634 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Factor
		
	
	
			
		
		
	
	
			634 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			Factor
		
	
	
| ! Copyright (C) 2007, 2008 Chris Double.
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| ! See http://factorcode.org/license.txt for BSD license.
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| USING: kernel sequences strings fry namespaces make math assocs
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| io vectors arrays math.parser math.order combinators classes
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| sets unicode.categories compiler.units parser effects.parser
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| words quotations memoize accessors locals splitting
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| combinators.short-circuit generalizations ;
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| FROM: namespaces => set ;
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| IN: peg
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| 
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| TUPLE: parse-result remaining ast ;
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| TUPLE: parse-error position messages ; 
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| TUPLE: parser peg compiled id ;
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| 
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| M: parser equal?    { [ [ class-of ] bi@ = ] [ [ id>> ] bi@ = ] } 2&& ;
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| M: parser hashcode* id>> hashcode* ;
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| 
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| C: <parse-result> parse-result
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| C: <parse-error>  parse-error
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| 
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| SYMBOL: error-stack
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| 
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| : (merge-errors) ( a b -- c )
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|   {
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|     { [ over position>> not ] [ nip ] }
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|     { [ dup  position>> not ] [ drop ] }
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|     [ 2dup [ position>> ] compare {
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|         { +lt+ [ nip ] }
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|         { +gt+ [ drop ] }
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|         { +eq+ [ messages>> over messages>> union [ position>> ] dip <parse-error> ] }
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|       } case 
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|     ]
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|   } cond ;
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| 
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| : merge-errors ( -- )
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|   error-stack get dup length 1 >  [
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|     dup pop over pop swap (merge-errors) swap push
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|   ] [
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|     drop
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|   ] if ;
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| 
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| : add-error ( remaining message -- )
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|   <parse-error> error-stack get push ;
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|   
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| SYMBOL: ignore 
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| 
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| : packrat ( id -- cache )
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|   #! The packrat cache is a mapping of parser-id->cache.
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|   #! For each parser it maps to a cache holding a mapping
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|   #! of position->result. The packrat cache therefore keeps
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|   #! track of all parses that have occurred at each position
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|   #! of the input string and the results obtained from that
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|   #! parser.
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|   \ packrat get [ drop H{ } clone ] cache ;
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| 
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| SYMBOL: pos
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| SYMBOL: input
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| SYMBOL: fail
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| SYMBOL: lrstack
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| 
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| : heads ( -- cache )
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|   #! A mapping from position->peg-head.	It maps a
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|   #! position in the input string being parsed to 
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|   #! the head of the left recursion which is currently
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|   #! being grown. It is 'f' at any position where
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|   #! left recursion growth is not underway.
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|   \ heads get ;
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| 
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| : failed? ( obj -- ? )
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|   fail = ;
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| 
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| : peg-cache ( -- cache )
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|   #! Holds a hashtable mapping a peg tuple to
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|   #! the parser tuple for that peg. The parser tuple
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|   #! holds a unique id and the compiled form of that peg.
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|   \ peg-cache get-global [
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|     H{ } clone dup \ peg-cache set-global
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|   ] unless* ;
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| 
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| : reset-pegs ( -- )
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|   H{ } clone \ peg-cache set-global ;
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| 
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| reset-pegs 
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| 
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| #! An entry in the table of memoized parse results
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| #! ast = an AST produced from the parse
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| #!       or the symbol 'fail'
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| #!       or a left-recursion object
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| #! pos = the position in the input string of this entry
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| TUPLE: memo-entry ans pos ;
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| 
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| TUPLE: left-recursion seed rule-id head next ; 
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| TUPLE: peg-head rule-id involved-set eval-set ;
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| 
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| : rule-id ( word -- id ) 
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|   #! A rule is the parser compiled down to a word. It has
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|   #! a "peg-id" property containing the id of the original parser.
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|   "peg-id" word-prop ;
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| 
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| : input-slice ( -- slice )
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|   #! Return a slice of the input from the current parse position
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|   input get pos get tail-slice ;
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| 
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| : input-from ( input -- n )
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|   #! Return the index from the original string that the
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|   #! input slice is based on.
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|   dup slice? [ from>> ] [ drop 0 ] if ;
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| 
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| : process-rule-result ( p result -- result )
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|   [
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|     nip [ ast>> ] [ remaining>> ] bi input-from pos set    
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|   ] [ 
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|     pos set fail
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|   ] if* ; 
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| 
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| : eval-rule ( rule -- ast )
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|   #! Evaluate a rule, return an ast resulting from it.
