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(Som) Ditransitive verbs
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@@ -148,7 +148,7 @@ lin father_N2 = mkN2 (shortPossN (mkN "aabbe")) Gen ;
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-- lin garden_N = mkN "" ;
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-- lin garden_N = mkN "" ;
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lin girl_N = mkN "gabadh" "gabdho" fem ;
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lin girl_N = mkN "gabadh" "gabdho" fem ;
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lin give_V3 = mkV3 "bixiyo" ;
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lin give_V3 = mkV3 "sii" ;
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-- lin glove_N = mkN "" ;
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-- lin glove_N = mkN "" ;
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-- lin go_V = joan_V ;
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-- lin go_V = joan_V ;
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-- lin gold_N = mkN "" ;
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-- lin gold_N = mkN "" ;
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@@ -139,28 +139,27 @@ oper
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a = Pl3 ;
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a = Pl3 ;
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isPron = False
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isPron = False
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} ;
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} ;
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--------------------------------------------------------------------------------
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--------------------------------------------------------------------------------
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-- Pronouns
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-- Pronouns
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-- De somaliska possessiva pronomenen, precis som de svenska, har två olika genusformer i singular och en enda form i plural.
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-- ägaren då det ägda föremålet är
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-- m.sg. f.sg.plural
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-- kayga tayda kuwayga
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-- kaaga taada kuwaaga
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-- kiisa tiisa kuwiisa
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-- keeda teeda kuweeda
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--
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-- kaayaga taayada kuwayaga (1 pl. exkl.)
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-- keenna teenna kuweenna (1 pl. inkl.)
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-- kiinna tiinna kuwiinna
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-- kooda tooda kuwooda
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Pronoun : Type = NounPhrase ** {
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Pronoun : Type = NounPhrase ** {
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poss : { -- for PossPron : Pron -> Quant
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poss : { -- for PossPron : Pron -> Quant
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--s, -- possessive suffix
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sp : GenNum => Str ; -- independent forms, e.g. M:kayga F:tayda Pl:kuwayga
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sp : GenNum => Str ; -- independent forms
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s : Str ; -- short possessive suffix: e.g. family members, my/your name
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s : Str ; -- special case: e.g. family members, name
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v : Vowel}
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v : Vowel}
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} ;
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} ;
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-- Second series object pronouns, Sayeed p. 74-75
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-- For two non-3rd person object pronouns, e.g. "They took you away from me"
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secondObject : Agreement => Str = table {
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Sg1 => "kay" ;
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Sg2 => "kaa" ;
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Pl1 Excl => "kayo" ;
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Pl1 Incl => "keen" ;
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Pl2 => "kiin" ;
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_ => []
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} ;
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--------------------------------------------------------------------------------
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--------------------------------------------------------------------------------
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-- Det, Quant, Card, Ord
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-- Det, Quant, Card, Ord
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@@ -536,6 +535,7 @@ oper
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adv : Str ;
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adv : Str ;
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c2, c3 : Preposition ; -- can combine together and with object pronoun(s?)
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c2, c3 : Preposition ; -- can combine together and with object pronoun(s?)
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obj2 : {s : Str ; a : AgreementPlus} ;
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obj2 : {s : Str ; a : AgreementPlus} ;
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secObj : Str ; -- if two overt pronoun objects
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} ;
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} ;
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VPSlash : Type = VerbPhrase ;
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VPSlash : Type = VerbPhrase ;
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@@ -546,6 +546,7 @@ oper
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adv = [] ;
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adv = [] ;
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c2,c3 = noPrep ;
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c2,c3 = noPrep ;
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obj2 = {s = [] ; a = Unassigned} ;
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obj2 = {s = [] ; a = Unassigned} ;
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secObj = []
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} ;
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} ;
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useVc : Verb2 -> VPSlash = \v2 -> useV v2 ** {
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useVc : Verb2 -> VPSlash = \v2 -> useV v2 ** {
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@@ -553,49 +554,59 @@ oper
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} ;
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} ;
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complSlash : VPSlash -> VerbPhrase = \vps -> let np = vps.obj2 in vps ** {
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complSlash : VPSlash -> VerbPhrase = \vps -> let np = vps.obj2 in vps ** {
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comp = \\a =>
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comp = \\agr =>
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case np.a of {
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case np.a of {
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Unassigned => vps.comp ! a ;
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Unassigned => vps.comp ! agr ;
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IsPron ag => {p1 = [] ; -- object is a pronoun => nothing is placed before the verb
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_ => {p1 = np.s ; -- if object is a noun, it will come before verb in the sentence.
