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https://github.com/hsoft/collapseos.git
synced 2024-11-27 12:48:07 +11:00
forth: add "UNWORD" flag
Also, reorder word fields so that the flag field is more easily accessible.
This commit is contained in:
parent
a8e573c84a
commit
ff281f69a8
@ -1,7 +1,7 @@
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; A dictionary entry has this structure:
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; - 7b name (zero-padded)
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; - 1b flags (bit 0: IMMEDIATE)
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; - 2b prev pointer
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; - 1b flags (bit 0: IMMEDIATE. bit 1: UNWORD)
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; - 2b code pointer
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; - Parameter field (PF)
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;
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@ -9,6 +9,11 @@
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; with IY pointing to the PF. They themselves are expected to end by jumping
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; to the address at the top of the Return Stack. They will usually do so with
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; "jp exit".
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;
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; That's for "regular" words (words that are part of the dict chain). There are
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; also "special words", for example NUMBER, LIT, BRANCH, that have a slightly
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; different structure. They're also a pointer to an executable, but as for the
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; other fields, the only one they have is the "flags" field.
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; Execute a word containing native code at its PF address (PFA)
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nativeWord:
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@ -65,6 +70,7 @@ branchWord:
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pop de
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jp exit
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.db 0b10 ; Flags
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BRANCH:
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.dw branchWord
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@ -82,6 +88,7 @@ cbranchWord:
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ld (ix+1), h
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jp exit
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.db 0b10 ; Flags
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CBRANCH:
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.dw cbranchWord
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@ -102,6 +109,8 @@ numberWord:
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ld (ix+1), h
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push de
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jp exit
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.db 0b10 ; Flags
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NUMBER:
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.dw numberWord
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@ -119,6 +128,8 @@ litWord:
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jp abort
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.msg:
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.db "undefined word", 0
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.db 0b10 ; Flags
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LIT:
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.dw litWord
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@ -143,16 +154,18 @@ exit:
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; ( R:I -- )
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.db "QUIT"
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.fill 4
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.fill 3
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.dw EXIT
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.db 0
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QUIT:
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.dw nativeWord
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quit:
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jp forthRdLine
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.db "ABORT"
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.fill 3
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.fill 2
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.dw QUIT
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.db 0
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ABORT:
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.dw nativeWord
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abort:
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@ -163,8 +176,9 @@ ABORTREF:
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.dw ABORT
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.db "BYE"
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.fill 5
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.fill 4
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.dw ABORT
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.db 0
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BYE:
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.dw nativeWord
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; Goodbye Forth! Before we go, let's restore the stack
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@ -177,8 +191,9 @@ BYE:
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; ( c -- )
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.db "EMIT"
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.fill 4
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.fill 3
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.dw BYE
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.db 0
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EMIT:
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.dw nativeWord
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pop hl
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@ -188,8 +203,9 @@ EMIT:
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; ( c port -- )
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.db "PC!"
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.fill 5
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.fill 4
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.dw EMIT
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.db 0
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PSTORE:
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.dw nativeWord
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pop bc
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@ -199,8 +215,9 @@ PSTORE:
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; ( port -- c )
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.db "PC@"
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.fill 5
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.fill 4
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.dw PSTORE
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.db 0
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PFETCH:
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.dw nativeWord
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pop bc
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@ -211,8 +228,8 @@ PFETCH:
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; ( addr -- )
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.db "EXECUTE"
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.db 0
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.dw PFETCH
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.db 0
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EXECUTE:
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.dw nativeWord
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pop iy ; is a wordref
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@ -226,8 +243,9 @@ executeCodeLink:
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jp (hl) ; go!
