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Create ay-test.asm
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Source/Apps/TEST/sound/ay-test.asm
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201
Source/Apps/TEST/sound/ay-test.asm
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;*****************************************************************************
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;*****************************************************************************
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;** **
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;** AY-3-8910 Sound Test Program **
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;** Author: Wayne Warthen -- 10/8/2017 **
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;** **
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;*****************************************************************************
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;*****************************************************************************
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;
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;=============================================================================
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; Constants Section
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;=============================================================================
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;
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; Hardware port addresses
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;
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rsel .equ $9A ; Register seelection port address
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rdat .equ $9B ; Register data port address
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acr .equ $9C ; Aux control register port address
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;
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; CPU speed for delay scaling
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;
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cpuspd .equ 4 ; CPU speed in MHz
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;
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; BDOS invocation constants
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;
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bdos .equ $0005 ; BDOS invocation vector
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print .equ 9 ; BDOS print function number
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conwrt .equ 2 ; BDOS console write char
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;
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;=============================================================================
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; Code Section
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;=============================================================================
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;
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.org $100
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;
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ld (stksav),sp ; save incoming stack frame
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ld sp,stack ; setup our private stack
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;
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ld de,banner ; load banner string address
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ld c,print ; BDOS print function number
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call bdos ; do it
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;
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ld a,$FF ; SCG board activation value
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out (acr),a ; write value to ACR
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;
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xor a ; zero accum
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ld (chan),a ; init channel number
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;
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chloop:
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; Test each channel
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call tstchan ; test the current channel
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ld hl,chan ; point to channel number
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ld a,(chan) ; get current channel
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inc a ; bump to next
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ld (chan),a ; save it
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cp 3 ; end of channels?
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jr nz,chloop ; loop if not done
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;
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ld de,crlf ; newline
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ld c,print ; BDOS print function
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call bdos ; do it
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;
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ld sp,(stksav) ; restore stack
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;
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ret ; end of program
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;
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tstchan:
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; Display channel being tested
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ld de,chmsg ; point to channel message
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ld c,print ; BDOS print function number
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call bdos ; do it
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ld a,(chan) ; get current channel number
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add a,'A' ; offset to print as alpha
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ld e,a ; put in E
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ld c,conwrt ; BDOS console out function number
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call bdos ; do it
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ld de,chmsg2 ; point to channel message
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ld c,print ; BDOS print function number
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call bdos ; do it
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;
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ld hl,0 ; initial pitch value
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ld (pitch),hl ; save it
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;
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; Setup mixer register
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ld a,(chan) ; get channel num (0-2)
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inc a ; adjust index (1-3)
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ld b,a ; and use as loop counter
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xor a ; clear accum
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scf ; set carry
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mixloop:
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rla ; rotate bit
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djnz mixloop ; loop based on channel num
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cpl ; invert bits
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and $FF ; so only target bit is cleared
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push af ; save value
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ld a,7 ; mixer register
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out (rsel),a ; select it
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pop af ; recover value
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out (rdat),a ; and set register value
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;
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; Set channel volume to max
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ld a,(chan) ; get channel
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add a,8 ; adjust for start of vol regs
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out (rsel),a ; select register
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ld a,$0F ; max volume
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out (rdat),a ; write it
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;
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pitloop:
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; Pitch loop
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ld a,(chan) ; get channel
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sla a ; A := channel pitch reg, 2 bytes per chan
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out (rsel),a ; select low byte register
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push af ; save register
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ld a,l ; get low byte of pitch value
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out (rdat),a ; and write it to register
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pop af ; recover register index
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inc a ; inc to high byte pitch register
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out (rsel),a ; select high byte register
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ld a,h ; get high byte of pitch value
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out (rdat),a ; and write it to register
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;
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; Delay
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ld b,cpuspd ; cpu speed scalar
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dlyloop:
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call dly64 ; arbitrary delay
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djnz dlyloop ; loop based on cpu speed
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;
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; Next pitch value
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ld hl,(pitch) ; get current pitch
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inc hl ; increment
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ld (pitch),hl ; save new value
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ld a,h ; get high byte
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;cp 16 ; end of max range?
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cp 4 ; end of max range?
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jr nz,pitloop ; loop till done
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;
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; Clean up
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call clrpsg ; shut down psg
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;
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ret ; done
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;
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; Clear PSG registers to default
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;
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clrpsg:
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ld b,16 ; loop for 18 registers
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ld c,0 ; init register index
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clrpsg1:
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ld a,c ; register num to accum
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out (rsel),a ; select it
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xor a ; clear accum
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out (rdat),a ; and write to register
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inc c ; next register
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djnz clrpsg1 ; loop through all registers
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ret ; return
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;
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; Program PSG registers from list at HL
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;
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setpsg:
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ld a,(hl) ; get psg reg number
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inc hl ; bump index
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cp $FF ; check for end
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ret z ; return if end marker $FF
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out (rsel),a ; select psg register
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ld a,(hl) ; get register value
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inc hl ; bump index
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out (rdat),a ; set register value
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jr setpsg ; loop till done
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;
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; Short delay functions. No clock speed compensation, so they
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; will run longer on slower systems. The number indicates the
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; number of call/ret invocations. A single call/ret is
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; 27 t-states on a z80, 25 t-states on a z180
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;
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dly256: call dly128
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dly128: call dly64
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dly64: call dly32
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dly32: call dly16
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dly16: call dly8
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dly8: call dly4
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dly4: call dly2
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dly2: call dly1
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dly1: ret
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;
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;=============================================================================
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; Data Section
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;=============================================================================
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;
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chan .db 0 ; active audio channel
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pitch .dw 0 ; current pitch
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;
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banner .text "\r\nRetroBrew Computers SCG AY-3-8910 Sound Test\r\n"
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.text "Set SCG board base I/O address to 0x98\r\n$"
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chmsg .text "\r\nPlaying descending tones on channel $"
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chmsg2 .text "...$"
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crlf .text "\r\n$"
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;
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stksav .dw 0 ; saved stack frame
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.fill 80,$FF ; 40 level private stack
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stack .equ $ ; start of stack
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;
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.end
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