- time_rat = rem / rate
- end
-
- local hrs = math.floor(time_rat)
- if hrs < 0 then hrs = 0 elseif hrs > 23 then hrs = 23 end
-
- local min = math.floor((time_rat - hrs) * 60)
- if min < 0 then min = 0 elseif min > 59 then min = 59 end
-
- bat_now.time = string.format("%02d:%02d", hrs, min)
-
- local perc = tonumber(first_line(bstr .. "/capacity"))
-
- if not perc then
- perc = (rem / tot) * 100
+ -- current_now(I)[uA], voltage_now(U)[uV], power_now(P)[uW]
+ local rate_current = tonumber(first_line(bstr .. "/current_now"))
+ local rate_voltage = tonumber(first_line(bstr .. "/voltage_now"))
+ local rate_power = tonumber(first_line(bstr .. "/power_now"))
+
+ -- energy_now(P)[uWh], charge_now(I)[uAh]
+ local energy_now = tonumber(first_line(bstr .. "/energy_now") or
+ first_line(bstr .. "/charge_now"))
+
+ -- energy_full(P)[uWh], charge_full(I)[uAh]
+ local energy_full = tonumber(first_line(bstr .. "/energy_full") or
+ first_line(bstr .. "/charge_full"))
+
+ local energy_percentage = tonumber(first_line(bstr .. "/capacity")) or
+ math.floor((energy_now / energy_full) * 100)
+
+ if bat_now.status ~= "Charging" and bat_now.status ~= "Discharging"
+ then
+ bat_now.status = first_line(bstr .. "/status") or "N/A"
+ end
+
+ sum_rate_current = sum_rate_current + (rate_current or 0)
+ sum_rate_voltage = sum_rate_voltage + rate_voltage
+ sum_rate_power = sum_rate_power + (rate_power or ((rate_voltage * rate_current) / 1e6))
+ sum_energy_now = sum_energy_now + energy_now
+ sum_energy_full = sum_energy_full + energy_full
+ sum_energy_percentage = sum_energy_percentage + energy_percentage