mirror of
https://github.com/GrammaticalFramework/gf-core.git
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228 lines
11 KiB
Haskell
228 lines
11 KiB
Haskell
{-# OPTIONS_GHC -fglasgow-exts #-}
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module GFCC.Abs (Tree(..), Grammar, Header, Abstract, Concrete, AbsDef, CncDef, Type, Exp, Atom, Term, Tokn, Variant, CId, johnMajorEq, module GFCC.ComposOp) where
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import GFCC.ComposOp
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import Data.Monoid
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-- Haskell module generated by the BNF converter
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data Grammar_
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type Grammar = Tree Grammar_
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data Header_
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type Header = Tree Header_
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data Abstract_
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type Abstract = Tree Abstract_
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data Concrete_
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type Concrete = Tree Concrete_
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data AbsDef_
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type AbsDef = Tree AbsDef_
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data CncDef_
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type CncDef = Tree CncDef_
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data Type_
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type Type = Tree Type_
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data Exp_
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type Exp = Tree Exp_
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data Atom_
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type Atom = Tree Atom_
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data Term_
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type Term = Tree Term_
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data Tokn_
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type Tokn = Tree Tokn_
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data Variant_
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type Variant = Tree Variant_
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data CId_
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type CId = Tree CId_
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data Tree :: * -> * where
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Grm :: Header -> Abstract -> [Concrete] -> Tree Grammar_
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Hdr :: CId -> [CId] -> Tree Header_
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Abs :: [AbsDef] -> Tree Abstract_
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Cnc :: CId -> [CncDef] -> Tree Concrete_
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Fun :: CId -> Type -> Exp -> Tree AbsDef_
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Lin :: CId -> Term -> Tree CncDef_
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Typ :: [CId] -> CId -> Tree Type_
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Tr :: Atom -> [Exp] -> Tree Exp_
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AC :: CId -> Tree Atom_
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AS :: String -> Tree Atom_
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AI :: Integer -> Tree Atom_
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AF :: Double -> Tree Atom_
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AM :: Tree Atom_
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R :: [Term] -> Tree Term_
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P :: Term -> Term -> Tree Term_
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S :: [Term] -> Tree Term_
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K :: Tokn -> Tree Term_
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V :: Integer -> Tree Term_
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C :: Integer -> Tree Term_
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F :: CId -> Tree Term_
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FV :: [Term] -> Tree Term_
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W :: String -> Term -> Tree Term_
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RP :: Term -> Term -> Tree Term_
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TM :: Tree Term_
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L :: CId -> Term -> Tree Term_
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BV :: CId -> Tree Term_
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KS :: String -> Tree Tokn_
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KP :: [String] -> [Variant] -> Tree Tokn_
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Var :: [String] -> [String] -> Tree Variant_
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CId :: String -> Tree CId_
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instance Compos Tree where
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compos r a f t = case t of
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Grm header abstract concretes -> r Grm `a` f header `a` f abstract `a` foldr (a . a (r (:)) . f) (r []) concretes
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Hdr cid cids -> r Hdr `a` f cid `a` foldr (a . a (r (:)) . f) (r []) cids
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Abs absdefs -> r Abs `a` foldr (a . a (r (:)) . f) (r []) absdefs
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Cnc cid cncdefs -> r Cnc `a` f cid `a` foldr (a . a (r (:)) . f) (r []) cncdefs
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Fun cid type' exp -> r Fun `a` f cid `a` f type' `a` f exp
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Lin cid term -> r Lin `a` f cid `a` f term
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Typ cids cid -> r Typ `a` foldr (a . a (r (:)) . f) (r []) cids `a` f cid
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Tr atom exps -> r Tr `a` f atom `a` foldr (a . a (r (:)) . f) (r []) exps
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AC cid -> r AC `a` f cid
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R terms -> r R `a` foldr (a . a (r (:)) . f) (r []) terms
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P term0 term1 -> r P `a` f term0 `a` f term1
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S terms -> r S `a` foldr (a . a (r (:)) . f) (r []) terms
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K tokn -> r K `a` f tokn
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F cid -> r F `a` f cid
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FV terms -> r FV `a` foldr (a . a (r (:)) . f) (r []) terms
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W str term -> r W `a` r str `a` f term
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RP term0 term1 -> r RP `a` f term0 `a` f term1
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L cid term -> r L `a` f cid `a` f term
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BV cid -> r BV `a` f cid
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KP strs variants -> r KP `a` r strs `a` foldr (a . a (r (:)) . f) (r []) variants
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_ -> r t
