mirror of
https://github.com/bobbimanners/emailler.git
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408 lines
4.5 KiB
ArmAsm
408 lines
4.5 KiB
ArmAsm
.include "../inc/common.i"
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.export console_printf
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.import console_out
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.import console_strout
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.segment "IP65ZP" : zeropage
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strptr: .res 2
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argptr: .res 2
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valptr: .res 2
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.bss
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ysave: .res 1
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arg: .res 1
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fieldwidth: .res 1
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fieldwcnt: .res 1
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leadzero: .res 1
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argtemp: .res 1
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int: .res 2
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num: .res 5
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ext: .res 2
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.code
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;print a string to console, with (some) standard printf % codes converted
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;inputs: AX = pointer to 'argument list'
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; first word in argument list is the string to be printed
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; subsequent words in argument list are interpolated in to the string as
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; it is displayed. (argument list is automagically created by the 'printf' macro
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; defined in inc/printf.i)
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;outputs: none
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;supported % codes:
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; %s: string (argument interpreted as pointer to null terminated string)
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; %d: decimal number (arguement interpreted as 16 bit number)
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; %x: hex number (arguement interpreted as 16 bit number)
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; %c: char (arguement interpreted as pointer to single ASCII char)
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;"field width" modifiers are also supported, e.g "%02x" to print 2 hex digits
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console_printf:
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stax argptr
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ldy #0
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lda (argptr),y
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sta strptr
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iny
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lda (argptr),y
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sta strptr + 1
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iny
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sty arg
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ldy #0
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@nextchar:
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lda (strptr),y
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bne :+
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rts
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:
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cmp #'%'
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beq @printarg
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cmp #'\'
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beq @printescape
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jsr console_out
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@next:
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iny
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bne @nextchar
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inc strptr + 1
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jmp @nextchar
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@printescape:
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iny
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bne :+
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inc strptr + 1
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: lda (strptr),y
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ldx #esc_count - 1
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: cmp esc_code,x
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beq @escmatch
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dex
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bpl :-
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bmi @next
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@escmatch:
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lda esc_char,x
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jsr console_out
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jmp @next
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@printarg:
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lda #0
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sta fieldwidth
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sta leadzero
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lda #$ff
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sta fieldwcnt
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@argnext:
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iny
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bne :+
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inc strptr + 1
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:
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tya
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pha
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lda (strptr),y
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cmp #'0' ; check for field width
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bcc @notdigit
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cmp #'9'+1
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bcs @notdigit
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and #$0f
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bne :+ ; check for leading 0
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inc fieldwcnt
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bne :+
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lda #$80
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sta leadzero
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pla
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tay
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jmp @argnext
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:
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pha ; multiply old value by 10
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asl fieldwidth
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lda fieldwidth
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asl
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asl
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clc
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adc fieldwidth
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sta fieldwidth
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pla
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clc ; add new value
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adc fieldwidth
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sta fieldwidth
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pla
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tay
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jmp @argnext
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@notdigit:
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cmp #'s'
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beq @argstr
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cmp #'d'
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beq @argint
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cmp #'x'
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beq @arghex
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cmp #'c'
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beq @argchar
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@argdone:
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pla
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tay
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jmp @next
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@argstr:
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jsr @argax
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jsr console_strout
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jmp @argdone
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@argint:
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jsr @argax
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stax valptr
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jsr @valax
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jsr printint
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jmp @argdone
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@arghex:
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jsr @argax
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stax valptr
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jsr @valax
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jsr printhex
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jmp @argdone
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@argchar:
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jsr @argax
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stax valptr
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ldy #0
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lda (valptr),y
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jsr console_out
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jmp @argdone
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@argax:
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ldy arg
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lda (argptr),y
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pha
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iny
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lda (argptr),y
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tax
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iny
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sty arg
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pla
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rts
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@valax:
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ldy #0
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lda (valptr),y
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pha
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iny
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lda (valptr),y
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tax
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pla
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rts
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@printx:
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txa
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lsr
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lsr
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lsr
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lsr
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tay
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lda hex2asc,y
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jsr console_out
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txa
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and #$0f
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tay
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lda hex2asc,y
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jmp console_out
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; print 16-bit hexadecimal number
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printhex:
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tay
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and #$0f
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sta num + 3
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tya
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lsr
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lsr
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lsr
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lsr
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sta num + 2
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txa
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and #$0f
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sta num + 1
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txa
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lsr
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lsr
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lsr
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lsr
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sta num
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lda #4
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sec
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sbc fieldwidth
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tax
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bpl :+
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jsr printlong
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:
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cpx #4
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beq @nowidth
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@printlead:
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lda num,x
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bne @printrest
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lda #' '
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bit leadzero
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bpl :+
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lda #'0'
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: jsr console_out
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inx
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cpx #3
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bne @printlead
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@nowidth:
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ldx #0
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: lda num,x
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bne @printrest
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inx
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cpx #4
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bne :-
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lda #'0'
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jsr console_out
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rts
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@printrest:
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lda num,x
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tay
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lda hex2asc,y
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jsr console_out
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inx
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cpx #4
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bne @printrest
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rts
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printlong:
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lda #' '
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bit leadzero
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bpl :+
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lda #'0'
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: jsr console_out
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inx
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bne :-
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rts
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; print a 16-bit integer
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printint:
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stax int
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ldx #4
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@next:
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lda #0
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sta num,x
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jsr div10
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lda ext
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sta num,x
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dex
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bpl @next
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lda fieldwidth
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beq @nowidth
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lda #5
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sec
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sbc fieldwidth
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tax
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bpl :+
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jsr printlong
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:
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@printlead:
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lda num,x
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bne @print
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lda #' '
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bit leadzero
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bpl :+
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lda #'0'
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: jsr console_out
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inx
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cpx #5
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bne @printlead
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beq @printzero
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@nowidth:
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inx
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cpx #5
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beq @printzero
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lda num,x
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beq @nowidth
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@print:
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clc
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adc #'0'
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jsr console_out
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inx
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cpx #5
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beq @done
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@printall:
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lda num,x
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jmp @print
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@done:
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rts
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@printzero:
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lda #'0'
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jmp console_out
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; 16/16-bit division, from the fridge
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; int/aux -> int, remainder in ext
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div10:
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lda #0
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sta ext+1
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ldy #$10
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@dloop:
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asl int
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rol int+1
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rol
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rol ext+1
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pha
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cmp #10
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lda ext+1
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sbc #0 ; is this a nop?
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bcc @div2
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sta ext+1
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pla
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sbc #10
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pha
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inc int
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@div2:
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pla
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dey
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bne @dloop
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sta ext
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rts
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.rodata
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msg_unimplemented:
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.byte "<unimplemented>",0
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hex2asc:
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.byte "0123456789abcdef"
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esc_code:
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.byte "eabfnrt", '\'
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esc_count = * - esc_code
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esc_char:
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.byte 27, 7, 8, 12, 10, 13, 9, '\'
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