clean up some vscode noise from backtracking
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@@ -94,7 +94,7 @@ compileTerm tm@(App _ _ _) with (funArgs tm)
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arity <- case meta of
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-- maybe throw
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(Unsolved x j ctx _ _ _) => pure 0 -- FIXME # of Bound in ctx.bds
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(Solved j tm) => pure $ getArity !(quote 0 tm)
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(Solved _ j tm) => pure $ getArity !(quote 0 tm)
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apply (CRef "Meta\{show k}") args' [<] arity
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_ | (t@(Ref fc nm _), args) = do
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args' <- traverse compileTerm args
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@@ -55,7 +55,7 @@ export
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forceMeta : Val -> M Val
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forceMeta (VMeta fc ix sp) = case !(lookupMeta ix) of
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(Unsolved pos k xs _ _ _) => pure (VMeta fc ix sp)
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(Solved k t) => vappSpine t sp >>= forceMeta
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(Solved _ k t) => vappSpine t sp >>= forceMeta
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forceMeta x = pure x
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tryEval : String -> SnocList Val -> M (Maybe Val)
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@@ -72,7 +72,7 @@ tryEval k sp =
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forceType : Val -> M Val
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forceType (VMeta fc ix sp) = case !(lookupMeta ix) of
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(Unsolved x k xs _ _ _) => pure (VMeta fc ix sp)
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(Solved k t) => vappSpine t sp >>= forceType
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(Solved _ k t) => vappSpine t sp >>= forceType
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forceType x@(VRef fc nm _ sp) = fromMaybe x <$> tryEval nm sp
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forceType x = pure x
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@@ -99,7 +99,7 @@ updateMeta ctx ix f = do
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go : List MetaEntry -> M (List MetaEntry)
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go [] = error' "Meta \{show ix} not found"
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go (x@((Unsolved y k z w v ys)) :: xs) = if k == ix then (::xs) <$> f x else (x ::) <$> go xs
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go (x@((Solved k y)) :: xs) = if k == ix then (::xs) <$> f x else (x ::) <$> go xs
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go (x@((Solved _ k y)) :: xs) = if k == ix then (::xs) <$> f x else (x ::) <$> go xs
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export
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addConstraint : Context -> Nat -> SnocList Val -> Val -> M ()
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@@ -107,9 +107,9 @@ addConstraint ctx ix sp tm = do
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mc <- readIORef ctx.metas
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updateMeta ctx ix $ \case
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(Unsolved pos k a b c cons) => do
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info (getFC tm) "Add constraint m\{show ix} \{show sp} =?= \{show tm}"
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debug "Add constraint m\{show ix} \{show sp} =?= \{show tm}"
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pure (Unsolved pos k a b c (MkMc (getFC tm) ctx sp tm :: cons))
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(Solved k tm) => error' "Meta \{show k} already solved"
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(Solved _ k tm) => error' "Meta \{show k} already solved"
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pure ()
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parameters (ctx: Context)
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@@ -191,26 +191,14 @@ parameters (ctx: Context)
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soln <- eval [] CBN tm
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updateMeta ctx m $ \case
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(Unsolved pos k _ _ _ cons) => do
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putStrLn "INFO at \{show pos}: solve \{show k} as \{pprint [] !(quote 0 soln)}"
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pure $ Solved k soln
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(Solved k x) => error' "Meta \{show ix} already solved!"
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(Unsolved pos k _ _ _ cons) => pure $ Solved pos k soln
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(Solved _ k x) => error' "Meta \{show ix} already solved!"
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for_ cons $ \case
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MkMc fc ctx sp rhs => do
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val <- vappSpine soln sp
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debug "discharge l=\{show ctx.lvl} \{(show val)} =?= \{(show rhs)}"
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unify ctx.lvl val rhs
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pure ()
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trySolve : Nat -> Nat -> SnocList Val -> Val -> M ()
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trySolve l m sp t = do
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catchError {e=Error} (solve l m sp t) $ (\err => do
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debug $ showError "" err
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pure ())
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unifySpine : Nat -> Bool -> SnocList Val -> SnocList Val -> M UnifyResult
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unifySpine l False _ _ = error emptyFC "unify failed at head" -- unreachable now
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unifySpine l True [<] [<] = pure (MkResult [])
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@@ -80,7 +80,7 @@ eval env mode (U fc) = pure (VU fc)
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eval env mode (Meta fc i) =
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case !(lookupMeta i) of
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(Unsolved _ k xs _ _ _) => pure $ VMeta fc i [<]
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(Solved k t) => pure $ t
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(Solved _ k t) => pure $ t
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eval env mode (Lam fc x t) = pure $ VLam fc x (MkClosure env t)
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eval env mode (Pi fc x icit a b) = pure $ VPi fc x icit !(eval env mode a) (MkClosure env b)
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eval env mode (Let fc nm t u) = pure $ VLet fc nm !(eval env mode t) (MkClosure env u)
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@@ -113,7 +113,7 @@ quote l (VVar fc k sp) = if k < l
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quote l (VMeta fc i sp) =
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case !(lookupMeta i) of
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(Unsolved _ k xs _ _ _) => quoteSp l (Meta fc i) sp
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(Solved k t) => quote l !(vappSpine t sp)
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(Solved _ k t) => quote l !(vappSpine t sp)
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quote l (VLam fc x t) = pure $ Lam fc x !(quote (S l) !(t $$ VVar emptyFC l [<]))
