[e16e8f2] | 1 | ; ----------------------------------------------------------------------- |
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| 2 | ; |
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| 3 | ; Copyright 1994-2009 H. Peter Anvin - All Rights Reserved |
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| 4 | ; Copyright 2009-2011 Intel Corporation; author: H. Peter Anvin |
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| 5 | ; |
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| 6 | ; This program is free software; you can redistribute it and/or modify |
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| 7 | ; it under the terms of the GNU General Public License as published by |
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| 8 | ; the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, |
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| 9 | ; Boston MA 02110-1301, USA; either version 2 of the License, or |
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| 10 | ; (at your option) any later version; incorporated herein by reference. |
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| 11 | ; |
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| 12 | ; ----------------------------------------------------------------------- |
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| 13 | |
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| 14 | ; |
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| 15 | ; diskboot.inc |
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| 16 | ; |
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| 17 | ; Common boot sector code for harddisk-based Syslinux derivatives. |
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| 18 | ; |
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| 19 | ; Requires macros z[bwd], labels ldlinux_ent, ldlinux_magic, ldlinux_sys |
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| 20 | ; and constants BS_MAGIC_VER, LDLINUX_MAGIC, retry_count, Sect1Ptr[01]_VAL, |
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| 21 | ; STACK_TOP |
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| 22 | ; |
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| 23 | |
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| 24 | section .init |
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| 25 | ; |
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| 26 | ; Some of the things that have to be saved very early are saved |
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| 27 | ; "close" to the initial stack pointer offset, in order to |
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| 28 | ; reduce the code size... |
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| 29 | ; |
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| 30 | |
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| 31 | global StackBuf, PartInfo, Hidden, OrigESDI, DriveNumber |
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| 32 | global OrigFDCTabPtr |
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| 33 | StackBuf equ STACK_TOP-44-92 ; Start the stack here (grow down - 4K) |
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| 34 | PartInfo equ StackBuf |
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| 35 | .mbr equ PartInfo |
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| 36 | .gptlen equ PartInfo+16 |
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| 37 | .gpt equ PartInfo+20 |
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| 38 | FloppyTable equ PartInfo+76 |
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| 39 | ; Total size of PartInfo + FloppyTable == 76+16 = 92 bytes |
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| 40 | Hidden equ StackBuf-24 ; Partition offset (qword) |
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| 41 | OrigFDCTabPtr equ StackBuf-16 ; Original FDC table |
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| 42 | OrigDSSI equ StackBuf-12 ; DS:SI -> partinfo |
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| 43 | OrigESDI equ StackBuf-8 ; ES:DI -> $PnP structure |
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| 44 | DriveNumber equ StackBuf-4 ; Drive number |
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| 45 | StackHome equ Hidden ; The start of the canonical stack |
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| 46 | |
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| 47 | ; |
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| 48 | ; Primary entry point. Tempting as though it may be, we can't put the |
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| 49 | ; initial "cli" here; the jmp opcode in the first byte is part of the |
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| 50 | ; "magic number" (using the term very loosely) for the DOS superblock. |
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| 51 | ; |
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| 52 | bootsec equ $ |
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| 53 | _start: jmp short start ; 2 bytes |
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| 54 | nop ; 1 byte |
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| 55 | ; |
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| 56 | ; "Superblock" follows -- it's in the boot sector, so it's already |
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| 57 | ; loaded and ready for us |
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| 58 | ; |
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| 59 | bsOemName db MY_NAME ; The SYS command sets this, so... |
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| 60 | zb 8-($-bsOemName) |
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| 61 | |
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| 62 | ; |
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| 63 | ; These are the fields we actually care about. We end up expanding them |
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| 64 | ; all to dword size early in the code, so generate labels for both |
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| 65 | ; the expanded and unexpanded versions. |
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| 66 | ; |
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| 67 | %macro superb 1 |
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| 68 | bx %+ %1 equ SuperInfo+($-superblock)*8+4 |
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| 69 | bs %+ %1 equ $ |
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| 70 | zb 1 |
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| 71 | %endmacro |
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| 72 | %macro superw 1 |
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| 73 | bx %+ %1 equ SuperInfo+($-superblock)*8 |
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| 74 | bs %+ %1 equ $ |
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| 75 | zw 1 |
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| 76 | %endmacro |
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| 77 | %macro superd 1 |
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| 78 | bx %+ %1 equ $ ; no expansion for dwords |
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| 79 | bs %+ %1 equ $ |
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| 80 | zd 1 |
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| 81 | %endmacro |
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| 82 | superblock equ $ |
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| 83 | superw BytesPerSec |
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| 84 | superb SecPerClust |
