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da0df92b57
Broken monitors and/or broken graphic boards may send erroneous or no EDID data. This also applies to broken KVM devices that are unable to correctly forward the EDID data of the connected monitor but invent their own fantasy data. This patch allows to specify an EDID data set to be used instead of probing the monitor for it. It contains built-in data sets of frequently used screen resolutions. In addition, a particular EDID data set may be provided in the /lib/firmware directory and loaded via the firmware interface. The name is passed to the kernel as module parameter of the drm_kms_helper module either when loaded options drm_kms_helper edid_firmware=edid/1280x1024.bin or as kernel commandline parameter drm_kms_helper.edid_firmware=edid/1280x1024.bin It is also possible to restrict the usage of a specified EDID data set to a particular connector. This is done by prepending the name of the connector to the name of the EDID data set using the syntax edid_firmware=[<connector>:]<edid> such as, for example, edid_firmware=DVI-I-1:edid/1920x1080.bin in which case no other connector will be affected. The built-in data sets are Resolution Name -------------------------------- 1024x768 edid/1024x768.bin 1280x1024 edid/1280x1024.bin 1680x1050 edid/1680x1050.bin 1920x1080 edid/1920x1080.bin They are ignored, if a file with the same name is available in the /lib/firmware directory. The built-in EDID data sets are based on standard timings that may not apply to a particular monitor and even crash it. Ideally, EDID data of the connected monitor should be used. They may be obtained through the drm/cardX/cardX-<connector>/edid entry in the /sys/devices PCI directory of a correctly working graphics adapter. It is even possible to specify the name of an EDID data set on-the-fly via the /sys/module interface, e.g. echo edid/myedid.bin >/sys/module/drm_kms_helper/parameters/edid_firmware The new screen mode is considered when the related kernel function is called for the first time after the change. Such calls are made when the X server is started or when the display settings dialog is opened in an already running X server. Signed-off-by: Carsten Emde <C.Emde@osadl.org> Signed-off-by: Dave Airlie <airlied@redhat.com>
262 lines
9.2 KiB
ArmAsm
262 lines
9.2 KiB
ArmAsm
/*
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edid.S: EDID data template
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Copyright (C) 2012 Carsten Emde <C.Emde@osadl.org>
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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/* Manufacturer */
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#define MFG_LNX1 'L'
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#define MFG_LNX2 'N'
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#define MFG_LNX3 'X'
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#define SERIAL 0
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#define YEAR 2012
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#define WEEK 5
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/* EDID 1.3 standard definitions */
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#define XY_RATIO_16_10 0b00
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#define XY_RATIO_4_3 0b01
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#define XY_RATIO_5_4 0b10
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#define XY_RATIO_16_9 0b11
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#define mfgname2id(v1,v2,v3) \
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((((v1-'@')&0x1f)<<10)+(((v2-'@')&0x1f)<<5)+((v3-'@')&0x1f))
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#define swap16(v1) ((v1>>8)+((v1&0xff)<<8))
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#define msbs2(v1,v2) ((((v1>>8)&0x0f)<<4)+((v2>>8)&0x0f))
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#define msbs4(v1,v2,v3,v4) \
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(((v1&0x03)>>2)+((v2&0x03)>>4)+((v3&0x03)>>6)+((v4&0x03)>>8))
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#define pixdpi2mm(pix,dpi) ((pix*25)/dpi)
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#define xsize pixdpi2mm(XPIX,DPI)
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#define ysize pixdpi2mm(YPIX,DPI)
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.data
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/* Fixed header pattern */
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header: .byte 0x00,0xff,0xff,0xff,0xff,0xff,0xff,0x00
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mfg_id: .word swap16(mfgname2id(MFG_LNX1, MFG_LNX2, MFG_LNX3))
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prod_code: .word 0
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/* Serial number. 32 bits, little endian. */
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serial_number: .long SERIAL
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/* Week of manufacture */
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week: .byte WEEK
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/* Year of manufacture, less 1990. (1990-2245)
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If week=255, it is the model year instead */
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year: .byte YEAR-1990
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version: .byte VERSION /* EDID version, usually 1 (for 1.3) */
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revision: .byte REVISION /* EDID revision, usually 3 (for 1.3) */
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/* If Bit 7=1 Digital input. If set, the following bit definitions apply:
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Bits 6-1 Reserved, must be 0
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Bit 0 Signal is compatible with VESA DFP 1.x TMDS CRGB,
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1 pixel per clock, up to 8 bits per color, MSB aligned,
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If Bit 7=0 Analog input. If clear, the following bit definitions apply:
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Bits 6-5 Video white and sync levels, relative to blank
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00=+0.7/-0.3 V; 01=+0.714/-0.286 V;
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10=+1.0/-0.4 V; 11=+0.7/0 V
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Bit 4 Blank-to-black setup (pedestal) expected
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Bit 3 Separate sync supported
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Bit 2 Composite sync (on HSync) supported
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Bit 1 Sync on green supported
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Bit 0 VSync pulse must be serrated when somposite or
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sync-on-green is used. */
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video_parms: .byte 0x6d
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/* Maximum horizontal image size, in centimetres
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(max 292 cm/115 in at 16:9 aspect ratio) */
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max_hor_size: .byte xsize/10
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/* Maximum vertical image size, in centimetres.
