448 lines
11 KiB
NASM
448 lines
11 KiB
NASM
WarpLeft:
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lda.l DRMode : beq .end
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JSR CheckIfCave : BCS .end
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lda $20 : ldx $aa
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jsr CalcIndex
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!add #$06 : ldy #$01 ; offsets in A, Y
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jsr LoadRoomHorz
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.end
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jsr Cleanup
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rtl
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WarpRight:
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lda.l DRMode : beq .end
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JSR CheckIfCave : BCS .end
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lda $20 : ldx $aa
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jsr CalcIndex
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!add #$12 : ldy #$ff ; offsets in A, Y
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jsr LoadRoomHorz
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.end
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jsr Cleanup
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rtl
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WarpUp:
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lda.l DRMode : beq .end
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JSR CheckIfCave : BCS .end
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lda $22 : ldx $a9
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jsr CalcIndex
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ldy #$02 ; offsets in A, Y
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jsr LoadRoomVert
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.end
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jsr Cleanup
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rtl
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; Checks if $a0 is equal to <Room>. If it is, opens its stonewall if it's there
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macro StonewallCheck(Room)
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lda $a0 : cmp.b #<Room> : bne ?end
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lda.l <Room>*2+$7ef000 : ora #$80 : sta.l <Room>*2+$7ef000
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?end
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endmacro
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WarpDown:
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lda.l DRMode : beq .end
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JSR CheckIfCave : BCS .end
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lda $22 : ldx $a9
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jsr CalcIndex
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!add #$0c : ldy #$ff ; offsets in A, Y
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jsr LoadRoomVert
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%StonewallCheck($43)
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.end
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jsr Cleanup
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rtl
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; carry set = use link door like normal
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; carry clear = we are in dr mode, never use linking doors
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CheckLinkDoorR:
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lda.l DRMode : bne +
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lda $7ec004 : sta $a0 ; what we wrote over
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sec : rtl
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+ clc : rtl
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CheckLinkDoorL:
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lda.l DRMode : bne +
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lda $7ec003 : sta $a0 ; what we wrote over
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sec : rtl
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+ clc : rtl
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TrapDoorFixer:
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lda $fe : and #$0038 : beq .end
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xba : asl #2 : sta $00
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stz $0468 : lda $068c : ora $00 : sta $068c
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.end
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stz $fe ; clear our fe here because we don't need it anymore
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rts
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Cleanup:
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lda.l DRFlags : and #$10 : beq +
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stz $047a
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+ inc $11
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lda $ef
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rts
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; carry set if cave, clear otherwise
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CheckIfCave:
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REP #$30
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LDA.b $A2 : CMP.w #$00E1 : BCS .invalid
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SEP #$30 : CLC : RTS
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.invalid
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SEP #$30 : SEC : RTS
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;A needs be to the low coordinate, x needs to be either 0 for left,upper or non-zero for right,down
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; This sets A (00,02,04) and stores half that at $04 for later use, (src door)
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CalcIndex: ; A->low byte of Link's Coord, X-> Link's quadrant, DoorOffset x 2 -> A, DoorOffset -> $04 (vert/horz agnostic)
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cpx.b #00 : bne .largeDoor
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cmp.b #$d0 : bcc .smallDoor
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lda #$01 : bra .done ; Middle Door
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.smallDoor lda #$00 : bra .done
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.largeDoor lda #$02
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.done
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sta $04
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asl
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rts
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; Y is an adjustment for main direction of travel
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; A is a door table row offset
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LoadRoomHorz:
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{
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phb : phk : plb
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sty $06 : sta $07 : lda $a0 : pha ; Store normal room on stack
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lda $07 : jsr LookupNewRoom ; New room is in A, Room Data is in $00-$01
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lda $00 : cmp #$03 : bne .gtg
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jsr HorzEdge : pla : bcs .end
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sta $a0 : bra .end ; Restore normal room, abort (straight staircases and open edges can get in this routine)
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.gtg ;Good to Go!
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pla ; Throw away normal room (don't fill up the stack)
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lda $a0 : and.b #$0F : asl a : !sub $23 : !add $06 : sta $02
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ldy #$00 : jsr ShiftVariablesMainDir
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lda $01 : and #$80 : beq .normal
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ldy $06 : cpy #$ff : beq +
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lda $01 : jsr LoadEastMidpoint : bra ++
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+ lda $01 : jsr LoadWestMidpoint
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++ jsr PrepScrollToEdge : bra .scroll
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.normal
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jsr PrepScrollToNormal
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.scroll
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lda $01 : and #$40 : pha
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jsr ScrollY
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pla : beq .end
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ldy #$06 : jsr ApplyScroll
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.end
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plb ; restore db register
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rts
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}
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; Y is an adjustment for main direction of travel (stored at $06)
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; A is a door table row offset (stored a $07)
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LoadRoomVert:
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{
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phb : phk : plb
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sty $06 : sta $07 : lda $a0 : pha ; Store normal room on stack
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lda $07 : jsr LookupNewRoom ; New room is in A, Room Data is in $00-$01
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lda $00 : cmp #$03 : bne .gtg
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jsr VertEdge : pla : bcs .end
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sta $a0 : bra .end ; Restore normal room, abort (straight staircases and open edges can get in this routine)
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.gtg ;Good to Go!
