462 lines
14 KiB
JavaScript
462 lines
14 KiB
JavaScript
const axios = require('axios');
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const http = require('http');
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const https = require('https');
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const QUERY_TIMEOUT = 10000;
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// Reusable agents to handle potential redirect issues and protocol mismatches
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const httpAgent = new http.Agent({ keepAlive: true });
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const httpsAgent = new https.Agent({ keepAlive: true, rejectUnauthorized: false });
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/**
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* Normalize URL and ensure protocol
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*/
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function normalizeUrl(baseUrl) {
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let url = baseUrl.trim().replace(/\/+$/, '');
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if (!/^https?:\/\//i.test(url)) {
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url = 'http://' + url;
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}
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return url;
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}
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/**
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* Create an axios instance for a given Prometheus URL
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*/
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function createClient(baseUrl) {
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const url = normalizeUrl(baseUrl);
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return axios.create({
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baseURL: url,
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timeout: QUERY_TIMEOUT,
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httpAgent,
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httpsAgent,
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maxRedirects: 5
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});
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}
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/**
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* Test Prometheus connection
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*/
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async function testConnection(url) {
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const normalized = normalizeUrl(url);
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try {
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// Using native fetch to avoid follow-redirects/axios "protocol mismatch" issues in some Node environments
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const controller = new AbortController();
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const timer = setTimeout(() => controller.abort(), QUERY_TIMEOUT);
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// Node native fetch - handles http/https automatically
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const res = await fetch(`${normalized}/api/v1/status/buildinfo`, {
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signal: controller.signal
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});
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clearTimeout(timer);
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if (!res.ok) {
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throw new Error(`Prometheus returned HTTP ${res.status}`);
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}
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const data = await res.json();
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return data?.data?.version || 'unknown';
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} catch (err) {
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if (err.name === 'AbortError') {
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throw new Error('Connection timed out');
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}
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console.error(`[Prometheus] Connection test failed for ${normalized}:`, err.message);
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throw err;
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}
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}
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/**
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* Execute a Prometheus instant query
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*/
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async function query(baseUrl, expr) {
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const url = normalizeUrl(baseUrl);
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try {
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const params = new URLSearchParams({ query: expr });
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const controller = new AbortController();
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const timer = setTimeout(() => controller.abort(), QUERY_TIMEOUT);
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const res = await fetch(`${url}/api/v1/query?${params.toString()}`, {
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signal: controller.signal
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});
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clearTimeout(timer);
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if (!res.ok) {
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throw new Error(`Prometheus returned HTTP ${res.status}`);
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}
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const data = await res.json();
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if (data.status !== 'success') {
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throw new Error(`Prometheus query failed: ${data.error || 'unknown error'}`);
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}
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return data.data.result;
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} catch (err) {
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if (err.name === 'AbortError') {
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throw new Error('Prometheus query timed out');
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}
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throw err;
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}
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}
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/**
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* Execute a Prometheus range query
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*/
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async function queryRange(baseUrl, expr, start, end, step) {
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const url = normalizeUrl(baseUrl);
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try {
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const params = new URLSearchParams({ query: expr, start, end, step });
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const controller = new AbortController();
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const timer = setTimeout(() => controller.abort(), QUERY_TIMEOUT);
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const res = await fetch(`${url}/api/v1/query_range?${params.toString()}`, {
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signal: controller.signal
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});
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clearTimeout(timer);
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if (!res.ok) {
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throw new Error(`Prometheus returned HTTP ${res.status}`);
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}
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const data = await res.json();
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if (data.status !== 'success') {
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throw new Error(`Prometheus range query failed: ${data.error || 'unknown error'}`);
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}
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return data.data.result;
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} catch (err) {
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if (err.name === 'AbortError') {
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throw new Error('Prometheus range query timed out');
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}
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throw err;
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}
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}
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/**
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* Get overview metrics from a single Prometheus source
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*/
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async function getOverviewMetrics(url, sourceName) {
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// Run all queries in parallel
