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cc65/libsrc/pce/crt0.s
Greg King 3a0506ccb3 Changed the PC-Engine's configuration file, so that the command line can build 8K, 16K, and 32K carts.
Adjusted the PCE's document, the start-up code, and the PCE library test makefile.  That makefile shows how to post-process the linker's output file.
2018-02-23 16:06:49 -05:00

134 lines
3.9 KiB
ArmAsm

;
; Startup code for cc65 (PCEngine version)
;
; by Groepaz/Hitmen <groepaz@gmx.net>
; based on code by Ullrich von Bassewitz <uz@cc65.org>
;
; 2018-02-11, Greg King
;
.export _exit
.export __STARTUP__ : absolute = 1 ; Mark as startup
.import initlib, donelib
.import push0, _main
.import IRQStub
; Linker-generated
.import __CARTSIZE__
.import __DATA_LOAD__, __DATA_RUN__, __DATA_SIZE__
.import __BSS_RUN__, __BSS_SIZE__
.import __MAIN_START__, __MAIN_SIZE__, __STACKSIZE__
.include "pce.inc"
.include "extzp.inc"
.importzp sp
; ------------------------------------------------------------------------
; Place the startup code in a special segment.
.segment "STARTUP"
start:
; Set up the CPU and System-IRQ
; Initialize CPU
sei
nop
csh ; Set high speed CPU mode
nop
cld
nop
; Set up stack and memory mapping
ldx #$FF ; Stack top ($21FF)
txs
; At power-on, most MPRs have random values; so, initiate them.
lda #$FF
tam #%00000001 ; $0000-$1FFF = Hardware bank
lda #$F8
tam #%00000010 ; $2000-$3FFF = Work RAM
;lda #$F7
;tam #%00000100 ; $4000-$47FF = 2K Battery-backed RAM
;lda #4
;tam #%00001000 ; $6000-$7FFF
lda #$01
ldx #>$8000
cpx #>__CARTSIZE__
bcc @L1 ;(blt)
tam #%00010000 ; $8000-$9FFF = ROM bank 1 (32K block of ROM)
inc a
tam #%00100000 ; $A000-$BFFF = ROM bank 2
inc a
@L1: tam #%01000000 ; $C000-$DFFF = ROM bank 3 (32K) or 1 (16K)
;lda #$00 ; (The reset default)
;tam #%10000000 ; $E000-$FFFF hucard/syscard bank 0
; Initialize hardware
stz TIMER_CTRL ; Timer off
lda #$07
sta IRQ_MASK ; Interrupts off
stz IRQ_STATUS ; Acknowledge timer
; FIXME; i dont know why the heck this one doesnt work when called from a constructor :/
.import vdc_init
jsr vdc_init
; Turn on background and VD interrupt/IRQ1
lda #$05
sta IRQ_MASK ; IRQ1=on
; Copy the .data segment to RAM
tii __DATA_LOAD__, __DATA_RUN__, __DATA_SIZE__
; Clear the .bss segment
stz __BSS_RUN__
tii __BSS_RUN__, __BSS_RUN__ + 1, __BSS_SIZE__ - 1
; Set up the stack
lda #<(__MAIN_START__ + __MAIN_SIZE__ + __STACKSIZE__)
ldx #>(__MAIN_START__ + __MAIN_SIZE__ + __STACKSIZE__)
sta sp
stx sp + 1
; Call module constructors
jsr initlib
cli ; allow IRQ only after constructors have run
; Pass an empty command line
jsr push0 ; argc
jsr push0 ; argv
ldy #4 ; Argument size
jsr _main ; Call the users code
; Call module destructors. This is also the _exit entry.
_exit:
jsr donelib ; Run module destructors
; reset the PCEngine (start over)
jmp start
_nmi:
rti
.export initmainargs
initmainargs:
rts
; ------------------------------------------------------------------------
; hardware vectors
; ------------------------------------------------------------------------
.segment "VECTORS"
.word IRQStub ; $fff6 IRQ2 (External IRQ, BRK)
.word IRQStub ; $fff8 IRQ1 (VDC)
.word IRQStub ; $fffa Timer
.word _nmi ; $fffc NMI
.word start ; $fffe reset