Merge branch 'type-constraints' of https://github.com/atom-haskell/ghc-mod into release-5.6.0.0
This commit is contained in:
commit
f994893c58
@ -44,6 +44,7 @@ module Language.Haskell.GhcMod.Gap (
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, Language.Haskell.GhcMod.Gap.isSynTyCon
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, parseModuleHeader
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, mkErrStyle'
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, everythingStagedWithContext
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) where
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import Control.Applicative hiding (empty)
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@ -115,6 +116,8 @@ import Lexer as L
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import Parser
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import SrcLoc
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import Packages
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import Data.Generics (GenericQ, extQ, gmapQ)
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import GHC.SYB.Utils (Stage(..))
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import Language.Haskell.GhcMod.Types (Expression(..))
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import Prelude
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@ -595,3 +598,20 @@ instance NFData ByteString where
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rnf Empty = ()
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rnf (Chunk _ b) = rnf b
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#endif
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-- | Like 'everything', but avoid known potholes, based on the 'Stage' that
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-- generated the Ast.
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everythingStagedWithContext :: Stage -> s -> (r -> r -> r) -> r -> GenericQ (s -> (r, s)) -> GenericQ r
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everythingStagedWithContext stage s0 f z q x
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| (const False
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#if __GLASGOW_HASKELL__ <= 708
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`extQ` postTcType
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#endif
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`extQ` fixity `extQ` nameSet) x = z
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| otherwise = foldl f r (gmapQ (everythingStagedWithContext stage s' f z q) x)
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where nameSet = const (stage `elem` [Parser,TypeChecker]) :: NameSet -> Bool
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#if __GLASGOW_HASKELL__ <= 708
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postTcType = const (stage<TypeChecker) :: PostTcType -> Bool
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#endif
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fixity = const (stage<Renamer) :: GHC.Fixity -> Bool
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(r, s') = q x s0
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@ -5,10 +5,9 @@ module Language.Haskell.GhcMod.Info (
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import Data.Function (on)
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import Data.List (sortBy)
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import Data.Maybe (catMaybes)
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import System.FilePath
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import Exception (ghandle, SomeException(..))
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import GHC (GhcMonad, LHsBind, LHsExpr, LPat, Id, TypecheckedModule(..), SrcSpan, Type)
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import GHC (GhcMonad, SrcSpan)
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import Prelude
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import qualified GHC as G
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import qualified Language.Haskell.GhcMod.Gap as Gap
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@ -53,17 +52,18 @@ info file expr =
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-- | Obtaining type of a target expression. (GHCi's type:)
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types :: IOish m
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=> FilePath -- ^ A target file.
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=> Bool -- ^ Include constraints into type signature
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-> FilePath -- ^ A target file.
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-> Int -- ^ Line number.
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-> Int -- ^ Column number.
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-> GhcModT m String
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types file lineNo colNo =
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types withConstraints file lineNo colNo =
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ghandle handler $
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runGmlT' [Left file] deferErrors $
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withInteractiveContext $ do
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crdl <- cradle
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modSum <- fileModSummaryWithMapping (cradleCurrentDir crdl </> file)
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srcSpanTypes <- getSrcSpanType modSum lineNo colNo
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srcSpanTypes <- getSrcSpanType withConstraints modSum lineNo colNo
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dflag <- G.getSessionDynFlags
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st <- getStyle
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convert' $ map (toTup dflag st) $ sortBy (cmp `on` fst) srcSpanTypes
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@ -72,14 +72,8 @@ types file lineNo colNo =
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gmLog GmException "types" $ showDoc ex
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return []
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getSrcSpanType :: GhcMonad m => G.ModSummary -> Int -> Int -> m [(SrcSpan, Type)]
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getSrcSpanType modSum lineNo colNo = do
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p <- G.parseModule modSum
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tcm@TypecheckedModule{tm_typechecked_source = tcs} <- G.typecheckModule p
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let bs = listifySpans tcs (lineNo, colNo) :: [LHsBind Id]
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es = listifySpans tcs (lineNo, colNo) :: [LHsExpr Id]
