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module Quox.Syntax.Term.Split
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import Quox.Syntax.Term.Base
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import Quox.Syntax.Term.Subst
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import Data.So
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import Data.Vect
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%default total
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public export
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data IsLam : Term {} -> Type where
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ItIsLam : IsLam $ Lam x body
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public export %inline
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isLam : (s : Term {}) -> Dec (IsLam s)
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isLam (TYPE _) = No $ \case _ impossible
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isLam (Pi {}) = No $ \case _ impossible
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isLam (Lam {}) = Yes ItIsLam
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isLam (E _) = No $ \case _ impossible
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isLam (CloT {}) = No $ \case _ impossible
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isLam (DCloT {}) = No $ \case _ impossible
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public export %inline
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NotLam : Term {} -> Type
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NotLam = Not . IsLam
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public export
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data IsApp : Elim {} -> Type where
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ItIsApp : IsApp $ f :@ s
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public export %inline
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isApp : (e : Elim {}) -> Dec (IsApp e)
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isApp (F _) = No $ \case _ impossible
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isApp (B _) = No $ \case _ impossible
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isApp (_ :@ _) = Yes ItIsApp
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isApp (_ :# _) = No $ \case _ impossible
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isApp (CloE {}) = No $ \case _ impossible
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isApp (DCloE {}) = No $ \case _ impossible
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public export
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NotApp : Elim {} -> Type
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NotApp = Not . IsApp
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infixl 9 :@@
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||| apply multiple arguments at once
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public export %inline
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(:@@) : Elim q d n -> List (Term q d n) -> Elim q d n
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f :@@ ss = foldl (:@) f ss
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public export
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record GetArgs q d n where
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constructor GotArgs
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fun : Elim q d n
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args : List (Term q d n)
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0 notApp : NotApp fun
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export
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getArgs' : Elim q d n -> List (Term q d n) -> GetArgs q d n
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getArgs' fun args with (isApp fun)
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getArgs' (f :@ a) args | Yes yes = getArgs' f (a :: args)
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getArgs' fun args | No no = GotArgs {fun, args, notApp = no}
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||| splits an application into its head and arguments. if it's not an
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||| application then the list is just empty
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export %inline
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getArgs : Elim q d n -> GetArgs q d n
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getArgs e = getArgs' e []
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infixr 1 :\\
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public export
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absN : Vect m Name -> Term q d (m + n) -> Term q d n
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absN {m = 0} [] s = s
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absN {m = S m} (x :: xs) s = Lam x $ TUsed $ absN xs $
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rewrite sym $ plusSuccRightSucc m n in s
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public export %inline
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(:\\) : Vect m Name -> Term q d (m + n) -> Term q d n
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(:\\) = absN
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public export
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record GetLams q d n where
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constructor GotLams
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names : Vect lams Name
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body : Term q d rest
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0 eq : lams + n = rest
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0 notLam : NotLam body
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export
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getLams' : forall lams, rest.
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Vect lams Name -> Term q d rest -> lams + n = rest -> GetLams q d n
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getLams' xs s eq with (isLam s)
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getLams' xs (Lam x sbody) Refl | Yes ItIsLam =
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let 0 s = Lam x sbody
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body = assert_smaller s $ fromScopeTerm sbody
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in
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getLams' (x :: xs) body Refl
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getLams' xs s eq | No no =
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GotLams xs s eq no
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export
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getLams : Term q d n -> GetLams q d n
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getLams s = getLams' [] s Refl
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