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224 lines
9.7 KiB
Haskell
224 lines
9.7 KiB
Haskell
{-# LANGUAGE TypeSynonymInstances, MultiParamTypeClasses, PatternGuards #-}
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----------------------------------------------------------------------------
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-- |
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-- Module : XMonad.Layout.BorderResize
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-- Copyright : (c) Jan Vornberger 2009
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-- License : BSD3-style (see LICENSE)
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--
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-- Maintainer : jan.vornberger@informatik.uni-oldenburg.de
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-- Stability : unstable
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-- Portability : not portable
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--
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-- This layout modifier will allow to resize windows by dragging their
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-- borders with the mouse. However, it only works in layouts or modified
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-- layouts that react to the 'SetGeometry' message.
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-- "XMonad.Layout.WindowArranger" can be used to create such a setup,
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-- but it is probably must useful in a floating layout such as
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-- "XMonad.Layout.PositionStoreFloat" with which it has been mainly tested.
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-- See the documentation of PositionStoreFloat for a typical usage example.
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--
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-----------------------------------------------------------------------------
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module XMonad.Layout.BorderResize
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( -- * Usage
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-- $usage
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borderResize
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, BorderResize (..)
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, RectWithBorders, BorderInfo,
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) where
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import XMonad
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import XMonad.Layout.Decoration
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import XMonad.Layout.WindowArranger
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import XMonad.Util.XUtils
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import Control.Monad(when)
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import qualified Data.Map as M
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-- $usage
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-- You can use this module with the following in your
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-- @~\/.xmonad\/xmonad.hs@:
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--
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-- > import XMonad.Layout.BorderResize
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-- > myLayout = borderResize (... layout setup that reacts to SetGeometry ...)
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-- > main = xmonad def { layoutHook = myLayout }
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--
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type BorderBlueprint = (Rectangle, Glyph, BorderType)
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data BorderType = RightSideBorder
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| LeftSideBorder
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| TopSideBorder
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| BottomSideBorder
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deriving (Show, Read, Eq)
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data BorderInfo = BI { bWin :: Window,
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bRect :: Rectangle,
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bType :: BorderType
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} deriving (Show, Read)
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type RectWithBorders = (Rectangle, [BorderInfo])
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data BorderResize a = BR (M.Map Window RectWithBorders) deriving (Show, Read)
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brBorderSize :: Dimension
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brBorderSize = 2
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borderResize :: l a -> ModifiedLayout BorderResize l a
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borderResize = ModifiedLayout (BR M.empty)
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instance LayoutModifier BorderResize Window where
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redoLayout _ _ Nothing wrs = return (wrs, Nothing)
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redoLayout (BR wrsLastTime) _ _ wrs = do
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let correctOrder = map fst wrs
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wrsCurrent = M.fromList wrs
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wrsGone = M.difference wrsLastTime wrsCurrent
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wrsAppeared = M.difference wrsCurrent wrsLastTime
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wrsStillThere = M.intersectionWith testIfUnchanged wrsLastTime wrsCurrent
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handleGone wrsGone
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wrsCreated <- handleAppeared wrsAppeared
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let wrsChanged = handleStillThere wrsStillThere
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wrsThisTime = M.union wrsChanged wrsCreated
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return (compileWrs wrsThisTime correctOrder, Just $ BR wrsThisTime)
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-- What we return is the original wrs with the new border
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-- windows inserted at the correct positions - this way, the core
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-- will restack the borders correctly.
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-- We also return information about our borders, so that we
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-- can handle events that they receive and destroy them when
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-- they are no longer needed.
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where
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testIfUnchanged entry@(rLastTime, _) rCurrent =
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if rLastTime == rCurrent
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then (Nothing, entry)
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else (Just rCurrent, entry)
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handleMess (BR wrsLastTime) m
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| Just e <- fromMessage m :: Maybe Event =
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handleResize (createBorderLookupTable wrsLastTime) e >> return Nothing
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| Just _ <- fromMessage m :: Maybe LayoutMessages =
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handleGone wrsLastTime >> return (Just $ BR M.empty)
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handleMess _ _ = return Nothing
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compileWrs :: M.Map Window RectWithBorders -> [Window] -> [(Window, Rectangle)]
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compileWrs wrsThisTime correctOrder = let wrs = reorder (M.toList wrsThisTime) correctOrder
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in concat $ map compileWr wrs
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compileWr :: (Window, RectWithBorders) -> [(Window, Rectangle)]
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compileWr (w, (r, borderInfos)) =
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let borderWrs = for borderInfos $ \bi -> (bWin bi, bRect bi)
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in borderWrs ++ [(w, r)]
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handleGone :: M.Map Window RectWithBorders -> X ()
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handleGone wrsGone = mapM_ deleteWindow borderWins
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where
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borderWins = map bWin . concat . map snd . M.elems $ wrsGone
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handleAppeared :: M.Map Window Rectangle -> X (M.Map Window RectWithBorders)
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handleAppeared wrsAppeared = do
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let wrs = M.toList wrsAppeared