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p2 = compl np.a vps} ; -- object combines with the preposition of the verb
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-- if object is a pronoun, np.s is empty.
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NotPronP3 => {p1 = np.s ; -- object is a noun => it will come before verb in the sentence
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p2 = compl np.a vps ++ vps.secObj} -- object combines with the preposition of the verb.
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p2 = compl np.a vps} -- object combines with the preposition of the verb
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-- secObj in case there was a ditransitive verb.
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-- IsPron ag => {p1 = [] ; -- object is a pronoun => nothing is placed before the verb
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-- p2 = compl np.a vps ++ vps.secObj} ; -- object combines with the preposition of the verb
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-- NotPronP3 => {p1 = np.s ; -- object is a noun => it will come before verb in the sentence
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-- p2 = compl np.a vps ++ vps.secObj} -- object combines with the preposition of the verb
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}
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}
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} ;
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} ;
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compl : AgreementPlus -> VerbPhrase -> Str = \a,vp ->
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compl : AgreementPlus -> VerbPhrase -> Str = \a,vp ->
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let agr = case a of {IsPron x => x ; _ => Pl3} ;
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let agr = case a of {IsPron x => x ; _ => Pl3} ;
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in "<" ++ prepCombTable ! agr ! combine vp.c2 vp.c3 ++ ">" ;
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in prepCombTable ! agr ! combine vp.c2 vp.c3 ;
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insertComp : VPSlash -> NounPhrase -> VerbPhrase = \vp,np ->
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insertComp : VPSlash -> NounPhrase -> VerbPhrase = \vp,np ->
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let nps = if_then_Str np.isPron [] (np.s ! Abs) ;
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let noun = if_then_Str np.isPron [] (np.s ! Abs) ;
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in case vp.obj2.a of {
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in case vp.obj2.a of {
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Unassigned =>
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Unassigned =>
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vp ** {obj2 = {s = nps ;
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vp ** {obj2 = {
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s = noun ;
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a = agr2agrplus np.isPron np.a}
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a = agr2agrplus np.isPron np.a}
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} ;
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} ;
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-- If the old object in obj2 is 3rd person, we can safely replace its agreement, but keep its string.
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-- If the old object is 3rd person, we can safely replace its agreement.
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-- We keep both old and new string (=noun, if there was one) in obj2.s.
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NotPronP3|IsPron (Sg3 _|Pl3) =>
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NotPronP3|IsPron (Sg3 _|Pl3) =>
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vp ** {obj2 = vp.obj2 ** {a = agr2agrplus np.isPron np.a} ;
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vp ** {obj2 = {
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adv = vp.adv ++ nps} ;
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s = vp.obj2.s ++ noun ;
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a = agr2agrplus np.isPron np.a} ; --
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} ; -- no secObj, because there's ≤1 non-3rd-person pronoun.
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-- If old object was non-3rd person, we keep its agreement.
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_ => vp ** {
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obj2 = vp.obj2 ** {
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s = vp.obj2.s ++ noun
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} ;
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secObj = vp.secObj ++ secondObject ! np.a}
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-- This happens in two cases:
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-- 1) insertAdv placed the preposition into vp.adv and called insertComp.
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-- 2) ditransitive verb where both objects are non-3rd person. (Not implemented yet.)
