mirror of
https://github.com/A2osX/A2osX.git
synced 2024-11-26 13:49:18 +00:00
766 lines
24 KiB
Plaintext
766 lines
24 KiB
Plaintext
NEW
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AUTO 3,1
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destroy jsr findfile look for file to be destroyed.
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bcs L4B66 if error.
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jsr tstopen is it open ?
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lda totent
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bne L4B64 error if open.
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stz reql force proper free count in volume.
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stz reqh (no disk access occurs if already
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jsr tstfrblk proper)
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bcc L4B39 no errors.
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cmp #$48 was error a full disk ?
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bne L4B66 no, report error.
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L4B39 lda d_attr make sure ok to destroy file.
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and #$80
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bne L4B45 branch if ok to destroy.
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lda #MLI.E.LOCKED access error
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jsr GP.P8errv
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L4B45 lda devnum last device used.
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jsr twrprot1 test for write protected hardware
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bcs L4B66 before going thru deallocation.
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lda d_frst 'detree' needs first block address
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sta firstbl
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lda d_frst+1
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sta firstbh
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lda d_stor find out which storage type.
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and #$F0 strip off name length.
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cmp #$40 is it a seed, sapling or tree ?
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bcc L4B68 branch if it is.
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bra L4BCF otherwise, test for directory destroy.
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L4B64 lda #$50 file busy error.
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L4B66 sec can't be destroyed
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rts
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L4B68 sta stortyp destroy a tree file. save storage type.
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ldx #$05
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lda #$00 set 'detree' input variables, must be
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L4B6F sta stortyp,x in order: deblock, dtree, dsap, dseed.
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dex
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bne L4B6F loop until all zero'd.
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lda #$02 this avoids an extra file i/o and pre-
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sta dseed+1 vents destruction of any deleted data.
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inc delflag don't allow detree to zero index blocks.
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jsr detree make trees and saplings into seeds.
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dec delflag reset flag.
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bcs L4B93 (de-evolution)
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L4B85 ldx firstbh
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lda firstbl now deallocate seed.
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jsr dealloc
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bcs L4B93
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jsr upbmap
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L4B93 pha save possible error code.
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lda #$00 update directory to free entry space.
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sta d_stor
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cmp h_fcnt file entry wrap ?
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bne L4BA1 branch if no carry adjustment.
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dec h_fcnt+1 take carry from hi byte of file entries.
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L4BA1 dec h_fcnt mark header with one less file.
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jsr dvcbrev go update block count in vcb (ignore
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jsr drevise error, if any) and update dir last.
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tax save possible new error code,
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pla restore possible old error code.
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bcc L4BAF branch if last call succeeded.
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txa last call failed, use it's error code.
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L4BAF cmp #$01 adjust carry accordingly
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rts
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dvcbrev ldy vcbptr update block free count in vcb. point to vcb of correct device.
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lda deblock get # of blocks recently freed.
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adc vcbbuf+20,y
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sta vcbbuf+20,y update current free block count.
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lda deblock+1
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adc vcbbuf+21,y
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sta vcbbuf+21,y
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lda #$00 force re-scan from 1st bitmap
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sta vcbbuf+28,y
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rts
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L4BCD bcc L4B85 branch widened (always taken)
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L4BCF cmp #$D0 is this a directory file ?
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bne L4C1B no, file incompatible.
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jsr fndbmap make sure a buffer available for bitmap
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bcs L4C1A if error.
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lda d_frst read 1st block of directory into gbuf
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sta bloknml
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lda d_frst+1
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sta bloknml+1
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jsr rdgbuf
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bcs L4C1A
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lda gbuf+37 do any files exist in this directory ?
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bne L4BF1 if so, access error.
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lda gbuf+38
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beq L4BF6
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L4BF1 lda #$4E access error.
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jsr GP.P8errv
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L4BF6 sta gbuf+4 make it an invalid subdirectory
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jsr wrtgbuf
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bcs L4C1A
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L4BFE lda gbuf+2 get forward link.
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cmp #$01 test for null block into carry.
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ldx gbuf+3 get the rest of the block address.
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bne L4C0A branch if not null.
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bcc L4BCD was the low part null as well ?
