[99] | 1 | ; Project name : XTIDE Universal BIOS
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[3] | 2 | ; Description : Functions for accessing ATA information read with
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| 3 | ; IDENTIFY DEVICE command.
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| 4 |
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[376] | 5 | ;
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[445] | 6 | ; XTIDE Universal BIOS and Associated Tools
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[526] | 7 | ; Copyright (C) 2009-2010 by Tomi Tilli, 2011-2013 by XTIDE Universal BIOS Team.
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[376] | 8 | ;
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| 9 | ; This program is free software; you can redistribute it and/or modify
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| 10 | ; it under the terms of the GNU General Public License as published by
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| 11 | ; the Free Software Foundation; either version 2 of the License, or
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| 12 | ; (at your option) any later version.
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[445] | 13 | ;
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[376] | 14 | ; This program is distributed in the hope that it will be useful,
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| 15 | ; but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 16 | ; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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[445] | 17 | ; GNU General Public License for more details.
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[376] | 18 | ; Visit http://www.gnu.org/licenses/old-licenses/gpl-2.0.html
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[445] | 19 | ;
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[376] | 20 |
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[3] | 21 | ; Section containing code
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| 22 | SECTION .text
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| 23 |
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[441] | 24 | ;--------------------------------------------------------------------
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[613] | 25 | ; Adjust ATA information for compatibility, debug, etc purposes.
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| 26 | ; We can also completely ignore the drive if necessary.
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| 27 | ;
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| 28 | ; AtaID_FixIllegalValuesFromESSI
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| 29 | ; Parameters:
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| 30 | ; AH: INT 13h Error Code from reading ATA information
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| 31 | ; CF: Cleared if successfully read ATA information,
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| 32 | ; Set if failed to read ATA information
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| 33 | ; ES:SI: Ptr to 512-byte ATA information read from the drive
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| 34 | ; Returns:
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| 35 | ; ES:SI: Ata information with possible corrections made
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| 36 | ; AH: INT 13h Error Code from reading ATA information
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[614] | 37 | ; CF Cleared if drive now accepted
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[613] | 38 | ; Corrupts registers:
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| 39 | ; AL, BX, CX, DX, DI
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| 40 | ;--------------------------------------------------------------------
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| 41 | %ifndef NO_ATAID_CORRECTION
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| 42 | %ifndef EXCLUDE_FROM_BIOSDRVS
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| 43 | AtaID_PopESSIandFixIllegalValuesFromESSI:
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| 44 | pop si
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| 45 | pop es
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| 46 | %endif
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| 47 | AtaID_FixIllegalValuesFromESSI:
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| 48 | jc SHORT .Return ; Nothing to fix since failed to read ATA Info
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| 49 |
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| 50 | ; Only correct cylinders since there are no reports that head or sectors could be wrong
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[614] | 51 | MIN_U WORD [es:si+ATA1.wCylCnt], MAX_PCHS_CYLINDERS ; Limit to max allowed value
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| 52 |
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[613] | 53 | ; Note! There are ATA ID words 54-58 that also need to be modified! However,
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| 54 | ; the drive itself should modify them when we do Initialize Device Parameters command at AH=9h.
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| 55 | ; Verification from real drive needed before we fix them manually
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[614] | 56 |
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[613] | 57 | clc ; Return success
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| 58 | .Return:
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| 59 | ret
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| 60 | %endif ; NO_ATAID_CORRECTION
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| 61 |
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| 62 |
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| 63 | %ifndef EXCLUDE_FROM_BIOSDRVS
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| 64 | ;--------------------------------------------------------------------
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[441] | 65 | ; AtaID_VerifyFromESSI
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| 66 | ; Parameters:
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| 67 | ; ES:SI: Ptr to 512-byte ATA information read from the drive
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| 68 | ; Returns:
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[567] | 69 | ; ZF: Set if ATA-ID verified successfully
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| 70 | ; Cleared if failed to verify ATA-ID
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[441] | 71 | ; Corrupts registers:
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| 72 | ; AX, BX, CX
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| 73 | ;--------------------------------------------------------------------
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[580] | 74 | %ifndef NO_ATAID_VALIDATION
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[441] | 75 | AtaID_VerifyFromESSI:
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| 76 | ; We cannot start by reading ATA version since the ID might be
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| 77 | ; corrupted. We start by making sure P-CHS values are valid.
