ghc-mod/Language/Haskell/GhcMod/CabalApi.hs

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{-# LANGUAGE OverloadedStrings, CPP #-}
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module Language.Haskell.GhcMod.CabalApi (
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getCompilerOptions
, parseCabalFile
, cabalAllBuildInfo
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, cabalDependPackages
, cabalSourceDirs
, cabalAllTargets
, cabalConfigDependencies
) where
import Language.Haskell.GhcMod.CabalConfig
import Language.Haskell.GhcMod.Error
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import Language.Haskell.GhcMod.Gap (benchmarkBuildInfo, benchmarkTargets,
toModuleString)
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import Language.Haskell.GhcMod.GhcPkg
import Language.Haskell.GhcMod.Types
import MonadUtils (liftIO)
import Control.Applicative ((<$>))
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import qualified Control.Exception as E
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import Control.Monad (filterM)
import Data.Maybe (maybeToList)
import Data.Set (fromList, toList)
import Distribution.Package (Dependency(Dependency)
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, PackageName(PackageName))
import qualified Distribution.Package as C
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import Distribution.PackageDescription (PackageDescription, BuildInfo, TestSuite, TestSuiteInterface(..), Executable)
import qualified Distribution.PackageDescription as P
import Distribution.PackageDescription.Configuration (finalizePackageDescription)
import Distribution.PackageDescription.Parse (readPackageDescription)
import Distribution.Simple.Compiler (CompilerId(..), CompilerFlavor(..))
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import Distribution.Simple.Program (ghcProgram)
import Distribution.Simple.Program.Types (programName, programFindVersion)
import Distribution.System (buildPlatform)
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import Distribution.Text (display)
import Distribution.Verbosity (silent)
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import Distribution.Version (Version)
import System.Directory (doesFileExist)
import System.FilePath ((</>))
----------------------------------------------------------------
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-- | Getting necessary 'CompilerOptions' from three information sources.
getCompilerOptions :: (IOish m, MonadError GhcModError m)
=> [GHCOption]
-> Cradle
-> PackageDescription
-> m CompilerOptions
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getCompilerOptions ghcopts cradle pkgDesc = do
gopts <- liftIO $ getGHCOptions ghcopts cradle rdir $ head buildInfos
depPkgs <- cabalConfigDependencies cradle (C.packageId pkgDesc)
return $ CompilerOptions gopts idirs depPkgs
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where
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wdir = cradleCurrentDir cradle
rdir = cradleRootDir cradle
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buildInfos = cabalAllBuildInfo pkgDesc
idirs = includeDirectories rdir wdir $ cabalSourceDirs buildInfos
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----------------------------------------------------------------
-- Include directories for modules
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cabalBuildDirs :: [FilePath]
cabalBuildDirs = ["dist/build", "dist/build/autogen"]
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includeDirectories :: FilePath -> FilePath -> [FilePath] -> [FilePath]
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includeDirectories cdir wdir dirs = uniqueAndSort (extdirs ++ [cdir,wdir])
where
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extdirs = map expand $ dirs ++ cabalBuildDirs
expand "." = cdir
expand subdir = cdir </> subdir
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----------------------------------------------------------------
-- | Parse a cabal file and return a 'PackageDescription'.
