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resource = resource-1.0
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192
lib/resource-0.9/scandinavian/RulesScand.gf
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192
lib/resource-0.9/scandinavian/RulesScand.gf
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--# -path=.:../abstract:../../prelude
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incomplete concrete RulesScand of Rules = CategoriesScand **
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open Prelude, SyntaxScand in {
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flags optimize=all_subs ;
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lin
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UseN = noun2CommNounPhrase ;
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UsePN = nameNounPhrase ;
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IndefOneNP = indefNounPhrase singular ;
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IndefNumNP = indefNounPhraseNum plural ;
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DefOneNP = defNounPhrase singular ;
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DefNumNP = defNounPhraseNum plural ;
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DetNP = detNounPhrase ;
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NDetNP = numDetNounPhrase ;
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NDetNum = justNumDetNounPhrase ;
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MassNP = detNounPhrase (mkDeterminerSg (detSgInvar []) IndefP) ;
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AppN2 = appFunComm ;
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AppN3 = appFun2 ;
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UseN2 = funAsCommNounPhrase ;
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ModAP = modCommNounPhrase ;
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CNthatS = nounThatSentence ;
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ModGenOne = npGenDet singular noNum ;
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ModGenNum = npGenDet plural ;
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UseInt i = {s = \\_ => table {Nom => i.s ; Gen => i.s ++ "s"} ; n = Pl} ; ---
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NoNum = noNum ;
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UseA = adj2adjPhrase ;
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ComplA2 = complAdj ;
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ComplAV = complVerbAdj ;
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ComplObjA2V = complVerbAdj2 True ;
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PositADeg = positAdjPhrase ;
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ComparADeg = comparAdjPhrase ;
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SuperlADeg = superlAdjPhrase ;
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-- verbs and verb phrases mostly in $Clause$
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PredAS = predAdjSent ;
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PredV0 = predVerb0 ;
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-- Partial saturation.
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UseV2 = transAsVerb ;
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---- ComplV3 = complDitransVerb ;
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ComplA2S = predAdjSent2 ;
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AdjPart = adjPastPart ;
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UseV2V x = x ** {isAux = False} ;
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UseV2S x = x ;
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UseV2Q x = x ;
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UseA2S x = x ;
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UseA2V x = x ;
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-- Formation of infinitival phrases.
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UseCl tp cl = {s = \\o => tp.s ++ cl.s ! tp.b ! ClFinite tp.t tp.a o} ;
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UseRCl tp cl =
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{s = \\gn,p => tp.s ++ cl.s ! tp.b ! VFinite tp.t tp.a ! gn ! p} ;
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UseQCl tp cl = {s = \\q => tp.s ++ cl.s ! tp.b ! VFinite tp.t tp.a ! q} ;
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UseVCl po a cl = {
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s = \\v,g,n,p => po.s ++ a.s ++ cl.s ! po.p ! a.a ! v ! g ! n ! p ;
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} ;
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PosTP t a = {s = t.s ++ a.s ; b = True ; t = t.t ; a = a.a} ;
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NegTP t a = {s = t.s ++ a.s ; b = False ; t = t.t ; a = a.a} ;
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TPresent = {s = [] ; t = Present} ;
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TPast = {s = [] ; t = Past} ;
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TFuture = {s = [] ; t = Future} ;
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TConditional = {s = [] ; t = Condit} ;
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ASimul = {s = [] ; a = Simul} ;
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AAnter = {s = [] ; a = Anter} ;
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PPos = {s = [] ; p = True} ;
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PNeg = {s = [] ; p = False} ;
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-- Adverbs.
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AdjAdv a = advPost (a.s ! adverbForm ! Nom) ;
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AdvPP p = p ;
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PrepNP p = prepPhrase p.s ; ---
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AdvCN = advCommNounPhrase ;
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AdvAP = advAdjPhrase ;
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AdvAdv = cc2 ;
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AdvNP np adv = <np : {g : Gender ; n : Number ; p : Person}> **
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{s = \\f => np.s ! f ++ adv.s} ;
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--3 Sentences and relative clauses
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--
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SlashV2 = slashTransVerb ;
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SlashVV2 = slashVerbVerb ;
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SlashAdv cl p = slashAdverb cl p.s ;
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IdRP = identRelPron ;
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FunRP = funRelPron ;
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RelSlash = relSlash ;
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ModRS = modRelClause ;
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RelCl = relSuch ;
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--!
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--3 Questions and imperatives
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--
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IDetCN d n = detNounPhrase d n ;
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FunIP = funIntPron ;
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QuestCl = questClause ;
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IntSlash = intSlash ;
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QuestAdv = questAdverbial ;
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PosImpVP = imperVerbPhrase True ;
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NegImpVP = imperVerbPhrase False ;
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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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AdvCl = advClause ;
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AdvVPI = advVerbPhrase ;
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AdvPhr = advSentence ;
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AdCPhr = advSentence ;
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--!
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--3 Coordination
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--
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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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TwoAdv = twoAdverb ;
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ConsAdv = consAdverb ;
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ConjAdv = conjunctAdverb ;
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ConjDAdv = conjunctDistrAdverb ;
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SubjS = subjunctSentence ;
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SubjImper = subjunctImperative ;
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SubjQS = subjunctQuestion ;
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AdvSubj if A = {s = if.s ++ A.s ! Sub} ;
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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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PhrVPI = verbUtterance ;
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OnePhr p = p ;
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ConsPhr = cc2 ;
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-----------------------
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-- special constructions
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OneNP = npMan ;
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ExistCN A = predVerbGroupClause npDet
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(complTransVerb (mkDirectVerb (deponentVerb verbFinnas))
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(indefNounPhrase singular A)) ;
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ExistNumCN nu A = predVerbGroupClause npDet
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(complTransVerb (mkDirectVerb (deponentVerb verbFinnas))
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(indefNounPhraseNum plural nu A)) ;
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} ;
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