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.db ":"
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.fill 7
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.fill 6
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.dw EXECUTE
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.db 0
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DEFINE:
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.dw nativeWord
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call entryhead
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@ -273,8 +291,9 @@ DEFINE:
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.db "DOES>"
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.fill 3
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.fill 2
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.dw DEFINE
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.db 0
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DOES:
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.dw nativeWord
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; We run this when we're in an entry creation context. Many things we
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@ -296,21 +315,21 @@ DOES:
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.db "IMMEDIA"
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.db 0
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.dw DOES
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.db 0
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IMMEDIATE:
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.dw nativeWord
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ld hl, (CURRENT)
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dec hl
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dec hl
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dec hl
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inc (hl)
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set FLAG_IMMED, (hl)
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jp exit
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; ( n -- )
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.db "LITERAL"
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.db 1 ; IMMEDIATE
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.dw IMMEDIATE
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.db 1 ; IMMEDIATE
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LITERAL:
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.dw nativeWord
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ld hl, (CMPDST)
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@ -323,8 +342,9 @@ LITERAL:
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; ( -- c )
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.db "KEY"
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.fill 5
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.fill 4
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.dw LITERAL
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.db 0
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KEY:
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.dw nativeWord
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call stdioGetC
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@ -334,8 +354,9 @@ KEY:
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jp exit
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.db "CREATE"
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.fill 2
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.fill 1
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.dw KEY
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.db 0
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CREATE:
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.dw nativeWord
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call entryhead
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@ -349,23 +370,25 @@ CREATE:
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jp exit
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.db "HERE"
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.fill 4
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.fill 3
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.dw CREATE
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.db 0
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HERE_: ; Caution: conflicts with actual variable name
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.dw sysvarWord
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.dw HERE
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.db "CURRENT"
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.db 0
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.dw HERE_
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.db 0
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CURRENT_:
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.dw sysvarWord
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.dw CURRENT
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; ( n -- )
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.db "."
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.fill 7
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.fill 6
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.dw CURRENT_
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.db 0
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DOT:
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.dw nativeWord
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pop de
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@ -379,8 +402,9 @@ DOT:
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; ( n a -- )
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.db "!"
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.fill 7
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.fill 6
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.dw DOT
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.db 0
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STORE:
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.dw nativeWord
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pop iy
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@ -391,8 +415,9 @@ STORE:
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; ( n a -- )
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.db "C!"
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.fill 6
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.fill 5
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.dw STORE
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.db 0
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CSTORE:
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.dw nativeWord
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pop hl
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@ -402,8 +427,9 @@ CSTORE:
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; ( a -- n )
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.db "@"
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.fill 7
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.fill 6
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.dw CSTORE
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.db 0
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FETCH:
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.dw nativeWord
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pop hl
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@ -413,8 +439,9 @@ FETCH:
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; ( a -- c )
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.db "C@"
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.fill 6
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.fill 5
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.dw FETCH
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.db 0
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CFETCH:
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.dw nativeWord
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pop hl
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@ -425,8 +452,9 @@ CFETCH:
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; ( -- a )
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.db "LIT@"
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.fill 4
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.fill 3
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.dw CFETCH
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.db 0
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LITFETCH:
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.dw nativeWord
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call readLITTOS
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@ -435,8 +463,9 @@ LITFETCH:
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; ( a b -- b a )
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.db "SWAP"
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.fill 4
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.fill 3
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.dw LITFETCH
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.db 0
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SWAP:
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.dw nativeWord
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pop hl
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@ -446,8 +475,9 @@ SWAP:
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; ( a b c d -- c d a b )
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.db "2SWAP"
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.fill 3
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.fill 2
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.dw SWAP
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.db 0
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SWAP2:
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.dw nativeWord
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pop de ; D
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@ -462,8 +492,9 @@ SWAP2:
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; ( a -- a a )
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.db "DUP"
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.fill 5
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.fill 4
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.dw SWAP2
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.db 0
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DUP:
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.dw nativeWord
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pop hl
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@ -473,8 +504,9 @@ DUP:
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; ( a b -- a b a b )
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.db "2DUP"
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.fill 4
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.fill 3
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.dw DUP
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.db 0
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DUP2:
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.dw nativeWord
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pop hl ; B
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@ -487,8 +519,9 @@ DUP2:
