856 lines
29 KiB
Haskell
856 lines
29 KiB
Haskell
{-# LANGUAGE DeriveFunctor #-}
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{-# LANGUAGE GADTs #-}
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{-# LANGUAGE TupleSections #-}
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--------------------------------------------------------------------------------
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-- | Functions for handling dependencies
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module XMonad.Internal.Dependency
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-- feature types
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( Feature
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, Always(..)
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, Always_(..)
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, Sometimes(..)
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, Sometimes_
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, AlwaysX
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, AlwaysIO
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, SometimesX
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, SometimesIO
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, PostPass(..)
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, Subfeature(..)
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, SubfeatureRoot
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, LogLevel(..)
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-- dependency tree types
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, Root(..)
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, Tree(..)
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, Tree_(..)
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, IODependency(..)
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, IODependency_(..)
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, SystemDependency(..)
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, DBusDependency_(..)
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, DBusMember(..)
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, UnitType(..)
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, Result
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-- dumping
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, dumpFeature
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, dumpAlways
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, dumpSometimes
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, jsonArray
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, JSONQuotable(..)
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, JSONUnquotable(..)
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, JSONMixed(..)
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-- testing
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, evalFeature
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, executeSometimes
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, executeAlways
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, evalAlways
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, evalSometimes
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-- lifting
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, ioSometimes
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, ioAlways
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-- feature construction
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, always1
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, sometimes1
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, sometimesIO
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, sometimesDBus
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, sometimesExe
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, sometimesExeArgs
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, sometimesEndpoint
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-- dependency construction
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, sysExe
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, localExe
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, sysdSystem
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, sysdUser
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, listToAnds
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, toAnd
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, pathR
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, pathRW
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, pathW
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, sysTest
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) where
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import Control.Monad.IO.Class
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import Control.Monad.Identity
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import Data.Bifunctor
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import Data.List
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import Data.Maybe
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import DBus
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import DBus.Client
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import DBus.Internal
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import qualified DBus.Introspection as I
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import System.Directory (findExecutable, readable, writable)
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import System.Environment
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import System.Exit
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import XMonad.Core (X, io)
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import XMonad.Internal.IO
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import XMonad.Internal.Process
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import XMonad.Internal.Shell
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--------------------------------------------------------------------------------
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-- | Feature Evaluation
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--
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-- Here we attempt to build and return the monadic actions encoded by each
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-- feature.
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-- | Execute an Always immediately
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executeAlways :: MonadIO m => Always (m a) -> m a
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executeAlways = join . evalAlways
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-- | Execute a Sometimes immediately (or do nothing if failure)
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executeSometimes :: MonadIO m => Sometimes (m a) -> m (Maybe a)
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executeSometimes a = maybe (return Nothing) (fmap Just) =<< evalSometimes a
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-- | Possibly return the action of an Always/Sometimes
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evalFeature :: MonadIO m => Feature a -> m (Maybe a)
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evalFeature (Right a) = Just <$> evalAlways a
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evalFeature (Left s) = evalSometimes s
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-- | Possibly return the action of a Sometimes
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evalSometimes :: MonadIO m => Sometimes a -> m (Maybe a)
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evalSometimes x = io $ either goFail goPass =<< evalSometimesMsg x
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where
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goPass (PostPass a ws) = putErrors ws >> return (Just a)
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goFail es = putErrors es >> return Nothing
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putErrors = mapM_ putStrLn
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-- | Return the action of an Always
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evalAlways :: MonadIO m => Always a -> m a
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evalAlways a = do
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(PostPass x ws) <- evalAlwaysMsg a
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io $ mapM_ putStrLn ws
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return x
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--------------------------------------------------------------------------------
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-- | Feature status
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-- | Dump the status of a Feature
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dumpFeature :: Feature a -> IO JSONUnquotable
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dumpFeature = either dumpSometimes dumpAlways
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-- | Dump the status of an Always to stdout
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dumpAlways :: Always a -> IO JSONUnquotable
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dumpAlways (Always n x) = go [] x
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where
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go failed (Option o os) = do
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(s, r) <- dumpSubfeatureRoot o
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if r
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then return $ jsonAlways (Q n) (Just s) failed $ untested [] os
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else go (s:failed) os
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go failed (Always_ _) = return $ jsonAlways (Q n) (Just (UQ "true")) failed []
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untested acc (Always_ _) = acc
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untested acc (Option o os) = untested (dataSubfeatureRoot o:acc) os
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-- | Dump the status of a Sometimes to stdout
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dumpSometimes :: Sometimes a -> IO JSONUnquotable
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dumpSometimes (Sometimes n a) = go [] a
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where
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go failed [] = return $ jsonSometimes (Q n) Nothing failed []
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go failed (x:xs) = do
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(s, r) <- dumpSubfeatureRoot x
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if r
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then return $ jsonSometimes (Q n) (Just s) failed $ fmap dataSubfeatureRoot xs
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else go (s:failed) xs
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--------------------------------------------------------------------------------
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-- | Wrapper types
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type AlwaysX = Always (X ())
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type AlwaysIO = Always (IO ())
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type SometimesX = Sometimes (X ())
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type SometimesIO = Sometimes (IO ())
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type Feature a = Either (Sometimes a) (Always a)
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--------------------------------------------------------------------------------
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-- | Feature declaration
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-- | Feature that is guaranteed to work
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-- This is composed of sub-features that are tested in order, and if all fail
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-- the fallback is a monadic action (eg a plain haskell function)
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data Always a = Always String (Always_ a)
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-- | Feature that is guaranteed to work (inner data)
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data Always_ a = Option (SubfeatureRoot a) (Always_ a) | Always_ a
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-- | Feature that might not be present
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-- This is like an Always except it doesn't fall back on a guaranteed monadic
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-- action
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data Sometimes a = Sometimes String (Sometimes_ a)
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-- | Feature that might not be present (inner data)
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type Sometimes_ a = [SubfeatureRoot a]
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-- | Individually tested sub-feature data for Always/sometimes
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-- The polymorphism allows representing tested and untested states. Includes
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-- the 'action' itself to be tested and any auxilary data for describing the
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-- sub-feature.