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pla ; Throw away normal room (don't fill up the stack)
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lda $a0 : and.b #$F0 : lsr #3 : !sub $21 : !add $06 : sta $02
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lda $01 : and #$80 : beq .notEdge
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ldy #$01 : jsr ShiftVariablesMainDir
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ldy $06 : cpy #$ff : beq +
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lda $01 : jsr LoadSouthMidpoint : bra ++
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+ lda $01 : jsr LoadNorthMidpoint
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++ jsr PrepScrollToEdge : bra .scroll
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.notEdge
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lda $01 : and #$03 : cmp #$03 : bne .normal
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jsr ScrollToInroomStairs
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stz $046d
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bra .end
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.normal
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ldy #$01 : jsr ShiftVariablesMainDir
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jsr PrepScrollToNormal
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.scroll
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lda $01 : and #$40 : sta $046d
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jsr ScrollX
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.end
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plb ; restore db register
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rts
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}
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LookupNewRoom: ; expects data offset to be in A
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{
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rep #$30 : and #$00FF ;sanitize A reg (who knows what is in the high byte)
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sta $00 ; offset in 00
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lda $a2 : tax ; probably okay loading $a3 in the high byte
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lda.w DoorOffset,x : and #$00FF ;we only want the low byte
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asl #3 : sta $02 : !add $02 : !add $02 ;multiply by 24 (data size)
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!add $00 ; should now have the offset of the address I want to load
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tax : lda.w DoorTable,x : sta $00
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and #$00FF : sta $a0 ; assign new room
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sep #$30
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rts
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}
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; INPUTS-- Y: Direction Index , $02: Shift Value
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; Sets high bytes of various registers
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ShiftVariablesMainDir:
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{
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lda.w CoordIndex,y : tax
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lda $21,x : !add $02 : sta $21,x ; coordinate update
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lda.w CameraIndex,y : tax
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lda $e3,x : !add $02 : sta $e3,x ; scroll register high byte
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lda.w CamQuadIndex,y : tax
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lda $0605,x : !add $02 : sta $0605,x ; high bytes of these guys
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lda $0607,x : !add $02 : sta $0607,x
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lda $0601,x : !add $02 : sta $0601,x
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lda $0603,x : !add $02 : sta $0603,x
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rts
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}
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; Normal Flags should be in $01
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ScrollToInroomStairs:
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{
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jsr PrepScrollToInroomStairs
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ldy #$01 : jsr ShiftVariablesMainDir
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jsr ScrollX
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ldy #$00 : jsr ApplyScroll
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lda $a0 : and #$0f : cmp #$0f : bne +
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stz $e0 : stz $e2 ; special case camera fix
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lda #$1f : sta $e1 : sta $e3
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+
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rts
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}
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; Direction should be in $06, Shift Value (see above) in $02 and other info in $01
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; Sets $02, $04, $05, $ee, $045e, $045f and things related to Y coordinate
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PrepScrollToInroomStairs:
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{
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lda $01 : and #$30 : lsr #3 : tay
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lda.w InroomStairsX,y : sta $04
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lda.w InroomStairsX+1,y : sta $05
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lda $06 : cmp #$ff : beq .south
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lda.w InroomStairsY+1,y : bne +
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inc $045f ; flag indicating special screen transition
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dec $02 ; shift variables further
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stz $aa
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lda $a8 : and #%11111101 : sta $a8
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stz $0613 ; North scroll target
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inc $0603 : inc $0607
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dec $0619 : dec $061b
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+
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lda.w InroomStairsY,y : !add #$20 : sta $20
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!sub #$38 : sta $045e
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lda $01 : and #$40 : beq +
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lda $20 : !add #$20 : sta $20
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stz $045f
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+
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dec $21
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%StonewallCheck($1b)
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bra ++
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.south
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lda.w InroomStairsY+1,y : beq +
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inc $045f ; flag indicating special screen transition
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inc $02 ; shift variables further
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lda #$02 : sta $aa
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lda $a8 : ora #%00000010 : sta $a8
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inc $0611 ; South scroll target
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dec $0603 : dec $0607
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inc $0619 : inc $061b
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+
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lda.w InroomStairsY,y : !sub #$20 : sta $20
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!add #$38 : sta $045e
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lda $01 : and #$40 : beq +
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lda $20 : !sub #$20 : sta $20
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stz $045f
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+
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inc $21
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++
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lda $01 : and #$04 : lsr #2 : sta $ee : bne +
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stz $0476
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+ rts
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}
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; Target pixel should be in A, other info in $01
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; Sets $04 $05 and $ee
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PrepScrollToEdge:
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{
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sta $04 : lda $01 : and #$20 : beq +
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lda #01
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+ sta $05
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lda $01 : and #$10 : beq +
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lda #01
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+ sta $ee : bne +
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stz $0476
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+ rts
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}
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; Normal Flags should be in $01
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; Sets $04 $05 and $ee, and $fe
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PrepScrollToNormal:
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{
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lda $01 : sta $fe : and #$04 : lsr #2 : sta $ee ; trap door and layer
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bne +
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stz $0476
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+ stz $05 : lda #$78 : sta $04
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lda $01 : and #$03 : beq .end
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cmp #$02 : !bge +
