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164 lines
5.7 KiB
164 lines
5.7 KiB
10 years ago
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--[[
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Licensed under GNU General Public License v2
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* (c) 2014, projektile
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* (c) 2013, Luke Bonham
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* (c) 2010, Nicolas Estibals
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* (c) 2010-2012, Peter Hofmann
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--]]
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local tag = require("awful.tag")
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local beautiful = require("beautiful")
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local math = { ceil = math.ceil,
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floor = math.floor,
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max = math.max }
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local tonumber = tonumber
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local centerfair = { name = "centerfair" }
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function centerfair.arrange(p)
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-- Layout with fixed number of vertical columns (read from nmaster).
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-- Cols are centerded until there is nmaster columns, then windows
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-- are stacked in the slave columns, with at most ncol clients per
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-- column if possible.
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-- with nmaster=3 and ncol=1 you'll have
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-- (1) (2) (3)
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-- +---+---+---+ +-+---+---+-+ +---+---+---+
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-- | | | | | | | | | | | | |
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-- | | 1 | | -> | | 1 | 2 | | -> | 1 | 2 | 3 | ->
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-- | | | | | | | | | | | | |
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-- +---+---+---+ +-+---+---+-+ +---+---+---+
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-- (4) (5)
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-- +---+---+---+ +---+---+---+
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-- | | | 3 | | | 2 | 4 |
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-- + 1 + 2 +---+ -> + 1 +---+---+
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-- | | | 4 | | | 3 | 5 |
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-- +---+---+---+ +---+---+---+
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-- A useless gap (like the dwm patch) can be defined with
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-- beautiful.useless_gap_width .
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local useless_gap = tonumber(beautiful.useless_gap_width) or 0
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if useless_gap < 0 then useless_gap = 0 end
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-- A global border can be defined with
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-- beautiful.global_border_width
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local global_border = tonumber(beautiful.global_border_width) or 0
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if global_border < 0 then global_border = 0 end
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-- Themes border width requires an offset
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local bw = tonumber(beautiful.border_width) or 0
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-- Screen.
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local wa = p.workarea
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local cls = p.clients
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-- Borders are factored in.
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wa.height = wa.height - ((global_border * 2) + (bw * 2))
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wa.width = wa.width - ((global_border * 2) + (bw * 2))
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-- How many vertical columns? Read from nmaster on the tag.
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local t = tag.selected(p.screen)
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local num_x = centerfair.nmaster or tag.getnmaster(t)
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local ncol = centerfair.ncol or tag.getncol(t)
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if num_x <= 2 then num_x = 2 end
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local width = math.floor((wa.width-(num_x+1)*useless_gap) / num_x)
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local offset_y = wa.y + useless_gap
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if #cls < num_x
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then
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-- Less clients than the number of columns, let's center it!
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local offset_x = wa.x + useless_gap + (wa.width - #cls*width - (#cls+1)*useless_gap) / 2
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local g = {}
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g.width = width
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g.height = wa.height - 2*useless_gap - 2
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g.y = offset_y + global_border
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for i = 1, #cls do
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g.x = offset_x + (#cls - i) * (width + useless_gap + 2) + global_border
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cls[i]:geometry(g)
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end
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else
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-- More clients than the number of columns, let's arrange it!
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local offset_x = wa.x
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if useless_gap > 0 then
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offset_x = offset_x
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end
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-- Master client deserves a special treatement
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local g = {}
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g.width = wa.width - (num_x - 1) * width - num_x * 2*useless_gap - 2
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g.height = wa.height - 2*useless_gap - 2
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g.x = offset_x + useless_gap + global_border
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g.y = offset_y + global_border
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cls[#cls]:geometry(g)
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-- Treat the other clients
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-- Compute distribution of clients among columns
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local num_y ={}
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do
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local remaining_clients = #cls-1
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local ncol_min = math.ceil(remaining_clients/(num_x-1))
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if ncol >= ncol_min
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then
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for i = (num_x-1), 1, -1 do
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if (remaining_clients-i+1) < ncol
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then
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num_y[i] = remaining_clients-i + 1
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else
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num_y[i] = ncol
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end
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remaining_clients = remaining_clients - num_y[i]
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end
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else
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local rem = remaining_clients % (num_x-1)
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if rem ==0
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then
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for i = 1, num_x-1 do
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num_y[i] = ncol_min
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end
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else
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for i = 1, num_x-1 do
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num_y[i] = ncol_min - 1
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end
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for i = 0, rem-1 do
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num_y[num_x-1-i] = num_y[num_x-1-i] + 1
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end
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end
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end
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end
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-- Compute geometry of the other clients
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local nclient = #cls-1 -- we start with the 2nd client
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g.x = g.x + g.width+useless_gap + 2
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g.width = width
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if useless_gap > 0 then
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g.width = g.width + useless_gap - 2
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end
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for i = 1, (num_x-1) do
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to_remove = 2
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g.height = math.floor((wa.height - (num_y[i] * useless_gap)) / num_y[i])
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g.y = offset_y + global_border
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for j = 0, (num_y[i]-2) do
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cls[nclient]:geometry(g)
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nclient = nclient - 1
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g.y = g.y + g.height+useless_gap + 2
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to_remove = to_remove + 2
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end
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g.height = wa.height - num_y[i]*useless_gap - (num_y[i]-1)*g.height - useless_gap - to_remove
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cls[nclient]:geometry(g)
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nclient = nclient - 1
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g.x = g.x+g.width+useless_gap + 2
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end
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end
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end
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return centerfair
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