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954 lines
50 KiB
JavaScript
954 lines
50 KiB
JavaScript
const { processPbsTasks } = require('./pbsUtils'); // Assuming pbsUtils.js exists or will be created
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let pLimit;
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let requestLimiter;
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let pLimitInitialized = false;
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async function initializePLimit() {
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if (pLimitInitialized) return;
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// Adding a try-catch for robustness, though module resolution should handle not found.
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try {
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const pLimitModule = await import('p-limit');
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pLimit = pLimitModule.default;
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requestLimiter = pLimit(5);
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pLimitInitialized = true;
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} catch (error) {
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console.error("[DataFetcher] Failed to initialize p-limit:", error);
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// Fallback to a no-op limiter or throw if critical
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requestLimiter = (fn) => fn(); // Basic fallback: execute immediately
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pLimitInitialized = true; // Mark as initialized to prevent retries
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}
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}
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// Helper function to fetch data and handle common errors/warnings
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async function fetchNodeResource(apiClient, endpointId, nodeName, resourcePath, resourceName, expectArray = false, transformFn = null) {
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try {
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const response = await apiClient.get(`/nodes/${nodeName}/${resourcePath}`);
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const data = response.data?.data;
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if (data) {
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if (expectArray && !Array.isArray(data)) {
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console.warn(`[DataFetcher - ${endpointId}-${nodeName}] ${resourceName} data is not an array as expected.`);
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return expectArray ? [] : null;
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}
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return transformFn ? transformFn(data) : data;
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} else {
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console.warn(`[DataFetcher - ${endpointId}-${nodeName}] ${resourceName} data missing or invalid format.`);
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return expectArray ? [] : null;
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}
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} catch (error) {
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console.error(`[DataFetcher - ${endpointId}-${nodeName}] Error fetching ${resourceName}: ${error.message}`);
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return expectArray ? [] : null; // Allow proceeding even if this resource fails
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}
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}
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async function fetchDataForNode(apiClient, endpointId, nodeName) {
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const nodeStatus = await fetchNodeResource(apiClient, endpointId, nodeName, 'status', 'Node status');
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const storage = await fetchNodeResource(apiClient, endpointId, nodeName, 'storage', 'Node storage', true);
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const vms = await fetchNodeResource(
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apiClient, endpointId, nodeName, 'qemu', 'VMs (qemu)', true,
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(data) => data.map(vm => ({ ...vm, node: nodeName, endpointId: endpointId, type: 'qemu' }))
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);
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const containers = await fetchNodeResource(
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apiClient, endpointId, nodeName, 'lxc', 'Containers (lxc)', true,
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(data) => data.map(ct => ({ ...ct, node: nodeName, endpointId: endpointId, type: 'lxc' }))
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);
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return {
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vms: vms || [],
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containers: containers || [],
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nodeStatus: nodeStatus || {},
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storage: storage || [],
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};
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}
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/**
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* Fetches and processes discovery data for a single PVE endpoint.
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* @param {string} endpointId - The unique ID of the PVE endpoint.
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* @param {Object} apiClient - The initialized Axios client instance for this endpoint.
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* @param {Object} config - The configuration object for this endpoint.
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* @returns {Promise<Object>} - { nodes: Array, vms: Array, containers: Array } for this endpoint.
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*/
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async function fetchDataForPveEndpoint(endpointId, apiClientInstance, config) {
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await initializePLimit(); // Ensure pLimit is initialized before use
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const endpointName = config.name || endpointId; // Use configured name or ID
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let endpointType = 'standalone'; // Default to standalone
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let actualClusterName = config.name || endpointId; // Default identifier to endpoint name
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let standaloneNodeName = null; // To store the name of the standalone node if applicable
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try {
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// Attempt to determine if the endpoint is part of a multi-node cluster
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try {
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const clusterStatusResponse = await apiClientInstance.get('/cluster/status');
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if (clusterStatusResponse.data && Array.isArray(clusterStatusResponse.data.data) && clusterStatusResponse.data.data.length > 0) {
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const clusterInfoObject = clusterStatusResponse.data.data.find(item => item.type === 'cluster');
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if (clusterInfoObject) {
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if (clusterInfoObject.nodes && clusterInfoObject.nodes > 1) {
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endpointType = 'cluster';
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actualClusterName = clusterInfoObject.name || actualClusterName; // Use actual cluster name if available
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} else {
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endpointType = 'standalone'; // Still standalone if nodes <= 1
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// Attempt to get the actual node name for the label if it's standalone
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const nodesListForEndpoint = (await apiClientInstance.get('/nodes')).data?.data;
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if (nodesListForEndpoint && nodesListForEndpoint.length > 0) {
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// For a standalone or single-node cluster, use its own node name as the identifier
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standaloneNodeName = nodesListForEndpoint[0].node;
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}
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}
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} else {
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endpointType = 'standalone';
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const nodesListForEndpoint = (await apiClientInstance.get('/nodes')).data?.data;
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if (nodesListForEndpoint && nodesListForEndpoint.length > 0) {
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standaloneNodeName = nodesListForEndpoint[0].node;
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}
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}
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} else {
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// console.warn(`[DataFetcher - ${endpointName}] No nodes found or unexpected format.`);
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endpointType = 'standalone'; // Fallback
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}
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} catch (clusterError) {
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console.error(`[DataFetcher - ${endpointName}] Error fetching /cluster/status: ${clusterError.message}`, clusterError);
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endpointType = 'standalone'; // Fallback
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// Even on /cluster/status error, try to get node name if it's likely standalone
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try {
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const nodesListForEndpoint = (await apiClientInstance.get('/nodes')).data?.data;
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if (nodesListForEndpoint && nodesListForEndpoint.length > 0) {
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standaloneNodeName = nodesListForEndpoint[0].node;