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_ => vp ** {adv = vp.adv ++ nps}
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} ;
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} ;
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insertAdv : Adverb -> VerbPhrase -> VerbPhrase = \adv,vp ->
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insertAdv : Adverb -> VerbPhrase -> VerbPhrase = \adv,vp ->
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case adv.c2 of {
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case adv.c2 of {
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noPrep => vp ** {adv = adv.s} ; -- The adverb is not formed with PrepNP
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noPrep => vp ** {adv = adv.s} ; -- The adverb is not formed with PrepNP
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prep => insertComp vp' adv.np }
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prep => case <vp.c2,vp.obj2.a,vp.c3> of {
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where { vp' : VerbPhrase =
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<noPrep,Unassigned,_> => insertComp <vp ** {c2 = adv.c2}:VerbPhrase> adv.np ; -- should cover for obligatory argument that is not introduced with a preposition
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case <vp.c2,vp.obj2.a,vp.c3> of { -- NB. This is a safe assumption only for AdvVP, no guarantees for AdvVPSlash.
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<_,_, noPrep> => insertComp (vp ** {c3 = adv.c2}) adv.np ;
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<noPrep,Unassigned,_> => vp ** {c2 = adv.c2} ; -- should cover for obligatory argument that is not introduced with a preposition
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<_,_,noPrep> => vp ** {c3 = adv.c2} ;
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-- if complement slots are full, put preposition just as a string. TODO check word order.
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-- if complement slots are full, put preposition just as a string. TODO check word order.
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_ => vp ** {adv = (prepTable ! adv.c2).s ! adv.np.a} --only preposition inserted here, adv.np.s ! Abs will be inserted in insertComp!
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_ => vp ** {adv = (prepTable ! adv.c2).s ! adv.np.a ++ adv.np.s ! Abs}
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}
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}
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} ;
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} ;
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--------------------------------------------------------------------------------
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--------------------------------------------------------------------------------
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@@ -143,7 +143,7 @@ lin with_Prep = prep la ;
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} ;
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} ;
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we_Pron = {
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we_Pron = {
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s = table {Nom => "aan" ; Voc => "innaga" ; _Abs => "na"} ;
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s = table {Nom => "aan" ; Voc => "innaga" ; _Abs => "na"} ;
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a = Pl1 Incl ; isPron = True ;
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a = Pl1 Excl ; isPron = True ;
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poss = {s = "een" ; v = vE ; sp = gnTable "eenn" "eenn" "uweenn"}
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poss = {s = "een" ; v = vE ; sp = gnTable "eenn" "eenn" "uweenn"}
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} ;
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} ;
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youPl_Pron = {
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youPl_Pron = {
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@@ -30,22 +30,15 @@ lin
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-- : V2 -> VPSlash
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-- : V2 -> VPSlash
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SlashV2a = useVc ;
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SlashV2a = useVc ;
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{-
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-- : V3 -> NP -> VPSlash ; -- give it (to her)
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-- : V3 -> NP -> VPSlash ; -- give it (to her)
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Slash2V3 v3 npNori = slashDObj v3 **
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Slash2V3 v3 np = insertComp (useVc v3) np ;
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{ iobj = { s = npNori.s ! Dat ;
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agr = npNori.agr }
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} ;
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-- : V3 -> NP -> VPSlash ; -- give (it) to her
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-- : V3 -> NP -> VPSlash ; -- give (it) to her
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Slash3V3 v3 npNor = slashIObj v3 **
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Slash3V3 v3 np = insertComp (useVc v3) np ;
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{ dobj = npNor ** { s = mkDObj npNor }
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{-
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} ;
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-- : V2V -> VP -> VPSlash ; -- beg (her) to go
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-- : V2V -> VP -> VPSlash ; -- beg (her) to go
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SlashV2V v2v vp = ;
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SlashV2V v2v vp = ;
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-- : V2S -> S -> VPSlash ; -- answer (to him) that it is good
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-- : V2S -> S -> VPSlash ; -- answer (to him) that it is good
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SlashV2S v2s s = ;
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SlashV2S v2s s = ;
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