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-- ghc-mod: Making Haskell development *more* fun
-- Copyright (C) 2015 Daniel Gröber <dxld ÄT darkboxed DOT org>
--
-- This program is free software: you can redistribute it and/or modify
-- it under the terms of the GNU Affero General Public License as published by
-- the Free Software Foundation, either version 3 of the License, or
-- (at your option) any later version.
--
-- This program is distributed in the hope that it will be useful,
-- but WITHOUT ANY WARRANTY; without even the implied warranty of
-- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
-- GNU Affero General Public License for more details.
--
-- You should have received a copy of the GNU Affero General Public License
-- along with this program. If not, see <http://www.gnu.org/licenses/>.
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{- # LANGUAGE CPP, ViewPatterns, NamedFieldPuns, RankNTypes # -}
module Language.Haskell.GhcMod.Target where
import Control.Arrow
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import Control.Applicative
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import Control.Category ( ( . ) )
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import GHC
import GHC.Paths ( libdir )
import SysTools
import DynFlags
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import Language.Haskell.GhcMod.DynFlags
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import Language.Haskell.GhcMod.Monad.Types
import Language.Haskell.GhcMod.CabalHelper
import Language.Haskell.GhcMod.HomeModuleGraph
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import Language.Haskell.GhcMod.PathsAndFiles
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import Language.Haskell.GhcMod.GhcPkg
import Language.Haskell.GhcMod.Error
import Language.Haskell.GhcMod.Logging
import Language.Haskell.GhcMod.Types
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import Language.Haskell.GhcMod.Utils as U
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import Language.Haskell.GhcMod.FileMapping
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import Language.Haskell.GhcMod.LightGhc
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import Data.Maybe
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import Data.Monoid as Monoid
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import Data.Either
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import Data.Foldable as Foldable ( foldrM )
import qualified Data.Foldable as Foldable
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import Data.Traversable hiding ( mapM , forM )
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import Data.IORef
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import Data.List
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import Data.Map ( Map )
import qualified Data.Map as Map
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import Data.Set ( Set )
import qualified Data.Set as Set
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import Data.Function ( on )
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import Distribution.Helper
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import Prelude hiding ( ( . ) )
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import System.Directory
import System.FilePath
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runGmPkgGhc :: ( IOish m , Gm m ) => LightGhc a -> m a
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runGmPkgGhc action = do
pkgOpts <- packageGhcOptions
withLightHscEnv pkgOpts $ \ env -> liftIO $ runLightGhc env action
initSession :: IOish m
=> [ GHCOption ] -> ( DynFlags -> Ghc DynFlags ) -> GhcModT m ()
initSession opts mdf = do
s <- gmsGet
case gmGhcSession s of
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Just GmGhcSession { .. } -> when ( gmgsOptions /= opts ) $ putNewSession s
Nothing -> putNewSession s
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where
putNewSession s = do
rghc <- ( liftIO . newIORef =<< newSession =<< cradle )
gmsPut s { gmGhcSession = Just $ GmGhcSession opts rghc }
newSession Cradle { cradleTempDir } = liftIO $ do
runGhc ( Just libdir ) $ do
let setDf df = setTmpDir cradleTempDir <$> ( mdf =<< addCmdOpts opts df )
_ <- setSessionDynFlags =<< setDf =<< getSessionDynFlags
getSession
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-- | Drop the currently active GHC session, the next that requires a GHC session
-- will initialize a new one.
