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https://github.com/KolibriOS/kolibrios.git
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Stub of a stub of RDC videocard driver, based on vidintel.asm (c) by CleverMouse. Card detection should work already.
git-svn-id: svn://kolibrios.org@4006 a494cfbc-eb01-0410-851d-a64ba20cac60
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438
kernel/trunk/drivers/vidrdc.asm
Normal file
438
kernel/trunk/drivers/vidrdc.asm
Normal file
@ -0,0 +1,438 @@
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; Stub of videodriver for RDC Semiconductor Co. M2010/M2012 videocards (controller names: R3306/R3308).
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; It is used in SoC produced by DMP Electronics Inc.:
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; Vortex86MX (contains RDC M2010 graphics card, appears in eBox-3300MX)
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; Vortex86MX+ (contains RDC M2012 graphics card, appears in eBox-3310MX)
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; Link to manufacturers websites -
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; RDC Semiconductor Co.: http://www.rdc.com.tw
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; DM&P Electronics Inc.: http://www.dmp.com.tw and http://www.compactpc.com.tw
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; Code stolen from vidintel.asm driver (c) by CleverMouse and adapted for RDC.
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; When the start procedure gets control,
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; it tries to detect preferred resolution,
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; sets the detected resolution assuming 32-bpp VESA mode and exits
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; (without registering a service).
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; Detection can be overloaded with compile-time settings
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; use_predefined_mode/predefined_width/predefined_height.
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; set predefined resolution here
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use_predefined_mode = 0;1
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predefined_width = 0;1366
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predefined_height = 0;768
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; standard driver stuff
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format MS COFF
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DEBUG = 1
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include 'proc32.inc'
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include 'imports.inc'
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public START
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public version
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section '.flat' code readable align 16
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; the start procedure (see the description above)
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START:
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; 1. Detect device. Abort if not found.
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push esi
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call DetectDevice
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test esi, esi
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jz .return0
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;{START}yogev_ezra: temporary exit after detection
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pusha
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mov esi, exitmsg
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call SysMsgBoardStr
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popa
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jmp .return0
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;{END}yogev_ezra: temporary exit after detection
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; 2. Detect optimal mode unless the mode is given explicitly. Abort if failed.
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if use_predefined_mode = 0
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call DetectMode
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end if
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cmp [width], 0
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jz .return0_cleanup
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; 3. Set the detected mode.
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call SetMode
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; 4. Cleanup and return.
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.return0_cleanup:
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stdcall FreeKernelSpace, esi
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.return0:
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pop esi
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xor eax, eax
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ret 4
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; check that there is RDC videocard
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; if so, map MMIO registers and set internal variables
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; esi points to MMIO block; NULL means no device
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DetectDevice:
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; 1. Sanity check: check that we are dealing with RDC videocard.
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; Integrated video device for RDC is always at PCI:0:13:0 (bus:dev:fn=0:0d:0)
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xor esi, esi ; initialize return value to NULL
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; 1a. Get PCI VendorID and DeviceID.
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push esi ; in: reg=0 (register) -> register 00 means return DeviceID (bits 16-31) + VendorID (bits 0-15)
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push 68h ; in: devfn=13:0 | device:5bit (0Dh = 1101) + func:3bit (0 = 000) -> total:1byte (1101000b = 68h)
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push esi ; in: bus=0
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call PciRead32
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; 1b. loword(eax) = ax = VendorID, hiword(eax) = DeviceID.
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; Test whether we have RDC Semiconductor Co. chipset.
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cmp ax, 17F3h ;VendorID 0x17F3, 'RDC Semiconductor Co.'
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jnz .return
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; 1c. Say hi including DeviceID.
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shr eax, 10h ; now, ax = HIWORD(eax) = PCI DeviceID
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push edi
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pusha
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mov edi, pciid_text ; edi='0000'
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call WriteWord
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mov esi, hellomsg
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call SysMsgBoardStr
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popa
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; 1d. Test whether we know this DeviceID.