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const [
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cpuResult,
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cpuCountResult,
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memTotalResult,
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memAvailResult,
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diskTotalResult,
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diskFreeResult,
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netRxResult,
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netTxResult,
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traffic24hRxResult,
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traffic24hTxResult,
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upResult
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] = await Promise.all([
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// CPU usage per instance: 1 - avg idle
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query(url, '100 - (avg by (instance, job) (rate(node_cpu_seconds_total{mode="idle"}[1m])) * 100)').catch(() => []),
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// CPU count per instance
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query(url, 'count by (instance, job) (node_cpu_seconds_total{mode="idle"})').catch(() => []),
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// Memory total per instance
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query(url, 'node_memory_MemTotal_bytes').catch(() => []),
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// Memory available per instance
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query(url, 'node_memory_MemAvailable_bytes').catch(() => []),
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// Disk total per instance (root filesystem + /data)
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query(url, 'sum by (instance, job) (node_filesystem_size_bytes{mountpoint=~"/|/data",fstype!="tmpfs"})').catch(() => []),
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// Disk free per instance (root filesystem + /data)
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query(url, 'sum by (instance, job) (node_filesystem_free_bytes{mountpoint=~"/|/data",fstype!="tmpfs"})').catch(() => []),
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// Network receive rate (bytes/sec)
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query(url, 'sum by (instance, job) (rate(node_network_receive_bytes_total{device!~"lo|veth.*|docker.*|br-.*"}[1m]))').catch(() => []),
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// Network transmit rate (bytes/sec)
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query(url, 'sum by (instance, job) (rate(node_network_transmit_bytes_total{device!~"lo|veth.*|docker.*|br-.*"}[1m]))').catch(() => []),
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// Total traffic received in last 24h
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query(url, 'sum by (instance, job) (increase(node_network_receive_bytes_total{device!~"lo|veth.*|docker.*|br-.*"}[24h]))').catch(() => []),
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// Total traffic transmitted in last 24h
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query(url, 'sum by (instance, job) (increase(node_network_transmit_bytes_total{device!~"lo|veth.*|docker.*|br-.*"}[24h]))').catch(() => []),
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// Up instances (at least one successful scrape in last 5m)
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// We broaden the job filter to catch more variations of node-exporter jobs
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query(url, 'max_over_time(up{job=~".*node.*|.*exporter.*|.*host.*"}[5m])').catch(() => [])
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]);
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// Build per-instance data map
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const instances = new Map();
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const getOrCreate = (metric) => {
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const key = metric.instance;
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if (!instances.has(key)) {
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instances.set(key, {
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instance: key,
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job: metric.job || 'Unknown',
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source: sourceName,
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cpuPercent: 0,
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cpuCores: 0,
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memTotal: 0,
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memUsed: 0,
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diskTotal: 0,
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diskUsed: 0,
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netRx: 0,
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netTx: 0,
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up: false
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});
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}
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const inst = instances.get(key);
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// If job was Unknown but we now have a job name, update it
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if (inst.job === 'Unknown' && metric.job) {
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inst.job = metric.job;
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}
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return inst;
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};
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// Parse UP status
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for (const r of upResult) {
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const inst = getOrCreate(r.metric);
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inst.up = parseFloat(r.value[1]) === 1;
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}
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// Parse CPU usage
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for (const r of cpuResult) {
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const inst = getOrCreate(r.metric);
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inst.cpuPercent = parseFloat(r.value[1]) || 0;
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}
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// Parse CPU count
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for (const r of cpuCountResult) {
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const inst = getOrCreate(r.metric);
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inst.cpuCores = parseFloat(r.value[1]) || 0;
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}
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// Parse memory
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for (const r of memTotalResult) {
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const inst = getOrCreate(r.metric);
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inst.memTotal = parseFloat(r.value[1]) || 0;
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}
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for (const r of memAvailResult) {
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const inst = getOrCreate(r.metric);
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inst.memUsed = inst.memTotal - (parseFloat(r.value[1]) || 0);
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}
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// Parse disk
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for (const r of diskTotalResult) {
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const inst = getOrCreate(r.metric);
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inst.diskTotal = parseFloat(r.value[1]) || 0;
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}
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for (const r of diskFreeResult) {
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const inst = getOrCreate(r.metric);
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inst.diskUsed = inst.diskTotal - (parseFloat(r.value[1]) || 0);
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}
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// Parse network rates
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for (const r of netRxResult) {
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const inst = getOrCreate(r.metric);
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inst.netRx = parseFloat(r.value[1]) || 0;
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}
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for (const r of netTxResult) {
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const inst = getOrCreate(r.metric);
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inst.netTx = parseFloat(r.value[1]) || 0;
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}
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// Final check: If an instance has non-zero CPU or Memory total data but is marked offline,
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// it means we missed its 'up' metric due to job labels, but it's clearly sending data.