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| 78 | ; If they are, we assume the ATA ID to be valid. Fortunately we can do
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[491] | 79 | ; further checking for ATA-5 and later since they contain signature and
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[441] | 80 | ; checksum bytes. Those are not available for ATA-4 and older.
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| 81 |
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| 82 | ; Verify P-CHS cylinders
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| 83 | mov bx, ATA1.wCylCnt
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[614] | 84 | mov ax, MAX_PCHS_CYLINDERS
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[567] | 85 | call .CompareCHorSfromOffsetBXtoMaxValueInAX
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[441] | 86 |
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[445] | 87 | mov bl, ATA1.wHeadCnt & 0FFh
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[614] | 88 | mov ax, MAX_PCHS_HEADS
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[567] | 89 | call .CompareCHorSfromOffsetBXtoMaxValueInAX
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[441] | 90 |
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[445] | 91 | mov bl, ATA1.wSPT & 0FFh
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[614] | 92 | mov al, MAX_PCHS_SECTORS_PER_TRACK
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[567] | 93 | call .CompareCHorSfromOffsetBXtoMaxValueInAX
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[441] | 94 |
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[487] | 95 | ; Check signature byte. It is only found on ATA-5 and later. It should be zero on
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| 96 | ; ATA-4 and older.
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| 97 | mov al, [es:si+ATA6.bSignature]
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| 98 | test al, al
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| 99 | jz SHORT .AtaIDverifiedSuccessfully ; Old ATA so Signature and Checksum is not available
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| 100 | cmp al, A6_wIntegrity_SIGNATURE
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[441] | 101 | jne SHORT .FailedToVerifyAtaID
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| 102 |
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[487] | 103 | ; Check checksum byte since signature was present
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[441] | 104 | mov cx, ATA6_size
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[567] | 105 | jmp Memory_SumCXbytesFromESSItoAL ; Returns with ZF set according to result
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[441] | 106 |
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| 107 | ;--------------------------------------------------------------------
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[567] | 108 | ; .CompareCHorSfromOffsetBXtoMaxValueInAX
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[441] | 109 | ; Parameters:
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[567] | 110 | ; AX: Maximum valid C, H or S value
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[441] | 111 | ; BX: C, H or S offset to ATA-ID
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| 112 | ; ES:SI: Ptr to 512-byte ATA information read from the drive
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| 113 | ; Returns:
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[567] | 114 | ; Exits from AtaID_VerifyFromESSI with ZF cleared if invalid value
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[441] | 115 | ; Corrupts registers:
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[567] | 116 | ; CX
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[441] | 117 | ;--------------------------------------------------------------------
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[567] | 118 | .CompareCHorSfromOffsetBXtoMaxValueInAX:
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| 119 | mov cx, [es:bx+si]
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| 120 | jcxz .InvalidPCHorSinOffsetBX
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| 121 | cmp cx, ax ; Compare to max valid value
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[441] | 122 | jbe SHORT .ValidPCHorSinOffsetBX
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| 123 | .InvalidPCHorSinOffsetBX:
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[567] | 124 | pop cx ; Clear return address for this function
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| 125 | inc cx ; Clear ZF to indicate invalid ATA-ID (safe to do since return address in CX will never be FFFFh)
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| 126 | .AtaIDverifiedSuccessfully:
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[441] | 127 | .FailedToVerifyAtaID:
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| 128 | .ValidPCHorSinOffsetBX:
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| 129 | ret
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[580] | 130 | %endif ; NO_ATAID_VALIDATION
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[441] | 131 |
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| 132 |
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[542] | 133 | ;--------------------------------------------------------------------
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| 134 | ; Writes user defined limits from ROMVARS to ATA ID read from the drive.
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[567] | 135 | ; Modifying the ATA ID reduces code and possibilities for bugs since
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| 136 | ; only little further checks are needed elsewhere.
