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cc65/libsrc/pce/joy/pce-stdjoy.s

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2015-07-12 12:27:24 +00:00
;
; Standard joystick driver for the PCEngine
;
.include "joy-kernel.inc"
.include "joy-error.inc"
.macpack module
; ------------------------------------------------------------------------
; Header. Includes jump table
module_header _pce_stdjoy_joy
; 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 $10 ; JOY_UP
.byte $40 ; JOY_DOWN
.byte $80 ; JOY_LEFT
.byte $20 ; JOY_RIGHT
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.byte $01 ; JOY_FIRE_A
.byte $02 ; JOY_FIRE_B
.byte $04 ; JOY_SELECT
.byte $08 ; JOY_RUN
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; Jump table.
.addr INSTALL
.addr UNINSTALL
.addr COUNT
.addr READJOY
.addr 0 ; IRQ entry unused
; ------------------------------------------------------------------------
; Constants
JOY_COUNT = 4 ; Number of joysticks we support
.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 DEINSTALL instead
; ------------------------------------------------------------------------
; DEINSTALL routine. Is called before the driver is removed from memory.
; Can do cleanup or whatever. Must not return anything.
;
UNINSTALL:
rts
; ------------------------------------------------------------------------
; COUNT: Return the total number of available joysticks in a/x.
;
;unsigned char __fastcall__ joy_count (void);
COUNT:
lda #<JOY_COUNT
ldx #>JOY_COUNT
rts
; ------------------------------------------------------------------------
; READ: Read a particular joystick passed in A.
;
;unsigned char __fastcall__ joy_read (unsigned char joystick);
READJOY:
pha
jsr read_joy
pla
tax ; Joystick number into X
; return value from buffer
joy1:
lda padbuffer,x
ldx #0
rts
read_joy:
; reset multitap counter
lda #$01
sta $1000
pha
pla
nop
nop
lda #$03
sta $1000
pha
pla
nop
nop
cly
nextpad:
lda #$01
sta $1000 ; sel = 1
pha
pla
nop
nop
lda $1000
asl a
asl a
asl a
asl a
sta padbuffer, y ; store new value
stz $1000
pha
pla
nop
nop
lda $1000
and #$0F
ora padbuffer, y ; second half of new value
eor #$FF
sta padbuffer, y ; store new value
iny
cpy #$05
bcc nextpad
rts
.bss
padbuffer:
.res 4