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dropSession :: IOish m => GhcModT m ()
dropSession = do
s <- gmsGet
case gmGhcSession s of
Just ( GmGhcSession _opts ref ) -> do
-- TODO: This is still not enough, there seem to still be references to
-- GHC's state around afterwards.
liftIO $ writeIORef ref ( error " HscEnv: session was dropped " )
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-- Not available on ghc<7.8; didn't really help anyways
-- liftIO $ setUnsafeGlobalDynFlags (error "DynFlags: session was dropped")
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gmsPut s { gmGhcSession = Nothing }
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Nothing -> return ()
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runGmlT :: IOish m => [ Either FilePath ModuleName ] -> GmlT m a -> GhcModT m a
runGmlT fns action = runGmlT' fns return action
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runGmlT' :: IOish m
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=> [ Either FilePath ModuleName ]
-> ( DynFlags -> Ghc DynFlags )
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-> GmlT m a
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-> GhcModT m a
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runGmlT' fns mdf action = runGmlTWith fns mdf id action
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runGmlTWith :: IOish m
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=> [ Either FilePath ModuleName ]
-> ( DynFlags -> Ghc DynFlags )
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-> ( GmlT m a -> GmlT m b )
-> GmlT m a
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-> GhcModT m b
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runGmlTWith efnmns' mdf wrapper action = do
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crdl <- cradle
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Options { optGhcUserOptions } <- options
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let ( fns , mns ) = partitionEithers efnmns'
ccfns = map ( cradleCurrentDir crdl </> ) fns
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cfns <- mapM getCanonicalFileNameSafe ccfns
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let serfnmn = Set . fromList $ map Right mns ++ map Left cfns
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opts <- targetGhcOptions crdl serfnmn
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let opts' = opts ++ [ " -O0 " ] ++ optGhcUserOptions
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gmVomit
" session-ghc-options "
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( text " Initializing GHC session with following options " )
( intercalate " " $ map ( ( " \ " " ++ ) . ( ++ " \ " " ) ) opts' )
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initSession opts' $
setModeSimple >>> setEmptyLogger >>> mdf
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mappedStrs <- getMMappedFilePaths
let targetStrs = mappedStrs ++ map moduleNameString mns ++ cfns
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unGmlT $ wrapper $ do
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loadTargets opts targetStrs
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action
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targetGhcOptions :: forall m . IOish m
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=> Cradle
-> Set ( Either FilePath ModuleName )
-> GhcModT m [ GHCOption ]
targetGhcOptions crdl sefnmn = do
when ( Set . null sefnmn ) $ error " targetGhcOptions: no targets given "
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case cradleProjectType crdl of
CabalProject -> cabalOpts crdl
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StackProject -> cabalOpts crdl
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_ -> sandboxOpts crdl
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where
zipMap f l = l ` zip ` ( f ` map ` l )
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cabalOpts :: Cradle -> GhcModT m [ String ]
cabalOpts Cradle { .. } = do
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mcs <- cabalResolvedComponents
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let mdlcs = moduleComponents mcs ` zipMap ` Set . toList sefnmn
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candidates = findCandidates $ map snd mdlcs
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let noCandidates = Set . null candidates
noModuleHasAnyAssignment = all ( Set . null . snd ) mdlcs
if noCandidates && noModuleHasAnyAssignment
then do
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-- First component should be ChLibName, if no lib will take lexically first exe.
