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https://github.com/GrammaticalFramework/gf-core.git
synced 2026-04-09 04:59:31 -06:00
German compund verbs glued in morphology
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@@ -355,7 +355,30 @@ oper
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mkV singen singt sing sang saenge gesungen ;
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prefixV p v =
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{s = v.s ; prefix = p ; lock_V = v.lock_V ; aux = v.aux ; vtype = v.vtype} ;
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let
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vs = v.s ;
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v1 = MorphoGer.mkV
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(vs ! (VInf False))
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(vs ! (VFin False (VPresInd Sg P1)))
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(vs ! (VFin False (VPresInd Sg P2)))
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(vs ! (VFin False (VPresInd Sg P3)))
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(vs ! (VFin False (VPresInd Pl P2)))
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(vs ! VImper Sg)
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(vs ! (VFin False (VImpfInd Sg P1)))
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(vs ! (VFin False (VImpfInd Sg P2)))
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(vs ! (VFin False (VImpfInd Pl P1)))
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(vs ! (VFin False (VImpfInd Pl P2)))
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(vs ! (VFin False (VImpfSubj Sg P2)))
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(vs ! VPastPart APred)
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p
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v.aux
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in {
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s = v1.s ;
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prefix = p ;
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lock_V = v.lock_V ;
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aux = v.aux ;
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vtype = v.vtype
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} ;
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habenV v =
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{s = v.s ; prefix = v.prefix ; lock_V = v.lock_V ; aux = VHaben ; vtype = v.vtype} ;
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seinV v =
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@@ -14,7 +14,7 @@ concrete PhraseGer of Phrase = CatGer ** open Prelude, ResGer in {
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UttIP ip = {s = ip.s ! Nom} ; --- Acc also
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UttIAdv iadv = iadv ;
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UttNP np = {s = np.s ! Acc} ;
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UttVP vp = {s = useInfVP False vp} ;
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UttVP vp = {s = useInfVP True vp} ; -- without zu
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UttAdv adv = adv ;
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NoPConj = {s = []} ;
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@@ -48,15 +48,19 @@ resource ResGer = ParamX ** open Prelude in {
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--2 For $Verb$
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param VForm =
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VInf
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| VPresInd Number Person
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| VPresSubj Number Person
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| VImper Number
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| VImpfInd Number Person --# notpresent
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| VImpfSubj Number Person --# notpresent
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| VPresPart AForm
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VInf Bool -- True = with the particle "zu"
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| VFin Bool VFormFin -- True = prefix glued to verb
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| VImper Number -- prefix never glued
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| VPresPart AForm -- prefix always glued
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| VPastPart AForm ;
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param VFormFin =
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VPresInd Number Person
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| VPresSubj Number Person
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| VImpfInd Number Person --# notpresent
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| VImpfSubj Number Person --# notpresent
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;
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param VPForm =
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VPFinite Tense Anteriority
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| VPImperat Bool
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@@ -129,11 +133,11 @@ resource ResGer = ParamX ** open Prelude in {
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_ => Weak
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} ;
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vFin : Tense -> Agr -> VForm = \t,a ->
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vFin : Bool -> Tense -> Agr -> VForm = \b,t,a ->
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case t of {
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Pres => VPresInd a.n a.p ;
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Past => VImpfInd a.n a.p ; --# notpresent
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_ => VInf --- never used
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Pres => VFin b (VPresInd a.n a.p) ;
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Past => VFin b (VImpfInd a.n a.p) ; --# notpresent
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_ => VInf False --- never used
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} ;
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conjAgr : Agr -> Agr -> Agr = \a,b -> {
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@@ -199,21 +203,22 @@ resource ResGer = ParamX ** open Prelude in {
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} ;
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mkV : (x1,_,_,_,_,_,_,_,_,_,_,x12 : Str) -> Str -> VAux -> Verb =
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\geben,gebe,gibst,gibt,gebt,gib,gab,gabst,gaben,gabt,gaebe,gegeben,ein,aux ->
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\geben,gebe,gibst,gibt,gebt,gib,gab,gabst,gaben,
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gabt,gaebe,gegeben,ein,aux ->
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let
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einb : Bool -> Str -> Str = \b,geb ->
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if_then_Str b (ein + geb) geb ;
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in
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{s = table {
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VInf => geben ;
