graph: Port to oocairo
Signed-off-by: Uli Schlachter <psychon@znc.in>
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@ -9,9 +9,10 @@ local ipairs = ipairs
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local math = math
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local math = math
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local table = table
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local table = table
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local type = type
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local type = type
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local capi = { image = image,
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local capi = { oocairo = oocairo,
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widget = widget }
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widget = widget }
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local layout = require("awful.widget.layout")
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local layout = require("awful.widget.layout")
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local color = require("gears.color")
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--- A graph widget.
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--- A graph widget.
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module("awful.widget.graph")
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module("awful.widget.graph")
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@ -84,7 +85,8 @@ local properties = { "width", "height", "border_color", "stack",
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local function update(graph)
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local function update(graph)
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-- Create new empty image
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-- Create new empty image
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local img = capi.image.argb32(data[graph].width, data[graph].height, nil)
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local img = capi.oocairo.image_surface_create("argb32", data[graph].width, data[graph].height)
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local cr = capi.oocairo.context_create(img)
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local max_value = data[graph].max_value
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local max_value = data[graph].max_value
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local values = data[graph].values
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local values = data[graph].values
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@ -93,6 +95,8 @@ local function update(graph)
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border_width = 1
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border_width = 1
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end
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end
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cr:set_line_width(1)
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-- Draw a stacked graph
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-- Draw a stacked graph
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if data[graph].stack then
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if data[graph].stack then
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@ -107,33 +111,34 @@ local function update(graph)
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end
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end
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-- Draw the background first
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-- Draw the background first
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img:draw_rectangle(border_width, border_width,
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cr:rectangle(border_width, border_width,
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data[graph].width - (2 * border_width),
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data[graph].width - (2 * border_width),
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data[graph].height,
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data[graph].height)
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true, data[graph].background_color or "#000000aa")
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cr:set_source(color(data[graph].background_color or "#000000aa"))
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cr:fill()
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for i = 0, data[graph].width - (2 * border_width) do
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for i = 0, data[graph].width - (2 * border_width) do
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local rel_i = 0
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local rel_i = 0
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local rel_x = data[graph].width - border_width - i - 1
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local rel_x = data[graph].width - border_width - i - 0.5
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if data[graph].stack_colors then
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if data[graph].stack_colors then
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for idx, color in ipairs(data[graph].stack_colors) do
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for idx, col in ipairs(data[graph].stack_colors) do
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local stack_values = values[idx]
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local stack_values = values[idx]
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if stack_values and i < #stack_values then
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if stack_values and i < #stack_values then
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local value = stack_values[#stack_values - i] + rel_i
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local value = stack_values[#stack_values - i] + rel_i
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img:draw_line(rel_x, border_width - 1 +
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cr:move_to(rel_x, border_width - 0.5 +
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math.ceil((data[graph].height - 2 * border_width) * (1 - (rel_i / max_value))),
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(data[graph].height - 2 * border_width) * (1 - (rel_i / max_value)))
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rel_x, border_width - 1 +
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cr:line_to(rel_x, border_width - 0.5 +
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math.ceil((data[graph].height - 2 * border_width) * (1 - (value / max_value))),
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(data[graph].height - 2 * border_width) * (1 - (value / max_value)))
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color or "#ff0000")
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cr:set_source(color(col or "#ff0000"))
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cr:stroke()
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rel_i = value
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rel_i = value
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end
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end
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end
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end
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end
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end
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end
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end
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else
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else
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if data[graph].scale then
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if data[graph].scale then
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for _, v in ipairs(values) do
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for _, v in ipairs(values) do
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if v > max_value then
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if v > max_value then
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@ -150,10 +155,11 @@ local function update(graph)
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data[graph].gradient_colors,
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data[graph].gradient_colors,
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data[graph].gradient_angle or 270)
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data[graph].gradient_angle or 270)
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else
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else
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img:draw_rectangle(border_width, border_width,
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cr:rectangle(border_width, border_width,
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data[graph].width - (2 * border_width),
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data[graph].width - (2 * border_width),
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data[graph].height - (2 * border_width),
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data[graph].height - (2 * border_width))
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true, data[graph].color or "#ff0000")
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cr:set_source(color(data[graph].color or "#ff0000"))
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cr:fill()
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end
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end
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-- Draw the background on no value
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-- Draw the background on no value
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@ -163,31 +169,34 @@ local function update(graph)
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local value = values[#values - i]
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local value = values[#values - i]
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if value >= 0 then
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if value >= 0 then
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value = value / max_value
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value = value / max_value
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img:draw_line(data[graph].width - border_width - i - 1,
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cr:move_to(data[graph].width - border_width - i - 0.5,
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border_width - 1 +
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border_width - 0.5 +
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math.ceil((data[graph].height - 2 * border_width) * (1 - value)),
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(data[graph].height - 2 * border_width) * (1 - value))
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data[graph].width - border_width - i - 1,
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cr:line_to(data[graph].width - border_width - i - 0.5,
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border_width - 1,
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border_width - 1)
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data[graph].background_color or "#000000aa")
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end
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end
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end
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end
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cr:set_source(color(data[graph].background_color or "#000000aa"))
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cr:stroke()
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end
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end
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-- If we didn't draw values in full length, draw a square
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-- If we didn't draw values in full length, draw a square
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-- over the last, left, part to reset everything to 0
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-- over the last, left, part to reset everything to 0
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if #values < data[graph].width - (2 * border_width) then
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if #values < data[graph].width - (2 * border_width) then
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img:draw_rectangle(border_width, border_width,
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cr:rectangle(border_width, border_width,
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data[graph].width - (2 * border_width) - #values,
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data[graph].width - (2 * border_width) - #values,
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data[graph].height - (2 * border_width),
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data[graph].height - (2 * border_width))
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true, data[graph].background_color or "#000000aa")
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cr:set_source(color(data[graph].background_color or "#000000aa"))
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cr:fill()
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end
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end
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end
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end
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-- Draw the border last so that it overlaps already drawn values
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-- Draw the border last so that it overlaps already drawn values
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if data[graph].border_color then
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if data[graph].border_color then
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-- Draw the border
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-- Draw the border
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img:draw_rectangle(0, 0, data[graph].width, data[graph].height,
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cr:rectangle(0.5, 0.5, data[graph].width - 0.5, data[graph].height - 0.5)
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false, data[graph].border_color or "white")
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cr:set_source(color(data[graph].background_color or "#ffffff"))
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cr:stroke()
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end
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end
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-- Update the image
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-- Update the image
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