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If either byte is 0, undefined (e.g. projector) */
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max_vert_size: .byte ysize/10
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/* Display gamma, minus 1, times 100 (range 1.00-3.5 */
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gamma: .byte 120
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/* Bit 7 DPMS standby supported
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Bit 6 DPMS suspend supported
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Bit 5 DPMS active-off supported
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Bits 4-3 Display type: 00=monochrome; 01=RGB colour;
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10=non-RGB multicolour; 11=undefined
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Bit 2 Standard sRGB colour space. Bytes 25-34 must contain
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sRGB standard values.
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Bit 1 Preferred timing mode specified in descriptor block 1.
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Bit 0 GTF supported with default parameter values. */
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dsp_features: .byte 0xea
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/* Chromaticity coordinates. */
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/* Red and green least-significant bits
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Bits 7-6 Red x value least-significant 2 bits
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Bits 5-4 Red y value least-significant 2 bits
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Bits 3-2 Green x value lst-significant 2 bits
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Bits 1-0 Green y value least-significant 2 bits */
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red_green_lsb: .byte 0x5e
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/* Blue and white least-significant 2 bits */
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blue_white_lsb: .byte 0xc0
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/* Red x value most significant 8 bits.
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0-255 encodes 0-0.996 (255/256); 0-0.999 (1023/1024) with lsbits */
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red_x_msb: .byte 0xa4
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/* Red y value most significant 8 bits */
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red_y_msb: .byte 0x59
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/* Green x and y value most significant 8 bits */
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green_x_y_msb: .byte 0x4a,0x98
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/* Blue x and y value most significant 8 bits */
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blue_x_y_msb: .byte 0x25,0x20
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/* Default white point x and y value most significant 8 bits */
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white_x_y_msb: .byte 0x50,0x54
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/* Established timings */
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/* Bit 7 720x400 @ 70 Hz
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Bit 6 720x400 @ 88 Hz
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Bit 5 640x480 @ 60 Hz
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Bit 4 640x480 @ 67 Hz
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Bit 3 640x480 @ 72 Hz
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Bit 2 640x480 @ 75 Hz
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Bit 1 800x600 @ 56 Hz
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Bit 0 800x600 @ 60 Hz */
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estbl_timing1: .byte 0x00
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/* Bit 7 800x600 @ 72 Hz
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Bit 6 800x600 @ 75 Hz
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Bit 5 832x624 @ 75 Hz
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Bit 4 1024x768 @ 87 Hz, interlaced (1024x768)
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Bit 3 1024x768 @ 60 Hz
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Bit 2 1024x768 @ 72 Hz
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Bit 1 1024x768 @ 75 Hz
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Bit 0 1280x1024 @ 75 Hz */
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estbl_timing2: .byte ESTABLISHED_TIMINGS_BITS
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/* Bit 7 1152x870 @ 75 Hz (Apple Macintosh II)
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Bits 6-0 Other manufacturer-specific display mod */
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estbl_timing3: .byte 0x00
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/* Standard timing */
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/* X resolution, less 31, divided by 8 (256-2288 pixels) */
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std_xres: .byte (XPIX/8)-31
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/* Y resolution, X:Y pixel ratio
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Bits 7-6 X:Y pixel ratio: 00=16:10; 01=4:3; 10=5:4; 11=16:9.
