q-power_supply: RIP
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@ -1,146 +0,0 @@
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{ gawk, gnused, writeDashBin }:
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writeDashBin "q-power_supply" ''
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power_supply() {(
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set -efu
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uevent=$1
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eval "$(${gnused}/bin/sed -n '
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s/^\([A-Z_]\+=[0-9A-Za-z_-]*\)$/export \1/p
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' $uevent)"
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case $POWER_SUPPLY_NAME in
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AC|Mains)
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exit # not battery
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;;
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esac
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exec </dev/null
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exec ${gawk}/bin/awk '
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function die(s) {
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printf "%s: %s\n", name, s
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exit 1
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}
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function print_hm(h, m) {
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m = (h - int(h)) * 60
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return sprintf("%dh%dm", h, m)
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}
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function print_bar(r) {
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return \
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(r >= .1 ? bar_gradient[0] : bar_background) "■" \
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(r >= .2 ? bar_gradient[1] : bar_background) "■" \
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(r >= .3 ? bar_gradient[2] : bar_background) "■" \
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(r >= .4 ? bar_gradient[3] : bar_background) "■" \
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(r >= .5 ? bar_gradient[4] : bar_background) "■" \
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(r >= .6 ? bar_gradient[5] : bar_background) "■" \
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(r >= .7 ? bar_gradient[6] : bar_background) "■" \
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(r >= .8 ? bar_gradient[7] : bar_background) "■" \
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(r >= .9 ? bar_gradient[8] : bar_background) "■" \
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(r >= 1 ? bar_gradient[9] : bar_background) "■" \
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sgr()
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}
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function rgb(r, g, b) {
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return sgr("38;2;" r ";" g ";" b)
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}
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function sgr(p) {
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return "\x1b[" p "m"
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}
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BEGIN {
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bar_gradient[0] = rgb(216, 100, 83)
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bar_gradient[1] = rgb(210, 113, 72)
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bar_gradient[2] = rgb(201, 125, 65)
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bar_gradient[3] = rgb(190, 137, 63)
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bar_gradient[4] = rgb(178, 148, 67)
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bar_gradient[5] = rgb(166, 158, 75)
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bar_gradient[6] = rgb(153, 167, 88)
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bar_gradient[7] = rgb(140, 174, 104)
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bar_gradient[8] = rgb(127, 181, 122)
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bar_gradient[9] = rgb(116, 187, 141)
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bar_background = rgb( 64, 64, 64)
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}
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END {
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name = ENVIRON["POWER_SUPPLY_NAME"]
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status = ENVIRON["POWER_SUPPLY_STATUS"]
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charge_unit = "Ah"
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charge_now = ENVIRON["POWER_SUPPLY_CHARGE_NOW"] / 10^6
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charge_full = ENVIRON["POWER_SUPPLY_CHARGE_FULL"] / 10^6
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current_unit = "A"
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current_now = ENVIRON["POWER_SUPPLY_CURRENT_NOW"] / 10^6
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energy_unit = "Wh"
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energy_now = ENVIRON["POWER_SUPPLY_ENERGY_NOW"] / 10^6
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energy_full = ENVIRON["POWER_SUPPLY_ENERGY_FULL"] / 10^6
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power_unit = "W"
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power_now = ENVIRON["POWER_SUPPLY_POWER_NOW"] / 10^6
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voltage_unit = "V"
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voltage_now = ENVIRON["POWER_SUPPLY_VOLTAGE_NOW"] / 10^6
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voltage_min_design = ENVIRON["POWER_SUPPLY_VOLTAGE_MIN_DESIGN"] / 10^6
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#printf "charge_now: %s\n", charge_now
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#printf "charge_full: %s\n", charge_full
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#printf "current_now: %s\n", current_now
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#printf "energy_now: %s\n", energy_now
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#printf "energy_full: %s\n", energy_full
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#printf "energy_full: %s\n", ENVIRON["POWER_SUPPLY_ENERGY_FULL"]
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#printf "energy_full: %s\n", ENVIRON["POWER_SUPPLY_ENERGY_FULL"] / 10^6
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#printf "power_now: %s\n", power_now
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#printf "voltage_now: %s\n", voltage_now
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if (current_now == 0 && voltage_now != 0) {
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current_now = power_now / voltage_now
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}
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if (power_now == 0) {
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power_now = current_now * voltage_now
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}
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if (charge_now == 0 && voltage_min_design != 0) {
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charge_now = energy_now / voltage_min_design
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}
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if (energy_now == 0) {
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energy_now = charge_now * voltage_min_design
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}
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if (charge_full == 0 && voltage_min_design != 0) {
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charge_full = energy_full / voltage_min_design
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}
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if (energy_full == 0) {
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energy_full = charge_full * voltage_min_design
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}
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if (charge_now == 0 || charge_full == 0) {
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die("unknown charge")
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}
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charge_ratio = charge_now / charge_full
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out = out name
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out = out sprintf(" %s", print_bar(charge_ratio))
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out = out sprintf(" %d%", charge_ratio * 100)
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out = out sprintf(" %.2f%s", charge_now, charge_unit)
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if (current_now != 0) {
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out = out sprintf("/%.1f%s", current_now, current_unit)
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}
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out = out sprintf(" %d%s", energy_full, energy_unit)
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if (power_now != 0) {
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out = out sprintf("/%.1f%s", power_now, power_unit)
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}
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if (current_now != 0) {
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out = out sprintf(" %s", print_hm(charge_now / current_now))
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}
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out = out " " status
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print out
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}
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'
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)}
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for uevent in /sys/class/power_supply/*/uevent; do
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power_supply "$uevent" || :
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done
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''
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