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; If this is the case, remember the position of the device in line of RDC cards;
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; this knowledge will be useful later.
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; Tested on devices with id: 17F3:2010, 17F3:2012.
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mov ecx, pciids_num
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mov edi, pciids
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repnz scasw
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pop edi
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jnz .return_unknown_pciid
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sub ecx, pciids_num - 1
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neg ecx
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mov [deviceType], ecx
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; 1e. Continue saying hi with positive intonation.
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pusha
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mov esi, knownmsg
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call SysMsgBoardStr
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popa
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; 2. Prepare MMIO region to control the card.
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; 2a. Read MMIO physical address from PCI config space.
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; According to RDC M2010/M2012 registers manual, their memory-mapped I/O space is located at Base address #1
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push 14h ; in: reg=14h (register) -> register 14h means Base address #1 (BAR1) in PCI configuration space
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push 68h ; in: devfn=13:0 | device:5bit (0Dh = 1101) + func:3bit (0 = 000) -> total:1byte (1101000b = 68h)
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push esi ; in: bus=0
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call PciRead32
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; 2b. Mask out PCI region type, lower 4 bits.
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and al, not 0xF
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; 2c. Create virtual mapping of the physical memory.
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push 1Bh
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push 100000h
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push eax
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call MapIoMem
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; 3. Return.
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xchg esi, eax
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.return:
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ret
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; 1f. If we do not know DeviceID, continue saying hi with negative intonation.
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.return_unknown_pciid:
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pusha
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mov esi, unknownmsg
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call SysMsgBoardStr
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popa
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ret
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; Convert word in ax to hexadecimal text in edi, advance edi.
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WriteWord:
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; 1. Convert high byte.
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push eax
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mov al, ah
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call WriteByte
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pop eax
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; 2. Convert low byte.
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; Fall through to WriteByte; ret from WriteByte is ret from WriteWord too.
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; Convert byte in al to hexadecimal text in edi, advance edi.
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WriteByte:
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; 1. Convert high nibble.
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push eax
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shr al, 4
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call WriteNibble
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pop eax
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; 2. Convert low nibble.
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and al, 0xF
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; Fall through to WriteNibble; ret from WriteNibble is ret from WriteByte too.
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; Convert nibble in al to hexadecimal text in edi, advance edi.
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WriteNibble:
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; Obvious, isn't it?
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cmp al, 10
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sbb al, 69h
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das
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stosb ; This instruction uses EDI implicitly
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ret
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if use_predefined_mode = 0
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; detect resolution of the flat panel
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DetectMode:
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push esi edi
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; 1. Get the location of block of GMBUS* registers.
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; Starting with Ironlake, GMBUS* registers were moved.
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add esi, 5100h
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cmp [deviceType], pciids_num ;ironlake_start
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jb @f
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add esi, 0xC0000
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@@:
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; 2. Initialize GMBUS engine.
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mov edi, edid
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mov ecx, 0x10000
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@@:
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test byte [esi+8+1], 80h
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loopnz @b
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jnz .fail
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mov dword [esi], 3
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test byte [esi+8+1], 4
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jz .noreset
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call ResetGMBus
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jnz .fail
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.noreset:
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; 3. Send read command.
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and dword [esi+20h], 0
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mov dword [esi+4], 4E8000A1h
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; 4. Wait for data, writing to the buffer as data arrive.
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.getdata:
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mov ecx, 0x10000
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@@:
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test byte [esi+8+1], 8
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loopz @b
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test byte [esi+8+1], 4
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jz .dataok
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call ResetGMBus
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jmp .fail
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.dataok:
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mov eax, [esi+0Ch]
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stosd
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cmp edi, edid+80h
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jb .getdata
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; 5. Wait for bus idle.
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mov ecx, 0x10000
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@@:
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test byte [esi+8+1], 2
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loopnz @b
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; 6. We got EDID; dump it if DEBUG.
