476 lines
19 KiB
QML
476 lines
19 KiB
QML
pragma Singleton
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// The allow-listed machine boundary for Panama Settings. Visual pages call
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// these methods; no UI text is ever interpolated into a shell command.
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import Quickshell
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import Quickshell.Io
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import QtQuick
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import qs.config
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Singleton {
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id: root
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property string monitorName: ""
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property string monitorDescription: ""
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property int monitorWidth: 0
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property int monitorHeight: 0
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property real monitorRefreshRate: 0
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property real monitorScale: 1
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property string monitorFormat: ""
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property string colorPreset: ""
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property bool monitorVrrActive: false
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property bool nextcloudActive: false
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property bool rustdeskActive: false
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property bool kdeconnectActive: false
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property bool hyprpaperActive: false
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property bool hypridleActive: false
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property bool vicinaeActive: false
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property bool bluebubblesDetected: false
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property string hyprlandVersion: ""
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property string quickshellVersion: "0.3.0"
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property string lastError: ""
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readonly property bool busy: monitorQuery.running || serviceQuery.running || versionQuery.running
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|| configWrite.running || configVerify.running || bluebubblesQuery.running
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readonly property bool bluebubblesAvailable: root.bluebubblesDetected
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readonly property bool autoHdr: DesktopPreferences.get("autoHdr")
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readonly property int vrrPolicy: DesktopPreferences.get("vrrPolicy")
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readonly property int directScanoutPolicy: DesktopPreferences.get("directScanoutPolicy")
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// ── The Hyprland write boundary ─────────────────────────────────────────
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// Every option Panama may write, with the hl.config path used to set it and
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// the getoption path used to read it back. The UI never names an option or
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// supplies a raw value: it calls a setter, which resolves the option here
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// and range-checks the value against `allowed`. Nothing user-supplied is
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// ever interpolated into the payload.
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//
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// `hyprctl keyword` is deliberately NOT used. On a Lua-configured Hyprland
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// it refuses the write, prints "keyword can't work with non-legacy parsers"
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// to stdout, and still exits 0 -- so code branching on the exit status
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// believes it succeeded. `hyprctl eval` has the same hazard: it exits 0 on
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// syntax and runtime errors, reporting them as an "error:" line instead.
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//
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// Success therefore means exactly one thing here: the value was read back
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// from the compositor and matched what was requested.
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//
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// The set of writable options is not restated here: it is every schema
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// entry carrying a `hypr` block. Adding a live-adjustable Hyprland setting
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// is a schema entry plus a prefs.get() call in the Lua, and needs no new
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// code in this file.
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Process {
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id: monitorQuery
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command: ["hyprctl", "-j", "monitors"]
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stdout: StdioCollector {
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onStreamFinished: root.parseMonitors(this.text)
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}
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onExited: (exitCode, exitStatus) => {
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if (exitCode !== 0)
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root.lastError = "Could not read the active display.";
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}
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}
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Process {
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id: serviceQuery
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command: [
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"bash", "-lc",
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"printf '{\"nextcloud\":%s,\"rustdesk\":%s,\"kdeconnect\":%s,\"hyprpaper\":%s,\"hypridle\":%s,\"vicinae\":%s}\\n' "
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+ "$(pgrep -x nextcloud >/dev/null && printf true || printf false) "
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+ "$(systemctl is-active --quiet rustdesk.service && printf true || printf false) "
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+ "$(pgrep -x kdeconnectd >/dev/null && printf true || printf false) "
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+ "$(systemctl --user is-active --quiet hyprpaper.service && printf true || printf false) "
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+ "$(systemctl --user is-active --quiet hypridle.service && printf true || printf false) "
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+ "$(systemctl --user is-active --quiet vicinae.service && printf true || printf false)"
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]
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stdout: StdioCollector {
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onStreamFinished: root.parseServices(this.text)
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}
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}
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Process {
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id: versionQuery
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command: ["Hyprland", "--version"]
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stdout: StdioCollector {
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onStreamFinished: {
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const match = this.text.match(/Hyprland\s+([0-9.]+)/);
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root.hyprlandVersion = match ? match[1] : this.text.trim().split("\n")[0];
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}
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}
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}
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// Applies a validated batch of options in one `hl.config{}` call, then hands
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// off to configVerify. Never commits anything on its own: an "ok" here only
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// means Hyprland parsed the payload.
