mirror of
https://github.com/xmonad/xmonad.git
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206 lines
6.7 KiB
Haskell
206 lines
6.7 KiB
Haskell
module Operations where
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import Data.List
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import Data.Maybe
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import Data.Bits
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import qualified Data.Map as M
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import Control.Monad.State
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import System.Posix.Process
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import System.Environment
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import Graphics.X11.Xlib
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import Graphics.X11.Xlib.Extras
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import XMonad
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import qualified StackSet as W
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-- ---------------------------------------------------------------------
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-- Managing windows
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-- | refresh. Refresh the currently focused window. Resizes to full
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-- screen and raises the window.
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refresh :: X ()
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refresh = do
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ws <- gets workspace
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ws2sc <- gets wsOnScreen
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xinesc <- gets xineScreens
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d <- gets display
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l <- gets layout
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ratio <- gets leftWidth
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let move w a b c e = io $ moveResizeWindow d w a b c e
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flip mapM_ (M.assocs ws2sc) $ \(n, scn) -> do
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let sc = xinesc !! scn
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sx = rect_x sc
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sy = rect_y sc
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sw = rect_width sc
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sh = rect_height sc
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case l of
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Full -> whenJust (W.peekStack n ws) $ \w -> do
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move w sx sy sw sh
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io $ raiseWindow d w
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Tile -> case W.index n ws of
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[] -> return ()
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[w] -> do move w sx sy sw sh; io $ raiseWindow d w
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(w:s) -> do
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let lw = floor $ fromIntegral sw * ratio
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rw = sw - fromIntegral lw
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rh = fromIntegral sh `div` fromIntegral (length s)
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move w sx sy (fromIntegral lw) sh
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zipWithM_ (\i a -> move a (sx + lw) (sy + i * rh) rw (fromIntegral rh)) [0..] s
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whenJust (W.peek ws) (io . raiseWindow d) -- this is always Just
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whenJust (W.peek ws) setFocus
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-- | switchLayout. Switch to another layout scheme.
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switchLayout :: X ()
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switchLayout = do
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modify (\s -> s {layout = case layout s of
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Full -> Tile
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Tile -> Full })
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refresh
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-- | changeWidth. Change the width of the main window in tiling mode.
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changeWidth :: Rational -> X ()
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changeWidth delta = do
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modify (\s -> s {leftWidth = leftWidth s + delta})
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refresh
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-- | windows. Modify the current window list with a pure function, and refresh
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windows :: (WorkSpace -> WorkSpace) -> X ()
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windows f = do
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modify $ \s -> s { workspace = f (workspace s) }
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refresh
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ws <- gets workspace
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trace (show ws) -- log state changes to stderr
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-- | hide. Hide a window by moving it offscreen.
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hide :: Window -> X ()
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hide w = withDisplay $ \d -> do
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(sw,sh) <- gets dimensions
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io $ moveWindow d w (2*fromIntegral sw) (2*fromIntegral sh)
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-- ---------------------------------------------------------------------
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-- Window operations
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-- | manage. Add a new window to be managed in the current workspace. Bring it into focus.
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-- If the window is already under management, it is just raised.
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--
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-- When we start to manage a window, it gains focus.
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--
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manage :: Window -> X ()
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manage w = do
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withDisplay $ \d -> io $ do
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selectInput d w $ structureNotifyMask .|. enterWindowMask .|. propertyChangeMask
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mapWindow d w
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setFocus w
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windows $ W.push w
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-- | unmanage. A window no longer exists, remove it from the window
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-- list, on whatever workspace it is.
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unmanage :: Window -> X ()
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unmanage w = do
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windows $ W.delete w
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withServerX $ do
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setTopFocus
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withDisplay $ \d -> io (sync d False)
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-- TODO, everything operates on the current display, so wrap it up.
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-- | Grab the X server (lock it) from the X monad
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withServerX :: X () -> X ()
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withServerX f = withDisplay $ \dpy -> do
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io $ grabServer dpy
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f
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io $ ungrabServer dpy
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-- | Explicitly set the keyboard focus to the given window
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setFocus :: Window -> X ()
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setFocus w = withDisplay $ \d -> io $ setInputFocus d w revertToPointerRoot 0
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-- | Set the focus to the window on top of the stack, or root
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setTopFocus :: X ()
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setTopFocus = do
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ws <- gets workspace
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case W.peek ws of
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Just new -> setFocus new
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Nothing -> gets theRoot >>= setFocus
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-- | raise. focus to window at offset 'n' in list.
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-- The currently focused window is always the head of the list
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raise :: Ordering -> X ()
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raise = windows . W.rotate
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-- | promote. Make the focused window the master window in its workspace
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promote :: X ()
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promote = windows (\w -> maybe w (\k -> W.promote k w) (W.peek w))
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-- | Kill the currently focused client
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kill :: X ()
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kill = withDisplay $ \d -> do
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ws <- gets workspace
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whenJust (W.peek ws) $ \w -> do
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protocols <- io $ getWMProtocols d w
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wmdelt <- gets wmdelete
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wmprot <- gets wmprotocols
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if wmdelt `elem` protocols
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then io $ allocaXEvent $ \ev -> do
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setEventType ev clientMessage
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setClientMessageEvent ev w wmprot 32 wmdelt 0
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sendEvent d w False noEventMask ev
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else io (killClient d w) >> return ()
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-- | tag. Move a window to a new workspace
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tag :: Int -> X ()
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tag o = do
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ws <- gets workspace
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let m = W.current ws
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when (n /= m) $
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whenJust (W.peek ws) $ \w -> do
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hide w
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windows $ W.shift n
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where n = o-1
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-- | view. Change the current workspace to workspce at offset 'n-1'.
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view :: Int -> X ()
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view o = do
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ws <- gets workspace
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ws2sc <- gets wsOnScreen
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let m = W.current ws
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-- is the workspace we want to switch to currently visible?
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if M.member n ws2sc
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then windows $ W.view n
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else do
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sc <- case M.lookup m ws2sc of
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Nothing -> do
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trace "Current workspace isn't visible! This should never happen!"
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-- we don't know what screen to use, just use the first one.
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return 0
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Just sc -> return sc
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modify $ \s -> s { wsOnScreen = M.insert n sc (M.filter (/=sc) ws2sc) }
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gets wsOnScreen >>= trace . show
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windows $ W.view n
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mapM_ hide (W.index m ws)
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setTopFocus
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where n = o-1
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-- | True if window is under management by us
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isClient :: Window -> X Bool
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isClient w = liftM (W.member w) (gets workspace)
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-- | screenWS. Returns the workspace currently visible on screen n
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screenWS :: Int -> X Int
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screenWS n = do
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ws2sc <- gets wsOnScreen
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-- FIXME: It's ugly to have to query this way. We need a different way to
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-- keep track of screen <-> workspace mappings.
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let ws = fmap fst $ find (\(_, scn) -> scn == (n-1)) (M.assocs ws2sc)
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return $ (fromMaybe 0 ws) + 1
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-- | Restart xmonad by exec()'ing self. This doesn't save state and xmonad has
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-- to be in PATH for this to work.
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restart :: IO ()
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restart = do prog <- getProgName
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args <- getArgs
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executeFile prog True args Nothing
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