let cns = filter ( /= ChSetupHsName ) $ Map . keys mcs
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gmLog GmDebug " " $ strDoc $ " Could not find a component assignment, falling back to picking library component in cabal file. "
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return $ gmcGhcOpts $ fromJust $ Map . lookup ( head cns ) mcs
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else do
when noCandidates $
throwError $ GMECabalCompAssignment mdlcs
let cn = pickComponent candidates
return $ gmcGhcOpts $ fromJust $ Map . lookup cn mcs
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resolvedComponentsCache :: IOish m => FilePath ->
Cached ( GhcModT m ) GhcModState
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[ GmComponent 'GMCRaw ( Set . Set ModulePath ) ]
( Map . Map ChComponentName ( GmComponent 'GMCResolved ( Set . Set ModulePath ) ) )
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resolvedComponentsCache distdir = Cached {
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cacheLens = Just ( lGmcResolvedComponents . lGmCaches ) ,
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cacheFile = resolvedComponentsCacheFile distdir ,
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cachedAction = \ tcfs comps ma -> do
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Cradle { .. } <- cradle
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let iifsM = invalidatingInputFiles tcfs
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mums :: Maybe [ Either FilePath ModuleName ]
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mums =
case iifsM of
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Nothing -> Nothing
Just iifs ->
let
filterOutSetupCfg =
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filter ( /= cradleRootDir </> setupConfigPath distdir )
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changedFiles = filterOutSetupCfg iifs
in if null changedFiles
then Nothing
else Just $ map Left changedFiles
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setupChanged = maybe False
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( elem $ cradleRootDir </> setupConfigPath distdir )
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iifsM
case ( setupChanged , ma ) of
( False , Just mcs ) -> gmsGet >>= \ s -> gmsPut s { gmComponents = mcs }
_ -> return ()
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let mdesc ( Left f ) = " file: " ++ f
mdesc ( Right mn ) = " module: " ++ moduleNameString mn
changed = map ( text . mdesc ) $ Foldable . concat mums
changedDoc | [] <- changed = text " none "
| otherwise = sep changed
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gmLog GmDebug " resolvedComponentsCache " $
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text " files changed " <+>: changedDoc
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mcs <- resolveGmComponents mums comps
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return ( setupConfigPath distdir : flatten mcs , mcs )
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}
where
flatten :: Map . Map ChComponentName ( GmComponent t ( Set . Set ModulePath ) )
-> [ FilePath ]
flatten = Map . elems
>>> map ( gmcHomeModuleGraph >>> gmgGraph
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>>> ( Map . keysSet &&& Map . elems )
>>> uncurry insert
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>>> map ( Set . map mpPath )
>>> Set . unions
)
>>> Set . unions
>>> Set . toList
moduleComponents :: Map ChComponentName ( GmComponent t ( Set ModulePath ) )
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-> Either FilePath ModuleName
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-> Set ChComponentName
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moduleComponents m efnmn =
foldr' Set . empty m $ \ c s ->
let
memb =
case efnmn of
Left fn -> fn ` Set . member ` Set . map mpPath ( smp c )
Right mn -> mn ` Set . member ` Set . map mpModule ( smp c )
in if memb
then Set . insert ( gmcName c ) s
else s
where
smp c = Map . keysSet $ gmgGraph $ gmcHomeModuleGraph c
foldr' b as f = Map . foldr f b as
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findCandidates :: [ Set ChComponentName ] -> Set ChComponentName
findCandidates [] = Set . empty
findCandidates scns = foldl1 Set . intersection scns
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pickComponent :: Set ChComponentName -> ChComponentName
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pickComponent scn = Set . findMin scn
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packageGhcOptions :: ( Applicative m , IOish m , Gm m )
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=> m [ GHCOption ]
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packageGhcOptions = do
crdl <- cradle
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case cradleProjectType crdl of
CabalProject -> getGhcMergedPkgOptions
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StackProject -> getGhcMergedPkgOptions
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_ -> sandboxOpts crdl
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-- also works for plain projects!
