Battery status was previously assumed to the first battery's status. This is wrong as it doesn't support the case where the first battery is full and the second is discharging, therefor showing battery percentage to 100% when the actual battery percentage is lower.
180 lines
6.9 KiB
Lua
180 lines
6.9 KiB
Lua
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--[[
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Licensed under GNU General Public License v2
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* (c) 2013, Luke Bonham
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* (c) 2010-2012, Peter Hofmann
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--]]
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local helpers = require("lain.helpers")
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local first_line = require("lain.helpers").first_line
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local naughty = require("naughty")
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local wibox = require("wibox")
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local math = { abs = math.abs,
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floor = math.floor,
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log10 = math.log10,
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min = math.min }
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local string = { format = string.format }
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local type = type
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local tonumber = tonumber
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local setmetatable = setmetatable
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-- Battery infos
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-- lain.widgets.bat
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local function worker(args)
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local bat = helpers.make_widget_textbox()
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local args = args or {}
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local timeout = args.timeout or 30
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local batteries = args.batteries or (args.battery and {args.battery}) or {"BAT0"}
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local ac = args.ac or "AC0"
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local notify = args.notify or "on"
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local settings = args.settings or function() end
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bat_notification_low_preset = {
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title = "Battery low",
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text = "Plug the cable!",
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timeout = 15,
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fg = "#202020",
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bg = "#CDCDCD"
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}
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bat_notification_critical_preset = {
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title = "Battery exhausted",
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text = "Shutdown imminent",
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timeout = 15,
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fg = "#000000",
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bg = "#FFFFFF"
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}
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bat_now = {
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status = "N/A",
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ac_status = "N/A",
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perc = "N/A",
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time = "N/A",
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watt = "N/A"
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}
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bat_now.n_status = {}
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bat_now.n_perc = {}
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for i = 1, #batteries do
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bat_now.n_status[i] = "N/A"
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bat_now.n_perc[i] = 0
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end
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function bat.update()
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local sum_rate_current = 0
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local sum_rate_voltage = 0
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local sum_rate_power = 0
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local sum_rate_energy = 0
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local sum_energy_now = 0
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local sum_energy_full = 0
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local pspath = "/sys/class/power_supply/"
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for i, battery in ipairs(batteries) do
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local bstr = pspath .. battery
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local present = first_line(bstr .. "/present")
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if tonumber(present) == 1 then
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-- current_now(I)[uA], voltage_now(U)[uV], power_now(P)[uW]
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local rate_current = tonumber(first_line(bstr .. "/current_now"))
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local rate_voltage = tonumber(first_line(bstr .. "/voltage_now"))
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local rate_power = tonumber(first_line(bstr .. "/power_now"))
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-- energy_now(P)[uWh], charge_now(I)[uAh]
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local energy_now = tonumber(first_line(bstr .. "/energy_now") or
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first_line(bstr .. "/charge_now"))
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-- energy_full(P)[uWh], charge_full(I)[uAh]
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local energy_full = tonumber(first_line(bstr .. "/energy_full") or
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first_line(bstr .. "/charge_full"))
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local energy_percentage = tonumber(first_line(bstr .. "/capacity")) or
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math.floor((energy_now / energy_full) * 100)
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bat_now.n_status[i] = first_line(bstr .. "/status") or "N/A"
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bat_now.n_perc[i] = energy_percentage or bat_now.n_perc[i]
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sum_rate_current = sum_rate_current + (rate_current or 0)
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sum_rate_voltage = sum_rate_voltage + (rate_voltage or 0)
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sum_rate_power = sum_rate_power + (rate_power or 0)
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sum_rate_energy = sum_rate_energy + (rate_power or (((rate_voltage or 0) * (rate_current or 0)) / 1e6))
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sum_energy_now = sum_energy_now + (energy_now or 0)
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sum_energy_full = sum_energy_full + (energy_full or 0)
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end
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end
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-- When one of the battery is charging, others' status are either
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-- "Full", "Unknown" or "Charging". When the laptop is not plugged in,
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-- one or more of the batteries may be full, but only one battery
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-- discharging suffices to set global status to "Discharging".
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bat_now.status = bat_now.n_status[1]
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for _,status in ipairs(bat_now.n_status) do
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if status == "Discharging" or status == "Charging" then
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bat_now.status = status
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end
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end
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bat_now.ac_status = tonumber(first_line(string.format("%s%s/online", pspath, ac))) or "N/A"
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if bat_now.status ~= "N/A" then
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-- update {perc,time,watt} iff battery not full and rate > 0
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if bat_now.status ~= "Full" and (sum_rate_power > 0 or sum_rate_current > 0) then
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local rate_time = 0
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local div = (sum_rate_power > 0 and sum_rate_power) or sum_rate_current
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if bat_now.status == "Charging" then
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rate_time = (sum_energy_full - sum_energy_now) / div
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else -- Discharging
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rate_time = sum_energy_now / div
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end
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if 0 < rate_time and rate_time < 0.01 then -- check for magnitude discrepancies (#199)
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rate_time_magnitude = math.abs(math.floor(math.log10(rate_time)))
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rate_time = rate_time * 10^(rate_time_magnitude - 2)
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end
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local hours = math.floor(rate_time)
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local minutes = math.floor((rate_time - hours) * 60)
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bat_now.perc = math.floor(math.min(100, (sum_energy_now / sum_energy_full) * 100))
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bat_now.time = string.format("%02d:%02d", hours, minutes)
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bat_now.watt = tonumber(string.format("%.2f", sum_rate_energy / 1e6))
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elseif bat_now.status ~= "Full" and sum_rate_power == 0 and bat_now.ac_status == 1 then
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bat_now.perc = math.floor(math.min(100, (sum_energy_now / sum_energy_full) * 100))
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bat_now.time = "00:00"
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bat_now.watt = 0
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elseif bat_now.status == "Full" then
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bat_now.perc = 100
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bat_now.time = "00:00"
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bat_now.watt = 0
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end
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end
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widget = bat.widget
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settings()
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-- notifications for low and critical states
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if notify == "on" and type(bat_now.perc) == "number" and bat_now.status == "Discharging" then
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if bat_now.perc <= 5 then
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bat.id = naughty.notify({
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preset = bat_notification_critical_preset,
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replaces_id = bat.id
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}).id
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elseif bat_now.perc <= 15 then
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bat.id = naughty.notify({
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preset = bat_notification_low_preset,
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replaces_id = bat.id
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}).id
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end
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end
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end
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helpers.newtimer(battery, timeout, bat.update)
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return bat
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end
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return setmetatable({}, { __call = function(_, ...) return worker(...) end })
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