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|   #! Return fail if the rule failed. The rule has
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|   #! stack effect ( -- parse-result )
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|   pos get swap execute( -- parse-result ) process-rule-result ; inline
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| 
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| : memo ( pos id -- memo-entry )
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|   #! Return the result from the memo cache. 
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|   packrat at 
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| !  "  memo result " write dup . 
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|   ;
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| 
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| : set-memo ( memo-entry pos id -- )
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|   #! Store an entry in the cache
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|   packrat set-at ;
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| 
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| : update-m ( ast m -- )
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|   swap >>ans pos get >>pos drop ;
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| 
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| : stop-growth? ( ast m -- ? )
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|   [ failed? pos get ] dip 
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|   pos>> <= or ;
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| 
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| : setup-growth ( h p -- )
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|   pos set dup involved-set>> clone >>eval-set drop ;
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| 
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| : (grow-lr) ( h p r: ( -- result ) m -- )
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|   [ [ setup-growth ] 2keep ] 2dip
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|   [ dup eval-rule ] dip swap
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|   dup pick stop-growth? [
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|     5 ndrop
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|   ] [
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|     over update-m
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|     (grow-lr)
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|   ] if ; inline recursive
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|  
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| : grow-lr ( h p r m -- ast )
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|   [ [ heads set-at ] 2keep ] 2dip
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|   pick over [ (grow-lr) ] 2dip
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|   swap heads delete-at
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|   dup pos>> pos set ans>>
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|   ; inline
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| 
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| :: (setup-lr) ( l s -- )
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|   s [ 
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|     s left-recursion? [ s throw ] unless
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|     s head>> l head>> eq? [
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|       l head>> s head<<
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|       l head>> [ s rule-id>> suffix ] change-involved-set drop
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|       l s next>> (setup-lr)
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|     ] unless 
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|   ] when ;
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| 
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| :: setup-lr ( r l -- )
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|   l head>> [
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|     r rule-id V{ } clone V{ } clone peg-head boa l head<<
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|   ] unless
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|   l lrstack get (setup-lr) ;
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| 
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| :: lr-answer ( r p m -- ast )
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|     m ans>> head>> :> h
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|     h rule-id>> r rule-id eq? [
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|       m ans>> seed>> m ans<<
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|       m ans>> failed? [
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|         fail
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|       ] [
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|         h p r m grow-lr
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|       ] if
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|     ] [
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|       m ans>> seed>>
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|     ] if ; inline
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| 
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| :: recall ( r p -- memo-entry )
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|     p r rule-id memo :> m
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|     p heads at :> h
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|     h [
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|       m r rule-id h involved-set>> h rule-id>> suffix member? not and [
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|         fail p memo-entry boa
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|       ] [
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|         r rule-id h eval-set>> member? [
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|           h [ r rule-id swap remove ] change-eval-set drop
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|           r eval-rule
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|           m update-m
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|           m
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|         ] [ 
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|           m
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|         ] if
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|       ] if
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|     ] [
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|       m
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|     ] if ; inline
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| 
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| :: apply-non-memo-rule ( r p -- ast )
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|     fail r rule-id f lrstack get left-recursion boa :> lr
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|     lr lrstack set lr p memo-entry boa dup p r rule-id set-memo :> m
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|     r eval-rule :> ans
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|     lrstack get next>> lrstack set
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|     pos get m pos<<
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|     lr head>> [
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|       m ans>> left-recursion? [
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|         ans lr seed<<
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|         r p m lr-answer
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|      ] [ ans ] if 
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|     ] [
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|       ans m ans<<
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|       ans
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|     ] if ; inline
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| 
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| : apply-memo-rule ( r m -- ast )
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|   [ ans>> ] [ pos>> ] bi pos set
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|   dup left-recursion? [ 
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|     [ setup-lr ] keep seed>>
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|   ] [
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|     nip
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|   ] if ; 
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| 
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| : apply-rule ( r p -- ast )
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| !   2dup [ rule-id ] dip 2array "apply-rule: " write .
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|    2dup recall [
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| !     "  memoed" print
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|      nip apply-memo-rule
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|    ] [
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| !     "  not memoed" print
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|      apply-non-memo-rule
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|    ] if* ; inline
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| 
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| : with-packrat ( input quot -- result )
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|   #! Run the quotation with a packrat cache active.