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L4C0A jsr dealloc free this block.
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bcs L4C1A
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lda gbuf+2
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ldx gbuf+3
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jsr rdblk
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bcc L4BFE loop until all freed
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L4C1A rts
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L4C1B lda #MLI.E.INCFF file incompatible
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jsr GP.P8errv
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fcbused pha mark fcb as dirty so the directory will be flushed on 'flush'.
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tya save regs.
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pha
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ldy fcbptr
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lda fcbbuf+28,y fetch current fcb dirty byte.
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ora #$80 mark fcb as dirty.
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sta fcbbuf+28,y save it back
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pla and restore regs.
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tay
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pla
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rts
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* 'detree' deallocates blocks from tree files. it is assumed that the device has
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* been pre-selected and the 'gbuf' may be used.
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*
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* on entry:
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* stortype = storage type in upper nibble, lower nibble is undisturbed.
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* firstbl & firstbh = first block of file (index or data).
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* deblock = 0
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* dtree = ptr to 1st block with data to be deallocated at tree level.
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* dsap = ptr to 1st block at sapling level.
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* dseed = byte (0-511) position to be zeroed from (inclusive).
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*
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* on exit:
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* stortype = modified result of storage type (if applicable).
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* firstbl & h = modified if storage type changed.
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* deblock = total number of blocks freed at all levels.
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* dtree, dsap, deseed unchanged.
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*
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* to trim a tree to a seed file, both dtree and dsap must be zero.
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* to go from tree to sapling, dtree alone must be zero.
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detree lda stortyp which kind of tree ?
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cmp #$20 is it a 'seed' ?
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bcc L4C46 if yes.
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cmp #$30 a sapling ?
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bcc L4C51 if yes.
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cmp #$40 is it at least a 'tree' ?
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bcc L4C59 branch if it is.
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lda #$0C block allocation error.
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jsr sysdeath P8 system death vector
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* seedling file type - make sure first desireable block is the only
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* block available in a seedling file.
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L4C46 lda dsap
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ora dtree
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bne L4CC2
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jmp seedel0
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* sapling file type - make sure first desireable block is within the range of
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* blocks available in a sapling file
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L4C51 lda dtree can't have any blocks in this range
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bne L4CC2 if so then done
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jmp sapdel0 else go deallocate
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L4C59 lda #$80
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sta topdest for tree top start at end, work backwards.
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L4C5E jsr drdfrst read specified first block into gbuf.
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bcs L4CC2 return errors.
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ldy topdest get current pointer to top indexes.
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cpy dtree have enough sapling indexes been
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beq L4CC3 deallocated? yes, now deallocate blocks
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ldx #$07 buffer up to 8 sapling index block
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L4C6D lda gbuf,y addresses. fetch low block address
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sta dealbufl,x and save it.
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ora gbuf+$100,y is it a real block that is allocated?
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beq L4C81 branch if phantom block.
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lda gbuf+$100,y fetch high block address
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sta dealbufh,x and save it.
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dex decrement and test for dealc buf filled.
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bmi L4C93 branch if 8 addresses fetched.
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L4C81 dey look for end of deallocation limit.
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cpy dtree is this the last position on tree level?
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bne L4C6D if not.
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iny
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lda #$00 fill rest of dealc buffer with null addresses.
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L4C8A sta dealbufl,x
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sta dealbufh,x
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dex
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bpl L4C8A
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L4C93 dey decrement to prepare for next time.
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sty topdest save index.
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ldx #$07
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L4C99 stx dtmpx save index to dealc buf.
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lda dealbufl,x
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sta bloknml
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ora dealbufh,x finished ?
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beq L4C5E branch if done with this level.
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lda dealbufh,x complete address with high byte,
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sta bloknml+1
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jsr rdgbuf read sapling level into gbuf.
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bcs L4CC2 return errors.
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jsr dealblk go free all data indexes in this block
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bcs L4CC2
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jsr wrtgbuf write the flipped index block
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bcs L4CC2
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ldx dtmpx restore index to dealc buff.
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dex are there more to free?
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bpl L4C99 branch if so.
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bmi L4C5E branch always to get up to 8 more
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L4CC2 rts sapling block numbers.