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quote l (VPi fc x icit a b) = pure $ Pi fc x icit !(quote l a) !(quote (S l) !(b $$ VVar emptyFC l [<]))
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quote l (VLet fc nm t u) = pure $ Let fc nm !(quote l t) !(quote (S l) !(u $$ VVar emptyFC l [<]))
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@@ -162,7 +162,7 @@ appSpine t (x :: xs) = appSpine (App (getFC t) t x) xs
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zonkApp : TopContext -> Nat -> Env -> Tm -> List Tm -> M Tm
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zonkApp top l env (App fc t u) sp = zonkApp top l env t (!(zonk top l env u) :: sp)
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zonkApp top l env t@(Meta fc k) sp = case !(lookupMeta k) of
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(Solved j v) => do
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(Solved _ j v) => do
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sp' <- traverse (eval env CBN) sp
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debug "zonk \{show k} -> \{show v} spine \{show sp'}"
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foo <- vappSpine v ([<] <>< sp')
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@@ -159,7 +159,7 @@ processDecl (Def fc nm clauses) = do
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mc <- readIORef top.metas
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for_ (take mlen mc.metas) $ \case
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(Solved k x) => pure ()
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(Solved fc k soln) => info fc "solve \{show k} as \{pprint [] !(quote 0 soln)}"
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(Unsolved fc k ctx ty User cons) => do
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ty' <- quote ctx.lvl ty
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let names = (toList $ map fst ctx.types)
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@@ -330,7 +330,7 @@ public export
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data MConstraint = MkMc FC Context (SnocList Val) Val
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public export
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data MetaEntry = Unsolved FC Nat Context Val MetaKind (List MConstraint) | Solved Nat Val
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data MetaEntry = Unsolved FC Nat Context Val MetaKind (List MConstraint) | Solved FC Nat Val
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public export
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@@ -422,7 +422,7 @@ export
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covering
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Show MetaEntry where
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show (Unsolved pos k ctx ty kind constraints) = "Unsolved \{show pos} \{show k} \{show kind} : \{show ty} \{show ctx.bds} cs \{show $ length constraints}"
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show (Solved k x) = "Solved \{show k} \{show x}"
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show (Solved _ k x) = "Solved \{show k} \{show x}"
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export withPos : Context -> FC -> Context
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withPos ctx fc = { fc := fc } ctx
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@@ -435,6 +435,24 @@ public export
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M : Type -> Type
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M = (StateT TopContext (EitherT Impl.Error IO))
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||| Force argument and print if verbose is true
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export
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debug : Lazy String -> M ()
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debug x = do
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top <- get
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when top.verbose $ putStrLn x
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export
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info : FC -> String -> M ()
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info fc msg = putStrLn "INFO at \{show fc}: \{msg}"
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||| Version of debug that makes monadic computation lazy
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export
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debugM : M String -> M ()
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debugM x = do
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top <- get
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when top.verbose $ do putStrLn !(x)
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export partial
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Show Context where
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show ctx = "Context \{show $ map fst $ ctx.types}"
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@@ -451,7 +469,7 @@ export
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freshMeta : Context -> FC -> Val -> MetaKind -> M Tm
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freshMeta ctx fc ty kind = do
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mc <- readIORef ctx.metas
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putStrLn "INFO at \{show fc}: fresh meta \{show mc.next} : \{show ty}"
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debug "fresh meta \{show mc.next} : \{show ty}"
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writeIORef ctx.metas $ { next $= S, metas $= (Unsolved fc mc.next ctx ty kind [] ::) } mc
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pure $ applyBDs 0 (Meta emptyFC mc.next) ctx.bds
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where
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@@ -477,28 +495,10 @@ lookupMeta ix = do
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go : List MetaEntry -> M MetaEntry
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go [] = error' "Meta \{show ix} not found"
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go (meta@(Unsolved _ k ys _ _ _) :: xs) = if k == ix then pure meta else go xs
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go (meta@(Solved k x) :: xs) = if k == ix then pure meta else go xs
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go (meta@(Solved _ k x) :: xs) = if k == ix then pure meta else go xs
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-- we need more of topcontext later - Maybe switch it up so we're not passing
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-- around top
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export
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mkCtx : IORef MetaContext -> FC -> Context
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mkCtx metas fc = MkCtx 0 [] [] [] metas fc
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||| Force argument and print if verbose is true
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export
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debug : Lazy String -> M ()
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debug x = do
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top <- get
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when top.verbose $ putStrLn x
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export
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info : FC -> String -> M ()
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info fc msg = putStrLn "INFO at \{show fc}: \{msg}"
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export
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debugM : M String -> M ()
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debugM x = do
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top <- get
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when top.verbose $ do putStrLn !(x)
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