mirror of
https://github.com/A2osX/A2osX.git
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226 lines
8.4 KiB
Plaintext
226 lines
8.4 KiB
Plaintext
KEEP PRODOS
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MCOPY PRODOS.MAC
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* disassembly of prodos version 2.0.3
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* can be compiled with the orca/m assembler
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* which produces an output file PRODOS (type = EXE)
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* address refs beginning with 'L' were generated by orca disassembler
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* address refs beginning with 'H' were added manually
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* last edit: 01/24/13
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* map of the object modules within prodos exe are as follows:
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* $2000 mli_0 mli loader/relocator
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* $2C80 ram_1 installer for /RAM
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* $2D00 ram_2 /RAM driver in main lc
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* $2D9B mli_3 interrupts
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* $2E00 mli_1 global page
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* $2F00 tclock_0 Thunderclock driver
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* $2F80 cclock_0 Cortland clock driver
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* $3000 mli_2 xdos mli & block file manager
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* $5100 ram_0 /RAM driver in aux mem
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* $5300 xrw_0 disk core routines
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* $5A00 sel_0 dispatcher
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* $5D00 sel_1 enhanced quit code (Bird's Better Bye)
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* $6000 sel_2 GQuit dispatcher support
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************************ IMPORTANT ************************
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* *
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* 1. In the language card area, the $D000 areas overlay. To *
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* determine which bank is active requires that the main bank *
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* has a CLD ($D8) at $D000 and the alternate bank does not. *
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* $D000 in ROM = $6F, LC bank1 = $D8, LC bank2 = $EE *
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* *
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* 2. Location $E000 is used to determine the state of ROM vs. *
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* language card. Therefore, the value of $E000 in the MLI *
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* and ROM must differ. *
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* *
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* 3. In the section MEMMGR, the routine CALLDISP must access *
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* the other $D000 bank so it MUST reside ABOVE $E000 in the *
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* language card area. *
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* *
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* 4. The Disk II routine xrwtot MUST reside on a page boundary *
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* to distinguish it from a ram-based driver. *
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* *
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* 5. In the /RAM driver ram3, the byte at $FF58 MUST be an rts *
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* ($60) so the routine JSR $FF58 to determine an I/O card's *
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* slot still works when the language card is switched in. *
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* *
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*****************************************************************
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PRODOS START
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* Predefined labels:
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lookptr equ $0A
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idapple equ $0C model machine id
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idxl equ $10 general use 16 bit index pointer
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devid equ $12
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src equ $12
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dst equ $14
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cnt equ $16
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cde equ $18
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ecde equ $1A
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wndlft equ $20
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wndwdth equ $21
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wndtop equ $22
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wndbtm equ $23
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ch equ $24 cursor horizontal
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cv equ $25 cursor vertical
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invflg equ $32 inverse flag
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pcl equ $3A
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pch equ $3B
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A1L equ $3C
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A1H equ $3D
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A2L equ $3E
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A2H equ $3F
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A3L equ $40
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A4L equ $42
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unitnum equ $43
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buf equ $44 2-byte data buffer pointer which
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accsav equ $45 overlaps accsav (temp acc save byte)
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bloknml equ $46 used mostly as 16 bit block # pointer
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zpt equ $48 highly used zero page index pointer
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datptr equ $4A ptr to data area of buffer.
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sos equ $4C sos buffer pointer.
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usrbuf equ $4E data ptr in user buffer.
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* zero page variables for Bird's Better Bye
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smparms equ $60 set mark parms
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sm_refn equ $61 file reference number
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fpos_lo equ $62 new file position (3 bytes)
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fpos_mid equ $63
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fpos_hi equ $64
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lstpntr equ $65 device list pointer (16 bit)
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valcnt equ $67 name counter
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filecount equ $68 # of displayable files in directory
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namelen equ $69 length of filename
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gp_cnt equ $6A general purpose counter
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dlevel equ $6B directory level
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fnstore equ $6C filename storage pointer (16 bit)
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entlen equ $6E directory entry length
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entblk equ $6F directory entries/block
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filecnt equ $70 directory file count (16 bit)
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blkfl equ $72 block flag / file counter
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topname equ $73 index # of top name in display
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filetyps equ $74 128 byte table of filetypes
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errnum equ $DE
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tst128 equ $0080 temp page 0 routine for memory test
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auxsp equ $0101
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ramdest equ $0200 load address for aux bank /RAM driver
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inbuf equ $0200 keyboard buffer
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pbuf equ $0280 prefix buffer
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p3vect equ $03F0 page 3 vectors (16 bytes)
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softev equ $03F2 RESET vector
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pwredup equ $03F4 power up byte
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nmivect equ $03FB nmi handler