parseCabalFile :: (IOish m, MonadError GhcModError m)
=> Cradle
-> FilePath
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-> m PackageDescription
parseCabalFile cradle file = do
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cid <- liftIO getGHCId
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epgd <- liftIO $ readPackageDescription silent file
flags <- cabalConfigFlags cradle
case toPkgDesc cid flags epgd of
Left deps -> fail $ show deps ++ " are not installed"
Right (pd,_) -> if nullPkg pd
then fail $ file ++ " is broken"
else return pd
where
toPkgDesc cid flags =
finalizePackageDescription flags (const True) buildPlatform cid []
nullPkg pd = name == ""
where
PackageName name = C.pkgName (P.package pd)
----------------------------------------------------------------
getGHCOptions :: [GHCOption] -> Cradle -> FilePath -> BuildInfo -> IO [GHCOption]
getGHCOptions ghcopts cradle rdir binfo = do
cabalCpp <- cabalCppOptions rdir
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let cpps = map ("-optP" ++) $ P.cppOptions binfo ++ cabalCpp
return $ ghcopts ++ pkgDb ++ exts ++ [lang] ++ libs ++ libDirs ++ cpps
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where
pkgDb = ghcDbStackOpts $ cradlePkgDbStack cradle
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lang = maybe "-XHaskell98" (("-X" ++) . display) $ P.defaultLanguage binfo
libDirs = map ("-L" ++) $ P.extraLibDirs binfo
exts = map (("-X" ++) . display) $ P.usedExtensions binfo
libs = map ("-l" ++) $ P.extraLibs binfo
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cabalCppOptions :: FilePath -> IO [String]
cabalCppOptions dir = do
exist <- doesFileExist cabalMacro
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return $ if exist then
["-include", cabalMacro]
else
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[]
where
cabalMacro = dir </> "dist/build/autogen/cabal_macros.h"
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----------------------------------------------------------------
-- | Extracting all 'BuildInfo' for libraries, executables, and tests.
cabalAllBuildInfo :: PackageDescription -> [BuildInfo]
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cabalAllBuildInfo pd = libBI ++ execBI ++ testBI ++ benchBI
where
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libBI = map P.libBuildInfo $ maybeToList $ P.library pd
execBI = map P.buildInfo $ P.executables pd
testBI = map P.testBuildInfo $ P.testSuites pd
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benchBI = benchmarkBuildInfo pd
----------------------------------------------------------------
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-- | Extracting package names of dependency.
cabalDependPackages :: [BuildInfo] -> [PackageBaseName]
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cabalDependPackages bis = uniqueAndSort pkgs
where
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pkgs = map getDependencyPackageName $ concatMap P.targetBuildDepends bis
getDependencyPackageName (Dependency (PackageName nm) _) = nm
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----------------------------------------------------------------
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-- | Extracting include directories for modules.
cabalSourceDirs :: [BuildInfo] -> [IncludeDir]
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cabalSourceDirs bis = uniqueAndSort $ concatMap P.hsSourceDirs bis
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----------------------------------------------------------------
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uniqueAndSort :: [String] -> [String]
uniqueAndSort = toList . fromList
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----------------------------------------------------------------
getGHCId :: IO CompilerId
getGHCId = CompilerId GHC <$> getGHC
getGHC :: IO Version
getGHC = do
mv <- programFindVersion ghcProgram silent (programName ghcProgram)
case mv of
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Nothing -> E.throwIO $ userError "ghc not found"
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Just v -> return v
----------------------------------------------------------------
-- | Extracting all 'Module' 'FilePath's for libraries, executables,
-- tests and benchmarks.
cabalAllTargets :: PackageDescription -> IO ([String],[String],[String],[String])
cabalAllTargets pd = do
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exeTargets <- mapM getExecutableTarget $ P.executables pd
testTargets <- mapM getTestTarget $ P.testSuites pd
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return (libTargets,concat exeTargets,concat testTargets,benchTargets)
where
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lib = case P.library pd of
Nothing -> []
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Just l -> P.libModules l
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libTargets = map toModuleString lib
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benchTargets = benchmarkTargets pd
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getTestTarget :: TestSuite -> IO [String]
getTestTarget ts =
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case P.testInterface ts of
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(TestSuiteExeV10 _ filePath) -> do
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let maybeTests = [p </> e | p <- P.hsSourceDirs $ P.testBuildInfo ts, e <- [filePath]]
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liftIO $ filterM doesFileExist maybeTests
(TestSuiteLibV09 _ moduleName) -> return [toModuleString moduleName]
(TestSuiteUnsupported _) -> return []
getExecutableTarget :: Executable -> IO [String]
getExecutableTarget exe = do
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let maybeExes = [p </> e | p <- P.hsSourceDirs $ P.buildInfo exe, e <- [P.modulePath exe]]
liftIO $ filterM doesFileExist maybeExes