mirror of
https://github.com/emmanuel-marty/lzsa.git
synced 2024-12-01 03:49:35 +00:00
282 lines
9.2 KiB
NASM
282 lines
9.2 KiB
NASM
; -----------------------------------------------------------------------------
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; Decompress raw LZSA1 block. Create one with lzsa -r <original_file> <compressed_file>
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;
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; in:
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; * LZSA_SRC_LO/LZSA_SRC_HI/LZSA_SRC_BANK contain the compressed raw block address
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; * LZSA_DST_LO/LZSA_DST_HI/LZSA_DST_BANK contain the destination buffer address
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;
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; out:
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; * LZSA_DST_LO/LZSA_DST_HI/LZSA_DST_BANK contain the last decompressed byte address, +1
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;
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; -----------------------------------------------------------------------------
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; Backward decompression is also supported, use lzsa -r -b <original_file> <compressed_file>
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; To use it, also define BACKWARD_DECOMPRESS=1 before including this code!
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;
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; in:
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; * LZSA_SRC_LO/LZSA_SRC_HI/LZSA_SRC_BANK must contain the address of the last byte of compressed data
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; * LZSA_DST_LO/LZSA_DST_HI/LZSA_DST_BANK must contain the address of the last byte of the destination buffer
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;
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; out:
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; * LZSA_DST_LO/LZSA_DST_HI/BANK contain the last decompressed byte address, -1
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;
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; -----------------------------------------------------------------------------
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;
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; Copyright (C) 2019-2020 Emmanuel Marty, Peter Ferrie
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;
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; This software is provided 'as-is', without any express or implied
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; warranty. In no event will the authors be held liable for any damages
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; arising from the use of this software.
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;
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; Permission is granted to anyone to use this software for any purpose,
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; including commercial applications, and to alter it and redistribute it
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; freely, subject to the following restrictions:
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;
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; 1. The origin of this software must not be misrepresented; you must not
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; claim that you wrote the original software. If you use this software
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; in a product, an acknowledgment in the product documentation would be
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; appreciated but is not required.
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; 2. Altered source versions must be plainly marked as such, and must not be
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; misrepresented as being the original software.
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; 3. This notice may not be removed or altered from any source distribution.
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; -----------------------------------------------------------------------------
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!cpu 65816
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DECOMPRESS_LZSA1
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SEP #$30
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!as
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!rs
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LDY #$00
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DECODE_TOKEN
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JSR GETSRC ; read token byte: O|LLL|MMMM
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PHA ; preserve token on stack
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AND #$70 ; isolate literals count
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BEQ NO_LITERALS ; skip if no literals to copy
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CMP #$70 ; LITERALS_RUN_LEN?
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BNE PREPARE_COPY_LITERALS ; if not, count is directly embedded in token
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JSR GETSRC ; get extra byte of variable literals count
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; the carry is always set by the CMP above
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; GETSRC doesn't change it
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SBC #$F9 ; (LITERALS_RUN_LEN)
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BCC PREPARE_COPY_LITERALS_DIRECT
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BEQ LARGE_VARLEN_LITERALS ; if adding up to zero, go grab 16-bit count
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JSR GETSRC ; get single extended byte of variable literals count
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INY ; add 256 to literals count
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BCS PREPARE_COPY_LITERALS_DIRECT ; (*like JMP PREPARE_COPY_LITERALS_DIRECT but shorter)
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LARGE_VARLEN_LITERALS ; handle 16 bits literals count
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; literals count = directly these 16 bits
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JSR GETLARGESRC ; grab low 8 bits in X, high 8 bits in A
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TAY ; put high 8 bits in Y
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TXA
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BCS PREPARE_COPY_LARGE_LITERALS ; (*like JMP PREPARE_COPY_LITERALS_DIRECT but shorter)
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PREPARE_COPY_LITERALS
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TAX
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LDA SHIFT_TABLE-1,X ; shift literals length into place
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; -1 because position 00 is reserved
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PREPARE_COPY_LITERALS_DIRECT
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TAX
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PREPARE_COPY_LARGE_LITERALS
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BEQ COPY_LITERALS
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INY
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COPY_LITERALS
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JSR GETPUT ; copy one byte of literals
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DEX
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BNE COPY_LITERALS
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DEY
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BNE COPY_LITERALS
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NO_LITERALS
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PLA ; retrieve token from stack
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PHA ; preserve token again
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BMI GET_LONG_OFFSET ; $80: 16 bit offset
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JSR GETSRC ; get 8 bit offset from stream in A
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TAX ; save for later
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LDA #$FF ; high 8 bits
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BNE GOT_OFFSET ; go prepare match
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; (*like JMP GOT_OFFSET but shorter)
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SHORT_VARLEN_MATCHLEN
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JSR GETSRC ; get single extended byte of variable match len
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INY ; add 256 to match length
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PREPARE_COPY_MATCH
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TAX
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PREPARE_COPY_MATCH_Y
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TXA
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BEQ COPY_MATCH_LOOP
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INY
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COPY_MATCH_LOOP
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LDA $AAAAAA ; get one byte of backreference
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JSR PUTDST ; copy to destination
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REP #$20
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!ifdef BACKWARD_DECOMPRESS {