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Process {
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id: configWrite
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// id -> integer value, already validated by applyOptions().
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property var pending: ({})
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stdout: StdioCollector {
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onStreamFinished: {
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if (this.text.indexOf("error:") >= 0) {
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root.reportWriteFailure(configWrite.pending, this.text);
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return;
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}
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root.verifyPending();
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}
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}
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}
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Process {
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id: bluebubblesQuery
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command: ["flatpak", "info", "app.bluebubbles.BlueBubbles"]
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onExited: (exitCode, exitStatus) => root.bluebubblesDetected = exitCode === 0
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}
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// Reads the written options back out of the compositor. This is the only
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// thing that decides whether a write succeeded.
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Process {
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id: configVerify
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stdout: StdioCollector {
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onStreamFinished: root.commitVerified(configWrite.pending, this.text)
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}
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}
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Timer {
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// Preferences load asynchronously from disk. Applying after one quiet
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// second avoids racing their restore and runs only once per shell start.
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interval: 1000
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running: true
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onTriggered: root.applyPersistedDisplayPolicy()
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}
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Component.onCompleted: root.refresh()
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function refresh(): void {
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root.lastError = "";
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if (!monitorQuery.running)
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monitorQuery.running = true;
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if (!serviceQuery.running)
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serviceQuery.running = true;
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if (!versionQuery.running && !root.hyprlandVersion)
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versionQuery.running = true;
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if (!bluebubblesQuery.running)
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bluebubblesQuery.running = true;
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}
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function parseMonitors(text: string): void {
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try {
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const monitors = JSON.parse(text);
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const monitor = monitors.find(item => item.focused) ?? monitors[0];
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if (!monitor)
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throw new Error("No active monitor");
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root.monitorName = monitor.name ?? "";
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root.monitorDescription = monitor.description ?? monitor.model ?? "Display";
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root.monitorWidth = monitor.width ?? 0;
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root.monitorHeight = monitor.height ?? 0;
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root.monitorRefreshRate = monitor.refreshRate ?? 0;
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root.monitorScale = monitor.scale ?? 1;
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root.monitorFormat = monitor.currentFormat ?? "";
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root.colorPreset = monitor.colorManagementPreset ?? "";
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root.monitorVrrActive = monitor.vrr ?? false;
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} catch (error) {
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root.lastError = "The display response could not be read.";
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}
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}
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function parseServices(text: string): void {
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try {
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const state = JSON.parse(text);
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root.nextcloudActive = state.nextcloud === true;
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root.rustdeskActive = state.rustdesk === true;
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root.kdeconnectActive = state.kdeconnect === true;
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root.hyprpaperActive = state.hyprpaper === true;
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root.hypridleActive = state.hypridle === true;
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root.vicinaeActive = state.vicinae === true;
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} catch (error) {
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root.lastError = "Startup-service status could not be read.";
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}
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}
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// ── Applying options ────────────────────────────────────────────────────
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// `values` maps schema keys to values, e.g. { vrrPolicy: 3, gapsOut: 12 }.
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// The whole batch is validated before anything is sent, so one bad value
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// rejects the batch rather than half-applying it.
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function applyOptions(values: var): bool {
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const requested = {};
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for (const key in values) {
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const entry = PreferenceSchema.spec(key);
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if (!entry || !entry.hypr) {
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root.lastError = "That setting is not applied by the compositor.";
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return false;
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}
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const coerced = PreferenceSchema.coerce(key, values[key]);
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if (coerced === undefined) {
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root.lastError = `Unsupported value for ${entry.label}.`;
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return false;
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}
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requested[key] = coerced;
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}
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if (Object.keys(requested).length === 0)
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return false;
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// A write in flight is queued rather than refused. Options are applied
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// and verified one batch at a time, but the callers are a settings UI
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// and a startup replay of every compositor-backed preference -- they
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// overlap routinely, and dropping a change on the floor would leave the
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// stored value and the compositor disagreeing. Later values for the
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// same key win.
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if (configWrite.running || configVerify.running) {
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root.queued = Object.assign({}, root.queued, requested);
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return true;
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}
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root.startWrite(requested);
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return true;
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}
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// Merged batches waiting for the current write to finish.