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data Subfeature f = Subfeature
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{ sfData :: f
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, sfName :: String
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, sfLevel :: LogLevel
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}
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type SubfeatureRoot a = Subfeature (Root a)
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-- | Loglevel at which feature testing should be reported
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-- This is currently not used for anything important
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data LogLevel = Silent | Error | Warn | Debug deriving (Eq, Show, Ord)
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-- | An action and its dependencies
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-- May be a plain old monad or be DBus-dependent, in which case a client is
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-- needed
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data Root a = forall p. IORoot (p -> a) (Tree IODependency IODependency_ p)
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| IORoot_ a (Tree_ IODependency_)
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| forall p. DBusRoot (p -> Client -> a)
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(Tree IODependency DBusDependency_ p) (Maybe Client)
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| DBusRoot_ (Client -> a) (Tree_ DBusDependency_) (Maybe Client)
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-- | The dependency tree with rules to merge results
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data Tree d d_ p =
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And12 (p -> p -> p) (Tree d d_ p) (Tree d d_ p)
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| And1 (Tree d d_ p) (Tree_ d_)
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| And2 (Tree_ d_) (Tree d d_ p)
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| Or (Tree d d_ p) (Tree d d_ p)
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| Only (d p)
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-- | A dependency tree without functions to merge results
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data Tree_ d =
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And_ (Tree_ d) (Tree_ d)
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| Or_ (Tree_ d) (Tree_ d)
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| Only_ d
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-- | A dependency that only requires IO to evaluate
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data IODependency p = IORead String (IO (Result p))
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| forall a. IOAlways (Always a) (a -> p)
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| forall a. IOSometimes (Sometimes a) (a -> p)
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-- | A dependency pertaining to the DBus
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data DBusDependency_ = Bus BusName
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| Endpoint BusName ObjectPath InterfaceName DBusMember
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| DBusIO IODependency_
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-- | A dependency that only requires IO to evaluate (no payload)
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data IODependency_ = IOSystem_ SystemDependency
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| forall a. IOSometimes_ (Sometimes a)
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data SystemDependency = Executable Bool FilePath
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| AccessiblePath FilePath Bool Bool
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| IOTest String (IO (Maybe String))
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| Systemd UnitType String
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-- | The type of a systemd service
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data UnitType = SystemUnit | UserUnit deriving (Eq, Show)
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-- | Wrapper type to describe and endpoint
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data DBusMember = Method_ MemberName
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| Signal_ MemberName
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| Property_ String
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deriving (Eq, Show)
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--------------------------------------------------------------------------------
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-- | Tested dependency tree
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--
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-- The main reason I need this is so I have a "result" I can convert to JSON
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-- and dump on the CLI (unless there is a way to make Aeson work inside an IO)
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-- | Tested Always feature
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data PostAlways a = Primary (SubfeaturePass a) [SubfeatureFail] (Always_ a)