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L4CC3 ldy dtree deallocate all sapling blocks greater
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iny than specified block.
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jsr dalblk1 (master index in gbuf)
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bcs L4CC2 if errors.
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jsr wrtgbuf write updated master index back to disk.
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bcs L4CC2
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ldy dtree figure out if tree can become sapling.
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beq L4CEB branch if it can.
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lda gbuf,y otherwise, continue with partial.
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sta bloknml deallocation of last sapling index.
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ora gbuf+$100,y is there such a sapling index block ?
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beq L4CC2 all done if not.
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lda gbuf+$100,y read in sapling level to be modified.
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sta bloknml+1
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jsr rdgbuf read highest sapling index into gbuf.
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bcc L4CF5
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rts
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L4CEB jsr shrink shrink tree to sapling
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bcs L4CC2
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sapdel0 jsr drdfrst read specified sapling level index
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bcs L4CC2 into gbuf. branch if error.
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L4CF5 ldy dsap pointer to last of desirable indexes.
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iny inc to 1st undesirable.
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beq L4D05 branch if all are desirable.
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jsr dalblk1 deallocate all indexes above specified.
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bcs L4CC2
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jsr wrtgbuf write out the index block
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bcs L4CC2
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L4D05 ldy dsap prepare to clean up last data block.
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beq L4D1F branch if possibility of making a seed.
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L4D0A lda gbuf,y fetch low order data block address.
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sta bloknml
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ora gbuf+$100,y is it a real block ?
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beq L4CC2 if not, then done.
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lda gbuf+$100,y
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sta bloknml+1
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jsr rdgbuf go read data block into gbuf.
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bcc L4D2E branch if good read
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rts or return error.
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L4D1F lda dtree are both tree and sap levels zero ?
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bne L4D0A if not.
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jsr shrink reduce this sap to a seed.
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bcs L4D52 if error.
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seedel0 jsr drdfrst go read data block.
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bcs L4D52 if error.
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L4D2E ldy dseed+1 check high byte for no deletion.
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beq L4D39 branch if all of 2nd page to be deleted.
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dey if dseed > $200 then all were done.
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bne L4D52 branch if that is the case.
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ldy dseed clear only bytes >= dseed.
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L4D39 lda #$00
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L4D3B sta gbuf+$100,y zero out unwanted data
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iny
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bne L4D3B
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ldy dseed+1 is that all ?
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bne L4D4F yes.
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ldy dseed
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L4D49 sta gbuf,y
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iny
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bne L4D49
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L4D4F jmp wrtgbuf update data block to disk.
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L4D52 rts return error status.
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drdfrst lda firstbl read specified 1st block into gbuf
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ldx firstbh
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jmp rdblk go read it
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* beware that dealloc may bring in a new bitmap block and may destroy
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* locations 46 and 47 which are used to point to the current index block.
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shrink ldx firstbh first deallocate top index block
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txa
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pha
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lda firstbl
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pha save block address of this index block.
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jsr dealloc free it from the bitmap
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pla
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sta bloknml set master of sapling
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pla index block address.
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sta bloknml+1
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bcs L4D8D report errors.
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lda gbuf get # of new 1st block from old index.
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sta firstbl
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lda gbuf+$100
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sta firstbh
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ldy #$00
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jsr swapme flip that one entry in old top index.
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sec now change file type,
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lda stortyp from tree to sapling,
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sbc #$10 or from sapling to seed.
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sta stortyp
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jsr wrtgbuf write the (deallocated) old top index.
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L4D8D rts return error status.
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dealblk ldy #$00 start at beginning.
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dalblk1 lda bloknml save disk address of gbuf's data.
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pha
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lda bloknml+1
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pha
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L4D96 sty saptr save current index.
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lda gbuf,y get low address of block to deallocate.
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cmp #$01 test for null block into carry.
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ldx gbuf+$100,y get remainder of block address.
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bne L4DA5 branch if not null.
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bcc L4DB0 was the low part null too ?
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L4DA5 jsr dealloc free it up on volume bitmap.
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bcs L4DB4 return any error.
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ldy saptr get index to sapling level index block.
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jsr swapme
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L4DB0 iny next block address.