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for (const inst of instances.values()) {
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if (!inst.up && (inst.cpuPercent > 0 || inst.memTotal > 0)) {
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inst.up = true;
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}
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}
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// Aggregate
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let totalCpuUsed = 0, totalCpuCores = 0;
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let totalMemUsed = 0, totalMemTotal = 0;
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let totalDiskUsed = 0, totalDiskTotal = 0;
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let totalNetRx = 0, totalNetTx = 0;
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let totalTraffic24hRx = 0, totalTraffic24hTx = 0;
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for (const inst of instances.values()) {
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totalCpuUsed += (inst.cpuPercent / 100) * inst.cpuCores;
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totalCpuCores += inst.cpuCores;
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totalMemUsed += inst.memUsed;
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totalMemTotal += inst.memTotal;
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totalDiskUsed += inst.diskUsed;
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totalDiskTotal += inst.diskTotal;
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totalNetRx += inst.netRx;
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totalNetTx += inst.netTx;
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}
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// Parse 24h traffic
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for (const r of traffic24hRxResult) {
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totalTraffic24hRx += parseFloat(r.value[1]) || 0;
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}
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for (const r of traffic24hTxResult) {
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totalTraffic24hTx += parseFloat(r.value[1]) || 0;
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}
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return {
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totalServers: instances.size,
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cpu: {
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used: totalCpuUsed,
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total: totalCpuCores,
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percent: totalCpuCores > 0 ? (totalCpuUsed / totalCpuCores * 100) : 0
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},
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memory: {
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used: totalMemUsed,
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total: totalMemTotal,
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percent: totalMemTotal > 0 ? (totalMemUsed / totalMemTotal * 100) : 0
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},
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disk: {
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used: totalDiskUsed,
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total: totalDiskTotal,
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percent: totalDiskTotal > 0 ? (totalDiskUsed / totalDiskTotal * 100) : 0
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},
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network: {
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rx: totalNetRx,
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tx: totalNetTx,
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total: totalNetRx + totalNetTx
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},
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traffic24h: {
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rx: totalTraffic24hRx,
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tx: totalTraffic24hTx
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},
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servers: Array.from(instances.values())
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};
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}
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/**
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* Get network traffic history (past 24h, 15-min intervals)
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*/
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async function getNetworkHistory(url) {
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const now = Math.floor(Date.now() / 1000);
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const start = now - 86400; // 24h ago
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const step = 900; // 15 minutes
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const [rxResult, txResult] = await Promise.all([
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queryRange(url,
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'sum(rate(node_network_receive_bytes_total{device!~"lo|veth.*|docker.*|br-.*"}[1m]))',
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start, now, step
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).catch(() => []),
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queryRange(url,
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'sum(rate(node_network_transmit_bytes_total{device!~"lo|veth.*|docker.*|br-.*"}[1m]))',
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start, now, step
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).catch(() => [])
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]);
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// Extract values - each result[0].values = [[timestamp, value], ...]
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const rxValues = rxResult.length > 0 ? rxResult[0].values : [];
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const txValues = txResult.length > 0 ? txResult[0].values : [];
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return { rxValues, txValues };
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}
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/**
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* Merge network histories from multiple sources
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*/
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function mergeNetworkHistories(histories) {
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const timestampMap = new Map();
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for (const history of histories) {
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for (const [ts, val] of history.rxValues) {
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const existing = timestampMap.get(ts) || { rx: 0, tx: 0 };
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existing.rx += parseFloat(val) || 0;
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timestampMap.set(ts, existing);
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}
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for (const [ts, val] of history.txValues) {
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const existing = timestampMap.get(ts) || { rx: 0, tx: 0 };
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existing.tx += parseFloat(val) || 0;
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timestampMap.set(ts, existing);
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}
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}
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const sorted = [...timestampMap.entries()].sort((a, b) => a[0] - b[0]);
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return {
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timestamps: sorted.map(([ts]) => ts * 1000), // ms for JS
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rx: sorted.map(([, v]) => v.rx),
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tx: sorted.map(([, v]) => v.tx)
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};
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}
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/**
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* Get CPU usage history (past 1h, 1-min intervals)
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*/
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async function getCpuHistory(url) {
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const now = Math.floor(Date.now() / 1000);
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const start = now - 3600; // 1h ago
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const step = 60; // 1 minute
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const result = await queryRange(url,
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'100 - (avg(rate(node_cpu_seconds_total{mode="idle"}[1m])) * 100)',
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start, now, step
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).catch(() => []);
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const values = result.length > 0 ? result[0].values : [];
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return values; // [[timestamp, value], ...]