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sandboxOpts :: MonadIO m => Cradle -> m [ String ]
sandboxOpts crdl = do
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pkgDbStack <- liftIO $ getSandboxPackageDbStack
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let pkgOpts = ghcDbStackOpts pkgDbStack
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return $ [ " -i " ++ d | d <- [ wdir , rdir ] ] ++ pkgOpts ++ [ " -Wall " ]
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where
( wdir , rdir ) = ( cradleCurrentDir crdl , cradleRootDir crdl )
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getSandboxPackageDbStack :: IO [ GhcPkgDb ]
getSandboxPackageDbStack =
( [ GlobalDb ] ++ ) . maybe [ UserDb ] return <$> getSandboxDb crdl
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resolveGmComponent :: ( IOish m , Gm m )
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=> Maybe [ CompilationUnit ] -- ^ Updated modules
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-> GmComponent 'GMCRaw ( Set ModulePath )
-> m ( GmComponent 'GMCResolved ( Set ModulePath ) )
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resolveGmComponent mums c @ GmComponent { .. } = do
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distDir <- cradleDistDir <$> cradle
withLightHscEnv ( ghcOpts distDir ) $ \ env -> do
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let srcDirs = if null gmcSourceDirs then [ " " ] else gmcSourceDirs
let mg = gmcHomeModuleGraph
let simp = gmcEntrypoints
sump <- case mums of
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Nothing -> return simp
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Just ums ->
Set . fromList . catMaybes <$>
mapM ( resolveModule env srcDirs ) ums
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mg' <- canonicalizeModuleGraph =<< updateHomeModuleGraph env mg simp sump
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return $ c { gmcEntrypoints = simp , gmcHomeModuleGraph = mg' }
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where ghcOpts distDir = concat [
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gmcGhcSrcOpts ,
gmcGhcLangOpts ,
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[ " -optP-include " , " -optP " ++ distDir </> macrosHeaderPath ]
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]
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resolveEntrypoint :: ( IOish m , Gm m )
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=> Cradle
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-> GmComponent 'GMCRaw ChEntrypoint
-> m ( GmComponent 'GMCRaw ( Set ModulePath ) )
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resolveEntrypoint Cradle { .. } c @ GmComponent { .. } = do
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withLightHscEnv gmcGhcSrcOpts $ \ env -> do
let srcDirs = if null gmcSourceDirs then [ " " ] else gmcSourceDirs
eps <- liftIO $ resolveChEntrypoints cradleRootDir gmcEntrypoints
rms <- resolveModule env srcDirs ` mapM ` eps
return c { gmcEntrypoints = Set . fromList $ catMaybes rms }
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-- TODO: remember that he file from `main-is:` is always module `Main` and let
-- ghc do the warning about it. Right now we run that module through
-- resolveModule like any other
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resolveChEntrypoints :: FilePath -> ChEntrypoint -> IO [ CompilationUnit ]
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resolveChEntrypoints _ ( ChLibEntrypoint em om ) =
return $ map ( Right . chModToMod ) ( em ++ om )
resolveChEntrypoints _ ( ChExeEntrypoint main om ) =
return $ [ Left main ] ++ map ( Right . chModToMod ) om
resolveChEntrypoints srcDir ChSetupEntrypoint = do
shs <- doesFileExist ( srcDir </> " Setup.hs " )
slhs <- doesFileExist ( srcDir </> " Setup.lhs " )
return $ case ( shs , slhs ) of
( True , _ ) -> [ Left " Setup.hs " ]
( _ , True ) -> [ Left " Setup.lhs " ]
( False , False ) -> []
chModToMod :: ChModuleName -> ModuleName
chModToMod ( ChModuleName mn ) = mkModuleName mn
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resolveModule :: ( IOish m , Gm m ) =>
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HscEnv -> [ FilePath ] -> CompilationUnit -> m ( Maybe ModulePath )
resolveModule env _srcDirs ( Right mn ) =
liftIO $ traverse canonicalizeModulePath =<< findModulePath env mn
resolveModule env srcDirs ( Left fn' ) = do
mfn <- liftIO $ findFile' srcDirs fn'
case mfn of
Nothing -> return Nothing
Just fn'' -> do
fn <- liftIO $ canonicalizePath fn''
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emn <- fileModuleName env fn
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case emn of
Left errs -> do
gmLog GmWarning ( " resolveModule " ++ show fn ) $
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Monoid . mempty $+$ ( vcat $ map text errs )
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return Nothing -- TODO: should expose these errors otherwise
-- modules with preprocessor/parse errors are
-- going to be missing
Right mmn -> return $ Just $
case mmn of
Nothing -> mkMainModulePath fn
Just mn -> ModulePath mn fn
where
-- needed for ghc 7.4
findFile' dirs file =
getFirst . mconcat <$> mapM ( fmap First . mightExist . ( </> file ) ) dirs
-- fileModuleName fn (dir:dirs)
-- | makeRelative dir fn /= fn
type CompilationUnit = Either FilePath ModuleName
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resolveGmComponents :: ( IOish m , Gm m )
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=> Maybe [ CompilationUnit ]
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-- ^ Updated modules
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-> [ GmComponent 'GMCRaw ( Set ModulePath ) ]
-> m ( Map ChComponentName ( GmComponent 'GMCResolved ( Set ModulePath ) ) )
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resolveGmComponents mumns cs = do
s <- gmsGet
m' <- foldrM' ( gmComponents s ) cs $ \ c m -> do
case Map . lookup ( gmcName c ) m of
Nothing -> insertUpdated m c
Just c' -> if same gmcRawEntrypoints c c' && same gmcGhcSrcOpts c c'
then return m
else insertUpdated m c
gmsPut s { gmComponents = m' }
return m'
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where
foldrM' b fa f = foldrM f b fa
insertUpdated m c = do
rc <- resolveGmComponent mumns c
return $ Map . insert ( gmcName rc ) rc m
same :: Eq b
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=> ( forall t a . GmComponent t a -> b )
-> GmComponent u c -> GmComponent v d -> Bool
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same f a b = ( f a ) == ( f b )
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-- | Set the files as targets and load them.