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bne L4D96 if more to deallocate or test.
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clc no error.
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L4DB4 tax save error code, if any.
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pla restore blocknm (16 bit)
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sta bloknml+1
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pla
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sta bloknml
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txa restore return code
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rts
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swapme lda delflag swapping or zeroing ?
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bne L4DC5 skip if swapping.
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tax make x = 0.
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beq L4DCB zero the index (always taken).
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L4DC5 ldx gbuf+$100,y index high
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lda gbuf,y index low
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L4DCB sta gbuf+$100,y save index high
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txa
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sta gbuf,y save index low
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rts done.
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* MEMMGR memory manager
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*
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* allocate buffer in memory tables
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alcbuffr ldy #$04 index to user specified buffer.
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alcbufr1 lda (A3L),y this buffer must be on a page boundary.
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tax save for validation.
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cmp #$08
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bcc L4E1E cannot be lower than video !
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cmp #$BC nor greater than $BB00
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bcs L4E1E since it would wipe out globals...
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sta datptr+1
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dey
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lda (A3L),y low address should be zero !
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sta datptr
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bne L4E1E error if not page boundary.
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inx add 4 pages for 1k buffer.
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inx
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inx
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inx
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L4DED dex test for conflicts.
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jsr cmembit test for free buffer space
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and memmap,y P8 memory bitmap
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bne L4E1E report memory conflict, if any.
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cpx datptr+1 test all 4 pages.
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bne L4DED
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inx add 4 pages again for allocation.
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inx
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inx
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inx
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L4DFE dex set proper bits to 1
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jsr cmembit
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ora memmap,y to mark it's allocation.
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sta memmap,y
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cpx datptr+1 set all 4 pages
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bne L4DFE
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ldy fcbptr calculate buffer number
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lda fcbbuf,y
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asl buffer number = (entnum) * 2.
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sta fcbbuf+11,y save it in fcb.
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tax use entnum * 2 as index to global
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lda datptr+1 buffer addr tables. get addr already
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sta buftbl-1,x validated as good. store hi addr
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clc (entnums start at 1, not 0)
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rts
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L4E1E lda #$56 buffer is in use or not legal
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sec
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rts
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getbufadr tax index into global buffer table.
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lda buftbl-2,x
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sta bufaddrl
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lda buftbl-1,x
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sta bufaddrh
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rts
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relbuffr jsr getbufadr preserve buffer address in 'bufaddr'
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tay returns high buffer address in acc.
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beq L4E54 branch if unallocated buffer space.
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stz buftbl-1,x take address out of buffer list.
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stz buftbl-2,x (x was set up by getbufadr)
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freebuf ldx bufaddrh get hi buffer address
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inx add 4 pages to account for 1k space.
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inx
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inx
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inx
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L4E43 dex drop to next lower page.
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jsr cmembit get bit and position to memtable of
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eor #$FF this page. invert mask.
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and memmap,y mark address as free space.
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sta memmap,y
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cpx bufaddrh all pages freed ?
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bne L4E43 no.
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L4E54 clc no error.
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rts
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* calculate memory allocation bit position.
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* on entry: x = high address of buffer, low address assumed zero.
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* on exit: acc = allocation bit mask, x = unchanged, y = pointer to memtabl byte
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cmembit txa page address
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and #$07 which page in any 2k set ?
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tay use as index to determine
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lda whichbit,y bit position representation.
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pha save bit position mask for now.
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txa page address.
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lsr
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lsr determine 2k set
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lsr
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tay return it in y.
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pla restore bit mask. return bit position
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rts in a & y, pointer to memtabl in x.
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valdbuf lda usrbuf+1 high address of user's buffer
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cmp #$02 must be greater than page 2.
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bcc L4E1E report bad buffer
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ldx cbytes+1
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lda cbytes get cbytes-1 value.
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sbc #$01 (carry is set)
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bcs L4E76
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dex
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L4E76 clc
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adc usrbuf calculate end of request address.
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txa do high address.
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adc usrbuf+1 the final address
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tax must be less than $BFnn (globals)
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cpx #$BF
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bcs L4E1E report bad buffer.
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inx loop thru all affected pages.
