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244 lines
8.0 KiB
Plaintext
244 lines
8.0 KiB
Plaintext
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--# -path=.:../abstract:../common:../../prelude
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concrete VerbRus of Verb = CatRus ** open ResRus, Prelude in {
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flags optimize=all_subs ; coding=utf8 ;
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lin
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CompNP masha =
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{ s=\\clf,gn,p => case clf of
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{
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(ClIndic Present _) => masha.s ! (mkPronForm Nom No NonPoss) ;
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(ClIndic PastRus _) => case gn of
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{ (ASg Fem) =>"была"++masha.s ! (mkPronForm Inst No NonPoss);
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(ASg Masc) =>"был" ++ masha.s!(mkPronForm Inst No NonPoss);
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(ASg Neut) =>"было" ++ masha.s!(mkPronForm Inst No NonPoss);
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APl => "были" ++ masha.s ! (mkPronForm Inst No NonPoss)
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};
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(ClIndic Future _) => case gn of
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{ APl => case p of
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{ P3 => "будут"++masha.s ! (mkPronForm Inst No NonPoss);
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P2 => "будете"++masha.s !(mkPronForm Inst No NonPoss);
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P1 => "будем"++masha.s ! (mkPronForm Inst No NonPoss)
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};
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(ASg _) => case p of
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{ P3=>"будет"++masha.s!(mkPronForm Inst No NonPoss) ;
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P2 => "будешь"++ masha.s ! (mkPronForm Inst No NonPoss) ;
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P1=> "буду"++ masha.s ! (mkPronForm Inst No NonPoss)
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} --case p
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}; --case gn
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ClCondit => "" ;
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ClImper => case (numGNum gn) of
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{Sg => "будь" ++ masha.s ! (mkPronForm Inst No NonPoss);
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Pl => "будьте" ++ masha.s ! (mkPronForm Inst No NonPoss)
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};
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ClInfin => "быть" ++ masha.s ! (mkPronForm Inst No NonPoss)
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}; -- case clf
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asp = Imperfective ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n => ""
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} ;
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CompAP zloj ={
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s= \\clf,gn,p => case clf of {
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-- person is ignored !
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ClInfinit => "быть" ++ zloj.s ! AF Inst Animate (ASg Masc) ;
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ClImper => case gn of
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{ (ASg _) => "будь" ++ zloj.s ! AF Inst Animate (ASg Masc);
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APl => "будьте" ++ zloj.s ! AF Inst Animate APl
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};
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-- infinitive does not save GenNum,
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-- but indicative does for the sake of adjectival predication !
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ClIndic Present _ => zloj.s ! AF Nom Animate gn ;
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ClIndic PastRus _ => case gn of
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{ (ASg Fem) => "была" ++ zloj.s! AF Nom Animate (ASg Fem);
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(ASg Masc) => "был" ++ zloj.s! AF Nom Animate (ASg Masc);
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(ASg Neut) => "был" ++ zloj.s! AF Nom Animate (ASg Neut);
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APl => "были" ++ zloj.s! AF Nom Animate APl
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};
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ClIndic Future _ => case gn of
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{ APl => case p of
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{ P3 => "будут" ++ zloj.s! AF Nom Animate APl;
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P2 => "будете" ++ zloj.s! AF Nom Animate APl;
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P1 => "будем" ++ zloj.s! AF Nom Animate APl
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} ;
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(ASg _) => case p of
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{P3 => "будет" ++ zloj.s! AF Nom Animate (ASg (genGNum gn));
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P2 => "будешь"++ zloj.s! AF Nom Animate (ASg (genGNum gn));
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P1=> "буду" ++ zloj.s! AF Nom Animate (ASg (genGNum gn))
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}
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};
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ClCondit => ""
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} ;
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asp = Imperfective ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n=> ""
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} ;
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-- Verb phrases can also be formed from adjectives (" молод"),
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-- common nouns (" человек"), and noun phrases (" самый молодой").
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-- The third rule is overgenerating: " каждый человек" has to be ruled out
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-- on semantic grounds.
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-- Note: we omit a dash "-" because it will cause problems with negation word order:
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-- "Я не - волшебник". Alternatively, we can consider verb-based VP and
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-- all the rest.
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CompAdv zloj =
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{ s= \\clf,gn,p => case clf of {
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ClImper => case gn of
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{ ASg _ => "будь" ++ zloj.s; -- person is ignored !