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| 85 | superw ResSectors |
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| 86 | superb FATs |
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| 87 | superw RootDirEnts |
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| 88 | superw Sectors |
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| 89 | superb Media |
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| 90 | superw FATsecs |
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| 91 | superw SecPerTrack |
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| 92 | superw Heads |
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| 93 | superinfo_size equ ($-superblock)-1 ; How much to expand |
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| 94 | superd Hidden |
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| 95 | superd HugeSectors |
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| 96 | ; |
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| 97 | ; This is as far as FAT12/16 and FAT32 are consistent |
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| 98 | ; |
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| 99 | ; FAT12/16 need 26 more bytes, |
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| 100 | ; FAT32 need 54 more bytes |
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| 101 | ; |
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| 102 | superblock_len_fat16 equ $-superblock+26 |
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| 103 | superblock_len_fat32 equ $-superblock+54 |
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| 104 | zb 54 ; Maximum needed size |
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| 105 | superblock_max equ $-superblock |
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| 106 | |
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| 107 | SecPerClust equ bxSecPerClust |
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| 108 | |
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| 109 | ; |
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| 110 | ; Note we don't check the constraints above now; we did that at install |
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| 111 | ; time (we hope!) |
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| 112 | ; |
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| 113 | start: |
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| 114 | cli ; No interrupts yet, please |
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| 115 | cld ; Copy upwards |
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| 116 | ; |
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| 117 | ; Set up the stack |
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| 118 | ; |
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| 119 | xor cx,cx |
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| 120 | mov ss,cx |
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| 121 | mov sp,StackBuf-2 ; Just below BSS (-2 for alignment) |
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| 122 | push dx ; Save drive number (in DL) |
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| 123 | push es ; Save initial ES:DI -> $PnP pointer |
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| 124 | push di |
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| 125 | push ds ; Save original DS:SI -> partinfo |
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| 126 | push si |
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| 127 | mov es,cx |
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| 128 | |
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| 129 | ; |
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| 130 | ; DS:SI may contain a partition table entry and possibly a GPT entry. |
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| 131 | ; Preserve it for us. This saves 56 bytes of the GPT entry, which is |
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| 132 | ; currently the maximum we care about. Total is 76 bytes. |
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| 133 | ; |
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| 134 | mov cl,(16+4+56)/2 ; Save partition info |
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| 135 | mov di,PartInfo |
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| 136 | rep movsw ; This puts CX back to zero |
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| 137 | |
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| 138 | mov ds,cx ; Now we can initialize DS... |
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| 139 | |
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| 140 | ; |
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| 141 | ; Now sautee the BIOS floppy info block to that it will support decent- |
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| 142 | ; size transfers; the floppy block is 11 bytes and is stored in the |
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| 143 | ; INT 1Eh vector (brilliant waste of resources, eh?) |
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| 144 | ; |
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| 145 | ; Of course, if BIOSes had been properly programmed, we wouldn't have |
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| 146 | ; had to waste precious space with this code. |
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| 147 | ; |
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| 148 | mov bx,fdctab |
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| 149 | lfs si,[bx] ; FS:SI -> original fdctab |
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| 150 | push fs ; Save on stack in case we need to bail |
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| 151 | push si |
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| 152 | |
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| 153 | ; Save the old fdctab even if hard disk so the stack layout |
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| 154 | ; is the same. The instructions above do not change the flags |
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| 155 | and dl,dl ; If floppy disk (00-7F), assume no |
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| 156 | ; partition table |
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| 157 | js harddisk |
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| 158 | |
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| 159 | floppy: |
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| 160 | xor ax,ax |
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| 161 | mov cl,6 ; 12 bytes (CX == 0) |
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| 162 | ; es:di -> FloppyTable already |
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| 163 | ; This should be safe to do now, interrupts are off... |
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| 164 | mov [bx],di ; FloppyTable |
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| 165 | mov [bx+2],ax ; Segment 0 |
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| 166 | fs rep movsw ; Faster to move words |
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| 167 | mov cl,[bsSecPerTrack] ; Patch the sector count |
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| 168 | mov [di-12+4],cl |
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| 169 | |
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| 170 | push ax ; Partition offset == 0 |
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| 171 | push ax |
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| 172 | push ax |