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ps = listifySpans tcs (lineNo, colNo) :: [LPat Id]
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bts <- mapM (getType tcm) bs
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ets <- mapM (getType tcm) es
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pts <- mapM (getType tcm) ps
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return $ catMaybes $ concat [ets, bts, pts]
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getSrcSpanType :: (GhcMonad m) => Bool -> G.ModSummary -> Int -> Int -> m [(SrcSpan, G.Type)]
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getSrcSpanType withConstraints modSum lineNo colNo =
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G.parseModule modSum
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>>= G.typecheckModule
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>>= flip (collectSpansTypes withConstraints) (lineNo, colNo)
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@ -1,4 +1,4 @@
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{-# LANGUAGE TupleSections, FlexibleInstances, Rank2Types #-}
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{-# LANGUAGE TupleSections, FlexibleInstances, Rank2Types, ImpredicativeTypes #-}
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{-# OPTIONS_GHC -fno-warn-orphans #-}
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module Language.Haskell.GhcMod.SrcUtils where
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@ -6,11 +6,14 @@ module Language.Haskell.GhcMod.SrcUtils where
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import Control.Applicative
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import CoreUtils (exprType)
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import Data.Generics
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import Data.Maybe (fromMaybe)
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import Data.Maybe
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import Data.Ord as O
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import GHC (LHsExpr, LPat, Id, DynFlags, SrcSpan, Type, Located, ParsedSource, RenamedSource, TypecheckedSource, GenLocated(L))
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import Var (Var)
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import qualified GHC as G
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import GHC.SYB.Utils (Stage(..), everythingStaged)
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import qualified Var as G
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import qualified Type as G
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import GHC.SYB.Utils
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import GhcMonad
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import qualified Language.Haskell.Exts.Annotated as HE
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import Language.Haskell.GhcMod.Doc
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@ -20,6 +23,10 @@ import OccName (OccName)
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import Outputable (PprStyle)
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import TcHsSyn (hsPatType)
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import Prelude
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import Control.Monad
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import Data.List (nub)
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import Control.Arrow
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import qualified Data.Map as M
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----------------------------------------------------------------
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@ -34,6 +41,82 @@ 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) -- 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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-- 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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-- 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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| otherwise = ([], x)
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listifySpans :: Typeable a => TypecheckedSource -> (Int, Int) -> [Located a]
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listifySpans tcs lc = listifyStaged TypeChecker p tcs
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where
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@ -151,7 +151,7 @@ ghcCommands (CmdBrowse opts ms) = concat <$> browse opts `mapM` ms
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ghcCommands (CmdCheck files) = checkSyntax files
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ghcCommands (CmdExpand files) = expandTemplate files
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ghcCommands (CmdInfo file symb) = info file $ Expression symb
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ghcCommands (CmdType file (line, col)) = types file line col
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ghcCommands (CmdType wCon file (line, col)) = types wCon file line col
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ghcCommands (CmdSplit file (line, col)) = splits file line col
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ghcCommands (CmdSig file (line, col)) = sig file line col
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ghcCommands (CmdAuto file (line, col)) = auto file line col
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@ -51,7 +51,7 @@ data GhcModCommands =
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| CmdCheck [FilePath]
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| CmdExpand [FilePath]
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| CmdInfo FilePath Symbol
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| CmdType FilePath Point
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| CmdType Bool FilePath Point
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| CmdSplit FilePath Point
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| CmdSig FilePath Point
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| CmdAuto FilePath Point
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@ -215,12 +215,12 @@ interactiveCommandsSpec =
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strArg :: String -> Parser String
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strArg = argument str . metavar
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filesArgsSpec :: ([String] -> b) -> Parser b
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filesArgsSpec x = x <$> some (strArg "FILES..")
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filesArgsSpec :: Parser ([String] -> b) -> Parser b
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filesArgsSpec x = x <*> some (strArg "FILES..")
