ghcup-hs/app/ghcup-gen/Validate.hs

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{-# LANGUAGE CPP #-}
{-# LANGUAGE DataKinds #-}
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{-# LANGUAGE FlexibleContexts #-}
{-# LANGUAGE QuasiQuotes #-}
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{-# LANGUAGE TemplateHaskell #-}
{-# LANGUAGE TypeApplications #-}
{-# LANGUAGE ViewPatterns #-}
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{-# LANGUAGE OverloadedStrings #-}
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module Validate where
import GHCup
import GHCup.Download
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import GHCup.Errors
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import GHCup.Types
import GHCup.Types.Optics
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import GHCup.Utils
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import GHCup.Utils.Logger
import GHCup.Utils.Version.QQ
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import Codec.Archive
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import Control.Applicative
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import Control.Exception.Safe
import Control.Monad
import Control.Monad.IO.Class
import Control.Monad.Reader.Class
import Control.Monad.Trans.Class ( lift )
import Control.Monad.Trans.Reader ( runReaderT )
import Control.Monad.Trans.Resource ( runResourceT
, MonadUnliftIO
)
import Data.Containers.ListUtils ( nubOrd )
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import Data.IORef
import Data.List
import Data.Versions
import Haskus.Utils.Variant.Excepts
import Optics
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import System.FilePath
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import System.Exit
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import Text.ParserCombinators.ReadP
import Text.PrettyPrint.HughesPJClass ( prettyShow )
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import Text.Regex.Posix
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import qualified Data.Map.Strict as M
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import qualified Data.Text as T
import qualified Data.Version as V
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data ValidationError = InternalError String
deriving Show
instance Exception ValidationError
addError :: (MonadReader (IORef Int) m, MonadIO m, Monad m) => m ()
addError = do
ref <- ask
liftIO $ modifyIORef ref (+ 1)
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validate :: (Monad m, MonadReader env m, HasLog env, MonadThrow m, MonadIO m, MonadUnliftIO m)
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=> GHCupDownloads
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-> M.Map GlobalTool DownloadInfo
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-> m ExitCode
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validate dls _ = do
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ref <- liftIO $ newIORef 0
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-- verify binary downloads --
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flip runReaderT ref $ do
-- unique tags
forM_ (M.toList dls) $ \(t, _) -> checkUniqueTags t
-- required platforms
forM_ (M.toList dls) $ \(t, versions) ->
forM_ (M.toList versions) $ \(v, vi) ->
forM_ (M.toList $ _viArch vi) $ \(arch, pspecs) -> do
checkHasRequiredPlatforms t v (_viTags vi) arch (M.keys pspecs)
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checkGHCVerIsValid
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forM_ (M.toList dls) $ \(t, _) -> checkMandatoryTags t
_ <- checkGHCHasBaseVersion
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-- exit
e <- liftIO $ readIORef ref
if e > 0
then pure $ ExitFailure e
else do
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lift $ logInfo "All good"
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pure ExitSuccess
where
checkHasRequiredPlatforms t v tags arch pspecs = do
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let v' = prettyVer v
arch' = prettyShow arch
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when (Linux UnknownLinux `notElem` pspecs) $ do
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lift $ logError $
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"Linux UnknownLinux missing for for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack arch'
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addError
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when ((Darwin `notElem` pspecs) && arch == A_64) $ do
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lift $ logError $ "Darwin missing for for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack arch'
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addError
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when ((FreeBSD `notElem` pspecs) && arch == A_64) $ lift $ logWarn $
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"FreeBSD missing for for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack arch'
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when (Windows `notElem` pspecs && arch == A_64) $ do
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lift $ logError $ "Windows missing for for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack arch'
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addError
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-- alpine needs to be set explicitly, because
-- we cannot assume that "Linux UnknownLinux" runs on Alpine
-- (although it could be static)
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when (Linux Alpine `notElem` pspecs) $
case t of
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GHCup | arch `elem` [A_64, A_32] -> lift (logError $ "Linux Alpine missing for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack (prettyShow arch)) >> addError
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Cabal | v > [vver|2.4.1.0|]
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, arch `elem` [A_64, A_32] -> lift (logError $ "Linux Alpine missing for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack (prettyShow arch)) >> addError
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GHC | Latest `elem` tags || Recommended `elem` tags
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, arch `elem` [A_64, A_32] -> lift (logError $ "Linux Alpine missing for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack (prettyShow arch))
_ -> lift $ logWarn $ "Linux Alpine missing for " <> T.pack (prettyShow t) <> " " <> v' <> " " <> T.pack (prettyShow arch)
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checkUniqueTags tool = do
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let allTags = _viTags =<< M.elems (availableToolVersions dls tool)
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let nonUnique =
fmap fst
. filter (\(_, b) -> not b)
<$> ( mapM
(\case
[] -> throwM $ InternalError "empty inner list"
(t : ts) ->
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pure $ (t, ) (not (isUniqueTag t) || null ts)