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instance Show (Tree c) where
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showsPrec n t = case t of
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Grm header abstract concretes -> opar n . showString "Grm" . showChar ' ' . showsPrec 1 header . showChar ' ' . showsPrec 1 abstract . showChar ' ' . showsPrec 1 concretes . cpar n
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Hdr cid cids -> opar n . showString "Hdr" . showChar ' ' . showsPrec 1 cid . showChar ' ' . showsPrec 1 cids . cpar n
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Abs absdefs -> opar n . showString "Abs" . showChar ' ' . showsPrec 1 absdefs . cpar n
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Cnc cid cncdefs -> opar n . showString "Cnc" . showChar ' ' . showsPrec 1 cid . showChar ' ' . showsPrec 1 cncdefs . cpar n
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Fun cid type' exp -> opar n . showString "Fun" . showChar ' ' . showsPrec 1 cid . showChar ' ' . showsPrec 1 type' . showChar ' ' . showsPrec 1 exp . cpar n
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Lin cid term -> opar n . showString "Lin" . showChar ' ' . showsPrec 1 cid . showChar ' ' . showsPrec 1 term . cpar n
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Typ cids cid -> opar n . showString "Typ" . showChar ' ' . showsPrec 1 cids . showChar ' ' . showsPrec 1 cid . cpar n
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Tr atom exps -> opar n . showString "Tr" . showChar ' ' . showsPrec 1 atom . showChar ' ' . showsPrec 1 exps . cpar n
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AC cid -> opar n . showString "AC" . showChar ' ' . showsPrec 1 cid . cpar n
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AS str -> opar n . showString "AS" . showChar ' ' . showsPrec 1 str . cpar n
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AI n -> opar n . showString "AI" . showChar ' ' . showsPrec 1 n . cpar n
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AF d -> opar n . showString "AF" . showChar ' ' . showsPrec 1 d . cpar n
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AM -> showString "AM"
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R terms -> opar n . showString "R" . showChar ' ' . showsPrec 1 terms . cpar n
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P term0 term1 -> opar n . showString "P" . showChar ' ' . showsPrec 1 term0 . showChar ' ' . showsPrec 1 term1 . cpar n
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S terms -> opar n . showString "S" . showChar ' ' . showsPrec 1 terms . cpar n
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K tokn -> opar n . showString "K" . showChar ' ' . showsPrec 1 tokn . cpar n
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V n -> opar n . showString "V" . showChar ' ' . showsPrec 1 n . cpar n
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C n -> opar n . showString "C" . showChar ' ' . showsPrec 1 n . cpar n
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F cid -> opar n . showString "F" . showChar ' ' . showsPrec 1 cid . cpar n
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FV terms -> opar n . showString "FV" . showChar ' ' . showsPrec 1 terms . cpar n
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W str term -> opar n . showString "W" . showChar ' ' . showsPrec 1 str . showChar ' ' . showsPrec 1 term . cpar n
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RP term0 term1 -> opar n . showString "RP" . showChar ' ' . showsPrec 1 term0 . showChar ' ' . showsPrec 1 term1 . cpar n
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TM -> showString "TM"
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L cid term -> opar n . showString "L" . showChar ' ' . showsPrec 1 cid . showChar ' ' . showsPrec 1 term . cpar n
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BV cid -> opar n . showString "BV" . showChar ' ' . showsPrec 1 cid . cpar n
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KS str -> opar n . showString "KS" . showChar ' ' . showsPrec 1 str . cpar n
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KP strs variants -> opar n . showString "KP" . showChar ' ' . showsPrec 1 strs . showChar ' ' . showsPrec 1 variants . cpar n
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Var strs0 strs1 -> opar n . showString "Var" . showChar ' ' . showsPrec 1 strs0 . showChar ' ' . showsPrec 1 strs1 . cpar n
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CId str -> opar n . showString "CId" . showChar ' ' . showsPrec 1 str . cpar n
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where opar n = if n > 0 then showChar '(' else id
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cpar n = if n > 0 then showChar ')' else id
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instance Eq (Tree c) where (==) = johnMajorEq
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johnMajorEq :: Tree a -> Tree b -> Bool
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johnMajorEq (Grm header abstract concretes) (Grm header_ abstract_ concretes_) = header == header_ && abstract == abstract_ && concretes == concretes_
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johnMajorEq (Hdr cid cids) (Hdr cid_ cids_) = cid == cid_ && cids == cids_
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johnMajorEq (Abs absdefs) (Abs absdefs_) = absdefs == absdefs_
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johnMajorEq (Cnc cid cncdefs) (Cnc cid_ cncdefs_) = cid == cid_ && cncdefs == cncdefs_
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johnMajorEq (Fun cid type' exp) (Fun cid_ type'_ exp_) = cid == cid_ && type' == type'_ && exp == exp_
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johnMajorEq (Lin cid term) (Lin cid_ term_) = cid == cid_ && term == term_
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johnMajorEq (Typ cids cid) (Typ cids_ cid_) = cids == cids_ && cid == cid_
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johnMajorEq (Tr atom exps) (Tr atom_ exps_) = atom == atom_ && exps == exps_
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johnMajorEq (AC cid) (AC cid_) = cid == cid_
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johnMajorEq (AS str) (AS str_) = str == str_
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johnMajorEq (AI n) (AI n_) = n == n_
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johnMajorEq (AF d) (AF d_) = d == d_
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johnMajorEq AM AM = True
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johnMajorEq (R terms) (R terms_) = terms == terms_
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johnMajorEq (P term0 term1) (P term0_ term1_) = term0 == term0_ && term1 == term1_
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johnMajorEq (S terms) (S terms_) = terms == terms_
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johnMajorEq (K tokn) (K tokn_) = tokn == tokn_
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johnMajorEq (V n) (V n_) = n == n_
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johnMajorEq (C n) (C n_) = n == n_
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johnMajorEq (F cid) (F cid_) = cid == cid_
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johnMajorEq (FV terms) (FV terms_) = terms == terms_
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johnMajorEq (W str term) (W str_ term_) = str == str_ && term == term_