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| 173 | push ax |
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| 174 | |
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| 175 | int 13h ; Some BIOSes need this |
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| 176 | ; Using xint13 costs +1B |
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| 177 | jmp short not_harddisk |
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| 178 | ; |
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| 179 | ; The drive number and possibly partition information was passed to us |
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| 180 | ; by the BIOS or previous boot loader (MBR). Current "best practice" is to |
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| 181 | ; trust that rather than what the superblock contains. |
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| 182 | ; |
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| 183 | ; Note: di points to beyond the end of PartInfo |
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| 184 | ; Note: false negatives might slip through the handover area's sanity checks, |
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| 185 | ; if the region is very close (less than a paragraph) to |
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| 186 | ; PartInfo ; no false positives are possible though |
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| 187 | ; |
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| 188 | harddisk: |
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| 189 | mov dx,[di-76-10] ; Original DS |
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| 190 | mov si,[di-76-12] ; Original SI |
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| 191 | shr si,4 |
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| 192 | add dx,si |
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| 193 | cmp dx,4fh ; DS:SI < 50h:0 (BDA or IVT) ? |
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| 194 | jbe .no_partition |
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| 195 | cmp dx,(PartInfo-75)>>4 ; DS:SI in overwritten memory? |
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| 196 | jae .no_partition |
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| 197 | test byte [di-76],7Fh ; Sanity check: "active flag" should |
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| 198 | jnz .no_partition ; be 00 or 80 |
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| 199 | cmp [di-76+4],cl ; Sanity check: partition type != 0 |
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| 200 | je .no_partition |
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| 201 | cmp eax,'!GPT' ; !GPT signature? |
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| 202 | jne .mbr |
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| 203 | cmp byte [di-76+4],0EDh ; Synthetic GPT partition entry? |
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| 204 | jne .mbr |
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| 205 | .gpt: ; GPT-style partition info |
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| 206 | push dword [di-76+20+36] |
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| 207 | push dword [di-76+20+32] |
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| 208 | jmp .gotoffs |
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| 209 | .mbr: ; MBR-style partition info |
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| 210 | push cx ; Upper half partition offset == 0 |
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| 211 | push cx |
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| 212 | push dword [di-76+8] ; Partition offset (dword) |
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| 213 | jmp .gotoffs |
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| 214 | .no_partition: |
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| 215 | ; |
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| 216 | ; No partition table given... assume that the Hidden field in the boot sector |
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| 217 | ; tells the truth (in particular, is zero if this is an unpartitioned disk.) |
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| 218 | ; |
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| 219 | push cx |
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| 220 | push cx |
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| 221 | push dword [bsHidden] |
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| 222 | .gotoffs: |
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| 223 | ; |
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| 224 | ; Get disk drive parameters (don't trust the superblock.) Don't do this for |
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| 225 | ; floppy drives -- INT 13:08 on floppy drives will (may?) return info about |
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| 226 | ; what the *drive* supports, not about the *media*. Fortunately floppy disks |
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| 227 | ; tend to have a fixed, well-defined geometry which is stored in the superblock. |
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| 228 | ; |
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| 229 | ; DL == drive # still |
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| 230 | mov ah,08h |
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| 231 | call xint13 |
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| 232 | jc no_driveparm |
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| 233 | and ah,ah |
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| 234 | jnz no_driveparm |
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| 235 | shr dx,8 |
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| 236 | inc dx ; Contains # of heads - 1 |
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| 237 | mov [bsHeads],dx |
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| 238 | and cx,3fh |
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| 239 | mov [bsSecPerTrack],cx |
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| 240 | no_driveparm: |
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| 241 | not_harddisk: |
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| 242 | ; |
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| 243 | ; Ready to enable interrupts, captain |
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| 244 | ; |
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| 245 | sti |
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| 246 | |
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| 247 | ; |
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| 248 | ; Do we have EBIOS (EDD)? |
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| 249 | ; |
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| 250 | eddcheck: |
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| 251 | mov bx,55AAh |
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| 252 | mov ah,41h ; EDD existence query |
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| 253 | call xint13 |
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| 254 | jc .noedd |
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| 255 | cmp bx,0AA55h |
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| 256 | jne .noedd |
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| 257 | test cl,1 ; Extended disk access functionality set |
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| 258 | jz .noedd |
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| 259 | ; |