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property var queued: ({})
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function startWrite(requested: var): void {
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configWrite.pending = requested;
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configWrite.exec(["hyprctl", "eval", root.buildConfigPayload(requested)]);
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}
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// Called when a write settles, however it settled. A failed batch must not
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// strand whatever queued up behind it.
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function drainQueue(): void {
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const next = root.queued;
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if (Object.keys(next).length === 0)
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return;
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root.queued = ({});
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root.startWrite(next);
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}
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// The value as Hyprland stores it. Several options are a toggle in the UI
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// but an integer in the compositor (cm_auto_hdr, follow_mouse); `readAs`
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// decides, and config/dot/hypr/prefs.lua does the same conversion via
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// prefs.getInt so both sides agree.
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function hyprValue(entry: var, value: var): var {
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if (typeof value === "boolean" && entry.hypr.readAs !== "bool")
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return value ? 1 : 0;
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return value;
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}
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// Serialises validated values into a nested hl.config{} call. Table paths
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// come from the schema and values have already passed coerce(), including
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// the pattern check on constrained strings, so nothing caller-supplied
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// reaches the payload unchecked.
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function buildConfigPayload(requested: var): string {
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const tree = {};
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for (const key in requested) {
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const entry = PreferenceSchema.spec(key);
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const path = entry.hypr.path;
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let node = tree;
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for (let i = 0; i < path.length - 1; i++)
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node = node[path[i]] = node[path[i]] ?? {};
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node[path[path.length - 1]] = root.serialiseValue(root.hyprValue(entry, requested[key]));
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}
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return `hl.config(${root.serialiseTable(tree)})`;
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}
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function serialiseValue(value: var): string {
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if (typeof value === "boolean")
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return value ? "true" : "false";
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if (typeof value === "number")
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return String(value);
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// Strings only reach here after the schema's pattern check; quoting is
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// belt-and-braces rather than the primary defence.
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return `"${String(value).replace(/["\\]/g, "")}"`;
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}
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function serialiseTable(node: var): string {
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const parts = [];
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for (const name in node) {
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const child = node[name];
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parts.push(`${name} = ${typeof child === "string" ? child : root.serialiseTable(child)}`);
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}
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return `{ ${parts.join(", ")} }`;
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}
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function verifyPending(): void {
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const options = Object.keys(configWrite.pending)
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.map(key => `getoption ${PreferenceSchema.spec(key).hypr.option}`)
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.join(" ; ");
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configVerify.exec(["hyprctl", "-j", "--batch", options]);
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}
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// The compositor's answer is authoritative. Preferences are only updated for
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// options that actually read back with the requested value.
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function commitVerified(requested: var, text: string): void {
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// Each getoption answers with its own flat JSON object, and the field
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// carrying the value depends on the option's type -- int, bool, float,
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// str, or css for the gap box.
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const observed = {};
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for (const block of text.match(/\{[^{}]*\}/g) ?? []) {
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try {
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const parsed = JSON.parse(block);
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if (parsed.option !== undefined)
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observed[parsed.option] = parsed;
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} catch (error) {
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// A partial line is treated as "not observed", which fails the
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// comparison below rather than being mistaken for success.
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}
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}
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const rejected = [];
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for (const key in requested) {
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const entry = PreferenceSchema.spec(key);
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if (!root.matchesObserved(entry, requested[key], observed[entry.hypr.option])) {
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rejected.push(entry.label);
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continue;
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}
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DesktopPreferences.set(key, requested[key]);
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}
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root.lastError = rejected.length === 0 ? "" : `Hyprland did not apply ${rejected.join(" or ")}.`;
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root.drainQueue();
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}
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function matchesObserved(entry: var, value: var, answer: var): bool {
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if (!answer)
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return false;
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const expected = root.hyprValue(entry, value);
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switch (entry.hypr.readAs) {
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case "bool":
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return answer.bool === expected;
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case "int":
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return answer.int === expected;
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case "float":
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// getoption prints six decimal places; compare within that.
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return Math.abs(answer.float - expected) < 1e-5;
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case "str":
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return answer.str === expected;
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case "css":
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// Gaps read back as a box, e.g. "10 10 10 10".
