concrete ConjunctionPes of Conjunction = CatPes ** open ResPes, Coordination, Prelude in { flags optimize=all_subs ; lin ConjS = conjunctDistrSS ; ConjAdv = conjunctDistrSS ; -- ConjAdv conj advs = conjunctDistrTable Gender conj advs ; ConjNP conj ss = ss ** conjunctDistrTable Mod conj ss ** { a = conjAgr (agrP3 conj.n) ss.a ; animacy = ss.animacy ; } ; ConjAP conj ss = conjunctDistrTable Mod conj ss ** {adv = ss.adv}; ConjRS conj rs = conjunctDistrTable Agr conj rs ** { c = rs.c}; ---- These fun's are generated from the list cat's. BaseS = twoSS ; ConsS = consrSS comma ; BaseAdv = twoSS ; -- BaseAdv x y = twoTable Gender x y ; ConsAdv = consrSS comma ; -- ConsAdv xs x = consrTable Gender comma xs x ; BaseNP x y = y ** twoTable Mod x y ** {a = conjAgr x.a y.a ; animacy = y.animacy } ; -- check animacy BaseRS x y = twoTable Agr x y ** {c = x.c}; ConsNP xs x = xs ** consrTable Mod comma xs x ** {a = conjAgr xs.a x.a ; animacy = xs.animacy } ; -- InaandB xs.animacy x.animacy} ; ConsRS xs x = consrTable Agr comma xs x ** { c = xs.c}; -- BaseAP x y = twoTable3 Number Gender Case x y ; -- ** {isPre = andB x.isPre y.isPre} ; BaseAP x y = twoTable Mod x y ** {adv = x.adv}; ConsAP xs x = consrTable Mod comma xs x ** {adv = x.adv}; -- Table3 Number Gender Case comma xs x ;-- ** {isPre = andB xs.isPre x.isPre} ; lincat [S] = {s1,s2 : Str} ; [Adv] = {s1,s2 : Str} ; [NP] = {s1,s2 : Mod => Str ; a : Agr ; animacy : Animacy ; hasAdj : Bool} ; [AP] = {s1,s2 : Mod => Str ; adv : Str} ; [RS] = {s1,s2 : Agr => Str }; }