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Working on with new resource API.
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grammars/resource/swedish/CombinationsSwe.gf
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210
grammars/resource/swedish/CombinationsSwe.gf
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--# -path=.:../nabstract:../../prelude
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--1 The Top-Level Swedish Resource Grammar: Combination Rules
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--
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-- Aarne Ranta 2002 -- 2003
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--
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-- This is the Swedish concrete syntax of the multilingual resource
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-- grammar. Most of the work is done in the file $SyntaxSwe.gf$.
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-- However, for the purpose of documentation, we make here explicit the
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-- linearization types of each category, so that their structures and
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-- dependencies can be seen.
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-- Another substantial part are the linearization rules of some
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-- structural words.
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--
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-- The users of the resource grammar should not look at this file for the
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-- linearization rules, which are in fact hidden in the document version.
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-- They should use $resource.Abs.gf$ to access the syntactic rules.
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-- This file can be consulted in those, hopefully rare, occasions in which
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-- one has to know how the syntactic categories are
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-- implemented. The parameter types are defined in $TypesSwe.gf$.
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concrete CombinationsSwe of Combinations = open Prelude, SyntaxSwe in {
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flags
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startcat=Phr ;
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lexer=text ;
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unlexer=text ;
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lincat
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CN = {s : Number => SpeciesP => Case => Str ; g : Gender ; x : Sex ;
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p : IsComplexCN} ;
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N = CommNoun ;
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-- = {s : Number => Species => Case => Str ; g : Gender ; x : Sex} ;
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NP = NounPhrase ;
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-- = {s : NPForm => Str ; g : Gender ; n : Number} ;
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PN = {s : Case => Str ; g : Gender ; x : Sex} ;
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Det = {s : Gender => Sex => Str ; n : Number ; b : SpeciesP} ;
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Fun = Function ;
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-- = CommNoun ** {s2 : Preposition} ;
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Fun2 = Function ** {s3 : Preposition} ;
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Num = {s : Case => Str} ;
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Prep = {s : Str} ;
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Adj1 = Adjective ;
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-- = {s : AdjFormPos => Case => Str} ;
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Adj2 = Adjective ** {s2 : Preposition} ;
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AdjDeg = {s : AdjForm => Str} ;
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AP = Adjective ** {p : IsPostfixAdj} ;
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V = Verb ;
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-- = {s : VForm => Str} ;
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VG = Verb ** {s2 : Bool => Str ; s3 : Gender => Number => Str} ;
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VP = Verb ** {s2 : Str ; s3 : Gender => Number => Str} ;
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TV = TransVerb ;
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-- = Verb ** {s2 : Preposition} ;
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V3 = TransVerb ** {s3 : Preposition} ;
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VS = Verb ;
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VV = Verb ** {isAux : Bool} ;
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AdV = {s : Str ; isPost : Bool} ;
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S = Sentence ;
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-- = {s : Order => Str} ;
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Slash = Sentence ** {s2 : Preposition} ;
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RP = {s : RelCase => GenNum => Str ; g : RelGender} ;
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RC = {s : GenNum => Str} ;
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IP = NounPhrase ;
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Qu = {s : QuestForm => Str} ;
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Imp = {s : Number => Str} ;
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Phr = {s : Str} ;
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Conj = {s : Str ; n : Number} ;
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ConjD = {s1 : Str ; s2 : Str ; n : Number} ;
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ListS = {s1,s2 : Order => Str} ;
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ListAP = {s1,s2 : AdjFormPos => Case => Str ; p : Bool} ;
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ListNP = {s1,s2 : NPForm => Str ; g : Gender ; n : Number} ;
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--.
