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Explicit HandleLidSwitchDocked=ignore under services.logind so closing the lid with an external display connected does not suspend. Undocked lid path left to upstream defaults. checks.clamshell-logind asserts the baked logind.conf and active logind; real multi-monitor lid V3 queued. Verified: V2 — flake check --no-build; checks.clamshell-logind green. V3 pending: HARDWARE-QUEUE #86 lid+external on a laptop.
189 lines
9.1 KiB
Nix
189 lines
9.1 KiB
Nix
# Active power management. One concern, one file: this is the system
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# side — the power daemon (power-profiles-daemon by default, or TLP),
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# thermald, and the battery charge limit. The profile *switcher* and the
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# Waybar *indicator* live home-side (rofi.nix / waybar.nix); they self-
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# gate on powerprofilesctl being present, so there's no system→home wiring
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# to keep in sync (the same way the Waybar battery widget auto-hides on
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# desktops). See the roadmap in README.md.
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{ config, lib, pkgs, ... }:
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let
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cfg = config.nomarchy.system.power;
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ppd = cfg.backend == "ppd";
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tlp = cfg.backend == "tlp";
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in
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{
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config = lib.mkIf cfg.enable {
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# PPD and TLP both drive CPU/platform power — running both fights.
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# `backend` selects exactly one; this assertion only fires if a
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# downstream force-enables the other service directly.
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assertions = [{
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assertion = !(config.services.power-profiles-daemon.enable
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&& config.services.tlp.enable);
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message = ''
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nomarchy: power-profiles-daemon and TLP are mutually exclusive.
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Pick one with nomarchy.system.power.backend ("ppd" or "tlp").
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'';
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}];
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# Unprivileged profile switching (the menu/Waybar) goes through
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# polkit, already enabled distro-wide in default.nix.
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services.power-profiles-daemon.enable = lib.mkDefault ppd;
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services.tlp.enable = lib.mkDefault tlp;
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# Clamshell / dock (BACKLOG #86): when the machine is "docked" in
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# logind's sense (≥1 external display connected), closing the lid
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# must NOT suspend — the external panel is the session. systemd's
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# built-in default is already ignore; we set it explicitly so a
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# downstream override or lock-bump drift is visible, and so
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# checks.clamshell-logind can assert the contract.
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# Lid alone (undocked) keeps the normal suspend path
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# (HandleLidSwitch / ExternalPower left to upstream defaults).
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# Display-profile "docked" layouts (eDP off) are orthogonal and
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# already handled by nomarchy.displayProfiles.
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services.logind.settings.Login = {
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HandleLidSwitchDocked = lib.mkDefault "ignore";
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};
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# thermald is Intel-only, so off unless asked (the installer enables
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# it on a GenuineIntel CPU). Sits happily next to either backend.
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services.thermald.enable = lib.mkDefault cfg.thermal.enable;
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# Battery charge limit via sysfs. PPD can't cap charge at all, and
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# TLP's own knob only applies under TLP — so a tiny oneshot writes
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# the threshold directly, independent of the backend. Re-applied on
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# AC state changes by the udev rule below (some firmwares reset the
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# threshold when the charger is unplugged).
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#
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# Instant menu path (user decision 2026-07-10): the threshold node is
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# group-writable for `users` so nomarchy-menu can echo live without
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# rebuild; this oneshot still owns boot + AC-replug re-apply. Prefer
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# live theme-state.json under /home/*/.nomarchy so a menu change
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# survives reboot before the next sys-rebuild bakes the Nix option.
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systemd.services.nomarchy-battery-charge-limit = lib.mkIf cfg.laptop {
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description = "Apply battery charge end threshold from state or config";
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wantedBy = [ "multi-user.target" ];
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path = [ pkgs.jq pkgs.coreutils ];
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serviceConfig = {
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Type = "oneshot";
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RemainAfterExit = true;
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};
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script = ''
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set -euo pipefail
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# Baked generation default (empty = full charge / no cap).
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limit=${if cfg.batteryChargeLimit != null then toString cfg.batteryChargeLimit else ""}
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# Prefer the newest live state write (menu path, no rebuild yet).
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for st in /home/*/.nomarchy/theme-state.json; do
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[ -r "$st" ] || continue
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v=$(jq -r '.settings.power.batteryChargeLimit // empty' "$st" 2>/dev/null || true)
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case "$v" in
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""|null|Null) ;;
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*[!0-9]*) ;;
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*) limit=$v ;;
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esac
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done
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[ -n "$limit" ] || limit=100
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# Name-agnostic system batteries (BACKLOG #60).
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for d in /sys/class/power_supply/*/; do
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[ "$(cat "$d/type" 2>/dev/null)" = Battery ] || continue
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[ "$(cat "$d/scope" 2>/dev/null || echo System)" = Device ] && continue
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thresh="$d/charge_control_end_threshold"
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[ -e "$thresh" ] || continue
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# Keep nodes group-writable for the menu's live path (udev
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# sets this on add; re-assert after firmware recreates attrs).