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}
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/**
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* Merge CPU histories from multiple sources (average)
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*/
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function mergeCpuHistories(histories) {
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const timestampMap = new Map();
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for (const history of histories) {
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for (const [ts, val] of history) {
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const existing = timestampMap.get(ts) || { sum: 0, count: 0 };
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existing.sum += parseFloat(val) || 0;
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existing.count += 1;
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timestampMap.set(ts, existing);
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}
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}
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const sorted = [...timestampMap.entries()].sort((a, b) => a[0] - b[0]);
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return {
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timestamps: sorted.map(([ts]) => ts * 1000),
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values: sorted.map(([, v]) => v.sum / v.count)
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};
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}
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/**
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* Get detailed metrics for a specific server (node)
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*/
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async function getServerDetails(baseUrl, instance, job) {
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const url = normalizeUrl(baseUrl);
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const node = instance;
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// Queries based on the requested dashboard structure
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const queries = {
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cpuBusy: `100 * (1 - avg(rate(node_cpu_seconds_total{mode="idle", instance="${node}"}[1m])))`,
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sysLoad: `node_load1{instance="${node}",job="${job}"} * 100 / count(count(node_cpu_seconds_total{instance="${node}",job="${job}"}) by (cpu))`,
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memUsedPct: `(1 - (node_memory_MemAvailable_bytes{instance="${node}", job="${job}"} / node_memory_MemTotal_bytes{instance="${node}", job="${job}"})) * 100`,
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swapUsedPct: `((node_memory_SwapTotal_bytes{instance="${node}",job="${job}"} - node_memory_SwapFree_bytes{instance="${node}",job="${job}"}) / (node_memory_SwapTotal_bytes{instance="${node}",job="${job}"})) * 100`,
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rootFsUsedPct: `100 - ((node_filesystem_avail_bytes{instance="${node}",job="${job}",mountpoint="/",fstype!="rootfs"} * 100) / node_filesystem_size_bytes{instance="${node}",job="${job}",mountpoint="/",fstype!="rootfs"})`,
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cpuCores: `count(count(node_cpu_seconds_total{instance="${node}",job="${job}"}) by (cpu))`,
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memTotal: `node_memory_MemTotal_bytes{instance="${node}",job="${job}"}`,
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uptime: `node_time_seconds{instance="${node}",job="${job}"} - node_boot_time_seconds{instance="${node}",job="${job}"}`,
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netRx: `sum(rate(node_network_receive_bytes_total{instance="${node}",job="${job}",device!~'tap.*|veth.*|br.*|docker.*|virbr*|podman.*|lo.*|vmbr.*|fwbr.|ip.*|gre.*|virbr.*|vnet.*'}[1m]))`,
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netTx: `sum(rate(node_network_transmit_bytes_total{instance="${node}",job="${job}",device!~'tap.*|veth.*|br.*|docker.*|virbr*|podman.*|lo.*|vmbr.*|fwbr.|ip.*|gre.*|virbr.*|vnet.*'}[1m]))`
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};
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const results = {};
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const queryPromises = Object.entries(queries).map(async ([key, expr]) => {
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try {
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const res = await query(url, expr);
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results[key] = res.length > 0 ? parseFloat(res[0].value[1]) : 0;
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} catch (e) {
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console.error(`[Prometheus] Error querying ${key} for ${node}:`, e.message);
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results[key] = 0;
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}
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});
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await Promise.all(queryPromises);
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return results;
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}
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module.exports = {
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testConnection,
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query,
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queryRange,
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getOverviewMetrics,
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getNetworkHistory,
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mergeNetworkHistories,
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getCpuHistory,
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mergeCpuHistories,
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getServerDetails
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};
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