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Bits 5-0 Vertical frequency, less 60 (60-123 Hz) */
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std_vres: .byte (XY_RATIO<<6)+VFREQ-60
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.fill 7,2,0x0101 /* Unused */
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descriptor1:
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/* Pixel clock in 10 kHz units. (0.-655.35 MHz, little-endian) */
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clock: .word CLOCK/10
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/* Horizontal active pixels 8 lsbits (0-4095) */
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x_act_lsb: .byte XPIX&0xff
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/* Horizontal blanking pixels 8 lsbits (0-4095)
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End of active to start of next active. */
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x_blk_lsb: .byte XBLANK&0xff
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/* Bits 7-4 Horizontal active pixels 4 msbits
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Bits 3-0 Horizontal blanking pixels 4 msbits */
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x_msbs: .byte msbs2(XPIX,XBLANK)
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/* Vertical active lines 8 lsbits (0-4095) */
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y_act_lsb: .byte YPIX&0xff
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/* Vertical blanking lines 8 lsbits (0-4095) */
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y_blk_lsb: .byte YBLANK&0xff
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/* Bits 7-4 Vertical active lines 4 msbits
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Bits 3-0 Vertical blanking lines 4 msbits */
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y_msbs: .byte msbs2(YPIX,YBLANK)
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/* Horizontal sync offset pixels 8 lsbits (0-1023) From blanking start */
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x_snc_off_lsb: .byte XOFFSET&0xff
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/* Horizontal sync pulse width pixels 8 lsbits (0-1023) */
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x_snc_pls_lsb: .byte XPULSE&0xff
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/* Bits 7-4 Vertical sync offset lines 4 lsbits -63)
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Bits 3-0 Vertical sync pulse width lines 4 lsbits -63) */
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y_snc_lsb: .byte ((YOFFSET-63)<<4)+(YPULSE-63)
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/* Bits 7-6 Horizontal sync offset pixels 2 msbits
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Bits 5-4 Horizontal sync pulse width pixels 2 msbits
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Bits 3-2 Vertical sync offset lines 2 msbits
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Bits 1-0 Vertical sync pulse width lines 2 msbits */
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xy_snc_msbs: .byte msbs4(XOFFSET,XPULSE,YOFFSET,YPULSE)
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/* Horizontal display size, mm, 8 lsbits (0-4095 mm, 161 in) */
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x_dsp_size: .byte xsize&0xff
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/* Vertical display size, mm, 8 lsbits (0-4095 mm, 161 in) */
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y_dsp_size: .byte ysize&0xff
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/* Bits 7-4 Horizontal display size, mm, 4 msbits
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Bits 3-0 Vertical display size, mm, 4 msbits */
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dsp_size_mbsb: .byte msbs2(xsize,ysize)
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/* Horizontal border pixels (each side; total is twice this) */
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x_border: .byte 0
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/* Vertical border lines (each side; total is twice this) */
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y_border: .byte 0
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/* Bit 7 Interlaced
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Bits 6-5 Stereo mode: 00=No stereo; other values depend on bit 0:
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Bit 0=0: 01=Field sequential, sync=1 during right; 10=similar,
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sync=1 during left; 11=4-way interleaved stereo
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Bit 0=1 2-way interleaved stereo: 01=Right image on even lines;
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10=Left image on even lines; 11=side-by-side
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Bits 4-3 Sync type: 00=Analog composite; 01=Bipolar analog composite;
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10=Digital composite (on HSync); 11=Digital separate
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Bit 2 If digital separate: Vertical sync polarity (1=positive)
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Other types: VSync serrated (HSync during VSync)
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Bit 1 If analog sync: Sync on all 3 RGB lines (else green only)
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Digital: HSync polarity (1=positive)
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Bit 0 2-way line-interleaved stereo, if bits 4-3 are not 00. */
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features: .byte 0x18+(VSYNC_POL<<2)+(HSYNC_POL<<1)
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descriptor2: .byte 0,0 /* Not a detailed timing descriptor */
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.byte 0 /* Must be zero */
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.byte 0xff /* Descriptor is monitor serial number (text) */
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.byte 0 /* Must be zero */
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start1: .ascii "Linux #0"
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end1: .byte 0x0a /* End marker */
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.fill 12-(end1-start1), 1, 0x20 /* Padded spaces */
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descriptor3: .byte 0,0 /* Not a detailed timing descriptor */
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.byte 0 /* Must be zero */
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.byte 0xfd /* Descriptor is monitor range limits */
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.byte 0 /* Must be zero */
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start2: .byte VFREQ-1 /* Minimum vertical field rate (1-255 Hz) */
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.byte VFREQ+1 /* Maximum vertical field rate (1-255 Hz) */
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.byte (CLOCK/(XPIX+XBLANK))-1 /* Minimum horizontal line rate
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(1-255 kHz) */
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.byte (CLOCK/(XPIX+XBLANK))+1 /* Maximum horizontal line rate
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(1-255 kHz) */
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.byte (CLOCK/10000)+1 /* Maximum pixel clock rate, rounded up
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to 10 MHz multiple (10-2550 MHz) */
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.byte 0 /* No extended timing information type */
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end2: .byte 0x0a /* End marker */
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.fill 12-(end2-start2), 1, 0x20 /* Padded spaces */
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descriptor4: .byte 0,0 /* Not a detailed timing descriptor */
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.byte 0 /* Must be zero */
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.byte 0xfc /* Descriptor is text */
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.byte 0 /* Must be zero */
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start3: .ascii TIMING_NAME
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end3: .byte 0x0a /* End marker */
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.fill 12-(end3-start3), 1, 0x20 /* Padded spaces */
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extensions: .byte 0 /* Number of extensions to follow */
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checksum: .byte CRC /* Sum of all bytes must be 0 */
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