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cc65/libsrc/c64/joy/c64-hitjoy.s
Oliver Schmidt d6c3bd29ac Renamed JUMPTABLE and cleaned up module.cfg.
This change was suppsed to fix the issue that the former JUMPTABLE is merked as 'ro' while it is actually written to in several scenarios. When drivers are converted using co65 and then compiled into ROMs the JUMPTABLE isn't copied to RAM and therefore the write operations in question fail.

However unfortunately I didn't succeed in changing that :-( Just setting the former JUMPTABLE to 'rw' broke the drivers. So I placed the DATA segment directly after the former JUMPTABLE segment. This made the drivers converted with co65 work again - obviously after changing libsrc/Makefile:235 from '--code-label' to '--data-label'. But the actual dynamic drivers still didn't work as the former JUMPTABLE wasn't placed as the beginning of the loaded file anymore. That effect could be changed by exchanging src/ld65/o65.c:1391 with src/ld65/o65.c:1394 but doing so broke the drivers again :-((
2014-05-01 21:44:39 +02:00

228 lines
5.7 KiB
ArmAsm

;
; DXS/HIT-4 Player joystick driver for the C64
;
; Groepaz/Hitmen, 2002-12-23
; obviously based on Ullrichs driver :)
;
.include "zeropage.inc"
.include "joy-kernel.inc"
.include "joy-error.inc"
.include "c64.inc"
.macpack generic
; ------------------------------------------------------------------------
; Header. Includes jump table
.segment "HEADER"
; Driver signature
.byte $6A, $6F, $79 ; "joy"
.byte JOY_API_VERSION ; Driver API version number
; Library reference
.addr $0000
; Button state masks (8 values)
.byte $01 ; JOY_UP
.byte $02 ; JOY_DOWN
.byte $04 ; JOY_LEFT
.byte $08 ; JOY_RIGHT
.byte $10 ; JOY_FIRE
.byte $00 ; JOY_FIRE2 unavailable
.byte $00 ; Future expansion
.byte $00 ; Future expansion
; Jump table.
.addr INSTALL
.addr UNINSTALL
.addr COUNT
.addr READ
.addr IRQ
; ------------------------------------------------------------------------
; Constants
JOY_COUNT = 4 ; Number of joysticks we support
; ------------------------------------------------------------------------
; Data. Written in the IRQ, read by the READ routine
.bss
temp3: .byte 0
temp4: .byte 0
.code
; ------------------------------------------------------------------------
; INSTALL routine. Is called after the driver is loaded into memory. If
; possible, check if the hardware is present and determine the amount of
; memory available.
; Must return an JOY_ERR_xx code in a/x.
;
INSTALL:
lda #<JOY_ERR_OK
ldx #>JOY_ERR_OK
; rts ; Run into UNINSTALL instead
; ------------------------------------------------------------------------
; UNINSTALL routine. Is called before the driver is removed from memory.
; Can do cleanup or whatever. Must not return anything.
;
UNINSTALL:
rts
; ------------------------------------------------------------------------
; IRQ entry point. Is called from the C layer as a subroutine in the
; interrupt. The routine MUST return carry set if the interrupt has been
; 'handled' - which means that the interrupt source is gone. Otherwise it
; MUST return carry clear.
IRQ: ; cia 2 setup
ldy #$00 ; port b direction
sty $dd03 ; => input
sty $dd05 ; cia2 timer a highbyte
sty $dc05 ; cia1 timer a highbyte
iny
sty $dd04 ; cia2 timer a lowbyte
sty $dc04 ; cia1 timer a lowbyte
lda #%00010001
sta $dd0e ; control register a
; timer: start
; continous
; forced load
; serial port: input
; cia 1 setup
lda #%01010001
sta $dc0e ; control register a
; timer: start
; continous
; forced load
; serial port: output
; read directions 3
lda $dd01 ;read cia 2 port b
and #$0f
sta temp3
; read button 3
lda $dd02 ;cia 2 port a
and #%11111011 ;data direction
sta $dd02 ;=> bit 2 input
lda $dd00 ;read cia 2 p.A
and #%00000100 ;check bit 2
asl a
asl a
ora temp3
sta temp3
; read directions 4
lda $dd01 ;read cia 2 port b
lsr a
lsr a
lsr a
lsr a
sta temp4
; read button 4
ldx #$ff ;serial data register
stx $dc0c ;=> writing $ff causes
;cia to output some
;count signals at cnt1
ldx $dd0c ;read cia 2 serial in
beq fire ;button press if zero
lda temp4
ora #%00010000
sta temp4
fire:
; Default Value: $40/64 on PAL
; $42/66 on NTSC
lda #$41
sta $dc05
; Default Value: $25/37 on PAL
; $95/149 on NTSC
lda #0
sta $dc04
; We do never "handle" the interrupt, we use it just as a timer.
clc
rts
; ------------------------------------------------------------------------
; COUNT: Return the total number of available joysticks in a/x.
;
COUNT: lda #<JOY_COUNT
ldx #>JOY_COUNT
rts
; ------------------------------------------------------------------------
; READ: Read a particular joystick passed in A.
;
READ: tax ; Joystick number into X
bne joy2
; Read joystick 1
joy1: lda #$7F
sei
sta CIA1_PRA
lda CIA1_PRB
cli
and #$1F
eor #$1F
rts
; Read joystick 2
joy2: dex
bne joy3
; ldx #0
lda #$E0
ldy #$FF
sei
sta CIA1_DDRA
lda CIA1_PRA
sty CIA1_DDRA
cli
and #$1F
eor #$1F
rts
; Read joystick 3
joy3: dex
bne joy4
lda temp3
eor #$1F
rts
; Read joystick 4
joy4: lda temp4
eor #$1F
ldx #0
rts