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[542] | 137 | ;
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| 138 | ; AtaID_ModifyESSIforUserDefinedLimitsAndReturnTranslateModeInDX
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| 139 | ; Parameters:
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| 140 | ; DS:DI: Ptr to incomplete Disk Parameter Table
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| 141 | ; ES:SI: Ptr to 512-byte ATA information read from the drive
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| 142 | ; CS:BP: Ptr to IDEVARS for the controller
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| 143 | ; Returns:
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| 144 | ; DX: User defined P-CHS to L-CHS translate mode
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| 145 | ; Corrupts registers:
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[592] | 146 | ; AX, BX
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[542] | 147 | ;--------------------------------------------------------------------
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| 148 | AtaID_ModifyESSIforUserDefinedLimitsAndReturnTranslateModeInDX:
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| 149 | call AccessDPT_GetPointerToDRVPARAMStoCSBX
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| 150 | push ds
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[568] | 151 |
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| 152 | push cs
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| 153 | pop ds
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| 154 |
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[592] | 155 | ; Load User Defined CHS or LBA to BX:AX
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| 156 | mov dl, [bx+DRVPARAMS.wFlags] ; Only load the flags we actually need
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[568] | 157 | mov ax, [bx+DRVPARAMS.wCylinders] ; Or .dwMaximumLBA
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[592] | 158 | mov bx, [bx+DRVPARAMS.wHeadsAndSectors] ; Or .dwMaximumLBA+2
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[568] | 159 |
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[542] | 160 | push es
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| 161 | pop ds ; DS:SI now points to ATA information
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| 162 |
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| 163 | ; * User defined CHS *
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| 164 | test dl, FLG_DRVPARAMS_USERCHS
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| 165 | jz SHORT .NoUserDefinedCHS
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| 166 |
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| 167 | ; Apply new CHS and disable LBA (we also want to set CHS addressing)
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| 168 | mov [si+ATA1.wCylCnt], ax
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[592] | 169 | eMOVZX ax, bl
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[542] | 170 | mov [si+ATA1.wHeadCnt], ax
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[592] | 171 | mov al, bh
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[542] | 172 | mov [si+ATA1.wSPT], ax
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| 173 | and BYTE [si+ATA1.wCaps+1], ~(A1_wCaps_LBA>>8)
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| 174 | and BYTE [si+ATA6.wSetSup83+1], ~(A6_wSetSup83_LBA48>>8)
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| 175 | .NoUserDefinedCHS:
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| 176 |
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| 177 | ; * User defined LBA *
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| 178 | test dl, FLG_DRVPARAMS_USERLBA
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| 179 | jz SHORT .NoUserDefinedLBA
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| 180 |
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| 181 | ; Apply new LBA and disable LBA48
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[592] | 182 | cmp bx, [si+ATA1.dwLBACnt+2]
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[542] | 183 | ja SHORT .NoUserDefinedLBA ; Do not set larger than drive
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| 184 | jb SHORT .StoreNewLBA
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| 185 | cmp ax, [si+ATA1.dwLBACnt]
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| 186 | ja SHORT .NoUserDefinedLBA ; Allow same size to disable LBA48
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| 187 | .StoreNewLBA:
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| 188 | mov [si+ATA1.dwLBACnt], ax
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[592] | 189 | mov [si+ATA1.dwLBACnt+2], bx
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[542] | 190 | and BYTE [si+ATA6.wSetSup83+1], ~(A6_wSetSup83_LBA48>>8)
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| 191 | .NoUserDefinedLBA:
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| 192 |
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| 193 | ; * Load P-CHS to L-CHS translate mode to DX *
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| 194 | and dx, BYTE MASK_DRVPARAMS_TRANSLATEMODE
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| 195 | eSHR_IM dx, TRANSLATEMODE_FIELD_POSITION
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| 196 |
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| 197 | pop ds
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| 198 | ret
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| 199 |
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| 200 |
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[363] | 201 | %ifdef MODULE_ADVANCED_ATA
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| 202 | ;--------------------------------------------------------------------
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[364] | 203 | ; AtaID_GetMaxPioModeToAXandMinCycleTimeToCX
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[363] | 204 | ; Parameters:
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| 205 | ; ES:SI: Ptr to 512-byte ATA information read from the drive
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| 206 | ; Returns:
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[364] | 207 | ; AL: Max supported PIO mode