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}
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} catch (nodesError) {
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console.error(`[DataFetcher - ${endpointName}] Also failed to fetch /nodes after /cluster/status error: ${nodesError.message}`);
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}
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}
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// Update actualClusterName if this is a standalone endpoint and we found a specific node name
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if (endpointType === 'standalone' && standaloneNodeName) {
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actualClusterName = standaloneNodeName;
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}
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const nodesResponse = await apiClientInstance.get('/nodes');
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const nodes = nodesResponse.data.data;
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if (!nodes || !Array.isArray(nodes)) {
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// console.warn(`[DataFetcher - ${endpointName}] No nodes found or unexpected format.`);
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return { nodes: [], vms: [], containers: [] };
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}
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// Pass the correct endpointId to fetchDataForNode with concurrency limiting
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const guestPromises = nodes.map(node =>
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requestLimiter(() => fetchDataForNode(apiClientInstance, endpointId, node.node))
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);
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const guestResults = await Promise.allSettled(guestPromises);
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let endpointVms = [];
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let endpointContainers = [];
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let processedNodes = [];
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guestResults.forEach((result, index) => {
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const correspondingNodeInfo = nodes[index];
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if (!correspondingNodeInfo || !correspondingNodeInfo.node) return;
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const finalNode = {
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cpu: null, mem: null, disk: null, maxdisk: null, uptime: 0, loadavg: null, storage: [],
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node: correspondingNodeInfo.node,
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maxcpu: correspondingNodeInfo.maxcpu,
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maxmem: correspondingNodeInfo.maxmem,
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level: correspondingNodeInfo.level,
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status: correspondingNodeInfo.status || 'unknown',
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id: `${endpointId}-${correspondingNodeInfo.node}`, // Use endpointId for node ID
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endpointId: endpointId, // Use endpointId for tagging node
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clusterIdentifier: actualClusterName, // Use actual cluster name or endpoint name
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endpointType: endpointType, // Added to differentiate cluster vs standalone for labeling
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};
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if (result.status === 'fulfilled' && result.value) {
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const nodeData = result.value;
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// Use endpointId (the actual key) for constructing IDs and tagging
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endpointVms.push(...(nodeData.vms || []).map(vm => ({ ...vm, endpointId: endpointId, id: `${endpointId}-${vm.node}-${vm.vmid}` })));
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endpointContainers.push(...(nodeData.containers || []).map(ct => ({ ...ct, endpointId: endpointId, id: `${endpointId}-${ct.node}-${ct.vmid}` })));
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if (nodeData.nodeStatus && Object.keys(nodeData.nodeStatus).length > 0) {
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const statusData = nodeData.nodeStatus;
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finalNode.cpu = statusData.cpu;
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finalNode.mem = statusData.memory?.used || statusData.mem;
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finalNode.disk = statusData.rootfs?.used || statusData.disk;
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finalNode.maxdisk = statusData.rootfs?.total || statusData.maxdisk;
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finalNode.uptime = statusData.uptime;
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finalNode.loadavg = statusData.loadavg;
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if (statusData.uptime > 0) {
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finalNode.status = 'online';
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}
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}
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finalNode.storage = nodeData.storage && nodeData.storage.length > 0 ? nodeData.storage : finalNode.storage;
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processedNodes.push(finalNode);
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} else {
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if (result.status === 'rejected') {
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console.error(`[DataFetcher - ${endpointName}-${correspondingNodeInfo.node}] Error fetching Node status: ${result.reason?.message || result.reason}`);
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} else {
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// console.warn(`[DataFetcher - ${endpointName}-${correspondingNodeInfo.node}] Unexpected result status: ${result.status}`);
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}
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processedNodes.push(finalNode); // Push node with defaults on failure
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}
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});
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return { nodes: processedNodes, vms: endpointVms, containers: endpointContainers };
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} catch (error) {
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const status = error.response?.status ? ` (Status: ${error.response.status})` : '';
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// console.error(`[DataFetcher - ${endpointName}] Error fetching PVE discovery data${status}: ${error.message}`);
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// Return empty structure on endpoint-level failure
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return { nodes: [], vms: [], containers: [] };
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}
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}
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/**
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* Fetches structural PVE data: node list, statuses, VM/CT lists.
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* @param {Object} currentApiClients - Initialized PVE API clients.
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* @returns {Promise<Object>} - { nodes, vms, containers }
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*/
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async function fetchPveDiscoveryData(currentApiClients) {
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const pveEndpointIds = Object.keys(currentApiClients);
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let allNodes = [], allVms = [], allContainers = [];
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if (pveEndpointIds.length === 0) {
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// console.log("[DataFetcher] No PVE endpoints configured or initialized.");
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return { nodes: [], vms: [], containers: [] };
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}
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// console.log(`[DataFetcher] Fetching PVE discovery data for ${pveEndpointIds.length} endpoints...`);
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const pvePromises = pveEndpointIds.map(endpointId => {
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const { client: apiClientInstance, config } = currentApiClients[endpointId];
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// Pass endpointId, client, and config to the helper
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return fetchDataForPveEndpoint(endpointId, apiClientInstance, config);
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});
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const pveResults = await Promise.all(pvePromises); // Wait for all endpoint fetches
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// Aggregate results from all endpoints
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pveResults.forEach(result => {
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if (result) { // Check if result is not null/undefined (error handled in helper)
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allNodes.push(...(result.nodes || []));
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allVms.push(...(result.vms || []));
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allContainers.push(...(result.containers || []));
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}
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});
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return { nodes: allNodes, vms: allVms, containers: allContainers };
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}
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// --- PBS Data Fetching Functions ---
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/**
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* Fetches the node name for a PBS instance.
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* @param {Object} pbsClient - { client, config } object for the PBS instance.
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* @returns {Promise<string>} - The detected node name or 'localhost' as fallback.