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wrsCreated <- mapM handleSingleAppeared wrs
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return $ M.fromList wrsCreated
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handleSingleAppeared :: (Window, Rectangle) -> X (Window, RectWithBorders)
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handleSingleAppeared (w, r) = do
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let borderBlueprints = prepareBorders r
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borderInfos <- mapM createBorder borderBlueprints
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return (w, (r, borderInfos))
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handleStillThere :: M.Map Window (Maybe Rectangle, RectWithBorders) -> M.Map Window RectWithBorders
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handleStillThere wrsStillThere = M.map handleSingleStillThere wrsStillThere
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handleSingleStillThere :: (Maybe Rectangle, RectWithBorders) -> RectWithBorders
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handleSingleStillThere (Nothing, entry) = entry
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handleSingleStillThere (Just rCurrent, (_, borderInfos)) = (rCurrent, updatedBorderInfos)
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where
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changedBorderBlueprints = prepareBorders rCurrent
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updatedBorderInfos = map updateBorderInfo . zip borderInfos $ changedBorderBlueprints
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-- assuming that the four borders are always in the same order
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updateBorderInfo :: (BorderInfo, BorderBlueprint) -> BorderInfo
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updateBorderInfo (borderInfo, (r, _, _)) = borderInfo { bRect = r }
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createBorderLookupTable :: M.Map Window RectWithBorders -> [(Window, (BorderType, Window, Rectangle))]
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createBorderLookupTable wrsLastTime = concat $ map processSingleEntry $ M.toList wrsLastTime
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where
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processSingleEntry :: (Window, RectWithBorders) -> [(Window, (BorderType, Window, Rectangle))]
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processSingleEntry (w, (r, borderInfos)) = for borderInfos $ \bi -> (bWin bi, (bType bi, w, r))
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prepareBorders :: Rectangle -> [BorderBlueprint]
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prepareBorders (Rectangle x y wh ht) =
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[((Rectangle (x + fi wh - fi brBorderSize) y brBorderSize ht), xC_right_side , RightSideBorder),
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((Rectangle x y brBorderSize ht) , xC_left_side , LeftSideBorder),
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((Rectangle x y wh brBorderSize) , xC_top_side , TopSideBorder),
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((Rectangle x (y + fi ht - fi brBorderSize) wh brBorderSize), xC_bottom_side, BottomSideBorder)
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]
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handleResize :: [(Window, (BorderType, Window, Rectangle))] -> Event -> X ()
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handleResize borders ButtonEvent { ev_window = ew, ev_event_type = et }
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| et == buttonPress, Just edge <- lookup ew borders =
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case edge of
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(RightSideBorder, hostWin, (Rectangle hx hy _ hht)) ->
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mouseDrag (\x _ -> do
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let nwh = max 1 $ fi (x - hx)
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rect = Rectangle hx hy nwh hht
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focus hostWin
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when (x - hx > 0) $ sendMessage (SetGeometry rect)) (focus hostWin)
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(LeftSideBorder, hostWin, (Rectangle hx hy hwh hht)) ->
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mouseDrag (\x _ -> do
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let nx = max 0 $ min (hx + fi hwh) $ x
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nwh = max 1 $ hwh + fi (hx - x)
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rect = Rectangle nx hy nwh hht
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focus hostWin
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when (x < hx + fi hwh) $ sendMessage (SetGeometry rect)) (focus hostWin)
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(TopSideBorder, hostWin, (Rectangle hx hy hwh hht)) ->
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mouseDrag (\_ y -> do
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let ny = max 0 $ min (hy + fi hht) $ y
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nht = max 1 $ hht + fi (hy - y)
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rect = Rectangle hx ny hwh nht
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focus hostWin
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when (y < hy + fi hht) $ sendMessage (SetGeometry rect)) (focus hostWin)
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(BottomSideBorder, hostWin, (Rectangle hx hy hwh _)) ->
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mouseDrag (\_ y -> do
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let nht = max 1 $ fi (y - hy)
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rect = Rectangle hx hy hwh nht
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focus hostWin
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when (y - hy > 0) $ sendMessage (SetGeometry rect)) (focus hostWin)
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handleResize _ _ = return ()
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createBorder :: BorderBlueprint -> X (BorderInfo)
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createBorder (borderRect, borderCursor, borderType) = do
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borderWin <- createInputWindow borderCursor borderRect
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return BI { bWin = borderWin, bRect = borderRect, bType = borderType }
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createInputWindow :: Glyph -> Rectangle -> X Window
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createInputWindow cursorGlyph r = withDisplay $ \d -> do
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win <- mkInputWindow d r
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io $ selectInput d win (exposureMask .|. buttonPressMask)
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cursor <- io $ createFontCursor d cursorGlyph
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io $ defineCursor d win cursor
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io $ freeCursor d cursor
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showWindow win
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return win
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mkInputWindow :: Display -> Rectangle -> X Window
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mkInputWindow d (Rectangle x y w h) = do
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rw <- asks theRoot
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let screen = defaultScreenOfDisplay d
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visual = defaultVisualOfScreen screen
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attrmask = cWOverrideRedirect
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io $ allocaSetWindowAttributes $
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\attributes -> do
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set_override_redirect attributes True
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createWindow d rw x y w h 0 0 inputOnly visual attrmask attributes
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for :: [a] -> (a -> b) -> [b]
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for = flip map
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reorder :: (Eq a) => [(a, b)] -> [a] -> [(a, b)]
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reorder wrs order =
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let ordered = concat $ map (pickElem wrs) order
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rest = filter (\(w, _) -> not (w `elem` order)) wrs
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in ordered ++ rest
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where
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pickElem list e = case (lookup e list) of
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Just result -> [(e, result)]
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Nothing -> []
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