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|   [ 
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|     swap input set
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|     0 pos set
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|     f lrstack set
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|     V{ } clone error-stack set
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|     H{ } clone \ heads set
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|     H{ } clone \ packrat set
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|     call
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|   ] with-scope ; inline
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| 
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| 
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| GENERIC: (compile) ( peg -- quot )
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| 
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| : process-parser-result ( result -- result )
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|   dup failed? [ 
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|     drop f 
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|   ] [
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|     input-slice swap <parse-result>
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|   ] if ;
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|     
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| : execute-parser ( word -- result )
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|   pos get apply-rule process-parser-result ;
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| 
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| : preset-parser-word ( parser -- parser word )
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|   gensym [ >>compiled ] keep ;
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| 
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| : define-parser-word ( parser word -- )
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|   #! Return the body of the word that is the compiled version
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|   #! of the parser.
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|   2dup swap peg>> (compile) ( -- result ) define-declared
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|   swap id>> "peg-id" set-word-prop ;
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| 
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| : compile-parser ( parser -- word )
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|   #! Look to see if the given parser has been compiled.
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|   #! If not, compile it to a temporary word, cache it,
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|   #! and return it. Otherwise return the existing one.
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|   #! Circular parsers are supported by getting the word
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|   #! name and storing it in the cache, before compiling, 
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|   #! so it is picked up when re-entered.
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|   dup compiled>> [
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|     nip
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|   ] [
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|     preset-parser-word [ define-parser-word ] keep
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|   ] if* ;
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| 
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| : compile-parser-quot ( parser -- quot )
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|   compile-parser [ execute-parser ] curry ;
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| 
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| SYMBOL: delayed
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| 
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| : fixup-delayed ( -- )
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|   #! Work through all delayed parsers and recompile their
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|   #! words to have the correct bodies.
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|   delayed get [
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|     call( -- parser ) compile-parser-quot ( -- result ) define-declared
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|   ] assoc-each ;
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| 
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| : compile ( parser -- word )
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|   [
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|     H{ } clone delayed [ 
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|       compile-parser-quot ( -- result ) define-temp fixup-delayed 
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|     ] with-variable
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|   ] with-compilation-unit ;
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| 
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| : compiled-parse ( state word -- result )
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|   swap [ execute( -- result ) [ error-stack get first throw ] unless* ] with-packrat ;
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| 
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| : (parse) ( input parser -- result )
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|   dup word? [ compile ] unless compiled-parse ;
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| 
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| : parse ( input parser -- ast )
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|   (parse) ast>> ;
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| 
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| <PRIVATE
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| 
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| SYMBOL: id 
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| 
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| : next-id ( -- n )
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|   #! Return the next unique id for a parser
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|   id get-global [
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|     dup 1 + id set-global
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|   ] [
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|     1 id set-global 0
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|   ] if* ;
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| 
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| : wrap-peg ( peg -- parser )
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|   #! Wrap a parser tuple around the peg object.
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|   #! Look for an existing parser tuple for that
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|   #! peg object.
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|   peg-cache [
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|     f next-id parser boa 
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|   ] cache ;
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| 
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| TUPLE: token-parser symbol ;
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| 
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| : parse-token ( input string -- result )
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|   #! Parse the string, returning a parse result
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|   [ ?head-slice ] keep swap [
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|     <parse-result> f f add-error
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|   ] [
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|     [ drop pos get "token '" ] dip append "'" append 1vector add-error f
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|   ] if ;
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| 
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| M: token-parser (compile) ( peg -- quot )
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|   symbol>> '[ input-slice _ parse-token ] ;
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|    
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| TUPLE: satisfy-parser quot ;
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| 
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| : parse-satisfy ( input quot -- result )
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|   swap dup empty? [
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|     2drop f 
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|   ] [
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|     unclip-slice rot dupd call [
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|       <parse-result>
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|     ] [  
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|       2drop f
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|     ] if
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|   ] if ; inline
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| 
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| 
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| M: satisfy-parser (compile) ( peg -- quot )
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|   quot>> '[ input-slice _ parse-satisfy ] ;
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| 
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| TUPLE: range-parser min max ;
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| 
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| : parse-range ( input min max -- result )
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|   pick empty? [ 
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|     3drop f 
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|   ] [
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|     [ dup first ] 2dip between? [
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|       unclip-slice <parse-result>
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|     ] [ 
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|       drop f
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|     ] if
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|   ] if ;
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| 