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vldbuf1 dex check next lower page.
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jsr cmembit
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and memmap,y if 0 then no conflict.
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bne L4E1E branch if conflict.
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cpx usrbuf+1 was that the last (lowest) page ?
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bne vldbuf1 if not.
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clc all pages ok.
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rts
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getbuf ldy #$02 give user address of file buffer referenced by refnum.
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lda bufaddrl
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sta (A3L),y
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iny
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lda bufaddrh
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sta (A3L),y
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clc no errors possible
|
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rts
|
||
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setbuf ldy #$03
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jsr alcbufr1 allocate new buffer address over old one
|
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bcs L4EC7 report any errors immediately
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lda bufaddrh
|
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sta usrbuf+1
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lda bufaddrl
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sta usrbuf
|
||
jsr freebuf free address space of old buffer
|
||
ldy #$00
|
||
ldx #$03
|
||
L4EB8 lda (usrbuf),y move all 4 pages of the buffer to
|
||
sta (datptr),y new location.
|
||
iny
|
||
bne L4EB8
|
||
inc datptr+1
|
||
inc usrbuf+1
|
||
dex
|
||
bpl L4EB8
|
||
clc no errors
|
||
L4EC7 rts
|
||
|
||
|
||
* move 3 pages of dispatcher from 'displc2' to 'dispadr'
|
||
* this move routine must be resident above $E000 at all times
|
||
|
||
calldisp lda RRAMWRAMBNK2 read/write RAM bank 2
|
||
lda RRAMWRAMBNK2
|
||
lda /dispadr
|
||
sta A2L+1
|
||
lda #dispadr
|
||
sta A2L
|
||
lda /displc2
|
||
sta A1L+1
|
||
stz A1L
|
||
ldy #$00
|
||
ldx #$03 3 pages to move.
|
||
L4EE0 dey move a page of code.
|
||
lda (A1L),y
|
||
sta (A2L),y
|
||
tya
|
||
bne L4EE0
|
||
inc A1L+1 pointers to next page
|
||
inc A2L+1
|
||
dex move all pages needed
|
||
bne L4EE0
|
||
lda RRAMWRAMBNK1 read/write RAM bank 1
|
||
lda RRAMWRAMBNK1 swap mli space back in
|
||
stz mliact MLI active flag
|
||
stz softev
|
||
lda /dispadr point RESET to dispatch entry
|
||
sta softev+1
|
||
eor #$A5
|
||
sta pwredup power up byte
|
||
jmp dispadr
|
||
|
||
* translate a prodos call into a smartport call
|
||
* to access unseen smartport devices
|
||
|
||
remap_sp ldx #$03 assume 3 parameters.
|
||
lda A4L command number
|
||
sta cmdnum
|
||
bne L4F1B taken if not status call
|
||
|
||
ldy #spstatlist set up memory for the status list buffer
|
||
sty buf fake up the prodos parameters
|
||
ldy /spstatlist
|
||
sty buf+1
|
||
stz bloknml set statcode = 0 for simple status call
|
||
|
||
L4F1B cmp #$03 format command ?
|
||
bne L4F21 no.
|
||
ldx #$01 format has only 1 parameter.
|
||
L4F21 stx statparms set # of parms.
|
||
lda unitnum
|
||
lsr turn unit number into an index
|
||
lsr
|
||
lsr
|
||
lsr
|
||
tax
|
||
lda spunit-1,x get the smartport unit number and
|
||
sta sp_unitnum store into smartport parm list.
|
||
lda spvectlo-1,x
|
||
sta sp_vector+1 copy smartport entry address
|
||
lda spvecthi-1,x
|
||
sta sp_vector+2
|
||
ldx #$04 copy buffer pointer and block #
|
||
L4F3F lda buf-1,x from prodos parameters
|
||
sta sp_bufptr-1,x to smartport parameter block
|
||
dex
|
||
bne L4F3F
|
||
sp_vector jsr $0000 smartport call (entry address gets modified)
|
||
cmdnum .HS 00 command #
|
||
.DA statparms
|
||
bcs L4F6E
|
||
|
||
ldx cmdnum status call ?
|
||
bne L4F6E no...