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| Fallback a [SubfeatureFail]
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-- | Tested Sometimes feature
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data PostSometimes a = PostSometimes
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{ psSuccess :: Maybe (SubfeaturePass a)
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, psFailed :: [SubfeatureFail]
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}
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-- | Passing subfeature
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type SubfeaturePass a = Subfeature (PostPass a)
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-- | Failed subfeature
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type SubfeatureFail = Subfeature PostFail
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-- | An action that passed
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data PostPass a = PostPass a [String] deriving (Functor)
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addMsgs :: PostPass a -> [String] -> PostPass a
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addMsgs (PostPass a ms) ms' = PostPass a $ ms ++ ms'
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-- | An action that failed
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data PostFail = PostFail [String] | PostMissing String
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--------------------------------------------------------------------------------
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-- | Testing pipeline
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evalSometimesMsg :: MonadIO m => Sometimes a -> m (Result a)
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evalSometimesMsg (Sometimes n xs) = io $ do
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PostSometimes { psSuccess = s, psFailed = fs } <- testSometimes xs
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case s of
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(Just (Subfeature { sfData = p })) -> Right . addMsgs p <$> failedMsgs False n fs
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_ -> Left <$> failedMsgs True n fs
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evalAlwaysMsg :: MonadIO m => Always a -> m (PostPass a)
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evalAlwaysMsg (Always n x) = io $ do
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r <- testAlways x
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case r of
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(Primary (Subfeature { sfData = p }) fs _) -> addMsgs p <$> failedMsgs False n fs
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(Fallback act fs) -> PostPass act <$> failedMsgs False n fs
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testAlways :: Always_ a -> IO (PostAlways a)
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testAlways = go []
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where
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go failed (Option fd next) = do
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r <- testSubfeature fd
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case r of
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(Left l) -> go (l:failed) next
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(Right pass) -> return $ Primary pass failed next
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go failed (Always_ a) = return $ Fallback a failed
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testSometimes :: Sometimes_ a -> IO (PostSometimes a)
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testSometimes = go (PostSometimes Nothing [])
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where
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go ts [] = return ts
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go ts (x:xs) = do
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sf <- testSubfeature x
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case sf of
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(Left l) -> go (ts { psFailed = l:psFailed ts }) xs
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(Right pass) -> return $ ts { psSuccess = Just pass }
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testSubfeature :: SubfeatureRoot a -> IO (Either SubfeatureFail (SubfeaturePass a))
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testSubfeature sf@Subfeature{ sfData = t } = do
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t' <- testRoot t
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-- monomorphism restriction :(
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return $ bimap (\n -> sf { sfData = n }) (\n -> sf { sfData = n }) t'
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testRoot :: Root a -> IO (Either PostFail (PostPass a))
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testRoot r = do
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case r of
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(IORoot a t) -> go a testIODependency_ testIODependency t
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(IORoot_ a t) -> go_ a testIODependency_ t
