mirror of
https://github.com/cc65/cc65.git
synced 2024-12-24 11:31:31 +00:00
0ee9b2e446
So far the INIT segment was run from the later heap+stack. Now the INIT segment is run from the later BSS. The background is that so far the INIT segment was pretty small (from $80 to $180 bytes). But upcoming changes will increase the INIT segment in certain scenarios up to ~ $1000 bytes. So programs with very limited heap+stack might just not been able to move the INIT segment to its run location. But moving the INIT segment to the later BSS allows it to occupy the later BSS+heap+stack. In order to allow that the constructors are _NOT_ allowed anymore to access the BSS. Rather they must use the DATA segment or the new INITBSS segment. The latter isn't cleared at any point so the constructors may use it to expose values to the main program. However they must make sure to always write the values as they are not pre-initialized.
121 lines
2.8 KiB
ArmAsm
121 lines
2.8 KiB
ArmAsm
;
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; Startup code for cc65 (C128 version)
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;
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.export _exit
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.export __STARTUP__ : absolute = 1 ; Mark as startup
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.import initlib, donelib
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.import zerobss
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.import push0, callmain
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.import RESTOR, BSOUT, CLRCH
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.import __RAM_START__, __RAM_SIZE__, __STACKSIZE__
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.importzp ST
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.include "zeropage.inc"
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.include "c128.inc"
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; ------------------------------------------------------------------------
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; Startup code
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.segment "STARTUP"
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Start:
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; Switch to the second charset.
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lda #14
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jsr BSOUT
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; Before doing anything else, we have to set up our banking configuration.
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; Otherwise, just the lowest 16K are actually RAM. Writing through the ROM
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; to the underlying RAM works; but, it is bad style.
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lda MMU_CR ; Get current memory configuration...
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pha ; ...and save it for later
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lda #MMU_CFG_CC65 ; Bank0 with Kernal ROM
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sta MMU_CR
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; Save the zero-page locations that we need.
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ldx #zpspace-1
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L1: lda sp,x
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sta zpsave,x
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dex
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bpl L1
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; Clear the BSS data.
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jsr zerobss
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; Save some system stuff; and, set up the stack.
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pla ; Get MMU setting
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sta mmusave
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tsx
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stx spsave ; Save the system stack pointer
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lda #<(__RAM_START__ + __RAM_SIZE__ + __STACKSIZE__)
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sta sp
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lda #>(__RAM_START__ + __RAM_SIZE__ + __STACKSIZE__)
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sta sp+1 ; Set argument stack ptr
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; Call the module constructors.
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jsr initlib
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; Set the bank for the file name to our execution bank. We must do this
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; *after* calling the constructors because some of them might depend on
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; the original value of this register.
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lda #0
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sta FNAM_BANK
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; Push the command-line arguments; and, call main().
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jsr callmain
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; Back from main() [this is also the exit() entry]. Run the module destructors.
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_exit: pha ; Save the return code on stack
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jsr donelib
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; Copy back the zero-page stuff.
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ldx #zpspace-1
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L2: lda zpsave,x
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sta sp,x
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dex
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bpl L2
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; Place the program return code into BASIC's status variable.
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pla
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sta ST
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; Reset the stack and the memory configuration.
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ldx spsave
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txs
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ldx mmusave
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stx MMU_CR
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; Done, return to BASIC.
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rts
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; ------------------------------------------------------------------------
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; Data
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.segment "INITBSS"
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zpsave: .res zpspace
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; ------------------------------------------------------------------------
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.bss
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spsave: .res 1
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mmusave:.res 1
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