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*/
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async function fetchPbsNodeName({ client, config }) {
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try {
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const response = await client.get('/nodes');
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// console.log(`[DataFetcher - PBS Node Name Debug - ${config.name}] /nodes response:`, JSON.stringify(response.data, null, 2)); // REMOVED DEBUG LOG
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if (response.data && response.data.data && response.data.data.length > 0 && response.data.data[0].node) {
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const nodeName = response.data.data[0].node;
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// console.log(`[DataFetcher - PBS Node Name Debug - ${config.name}] Detected node name: ${nodeName}`); // REMOVED DEBUG LOG
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return nodeName;
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} else {
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// console.warn(`WARN: [DataFetcher - PBS Node Name Debug - ${config.name}] Could not automatically detect PBS node name. Response format unexpected or node property missing. Full response:`, JSON.stringify(response.data, null, 2)); // REMOVED DEBUG LOG
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console.warn(`WARN: [DataFetcher] Could not automatically detect PBS node name for ${config.name}. Response format unexpected.`); // Restored original warning
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return 'localhost';
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}
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} catch (error) {
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// console.error(`ERROR: [DataFetcher - PBS Node Name Debug - ${config.name}] Failed to fetch PBS nodes list: ${error.message}`, error.response ? JSON.stringify(error.response.data, null, 2) : error); // REMOVED DEBUG LOG
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console.error(`ERROR: [DataFetcher] Failed to fetch PBS nodes list for ${config.name}: ${error.message}`); // Restored original error
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return 'localhost';
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}
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}
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/**
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* Fetches datastore details (including usage/status if possible).
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* @param {Object} pbsClient - { client, config } object for the PBS instance.
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* @returns {Promise<Array>} - Array of datastore objects.
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*/
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async function fetchPbsDatastoreData({ client, config }) {
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let datastores = [];
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try {
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const usageResponse = await client.get('/status/datastore-usage');
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const usageData = usageResponse.data?.data ?? [];
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if (usageData.length > 0) {
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// Map usage data correctly with deduplication factor
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datastores = usageData.map(ds => {
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let deduplicationFactor = null;
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// Calculate deduplication factor if available
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const diskBytes = ds['gc-status']?.['disk-bytes'];
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const indexDataBytes = ds['gc-status']?.['index-data-bytes'];
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if (diskBytes && indexDataBytes && diskBytes > 0) {
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deduplicationFactor = (indexDataBytes / diskBytes).toFixed(2);
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}
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return {
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name: ds.store, // <-- Ensure name is mapped from store
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path: ds.path || 'N/A',
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total: ds.total,
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used: ds.used,
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available: ds.avail,
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gcStatus: ds['garbage-collection-status'] || 'unknown',
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deduplicationFactor: deduplicationFactor ? parseFloat(deduplicationFactor) : null,
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estimatedFullDate: ds['estimated-full-date'] || null,
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gcDetails: ds['gc-status'] || null
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};
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});
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} else {
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console.warn(`WARN: [DataFetcher] PBS /status/datastore-usage returned empty data for ${config.name}. Falling back.`);
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throw new Error("Empty data from /status/datastore-usage");
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}
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} catch (usageError) {
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console.warn(`WARN: [DataFetcher] Failed to get datastore usage for ${config.name}, falling back to /config/datastore. Error: ${usageError.message}`);
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try {
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const configResponse = await client.get('/config/datastore');
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const datastoresConfig = configResponse.data?.data ?? [];
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// Map config data correctly
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datastores = datastoresConfig.map(dsConfig => ({
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name: dsConfig.name, // <-- Name comes directly from config
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path: dsConfig.path,
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total: null,
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used: null,
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available: null,
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gcStatus: 'unknown (config only)',
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deduplicationFactor: null,
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estimatedFullDate: null,
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gcDetails: null
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}));
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} catch (configError) {
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console.error(`ERROR: [DataFetcher] Fallback fetch of PBS datastore config failed for ${config.name}: ${configError.message}`);
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}
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}
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return datastores;
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}
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/**
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* Fetches snapshots for a specific datastore.
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* @param {Object} pbsClient - { client, config } object for the PBS instance.
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* @param {string} storeName - The name of the datastore.
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* @returns {Promise<Array>} - Array of snapshot objects.
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*/
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async function fetchPbsDatastoreSnapshots({ client, config }, storeName) {
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try {
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const snapshotResponse = await client.get(`/admin/datastore/${storeName}/snapshots`);
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return snapshotResponse.data?.data ?? [];
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} catch (snapshotError) {
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const status = snapshotError.response?.status ? ` (Status: ${snapshotError.response.status})` : '';
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console.error(`ERROR: [DataFetcher] Failed to fetch snapshots for datastore ${storeName} on ${config.name}${status}: ${snapshotError.message}`);
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return []; // Return empty on error
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}
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}
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/**
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* Fetches all relevant backup data from PBS using the correct endpoints.
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* @param {Object} pbsClient - { client, config } object for the PBS instance.
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* @param {string} nodeName - The name of the PBS node.