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if DEBUG
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pusha
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xor ecx, ecx
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mov esi, edid
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mov edi, edid_text
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.dumploop:
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lodsb
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call WriteByte
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mov al, ' '
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stosb
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inc cl
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test cl, 15
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jnz @f
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mov byte [edi-1], 13
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mov al, 10
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stosb
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@@:
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test cl, cl
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jns .dumploop
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mov esi, edidmsg
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call SysMsgBoardStr
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popa
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end if
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; 7. Test whether EDID is good.
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; 7a. Signature: 00 FF FF FF FF FF FF 00.
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mov esi, edid
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cmp dword [esi], 0xFFFFFF00
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jnz .fail
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cmp dword [esi+4], 0x00FFFFFF
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jnz .fail
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; 7b. Checksum must be zero.
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xor edx, edx
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mov ecx, 80h
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@@:
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lodsb
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add dl, al
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loop @b
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jnz .fail
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; 8. Get width and height from EDID.
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xor eax, eax
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mov ah, [esi-80h+3Ah]
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shr ah, 4
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mov al, [esi-80h+38h]
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mov [width], eax
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mov ah, [esi-80h+3Dh]
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shr ah, 4
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mov al, [esi-80h+3Bh]
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mov [height], eax
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; 9. Return.
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.fail:
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pop edi esi
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ret
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; reset bus, clear all errors
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ResetGMBus:
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; look into the PRM
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mov dword [esi+4], 80000000h
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mov dword [esi+4], 0
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mov ecx, 0x10000
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@@:
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test byte [esi+8+1], 2
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loopnz @b
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ret
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end if
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; set resolution [width]*[height]
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SetMode:
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; 1. Program the registers of videocard.
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; look into the PRM
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cli
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; or byte [esi+7000Ah], 0Ch ; PIPEACONF: disable Display+Cursor Planes
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; or byte [esi+7100Ah], 0Ch ; PIPEBCONF: disable Display+Cursor Planes
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xor eax, eax
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xor edx, edx
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cmp [deviceType], pciids_num ;i965_start
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jb @f
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mov dl, 9Ch - 84h
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@@:
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; or byte [esi+71403h], 80h ; VGACNTRL: VGA Display Disable
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and byte [esi+70080h], not 27h ; CURACNTR: disable cursor A
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mov dword [esi+70084h], eax ; CURABASE: force write to CURA* regs
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and byte [esi+700C0h], not 27h ; CURBCNTR: disable cursor B
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mov dword [esi+700C4h], eax ; CURBBASE: force write to CURB* regs
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and byte [esi+70183h], not 80h ; DSPACNTR: disable Primary A Plane
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mov dword [esi+edx+70184h], eax ; DSPALINOFF/DSPASURF: force write to DSPA* regs
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and byte [esi+71183h], not 80h ; DSPBCNTR: disable Primary B Plane
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mov dword [esi+edx+71184h], eax ; DSPBLINOFF/DSPBSURF: force write to DSPB* regs
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if 1
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cmp [deviceType], pciids_num ;ironlake_start
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jae .disable_pipes
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mov edx, 10000h
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or byte [esi+70024h], 2 ; PIPEASTAT: clear VBLANK status
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or byte [esi+71024h], 2 ; PIPEBSTAT: clear VBLANK status
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.wait_vblank_preironlake1:
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mov ecx, 1000h
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loop $
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test byte [esi+7000Bh], 80h ; PIPEACONF: pipe A active?
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jz @f
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test byte [esi+70024h], 2 ; PIPEASTAT: got VBLANK?
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jz .wait_vblank_preironlake2
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@@:
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test byte [esi+7100Bh], 80h ; PIPEBCONF: pipe B active?
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jz .disable_pipes
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test byte [esi+71024h], 2 ; PIPEBSTAT: got VBLANK?