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| 260 | ; We have EDD support... |
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| 261 | ; |
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| 262 | mov byte [getonesec.jmp+1],(getonesec_ebios-(getonesec.jmp+2)) |
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| 263 | .noedd: |
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| 264 | |
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| 265 | ; |
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| 266 | ; Load the first sector of LDLINUX.SYS; this used to be all proper |
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| 267 | ; with parsing the superblock and root directory; it doesn't fit |
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| 268 | ; together with EBIOS support, unfortunately. |
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| 269 | ; |
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| 270 | Sect1Load: |
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| 271 | mov eax,strict dword Sect1Ptr0_VAL ; 0xdeadbeef |
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| 272 | Sect1Ptr0 equ $-4 |
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| 273 | mov edx,strict dword Sect1Ptr1_VAL ; 0xfeedface |
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| 274 | Sect1Ptr1 equ $-4 |
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| 275 | mov bx,ldlinux_sys ; Where to load it |
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| 276 | call getonesec |
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| 277 | |
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| 278 | ; Some modicum of integrity checking |
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| 279 | cmp dword [ldlinux_magic+4],LDLINUX_MAGIC^HEXDATE |
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| 280 | jne kaboom |
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| 281 | |
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| 282 | ; Go for it! |
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| 283 | jmp ldlinux_ent |
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| 284 | |
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| 285 | ; |
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| 286 | ; getonesec: load a single disk linear sector EDX:EAX into the buffer |
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| 287 | ; at ES:BX. |
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| 288 | ; |
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| 289 | ; This routine assumes CS == DS == SS, and trashes most registers. |
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| 290 | ; |
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| 291 | ; Stylistic note: use "xchg" instead of "mov" when the source is a register |
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| 292 | ; that is dead from that point; this saves space. However, please keep |
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| 293 | ; the order to dst,src to keep things sane. |
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| 294 | ; |
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| 295 | getonesec: |
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| 296 | add eax,[Hidden] ; Add partition offset |
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| 297 | adc edx,[Hidden+4] |
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| 298 | mov cx,retry_count |
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| 299 | .jmp: jmp strict short getonesec_cbios |
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| 300 | |
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| 301 | ; |
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| 302 | ; getonesec_ebios: |
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| 303 | ; |
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| 304 | ; getonesec implementation for EBIOS (EDD) |
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| 305 | ; |
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| 306 | getonesec_ebios: |
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| 307 | .retry: |
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| 308 | ; Form DAPA on stack |
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| 309 | push edx |
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| 310 | push eax |
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| 311 | push es |
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| 312 | push bx |
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| 313 | push word 1 |
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| 314 | push word 16 |
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| 315 | mov si,sp |
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| 316 | pushad |
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| 317 | mov ah,42h ; Extended Read |
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| 318 | call xint13 |
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| 319 | popad |
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| 320 | lea sp,[si+16] ; Remove DAPA |
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| 321 | jc .error |
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| 322 | ret |
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| 323 | |
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| 324 | .error: |
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| 325 | ; Some systems seem to get "stuck" in an error state when |
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| 326 | ; using EBIOS. Doesn't happen when using CBIOS, which is |
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| 327 | ; good, since some other systems get timeout failures |
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| 328 | ; waiting for the floppy disk to spin up. |
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| 329 | |
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| 330 | pushad ; Try resetting the device |
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| 331 | xor ax,ax |
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| 332 | call xint13 |
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| 333 | popad |
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| 334 | loop .retry ; CX-- and jump if not zero |
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| 335 | |
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| 336 | ; Total failure. Try falling back to CBIOS. |
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| 337 | mov byte [getonesec.jmp+1],(getonesec_cbios-(getonesec.jmp+2)) |
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| 338 | |
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| 339 | ; |
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| 340 | ; getonesec_cbios: |
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| 341 | ; |
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| 342 | ; getlinsec implementation for legacy CBIOS |
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| 343 | ; |
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| 344 | getonesec_cbios: |
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| 345 | .retry: |
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| 346 | pushad |
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| 347 | |
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| 348 | movzx esi,word [bsSecPerTrack] |
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| 349 | movzx edi,word [bsHeads] |
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| 350 | ; |
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| 351 | ; Dividing by sectors to get (track,sector): we may have |