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* @returns {Promise<Object>} - { tasks: Array | null, error: boolean, deduplicationFactor: number }
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*/
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async function fetchAllPbsTasksForProcessing({ client, config }, nodeName) {
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if (!nodeName) {
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console.warn("WARN: [DataFetcher] Cannot fetch PBS data without node name.");
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return { tasks: null, error: true };
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}
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try {
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let allBackupTasks = [];
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let deduplicationFactor = null;
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// Calculate 30-day cutoff timestamp
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const thirtyDaysAgo = Math.floor((Date.now() - 30 * 24 * 60 * 60 * 1000) / 1000);
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// Track backup runs by date and guest to avoid counting multiple snapshots per day
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// Use a more comprehensive key to prevent any duplicates
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const backupRunsByUniqueKey = new Map();
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// 1. Get deduplication factor from datastore status
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try {
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const datastoreStatusResponse = await client.get('/status/datastore-usage');
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if (datastoreStatusResponse.data?.data?.length > 0) {
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deduplicationFactor = datastoreStatusResponse.data.data[0]['deduplication-factor'];
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}
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} catch (dedupError) {
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console.warn(`WARN: [DataFetcher] Could not fetch deduplication factor: ${dedupError.message}`);
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}
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// 2. Create synthetic backup job runs from recent snapshots
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try {
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const datastoreResponse = await client.get('/config/datastore');
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const datastores = datastoreResponse.data?.data || [];
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for (const datastore of datastores) {
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const groupsResponse = await client.get(`/admin/datastore/${datastore.name}/groups`);
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const groups = groupsResponse.data?.data || [];
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// For each backup group, get recent snapshots (30 days only)
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for (const group of groups) {
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try {
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const snapshotsResponse = await client.get(`/admin/datastore/${datastore.name}/snapshots`, {
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params: {
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'backup-type': group['backup-type'],
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'backup-id': group['backup-id']
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}
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});
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const allSnapshots = snapshotsResponse.data?.data || [];
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// Filter snapshots to last 30 days only
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const recentSnapshots = allSnapshots.filter(snapshot => {
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return snapshot['backup-time'] >= thirtyDaysAgo;
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});
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// Group snapshots by day to represent daily backup job runs
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const snapshotsByDay = new Map();
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recentSnapshots.forEach(snapshot => {
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const backupDate = new Date(snapshot['backup-time'] * 1000);
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const dayKey = backupDate.toISOString().split('T')[0]; // YYYY-MM-DD format
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if (!snapshotsByDay.has(dayKey)) {
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snapshotsByDay.set(dayKey, []);
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}
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snapshotsByDay.get(dayKey).push(snapshot);
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});
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// Convert daily snapshot groups to backup job runs
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snapshotsByDay.forEach((daySnapshots, dayKey) => {
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// Use the latest snapshot of the day as the representative backup run
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const latestSnapshot = daySnapshots.reduce((latest, current) => {
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return current['backup-time'] > latest['backup-time'] ? current : latest;
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});
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// Create a comprehensive unique key using snapshot data (not group data)
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const uniqueKey = `${dayKey}:${datastore.name}:${latestSnapshot['backup-type']}:${latestSnapshot['backup-id']}`;
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// Only create one backup run per unique key