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johnMajorEq (RP term0 term1) (RP term0_ term1_) = term0 == term0_ && term1 == term1_
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johnMajorEq TM TM = True
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johnMajorEq (L cid term) (L cid_ term_) = cid == cid_ && term == term_
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johnMajorEq (BV cid) (BV cid_) = cid == cid_
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johnMajorEq (KS str) (KS str_) = str == str_
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johnMajorEq (KP strs variants) (KP strs_ variants_) = strs == strs_ && variants == variants_
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johnMajorEq (Var strs0 strs1) (Var strs0_ strs1_) = strs0 == strs0_ && strs1 == strs1_
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johnMajorEq (CId str) (CId str_) = str == str_
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johnMajorEq _ _ = False
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instance Ord (Tree c) where
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compare x y = compare (index x) (index y) `mappend` compareSame x y
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index :: Tree c -> Int
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index (Grm _ _ _) = 0
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index (Hdr _ _) = 1
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index (Abs _) = 2
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index (Cnc _ _) = 3
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index (Fun _ _ _) = 4
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index (Lin _ _) = 5
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index (Typ _ _) = 6
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index (Tr _ _) = 7
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index (AC _) = 8
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index (AS _) = 9
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index (AI _) = 10
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index (AF _) = 11
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index (AM ) = 12
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index (R _) = 13
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index (P _ _) = 14
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index (S _) = 15
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index (K _) = 16
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index (V _) = 17
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index (C _) = 18
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index (F _) = 19
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index (FV _) = 20
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index (W _ _) = 21
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index (RP _ _) = 22
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index (TM ) = 23
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index (L _ _) = 24
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index (BV _) = 25
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index (KS _) = 26
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index (KP _ _) = 27
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index (Var _ _) = 28
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index (CId _) = 29
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compareSame :: Tree c -> Tree c -> Ordering
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compareSame (Grm header abstract concretes) (Grm header_ abstract_ concretes_) = mappend (compare header header_) (mappend (compare abstract abstract_) (compare concretes concretes_))
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compareSame (Hdr cid cids) (Hdr cid_ cids_) = mappend (compare cid cid_) (compare cids cids_)
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compareSame (Abs absdefs) (Abs absdefs_) = compare absdefs absdefs_
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compareSame (Cnc cid cncdefs) (Cnc cid_ cncdefs_) = mappend (compare cid cid_) (compare cncdefs cncdefs_)
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compareSame (Fun cid type' exp) (Fun cid_ type'_ exp_) = mappend (compare cid cid_) (mappend (compare type' type'_) (compare exp exp_))
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compareSame (Lin cid term) (Lin cid_ term_) = mappend (compare cid cid_) (compare term term_)
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compareSame (Typ cids cid) (Typ cids_ cid_) = mappend (compare cids cids_) (compare cid cid_)
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compareSame (Tr atom exps) (Tr atom_ exps_) = mappend (compare atom atom_) (compare exps exps_)
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compareSame (AC cid) (AC cid_) = compare cid cid_
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compareSame (AS str) (AS str_) = compare str str_
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compareSame (AI n) (AI n_) = compare n n_
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compareSame (AF d) (AF d_) = compare d d_
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compareSame AM AM = EQ
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compareSame (R terms) (R terms_) = compare terms terms_
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compareSame (P term0 term1) (P term0_ term1_) = mappend (compare term0 term0_) (compare term1 term1_)
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compareSame (S terms) (S terms_) = compare terms terms_
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compareSame (K tokn) (K tokn_) = compare tokn tokn_
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compareSame (V n) (V n_) = compare n n_
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compareSame (C n) (C n_) = compare n n_
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compareSame (F cid) (F cid_) = compare cid cid_
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compareSame (FV terms) (FV terms_) = compare terms terms_
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compareSame (W str term) (W str_ term_) = mappend (compare str str_) (compare term term_)
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compareSame (RP term0 term1) (RP term0_ term1_) = mappend (compare term0 term0_) (compare term1 term1_)
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compareSame TM TM = EQ
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compareSame (L cid term) (L cid_ term_) = mappend (compare cid cid_) (compare term term_)
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compareSame (BV cid) (BV cid_) = compare cid cid_
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compareSame (KS str) (KS str_) = compare str str_
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compareSame (KP strs variants) (KP strs_ variants_) = mappend (compare strs strs_) (compare variants variants_)
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compareSame (Var strs0 strs1) (Var strs0_ strs1_) = mappend (compare strs0 strs0_) (compare strs1 strs1_)
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compareSame (CId str) (CId str_) = compare str str_
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compareSame x y = error "BNFC error:" compareSame
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