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; ( a b -- a b a )
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.db "OVER"
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.fill 4
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.fill 3
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.dw DUP2
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.db 0
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OVER:
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.dw nativeWord
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pop hl ; B
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@ -500,8 +533,9 @@ OVER:
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; ( a b c d -- a b c d a b )
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.db "2OVER"
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.fill 3
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.fill 2
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.dw OVER
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.db 0
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OVER2:
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.dw nativeWord
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pop hl ; D
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@ -518,8 +552,9 @@ OVER2:
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; ( a b -- c ) A + B
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.db "+"
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.fill 7
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.fill 6
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.dw OVER2
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.db 0
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PLUS:
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.dw nativeWord
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pop hl
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@ -530,8 +565,9 @@ PLUS:
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; ( a b -- c ) A - B
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.db "-"
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.fill 7
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.fill 6
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.dw PLUS
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.db 0
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MINUS:
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.dw nativeWord
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pop de ; B
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@ -543,8 +579,9 @@ MINUS:
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; ( a b -- c ) A * B
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.db "*"
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.fill 7
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.fill 6
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.dw MINUS
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.db 0
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MULT:
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.dw nativeWord
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pop de
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@ -555,8 +592,9 @@ MULT:
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; ( a b -- c ) A / B
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.db "/"
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.fill 7
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.fill 6
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.dw MULT
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.db 0
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DIV:
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.dw nativeWord
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pop de
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@ -567,8 +605,9 @@ DIV:
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; ( a1 a2 -- b )
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.db "SCMP"
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.fill 4
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.fill 3
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.dw DIV
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.db 0
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SCMP:
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.dw nativeWord
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pop de
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@ -580,8 +619,9 @@ SCMP:
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; ( n1 n2 -- f )
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.db "CMP"
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.fill 5
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.fill 4
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.dw SCMP
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.db 0
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CMP:
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.dw nativeWord
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pop hl
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@ -594,8 +634,8 @@ CMP:
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.db "IF"
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.fill 5
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.db 1 ; IMMEDIATE
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.dw CMP
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.db 1 ; IMMEDIATE
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IF:
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.dw nativeWord
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; Spit a conditional branching atom, followed by an empty 1b cell. Then,
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@ -611,8 +651,8 @@ IF:
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.db "ELSE"
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.fill 3
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.db 1 ; IMMEDIATE
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.dw IF
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.db 1 ; IMMEDIATE
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ELSE:
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.dw nativeWord
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; First, let's set IF's branching cell.
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@ -637,8 +677,8 @@ ELSE:
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.db "THEN"
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.fill 3
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.db 1 ; IMMEDIATE
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.dw ELSE
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.db 1 ; IMMEDIATE
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THEN:
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.dw nativeWord
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; See comments in IF and ELSE
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@ -652,8 +692,8 @@ THEN:
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jp exit
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.db "RECURSE"
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.db 0
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.dw THEN
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.db 0
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RECURSE:
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.dw nativeWord
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call popRS
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@ -8,6 +8,13 @@
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; Offset of the code link relative to the beginning of the word
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.equ CODELINK_OFFSET NAMELEN+3
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; Flags for the "flag field" of the word structure
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; IMMEDIATE word
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.equ FLAG_IMMED 0
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; This wordref is not a regular word (it's not preceeded by a name). It's one
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; of the NUMBER, LIT, BRANCH etc. entities.
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.equ FLAG_UNWORD 1
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; *** Variables ***
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.equ INITIAL_SP FORTH_RAMSTART
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.equ CURRENT @+2
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@ -87,13 +87,6 @@ HLPointsEXIT:
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pop de
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ret
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HLPointsQUIT:
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push de
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ld de, QUIT
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call HLPointsDE
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pop de
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ret
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; Skip the compword where HL is currently pointing. If it's a regular word,
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; it's easy: we inc by 2. If it's a NUMBER, we inc by 4. If it's a LIT, we skip
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; to after null-termination.
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@ -176,16 +169,9 @@ readLIT:
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ex de, hl
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ret
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.notLIT:
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; Alright, not a literal, but is it a word? If it's not a number, then
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; it's a word.
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call HLPointsNUMBER
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jr z, .notWord
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call HLPointsBRANCH
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jr z, .notWord
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call HLPointsEXIT
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jr z, .notWord
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call HLPointsQUIT
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jr z, .notWord
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; Alright, not a literal, but is it a word?
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call HLPointsUNWORD
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jr nz, .notWord
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; Not a number, then it's a word. Copy word to pad and point to it.
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push hl ; --> lvl 1. we need it to set DE later
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call intoHL
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@ -233,18 +219,6 @@ readLITTOS:
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pop de
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ret
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; For DE being a wordref, move DE to the previous wordref.