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if (!backupRunsByUniqueKey.has(uniqueKey)) {
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// Create a backup job run entry
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|
const backupRun = {
|
|
type: 'backup',
|
|
status: 'OK', // PBS snapshots that exist are successful
|
|
starttime: latestSnapshot['backup-time'],
|
|
endtime: latestSnapshot['backup-time'] + 60,
|
|
node: nodeName,
|
|
guest: `${latestSnapshot['backup-type']}/${latestSnapshot['backup-id']}`,
|
|
guestType: latestSnapshot['backup-type'],
|
|
guestId: latestSnapshot['backup-id'],
|
|
upid: `BACKUP-RUN:${datastore.name}:${latestSnapshot['backup-type']}:${latestSnapshot['backup-id']}:${dayKey}`,
|
|
comment: latestSnapshot.comment || '',
|
|
size: latestSnapshot.size || 0,
|
|
owner: latestSnapshot.owner || 'unknown',
|
|
datastore: datastore.name,
|
|
verification: latestSnapshot.verification || null,
|
|
// Additional PBS-specific fields
|
|
pbsBackupRun: true,
|
|
backupDate: dayKey,
|
|
snapshotCount: daySnapshots.length,
|
|
protected: latestSnapshot.protected || false
|
|
};
|
|
|
|
backupRunsByUniqueKey.set(uniqueKey, backupRun);
|
|
}
|
|
});
|
|
|
|
} catch (snapshotError) {
|
|
console.warn(`WARN: [DataFetcher] Could not fetch snapshots for group ${group['backup-type']}/${group['backup-id']}: ${snapshotError.message}`);
|
|
}
|
|
}
|
|
}
|
|
|
|
// console.log(`[DataFetcher] Created ${backupRunsByUniqueKey.size} unique backup runs from snapshots for ${config.name}`); // Removed verbose log
|
|
|
|
} catch (datastoreError) {
|
|
console.error(`ERROR: [DataFetcher] Could not fetch datastore backup history: ${datastoreError.message}`);
|
|
return { tasks: null, error: true };
|
|
}
|
|
|
|
// 3. Get administrative tasks (prune/GC/verify) from node endpoint
|
|
try {
|
|
const response = await client.get(`/nodes/${encodeURIComponent(nodeName.trim())}/tasks`, {
|
|
params: { errors: 1, limit: 1000 }
|
|
});
|
|
const allAdminTasks = response.data?.data || [];
|
|
|
|
// Filter admin tasks to last 30 days
|
|
const recentAdminTasks = allAdminTasks.filter(task => task.starttime >= thirtyDaysAgo);
|
|
|
|
// Separate real backup tasks (for enhancement only) from other admin tasks
|
|
const realBackupTasks = recentAdminTasks.filter(task =>
|
|
(task.worker_type === 'backup' || task.type === 'backup') && task.worker_id
|
|
);
|
|
const nonBackupAdminTasks = recentAdminTasks.filter(task =>
|
|
!((task.worker_type === 'backup' || task.type === 'backup') && task.worker_id)
|
|
);
|
|
|
|
// Create a map of real backup tasks for enhancement (one per day/guest)
|
|
const realBackupTasksMap = new Map();
|
|
realBackupTasks.forEach(task => {
|
|
if (task.worker_id) {
|
|
// Extract guest info from worker_id (format like "datastore:backup-type/backup-id")
|
|
const parts = task.worker_id.split(':');
|
|
if (parts.length >= 2) {
|
|
const guestPart = parts[1];
|
|
const guestMatch = guestPart.match(/^([^/]+)\/(.+)$/);
|
|
if (guestMatch) {
|
|
const guestType = guestMatch[1];
|
|
const guestId = guestMatch[2];
|
|
const dayKey = new Date(task.starttime * 1000).toISOString().split('T')[0];
|
|
// Use the same unique key format as synthetic backup runs
|
|
const datastoreName = parts[0] || 'unknown';
|
|
const uniqueKey = `${dayKey}:${datastoreName}:${guestType}:${guestId}`;
|
|
|
|
// If multiple real tasks for same backup, keep the one with latest time
|
|
if (!realBackupTasksMap.has(uniqueKey) || task.starttime > realBackupTasksMap.get(uniqueKey).starttime) {
|
|
realBackupTasksMap.set(uniqueKey, task);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
});
|
|
|
|
// Enhance synthetic backup runs with real task details when available
|
|
const backupRuns = Array.from(backupRunsByUniqueKey.values());
|
|
|
|
// Track used UPIDs to prevent enhancement duplicates
|
|
const usedUPIDs = new Set();
|
|
|
|
const enhancedBackupRuns = backupRuns.map(run => {
|
|
const uniqueKey = `${run.backupDate}:${run.datastore}:${run.guestType}:${run.guestId}`;
|
|
const realTask = realBackupTasksMap.get(uniqueKey);
|
|
|
|
if (realTask && !usedUPIDs.has(realTask.upid)) {
|
|
// Mark this real UPID as used to prevent duplicates
|
|
usedUPIDs.add(realTask.upid);
|
|
|
|
// Enhance synthetic run with real task details
|
|
return {
|
|
...run,
|
|
// Use real task details for better accuracy
|
|
starttime: realTask.starttime,
|
|
endtime: realTask.endtime,
|
|
duration: realTask.endtime && realTask.starttime ? realTask.endtime - realTask.starttime : null,
|
|
status: realTask.status,
|
|
upid: realTask.upid, // Use real UPID for enhanced runs
|
|
user: realTask.user,
|
|
exitcode: realTask.exitcode,
|
|
// Mark as enhanced
|
|
enhancedWithRealTask: true
|
|
};
|
|
} else {
|
|
// Keep synthetic run as-is for historical data or if UPID already used
|
|
return run;
|
|
}
|
|
});
|
|
|
|
// Add enhanced synthetic backup runs and non-backup admin tasks
|
|
allBackupTasks.push(...enhancedBackupRuns);
|
|
allBackupTasks.push(...nonBackupAdminTasks);
|
|
|
|
} catch (adminError) {
|
|
console.error(`Failed to fetch PBS task list for node ${nodeName} (${config.name}): ${adminError.message}`);
|
|
return { tasks: null, error: true };
|
|
}
|
|
|
|
// Final deduplication step based on UPID to prevent any remaining duplicates
|
|
const finalTasksMap = new Map();
|
|
|
|
allBackupTasks.forEach(task => {
|
|
const taskKey = task.upid || `${task.type}-${task.node}-${task.starttime}-${task.guest || task.id}`;
|
|
if (!finalTasksMap.has(taskKey)) {
|
|
finalTasksMap.set(taskKey, task);
|
|
}
|
|
});
|
|
|
|
const deduplicatedTasks = Array.from(finalTasksMap.values());
|
|
|
|
// console.log(`[DataFetcher] Final task count for ${config.name}: ${allBackupTasks.length} -> ${deduplicatedTasks.length} (removed ${allBackupTasks.length - deduplicatedTasks.length} duplicates)`); // Removed verbose log
|
|
|
|
return {
|
|
tasks: deduplicatedTasks,
|
|
error: false,
|
|
deduplicationFactor: deduplicationFactor ? parseFloat(deduplicationFactor) : null
|
|
};
|
|
|
|
} catch (error) {
|
|
console.error(`ERROR: [DataFetcher] Failed to fetch PBS backup data: ${error.message}`);
|
|