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)
. group
. sort
$ allTags
)
case join nonUnique of
[] -> pure ()
xs -> do
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lift $ logError $ "Tags not unique for " <> T.pack (prettyShow tool) <> ": " <> T.pack (prettyShow xs)
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addError
where
isUniqueTag Latest = True
isUniqueTag Recommended = True
isUniqueTag Old = False
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isUniqueTag Prerelease = False
isUniqueTag (Base _) = False
isUniqueTag (UnknownTag _) = False
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checkGHCVerIsValid = do
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let ghcVers = toListOf (ix GHC % to M.keys % folded) dls
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forM_ ghcVers $ \v ->
case [ x | (x,"") <- readP_to_S V.parseVersion (T.unpack . prettyVer $ v) ] of
[_] -> pure ()
_ -> do
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lift $ logError $ "GHC version " <> prettyVer v <> " is not valid"
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addError
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-- a tool must have at least one of each mandatory tags
checkMandatoryTags tool = do
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let allTags = _viTags =<< M.elems (availableToolVersions dls tool)
forM_ [Latest, Recommended] $ \t -> case t `elem` allTags of
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False -> do
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lift $ logError $ "Tag " <> T.pack (prettyShow t) <> " missing from " <> T.pack (prettyShow tool)
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addError
True -> pure ()
-- all GHC versions must have a base tag
checkGHCHasBaseVersion = do
let allTags = M.toList $ availableToolVersions dls GHC
forM allTags $ \(ver, _viTags -> tags) -> case any isBase tags of
False -> do
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lift $ logError $ "Base tag missing from GHC ver " <> prettyVer ver
addError
True -> pure ()
isBase (Base _) = True
isBase _ = False
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data TarballFilter = TarballFilter
{ tfTool :: Either GlobalTool (Maybe Tool)
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, tfVersion :: Regex
}
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validateTarballs :: ( Monad m
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, MonadReader env m
, HasLog env
, HasDirs env
, HasSettings env
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, MonadThrow m
, MonadIO m
, MonadUnliftIO m
, MonadMask m
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, Alternative m
, MonadFail m
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)
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=> TarballFilter
-> GHCupDownloads
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-> M.Map GlobalTool DownloadInfo
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-> m ExitCode
validateTarballs (TarballFilter etool versionRegex) dls gt = do
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ref <- liftIO $ newIORef 0
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-- download/verify all tarballs
let dlis = either (const []) (\tool -> nubOrd $ dls ^.. each %& indices (maybe (const True) (==) tool) %> each %& indices (matchTest versionRegex . T.unpack . prettyVer) % (viSourceDL % _Just `summing` viArch % each % each % each)) etool
let gdlis = nubOrd $ gt ^.. each
let allDls = either (const gdlis) (const dlis) etool
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when (null allDls) $ logError "no tarballs selected by filter" *> runReaderT addError ref
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forM_ allDls (downloadAll ref)
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-- exit
e <- liftIO $ readIORef ref
if e > 0
then pure $ ExitFailure e
else do
logInfo "All good"
pure ExitSuccess
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where
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downloadAll :: ( MonadUnliftIO m
, MonadIO m
, MonadReader env m
, HasLog env
, HasDirs env
, HasSettings env
, MonadCatch m
, MonadMask m
, MonadThrow m
)
=> IORef Int
-> DownloadInfo
-> m ()
downloadAll ref dli = do
r <- runResourceT
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. runE @'[DigestError
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, GPGError
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, DownloadFailed
, UnknownArchive
, ArchiveResult
]
$ do
case etool of
Right (Just GHCup) -> do
tmpUnpack <- lift mkGhcupTmpDir
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_ <- liftE $ download (_dlUri dli) Nothing (Just (_dlHash dli)) tmpUnpack Nothing False
pure Nothing
Right _ -> do
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p <- liftE $ downloadCached dli Nothing
fmap (Just . head . splitDirectories . head)
. liftE
. getArchiveFiles
$ p
Left ShimGen -> do
tmpUnpack <- lift mkGhcupTmpDir
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_ <- liftE $ download (_dlUri dli) Nothing (Just (_dlHash dli)) tmpUnpack Nothing False
pure Nothing
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case r of
VRight (Just basePath) -> do
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case _dlSubdir dli of
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Just (RealDir prel) -> do
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logInfo
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$ " verifying subdir: " <> T.pack prel
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when (basePath /= prel) $ do
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logError $
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"Subdir doesn't match: expected " <> T.pack prel <> ", got " <> T.pack basePath
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runReaderT addError ref
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Just (RegexDir regexString) -> do
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logInfo $
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"verifying subdir (regex): " <> T.pack regexString
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let regex = makeRegexOpts
compIgnoreCase
execBlank
regexString
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unless (match regex basePath) $ do
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logError $
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"Subdir doesn't match: expected regex " <> T.pack regexString <> ", got " <> T.pack basePath
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runReaderT addError ref
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Nothing -> pure ()
VRight Nothing -> pure ()
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VLeft e -> do
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logError $
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"Could not download (or verify hash) of " <> T.pack (show dli) <> ", Error was: " <> T.pack (prettyShow e)
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runReaderT addError ref