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61 lines
2.1 KiB
Haskell
61 lines
2.1 KiB
Haskell
-----------------------------------------------------------------------------
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-- |
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-- Module : XMonadContrib.RotSlaves
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-- Copyright : (c) Hans Philipp Annen <haphi@gmx.net>, Mischa Dieterle <der_m@freenet.de>
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-- License : BSD3-style (see LICENSE)
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--
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-- Maintainer : Hans Philipp Annen <haphi@gmx.net>
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-- Stability : unstable
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-- Portability : unportable
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--
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-- Rotate all windows except the master window
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-- and keep the focus in place.
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-----------------------------------------------------------------------------
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module XMonadContrib.RotSlaves (
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-- $usag
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rotSlaves', rotSlavesUp, rotSlavesDown,
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rotAll', rotAllUp, rotAllDown
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) where
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import StackSet
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import Operations
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import XMonad
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-- $usage
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--
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-- To use this module, import it with:
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--
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-- > import XMonadContrib.RotSlaves
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--
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-- and add a keybinding:
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--
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-- > , ((modMask .|. shiftMask, xK_Tab ), rotSlavesUp)
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--
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--
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-- This operation will rotate all windows except the master window, while the focus
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-- stays where it is. It is useful together with the TwoPane-Layout (see XMonadContrib.TwoPane).
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-- %import XMonadContrib.RotSlaves
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-- %keybind , ((modMask .|. shiftMask, xK_Tab ), rotSlavesUp)
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-- | Rotate the windows in the current stack excluding the first one
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rotSlavesUp,rotSlavesDown :: X ()
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rotSlavesUp = windows $ modify' (rotSlaves' (\l -> (tail l)++[head l]))
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rotSlavesDown = windows $ modify' (rotSlaves' (\l -> [last l]++(init l)))
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rotSlaves' :: ([a] -> [a]) -> Stack a -> Stack a
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rotSlaves' _ s@(Stack _ [] []) = s
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rotSlaves' f (Stack t [] rs) = Stack t [] (f rs) -- Master has focus
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rotSlaves' f s@(Stack _ ls _ ) = Stack t' (reverse revls') rs' -- otherwise
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where (master:ws) = integrate s
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(revls',t':rs') = splitAt (length ls) (master:(f ws))
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-- | Rotate the windows in the current stack
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rotAllUp,rotAllDown :: X ()
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rotAllUp = windows $ modify' (rotAll' (\l -> (tail l)++[head l]))
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rotAllDown = windows $ modify' (rotAll' (\l -> [last l]++(init l)))
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rotAll' :: ([a] -> [a]) -> Stack a -> Stack a
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rotAll' f s = Stack r (reverse revls) rs
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where (revls,r:rs) = splitAt (length (up s)) (f (integrate s))
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