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txtp2 equ $0400 test location for aux card
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vline10 equ $04A8 line 10 of display
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vmode equ $04FB video firmware operating mode
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vline11 equ $0528 line 11 of display
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clkmode equ $0538 clock mode
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ch80col equ $057B 80 column ch position
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vline12 equ $05A8 line 12 of display
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vline5 equ $0600 line 5 of display
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vline13 equ $0628 line 13 of display
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vline14 equ $06A8 line 14 of display
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vline23 equ $0750 line 23 of display
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vline16 equ $07A8 line 16 of display
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vline24 equ $07D0 line 24 of display
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mslot equ $07F8 slot being accessed
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lodintrp equ $0800
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dbuf equ $0C00 8 page directory buffer
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vblock1 equ $0E00 ramdisk directory block
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volbuf equ $0F00 volume buffer
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dispadr equ $1000 system death dispatcher run address
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iobuf equ $1400 i/o buffer
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fbuf equ $1800 FCB buffer
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op_buf equ $1C00 open file buffer (selector)
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sysentry equ $2000 .SYS file load address
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prodos8 equ $BF00 prodos MLI and global page
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kbd equ $C000 keyboard latch (read)
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store80off equ $C000 disable 80-col store (write)
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store80on equ $C001 enable 80-col store
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rdmainram equ $C002 read from main 48K
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rdcardram equ $C003 read from alt 48K
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wrmainram equ $C004 write to main 48K
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wrcardram equ $C005 write to alt 48K
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setstdzp equ $C008 use main zero page/stack
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setaltzp equ $C009 use alt zero page/stack
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int3rom equ $C00A enable internal slot 3 ROM
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slot3rom equ $C00B enable external slot 3 ROM
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clr80vid equ $C00C disable 80 col hardware
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clraltchar equ $C00E normal LC, flashing UC
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kbdstrobe equ $C010 turn off keypressed flag
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rd80col equ $C018 if 80-column store
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newvideo equ $C029 video mode select
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spkr equ $C030 click speaker
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txtset equ $C051 switch in text
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txtpage1 equ $C054 switch in text page 1
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txtpage2 equ $C055 switch in text page 2
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statereg equ $C068 memory state register
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phaseoff equ $C080 disk port
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romin1 equ $C081 read ROM/write RAM bank 2
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romin equ $C082 read ROM
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altram equ $C083 read/write RAM bank 2
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motoroff equ $C088 disk port
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motoron equ $C089 disk port
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drv0en equ $C08A disk port
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ramin equ $C08B read/write RAM bank 1
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q6l equ $C08C disk port
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q6h equ $C08D disk port
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q7l equ $C08E disk port
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q7h equ $C08F disk port
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rdtcp equ $C108 Thunderclock read entry
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wttcp equ $C10B Thunderclock write entry
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init80 equ $C300 init 80 col card
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slot3id1 equ $C305 slot 3 card id 1
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slot3id2 equ $C307 slot 3 card id 2
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slot3id3 equ $C30B slot 3 card id 3
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ext80col equ $C30C slot 3 80 col id
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auxmove equ $C311 move (3C)-(3E) to (42)
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xfer equ $C314
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slot3irq equ $C3FA slot 3 irq handler
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clrrom equ $CFFF switch out $C8 ROMs
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rwts equ $D000 disk ii driver in bank 1
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displc2 equ $D100 system death routine stored in bank 2
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pathbuf equ $D700 pathname buffer
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tclk_in equ $D742 clock driver in bank 2
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fcbbuf equ $D800 fcb buffer
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vcbbuf equ $D900 vcb buffer
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bmbuf equ $DA00 512 byte bitmap buffer
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gbuf equ $DC00 general purpose 512 byte block buffer
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xdosorg equ $DE00 xdos MLI in aux memory
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romirq equ $FA41 monitor irq entry
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breakv equ $FA59 monitor break vector
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resetv equ $FA62 monitor reset entry
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HFB1E equ $FB1E version check byte
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init equ $FB2F init text screen
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settxt equ $FB39 set text mode
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tabv equ $FB5B set vertical position
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setpwrc equ $FB6F create power-up byte
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version equ $FBB3 monitor ROM id byte
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zidbyte equ $FBC0 monitor ROM id byte
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bell1 equ $FBDD generate bell tone
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home equ $FC58 home cursor and clear screen
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clreol equ $FC9C clear to end of line
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rdkey equ $FD0C input char with cursor
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crout equ $FD8E issue carriage return
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cout equ $FDED output character
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idroutine equ $FE1F returns system info
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setinv equ $FE80 set inverse text mode
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setnorm equ $FE84 set normal text mode
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setkbd equ $FE89 reset input to keyboard
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setvid equ $FE93 reset output to screen
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lcdest equ $FF00 load address
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bell equ $FF3A output bell (ctl-G)
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oldrst equ $FF59 monitor reset entry
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* romrts equ $FFCB an rts location that must be in ROM
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P8QUIT equ $E0D000
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GSOS equ $E100A8
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GSOS2 equ $E100B0
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OS_BOOT equ $E100BD indicates O/S initially booted
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