mirror of https://github.com/lcpz/lain.git
Add capacity field to battery widget (#504)
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5882000904
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@ -79,26 +79,32 @@ local function factory(args)
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ac_status = "N/A",
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ac_status = "N/A",
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perc = "N/A",
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perc = "N/A",
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time = "N/A",
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time = "N/A",
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watt = "N/A"
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watt = "N/A",
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capacity = "N/A"
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}
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}
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bat_now.n_status = {}
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bat_now.n_status = {}
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bat_now.n_perc = {}
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bat_now.n_perc = {}
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bat_now.n_capacity = {}
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for i = 1, #batteries do
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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_status[i] = "N/A"
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bat_now.n_perc[i] = 0
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bat_now.n_perc[i] = 0
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bat_now.n_capacity[i] = 0
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end
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end
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-- used to notify full charge only once before discharging
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-- used to notify full charge only once before discharging
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local fullnotification = false
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local fullnotification = false
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function bat.update()
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function bat.update()
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-- luacheck: globals bat_now
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local sum_rate_current = 0
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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_voltage = 0
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local sum_rate_power = 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_rate_energy = 0
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local sum_energy_now = 0
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local sum_energy_now = 0
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local sum_energy_full = 0
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local sum_energy_full = 0
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local sum_charge_full = 0
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local sum_charge_design = 0
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for i, battery in ipairs(batteries) do
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for i, battery in ipairs(batteries) do
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local bstr = pspath .. battery
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local bstr = pspath .. battery
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@ -109,6 +115,8 @@ local function factory(args)
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local rate_current = tonumber(helpers.first_line(bstr .. "/current_now"))
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local rate_current = tonumber(helpers.first_line(bstr .. "/current_now"))
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local rate_voltage = tonumber(helpers.first_line(bstr .. "/voltage_now"))
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local rate_voltage = tonumber(helpers.first_line(bstr .. "/voltage_now"))
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local rate_power = tonumber(helpers.first_line(bstr .. "/power_now"))
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local rate_power = tonumber(helpers.first_line(bstr .. "/power_now"))
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local charge_full = tonumber(helpers.first_line(bstr .. "/charge_full"))
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local charge_design = tonumber(helpers.first_line(bstr .. "/charge_full_design"))
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-- energy_now(P)[uWh], charge_now(I)[uAh]
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-- energy_now(P)[uWh], charge_now(I)[uAh]
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local energy_now = tonumber(helpers.first_line(bstr .. "/energy_now") or
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local energy_now = tonumber(helpers.first_line(bstr .. "/energy_now") or
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@ -116,7 +124,7 @@ local function factory(args)
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-- energy_full(P)[uWh], charge_full(I)[uAh]
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-- energy_full(P)[uWh], charge_full(I)[uAh]
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local energy_full = tonumber(helpers.first_line(bstr .. "/energy_full") or
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local energy_full = tonumber(helpers.first_line(bstr .. "/energy_full") or
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helpers.first_line(bstr .. "/charge_full"))
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charge_full)
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local energy_percentage = tonumber(helpers.first_line(bstr .. "/capacity")) or
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local energy_percentage = tonumber(helpers.first_line(bstr .. "/capacity")) or
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math.floor((energy_now / energy_full) * 100)
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math.floor((energy_now / energy_full) * 100)
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@ -124,15 +132,25 @@ local function factory(args)
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bat_now.n_status[i] = helpers.first_line(bstr .. "/status") or "N/A"
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bat_now.n_status[i] = helpers.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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bat_now.n_perc[i] = energy_percentage or bat_now.n_perc[i]
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if not charge_design or charge_design == 0 then
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bat_now.n_capacity[i] = 0
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else
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bat_now.n_capacity[i] = math.floor((charge_full / charge_design) * 100)
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end
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sum_rate_current = sum_rate_current + (rate_current or 0)
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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_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_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_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_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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sum_energy_full = sum_energy_full + (energy_full or 0)
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sum_charge_full = sum_charge_full + (charge_full or 0)
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sum_charge_design = sum_charge_design + (charge_design or 0)
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end
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end
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end
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end
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bat_now.capacity = math.floor(math.min(100, (sum_charge_full / sum_charge_design) * 100))
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-- When one of the battery is charging, others' status are either
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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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-- "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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-- one or more of the batteries may be full, but only one battery
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