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https://github.com/GrammaticalFramework/gf-core.git
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DocumentationSwe : N and A
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@@ -3,6 +3,5 @@
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concrete AllSwe of AllSweAbs =
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LangSwe - [PassV2],
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IrregSwe,
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ConstructionSwe,
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ExtraSwe
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** {} ;
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@@ -1,6 +1,5 @@
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abstract AllSweAbs =
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Lang - [PassV2] ,
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IrregSweAbs,
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Construction,
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ExtraSweAbs
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** {} ;
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185
lib/src/swedish/DocumentationSwe.gf
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185
lib/src/swedish/DocumentationSwe.gf
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@@ -0,0 +1,185 @@
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--# -path=.:../abstract:../common
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concrete DocumentationSwe of Documentation = CatSwe ** open
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ResSwe,
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CommonScand,
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ParadigmsSwe,
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(G = GrammarSwe),
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(S = SyntaxSwe),
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(L = LexiconSwe),
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Prelude,
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HTML
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in {
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lincat
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Category = G.N ;
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ParameterType = G.N ;
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Parameter = G.N ;
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Heading = {s : Str} ;
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Inflection = {s : Str} ;
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lin
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noun_Category = mkN "substantiv" ;
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adjective_Category = mkN "adjektiv" ;
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verb_Category = mkN "verb" ;
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preposition_Category = mkN "preposition" ;
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gender_ParameterType = mkN "genus" ;
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singular_Parameter = mkN "singular" ;
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plural_Parameter = mkN "plural" ;
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definite_Parameter = mkN "bestämd" ;
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indefinite_Parameter = mkN "obestämd" ;
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masculine_Parameter = mkN "maskulin" ;
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feminine_Parameter = mkN "feminin" ;
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neuter_Parameter = mkN "neutrum" ;
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uter_Parameter = mkN "utrum" ;
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nominative_Parameter = mkN "nominativ" ;
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genitive_Parameter = mkN "genitiv" ;
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dative_Parameter = mkN "dativ" ;
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accusative_Parameter = mkN "akkusativ" ;
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imperative_Parameter = mkN "imperativ" ;
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indicative_Parameter = mkN "indikativ" ;
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conjunctive_Parameter = mkN "konjunktiv" ;
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infinitive_Parameter = mkN "infinitiv" ;
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present_Parameter = mkN "presens" ;
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past_Parameter = mkN "preteritum" ;
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future_Parameter = mkN "futur" ;
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conditional_Parameter = mkN "konditionalis" ;
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perfect_Parameter = mkN "perfekt" ;
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participle_Parameter = mkN "partisip" ;
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aux_verb_Parameter = mkN "hjälpverb" ;
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positive_Parameter = mkN "positiv" ;
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comparative_Parameter = mkN "komparativ" ;
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superlative_Parameter = mkN "superlativ" ;
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predicative_Parameter = mkN "predikativ" ;
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nounHeading n = ss (n.s ! Sg ! Indef ! Nom) ;
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oper
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tdf : Str -> Str = \s -> td (intag "i" s) ;
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heading : N -> Str = \n -> (nounHeading n).s ;
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nounGender : N -> Parameter = \n -> case n.g of {
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Utr => uter_Parameter ;
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Neutr => neuter_Parameter
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} ;
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lin
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InflectionN noun = {
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s = heading1 (heading noun_Category) ++
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paragraph (intag "b" (heading (gender_ParameterType)) ++ ":" ++ heading (nounGender noun) ++ ";" ++
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intag "i" (S.mkUtt (S.mkNP S.a_Det noun)).s) ++
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frameTable (
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tr (intagAttr "th" "colspan=2" "" ++ th (heading singular_Parameter) ++ th (heading plural_Parameter) ) ++
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tr (intagAttr "th" "rowspan=2" (heading nominative_Parameter) ++
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th (heading indefinite_Parameter) ++ tdf (noun.s ! Sg ! Indef ! Nom) ++ tdf (noun.s ! Pl ! Indef ! Nom)) ++
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tr (th (heading definite_Parameter) ++ tdf (noun.s ! Sg ! Def ! Nom) ++ tdf (noun.s ! Pl ! Def ! Nom)) ++
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tr (intagAttr "th" "rowspan=2" (heading genitive_Parameter) ++
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th (heading indefinite_Parameter) ++ tdf (noun.s ! Sg ! Indef ! Gen) ++ tdf (noun.s ! Pl ! Indef ! Gen)) ++
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tr (th (heading definite_Parameter) ++ tdf (noun.s ! Sg ! Def ! Gen) ++ tdf (noun.s ! Pl ! Def ! Gen))
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)
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} ;
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InflectionA adj =
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let
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gforms : Case -> Str = \c ->
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tdf (adj.s ! (AF (APosit (Strong (GSg Utr))) c)) ++
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tdf (adj.s ! (AF (APosit (Strong (GSg Neutr))) c)) ++
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tdf (adj.s ! (AF (APosit (Strong GPl)) c)) ++
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tdf (adj.s ! (AF (APosit (Weak Sg)) c)) ;
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in
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{
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s = heading1 (nounHeading adjective_Category).s ++
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frameTable (