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| 208 | ; AH: FLGH_DPT_IORDY if IORDY supported, zero otherwise
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| 209 | ; CX: Minimum Cycle Time in nanosecs
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[363] | 210 | ; Corrupts registers:
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| 211 | ; BX
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| 212 | ;--------------------------------------------------------------------
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[364] | 213 | AtaID_GetMaxPioModeToAXandMinCycleTimeToCX:
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[363] | 214 | ; Get PIO mode and cycle time for PIO 0...2
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[592] | 215 | %ifdef USE_386
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| 216 | movzx ax, [es:si+ATA1.bPioMode] ; AH = 0, AL = PIO mode 0, 1 or 2
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| 217 | %else
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| 218 | mov al, [es:si+ATA1.bPioMode]
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| 219 | cbw
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| 220 | %endif
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| 221 | mov bx, ax
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| 222 | eSHL_IM bx, 1 ; Shift for WORD lookup
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[364] | 223 | mov cx, [cs:bx+.rgwPio0to2CycleTimeInNanosecs]
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[363] | 224 |
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[364] | 225 | ; Check if IORDY is supported
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| 226 | test BYTE [es:si+ATA2.wCaps+1], A2_wCaps_IORDY >> 8
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[592] | 227 | jz SHORT .ReturnPioTimings ; No PIO 3 or higher if no IORDY
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| 228 | mov ah, FLGH_DPT_IORDY ; *FIXME* Actually, CF specification v4.1 says that use of IORDY is invalid for PIO modes 5 and 6.
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[364] | 229 |
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[363] | 230 | ; Check if Advanced PIO modes are supported (3 and above)
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| 231 | test BYTE [es:si+ATA2.wFields], A2_wFields_64to70
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| 232 | jz SHORT .ReturnPioTimings
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| 233 |
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[592] | 234 | ; Get Advanced PIO mode (Hard Disks supports up to 4 but CF cards can support 5 and 6)
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| 235 | or bh, [es:si+ATA2.bPIOSupp]
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| 236 | jz SHORT .ReturnPioTimings
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[363] | 237 | .CheckNextFlag:
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| 238 | inc ax
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[592] | 239 | shr bh, 1
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[363] | 240 | jnz SHORT .CheckNextFlag
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[364] | 241 | MIN_U al, 6 ; Make sure not above lookup tables
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| 242 | mov cx, [es:si+ATA2.wPIOMinCyF] ; Advanced modes use IORDY
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[363] | 243 | .ReturnPioTimings:
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| 244 | ret
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| 245 |
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| 246 | .rgwPio0to2CycleTimeInNanosecs:
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| 247 | dw PIO_0_MIN_CYCLE_TIME_NS
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| 248 | dw PIO_1_MIN_CYCLE_TIME_NS
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| 249 | dw PIO_2_MIN_CYCLE_TIME_NS
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| 250 |
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| 251 |
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| 252 | ;--------------------------------------------------------------------
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[364] | 253 | ; AtaID_GetActiveTimeToAXfromPioModeInBX
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| 254 | ; Parameters:
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| 255 | ; BX: PIO Mode
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| 256 | ; Returns:
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| 257 | ; AX: Active Time in nanosecs
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| 258 | ; Corrupts registers:
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| 259 | ; Nothing
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| 260 | ;--------------------------------------------------------------------
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| 261 | AtaID_GetActiveTimeToAXfromPioModeInBX:
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[445] | 262 | eMOVZX ax, [cs:bx+.rgbPioModeToActiveTimeNs]
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[364] | 263 | ret
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| 264 |
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[445] | 265 | .rgbPioModeToActiveTimeNs:
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| 266 | db PIO_0_MIN_ACTIVE_TIME_NS
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| 267 | db PIO_1_MIN_ACTIVE_TIME_NS
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| 268 | db PIO_2_MIN_ACTIVE_TIME_NS
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| 269 | db PIO_3_MIN_ACTIVE_TIME_NS
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| 270 | db PIO_4_MIN_ACTIVE_TIME_NS
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| 271 | db PIO_5_MIN_ACTIVE_TIME_NS
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| 272 | db PIO_6_MIN_ACTIVE_TIME_NS
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[363] | 273 |
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| 274 | %endif ; MODULE_ADVANCED_ATA
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[613] | 275 |
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| 276 | %endif ; EXCLUDE_FROM_BIOSDRVS
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