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(DBusRoot a t (Just cl)) -> go (`a` cl) (testDBusDependency_ cl) testIODependency t
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(DBusRoot_ a t (Just cl)) -> go_ (a cl) (testDBusDependency_ cl) t
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_ -> return $ Left $ PostMissing "client not available"
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where
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go a f_ f t = bimap PostFail (fmap a) <$> testTree f_ f t
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go_ a f_ t = bimap PostFail (PostPass a) <$> testTree_ f_ t
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--------------------------------------------------------------------------------
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-- | Payloaded dependency testing
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type Result p = Either [String] (PostPass p)
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testTree :: (d_ -> IO Result_) -> (d p -> IO (Result p)) -> Tree d d_ p
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-> IO (Either [String] (PostPass p))
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testTree test_ test = go
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where
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go (And12 f a b) = do
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ra <- go a
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liftRight (\pa -> (and2nd f pa =<<) <$> go b) ra
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go (And1 a b) = do
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ra <- go a
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liftRight (\p -> fmap (addMsgs p) <$> testTree_ test_ b) ra
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go (And2 a b) = do
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ra <- testTree_ test_ a
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liftRight (\wa -> fmap (`addMsgs` wa) <$> go b) ra
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go (Or a b) = do
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ra <- go a
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either (\ea -> fmap (`addMsgs` ea) <$> go b) (return . Right) ra
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go (Only a) = test a
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and2nd f (PostPass pa wa) (PostPass pb wb) = Right $ PostPass (f pa pb) $ wa ++ wb
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liftRight = either (return . Left)
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testIODependency :: IODependency p -> IO (Result p)
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testIODependency (IORead _ t) = t
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-- TODO this is a bit odd because this is a dependency that will always
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-- succeed, which kinda makes this pointless. The only reason I would want this
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-- is if I want to have a built-in logic to "choose" a payload to use in
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-- building a higher-level feature
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testIODependency (IOAlways a f) = Right . fmap f <$> evalAlwaysMsg a
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testIODependency (IOSometimes x f) = second (fmap f) <$> evalSometimesMsg x
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--------------------------------------------------------------------------------
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-- | Standalone dependency testing
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type Result_ = Either [String] [String]
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testTree_ :: (d -> IO Result_) -> Tree_ d -> IO (Either [String] [String])
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testTree_ test = go
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where
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go (And_ a b) = either (return . Left) (`test2nd` b) =<< go a
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go (Or_ a b) = either (`test2nd` b) (return . Right) =<< go a
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go (Only_ a) = test a
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test2nd ws = fmap ((Right . (ws ++)) =<<) . go
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testIODependency_ :: IODependency_ -> IO Result_
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testIODependency_ (IOSystem_ s) = maybe (Right []) (Left . (:[])) <$> testSysDependency s
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testIODependency_ (IOSometimes_ x) = second (\(PostPass _ ws) -> ws) <$> evalSometimesMsg x
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--------------------------------------------------------------------------------
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-- | System Dependency Testing
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testSysDependency :: SystemDependency -> IO (Maybe String)
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testSysDependency (IOTest _ t) = t
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testSysDependency (Executable sys bin) = maybe (Just msg) (const Nothing)