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| M: range-parser (compile) ( peg -- quot )
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|   [ min>> ] [ max>> ] bi '[ input-slice _ _ parse-range ] ;
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| 
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| TUPLE: seq-parser parsers ;
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| 
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| : ignore? ( ast -- bool )
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|   ignore = ;
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| 
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| : calc-seq-result ( prev-result current-result -- next-result )
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|   [
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|     [ remaining>> swap remaining<< ] 2keep
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|     ast>> dup ignore? [  
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|       drop
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|     ] [
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|       swap [ ast>> push ] keep
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|     ] if
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|   ] [
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|     drop f
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|   ] if* ;
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| 
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| : parse-seq-element ( result quot -- result )
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|   over [
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|     call calc-seq-result
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|   ] [
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|     2drop f
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|   ] if ; inline
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| 
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| M: seq-parser (compile) ( peg -- quot )
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|   [
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|     [ input-slice V{ } clone <parse-result> ] %
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|     [
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|       parsers>> unclip compile-parser-quot [ parse-seq-element ] curry ,
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|       [ compile-parser-quot [ merge-errors ] compose [ parse-seq-element ] curry , ] each 
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|     ] { } make , \ 1&& , 
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|   ] [ ] make ;
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| 
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| TUPLE: choice-parser parsers ;
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| 
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| M: choice-parser (compile) ( peg -- quot )
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|   [ 
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|     [
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|       parsers>> [ compile-parser-quot ] map 
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|       unclip , [ [ merge-errors ] compose , ] each
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|     ] { } make , \ 0|| ,
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|   ] [ ] make ;
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| 
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| TUPLE: repeat0-parser p1 ;
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| 
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| : (repeat) ( quot: ( -- result ) result -- result )
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|   over call [
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|     [ remaining>> swap remaining<< ] 2keep 
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|     ast>> swap [ ast>> push ] keep
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|     (repeat) 
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|   ] [
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|     nip
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|   ] if* ; inline recursive
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| 
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| M: repeat0-parser (compile) ( peg -- quot )
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|   p1>> compile-parser-quot '[ 
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|     input-slice V{ } clone <parse-result> _ swap (repeat) 
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|   ] ; 
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| 
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| TUPLE: repeat1-parser p1 ;
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| 
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| : repeat1-empty-check ( result -- result )
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|   [
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|     dup ast>> empty? [ drop f ] when
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|   ] [
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|     f
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|   ] if* ;
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| 
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| M: repeat1-parser (compile) ( peg -- quot )
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|   p1>> compile-parser-quot '[ 
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|     input-slice V{ } clone <parse-result> _ swap (repeat) repeat1-empty-check  
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|   ] ; 
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| 
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| TUPLE: optional-parser p1 ;
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| 
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| : check-optional ( result -- result )
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|   [ input-slice f <parse-result> ] unless* ;
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| 
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| M: optional-parser (compile) ( peg -- quot )
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|   p1>> compile-parser-quot '[ @ check-optional ] ;
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| 
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| TUPLE: semantic-parser p1 quot ;
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| 
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| : check-semantic ( result quot -- result )
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|   over [
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|     over ast>> swap call [ drop f ] unless
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|   ] [
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|     drop
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|   ] if ; inline
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| 
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| M: semantic-parser (compile) ( peg -- quot )
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|   [ p1>> compile-parser-quot ] [ quot>> ] bi  
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|   '[ @ _ check-semantic ] ;
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| 
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| TUPLE: ensure-parser p1 ;
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| 
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| : check-ensure ( old-input result -- result )
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|   [ ignore <parse-result> ] [ drop f ] if ;
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| 
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| M: ensure-parser (compile) ( peg -- quot )
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|   p1>> compile-parser-quot '[ input-slice @ check-ensure ] ;
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| 
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| TUPLE: ensure-not-parser p1 ;
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| 
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| : check-ensure-not ( old-input result -- result )
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|   [ drop f ] [ ignore <parse-result> ] if ;
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| 
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| M: ensure-not-parser (compile) ( peg -- quot )
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|   p1>> compile-parser-quot '[ input-slice @ check-ensure-not ] ;
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| 
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| TUPLE: action-parser p1 quot ;
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| 
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| : check-action ( result quot -- result )
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|   over [
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|     over ast>> swap call( ast -- ast ) >>ast
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|   ] [
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|     drop
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|   ] if ;
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| 
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| M: action-parser (compile) ( peg -- quot )
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|   [ p1>> compile-parser-quot ] [ quot>> ] bi '[ @ _ check-action ] ;
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| 
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| TUPLE: sp-parser p1 ;
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| 
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| M: sp-parser (compile) ( peg -- quot )
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|   p1>> compile-parser-quot '[ 
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|     input-slice [ blank? ] trim-head-slice input-from pos set @ 
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|   ] ;
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| 
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| TUPLE: delay-parser quot ;
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| 
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| M: delay-parser (compile) ( peg -- quot )
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|   #! For efficiency we memoize the quotation.
