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module Quox.Typing
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import public Quox.Syntax
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import public Quox.Context
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import public Quox.Definition
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import Data.Nat
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import public Data.SortedMap
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import Control.Monad.Either
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import Control.Monad.Reader
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import Control.Monad.State
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import Generics.Derive
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%hide TT.Name
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%hide SOP.from
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%hide SOP.to
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%default total
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%language ElabReflection
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%default total
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public export
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data DContext : Nat -> Type where
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DNil : DContext 0
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DBind : DContext d -> DContext (S d)
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DEq : Dim d -> Dim d -> DContext d -> DContext d
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public export
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TContext : Type -> Nat -> Nat -> Type
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TContext q d = Context (Term q d)
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public export
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QContext : Type -> Nat -> Type
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QContext = Context'
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public export
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QOutput : Type -> Nat -> Type
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QOutput = QContext
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public export
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record TyContext q d n where
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constructor MkTyContext
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dctx : DContext d
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tctx : TContext q d n
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qctx : QContext q n
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%name TyContext ctx
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namespace TContext
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export
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pushD : TContext q d n -> TContext q (S d) n
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pushD tel = map (/// shift 1) tel
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export
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zeroed : IsQty q => TyContext q d n -> TyContext q d n
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zeroed = {qctx $= map (const zero)}
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namespace TyContext
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export
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extendTyN : Telescope (\n => (Term q d n, q)) from to ->
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TyContext q d from -> TyContext q d to
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extendTyN ss = {tctx $= (. map fst ss), qctx $= (. map snd ss)}
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export
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extendTy : Term q d n -> q -> TyContext q d n -> TyContext q d (S n)
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extendTy s rho = extendTyN [< (s, rho)]
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export
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extendDim : TyContext q d n -> TyContext q (S d) n
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extendDim = {dctx $= DBind, tctx $= pushD}
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export
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eqDim : Dim d -> Dim d -> TyContext q d n -> TyContext q d n
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eqDim p q = {dctx $= DEq p q}
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namespace QOutput
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parameters {auto _ : IsQty q}
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export
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(+) : QOutput q n -> QOutput q n -> QOutput q n
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(+) = zipWith (+)
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export
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(*) : q -> QOutput q n -> QOutput q n
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(*) pi = map (pi *)
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export
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zero : {n : Nat} -> QOutput q n
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zero = pure zero
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export
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zeroFor : TyContext q _ n -> QOutput q n
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zeroFor ctx = zero <$ ctx.tctx
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public export
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CheckResult : Type -> Nat -> Type
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CheckResult = QOutput
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public export
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record InferResult q d n where
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constructor InfRes
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type : Term q d n
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qout : QOutput q n
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public export
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data EqMode = Equal | Sub
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%runElab derive "EqMode" [Generic, Meta, Eq, Ord, DecEq, Show]
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public export
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data Error q
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= ExpectedTYPE (Term q d n)
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| ExpectedPi (Term q d n)
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| ExpectedSig (Term q d n)
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| ExpectedEq (Term q d n)
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| BadUniverse Universe Universe
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-- first arg of ClashT is the type
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| ClashT EqMode (Term q d n) (Term q d n) (Term q d n)
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| ClashE EqMode (Elim q d n) (Elim q d n)
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| ClashU EqMode Universe Universe
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| ClashQ q q
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| ClashD (Dim d) (Dim d)
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| NotInScope Name
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| NotType (Term q d n)
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| WrongType (Term q d n) (Term q d n) (Term q d n)
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public export
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0 HasErr : Type -> (Type -> Type) -> Type
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HasErr q = MonadError (Error q)
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export %inline
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ucmp : EqMode -> Universe -> Universe -> Bool
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ucmp Sub = (<=)
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ucmp Equal = (==)
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parameters {auto _ : HasErr q m}
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export %inline
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expect : Eq a => (a -> a -> Error q) -> (a -> a -> Bool) -> a -> a -> m ()
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expect err cmp x y = unless (x `cmp` y) $ throwError $ err x y
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export %inline
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expectEqualQ : Eq q => q -> q -> m ()
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expectEqualQ = expect ClashQ (==)
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export %inline
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expectCompatQ : IsQty q => q -> q -> m ()
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expectCompatQ = expect ClashQ $ \pi, rh => isYes $ pi `compat` rh
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export %inline
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expectModeU : EqMode -> Universe -> Universe -> m ()
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expectModeU mode = expect (ClashU mode) $ ucmp mode
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export %inline
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expectEqualD : Dim d -> Dim d -> m ()
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expectEqualD = expect ClashD (==)
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export
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lookupFree' : HasErr q m => Definitions' q g -> Name -> m (Definition' q g)
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lookupFree' defs x =
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case lookup x defs of
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Just d => pure d
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Nothing => throwError $ NotInScope x
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export
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substCasePairRet : Term q d n -> ScopeTerm q d n -> Term q d (2 + n)
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substCasePairRet dty retty =
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let arg = Pair (BVT 0) (BVT 1) :# (dty // fromNat 2) in
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retty.term // (arg ::: shift 2)
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