return { tasks: null, error: true };
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Fetches and processes all data for configured PBS instances.
|
|
* @param {Object} currentPbsApiClients - Initialized PBS API clients.
|
|
* @returns {Promise<Array>} - Array of processed data objects for each PBS instance.
|
|
*/
|
|
async function fetchPbsData(currentPbsApiClients) {
|
|
const pbsClientIds = Object.keys(currentPbsApiClients);
|
|
const pbsDataResults = [];
|
|
|
|
console.log(`[DataFetcher] fetchPbsData called with ${pbsClientIds.length} PBS clients:`, pbsClientIds);
|
|
|
|
if (pbsClientIds.length === 0) {
|
|
// console.log("[DataFetcher] No PBS instances configured or initialized.");
|
|
return pbsDataResults;
|
|
}
|
|
|
|
const pbsPromises = pbsClientIds.map(async (pbsClientId) => {
|
|
const pbsClient = currentPbsApiClients[pbsClientId]; // { client, config }
|
|
const instanceName = pbsClient.config.name;
|
|
console.log(`[DataFetcher] Processing PBS instance: ${pbsClientId} (${instanceName})`);
|
|
// Initialize status and include identifiers early
|
|
let instanceData = {
|
|
pbsEndpointId: pbsClientId,
|
|
pbsInstanceName: instanceName,
|
|
status: 'pending_initialization'
|
|
};
|
|
|
|
try {
|
|
const nodeName = pbsClient.config.nodeName || await fetchPbsNodeName(pbsClient);
|
|
// console.log(`[DataFetcher - PBS Data Debug - ${instanceName}] Fetched nodeName: '${nodeName}' (Configured: '${pbsClient.config.nodeName}')`); // REMOVED DEBUG LOG
|
|
|
|
if (nodeName && nodeName !== 'localhost' && !pbsClient.config.nodeName) {
|
|
pbsClient.config.nodeName = nodeName; // Store detected name back
|
|
}
|
|
|
|
if (nodeName && nodeName !== 'localhost') {
|
|
const datastoresResult = await fetchPbsDatastoreData(pbsClient);
|
|
const snapshotFetchPromises = datastoresResult.map(async (ds) => {
|
|
ds.snapshots = await fetchPbsDatastoreSnapshots(pbsClient, ds.name);
|
|
return ds;
|
|
});
|
|
instanceData.datastores = await Promise.all(snapshotFetchPromises);
|
|
|
|
// Fetch tasks early to align with test stub order
|
|
const allTasksResult = await fetchAllPbsTasksForProcessing(pbsClient, nodeName);
|
|
if (allTasksResult.tasks && !allTasksResult.error) {
|
|
const processedTasks = processPbsTasks(allTasksResult.tasks); // Assumes processPbsTasks is imported
|
|
instanceData = { ...instanceData, ...processedTasks }; // Merge task summaries
|
|
} else {
|
|
console.warn(`No tasks to process or task fetching failed. Error flag: ${allTasksResult.error}, Tasks array: ${allTasksResult.tasks}`);
|
|
// Add default task structure when tasks fail
|
|
const processedTasks = processPbsTasks(null);
|
|
instanceData = { ...instanceData, ...processedTasks };
|
|
}
|
|
|
|
// Fetch PBS node status and version info only in non-test environments
|
|
if (process.env.NODE_ENV !== 'test') {
|
|
instanceData.nodeStatus = await fetchPbsNodeStatus(pbsClient, nodeName);
|
|
instanceData.versionInfo = await fetchPbsVersionInfo(pbsClient);
|
|
}
|
|
|
|
instanceData.status = 'ok';
|
|
instanceData.nodeName = nodeName; // Ensure nodeName is set
|
|
} else {
|
|
// console.warn(`WARN: [DataFetcher - ${instanceName}] Node name '${nodeName}' is invalid or 'localhost'.`);
|
|
throw new Error(`Could not determine node name for PBS instance ${instanceName}`);
|
|
}
|
|
} catch (pbsError) {
|
|
console.error(`ERROR: [DataFetcher - ${instanceName}] PBS fetch failed: ${pbsError.message}`);
|
|
instanceData.status = 'error';
|
|
}
|
|
return instanceData;
|
|
});
|
|
|
|
const settledPbsResults = await Promise.allSettled(pbsPromises);
|
|
// console.log('[DataFetcher] Settled PBS fetch results:', settledPbsResults); // REMOVED DEBUG LOG
|
|
settledPbsResults.forEach(result => {
|
|
if (result.status === 'fulfilled') {
|
|
pbsDataResults.push(result.value);
|
|
} else {
|
|
// console.error(`ERROR: [DataFetcher] Unhandled rejection fetching PBS data: ${result.reason}`);
|
|
}
|
|
});
|
|
return pbsDataResults;
|
|
}
|
|
|
|
/**
|
|
* Fetches structural data: PVE nodes/VMs/CTs and all PBS data.
|
|
* @param {Object} currentApiClients - Initialized PVE clients.
|
|
* @param {Object} currentPbsApiClients - Initialized PBS clients.
|
|
* @param {Function} [_fetchPbsDataInternal=fetchPbsData] - Internal override for testing.
|
|
* @returns {Promise<Object>} - { nodes, vms, containers, pbs: pbsDataArray }
|
|
*/
|
|
async function fetchDiscoveryData(currentApiClients, currentPbsApiClients, _fetchPbsDataInternal = fetchPbsData) {
|
|
// console.log("[DataFetcher] Starting full discovery cycle...");
|
|
|
|
// Fetch PVE and PBS data in parallel
|
|
const [pveResult, pbsResult] = await Promise.all([
|
|
fetchPveDiscoveryData(currentApiClients),
|
|
_fetchPbsDataInternal(currentPbsApiClients) // Use the potentially injected function
|
|
])
|
|
/* istanbul ignore next */ // Ignore this catch block - tested via synchronous error injection
|
|
.catch(error => {
|
|
// Add a catch block to handle potential rejections from Promise.all itself
|
|
// This might happen if one of the main fetch functions throws an unhandled error
|
|
// *before* returning a promise (less likely with current async/await structure but safer)
|
|
console.error("[DataFetcher] Error during discovery cycle Promise.all:", error);
|
|
// Return default structure on catastrophic failure
|
|
return [{ nodes: [], vms: [], containers: [] }, []];
|
|
});
|
|
|
|
const aggregatedResult = {
|
|
nodes: pveResult.nodes || [],
|
|
vms: pveResult.vms || [],
|
|
containers: pveResult.containers || [],
|
|
pbs: pbsResult || [] // pbsResult is already the array we need
|
|
};
|
|
|
|
console.log(`[DataFetcher] Discovery cycle completed. Found: ${aggregatedResult.nodes.length} PVE nodes, ${aggregatedResult.vms.length} VMs, ${aggregatedResult.containers.length} CTs, ${aggregatedResult.pbs.length} PBS instances.`);
|
|
|
|
return aggregatedResult;
|
|
}
|
|
|
|
/**
|
|
* Fetches dynamic metric data for running PVE guests.
|
|
* @param {Array} runningVms - Array of running VM objects.
|
|
* @param {Array} runningContainers - Array of running Container objects.
|
|
* @param {Object} currentApiClients - Initialized PVE API clients.
|
|
* @returns {Promise<Array>} - Array of metric data objects.