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return Number(String(answer.css).trim().split(/\s+/)[0]) === expected;
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}
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return false;
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}
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function reportWriteFailure(requested: var, text: string): void {
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const labels = Object.keys(requested).map(key => PreferenceSchema.spec(key).label);
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root.lastError = `Hyprland rejected ${labels.join(" and ")}.`;
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root.drainQueue();
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}
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// The one entry point the settings UI uses to change any preference.
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//
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// A compositor-backed setting must be applied and verified before it is
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// stored, so that preferences never claim a value Hyprland refused.
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// Everything else is a direct write. Rows bind a schema key and call this;
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// they never need to know which kind they are holding.
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function commitPreference(key: string, value: var): bool {
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const entry = PreferenceSchema.spec(key);
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if (!entry) {
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root.lastError = "That setting is not part of Panama.";
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return false;
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}
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if (entry.hypr) {
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const batch = {};
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batch[key] = value;
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return root.applyOptions(batch);
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}
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return DesktopPreferences.set(key, value);
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}
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// Restores shipped defaults across every store Panama owns, not just the
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// schema. Panama keeps user state in more than one file -- the schema store,
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// the focus session, and the Home accessory arrangement -- and a reset that
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// silently skipped one would be worse than no reset at all.
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//
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// Compositor-backed values are re-applied afterwards, since resetting the
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// stored value does not by itself tell Hyprland anything.
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function restoreDefaults(): void {
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DesktopPreferences.resetDesktopDefaults();
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// Home accessories keep their own store (panama-home.json), so a reset
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// that only cleared the schema store would silently leave a customised
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// favourites list behind while claiming to restore Panama's defaults.
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//
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// HomePreferences owns the write-through boundary so the state file is
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// rewritten before this reset can be considered complete.
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HomePreferences.resetHomeDefaults();
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resettleTimer.restart();
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}
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Timer {
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id: resettleTimer
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interval: 60
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onTriggered: root.applyPersistedDisplayPolicy()
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}
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function setAutoHdr(enabled: bool): void {
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root.applyOptions({ autoHdr: enabled });
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}
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function setVrrPolicy(policy: int): void {
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root.applyOptions({ vrrPolicy: policy });
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}
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function setDirectScanoutPolicy(policy: int): void {
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root.applyOptions({ directScanoutPolicy: policy });
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}
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// Replays every compositor-owned preference in one batch at shell start, so
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// a value the user changed in Settings survives a reboot even though the
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// Lua config only reads the file once, at launch.
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function applyPersistedDisplayPolicy(): void {
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const values = {};
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for (const entry of PreferenceSchema.hyprEntries())
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values[entry.key] = DesktopPreferences.get(entry.key);
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root.applyOptions(values);
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}
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function isGnomePanelAllowed(panel: string): bool {
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// Verified against `gnome-control-center --list` on this system. A name
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// that panel list does not contain opens nothing and reports an error,
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// so guessing one here would be a silently dead button.
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return [
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"applications", "background", "bluetooth", "color", "display",
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"keyboard", "mouse", "multitasking", "network", "notifications",
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"online-accounts", "power", "printers", "privacy", "search",
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"sharing", "sound", "system", "universal-access", "wacom",
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"wellbeing", "wifi", "wwan"
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].indexOf(panel) >= 0;
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}
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function openGnomePanel(panel: string): bool {
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if (!root.isGnomePanelAllowed(panel)) {
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root.lastError = "That GNOME Settings panel is not available.";
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return false;
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}
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Quickshell.execDetached({
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command: ["gnome-control-center", panel],
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environment: { "XDG_CURRENT_DESKTOP": "GNOME" }
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});
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return true;
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}
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function openApplication(id: string): bool {
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const commands = {
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"nextcloud": ["nextcloud"],
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"rustdesk": ["rustdesk"],
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"kdeconnect": ["kdeconnect-app"],
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"mission-center": ["flatpak", "run", "io.missioncenter.MissionCenter"],
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"bluebubbles": ["flatpak", "run", "app.bluebubbles.BlueBubbles"]
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};
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const command = commands[id];
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if (!command) {
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root.lastError = "That application is not managed by Panama Settings.";
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return false;
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}
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Quickshell.execDetached(command);
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return true;
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}
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}
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