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<$> findExecutable bin
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where
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msg = unwords [e, "executable", singleQuote bin, "not found"]
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e = if sys then "system" else "local"
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testSysDependency (Systemd t n) = do
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(rc, _, _) <- readCreateProcessWithExitCode' (shell cmd) ""
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return $ case rc of
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ExitSuccess -> Nothing
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_ -> Just $ "systemd " ++ unitType t ++ " unit '" ++ n ++ "' not found"
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where
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cmd = fmtCmd "systemctl" $ ["--user" | t == UserUnit] ++ ["status", n]
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testSysDependency (AccessiblePath p r w) = permMsg <$> getPermissionsSafe p
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where
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testPerm False _ _ = Nothing
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testPerm True f res = Just $ f res
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permMsg NotFoundError = Just "file not found"
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permMsg PermError = Just "could not get permissions"
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permMsg (PermResult res) =
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case (testPerm r readable res, testPerm w writable res) of
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(Just False, Just False) -> Just "file not readable or writable"
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(Just False, _) -> Just "file not readable"
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(_, Just False) -> Just "file not writable"
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_ -> Nothing
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unitType :: UnitType -> String
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unitType SystemUnit = "system"
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unitType UserUnit = "user"
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--------------------------------------------------------------------------------
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-- | DBus Dependency Testing
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introspectInterface :: InterfaceName
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introspectInterface = interfaceName_ "org.freedesktop.DBus.Introspectable"
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introspectMethod :: MemberName
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introspectMethod = memberName_ "Introspect"
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testDBusDependency_ :: Client -> DBusDependency_ -> IO Result_
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testDBusDependency_ client (Bus bus) = do
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ret <- callMethod client queryBus queryPath queryIface queryMem
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return $ case ret of
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Left e -> Left [e]
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Right b -> let ns = bodyGetNames b in
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if bus' `elem` ns then Right []
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else Left [unwords ["name", singleQuote bus', "not found on dbus"]]
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where
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bus' = formatBusName bus
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queryBus = busName_ "org.freedesktop.DBus"
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queryIface = interfaceName_ "org.freedesktop.DBus"
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queryPath = objectPath_ "/"
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queryMem = memberName_ "ListNames"
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bodyGetNames [v] = fromMaybe [] $ fromVariant v :: [String]
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bodyGetNames _ = []
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testDBusDependency_ client (Endpoint busname objpath iface mem) = do
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ret <- callMethod client busname objpath introspectInterface introspectMethod
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return $ case ret of
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Left e -> Left [e]
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Right body -> procBody body
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where
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procBody body = let res = findMem =<< I.parseXML objpath =<< fromVariant
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=<< listToMaybe body in
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case res of
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Just True -> Right []