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lda #$f8 : sta $04 : bra .end
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+ inc $05
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.end rts
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}
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StraightStairsAdj:
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{
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stx $0464 : sty $012e ; what we wrote over
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lda.l DRMode : beq +
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lda $045e : bne .toInroom
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lda $046d : beq .noScroll
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sta $22
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ldy #$00 : jsr ApplyScroll
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stz $046d
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.noScroll
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jsr GetTileAttribute : tax
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lda $11 : cmp #$12 : beq .goingNorth
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lda $a2 : cmp #$51 : bne ++
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rep #$20 : lda #$0018 : !add $20 : sta $20 : sep #$20 ; special fix for throne room
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jsr GetTileAttribute : tax
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++ lda.l StepAdjustmentDown, X : bra .end
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; lda $ee : beq .end
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; rep #$20 : lda #$ffe0 : !add $20 : sta $20 : sep #$20
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.goingNorth
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cpx #$00 : bne ++
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lda $a0 : cmp #$51 : bne ++
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lda #$36 : bra .end ; special fix for throne room
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++ ldy $ee : cpy #$00 : beq ++
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inx
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++ lda.l StepAdjustmentUp, X
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.end
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pha : lda $0462 : and #$04 : bne ++
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pla : !add #$f6 : pha
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++ pla : !add $0464 : sta $0464
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+ rtl
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.toInroom
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lda #$32 : sta $0464 : stz $045e
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rtl
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}
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GetTileAttribute:
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{
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phk : pea.w .jslrtsreturn-1
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pea.w $02802c
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jml CalculateTransitionLanding ; mucks with x/y sets a to Tile Attribute, I think
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.jslrtsreturn
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rts
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}
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; 0 open edge
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; 1 nrm door high
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; 2 straight str
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; 3 nrm door low
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; 4 trap door high
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; 5 trap door low (none of these exist on North direction)
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StepAdjustmentUp: ; really North Stairs
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db $00, $f6, $1a, $18, $16, $38
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StepAdjustmentDown: ; really South Stairs
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db $d0, $f6, $10, $1a, $f0, $00
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StraightStairsFix:
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{
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pha
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lda.l DRMode : bne +
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pla : !add $20 : sta $20 : rtl ;what we wrote over
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+ pla : rtl
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}
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StraightStairLayerFix:
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{
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lda.l DRMode : beq +
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lda $ee : rtl
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+ lda $01c322, x : rtl ; what we wrote over
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}
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DoorToStraight:
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{
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pha
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lda.l DRMode : beq .skip
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pla : bne .end
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pha
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lda $a0 : cmp #$51 : bne .skip
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lda #$04 : sta $4e
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.skip pla
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.end LDX.w $0418 : CMP.b #$02 ; what we wrote over
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rtl
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}
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DoorToInroom:
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{
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ldx $045e : bne .end
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sta $0020, y ; what we wrote over
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.end
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ldx #$00 ; what we wrote over
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rtl
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}
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DoorToInroomEnd:
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{
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ldy $045e : beq .vanilla
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cmp $045e : bne .return
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stz $045e ; clear
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.return
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rtl
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.vanilla
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cmp $02c034, x ; what we wrote over
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rtl
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}
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StraightStairsTrapDoor:
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{
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lda $0464 : bne +
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; reset function
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.reset phk : pea.w .jslrtsreturn-1
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pea.w $02802c
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jml $028c73 ; $10D71 .reset label of Bank02
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.jslrtsreturn
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lda $0468 : bne ++
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lda $a0 : cmp.b #$ac : bne .animateTraps
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lda $0403 : and.b #$20 : bne .animateTraps
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lda $0403 : and.b #$10 : beq ++
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.animateTraps
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lda #$05 : sta $11
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inc $0468 : stz $068e : stz $0690
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++ JML Underworld_SetBossOrSancMusicUponEntry_long
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+ JML Dungeon_ApproachFixedColor ; what we wrote over
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}
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InroomStairsTrapDoor:
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{
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lda $0200 : cmp #$05 : beq .reset
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lda $b0 : jml $008781 ; what we wrote over (essentially)
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.reset
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pla : pla : pla
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jsl StraightStairsTrapDoor_reset
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jml $028b15 ; just some RTS in bank 02
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}
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HandleSpecialDoorLanding: {
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LDA.l $7F2000,X ; what we wrote over
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SEP #$30
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; A = tiletype
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HandleIncomingDoorState:
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PHA
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LDA.l DRMode : BEQ .noDoor
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PLA : PHA : AND.b #$FA : CMP.b #$80 : bne .noDoor
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.setDoorState
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LDA.w $0418 : AND.b #$02 : BNE + : INC
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+ STA.b $6C
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.noDoor
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PLA
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CMP.b #$34 : BNE + ; inroom stairs
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PHA : LDA.b #$26 : STA.w $045E : PLA
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+ RTL
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}
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