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|   #! This way it is run only once and the 
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|   #! parser constructed once at run time.
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|   quot>> gensym [ delayed get set-at ] keep 1quotation ; 
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| 
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| TUPLE: box-parser quot ;
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| 
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| M: box-parser (compile) ( peg -- quot )
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|   #! Calls the quotation at compile time
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|   #! to produce the parser to be compiled.
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|   #! This differs from 'delay' which calls
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|   #! it at run time.
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|   quot>> call( -- parser ) compile-parser-quot ;
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| 
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| PRIVATE>
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| 
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| : token ( string -- parser )
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|   token-parser boa wrap-peg ;      
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| 
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| : satisfy ( quot -- parser )
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|   satisfy-parser boa wrap-peg ;
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| 
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| : range ( min max -- parser )
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|   range-parser boa wrap-peg ;
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| 
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| : seq ( seq -- parser )
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|   seq-parser boa wrap-peg ;
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| 
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| : 2seq ( parser1 parser2 -- parser )
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|   2array seq ;
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| 
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| : 3seq ( parser1 parser2 parser3 -- parser )
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|   3array seq ;
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| 
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| : 4seq ( parser1 parser2 parser3 parser4 -- parser )
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|   4array seq ;
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| 
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| : seq* ( quot -- paser )
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|   { } make seq ; inline 
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| 
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| : choice ( seq -- parser )
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|   choice-parser boa wrap-peg ;
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| 
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| : 2choice ( parser1 parser2 -- parser )
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|   2array choice ;
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| 
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| : 3choice ( parser1 parser2 parser3 -- parser )
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|   3array choice ;
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| 
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| : 4choice ( parser1 parser2 parser3 parser4 -- parser )
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|   4array choice ;
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| 
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| : choice* ( quot -- paser )
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|   { } make choice ; inline 
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| 
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| : repeat0 ( parser -- parser )
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|   repeat0-parser boa wrap-peg ;
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| 
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| : repeat1 ( parser -- parser )
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|   repeat1-parser boa wrap-peg ;
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| 
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| : optional ( parser -- parser )
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|   optional-parser boa wrap-peg ;
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| 
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| : semantic ( parser quot -- parser )
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|   semantic-parser boa wrap-peg ;
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| 
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| : ensure ( parser -- parser )
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|   ensure-parser boa wrap-peg ;
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| 
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| : ensure-not ( parser -- parser )
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|   ensure-not-parser boa wrap-peg ;
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| 
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| : action ( parser quot -- parser )
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|   action-parser boa wrap-peg ;
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| 
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| : sp ( parser -- parser )
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|   sp-parser boa wrap-peg ;
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| 
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| : hide ( parser -- parser )
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|   [ drop ignore ] action ;
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| 
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| : delay ( quot -- parser )
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|   delay-parser boa wrap-peg ;
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| 
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| : box ( quot -- parser )
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|   #! because a box has its quotation run at compile time
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|   #! it must always have a new parser wrapper created, 
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|   #! not a cached one. This is because the same box,
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|   #! compiled twice can have a different compiled word
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|   #! due to running at compile time.
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|   #! Why the [ ] action at the end? Box parsers don't get
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|   #! memoized during parsing due to all box parsers being
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|   #! unique. This breaks left recursion detection during the
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|   #! parse. The action adds an indirection with a parser type
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|   #! that gets memoized and fixes this. Need to rethink how
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|   #! to fix boxes so this isn't needed...
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|   box-parser boa f next-id parser boa [ ] action ;
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| 
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| ERROR: parse-failed input word ;
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| 
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| SYNTAX: PEG:
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|     [let
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|         (:) :> ( word def effect )
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|         [
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|           [
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|             def call compile :> compiled-def
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|             [
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|               dup compiled-def compiled-parse
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|               [ ast>> ] [ word parse-failed ] ?if
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|             ]
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|             word swap effect define-declared
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|           ] with-compilation-unit
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|         ] append!
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|     ] ;
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| 
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| USE: vocabs.loader
 | |
| 
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| { "debugger" "peg" } "peg.debugger" require-when
 |