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APl => "будьте" ++ zloj.s
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};
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ClInfinit => "быть" ++ zloj.s;
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ClIndic Present _ => zloj.s ;
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ClIndic PastRus _ => case gn of
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{ (ASg Fem) => "была" ++ zloj.s;
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(ASg Masc) => "был" ++ zloj.s;
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(ASg Neut) => "было" ++ zloj.s;
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APl => "были" ++ zloj.s
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};
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ClIndic Future _ => case gn of
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{ (ASg _) => "будет" ++ zloj.s;
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APl => "будут" ++ zloj.s
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};
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ClCondit => ""
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} ;
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asp = Imperfective ;
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w = Act;
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s2 = "";
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negBefore = True;
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s3 = \\g,n => ""
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} ;
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UseComp comp = comp ;
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UseVS, UseVQ = \vv -> {s = vv.s ; asp = vv.asp; s2 = [] ; c = Acc} ;
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-- CompAP ap = ap ;
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-- CompNP np = {s = \\_ => np.s ! Acc} ;
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-- CompAdv a = {s = \\_ => a.s} ;
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-- A simple verb can be made into a verb phrase with an empty complement.
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-- There are two versions, depending on if we want to negate the verb.
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-- N.B. negation is *not* a function applicable to a verb phrase, since
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-- double negations with "inte" are not grammatical.
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UseV se =
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{s=\\clf,gn,p => se.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p) ;
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asp = se.asp ;
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w=Act;
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s2 = "";
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negBefore = True;
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s3 = table{_=> table{_ => ""}}
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} ;
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-- The rule for using transitive verbs is the complementization rule:
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ComplV2 se tu =
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{s =\\clf,gn,p => se.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p)
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++ se.s2 ++ tu.s ! (mkPronForm se.c No NonPoss) ;
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asp = se.asp ;
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w = Act;
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s2 = "";
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s3 = \\g,n => "";
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negBefore = True
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} ;
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ComplV3 dat tu pivo =
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let
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tebepivo = dat.s2 ++
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tu.s ! PF dat.c No NonPoss ++ dat.s4 ++ pivo.s ! PF dat.c2 Yes NonPoss
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in
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{s = \\clf,gn,p => dat.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p) ++ tebepivo ;
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asp = dat.asp ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n=> ""
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} ;
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ReflV2 v =
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{ s = \\clf,gn,p => v.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p) ++ v.s2 ++ sebya!v.c;
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asp = v.asp ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n=> ""
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} ;
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-- To generate "сказал, что Иван гуляет" / "не сказал, что Иван гуляет":
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ComplVS vidit tuUlubaeshsya =
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{s = \\clf,gn,p => vidit.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p)
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++ [", что"] ++ tuUlubaeshsya.s ;
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asp = vidit.asp;
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w = Act;
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s2="";
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negBefore = True;
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s3 = \\g,n => ""
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} ;
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-- To generate "can walk"/"can't walk"; "tries to walk"/"does not try to walk":
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-- The contraction of "not" is not provided, since it would require changing
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-- the verb parameter type.
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ComplVV putatsya bezhat =
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{ s = \\clf,gn,p => putatsya.s ! (getActVerbForm clf (genGNum gn)
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(numGNum gn) p) ++ bezhat.s!ClInfinit !gn!p ;
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asp = putatsya.asp ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 =\\g,n => ""
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} ;
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ComplVQ dat esliOnPridet =
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{s = \\clf,gn,p => dat.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p) ++ esliOnPridet.s ! QDir ;
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asp = dat.asp ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n=> ""
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} ;
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ComplVA vuglyadet molodoj =
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{s = \\clf,gn,p => vuglyadet.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p) ;
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asp = vuglyadet.asp ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n => molodoj.s!(AF Inst Animate (gNum g n))
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} ;
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ComplV2A obechat tu molodoj =
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{s = \\clf,gn,p => obechat.s2++
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obechat.s ! (getActVerbForm clf (genGNum gn) (numGNum gn) p) ++
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tu.s ! PF obechat.c No NonPoss ++
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molodoj.s!AF Inst tu.anim (pgNum tu.g tu.n) ;
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asp = obechat.asp ;
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w = Act;
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negBefore = True;
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s2 = "";
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s3 = \\g,n =>""
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} ;
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AdvVP poet khorosho =
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{s = \\clf,gn,p => poet.s ! clf!gn!p; s2 = poet.s2 ++ khorosho.s; s3 = poet.s3;
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asp = poet.asp; w = poet.w; t = poet.t ; negBefore = poet.negBefore } ;
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AdVVP khorosho poet =
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{s = \\clf,gn,p => poet.s ! clf!gn!p; s2 = khorosho.s ++ poet.s2; s3 = poet.s3;
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asp = poet.asp; w = poet.w; t = poet.t ; negBefore = poet.negBefore } ;
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PassV2 se =
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{s=\\clf,gn,p => se.s ! (getPassVerbForm clf (genGNum gn) (numGNum gn) p) ;
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asp=se.asp; w=Pass; s2 = se.s2;
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negBefore = True;
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s3 = table{_=> table{_ => ""}}
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};
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}
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