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{-# LANGUAGE LambdaCase #-}
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{-# LANGUAGE OverloadedStrings #-}
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module ACPI
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( ACPIEvent(..)
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, isDischarging
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, runPowermon
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, handleACPI
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) where
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import Power
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import SendXMsg
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import Control.Exception
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import Control.Monad
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import Data.ByteString hiding (readFile)
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import Data.ByteString.Char8 as C hiding (readFile)
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import Data.Connection
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import System.IO.Streams.Internal as S (read)
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import System.IO.Streams.UnixSocket
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import Text.Read (readMaybe)
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import XMonad.Core
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2020-03-22 23:20:10 -04:00
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data ACPIEvent = Power
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| Sleep
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| LidClose
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deriving (Eq)
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instance Enum ACPIEvent where
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toEnum 0 = Power
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toEnum 1 = Sleep
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toEnum 2 = LidClose
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toEnum _ = errorWithoutStackTrace "ACPI.Enum.ACPIEvent.toEnum: bad argument"
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fromEnum Power = 0
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fromEnum Sleep = 1
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fromEnum LidClose = 2
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sendACPIEvent :: ACPIEvent -> IO ()
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sendACPIEvent = sendXMsg ACPI . show . fromEnum
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parseLine :: ByteString -> Maybe ACPIEvent
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parseLine line =
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case splitLine line of
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(_:"PBTN":_) -> Just Power
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(_:"PWRF":_) -> Just Power
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(_:"SLPB":_) -> Just Sleep
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(_:"SBTN":_) -> Just Sleep
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(_:"LID":"close":_) -> Just LidClose
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_ -> Nothing
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where
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splitLine = C.words . C.reverse . C.dropWhile (== '\n') . C.reverse
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isDischarging :: IO (Maybe Bool)
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isDischarging = do
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status <- try $ readFile "/sys/class/power_supply/BAT0/status"
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:: IO (Either IOException String)
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case status of
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Left _ -> return Nothing
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Right s -> return $ Just (s == "Discharging")
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runPowermon :: IO ()
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runPowermon = do
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-- TODO barf when the socket doesn't exist
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Connection { source = s } <- connect "/var/run/acpid.socket"
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forever $ readStream s
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where
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readStream s = do
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out <- S.read s
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mapM_ sendACPIEvent $ parseLine =<< out
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handleACPI :: String -> X ()
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handleACPI tag = do
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let acpiTag = toEnum <$> readMaybe tag :: Maybe ACPIEvent
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forM_ acpiTag $ \case
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Power -> runPowerPrompt
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Sleep -> runSuspendPrompt
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LidClose -> do
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status <- io isDischarging
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forM_ status $ \s -> runScreenLock >> when s runSuspend
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