|
||
ldx spstatlist+1 else get the block count
|
||
ldy spstatlist+2
|
||
lda spstatlist get the returned status.
|
||
bit #$10 is there a disk present ?
|
||
bne L4F65 yes, check for write protected.
|
||
lda #$2F return offline error.
|
||
bra L4F6D
|
||
L4F65 and #$44 mask all but write allowed and write
|
||
eor #$40 protected bits. if allowed and not
|
||
beq L4F6E protected, exit with carry clear
|
||
lda #$2B else return write protected error.
|
||
L4F6D sec
|
||
L4F6E rts
|
||
spvectlo .HS 0000000000000000 storage for low byte of smartport entry.
|
||
.HS 00000000000000
|
||
spvecthi .HS 0000000000000000 storage for high byte of smartport entry.
|
||
.HS 00000000000000
|
||
statparms .HS 03 # of parms (always 3 except format)
|
||
sp_unitnum .HS 00 unit number
|
||
sp_bufptr .HS 0000 data buffer
|
||
.HS 000000 block number (3 bytes)
|
||
|
||
* data tables
|
||
|
||
scnums .HS D3000000 table of valid mli command numbers.
|
||
.HS 40410000808182
|
||
.HS 65C0C1C2C3C4C5C6
|
||
.HS C7C8C9CACBCCCDCE
|
||
.HS CF00D0D1D2
|
||
pcntbl .HS 02FFFFFF parameter counts for the calls
|
||
.HS 0201FFFF030300
|
||
.HS 04070102070A0201
|
||
.HS 0103030404010102
|
||
.HS 02FF020202
|
||
|
||
* command table
|
||
|
||
cmdtable .DA create
|
||
.DA destroy
|
||
.DA rename
|
||
.DA setinfo
|
||
.DA getinfo
|
||
.DA online
|
||
.DA setprefx
|
||
.DA getprefx
|
||
.DA openf
|
||
.DA newline
|
||
.DA readf
|
||
.DA writef
|
||
.DA closef
|
||
.DA flushf
|
||
.DA setmark
|
||
.DA getmark
|
||
.DA seteof
|
||
.DA geteof
|
||
.DA setbuf
|
||
.DA getbuf
|
||
|
||
* corresponding command function bytes
|
||
|
||
disptch .HS A0A1A2A3
|
||
.HS 84050607
|
||
.HS 88494A4B
|
||
.HS 2C2D4E4F
|
||
.HS 50515253
|
||
|
||
dinctbl .HS 0100000200 table to increment directory usage/eof counts
|
||
pass .HS 75
|
||
xdosver .HS 00
|
||
compat .HS 00
|
||
.HS C3270D000000
|
||
rootstuf .HS 0F02000400000800
|
||
whichbit .HS 8040201008040201
|
||
ofcbtbl .HS 0C0D1819151617
|
||
inftabl .HS 1E101F2080939421
|
||
.HS 22232418191A1B
|
||
deathmsg .HS 20
|
||
.AS -"RESTART SYSTEM-$01"
|
||
.HS 20
|
||
|
||
*** work space ***
|
||
|
||
* note: this area is accessed by code that depends on the order of these
|
||
* variables in the file control block and temporary directory.
|
||
|
||
own_blk .HS 0000
|
||
own_ent .HS 00
|
||
own_len .HS 00
|
||
h_credt .HS 0000 directory creation date
|
||
.HS 0000 directory creation time
|
||
.HS 00 version under which this dir created
|
||
.HS 00 earliest version that it's compatible
|
||
h_attr .HS 00 attributes (protect bit, etc.)
|
||
h_entln .HS 00 length of each entry in this directory
|
||
h_maxent .HS 00 maximum number of entries per block
|
||
h_fcnt .HS 0000 current # of files in this directory
|
||
h_bmap .HS 0000 address of first allocation bitmap
|
||
h_tblk .HS 0000 total number of blocks on this unit
|
||
d_dev .HS 00 device number of this directory entry
|
||
d_head .HS 0000 address of <sub> directory header
|
||
d_entblk .HS 0000 address of block which contains entry
|
||
d_entnum .HS 00 entry number within block
|
||
d_stor .HS 0000000000000000 file name
|
||
.HS 0000000000000000
|
||
d_filid .HS 00 user's identification byte
|
||
d_frst .HS 0000 first block of file
|
||
d_usage .HS 0000 # of blocks allocated to this file
|
||
d_eof .HS 000000 current end of file marker
|
||
d_credt .HS 0000 file creation date
|
||
.HS 0000 file creation time
|
||
d_sosver .HS 00 sos version that created this file
|
||
d_comp .HS 00 backward version compatibility
|
||
d_attr .HS 00 attributes (protect, r/w, enable, etc.)
