source: xtideuniversalbios/trunk/XTIDE_Universal_BIOS/Src/Device/IDE/IdeIO.asm@ 590

Last change on this file since 590 was 558, checked in by krille_n_@…, 11 years ago

Changes:

  • Building the BIOS Drive Information Tool now works again.
  • Moved all XT-CF related code to MODULE_8BIT_IDE_ADVANCED. I don't see how an XT-CF card could work without *_ADVANCED anyway but if I'm wrong, feel free to undo this. Note! The autodetection code in XTIDECFG has NOT been changed to reflect this (still relies on MODULE_8BIT_IDE).
  • Optimizations and fixes in general.
File size: 6.8 KB
RevLine 
[150]1; Project name : XTIDE Universal BIOS
[473]2; Description : IDE Register I/O functions when supporting 8-bit
3; devices that need address translations.
[150]4
[376]5;
[412]6; XTIDE Universal BIOS and Associated Tools
[526]7; Copyright (C) 2009-2010 by Tomi Tilli, 2011-2013 by XTIDE Universal BIOS Team.
[376]8;
9; This program is free software; you can redistribute it and/or modify
10; it under the terms of the GNU General Public License as published by
11; the Free Software Foundation; either version 2 of the License, or
12; (at your option) any later version.
[412]13;
[376]14; This program is distributed in the hope that it will be useful,
15; but WITHOUT ANY WARRANTY; without even the implied warranty of
16; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
[412]17; GNU General Public License for more details.
[376]18; Visit http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
[412]19;
[376]20
[150]21; Section containing code
22SECTION .text
23
24;--------------------------------------------------------------------
[473]25; IdeIO_InputStatusRegisterToAL
[150]26; Parameters:
[160]27; DS:DI: Ptr to DPT (in RAMVARS segment)
[150]28; Returns:
[473]29; AL: IDE Status Register contents
[150]30; Corrupts registers:
[160]31; BX, DX
[150]32;--------------------------------------------------------------------
[473]33ALIGN JUMP_ALIGN
34IdeIO_InputStatusRegisterToAL:
35%ifndef MODULE_8BIT_IDE
36 INPUT_TO_AL_FROM_IDE_REGISTER STATUS_REGISTER_in
37 ret
[400]38
[473]39%else
40 mov dl, STATUS_REGISTER_in
41 ; Fall to IdeIO_InputToALfromIdeRegisterInDL
[332]42
[400]43;--------------------------------------------------------------------
[473]44; IdeIO_InputToALfromIdeRegisterInDL
[400]45; Parameters:
[473]46; DL: IDE Register
[400]47; DS:DI: Ptr to DPT (in RAMVARS segment)
48; Returns:
[473]49; AL: Inputted byte
[400]50; Corrupts registers:
51; BX, DX
52;--------------------------------------------------------------------
[473]53IdeIO_InputToALfromIdeRegisterInDL:
[545]54 xor dh, dh ; IDE Register index now in DX...
[473]55 mov al, [di+DPT_ATA.bDevice]
56 cmp al, DEVICE_8BIT_XTIDE_REV2
57 jb SHORT .InputToALfromRegisterInDX ; Standard IDE controllers and XTIDE rev 1
[545]58 mov bx, dx ; ...and BX for A0<->A3 swap and for memory mapped I/O
[505]59
[493]60%ifdef MODULE_8BIT_IDE_ADVANCED
[505]61 je SHORT .ReverseA0andA3fromRegisterIndexInDX
62
[536]63 eSHL_IM dx, 1 ; ADP50L and XT-CF
[473]64 cmp al, DEVICE_8BIT_JRIDE_ISA
[536]65 jb SHORT .InputToALfromRegisterInDX ; All XT-CF modes
66 mov bh, JRIDE_COMMAND_BLOCK_REGISTER_WINDOW_OFFSET >> 8
67 je SHORT .InputToALfromMemoryMappedRegisterInBX
68 mov bl, dl
[558]69 mov bh, ADP50L_COMMAND_BLOCK_REGISTER_WINDOW_OFFSET >> 8
[473]70
[536]71.InputToALfromMemoryMappedRegisterInBX:
[473]72 push ds
[536]73 mov ds, [di+DPT.wBasePort] ; Segment for JR-IDE/ISA and ADP50L
74 mov al, [bx]
[473]75 pop ds
[150]76 ret
[493]77%endif
[505]78
[473]79.ReverseA0andA3fromRegisterIndexInDX:
80 mov dl, [cs:bx+g_rgbSwapA0andA3fromIdeRegisterIndex]
[150]81
[473]82.InputToALfromRegisterInDX:
83 add dx, [di+DPT.wBasePort]
84 in al, dx
85 ret
86
87
[400]88;--------------------------------------------------------------------
[473]89; IdeIO_OutputALtoIdeControlBlockRegisterInDL
[150]90; Parameters:
[473]91; AL: Byte to output
92; DL: IDE Control Block Register
[160]93; DS:DI: Ptr to DPT (in RAMVARS segment)
[150]94; Returns:
[473]95; Nothing
[150]96; Corrupts registers:
[160]97; BX, DX
[150]98;--------------------------------------------------------------------
[473]99IdeIO_OutputALtoIdeControlBlockRegisterInDL:
100 xor dh, dh ; IDE Register index now in DX
[160]101
[473]102 mov bl, [di+DPT_ATA.bDevice]
103 cmp bl, DEVICE_8BIT_XTIDE_REV2
[501]104 jb SHORT .OutputALtoControlBlockRegisterInDX ; Standard IDE controllers and XTIDE rev 1
[496]105
[493]106%ifdef MODULE_8BIT_IDE_ADVANCED
[505]107 je SHORT .ReverseA0andA3fromRegisterIndexInDX
108
[536]109 ; At this point remaining controllers (JRIDE, XTCF and ADP50L) all have a control
110 ; block offset of 8 or (8<<1) so we add 8 here and do the SHL 1 later if needed.
[545]111 add dx, BYTE 8
[473]112 cmp bl, DEVICE_8BIT_JRIDE_ISA
[536]113 jb SHORT IdeIO_OutputALtoIdeRegisterInDL.ShlRegisterIndexInDXandOutputAL ; All XT-CF modes
114 mov bx, JRIDE_CONTROL_BLOCK_REGISTER_WINDOW_OFFSET - 8 ; Zeroes BL. -8 compensates for the ADD
115 je SHORT IdeIO_OutputALtoIdeRegisterInDL.OutputALtoMemoryMappedRegisterInDXwithWindowOffsetInBX
116 ; The commented instructions below shows what happens next (saved for clarity) but as an optimization
117 ; we can accomplish the same thing with this jump.
118 jmp SHORT IdeIO_OutputALtoIdeRegisterInDL.ShlDXandMovHighByteOfADP50LoffsetsToBH
119; eSHL_IM dx, 1
120; mov bh, (ADP50L_CONTROL_BLOCK_REGISTER_WINDOW_OFFSET - 16) >> 8 ; -16 compensates for the ADD and SHL
121; jmp SHORT IdeIO_OutputALtoIdeRegisterInDL.OutputALtoMemoryMappedRegisterInDXwithWindowOffsetInBX
[496]122%endif
[473]123
[501]124.ReverseA0andA3fromRegisterIndexInDX:
125 ; We cannot use lookup table since A3 will be always set because
126 ; Control Block Registers start from Command Block + 8h. We can do
127 ; a small trick since we only access Device Control Register at
128 ; offset 6h: Always clear A3 and set A0.
[545]129 call AccessDPT_GetIdevarsToCSBX
[501]130 add dx, [cs:bx+IDEVARS.wControlBlockPort]
131 xor dl, 1001b ; Clear A3, Set A0
[536]132 out dx, al
133 ret
[501]134
[473]135.OutputALtoControlBlockRegisterInDX:
[545]136 call AccessDPT_GetIdevarsToCSBX
[473]137 add dx, [cs:bx+IDEVARS.wControlBlockPort]
[536]138 out dx, al
139 ret
[473]140
141
[160]142;--------------------------------------------------------------------
[473]143; IdeIO_OutputALtoIdeRegisterInDL
[160]144; Parameters:
[473]145; AL: Byte to output
146; DL: IDE Command Block Register
[160]147; DS:DI: Ptr to DPT (in RAMVARS segment)
148; Returns:
[473]149; Nothing
[160]150; Corrupts registers:
[473]151; BX, DX
[160]152;--------------------------------------------------------------------
153ALIGN JUMP_ALIGN
[473]154IdeIO_OutputALtoIdeRegisterInDL:
155 xor dh, dh ; IDE Register index now in DX
[160]156
[473]157 mov bl, [di+DPT_ATA.bDevice]
158 cmp bl, DEVICE_8BIT_XTIDE_REV2
159 jb SHORT OutputALtoRegisterInDX ; Standard IDE controllers and XTIDE rev 1
[493]160
161%ifdef MODULE_8BIT_IDE_ADVANCED
[505]162 je SHORT .ReverseA0andA3fromRegisterIndexInDX
163
[473]164 cmp bl, DEVICE_8BIT_JRIDE_ISA
[536]165 jb SHORT .ShlRegisterIndexInDXandOutputAL ; All XT-CF modes
166 mov bx, JRIDE_COMMAND_BLOCK_REGISTER_WINDOW_OFFSET ; Zeroes BL
167 je SHORT .OutputALtoMemoryMappedRegisterInDXwithWindowOffsetInBX
168.ShlDXandMovHighByteOfADP50LoffsetsToBH:
169 eSHL_IM dx, 1
170 mov bh, ADP50L_COMMAND_BLOCK_REGISTER_WINDOW_OFFSET >> 8 ; BL is zero so we only need to change BH
[400]171
[473]172.OutputALtoMemoryMappedRegisterInDXwithWindowOffsetInBX:
173 add bx, dx
174 push ds
[536]175 mov ds, [di+DPT.wBasePort] ; Segment for JR-IDE/ISA and ADP50L
[473]176 mov [bx], al
177 pop ds
[160]178 ret
[493]179%endif
[501]180
[473]181.ReverseA0andA3fromRegisterIndexInDX:
182 mov bx, dx
183 mov dl, [cs:bx+g_rgbSwapA0andA3fromIdeRegisterIndex]
[536]184 SKIP2B bx ; Skip eSHL_IM dx, 1
[473]185
[536]186.ShlRegisterIndexInDXandOutputAL:
[505]187 eSHL_IM dx, 1
[473]188 ; Fall to OutputALtoRegisterInDX
189
190ALIGN JUMP_ALIGN
191OutputALtoRegisterInDX:
192 add dx, [di+DPT.wBasePort]
193 out dx, al
[400]194 ret
195
[473]196
197
198; A0 <-> A3 lookup table
199g_rgbSwapA0andA3fromIdeRegisterIndex:
200 db 0000b ; <-> 0000b, 0
201 db 1000b ; <-> 0001b, 1
202 db 0010b ; <-> 0010b, 2
203 db 1010b ; <-> 0011b, 3
204 db 0100b ; <-> 0100b, 4
205 db 1100b ; <-> 0101b, 5
206 db 0110b ; <-> 0110b, 6
207 db 1110b ; <-> 0111b, 7
208
209%endif ; MODULE_8BIT_IDE
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