330 lines
11 KiB
QML
330 lines
11 KiB
QML
pragma Singleton
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import qs.config
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import Quickshell
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import Quickshell.Io
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import QtQuick
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Singleton {
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id: root
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// CPU properties
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property string cpuName: ""
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property real cpuPerc
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property real cpuTemp
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// GPU properties
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readonly property string gpuType: Config.services.gpuType.toUpperCase() || autoGpuType
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property string autoGpuType: "NONE"
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property string gpuName: ""
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property real gpuPerc
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property real gpuTemp
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// Memory properties
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property real memUsed
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property real memTotal
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readonly property real memPerc: memTotal > 0 ? memUsed / memTotal : 0
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// Storage properties (aggregated)
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readonly property real storagePerc: {
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let totalUsed = 0;
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let totalSize = 0;
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for (const disk of disks) {
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totalUsed += disk.used;
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totalSize += disk.total;
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}
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return totalSize > 0 ? totalUsed / totalSize : 0;
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}
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// Individual disks: Array of { mount, used, total, free, perc }
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property var disks: []
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property real lastCpuIdle
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property real lastCpuTotal
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property int refCount
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function cleanCpuName(name: string): string {
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return name.replace(/\(R\)|\(TM\)|CPU|\d+(?:th|nd|rd|st) Gen |Core |Processor/gi, "").replace(/\s+/g, " ").trim();
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}
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function cleanGpuName(name: string): string {
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return name.replace(/\(R\)|\(TM\)|Graphics/gi, "").replace(/\s+/g, " ").trim();
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}
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function formatKib(kib: real): var {
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const mib = 1024;
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const gib = 1024 ** 2;
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const tib = 1024 ** 3;
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if (kib >= tib)
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return {
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value: kib / tib,
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unit: "TiB"
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};
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if (kib >= gib)
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return {
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value: kib / gib,
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unit: "GiB"
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};
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if (kib >= mib)
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return {
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value: kib / mib,
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unit: "MiB"
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};
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return {
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value: kib,
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unit: "KiB"
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};
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}
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Timer {
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running: root.refCount > 0
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interval: Config.dashboard.resourceUpdateInterval
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repeat: true
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triggeredOnStart: true
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onTriggered: {
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stat.reload();
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meminfo.reload();
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storage.running = true;
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gpuUsage.running = true;
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sensors.running = true;
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}
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}
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// One-time CPU info detection (name)
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FileView {
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id: cpuinfoInit
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path: "/proc/cpuinfo"
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onLoaded: {
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const nameMatch = text().match(/model name\s*:\s*(.+)/);
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if (nameMatch)
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root.cpuName = root.cleanCpuName(nameMatch[1]);
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}
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}
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FileView {
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id: stat
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path: "/proc/stat"
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onLoaded: {
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const data = text().match(/^cpu\s+(\d+)\s+(\d+)\s+(\d+)\s+(\d+)\s+(\d+)\s+(\d+)\s+(\d+)/);
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if (data) {
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const stats = data.slice(1).map(n => parseInt(n, 10));
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const total = stats.reduce((a, b) => a + b, 0);
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const idle = stats[3] + (stats[4] ?? 0);
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const totalDiff = total - root.lastCpuTotal;
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const idleDiff = idle - root.lastCpuIdle;
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root.cpuPerc = totalDiff > 0 ? (1 - idleDiff / totalDiff) : 0;
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root.lastCpuTotal = total;
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root.lastCpuIdle = idle;
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}
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}
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}
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FileView {
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id: meminfo
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path: "/proc/meminfo"
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onLoaded: {
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const data = text();
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root.memTotal = parseInt(data.match(/MemTotal: *(\d+)/)[1], 10) || 1;
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root.memUsed = (root.memTotal - parseInt(data.match(/MemAvailable: *(\d+)/)[1], 10)) || 0;
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}
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}
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Process {
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id: storage
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// Get physical disks with aggregated usage from their partitions
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// -J triggers JSON output. -b triggers bytes.