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_ -> Left [fmtMsg' mem]
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findMem = fmap (matchMem mem)
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. find (\i -> I.interfaceName i == iface)
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. I.objectInterfaces
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matchMem (Method_ n) = elemMember n I.methodName I.interfaceMethods
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matchMem (Signal_ n) = elemMember n I.signalName I.interfaceSignals
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matchMem (Property_ n) = elemMember n I.propertyName I.interfaceProperties
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elemMember n fname fmember = elem n . fmap fname . fmember
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fmtMem (Method_ n) = "method " ++ singleQuote (formatMemberName n)
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fmtMem (Signal_ n) = "signal " ++ singleQuote (formatMemberName n)
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fmtMem (Property_ n) = "property " ++ singleQuote n
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fmtMsg' m = unwords
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[ "could not find"
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, fmtMem m
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, "on interface"
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, singleQuote $ formatInterfaceName iface
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, "on bus"
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, formatBusName busname
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]
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testDBusDependency_ _ (DBusIO i) = testIODependency_ i
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--------------------------------------------------------------------------------
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-- | IO Lifting functions
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ioSometimes :: MonadIO m => Sometimes (IO a) -> Sometimes (m a)
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ioSometimes (Sometimes n xs) = Sometimes n $ fmap ioSubfeature xs
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ioAlways :: MonadIO m => Always (IO a) -> Always (m a)
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ioAlways (Always n x) = Always n $ ioAlways' x
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ioAlways' :: MonadIO m => Always_ (IO a) -> Always_ (m a)
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ioAlways' (Always_ x) = Always_ $ io x
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ioAlways' (Option sf a) = Option (ioSubfeature sf) $ ioAlways' a
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ioSubfeature :: MonadIO m => SubfeatureRoot (IO a) -> SubfeatureRoot (m a)
|
|
ioSubfeature sf = sf { sfData = ioRoot $ sfData sf }
|
|
|
|
ioRoot :: MonadIO m => Root (IO a) -> Root (m a)
|
|
ioRoot (IORoot a t) = IORoot (io . a) t
|
|
ioRoot (IORoot_ a t) = IORoot_ (io a) t
|
|
ioRoot (DBusRoot a t cl) = DBusRoot (\p c -> io $ a p c) t cl
|
|
ioRoot (DBusRoot_ a t cl) = DBusRoot_ (io . a) t cl
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | Feature constructors
|
|
|
|
sometimes1_ :: LogLevel -> String -> String -> Root a -> Sometimes a
|
|
sometimes1_ l fn n t = Sometimes fn
|
|
[Subfeature{ sfData = t, sfName = n, sfLevel = l }]
|
|
|
|
always1_ :: LogLevel -> String -> String -> Root a -> a -> Always a
|
|
always1_ l fn n t x = Always fn
|
|
$ Option (Subfeature{ sfData = t, sfName = n, sfLevel = l }) (Always_ x)
|
|
|
|
sometimes1 :: String -> String -> Root a -> Sometimes a
|
|
sometimes1 = sometimes1_ Error
|
|
|
|
always1 :: String -> String -> Root a -> a -> Always a
|
|
always1 = always1_ Error
|
|
|
|
sometimesIO :: String -> String -> Tree_ IODependency_ -> a -> Sometimes a
|
|
sometimesIO fn n t x = sometimes1 fn n $ IORoot_ x t
|
|
|
|
sometimesExe :: MonadIO m => String -> String -> Bool -> FilePath -> Sometimes (m ())
|
|
sometimesExe fn n sys path = sometimesExeArgs fn n sys path []
|
|
|
|
sometimesExeArgs :: MonadIO m => String -> String -> Bool -> FilePath
|
|
-> [String] -> Sometimes (m ())
|
|
sometimesExeArgs fn n sys path args =
|
|
sometimesIO fn n (Only_ (IOSystem_ $ Executable sys path)) $ spawnCmd path args
|
|
|
|
sometimesDBus :: Maybe Client -> String -> String -> Tree_ DBusDependency_
|
|
-> (Client -> a) -> Sometimes a
|
|
sometimesDBus c fn n t x = sometimes1 fn n $ DBusRoot_ x t c
|
|
|
|
sometimesEndpoint :: MonadIO m => String -> String -> BusName -> ObjectPath -> InterfaceName
|
|
-> MemberName -> Maybe Client -> Sometimes (m ())
|
|
sometimesEndpoint fn name busname path iface mem client =
|
|
sometimesDBus client fn name deps cmd
|
|
where
|
|
deps = Only_ $ Endpoint busname path iface $ Method_ mem
|
|
cmd c = io $ void $ callMethod c busname path iface mem
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | Dependency Tree Constructors
|
|
|
|
listToAnds :: d -> [d] -> Tree_ d
|
|
listToAnds i = foldr (And_ . Only_) (Only_ i)
|
|
|
|
toAnd :: d -> d -> Tree_ d
|
|
toAnd a b = And_ (Only_ a) (Only_ b)
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | IO Dependency Constructors
|
|
|
|