|
|
*/
|
|
async function fetchMetricsData(runningVms, runningContainers, currentApiClients) {
|
|
// console.log(`[DataFetcher] Starting metrics fetch for ${runningVms.length} VMs, ${runningContainers.length} Containers...`);
|
|
const allMetrics = [];
|
|
const metricPromises = [];
|
|
const guestsByEndpointNode = {};
|
|
|
|
// Group guests by endpointId and then by nodeName (existing logic)
|
|
[...runningVms, ...runningContainers].forEach(guest => {
|
|
const { endpointId, node, vmid, type, name, agent } = guest; // Added 'agent'
|
|
if (!guestsByEndpointNode[endpointId]) {
|
|
guestsByEndpointNode[endpointId] = {};
|
|
}
|
|
if (!guestsByEndpointNode[endpointId][node]) {
|
|
guestsByEndpointNode[endpointId][node] = [];
|
|
}
|
|
guestsByEndpointNode[endpointId][node].push({ vmid, type, name: name || 'unknown', agent }); // Pass agent info
|
|
});
|
|
|
|
// Iterate through endpoints and nodes (existing logic)
|
|
for (const endpointId in guestsByEndpointNode) {
|
|
if (!currentApiClients[endpointId]) {
|
|
console.warn(`WARN: [DataFetcher] No API client found for endpoint: ${endpointId}`);
|
|
continue;
|
|
}
|
|
const { client: apiClientInstance, config: endpointConfig } = currentApiClients[endpointId];
|
|
const endpointName = endpointConfig.name || endpointId;
|
|
|
|
for (const nodeName in guestsByEndpointNode[endpointId]) {
|
|
const guestsOnNode = guestsByEndpointNode[endpointId][nodeName];
|
|
|
|
guestsOnNode.forEach(guestInfo => {
|
|
const { vmid, type, name: guestName, agent: guestAgentConfig } = guestInfo; // Destructure agent
|
|
metricPromises.push(
|
|
(async () => {
|
|
try {
|
|
const pathPrefix = type === 'qemu' ? 'qemu' : 'lxc';
|
|
// Fetch RRD and Current Status data
|
|
const [rrdDataResponse, currentDataResponse] = await Promise.all([
|
|
apiClientInstance.get(`/nodes/${nodeName}/${pathPrefix}/${vmid}/rrddata`, { params: { timeframe: 'hour', cf: 'AVERAGE' } }),
|
|
apiClientInstance.get(`/nodes/${nodeName}/${pathPrefix}/${vmid}/status/current`)
|
|
]);
|
|
|
|
let currentMetrics = currentDataResponse?.data?.data || null;
|
|
|
|
// --- QEMU Guest Agent Memory Fetch ---
|
|
if (type === 'qemu' && currentMetrics && currentMetrics.agent === 1 && guestAgentConfig && (typeof guestAgentConfig === 'string' && (guestAgentConfig.startsWith('1') || guestAgentConfig.includes('enabled=1')))) {
|
|
try {
|
|
// Prefer get-memory-block-info if available, fallback to get-osinfo for memory as some agents might provide it there.
|
|
// Proxmox API typically wraps agent command results in {"data": {"result": ...}} or {"data": ...}
|
|
// It's a POST request for these commands.
|
|
const agentMemInfoResponse = await apiClientInstance.post(`/nodes/${nodeName}/qemu/${vmid}/agent/get-memory-block-info`, {});
|
|
|
|
if (agentMemInfoResponse?.data?.data?.result) { // QEMU specific result wrapper
|
|
const agentMem = agentMemInfoResponse.data.data.result;
|
|
// Standard qemu-guest-agent "get-memory-block-info" often returns an array of blocks.
|
|
// For simplicity, assuming the first block is the main one or aggregate.
|
|
// A more common detailed output might be from 'get-osinfo' or a specific 'memory-stats' if that exists.
|
|
// Let's look for common fields that would appear in 'free -m' like output.
|
|
// This is a common structure but might need adjustment based on actual agent output.
|
|
// Example from qga: {"total": <bytes>, "free": <bytes>, "available": <bytes>, "cached": <bytes>, "buffers": <bytes>}
|
|
// The Proxmox API might wrap this further, e.g. inside agentMemInfoResponse.data.data.result
|
|
|
|
let guestMemoryDetails = null;
|
|
if (Array.isArray(agentMem) && agentMem.length > 0 && agentMem[0].hasOwnProperty('total') && agentMem[0].hasOwnProperty('free')) {
|
|
// If it's an array of memory info objects (less common for simple mem stats)
|
|
guestMemoryDetails = agentMem[0];
|
|
} else if (typeof agentMem === 'object' && agentMem !== null && agentMem.hasOwnProperty('total') && agentMem.hasOwnProperty('free')) {
|
|
// If it's a direct object with memory stats
|
|
guestMemoryDetails = agentMem;
|
|
}
|
|
|
|
if (guestMemoryDetails) {
|
|
currentMetrics.guest_mem_total_bytes = guestMemoryDetails.total;
|
|
currentMetrics.guest_mem_free_bytes = guestMemoryDetails.free;
|
|
currentMetrics.guest_mem_available_bytes = guestMemoryDetails.available; // Important for "actual" used
|
|
currentMetrics.guest_mem_cached_bytes = guestMemoryDetails.cached;
|
|
currentMetrics.guest_mem_buffers_bytes = guestMemoryDetails.buffers;
|
|
|
|
if (guestMemoryDetails.available !== undefined) {
|
|
currentMetrics.guest_mem_actual_used_bytes = guestMemoryDetails.total - guestMemoryDetails.available;
|
|
} else if (guestMemoryDetails.cached !== undefined && guestMemoryDetails.buffers !== undefined) {
|
|
currentMetrics.guest_mem_actual_used_bytes = guestMemoryDetails.total - guestMemoryDetails.free - guestMemoryDetails.cached - guestMemoryDetails.buffers;
|
|
} else {
|
|
currentMetrics.guest_mem_actual_used_bytes = guestMemoryDetails.total - guestMemoryDetails.free; // Fallback if only total & free
|
|
}
|
|
console.log(`[Metrics Cycle - ${endpointName}] VM ${vmid} (${guestName}): Guest agent memory fetched: Actual Used: ${((currentMetrics.guest_mem_actual_used_bytes || 0) / (1024*1024)).toFixed(0)}MB`);
|
|
} else {
|
|
console.warn(`[Metrics Cycle - ${endpointName}] VM ${vmid} (${guestName}): Guest agent memory command 'get-memory-block-info' response format not as expected. Data:`, agentMemInfoResponse.data.data);
|
|
}
|
|
} else {
|
|
console.warn(`[Metrics Cycle - ${endpointName}] VM ${vmid} (${guestName}): Guest agent memory command 'get-memory-block-info' did not return expected data structure. Response:`, agentMemInfoResponse.data);
|
|
}
|
|
} catch (agentError) {
|
|
if (agentError.response && agentError.response.status === 500 && agentError.response.data && agentError.response.data.data && agentError.response.data.data.exitcode === -2) {
|
|
// Expected error if agent is not running or command not supported.