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tr (intagAttr "th" "colspan=2" [] ++
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th (heading uter_Parameter) ++ th (heading neuter_Parameter) ++
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th (heading plural_Parameter) ++ th (heading definite_Parameter)) ++
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tr (intagAttr "th" "rowspan=2" (heading positive_Parameter) ++
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th (heading nominative_Parameter) ++ gforms Nom) ++
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tr ( th (heading genitive_Parameter) ++ gforms Gen) ++
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tr (intagAttr "th" "rowspan=2" (heading comparative_Parameter) ++
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th (heading nominative_Parameter) ++ intagAttr "td" "colspan=4" (intag "i" (adj.s ! AF ACompar Nom))) ++
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tr ( th (heading genitive_Parameter) ++ intagAttr "td" "colspan=4" (intag "i" (adj.s ! AF ACompar Gen))) ++
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tr (intagAttr "th" "rowspan=2" (heading superlative_Parameter) ++
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th (heading nominative_Parameter) ++
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intagAttr "td" "colspan=3" (intag "i" (adj.s ! AF (ASuperl SupStrong) Nom)) ++
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tdf (adj.s ! AF (ASuperl SupWeak) Nom)) ++
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tr ( th (heading genitive_Parameter) ++
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intagAttr "td" "colspan=3" (intag "i" (adj.s ! AF (ASuperl SupStrong) Gen)) ++
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tdf (adj.s ! AF (ASuperl SupWeak) Gen))
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)
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} ;
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{-
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InflectionV v = inflectionVerb (verbExample (S.mkCl S.she_NP (lin V v))) v ;
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InflectionV2 v = inflectionVerb (verbExample (S.mkCl S.she_NP (lin V2 v) S.something_NP)) (lin V v) ;
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InflectionVV v = inflectionVerb (verbExample (S.mkCl S.she_NP (lin VV v) (S.mkVP (L.sleep_V)))) (lin V v) ;
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InflectionV2V v = inflectionVerb (verbExample (S.mkCl S.she_NP (lin V2V v) S.we_NP (S.mkVP (L.sleep_V)))) (lin V v) ;
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InflectionPrep p = {
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s = heading1 (heading preposition_Category) ++
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paragraph (intag "b" (heading exampleGr_N ++ ":") ++ intag "i" (S.mkAdv (lin Prep p) (S.mkNP S.a_Det L.computer_N)).s)
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} ;
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ExplainInflection e i = ss (i.s ++ paragraph e.s) ; -- explanation appended in a new paragraph
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oper
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verbExample : Cl -> Str = \cl ->
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(S.mkUtt cl).s
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++ ";" ++ (S.mkUtt (S.mkS S.anteriorAnt cl)).s --# notpresent
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;
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inflectionVerb : Str -> V -> {s : Str} = \ex,verb ->
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let
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vfin : VForm -> Str = \f ->
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verb.s ! f ++ verb.prefix ;
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gforms : Number -> Person -> Str = \n,p ->
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tdf (vfin (VFin False (VPresInd n p))) ++
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tdf (vfin (VFin False (VPresSubj n p)))
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++ tdf (vfin (VFin False (VImpfInd n p))) --# notpresent
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++ tdf (vfin (VFin False (VImpfSubj n p))) --# notpresent
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;
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in {
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s =
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heading1 (heading verb_Category) ++
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paragraph (intag "b" (heading exampleGr_N ++ ":") ++ intag "i" ex) ++
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paragraph (frameTable (
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tr (th "" ++ intagAttr "th" "colspan=2" (heading present_Parameter) ++ intagAttr "th" "colspan=2" (heading past_Parameter)) ++
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tr (th "" ++ th (heading indicative_Parameter) ++ th (heading conjunctive_Parameter ++ "I") ++
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th (heading indicative_Parameter) ++ th (heading conjunctive_Parameter ++ "II")) ++
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tr (th "Sg.1" ++ gforms Sg P1) ++
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tr (th "Sg.2" ++ gforms Sg P2) ++
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tr (th "Sg.3" ++ gforms Sg P3) ++
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tr (th "Pl.1" ++ gforms Pl P1) ++
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tr (th "Pl.2" ++ gforms Pl P2) ++
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tr (th "Pl.3" ++ gforms Pl P3)
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)) ++
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paragraph (
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frameTable (
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tr (th (heading imperative_Parameter ++ "Sg.2") ++ tdf (vfin (VImper Sg))) ++
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tr (th (heading imperative_Parameter ++ "Pl.2") ++ tdf (vfin (VImper Pl))) ++
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tr (th (heading infinitive_Parameter) ++ tdf (verb.s ! (VInf False))) ++
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tr (th (heading present_Parameter ++ heading participle_Parameter) ++ tdf (verb.s ! (VPresPart APred))) ++
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tr (th (heading perfect_Parameter ++ heading participle_Parameter) ++ tdf (verb.s ! (VPastPart APred))) ++
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tr (th (heading aux_verb_Parameter) ++ td (intag "i" (case verb.aux of {VHaben => "haben" ; VSein => "sein"})))
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))
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} ;
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-}
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lin
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exampleGr_N = mkN "exempel" "exempel" ;
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}
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@@ -2,7 +2,9 @@
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concrete LangSwe of Lang =
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GrammarSwe,
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LexiconSwe
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LexiconSwe,
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ConstructionSwe,
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DocumentationSwe
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** {
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flags startcat = Phr ; unlexer = text ; lexer = text ;
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@@ -14,6 +14,7 @@ concrete ParseSwe of ParseEngAbs =
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RelativeSwe,
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IdiomSwe [NP, VP, Tense, Cl, ProgrVP, ExistNP, SelfAdvVP, SelfAdVVP, SelfNP],
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ConstructionSwe,
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DocumentationSwe,
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ExtraSwe [NP, Quant, VPSlash, VP, Tense, GenNP, PassVPSlash, PassAgentVPSlash,
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Temp, Pol, Conj, VPS, ListVPS, S, Num, CN, RP, MkVPS, BaseVPS, ConsVPS, ConjVPS, PredVPS, GenRP,
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VPI, VPIForm, VPIInf, VPIPresPart, ListVPI, VV, MkVPI, BaseVPI, ConsVPI, ConjVPI, ComplVPIVV,
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