|
||
d_auxid .HS 0000 user auxilliary identification
|
||
d_moddt .HS 0000 file's last modification date
|
||
.HS 0000 file's last modification time
|
||
d_dhdr .HS 0000 file directory header block address
|
||
|
||
scrtch .HS 00000000 scratch area for allocation address conversion.
|
||
oldeof .HS 000000 temp used in r/w
|
||
oldmark .HS 000000
|
||
xvcbptr .HS 00 used in 'cmpvcb' as a temp
|
||
vcbptr .HS 00
|
||
fcbptr .HS 00
|
||
fcbflg .HS 00
|
||
reql .HS 00
|
||
reqh .HS 00
|
||
levels .HS 00
|
||
totent .HS 00
|
||
entcntl .HS 00
|
||
entcnth .HS 00
|
||
cntent .HS 00
|
||
nofree .HS 00
|
||
bmcnt .HS 00
|
||
saptr .HS 00
|
||
pathcnt .HS 00
|
||
p_dev .HS 00
|
||
p_blok .HS 0000
|
||
bmptr .HS 00
|
||
basval .HS 00
|
||
half .HS 00
|
||
|
||
* bitmap info tables
|
||
|
||
bmastat .HS 00
|
||
bmadev .HS 00
|
||
bmadadr .HS 0000
|
||
bmacmap .HS 00
|
||
tposll .HS 00
|
||
tposlh .HS 00
|
||
tposhi .HS 00
|
||
rwreql .HS 00
|
||
rwreqh .HS 00
|
||
nlchar .HS 00
|
||
nlmask .HS 00
|
||
ioaccess .HS 00 has a call been made to disk device handler ?
|
||
cmdtemp .HS 00
|
||
bkbitflg .HS 00 used to set or clear backup bit
|
||
duplflag .HS 00
|
||
vcbentry .HS 00
|
||
|
||
* xdos temporary variables
|
||
|
||
namcnt .HS 00
|
||
rnptr .HS 00
|
||
namptr .HS 00
|
||
vnptr .HS 00
|
||
prfxflg .HS 00
|
||
cferr .HS 00
|
||
|
||
* deallocation temporary variables
|
||
|
||
firstbl .HS 00
|
||
firstbh .HS 00
|
||
stortyp .HS 00
|
||
deblock .HS 0000
|
||
dtree .HS 00
|
||
dsap .HS 00
|
||
dseed .HS 0000
|
||
topdest .HS 00
|
||
dtmpx .HS 00
|
||
loklst .EQ * look list of recognized device numbers
|
||
dealbufl .HS 0000000000000000
|
||
dealbufh .HS 0000000000000000
|
||
cbytes .HS 0000
|
||
.HS 00 cbytes+2 must = 0
|
||
bufaddrl .HS 00
|
||
bufaddrh .HS 00
|
||
delflag .HS 00 used by 'detree' to know if called from delete (destroy).
|
||
|
||
* zero fill to page boundary - 3 ($FEFD). so that cortland flag stays within page boundary.
|
||
.LIST ON
|
||
XDOS.FREE .EQ $FEFD-* (ProDOS 2.0.3 = $0C)
|
||
.LIST OFF
|
||
.BS XDOS.FREE
|
||
.DA calldisp
|
||
cortflag .HS 00 cortland flag. 1 = Cortland system (must stay within page boundary)
|
||
*--------------------------------------
|
||
MAN
|
||
SAVE USR/SRC/PRODOS.FX/PRODOS.S.XDOS.F
|
||
LOAD USR/SRC/PRODOS.FX/PRODOS.S
|
||
ASM
|