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jnz .disable_pipes
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.wait_vblank_preironlake2:
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dec edx
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jnz .wait_vblank_preironlake1
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jmp .not_disabled
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.disable_pipes:
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end if
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and byte [esi+7000Bh], not 80h ; PIPEACONF: disable pipe
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and byte [esi+7100Bh], not 80h ; PIPEBCONF: disable pipe
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cmp [deviceType], pciids_num ;gen4_start
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jb .wait_watching_scanline
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; g45 and later: use special flag from PIPE*CONF
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mov edx, 10000h
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@@:
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mov ecx, 1000h
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loop $
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test byte [esi+7000Bh], 40h ; PIPEACONF: wait until pipe disabled
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jz @f
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dec edx
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jnz @b
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jmp .not_disabled
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@@:
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test byte [esi+7100Bh], 40h ; PIPEBCONF: wait until pipe disabled
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jz .disabled
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mov ecx, 1000h
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loop $
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dec edx
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jnz @b
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jmp .not_disabled
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; pineview and before: wait while scanline still changes
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.wait_watching_scanline:
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mov edx, 1000h
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.dis1:
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push dword [esi+71000h]
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push dword [esi+70000h]
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mov ecx, 10000h
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loop $
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pop eax
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xor eax, [esi+70000h]
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and eax, 1FFFh
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pop eax
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jnz .notdis1
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xor eax, [esi+71000h]
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and eax, 1FFFh
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jz .disabled
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.notdis1:
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dec edx
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jnz .dis1
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.not_disabled:
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sti
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jmp .return
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.disabled:
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lea eax, [esi+61183h]
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cmp [deviceType], pciids_num ;ironlake_start
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jb @f
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add eax, 0xE0000 - 0x60000
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@@:
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lea edx, [esi+60000h]
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test byte [eax], 40h
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jz @f
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add edx, 1000h
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@@:
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mov eax, [width]
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dec eax
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shl eax, 16
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mov ax, word [height]
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dec eax
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mov dword [edx+1Ch], eax ; PIPEASRC: set source image size
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ror eax, 16
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mov dword [edx+10190h], eax ; for old cards
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mov ecx, [width]
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add ecx, 15
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and ecx, not 15
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shl ecx, 2
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mov dword [edx+10188h], ecx ; DSPASTRIDE: set scanline length
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mov dword [edx+10184h], 0 ; DSPALINOFF: force write to DSPA* registers
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and byte [esi+61233h], not 80h ; PFIT_CONTROL: disable panel fitting
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or byte [edx+1000Bh], 80h ; PIPEACONF: enable pipe
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; and byte [edx+1000Ah], not 0Ch ; PIPEACONF: enable Display+Cursor Planes
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or byte [edx+10183h], 80h ; DSPACNTR: enable Display Plane A
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sti
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; 2. Notify the kernel that resolution has changed.
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call GetDisplay
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mov edx, [width]
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mov dword [eax+8], edx
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mov edx, [height]
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mov dword [eax+0Ch], edx
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mov [eax+18h], ecx
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mov eax, [width]
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dec eax
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dec edx
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call SetScreen
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.return:
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ret
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align 4
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hellomsg db 'RDC videocard detected, PciId=17F3:' ;VendorID 0x17F3, 'RDC Semiconductor Co.'
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pciid_text db '0000'
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db ', which is ', 0
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knownmsg db 'known',13,10,0
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unknownmsg db 'unknown',13,10,0
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exitmsg db 'Card detected successfully, exiting driver...',13,10,0
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if DEBUG
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edidmsg db 'EDID successfully read:',13,10
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edid_text rb 8*(16*3+1)
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db 0
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end if
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version:
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dd 0x50005
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width dd predefined_width
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height dd predefined_height
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pciids:
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dw 0x2010 ; M2010 - appears in eBox-3300MX (Vortex86MX SoC)
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dw 0x2012 ; M2012 - appears in eBox-3310MX (Vortex86MX+ SoC)
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pciids_num = ($ - pciids) / 2
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align 4
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deviceType dd ?
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edid rb 0x80
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