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; Backward decompression -- put backreference bytes backward
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DEC COPY_MATCH_LOOP+1
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} else {
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; Forward decompression -- put backreference bytes forward
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INC COPY_MATCH_LOOP+1
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}
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SEP #$20
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DEX
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BNE COPY_MATCH_LOOP
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DEY
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BNE COPY_MATCH_LOOP
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BEQ DECODE_TOKEN ; (*like JMP DECODE_TOKEN but shorter)
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GET_LONG_OFFSET ; handle 16 bit offset:
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JSR GETLARGESRC ; grab low 8 bits in X, high 8 bits in A
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GOT_OFFSET
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!ifdef BACKWARD_DECOMPRESS {
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; Backward decompression - substract match offset
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STA OFFSHI ; store high 8 bits of offset
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STX OFFSLO
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SEC ; substract dest - match offset
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REP #$20
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!al
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LDA PUTDST+1
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OFFSLO = *+1
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OFFSHI = *+2
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SBC #$AAAA ; 16 bits
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STA COPY_MATCH_LOOP+1 ; store back reference address
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SEP #$20
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!as
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SEC
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} else {
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; Forward decompression - add match offset
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STA OFFSHI ; store high 8 bits of offset
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TXA
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CLC ; add dest + match offset
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ADC PUTDST+1 ; low 8 bits
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STA COPY_MATCH_LOOP+1 ; store back reference address
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OFFSHI = *+1
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LDA #$AA ; high 8 bits
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ADC PUTDST+2
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STA COPY_MATCH_LOOP+2 ; store high 8 bits of address
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}
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LDA PUTDST+3 ; bank
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STA COPY_MATCH_LOOP+3 ; store back reference address
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PLA ; retrieve token from stack again
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AND #$0F ; isolate match len (MMMM)
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ADC #$02 ; plus carry which is always set by the high ADC
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CMP #$12 ; MATCH_RUN_LEN?
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BCC PREPARE_COPY_MATCH ; if not, count is directly embedded in token
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JSR GETSRC ; get extra byte of variable match length
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; the carry is always set by the CMP above
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; GETSRC doesn't change it
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SBC #$EE ; add MATCH_RUN_LEN and MIN_MATCH_SIZE to match length
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BCC PREPARE_COPY_MATCH
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BNE SHORT_VARLEN_MATCHLEN
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; Handle 16 bits match length
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JSR GETLARGESRC ; grab low 8 bits in X, high 8 bits in A
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TAY ; put high 8 bits in Y
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; large match length with zero high byte?
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BNE PREPARE_COPY_MATCH_Y ; if not, continue
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DECOMPRESSION_DONE
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RTS
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SHIFT_TABLE
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!BYTE $00,$00,$00,$00,$00,$00,$00,$00,$00,$00,$00,$00,$00,$00,$00
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!BYTE $01,$01,$01,$01,$01,$01,$01,$01,$01,$01,$01,$01,$01,$01,$01,$01
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!BYTE $02,$02,$02,$02,$02,$02,$02,$02,$02,$02,$02,$02,$02,$02,$02,$02
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!BYTE $03,$03,$03,$03,$03,$03,$03,$03,$03,$03,$03,$03,$03,$03,$03,$03
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!BYTE $04,$04,$04,$04,$04,$04,$04,$04,$04,$04,$04,$04,$04,$04,$04,$04
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!BYTE $05,$05,$05,$05,$05,$05,$05,$05,$05,$05,$05,$05,$05,$05,$05,$05
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!BYTE $06,$06,$06,$06,$06,$06,$06,$06,$06,$06,$06,$06,$06,$06,$06,$06
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!BYTE $07,$07,$07,$07,$07,$07,$07,$07,$07,$07,$07,$07,$07,$07,$07,$07
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!ifdef BACKWARD_DECOMPRESS {
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; Backward decompression -- get and put bytes backward
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GETPUT
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JSR GETSRC
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PUTDST
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LZSA_DST_LO = *+1
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LZSA_DST_HI = *+2
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LZSA_DST_BANK = *+3
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STA $AAAAAA
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REP #$20
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DEC PUTDST+1
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SEP #$20
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RTS
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GETLARGESRC
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JSR GETSRC ; grab low 8 bits
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TAX ; move to X
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; fall through grab high 8 bits
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GETSRC
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LZSA_SRC_LO = *+1
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LZSA_SRC_HI = *+2
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LZSA_SRC_BANK = *+3
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LDA $AAAAAA
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REP #$20
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DEC GETSRC+1
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SEP #$20
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RTS
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} else {
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; Forward decompression -- get and put bytes forward
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GETPUT
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JSR GETSRC
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PUTDST
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LZSA_DST_LO = *+1
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LZSA_DST_HI = *+2
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LZSA_DST_BANK = *+3
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STA $AAAAAA
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REP #$20
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INC PUTDST+1
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SEP #$20
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RTS
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GETLARGESRC
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JSR GETSRC ; grab low 8 bits
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TAX ; move to X
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; fall through grab high 8 bits
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GETSRC
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LZSA_SRC_LO = *+1
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LZSA_SRC_HI = *+2
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LZSA_SRC_BANK = *+3
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LDA $AAAAAA
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REP #$20
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INC GETSRC+1
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SEP #$20
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RTS
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}
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