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; Z is set if DE point to 0 (no entry). NZ if not.
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prev:
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dec de \ dec de ; prev field
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call intoDE
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; DE points to prev. Is it zero?
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xor a
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or d
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or e
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; Z will be set if DE is zero
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ret
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; Find the entry corresponding to word where (HL) points to and sets DE to
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; point to that entry.
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; Z if found, NZ if not.
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@ -264,7 +238,7 @@ find:
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call strncmp
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pop de ; <-- lvl 1, return to wordref
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jr z, .end ; found
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call prev
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call .prev
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jr nz, .inner
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; Z set? end of dict unset Z
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inc a
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@ -273,6 +247,18 @@ find:
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pop hl
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ret
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; For DE being a wordref, move DE to the previous wordref.
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; Z is set if DE point to 0 (no entry). NZ if not.
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.prev:
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dec de \ dec de \ dec de ; prev field
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call intoDE
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; DE points to prev. Is it zero?
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xor a
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or d
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or e
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; Z will be set if DE is zero
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ret
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; Write compiled data from HL into IY, advancing IY at the same time.
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wrCompHL:
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ld (iy), l
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@ -291,13 +277,11 @@ entryhead:
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ld de, (CURRENT)
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ld a, NAMELEN
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call addHL
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xor a ; IMMED
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call DEinHL
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; Set word flags: not IMMED, not UNWORD, so it's 0
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xor a
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ld (hl), a
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inc hl
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ld (hl), e
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inc hl
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ld (hl), d
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inc hl
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ld (CURRENT), hl
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ld (HERE), hl
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xor a ; set Z
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@ -306,16 +290,10 @@ entryhead:
|
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; Sets Z if wordref at HL is of the IMMEDIATE type
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HLisIMMED:
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||||
dec hl
|
||||
dec hl
|
||||
dec hl
|
||||
bit FLAG_IMMED, (hl)
|
||||
inc hl
|
||||
; We need an invert flag. We want to Z to be set when flag is non-zero.
|
||||
ld a, 1
|
||||
and (hl)
|
||||
dec a ; if A was 1, Z is set. Otherwise, Z is unset
|
||||
inc hl
|
||||
inc hl
|
||||
inc hl
|
||||
ret
|
||||
jp toggleZ
|
||||
|
||||
; Sets Z if wordref at (HL) is of the IMMEDIATE type
|
||||
HLPointsIMMED:
|
||||
@ -325,6 +303,22 @@ HLPointsIMMED:
|
||||
pop hl
|
||||
ret
|
||||
|
||||
; Sets Z if wordref at HL is of the UNWORD type
|
||||
HLisUNWORD:
|
||||
dec hl
|
||||
bit FLAG_UNWORD, (hl)
|
||||
inc hl
|
||||
; We need an invert flag. We want to Z to be set when flag is non-zero.
|
||||
jp toggleZ
|
||||
|
||||
; Sets Z if wordref at (HL) is of the IMMEDIATE type
|
||||
HLPointsUNWORD:
|
||||
push hl
|
||||
call intoHL
|
||||
call HLisUNWORD
|
||||
pop hl
|
||||
ret
|
||||
|
||||
; Checks flags Z and C and sets BC to 0 if Z, 1 if C and -1 otherwise
|
||||
flagsToBC:
|
||||
ld bc, 0
|
||||
|
@ -105,3 +105,10 @@ strlen:
|
||||
dec a
|
||||
pop bc
|
||||
ret
|
||||
|
||||
; make Z the opposite of what it is now
|
||||
toggleZ:
|
||||
jp z, unsetZ
|
||||
cp a
|
||||
ret
|
||||
|
||||
|
@ -24,12 +24,6 @@ subDEFromHL:
|
||||
pop af
|
||||
ret
|
||||
|
||||
; make Z the opposite of what it is now
|
||||
toggleZ:
|
||||
jp z, unsetZ
|
||||
cp a
|
||||
ret
|
||||
|
||||
; Compares strings pointed to by HL and DE up to A count of characters in a
|
||||
; case-insensitive manner.
|
||||
; If equal, Z is set. If not equal, Z is reset.
|
||||
|
Loading…
Reference in New Issue
Block a user