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| 352 | ; up to 2^18 tracks, so we need to use 32-bit arithmetric. |
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| 353 | ; |
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| 354 | div esi |
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| 355 | xor cx,cx |
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| 356 | xchg cx,dx ; CX <- sector index (0-based) |
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| 357 | ; EDX <- 0 |
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| 358 | ; eax = track # |
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| 359 | div edi ; Convert track to head/cyl |
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| 360 | |
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| 361 | cmp eax,1023 ; Outside the CHS range? |
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| 362 | ja kaboom |
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| 363 | |
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| 364 | ; |
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| 365 | ; Now we have AX = cyl, DX = head, CX = sector (0-based), |
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| 366 | ; SI = bsSecPerTrack, ES:BX = data target |
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| 367 | ; |
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| 368 | shl ah,6 ; Because IBM was STOOPID |
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| 369 | ; and thought 8 bits were enough |
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| 370 | ; then thought 10 bits were enough... |
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| 371 | inc cx ; Sector numbers are 1-based, sigh |
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| 372 | or cl,ah |
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| 373 | mov ch,al |
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| 374 | mov dh,dl |
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| 375 | mov ax,0201h ; Read one sector |
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| 376 | call xint13 |
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| 377 | popad |
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| 378 | jc .error |
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| 379 | ret |
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| 380 | |
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| 381 | .error: |
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| 382 | loop .retry |
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| 383 | ; Fall through to disk_error |
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| 384 | |
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| 385 | ; |
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| 386 | ; kaboom: write a message and bail out. |
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| 387 | ; |
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| 388 | %ifdef BINFMT |
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| 389 | global kaboom |
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| 390 | %else |
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| 391 | global kaboom:function hidden |
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| 392 | %endif |
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| 393 | disk_error: |
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| 394 | kaboom: |
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| 395 | xor si,si |
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| 396 | mov ss,si |
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| 397 | mov sp,OrigFDCTabPtr ; Reset stack |
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| 398 | mov ds,si ; Reset data segment |
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| 399 | pop dword [fdctab] ; Restore FDC table |
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| 400 | .patch: ; When we have full code, intercept here |
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| 401 | mov si,bailmsg |
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| 402 | .loop: lodsb |
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| 403 | and al,al |
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| 404 | jz .done |
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| 405 | mov ah,0Eh ; Write to screen as TTY |
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| 406 | mov bx,0007h ; Attribute |
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| 407 | int 10h |
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| 408 | jmp short .loop |
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| 409 | |
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| 410 | .done: |
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| 411 | xor ax,ax |
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| 412 | .again: int 16h ; Wait for keypress |
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| 413 | ; NB: replaced by int 18h if |
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| 414 | ; chosen at install time.. |
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| 415 | int 19h ; And try once more to boot... |
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| 416 | .norge: hlt ; If int 19h returned; this is the end |
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| 417 | jmp short .norge |
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| 418 | |
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| 419 | ; |
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| 420 | ; INT 13h wrapper function |
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| 421 | ; |
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| 422 | xint13: |
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| 423 | mov dl,[DriveNumber] |
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| 424 | push es ; ES destroyed by INT 13h AH 08h |
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| 425 | int 13h |
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| 426 | pop es |
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| 427 | ret |
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| 428 | |
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| 429 | ; |
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| 430 | ; Error message on failure |
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| 431 | ; |
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| 432 | bailmsg: db 'Boot error', 0Dh, 0Ah, 0 |
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| 433 | |
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| 434 | ; This fails if the boot sector overflowsg |
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| 435 | zb 1F8h-($-$$) |
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| 436 | |
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| 437 | bs_magic dd LDLINUX_MAGIC |
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| 438 | bs_link dw (Sect1Load - bootsec) | BS_MAGIC_VER |
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| 439 | bootsignature dw 0xAA55 |
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| 440 | |
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| 441 | ; |
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| 442 | ; =========================================================================== |
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| 443 | ; End of boot sector |
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| 444 | ; =========================================================================== |
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