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VInf False => ein + geben ;
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VInf True =>
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if_then_Str (isNil ein) ("zu" ++ geben) (ein + "zu" + geben) ;
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VFin b vf => einb b (case vf of {
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VPresInd Sg P1 => gebe ;
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VPresInd Sg P2 => gibst ;
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VPresInd Sg P3 => gibt ;
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VPresInd Pl P2 => gebt ;
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VPresInd Pl _ => geben ;
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VImper Sg => gib ;
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VImper Pl => gebt ;
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VPresSubj Sg P2 => init geben + "st" ;
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VPresSubj Sg _ => init geben ;
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VPresSubj Pl P2 => init geben + "t" ;
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VPresSubj Pl _ => geben ;
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VPresPart a => (regA (geben + "d")).s ! Posit ! a ;
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VImpfInd Sg P2 => gabst ; --# notpresent
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VImpfInd Sg _ => gab ; --# notpresent
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VImpfInd Pl P2 => gabt ; --# notpresent
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@@ -222,8 +227,16 @@ resource ResGer = ParamX ** open Prelude in {
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VImpfSubj Sg _ => gaebe ; --# notpresent
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VImpfSubj Pl P2 => gaebe + "t" ; --# notpresent
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VImpfSubj Pl _ => gaebe + "n" ; --# notpresent
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VPastPart a => (regA gegeben).s ! Posit ! a
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} ;
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VPresSubj Sg P2 => init geben + "st" ;
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VPresSubj Sg _ => init geben ;
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VPresSubj Pl P2 => init geben + "t" ;
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VPresSubj Pl _ => geben
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}) ;
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VImper Sg => gib ;
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VImper Pl => gebt ;
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VPresPart a => ein + (regA (geben + "d")).s ! Posit ! a ;
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VPastPart a => ein + (regA gegeben).s ! Posit ! a
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} ;
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prefix = ein ;
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aux = aux ;
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vtype = VAct
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@@ -324,14 +337,14 @@ resource ResGer = ParamX ** open Prelude in {
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-- For $Verb$.
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VP : Type = {
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s : Agr => VPForm => {
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s : Bool => Agr => VPForm => { -- True = prefix glued to verb
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fin : Str ; -- hat
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inf : Str -- wollen
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} ;
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a1 : Polarity => Str ; -- nicht
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n2 : Agr => Str ; -- dich
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a2 : Str ; -- heute
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isAux : Bool ; -- is a double infinitive
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isAux : Bool ; -- is a double infinitive
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inf : Str ; -- sagen
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ext : Str -- dass sie kommt
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} ;
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@@ -340,41 +353,44 @@ resource ResGer = ParamX ** open Prelude in {
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predVGen : Bool -> Verb -> VP = \isAux, verb ->
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let
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vfin : Tense -> Agr -> Str = \t,a -> verb.s ! vFin t a ;
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vinf = verb.s ! VInf ;
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vfin : Bool -> Tense -> Agr -> Str = \b,t,a -> verb.s ! vFin b t a ;
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vinf = verb.s ! VInf False ;
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vpart = if_then_Str isAux vinf (verb.s ! VPastPart APred) ;
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vHaben = auxPerfect verb ;
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hat : Tense -> Agr -> Str = \t,a -> vHaben ! vFin t a ;
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haben : Str = vHaben ! VInf ;
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hat : Tense -> Agr -> Str = \t,a -> vHaben ! vFin False t a ;
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haben : Str = vHaben ! VInf False ;
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wird : Agr -> Str = \a -> werden_V.s ! VPresInd a.n a.p ;
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wuerde : Agr -> Str = \a -> werden_V.s ! VImpfSubj a.n a.p ; --# notpresent
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wird : Agr -> Str = \a ->
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werden_V.s ! VFin False (VPresInd a.n a.p) ;
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wuerde : Agr -> Str = \a -> --# notpresent
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werden_V.s ! VFin False (VImpfSubj a.n a.p) ; --# notpresent
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auf = verb.prefix ;
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vf : Str -> Str -> {fin,inf : Str} = \fin,inf -> {
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fin = fin ; inf = auf ++ inf
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vf : Bool -> Str -> Str -> {fin,inf : Str} = \b,fin,inf -> {
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fin = fin ;
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inf = if_then_Str b [] auf ++ inf --- negation of main b
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} ;
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in {
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s = \\a => table {
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s = \\b,a => table {
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VPFinite t Simul => case t of {
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-- Pres | Past => vf (vfin t a) [] ; -- the general rule
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Past => vf (vfin t a) [] ; --# notpresent