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command: ["lsblk", "-J", "-b", "-o", "NAME,SIZE,TYPE,FSUSED,FSSIZE,MOUNTPOINT"]
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stdout: StdioCollector {
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onStreamFinished: {
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const data = JSON.parse(text);
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const diskList = [];
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const seenDevices = new Set();
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// Helper to recursively sum usage from children (partitions, crypt, lvm)
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const aggregateUsage = dev => {
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let used = 0;
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let size = 0;
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let isRoot = dev.mountpoint === "/" || (dev.mountpoints && dev.mountpoints.includes("/"));
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if (!seenDevices.has(dev.name)) {
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// lsblk returns null for empty/unformatted partitions, which parses to 0 here
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used = parseInt(dev.fsused) || 0;
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size = parseInt(dev.fssize) || 0;
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seenDevices.add(dev.name);
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}
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if (dev.children) {
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for (const child of dev.children) {
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const stats = aggregateUsage(child);
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used += stats.used;
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size += stats.size;
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if (stats.isRoot)
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isRoot = true;
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}
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}
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return {
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used,
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size,
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isRoot
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};
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};
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for (const dev of data.blockdevices) {
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// Only process physical disks at the top level
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if (dev.type === "disk" && !dev.name.startsWith("zram")) {
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const stats = aggregateUsage(dev);
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if (stats.size === 0) {
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continue;
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}
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const total = stats.size;
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const used = stats.used;
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diskList.push({
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mount: dev.name,
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used: used / 1024 // KiB
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,
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total: total / 1024 // KiB
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,
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free: (total - used) / 1024,
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perc: total > 0 ? used / total : 0,
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hasRoot: stats.isRoot
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});
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}
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}
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// Sort by putting the disk with root first, then sort the rest alphabetically
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root.disks = diskList.sort((a, b) => {
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if (a.hasRoot && !b.hasRoot)
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return -1;
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if (!a.hasRoot && b.hasRoot)
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return 1;
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return a.mount.localeCompare(b.mount);
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});
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}
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}
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}
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// GPU name detection (one-time)
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Process {
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id: gpuNameDetect
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running: true
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command: ["sh", "-c", "nvidia-smi --query-gpu=name --format=csv,noheader 2>/dev/null || glxinfo -B 2>/dev/null | grep 'Device:' | cut -d':' -f2 | cut -d'(' -f1 || lspci 2>/dev/null | grep -i 'vga\\|3d controller\\|display' | head -1"]
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stdout: StdioCollector {
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onStreamFinished: {
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const output = text.trim();
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if (!output)
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return;
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// Check if it's from nvidia-smi (clean GPU name)
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if (output.toLowerCase().includes("nvidia") || output.toLowerCase().includes("geforce") || output.toLowerCase().includes("rtx") || output.toLowerCase().includes("gtx")) {
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root.gpuName = root.cleanGpuName(output);
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} else if (output.toLowerCase().includes("rx")) {
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root.gpuName = root.cleanGpuName(output);
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} else {
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// Parse lspci output: extract name from brackets or after colon
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// Handles cases like [AMD/ATI] Navi 21 [Radeon RX 6800/6800 XT / 6900 XT] (rev c0)
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const bracketMatch = output.match(/\[([^\]]+)\][^\[]*$/);
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if (bracketMatch) {
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root.gpuName = root.cleanGpuName(bracketMatch[1]);
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} else {
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const colonMatch = output.match(/:\s*(.+)/);
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if (colonMatch)
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root.gpuName = root.cleanGpuName(colonMatch[1]);
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}
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}
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}
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}
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}
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Process {
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id: gpuTypeCheck
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running: !Config.services.gpuType
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command: ["sh", "-c", "if command -v nvidia-smi &>/dev/null && nvidia-smi -L &>/dev/null; then echo NVIDIA; elif ls /sys/class/drm/card*/device/gpu_busy_percent 2>/dev/null | grep -q .; then echo GENERIC; else echo NONE; fi"]
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stdout: StdioCollector {
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onStreamFinished: root.autoGpuType = text.trim()
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}
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}
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Process {
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id: gpuUsage
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command: root.gpuType === "GENERIC" ? ["sh", "-c", "cat /sys/class/drm/card*/device/gpu_busy_percent"] : root.gpuType === "NVIDIA" ? ["nvidia-smi", "--query-gpu=utilization.gpu,temperature.gpu", "--format=csv,noheader,nounits"] : ["echo"]
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stdout: StdioCollector {
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onStreamFinished: {
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if (root.gpuType === "GENERIC") {
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const percs = text.trim().split("\n");
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const sum = percs.reduce((acc, d) => acc + parseInt(d, 10), 0);
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root.gpuPerc = sum / percs.length / 100;
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} else if (root.gpuType === "NVIDIA") {
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const [usage, temp] = text.trim().split(",");
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root.gpuPerc = parseInt(usage, 10) / 100;
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root.gpuTemp = parseInt(temp, 10);
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} else {
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root.gpuPerc = 0;
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root.gpuTemp = 0;
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}
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}
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}
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}
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Process {
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id: sensors
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command: ["sensors"]
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environment: ({
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LANG: "C.UTF-8",
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LC_ALL: "C.UTF-8"
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})
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stdout: StdioCollector {
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onStreamFinished: {
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let cpuTemp = text.match(/(?:Package id [0-9]+|Tdie):\s+((\+|-)[0-9.]+)(°| )C/);
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if (!cpuTemp)
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// If AMD Tdie pattern failed, try fallback on Tctl
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cpuTemp = text.match(/Tctl:\s+((\+|-)[0-9.]+)(°| )C/);
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if (cpuTemp)
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root.cpuTemp = parseFloat(cpuTemp[1]);
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if (root.gpuType !== "GENERIC")
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return;
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let eligible = false;
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let sum = 0;
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let count = 0;
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for (const line of text.trim().split("\n")) {
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if (line === "Adapter: PCI adapter")
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eligible = true;
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else if (line === "")
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eligible = false;
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else if (eligible) {
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let match = line.match(/^(temp[0-9]+|GPU core|edge)+:\s+\+([0-9]+\.[0-9]+)(°| )C/);
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if (!match)
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// Fall back to junction/mem if GPU doesn't have edge temp (for AMD GPUs)
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match = line.match(/^(junction|mem)+:\s+\+([0-9]+\.[0-9]+)(°| )C/);
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if (match) {
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sum += parseFloat(match[2]);
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count++;
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}
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}
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}
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root.gpuTemp = count > 0 ? sum / count : 0;
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}
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}
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}
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}
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