exe :: Bool -> String -> IODependency_
|
|
exe b = IOSystem_ . Executable b
|
|
|
|
sysExe :: String -> IODependency_
|
|
sysExe = exe True
|
|
|
|
localExe :: String -> IODependency_
|
|
localExe = exe False
|
|
|
|
pathR :: String -> IODependency_
|
|
pathR n = IOSystem_ $ AccessiblePath n True False
|
|
|
|
pathW :: String -> IODependency_
|
|
pathW n = IOSystem_ $ AccessiblePath n False True
|
|
|
|
pathRW :: String -> IODependency_
|
|
pathRW n = IOSystem_ $ AccessiblePath n True True
|
|
|
|
sysd :: UnitType -> String -> IODependency_
|
|
sysd u = IOSystem_ . Systemd u
|
|
|
|
sysdUser :: String -> IODependency_
|
|
sysdUser = sysd UserUnit
|
|
|
|
sysdSystem :: String -> IODependency_
|
|
sysdSystem = sysd SystemUnit
|
|
|
|
sysTest :: String -> IO (Maybe String) -> IODependency_
|
|
sysTest n = IOSystem_ . IOTest n
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | Printing
|
|
|
|
dumpSubfeatureRoot :: SubfeatureRoot a -> IO (JSONUnquotable, Bool)
|
|
dumpSubfeatureRoot Subfeature { sfData = r, sfName = n } =
|
|
first (jsonSubfeature $ Q n) <$> dumpRoot r
|
|
|
|
dumpRoot :: Root a -> IO (JSONUnquotable, Bool)
|
|
dumpRoot (IORoot _ t) = first jsonIORoot <$>
|
|
dumpTree testIODependency testIODependency_ dataIODependency dataIODependency_ t
|
|
dumpRoot (IORoot_ _ t) = first jsonIORoot <$>
|
|
dumpTree_ testIODependency_ dataIODependency_ t
|
|
dumpRoot (DBusRoot _ t (Just cl)) = first jsonDBusRoot <$>
|
|
dumpTree testIODependency (testDBusDependency_ cl) dataIODependency dataDBusDependency t
|
|
dumpRoot (DBusRoot_ _ t (Just cl)) = first jsonDBusRoot <$>
|
|
dumpTree_ (testDBusDependency_ cl) dataDBusDependency t
|
|
-- TODO somehow return a message here that these failed
|
|
dumpRoot (DBusRoot _ t Nothing) =
|
|
return (jsonDBusRoot $ dataTree dataIODependency dataDBusDependency t, False)
|
|
dumpRoot (DBusRoot_ _ t Nothing) =
|
|
return (jsonDBusRoot $ dataTree_ dataDBusDependency t, False)
|
|
|
|
dumpTree :: (d p -> IO (Result p)) -> (d_ -> IO Result_)
|
|
-> (d p -> DependencyData) -> (d_ -> DependencyData) -> Tree d d_ p
|
|
-> IO (JSONUnquotable, Bool)
|
|
dumpTree test test_ dd dd_ = go
|
|
where
|
|
go (And12 _ a b) = doAnd go go data' a b
|
|
go (And1 a b) = doAnd go dump_' (dataTree_ dd_) a b
|
|
go (And2 a b) = doAnd dump_' go data' a b
|
|
go (Or a b) = do
|
|
(sa, ra) <- go a
|
|
let j = jsonOr sa
|
|
if ra then return (j $ data' b, ra) else first j <$> go b
|
|
go (Only d) = do
|
|
r <- fromResult <$> test d
|
|
let (x, y) = dd d
|
|
return (jsonLeaf (Just r) x y, fst r)
|
|
dump_' = dumpTree_ test_ dd_
|
|
data' = dataTree dd dd_
|
|
doAnd fa fb fb_ a b = do
|
|
(sa, ra) <- fa a
|
|
let j = jsonAnd sa
|
|
if ra then first j <$> fb b else return (j $ fb_ b, ra)
|
|
|
|
dumpTree_ :: (d_ -> IO Result_) -> (d_ -> DependencyData) -> Tree_ d_
|
|
-> IO (JSONUnquotable, Bool)
|
|
dumpTree_ test_ dd_ = go
|
|
where
|
|
go (And_ a b) = do
|
|
(sa, ra) <- go a
|
|
let j = jsonAnd sa
|
|
if ra then first j <$> go b else return (j $ dataTree_ dd_ b, ra)
|
|
go (Or_ a b) = do
|
|
(sa, ra) <- go a
|
|
let j = jsonAnd sa
|
|
if ra then return (j $ dataTree_ dd_ b, ra) else first j <$> go b
|
|
go (Only_ d) = do
|
|
r <- fromResult_ <$> test_ d
|
|
let (x, y) = dd_ d
|
|
return (jsonLeaf (Just r) x y, fst r)
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | Dependency data for JSON
|
|
|
|
type DependencyData = (JSONQuotable, [(String, JSONMixed)])
|
|
|
|
dataSubfeatureRoot :: SubfeatureRoot a -> JSONUnquotable
|
|
dataSubfeatureRoot Subfeature { sfData = r, sfName = n } =
|
|
jsonSubfeature (Q n) $ dataRoot r
|
|
|
|
dataRoot :: Root a -> JSONUnquotable
|
|
dataRoot (IORoot _ t) = dataTree dataIODependency dataIODependency_ t
|
|
dataRoot (IORoot_ _ t) = dataTree_ dataIODependency_ t
|
|
dataRoot (DBusRoot _ t _) = dataTree dataIODependency dataDBusDependency t
|
|
dataRoot (DBusRoot_ _ t _) = dataTree_ dataDBusDependency t
|
|
|
|
dataTree :: (d p -> DependencyData) -> (d_ -> DependencyData) -> Tree d d_ p -> JSONUnquotable
|
|
dataTree f f_ = go
|
|
where
|
|
go (And12 _ a b) = jsonAnd (go a) (go b)
|
|
go (And1 a b) = jsonAnd (go a) (dataTree_ f_ b)
|
|
go (And2 a b) = jsonAnd (dataTree_ f_ a) (go b)
|
|
go (Or a b) = jsonOr (go a) (go b)
|
|
go (Only d) = uncurry jsonLeafUntested $ f d
|
|
|
|
dataTree_ :: (d_ -> DependencyData) -> Tree_ d_ -> JSONUnquotable
|
|
dataTree_ f_ = go
|
|
where
|
|
go (And_ a b) = jsonAnd (go a) (go b)
|
|
go (Or_ a b) = jsonOr (go a) (go b)
|
|
go (Only_ d) = uncurry jsonLeafUntested $ f_ d
|
|
|
|
dataIODependency :: IODependency p -> DependencyData
|
|
dataIODependency d = case d of
|
|
(IORead n _) -> (Q "ioread", [("desc", JSON_Q $ Q n)])
|
|
-- TODO make this actually useful (I actually need to name my features)
|
|
(IOSometimes _ _) -> (Q "sometimes", [])
|
|
(IOAlways _ _) -> (Q "always", [])
|
|
|
|
dataIODependency_ :: IODependency_ -> DependencyData
|
|
dataIODependency_ d = case d of
|
|
(IOSystem_ s) -> dataSysDependency s
|
|
(IOSometimes_ _) -> (Q "sometimes", [])
|
|
|
|
dataSysDependency :: SystemDependency -> DependencyData
|
|
dataSysDependency d = do
|
|
case d of
|
|
(Executable sys path) -> (Q "executable", [ ("system", JSON_UQ $ jsonBool sys)
|
|
, ("path", JSON_Q $ Q path)
|
|
])
|
|
(IOTest desc _) -> (Q "iotest", [("desc", JSON_Q $ Q desc)])
|
|
(AccessiblePath p r w) -> (Q "path", [ ("path", JSON_Q $ Q p)