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for node in charge_control_end_threshold charge_control_start_threshold charge_types charge_type; do
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[ -e "$d$node" ] || continue
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chgrp users "$d$node" 2>/dev/null || true
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chmod 0664 "$d$node" 2>/dev/null || true
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done
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# Dell (and some others): charge_control_* thresholds are only
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# honoured in Custom mode. Adaptive/Standard ignore end_threshold
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# while still reporting the written value — battery keeps charging
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# past the cap (Latitude 5310: end=80, type=[Adaptive], capacity 96%+).
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# Off (100): restore Adaptive if listed, else leave type alone.
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ctypes="$d/charge_types"
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ctype="$d/charge_type"
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if [ -e "$ctypes" ] || [ -e "$ctype" ]; then
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listed=$(cat "$ctypes" 2>/dev/null || cat "$ctype" 2>/dev/null || true)
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write_type() {
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local t="$1"
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[ -n "$t" ] || return 0
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if [ -w "$ctypes" ]; then echo "$t" > "$ctypes" 2>/dev/null || true
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elif [ -w "$ctype" ]; then echo "$t" > "$ctype" 2>/dev/null || true
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fi
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}
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if [ "$limit" -lt 100 ] 2>/dev/null; then
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# listed looks like: "Trickle Fast Standard [Adaptive] Custom"
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case "$listed" in *Custom*) write_type Custom ;; esac
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else
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case "$listed" in
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*Adaptive*) write_type Adaptive ;;
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*Standard*) write_type Standard ;;
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esac
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fi
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fi
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# Start threshold: must be < end. Keep a ~10% hysteresis band when
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# the node exists (firmware may reject start >= end).
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start_node="$d/charge_control_start_threshold"
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if [ -w "$start_node" ] && [ "$limit" -lt 100 ] 2>/dev/null; then
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start=$(( limit > 15 ? limit - 10 : 0 ))
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echo "$start" > "$start_node" 2>/dev/null || true
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fi
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# Some firmwares (Dell) reset the threshold on unplug *after*
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# the udev event — write once, wait, write again (type first).
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echo "$limit" > "$thresh" 2>/dev/null || true
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sleep 1
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if [ -e "$ctypes" ] || [ -e "$ctype" ]; then
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listed=$(cat "$ctypes" 2>/dev/null || cat "$ctype" 2>/dev/null || true)
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if [ "$limit" -lt 100 ] 2>/dev/null; then
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case "$listed" in
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*Custom*)
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if [ -w "$ctypes" ]; then echo Custom > "$ctypes" 2>/dev/null || true
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elif [ -w "$ctype" ]; then echo Custom > "$ctype" 2>/dev/null || true
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fi
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;;
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esac
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fi
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fi
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echo "$limit" > "$thresh" 2>/dev/null || true
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done
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exit 0
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'';
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};
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# Writable threshold for the logged-in user (menu live apply) + AC
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# re-apply of the oneshot. Laptop only; no-op when the attr is absent.
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# Immediate + delayed restart: Dell/Latitude firmware often stomps the
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# threshold to 100 right after unplug; a single immediate oneshot
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# loses the race (hardware: unplug→100, plug→80). systemd-run hands
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# the delayed restart off so udev's short RUN budget is not held.
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services.udev.extraRules = lib.mkIf cfg.laptop (
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let
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systemctl = "${config.systemd.package}/bin/systemctl";
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systemdRun = "${config.systemd.package}/bin/systemd-run";
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in ''
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SUBSYSTEM=="power_supply", ATTR{type}=="Battery", TEST=="charge_control_end_threshold", GROUP="users", MODE="0664"
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SUBSYSTEM=="power_supply", ATTR{type}=="Battery", TEST=="charge_types", GROUP="users", MODE="0664"
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SUBSYSTEM=="power_supply", ATTR{type}=="Battery", TEST=="charge_type", GROUP="users", MODE="0664"
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SUBSYSTEM=="power_supply", ATTR{type}=="Battery", TEST=="charge_control_start_threshold", GROUP="users", MODE="0664"
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SUBSYSTEM=="power_supply", ATTR{type}=="Mains", RUN+="${systemctl} --no-block restart nomarchy-battery-charge-limit.service"
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SUBSYSTEM=="power_supply", ATTR{type}=="Mains", RUN+="${systemdRun} --no-block --collect --on-active=2s --timer-property=AccuracySec=200ms ${systemctl} --no-block restart nomarchy-battery-charge-limit.service"
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''
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);
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# Unprivileged restart of the oneshot so the menu can re-apply as
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# root when the threshold node is not (yet) user-writable.
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security.polkit.extraConfig = lib.mkIf cfg.laptop ''
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polkit.addRule(function(action, subject) {
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if (action.id == "org.freedesktop.systemd1.manage-units" &&
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subject.isInGroup("users")) {
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var unit = action.lookup("unit");
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if (unit == "nomarchy-battery-charge-limit.service") {
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return polkit.Result.YES;
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}
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}
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});
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'';
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};
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}
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