes for the connectors without EDID
1471 * @connector: connector we're probing
1472 * @hdisplay: the horizontal display limit
1473 * @vdisplay: the vertical display limit
1475 * Add the specified modes to the connector's mode list. Only when the
1476 * hdisplay/vdisplay is not beyond the given limit, it will be added.
1478 * Return number of modes added or 0 if we couldn't find any.
1480 int drm_add_modes_noedid(struct drm_connector
*connector
,
1481 int hdisplay
, int vdisplay
)
1483 int i
, count
, num_modes
= 0;
1484 struct drm_display_mode
*mode
;
1485 struct drm_device
*dev
= connector
->dev
;
1487 count
= sizeof(drm_dmt_modes
) / sizeof(struct drm_display_mode
);
1493 for (i
= 0; i
< count
; i
++) {
1494 const struct drm_display_mode
*ptr
= &drm_dmt_modes
[i
];
1495 if (hdisplay
&& vdisplay
) {
1497 * Only when two are valid, they will be used to check
1498 * whether the mode should be added to the mode list of
1501 if (ptr
->hdisplay
> hdisplay
||
1502 ptr
->vdisplay
> vdisplay
)
1505 if (drm_mode_vrefresh(ptr
) > 61)
1507 mode
= drm_mode_duplicate(dev
, ptr
);
1509 drm_mode_probed_add(connector
, mode
);
1515 EXPORT_SYMBOL(drm_add_modes_noedid
);