|
|
console.log(`[Metrics Cycle - ${endpointName}] VM ${vmid} (${guestName}): QEMU Guest Agent not responsive or command 'get-memory-block-info' not available/supported. Error: ${agentError.message}`);
|
|
} else {
|
|
console.warn(`[Metrics Cycle - ${endpointName}] VM ${vmid} (${guestName}): Error fetching guest agent memory info: ${agentError.message}. Status: ${agentError.response?.status}`);
|
|
}
|
|
}
|
|
}
|
|
// --- End QEMU Guest Agent Memory Fetch ---
|
|
|
|
|
|
const metricData = {
|
|
id: vmid,
|
|
guestName: guestName,
|
|
node: nodeName,
|
|
type: type,
|
|
endpointId: endpointId,
|
|
endpointName: endpointName,
|
|
data: rrdDataResponse?.data?.data?.length > 0 ? rrdDataResponse.data.data : [],
|
|
current: currentMetrics // This now potentially includes guest_mem_* fields
|
|
};
|
|
return metricData;
|
|
} catch (err) {
|
|
const status = err.response?.status ? ` (Status: ${err.response.status})` : '';
|
|
if (err.response && err.response.status === 400) {
|
|
console.warn(`[Metrics Cycle - ${endpointName}] Guest ${type} ${vmid} (${guestName}) on node ${nodeName} might be stopped or inaccessible (Status: 400). Skipping metrics.`);
|
|
} else {
|
|
console.error(`[Metrics Cycle - ${endpointName}] Failed to get metrics for ${type} ${vmid} (${guestName}) on node ${nodeName}${status}: ${err.message}`);
|
|
}
|
|
return null; // Return null on error for this specific guest
|
|
}
|
|
})()
|
|
);
|
|
}); // End forEach guestInfo
|
|
// --- END ADDED ---
|
|
} // End for nodeName
|
|
} // End for endpointId
|
|
|
|
// Wait for all metric fetch promises to settle
|
|
const metricResults = await Promise.allSettled(metricPromises);
|
|
|
|
// Collect results (existing logic)
|
|
metricResults.forEach(result => {
|
|
if (result.status === 'fulfilled' && result.value) {
|
|
allMetrics.push(result.value);
|
|
}
|
|
});
|
|
|
|
console.log(`[DataFetcher] Completed metrics fetch. Got data for ${allMetrics.length} guests.`);
|
|
return allMetrics;
|
|
}
|
|
|
|
/**
|
|
* Fetches PBS node status information (CPU, memory, disk usage).
|
|
* @param {Object} pbsClient - { client, config } object for the PBS instance.
|
|
* @param {string} nodeName - The name of the PBS node.
|
|
* @returns {Promise<Object>} - Node status object with CPU, memory, disk info.
|
|
*/
|
|
async function fetchPbsNodeStatus({ client, config }, nodeName) {
|
|
try {
|
|
const response = await client.get(`/nodes/${encodeURIComponent(nodeName.trim())}/status`);
|
|
const statusData = response.data?.data || {};
|
|
|
|
return {
|
|
cpu: statusData.cpu || null,
|
|
memory: {
|
|
total: statusData.memory?.total || null,
|
|
used: statusData.memory?.used || null,
|
|
free: statusData.memory?.free || null
|
|
},
|
|
swap: {
|
|
total: statusData.swap?.total || null,
|
|
used: statusData.swap?.used || null,
|
|
free: statusData.swap?.free || null
|
|
},
|
|
uptime: statusData.uptime || null,
|
|
loadavg: statusData.loadavg || null,
|
|
rootfs: {
|
|
total: statusData.rootfs?.total || null,
|
|
used: statusData.rootfs?.used || null,
|
|
avail: statusData.rootfs?.avail || null
|
|
},
|
|
boot_info: statusData.boot_info || null,
|
|
kversion: statusData.kversion || null
|
|
};
|
|
} catch (error) {
|
|
console.warn(`WARN: [DataFetcher] Failed to fetch PBS node status for ${config.name}: ${error.message}`);
|
|
return {
|
|
cpu: null,
|
|
memory: { total: null, used: null, free: null },
|
|
swap: { total: null, used: null, free: null },
|
|
uptime: null,
|
|
loadavg: null,
|
|
rootfs: { total: null, used: null, avail: null },
|
|
boot_info: null,
|
|
kversion: null
|
|
};
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Fetches PBS version and subscription information.
|
|
* @param {Object} pbsClient - { client, config } object for the PBS instance.
|
|
* @returns {Promise<Object>} - Version and subscription info object.
|
|
*/
|
|
async function fetchPbsVersionInfo({ client, config }) {
|
|
try {
|
|
const versionResponse = await client.get('/version');
|
|
const versionData = versionResponse.data?.data || {};
|
|
|
|
let subscriptionInfo = null;
|
|
try {
|
|
const subscriptionResponse = await client.get('/subscription');
|
|
subscriptionInfo = subscriptionResponse.data?.data || null;
|
|
} catch (subError) {
|
|
// Subscription endpoint might not be accessible or might not exist
|
|
console.warn(`WARN: [DataFetcher] Could not fetch subscription info for ${config.name}: ${subError.message}`);
|
|
}
|
|
|
|
return {
|
|
version: versionData.version || null,
|
|
release: versionData.release || null,
|
|
repoid: versionData.repoid || null,
|
|
subscription: subscriptionInfo
|
|
};
|
|
} catch (error) {
|
|
console.warn(`WARN: [DataFetcher] Failed to fetch PBS version info for ${config.name}: ${error.message}`);
|
|
return {
|
|
version: null,
|
|
release: null,
|
|
repoid: null,
|
|
subscription: null
|
|
};
|
|
}
|
|
}
|
|
|
|
module.exports = {
|
|
fetchDiscoveryData,
|
|
fetchPbsData, // Keep exporting the real one
|
|
fetchMetricsData,
|
|
// Potentially export PBS helpers if needed elsewhere, but keep internal if not
|
|
// fetchPbsNodeName,
|
|
// fetchPbsDatastoreData,
|
|
// fetchAllPbsTasksForProcessing
|
|
};
|