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[SPIRAL] add spiral tiling layout
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Spiral.hs
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58
Spiral.hs
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module Spiral (spiral) where
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import Graphics.X11.Xlib
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import Operations
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import Data.Ratio
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import XMonad
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--
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-- Spiral layout
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--
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-- eg,
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-- defaultLayouts :: [Layout]
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-- defaultLayouts = [ full,
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-- tall defaultWindowsInMaster defaultDelta (1%2),
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-- wide defaultWindowsInMaster defaultDelta (1%2),
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-- spiral (1000 % 1618) ]
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--
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spiral :: Rational -> Layout
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spiral rat = Layout { doLayout = \sc ws -> return $ zip ws (divideRects rat (length ws) East $ sc),
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modifyLayout = \m -> fmap resize (fromMessage m)}
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where resize Expand = let newRat = ((numerator rat + 10) % (denominator rat))
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normRat = if numerator newRat > denominator newRat then rat else newRat in
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spiral normRat
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resize Shrink = let newRat = ((numerator rat - 10) % (denominator rat))
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normRat = if numerator newRat < 0 then rat else newRat in
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spiral normRat
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data Direction = East | South | West | North
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nextDir :: Direction -> Direction
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nextDir East = South
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nextDir South = West
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nextDir West = North
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nextDir North = East
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divideRects :: Rational -> Int -> Direction -> Rectangle -> [Rectangle]
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divideRects r n dir rect | n <= 1 = [rect]
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| otherwise = case divideRect r dir rect of
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(r1, r2) -> r1 : (divideRects r (n - 1) (nextDir dir) r2)
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divideRect :: Rational -> Direction -> Rectangle -> (Rectangle, Rectangle)
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divideRect ratio East (Rectangle x y w h) = let (w1, w2) = chop ratio (fromIntegral w) in
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(Rectangle x y (fromIntegral w1) h,
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Rectangle (x + (fromIntegral w1)) y (fromIntegral w2) h)
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divideRect ratio South (Rectangle x y w h) = let (h1, h2) = chop ratio (fromIntegral h) in
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(Rectangle x y w (fromIntegral h1),
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Rectangle x (y + (fromIntegral h1)) w (fromIntegral h2))
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divideRect ratio West (Rectangle x y w h) = let (w1, w2) = chop (1 - ratio) (fromIntegral w) in
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(Rectangle (x + (fromIntegral w1)) y (fromIntegral w2) h,
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Rectangle x y (fromIntegral w1) h)
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divideRect ratio North (Rectangle x y w h) = let (h1, h2) = chop (1 - ratio) (fromIntegral h) in
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(Rectangle x (y + (fromIntegral h1)) w (fromIntegral h2),
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Rectangle x y w (fromIntegral h1))
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chop :: Rational -> Integer -> (Integer, Integer)
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chop rat n = let f = ((fromIntegral n) * (numerator rat)) `div` (denominator rat) in
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(f, n - f)
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