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https://github.com/fadden/6502bench.git
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98914e9f80
The 65816 definition makes it a two-byte instruction, like COP. On the 6502 it acted like a two-byte instruction, but in practice very few assemblers treat it that way. Very few humans, for that matter. So it's now treated as a single byte instruction, with the following byte encoded as a data value.
276 lines
5.4 KiB
ArmAsm
276 lines
5.4 KiB
ArmAsm
.cpu "65c02"
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* = $1000
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jsr L1014
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jsr L108A
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jsr L10C4
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jsr L10D8
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jsr L10F6
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nop
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nop
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nop
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brk
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.byte $ff
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L1014 ora ($ff,x)
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.byte $02,$ff
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.byte $03
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tsb $ff
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ora $ff
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asl $ff
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.byte $07
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php
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ora #$ff
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asl a
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.byte $0b
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tsb $feff
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ora $feff
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asl $feff
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.byte $0f
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bpl L1031
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L1031 ora ($ff),y
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ora ($ff)
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.byte $13
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trb $ff
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ora $ff,x
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asl $ff,x
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.byte $17
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clc
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ora $feff,y
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inc a
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.byte $1b
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trb $feff
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ora $feff,x
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asl $feff,x
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.byte $1f
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jsr $feff
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and ($ff,x)
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.byte $22,$ff
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.byte $23
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bit $ff
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and $ff
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rol $ff
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.byte $27
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plp
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and #$ff
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rol a
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.byte $2b
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bit $feff
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and $feff
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rol $feff
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.byte $2f
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bmi L106D
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L106D and ($ff),y
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and ($ff)
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.byte $33
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bit $ff,x
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and $ff,x
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rol $ff,x
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.byte $37
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sec
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and $feff,y
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dec a
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.byte $3b
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bit $feff,x
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and $feff,x
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rol $feff,x
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.byte $3f
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rti
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L108A eor ($ff,x)
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.byte $42,$ff
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.byte $43
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.byte $44,$ff
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eor $ff
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lsr $ff
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.byte $47
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pha
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eor #$ff
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lsr a
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.byte $4b
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jmp L109E
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L109E eor $feff
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lsr $feff
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.byte $4f
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bvc L10A7
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L10A7 eor ($ff),y
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eor ($ff)
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.byte $53
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.byte $54,$ff
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eor $ff,x
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lsr $ff,x
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.byte $57
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cli
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eor $feff,y
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phy
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.byte $5b
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.byte $5c,$ff,$fe
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eor $feff,x
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lsr $feff,x
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.byte $5f
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rts
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L10C4 adc ($ff,x)
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.byte $62,$ff
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.byte $63
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stz $ff
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adc $ff
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ror $ff
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.byte $67
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pla
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adc #$ff
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ror a
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.byte $6b
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jmp ($feff)
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L10D8 adc $feff
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ror $feff
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.byte $6f
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bvs L10E1
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L10E1 adc ($ff),y
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adc ($ff)
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.byte $73
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stz $ff,x
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adc $ff,x
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ror $ff,x
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.byte $77
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sei
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adc $feff,y
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ply
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.byte $7b
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jmp ($feff,x)
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L10F6 adc $feff,x
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ror $feff,x
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.byte $7f
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bra L10FF
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L10FF sta ($ff,x)
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.byte $82,$ff
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.byte $83
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sty $ff
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sta $ff
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stx $ff
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.byte $87
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dey
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bit #$ff
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txa
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.byte $8b
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sty $feff
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sta $feff
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stx $feff
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.byte $8f
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bcc L111C
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L111C sta ($ff),y
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sta ($ff)
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.byte $93
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sty $ff,x
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sta $ff,x
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stx $ff,y
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.byte $97
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tya
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sta $feff,y
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txs
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.byte $9b
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stz $feff
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sta $feff,x
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stz $feff,x
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.byte $9f
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ldy #$ff
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lda ($ff,x)
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ldx #$ff
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.byte $a3
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ldy $ff
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lda $ff
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ldx $ff
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.byte $a7
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tay
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lda #$ff
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tax
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.byte $ab
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ldy $feff
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lda $feff
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ldx $feff
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.byte $af
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bcs L1157
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L1157 lda ($ff),y
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lda ($ff)
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.byte $b3
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ldy $ff,x
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lda $ff,x
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ldx $ff,y
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.byte $b7
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clv
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lda $feff,y
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tsx
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.byte $bb
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ldy $feff,x
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lda $feff,x
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ldx $feff,y
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.byte $bf
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cpy #$ff
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cmp ($ff,x)
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.byte $c2,$ff
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.byte $c3
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cpy $ff
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cmp $ff
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dec $ff
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.byte $c7
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iny
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cmp #$ff
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dex
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.byte $cb
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cpy $feff
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cmp $feff
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dec $feff
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.byte $cf
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bne L1192
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L1192 cmp ($ff),y
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cmp ($ff)
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.byte $d3
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.byte $d4,$ff
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cmp $ff,x
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dec $ff,x
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.byte $d7
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cld
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cmp $feff,y
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phx
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.byte $db
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.byte $dc,$ff,$fe
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cmp $feff,x
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dec $feff,x
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.byte $df
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cpx #$ff
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sbc ($ff,x)
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.byte $e2,$ff
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.byte $e3
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cpx $ff
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sbc $ff
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inc $ff
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.byte $e7
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inx
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sbc #$ff
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nop
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.byte $eb
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cpx $feff
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sbc $feff
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inc $feff
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.byte $ef
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beq L11CD
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L11CD sbc ($ff),y
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sbc ($ff)
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.byte $f3
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.byte $f4,$ff
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sbc $ff,x
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inc $ff,x
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.byte $f7
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sed
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sbc $feff,y
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plx
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.byte $fb
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.byte $fc,$ff,$fe
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sbc $feff,x
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inc $feff,x
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.byte $ff
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