[Type-constraints] Comments on collectSpansTypes
Also some minor code cleaning
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@ -41,50 +41,77 @@ instance HasType (LPat Id) where
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----------------------------------------------------------------
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-- | Stores mapping from monomorphic to polymorphic types
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type CstGenQS = M.Map Var Type
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-- | Generic type to simplify SYB definition
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type CstGenQT a = forall m. GhcMonad m => a Id -> CstGenQS -> (m [(SrcSpan, Type)], CstGenQS)
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collectSpansTypes :: (GhcMonad m) => Bool -> G.TypecheckedModule -> (Int, Int) -> m [(SrcSpan, Type)]
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collectSpansTypes withConstraints tcs lc =
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-- This walks AST top-down, left-to-right, while carrying CstGenQS down the tree
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-- (but not left-to-right)
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everythingStagedWithContext TypeChecker M.empty (liftM2 (++))
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(return [])
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((return [],)
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`mkQ` (hsBind :: CstGenQT G.LHsBind)
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`extQ` (genericCT :: CstGenQT G.LHsExpr)
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`extQ` (genericCT :: CstGenQT G.LPat)
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`mkQ` (hsBind :: CstGenQT G.LHsBind) -- matches on binds
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`extQ` (genericCT :: CstGenQT G.LHsExpr) -- matches on expressions
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`extQ` (genericCT :: CstGenQT G.LPat) -- matches on patterns
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)
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(G.tm_typechecked_source tcs)
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where
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-- Helper function to insert mapping into CstGenQS
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insExp x = M.insert (G.abe_mono x) (G.varType $ G.abe_poly x)
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-- If there is AbsBinds here, insert mapping into CstGenQS if needed
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hsBind (L _ G.AbsBinds{abs_exports = es'}) s
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| withConstraints = (return [], foldr insExp s es')
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| otherwise = (return [], s)
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-- Otherwise, it's the same as other cases
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hsBind x s = genericCT x s
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genericCT x s = constrainedType' (collectBinders x) s x
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-- Generic SYB function to get type
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genericCT x s
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| withConstraints
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= (maybe [] (uncurry $ constrainedType (collectBinders x) s) <$> getType' x, s)
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| otherwise = (maybeToList <$> getType' x, s)
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-- Collects everything with Id from LHsBind, LHsExpr, or LPat
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collectBinders :: Data a => a -> [Id]
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collectBinders = listifyStaged TypeChecker (const True)
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-- Gets monomorphic type with location
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getType' x@(L spn _)
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| G.isGoodSrcSpan spn && spn `G.spans` lc
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= getType tcs x
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| otherwise = return Nothing
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constrainedType' pids s x
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| withConstraints
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= (maybe [] (uncurry $ constrainedType pids s) <$> getType' x, s)
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| otherwise = (maybeToList <$> getType' x, s)
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-- Gets constrained type
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constrainedType :: [Var] -- ^ Binders in expression, i.e. anything with Id
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-> CstGenQS -- ^ Map from Id to polymorphic type
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-> SrcSpan -- ^ extent of expression, copied to result
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-> Type -- ^ monomorphic type
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-> [(SrcSpan, Type)] -- ^ result
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constrainedType pids s spn genTyp =
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let
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-- runs build on every binder.
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ctys = mapMaybe build (nub pids)
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-- Computes constrained type for x. Returns (constraints, substitutions)
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-- Substitutions are needed because type variables don't match
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-- between polymorphic and monomorphic types.
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-- E.g. poly type might be `Monad m => m ()`, while monomorphic might be `f ()`
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build x | Just cti <- x `M.lookup` s
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= let
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(preds', ctt) = getPreds cti
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-- list of type variables in monomorphic type
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vts = listifyStaged TypeChecker G.isTyVar $ G.varType x
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-- list of type variables in polymorphic type
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tvm = listifyStaged TypeChecker G.isTyVarTy ctt
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in Just (preds', zip vts tvm)
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| otherwise = Nothing
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-- list of constraints
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preds = concatMap fst ctys
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-- Type variable substitutions
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subs = G.mkTopTvSubst $ concatMap snd ctys
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-- Constrained type
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ty = G.substTy subs $ G.mkFunTys preds genTyp
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in [(spn, ty)]
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-- Splits a given type into list of constraints and simple type. Drops foralls.
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getPreds :: Type -> ([Type], Type)
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getPreds x | G.isForAllTy x = getPreds $ G.dropForAlls x
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| Just (c, t) <- G.splitFunTy_maybe x
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, G.isPredTy c = first (c:) $ getPreds t
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