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Workspace-specific layouts
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21
Config.hs
21
Config.hs
@ -49,10 +49,6 @@ workspaces = 9
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modMask :: KeyMask
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modMask = mod1Mask
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-- The default size for the left pane.
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defaultLeftWidth :: Rational
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defaultLeftWidth = 1%2
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-- How much to change the size of the windows on the left by default.
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defaultDelta :: Rational
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defaultDelta = 3%100
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@ -61,16 +57,25 @@ defaultDelta = 3%100
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numlockMask :: KeySym
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numlockMask = lockMask
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-- What layout to start in. See the definition of Layout in XMonad.hs for options.
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defaultLayout :: Layout
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defaultLayout = Full
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-- What layout to start in, and what the default proportion for the
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-- left pane should be in the tiled layout. See LayoutDesc and
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-- friends in XMonad.hs for options.
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startingLayoutDesc :: LayoutDesc
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startingLayoutDesc = LayoutDesc { layoutType = Full
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, tileFraction = 1%2
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}
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-- The keys list.
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keys :: M.Map (KeyMask, KeySym) (X ())
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keys = M.fromList $
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[ ((modMask .|. shiftMask, xK_Return), spawn "xterm")
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, ((modMask, xK_p ), spawn "exe=`dmenu_path | dmenu` && exec $exe")
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, ((controlMask, xK_space ), spawn "gmrun")
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-- Stealing Ctrl + Space is evil.
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-- , ((controlMask, xK_space ), spawn "gmrun")
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, ((modMask, xK_Tab ), raise GT)
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, ((modMask, xK_j ), raise GT)
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, ((modMask, xK_k ), raise LT)
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22
Main.hs
22
Main.hs
@ -41,17 +41,17 @@ main = do
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xinesc <- getScreenInfo dpy
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let st = XState
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{ display = dpy
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, screen = dflt
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, xineScreens = xinesc
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, wsOnScreen = M.fromList $ map (\n -> (n,n)) [0..((length xinesc)-1)]
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, theRoot = rootw
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, wmdelete = wmdelt
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, wmprotocols = wmprot
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, dimensions = (displayWidth dpy dflt, displayHeight dpy dflt)
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, workspace = W.empty workspaces
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, layout = defaultLayout
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, leftWidth = defaultLeftWidth
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{ display = dpy
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, screen = dflt
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, xineScreens = xinesc
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, wsOnScreen = M.fromList $ map (\n -> (n,n)) [0..((length xinesc)-1)]
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, theRoot = rootw
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, wmdelete = wmdelt
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, wmprotocols = wmprot
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, dimensions = (displayWidth dpy dflt, displayHeight dpy dflt)
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, workspace = W.empty workspaces
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, defaultLayoutDesc = startingLayoutDesc
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, layoutDescs = M.empty
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}
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xSetErrorHandler -- in C, I'm too lazy to write the binding
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@ -17,6 +17,7 @@ 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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@ -28,8 +29,10 @@ refresh = do
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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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fls <- gets layoutDescs
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dfltfl <- gets defaultLayoutDesc
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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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@ -37,6 +40,9 @@ refresh = do
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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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fl = M.findWithDefault dfltfl n fls
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l = layoutType fl
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ratio = tileFraction fl
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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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@ -53,20 +59,25 @@ refresh = do
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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. Switch to another layout scheme. Switches the current workspace.
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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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switchLayout = layout $ \fl -> fl { layoutType = case layoutType fl of
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Full -> Tile
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Tile -> Full }
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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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-- the min/max stuff is to make sure that 0 <= leftWidth <= 1
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modify (\s -> s {leftWidth = min 1 $ max 0 $ leftWidth s + delta})
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refresh
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layout $ \fl -> fl { tileFraction = min 1 $ max 0 $ tileFraction fl + delta }
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-- | layout. Modify the current workspace's layout with a pure function and refresh.
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layout :: (LayoutDesc -> LayoutDesc) -> X ()
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layout f = do modify $ \s -> let fls = layoutDescs s
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n = W.current . workspace $ s
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fl = M.findWithDefault (defaultLayoutDesc s) n fls
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in s { layoutDescs = M.insert n (f fl) fls }
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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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@ -208,3 +219,5 @@ 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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18
XMonad.hs
18
XMonad.hs
@ -15,7 +15,7 @@
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--
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module XMonad (
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X, WorkSpace, XState(..), Layout(..),
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X, WorkSpace, XState(..), Layout(..), LayoutDesc(..),
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runX, io, withDisplay, isRoot,
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spawn, trace, whenJust
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) where
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@ -43,9 +43,13 @@ data XState = XState
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, wmprotocols :: {-# UNPACK #-} !Atom
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, dimensions :: {-# UNPACK #-} !(Int,Int)
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, workspace :: {-# UNPACK #-} !WorkSpace -- ^ workspace list
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, layout :: {-# UNPACK #-} !Layout
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, defaultLayoutDesc :: {-# UNPACK #-} !LayoutDesc
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, layoutDescs :: {-# UNPACK #-} !(M.Map Int LayoutDesc)
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-- ^ mapping of workspaces to descriptions of their layouts
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-- , layout :: {-# UNPACK #-} !Layout
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-- how much of the screen the main window should take
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, leftWidth :: {-# UNPACK #-} !Rational
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-- , leftWidth :: {-# UNPACK #-} !Rational
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}
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type WorkSpace = StackSet Window
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@ -53,6 +57,14 @@ type WorkSpace = StackSet Window
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-- | The different layout modes
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data Layout = Full | Tile
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-- | A full description of a particular workspace's layout parameters.
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data LayoutDesc = LayoutDesc { layoutType :: !Layout
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, tileFraction :: !Rational
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}
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-- | The X monad, a StateT transformer over IO encapuslating the window
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-- manager state
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newtype X a = X (StateT XState IO a)
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