|
|
, ("readable", JSON_UQ $ jsonBool r)
|
|
, ("writable", JSON_UQ $ jsonBool w)
|
|
])
|
|
(Systemd t n) -> (Q "systemd", [ ("unittype", JSON_Q $ Q $ unitType t)
|
|
, ("unit", JSON_Q $ Q n)])
|
|
|
|
dataDBusDependency :: DBusDependency_ -> DependencyData
|
|
dataDBusDependency d =
|
|
case d of
|
|
(DBusIO i) -> dataIODependency_ i
|
|
(Bus b) -> (Q "bus", [("busname", JSON_Q $ Q $ formatBusName b)])
|
|
(Endpoint b o i m) -> let (mt, mn) = memberData m
|
|
in (Q "endpoint", [ ("busname", JSON_Q $ Q $ formatBusName b)
|
|
, ("objectpath", JSON_Q $ Q $ formatObjectPath o)
|
|
, ("interface", JSON_Q $ Q $ formatInterfaceName i)
|
|
, ("membertype", JSON_Q $ Q mt)
|
|
, ("membername", JSON_Q $ Q mn)
|
|
])
|
|
where
|
|
memberData (Method_ n) = ("method", formatMemberName n)
|
|
memberData (Signal_ n) = ("signal", formatMemberName n)
|
|
memberData (Property_ n) = ("property", n)
|
|
|
|
fromResult :: Result a -> (Bool, [JSONQuotable])
|
|
fromResult = second (fmap Q) . either (False,) (\(PostPass _ ws) -> (True, ws))
|
|
|
|
fromResult_ :: Result_ -> (Bool, [JSONQuotable])
|
|
fromResult_ = second (fmap Q) . either (False,) (True,)
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | JSON formatting
|
|
--
|
|
-- I could use Aeson...but I don't feel like it (too many intermediate types)
|
|
|
|
newtype JSONQuotable = Q String
|
|
|
|
newtype JSONUnquotable = UQ String
|
|
|
|
data JSONMixed = JSON_UQ JSONUnquotable | JSON_Q JSONQuotable
|
|
|
|
jsonAlways :: JSONQuotable -> Maybe JSONUnquotable -> [JSONUnquotable]
|
|
-> [JSONUnquotable] -> JSONUnquotable
|
|
jsonAlways = jsonFeature True
|
|
|
|
jsonSometimes :: JSONQuotable -> Maybe JSONUnquotable -> [JSONUnquotable]
|
|
-> [JSONUnquotable] -> JSONUnquotable
|
|
jsonSometimes = jsonFeature False
|
|
|
|
jsonFeature :: Bool -> JSONQuotable -> Maybe JSONUnquotable -> [JSONUnquotable]
|
|
-> [JSONUnquotable] -> JSONUnquotable
|
|
jsonFeature isalways name success failed untested = jsonObject
|
|
[ ("type", JSON_Q $ Q $ if isalways then "always" else "sometimes")
|
|
, ("name", JSON_Q name)
|
|
, ("success", JSON_UQ $ fromMaybe (UQ "null") success)
|
|
, ("failed", JSON_UQ $ jsonArray $ fmap JSON_UQ failed)
|
|
, ("untested", JSON_UQ $ jsonArray $ fmap JSON_UQ untested)
|
|
]
|
|
|
|
jsonSubfeature :: JSONQuotable -> JSONUnquotable -> JSONUnquotable
|
|
jsonSubfeature n r = jsonObject
|
|
[ ("name", JSON_Q n)
|
|
, ("root", JSON_UQ r)
|
|
]
|
|
|
|
jsonIORoot :: JSONUnquotable -> JSONUnquotable
|
|
jsonIORoot = jsonRoot True
|
|
|
|
jsonDBusRoot :: JSONUnquotable -> JSONUnquotable
|
|
jsonDBusRoot = jsonRoot False
|
|
|
|
jsonRoot :: Bool -> JSONUnquotable -> JSONUnquotable
|
|
jsonRoot isIO tree = jsonObject
|
|
[ ("type", JSON_Q $ Q $ if isIO then "io" else "dbus")
|
|
, ("tree", JSON_UQ tree)
|
|
]
|
|
|
|
jsonLeafUntested :: JSONQuotable -> [(String, JSONMixed)] -> JSONUnquotable
|
|
jsonLeafUntested = jsonLeaf Nothing
|
|
|
|
jsonLeaf :: Maybe (Bool, [JSONQuotable]) -> JSONQuotable -> [(String, JSONMixed)]
|
|
-> JSONUnquotable
|
|
jsonLeaf status deptype depdata = jsonObject
|
|
[ ("type", JSON_Q deptype)
|
|
, ("status", jsonMaybe (JSON_UQ . uncurry jsonStatus) status)
|
|
, ("data", JSON_UQ $ jsonObject depdata)
|
|
]
|
|
|
|
jsonStatus :: Bool -> [JSONQuotable] -> JSONUnquotable
|
|
jsonStatus present messages = jsonObject
|
|
[ ("present", JSON_UQ $ jsonBool present)
|
|
, ("messages", JSON_UQ $ jsonArray $ fmap JSON_Q messages)
|
|
]
|
|
|
|
jsonAnd :: JSONUnquotable -> JSONUnquotable -> JSONUnquotable
|
|
jsonAnd = jsonBranch True
|
|
|
|
jsonOr :: JSONUnquotable -> JSONUnquotable -> JSONUnquotable
|
|
jsonOr = jsonBranch False
|
|
|
|
jsonBranch :: Bool -> JSONUnquotable -> JSONUnquotable -> JSONUnquotable
|
|
jsonBranch isAnd l r = jsonObject
|
|
[ ("test", JSON_Q $ Q $ if isAnd then "and" else "or")
|
|
, ("left", JSON_UQ l)
|
|
, ("right",JSON_UQ r)
|
|
]
|
|
|
|
jsonMaybe :: (a -> JSONMixed) -> Maybe a -> JSONMixed
|
|
jsonMaybe = maybe (JSON_UQ $ UQ "null")
|
|
|
|
jsonBool :: Bool -> JSONUnquotable
|
|
jsonBool True = UQ "true"
|
|
jsonBool False = UQ "false"
|
|
|
|
jsonArray :: [JSONMixed] -> JSONUnquotable
|
|
jsonArray = UQ . bracket . intercalate "," . fmap quoteMaybe
|
|
|
|
jsonObject :: [(String, JSONMixed)] -> JSONUnquotable
|
|
jsonObject = UQ . curly . intercalate ","
|
|
. fmap (\(k, v) -> doubleQuote k ++ ":" ++ quoteMaybe v)
|
|
|
|
quoteMaybe :: JSONMixed -> String
|
|
quoteMaybe (JSON_Q (Q s)) = doubleQuote s
|
|
quoteMaybe (JSON_UQ (UQ s)) = s
|
|
|
|
bracket :: String -> String
|
|
bracket s = "[" ++ s ++ "]"
|
|
|
|
curly :: String -> String
|
|
curly s = "{" ++ s ++ "}"
|
|
|
|
--------------------------------------------------------------------------------
|
|
-- | Other random formatting
|
|
|
|
failedMsgs :: Bool -> String -> [SubfeatureFail] -> IO [String]
|
|
failedMsgs err fn = fmap concat . mapM (failedMsg err fn)
|
|
|
|
failedMsg :: Bool -> String -> SubfeatureFail -> IO [String]
|
|
failedMsg err fn Subfeature { sfData = d, sfName = n } = do
|
|
mapM (fmtMsg err fn n) $ case d of (PostMissing e) -> [e]; (PostFail es) -> es
|
|
|
|
fmtMsg :: Bool -> String -> String -> String -> IO String
|
|
fmtMsg err fn n msg = do
|
|
let e = if err then "ERROR" else "WARNING"
|
|
p <- getProgName
|
|
return $ unwords [bracket p, bracket e, bracket fn, bracket n, msg]
|
|
|