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Fut => vf (wird a) vinf ; --# notpresent
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Cond => vf (wuerde a) vinf ; --# notpresent
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Pres => vf (vfin t a) []
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Past => vf b (vfin b t a) [] ; --# notpresent
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Fut => vf True (wird a) vinf ; --# notpresent
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Cond => vf True (wuerde a) vinf ; --# notpresent
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Pres => vf b (vfin b t a) []
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} ;
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VPFinite t Anter => case t of { --# notpresent
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Pres | Past => vf (hat t a) vpart ; --# notpresent
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Fut => vf (wird a) (vpart ++ haben) ; --# notpresent
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Cond => vf (wuerde a) (vpart ++ haben) --# notpresent
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} ; --# notpresent
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VPImperat False => vf (verb.s ! VImper a.n) [] ;
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VPImperat True => vf (verb.s ! VPresSubj Pl P3) [] ;
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VPInfinit Anter => vf [] (vpart ++ haben) ; --# notpresent
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VPInfinit Simul => vf [] vinf
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VPFinite t Anter => case t of { --# notpresent
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Pres | Past => vf True (hat t a) vpart ; --# notpresent
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Fut => vf True (wird a) (vpart ++ haben) ; --# notpresent
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Cond => vf True (wuerde a) (vpart ++ haben) --# notpresent
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} ; --# notpresent
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VPImperat False => vf False (verb.s ! VImper a.n) [] ;
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VPImperat True => vf False (verb.s ! VFin False (VPresSubj Pl P3)) [] ;
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VPInfinit Anter => vf True [] (vpart ++ haben) ; --# notpresent
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VPInfinit Simul => vf True [] (verb.s ! VInf b)
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} ;
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a1 : Polarity => Str = negation ;
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n2 : Agr => Str = case verb.vtype of {
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@@ -422,11 +438,11 @@ resource ResGer = ParamX ** open Prelude in {
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[] VSein
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in
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{s = table {
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VPresInd Pl (P1 | P3) => "sind" ;
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VPresSubj Sg P2 => (variants {"seiest" ; "seist"}) ;
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VPresSubj Sg _ => "sei" ;
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VPresSubj Pl P2 => "seiet" ;
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VPresSubj Pl _ => "seien" ;
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VFin _ (VPresInd Pl (P1 | P3)) => "sind" ;
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VFin _ (VPresSubj Sg P2) => (variants {"seiest" ; "seist"}) ;
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VFin _ (VPresSubj Sg _) => "sei" ;
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VFin _ (VPresSubj Pl P2) => "seiet" ;
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VFin _ (VPresSubj Pl _) => "seien" ;
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VPresPart a => (regA "seiend").s ! Posit ! a ;
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v => sein.s ! v
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} ;
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@@ -503,7 +519,11 @@ resource ResGer = ParamX ** open Prelude in {
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mkClause : Str -> Agr -> VP -> Clause = \subj,agr,vp -> {
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s = \\t,a,b,o =>
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let
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verb = vp.s ! agr ! VPFinite t a ;
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ord = case o of {
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Sub => True ; -- glue prefix to verb
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_ => False
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} ;
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verb = vp.s ! ord ! agr ! VPFinite t a ;
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neg = vp.a1 ! b ;
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obj = vp.n2 ! agr ;
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compl = obj ++ neg ++ vp.a2 ;
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@@ -526,7 +546,7 @@ resource ResGer = ParamX ** open Prelude in {
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infVP : Bool -> VP -> ((Agr => Str) * Str * Str) = \isAux, vp ->
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<
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\\agr => vp.n2 ! agr ++ vp.a2,
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infPart isAux ++ (vp.s ! agrP3 Sg ! VPInfinit Simul).inf,
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(vp.s ! (notB isAux) ! agrP3 Sg ! VPInfinit Simul).inf,
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vp.inf ++ vp.ext
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> ;
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@@ -16,7 +16,7 @@ concrete SentenceGer of Sentence = CatGer ** open ResGer, Prelude in {
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_ => <P2,[],False>
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} ;
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agr = {g = Fem ; n = numImp n ; p = ps.p1} ; --- g does not matter
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verb = vp.s ! agr ! VPImperat ps.p3 ;
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verb = vp.s ! False ! agr ! VPImperat ps.p3 ;
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inf = vp.inf ++ verb.inf ;
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in
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verb.fin ++ ps.p2 ++
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@@ -28,7 +28,7 @@ concrete SentenceGer of Sentence = CatGer ** open ResGer, Prelude in {
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SlashVVV2 np vv v2 =
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mkClause (np.s ! Nom) np.a
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(insertInf (v2.prefix ++ infPart vv.isAux ++ v2.s ! VInf)
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(insertInf (v2.prefix ++ v2.s ! VInf (notB vv.isAux))
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(predVGen vv.isAux vv)) **
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{c2 = v2.c2} ;
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