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locArgSpec :: (String -> (Int, Int) -> b) -> Parser b
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locArgSpec :: Parser (String -> (Int, Int) -> b) -> Parser b
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locArgSpec x = x
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<$> strArg "FILE"
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<*> strArg "FILE"
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<*> ( (,)
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<$> argument int (metavar "LINE")
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<*> argument int (metavar "COL")
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@ -261,17 +261,21 @@ browseArgSpec = CmdBrowse
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<=> help "Qualify symbols"
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)
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<*> some (strArg "MODULE")
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debugComponentArgSpec = filesArgsSpec CmdDebugComponent
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checkArgSpec = filesArgsSpec CmdCheck
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expandArgSpec = filesArgsSpec CmdExpand
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debugComponentArgSpec = filesArgsSpec (pure CmdDebugComponent)
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checkArgSpec = filesArgsSpec (pure CmdCheck)
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expandArgSpec = filesArgsSpec (pure CmdExpand)
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infoArgSpec = CmdInfo
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<$> strArg "FILE"
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<*> strArg "SYMBOL"
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typeArgSpec = locArgSpec CmdType
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autoArgSpec = locArgSpec CmdAuto
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splitArgSpec = locArgSpec CmdSplit
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sigArgSpec = locArgSpec CmdSig
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refineArgSpec = locArgSpec CmdRefine <*> strArg "SYMBOL"
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typeArgSpec = locArgSpec $ CmdType <$>
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switch
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$$ long "constraints"
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<=> short 'c'
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<=> help "Include constraints into type signature"
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autoArgSpec = locArgSpec (pure CmdAuto)
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splitArgSpec = locArgSpec (pure CmdSplit)
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sigArgSpec = locArgSpec (pure CmdSig)
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refineArgSpec = locArgSpec (pure CmdRefine) <*> strArg "SYMBOL"
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mapArgSpec = CmdMapFile <$> strArg "FILE"
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unmapArgSpec = CmdUnmapFile <$> strArg "FILE"
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legacyInteractiveArgSpec = const CmdLegacyInteractive <$>
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@ -134,13 +134,19 @@ spec = do
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let tdir = "test/data/file-mapping"
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res <- runD' tdir $ do
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loadMappedFile "File.hs" "File_Redir_Lint.hs"
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types "File.hs" 4 12
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types False "File.hs" 4 12
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res `shouldBe` "4 12 4 15 \"a -> a -> a\"\n4 12 4 17 \"a -> a\"\n4 12 4 19 \"a\"\n4 1 4 19 \"a -> a -> a\"\n"
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it "shows types of the expression with constraints for redirected files" $ do
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let tdir = "test/data/file-mapping"
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res <- runD' tdir $ do
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loadMappedFile "File.hs" "File_Redir_Lint.hs"
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types True "File.hs" 4 12
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res `shouldBe` "4 12 4 15 \"a -> a -> a\"\n4 12 4 17 \"a -> a\"\n4 12 4 19 \"a\"\n4 1 4 19 \"Num a => a -> a -> a\"\n"
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it "shows types of the expression for in-memory files" $ do
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let tdir = "test/data/file-mapping"
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res <- runD' tdir $ do
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loadMappedFileSource "File.hs" "main = putStrLn \"Hello!\""
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types "File.hs" 1 14
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types False "File.hs" 1 14
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res `shouldBe` "1 8 1 16 \"String -> IO ()\"\n1 8 1 25 \"IO ()\"\n1 1 1 25 \"IO ()\"\n"
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it "shows info for the expression for redirected files" $ do
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let tdir = "test/data/file-mapping"
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@ -234,7 +240,7 @@ spec = do
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,("Bar.hs", tmpdir </> "Bar_Redir.hs")]
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res <- run defaultOptions $ do
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mapM_ (uncurry loadMappedFile) fm
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types "Bar.hs" 5 1
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types False "Bar.hs" 5 1
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res `shouldBe` unlines ["5 1 5 20 \"[Char]\""]
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it "works with a memory module using TemplateHaskell" $ do
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srcFoo <- readFile "test/data/template-haskell/Foo.hs"
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@ -244,5 +250,5 @@ spec = do
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,("Bar.hs", srcBar)]
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res <- run defaultOptions $ do
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mapM_ (uncurry loadMappedFileSource) fm
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types "Bar.hs" 5 1
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types False "Bar.hs" 5 1
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res `shouldBe` unlines ["5 1 5 20 \"[Char]\""]
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@ -19,17 +19,22 @@ spec = do
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describe "types" $ do
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it "shows types of the expression and its outers" $ do
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let tdir = "test/data/ghc-mod-check"
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res <- runD' tdir $ types "lib/Data/Foo.hs" 9 5
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res <- runD' tdir $ types False "lib/Data/Foo.hs" 9 5
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res `shouldBe` "9 5 11 40 \"Int -> a -> a -> a\"\n7 1 11 40 \"Int -> Integer\"\n"
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it "shows types of the expression with constraints and its outers" $ do
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let tdir = "test/data/ghc-mod-check"
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res <- runD' tdir $ types True "lib/Data/Foo.hs" 9 5
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res `shouldBe` "9 5 11 40 \"Num a => Int -> a -> a -> a\"\n7 1 11 40 \"Int -> Integer\"\n"
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it "works with a module using TemplateHaskell" $ do
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let tdir = "test/data/template-haskell"
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res <- runD' tdir $ types "Bar.hs" 5 1
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res <- runD' tdir $ types False "Bar.hs" 5 1
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res `shouldBe` unlines ["5 1 5 20 \"[Char]\""]
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it "works with a module that imports another module using TemplateHaskell" $ do
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let tdir = "test/data/template-haskell"
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res <- runD' tdir $ types "ImportsTH.hs" 3 8
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res <- runD' tdir $ types False "ImportsTH.hs" 3 8
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res `shouldBe` unlines ["3 8 3 16 \"String -> IO ()\"", "3 8 3 20 \"IO ()\"", "3 1 3 20 \"IO ()\""]
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describe "info" $ do
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