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lin
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UseN = noun2CommNounPhrase ;
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ModAdj = modCommNounPhrase ;
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ModGenOne = npGenDet singular noNum ;
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ModGenMany = npGenDet plural ;
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UsePN = nameNounPhrase ;
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UseFun = funAsCommNounPhrase ;
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AppFun = appFunComm ;
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AppFun2 = appFun2 ;
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AdjP1 = adj2adjPhrase ;
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ComplAdj = complAdj ;
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PositAdjP = positAdjPhrase ;
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ComparAdjP = comparAdjPhrase ;
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SuperlNP = superlNounPhrase ;
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DetNP = detNounPhrase ;
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IndefOneNP = indefNounPhrase singular ;
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IndefManyNP = indefNounPhraseNum plural ;
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DefOneNP = defNounPhrase singular ;
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DefManyNP = defNounPhraseNum plural ;
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MassNP = detNounPhrase (mkDeterminerSg (detSgInvar []) IndefP) ;
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UseInt i = {s = table {Nom => i.s ; Gen => i.s ++ "s"}} ; ---
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NoNum = noNum ;
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CNthatS = nounThatSentence ;
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PredVP = predVerbPhrase ;
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PosVG = predVerbGroup True ;
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NegVG = predVerbGroup False ;
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PredV = predVerb ;
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PredAP = predAdjective ;
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PredCN = predCommNoun ;
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PredTV = complTransVerb ;
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PredV3 = complDitransVerb ;
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PredPassV = passVerb ;
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PredNP = predNounPhrase ;
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PredAdV = predAdverb ;
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PredVS = complSentVerb ;
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PredVV = complVerbVerb ;
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VTrans = transAsVerb ;
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AdjAdv a = advPost (a.s ! adverbForm ! Nom) ;
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PrepNP p = prepPhrase p.s ; ---
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AdvVP = adVerbPhrase ;
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AdvCN = advCommNounPhrase ;
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AdvAP = advAdjPhrase ;
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ThereIsCN A = predVerbPhrase npDet
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(predVerbGroup True
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(complTransVerb (mkDirectVerb verbFinnas)
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(indefNounPhrase singular A))) ;
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ThereAreCN n A = predVerbPhrase npDet
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(predVerbGroup True
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(complTransVerb (mkDirectVerb verbFinnas)
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(indefNounPhraseNum plural n A))) ;
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PosSlashTV = slashTransVerb True ;
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NegSlashTV = slashTransVerb False ;
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OneVP = predVerbPhrase npMan ;
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IdRP = identRelPron ;
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FunRP = funRelPron ;
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RelVP = relVerbPhrase ;
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RelSlash = relSlash ;
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ModRC = modRelClause ;
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RelSuch = relSuch ;
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WhoOne = intPronWho singular ;
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WhoMany = intPronWho plural ;
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WhatOne = intPronWhat singular ;
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WhatMany = intPronWhat plural ;
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FunIP = funIntPron ;
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NounIPOne = nounIntPron singular ;
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NounIPMany = nounIntPron plural ;
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QuestVP = questVerbPhrase ;
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IntVP = intVerbPhrase ;
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IntSlash = intSlash ;
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QuestAdv = questAdverbial ;
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IsThereCN A = questVerbPhrase npDet
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(predVerbGroup True
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(complTransVerb (mkDirectVerb verbFinnas)
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(indefNounPhrase singular A))) ;
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AreThereCN n A = questVerbPhrase npDet
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(predVerbGroup True
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(complTransVerb (mkDirectVerb verbFinnas)
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(indefNounPhraseNum plural n A))) ;
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ImperVP = imperVerbPhrase ;
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IndicPhrase = indicUtt ;
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QuestPhrase = interrogUtt ;
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ImperOne = imperUtterance singular ;
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ImperMany = imperUtterance plural ;
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AdvS = advSentence ;
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TwoS = twoSentence ;
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ConsS = consSentence ;
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ConjS = conjunctSentence ;
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ConjDS = conjunctDistrSentence ;
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TwoAP = twoAdjPhrase ;
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ConsAP = consAdjPhrase ;
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ConjAP = conjunctAdjPhrase ;
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ConjDAP = conjunctDistrAdjPhrase ;
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TwoNP = twoNounPhrase ;
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ConsNP = consNounPhrase ;
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ConjNP = conjunctNounPhrase ;
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ConjDNP = conjunctDistrNounPhrase ;
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SubjS = subjunctSentence ;
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SubjImper = subjunctImperative ;
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SubjQu = subjunctQuestion ;
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SubjVP = subjunctVerbPhrase ;
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PhrNP = useNounPhrase ;
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PhrOneCN = useCommonNounPhrase singular ;
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PhrManyCN = useCommonNounPhrase plural ;
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PhrIP ip = ip ;
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PhrIAdv ia = ia ;
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OnePhr p = p ;
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ConsPhr = cc2 ;
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} ;
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