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loadTargets :: IOish m => [ GHCOption ] -> [ FilePath ] -> GmlT m ()
loadTargets opts targetStrs = do
targets <-
withLightHscEnv opts $ \ env ->
liftM ( nubBy ( ( == ) ` on ` targetId ) )
( mapM ( ( ` guessTarget ` Nothing ) >=> mapFile env ) targetStrs )
>>= mapM relativize
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gmLog GmDebug " loadTargets " $
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text " Loading " <+>: fsep ( map ( text . showTargetId ) targets )
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setTargets targets
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mode <- getCompilerMode
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if mode == Intelligent
then loadTargets' Intelligent
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else do
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mdls <- depanal [] False
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let fallback = needsFallback mdls
if fallback then do
resetTargets targets
setIntelligent
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gmLog GmInfo " loadTargets " $
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text " Target needs interpeter, switching to LinkInMemory/HscInterpreted. Perfectly normal if anything is using TemplateHaskell, QuasiQuotes or PatternSynonyms. "
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loadTargets' Intelligent
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else
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loadTargets' Simple
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where
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relativize ( Target ( TargetFile filePath phase ) taoc src ) = do
crdl <- cradle
let tid = TargetFile relativeFilePath phase
relativeFilePath = makeRelative ( cradleRootDir crdl ) filePath
return $ Target tid taoc src
relativize tgt = return tgt
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loadTargets' Simple = do
void $ load LoadAllTargets
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mapM_ ( parseModule >=> typecheckModule >=> desugarModule ) =<< getModuleGraph
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loadTargets' Intelligent = do
df <- getSessionDynFlags
void $ setSessionDynFlags ( setModeIntelligent df )
void $ load LoadAllTargets
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resetTargets targets' = do
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setTargets []
void $ load LoadAllTargets
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setTargets targets'
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setIntelligent = do
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newdf <- setModeIntelligent <$> getSessionDynFlags
void $ setSessionDynFlags newdf
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setCompilerMode Intelligent
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showTargetId ( Target ( TargetModule s ) _ _ ) = moduleNameString s
showTargetId ( Target ( TargetFile s _ ) _ _ ) = s
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needsFallback :: ModuleGraph -> Bool
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needsFallback = any $ \ ms ->
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let df = ms_hspp_opts ms in
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Opt_TemplateHaskell ` xopt ` df
|| Opt_QuasiQuotes ` xopt ` df
# if __GLASGOW_HASKELL__ >= 708
|| ( Opt_PatternSynonyms ` xopt ` df )
# endif
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cabalResolvedComponents :: ( IOish m ) =>
GhcModT m ( Map ChComponentName ( GmComponent 'GMCResolved ( Set ModulePath ) ) )
cabalResolvedComponents = do
crdl @ ( Cradle { .. } ) <- cradle
comps <- mapM ( resolveEntrypoint crdl ) =<< getComponents
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cached cradleRootDir ( resolvedComponentsCache cradleDistDir ) comps