import { test, describe, before, after } from 'node:test'; import assert from 'node:assert/strict'; import { Arbiter } from '../../src/index.js'; import { BigGraphGenerator } from '../helpers/big-graph-generator.js'; describe.skip('Million Node Performance Benchmark', () => { let arbiter; let generator; let testArbiter; let graphData; let validPaths = []; let startTime; let endTime; before(() => { if (process.env.TEST_DEBUG === '1') console.log('🚀 Starting million-node benchmark setup...'); startTime = Date.now(); // Create arbiter with caching enabled for realistic performance arbiter = new Arbiter({ fastConstructionMode: false, disableCaching: false, // Keep caching enabled for realistic performance disableChainCaching: false, disableDirectCaching: false }); // Use million-node scale generator = new BigGraphGenerator({ scale: 'million', seed: 12345 }); if (process.env.TEST_DEBUG === '1') console.log('📊 Generating million-node graph...'); const graphStartTime = Date.now(); graphData = generator.generateGraph('enterprise'); const graphEndTime = Date.now(); if (process.env.TEST_DEBUG === '1') console.log(` Graph generation took: ${(graphEndTime - graphStartTime).toFixed(0)}ms`); if (process.env.TEST_DEBUG === '1') console.log('🔄 Loading graph into arbiter...'); const loadStartTime = Date.now(); testArbiter = generator.loadIntoArbiter(graphData); const loadEndTime = Date.now(); if (process.env.TEST_DEBUG === '1') console.log(` Graph loading took: ${(loadEndTime - loadStartTime).toFixed(0)}ms`); // Configure chain rules testArbiter.setRelationConfig('can_read_via_role', { type: 'chain', steps: [ { relation: 'member_of', direction: 'out' }, { relation: 'can_read', direction: 'out' } ] }); testArbiter.setRelationConfig('can_access_multi_hop', { type: 'chain', steps: [ { relation: 'member_of', direction: 'out' }, { relation: 'member_of', direction: 'out' }, { relation: 'member_of', direction: 'out' }, { relation: 'can_read', direction: 'out' } ] }); // Pre-find valid paths that actually exist in the graph if (process.env.TEST_DEBUG === '1') console.log('🔍 Finding valid chain paths in million-node graph...'); const pathStartTime = Date.now(); validPaths = findValidChainPaths(testArbiter, graphData); const pathEndTime = Date.now(); if (process.env.TEST_DEBUG === '1') console.log(` Found ${validPaths.length} valid paths in ${(pathEndTime - pathStartTime).toFixed(0)}ms`); endTime = Date.now(); if (process.env.TEST_DEBUG === '1') console.log(`✅ Setup completed in ${(endTime - startTime).toFixed(0)}ms`); }); after(() => { arbiter = null; generator = null; testArbiter = null; graphData = null; validPaths = null; }); /** * Find valid chain paths that actually exist in the graph */ function findValidChainPaths(arbiter, graphData) { const validPaths = []; // Get all users and documents const users = graphData.users.map(u => u.id); const docs = graphData.documents.map(d => d.id); // Sample a reasonable number of combinations to test (don't test all combinations!) const maxTests = Math.min(10000, users.length * docs.length); let tested = 0; if (process.env.TEST_DEBUG === '1') console.log(` Testing up to ${maxTests} user-document combinations...`); for (const user of users) { if (tested >= maxTests) break; for (const doc of docs) { if (tested >= maxTests) break; // Test if this path actually exists try { const result = arbiter.check(user, 'can_read_via_role', doc); if (result.possibility > 0) { validPaths.push({ user, doc, relation: 'can_read_via_role', result }); } } catch (error) { // Skip invalid paths } tested++; // Progress indicator for large graphs if (tested % 10000 === 0) { if (process.env.TEST_DEBUG === '1') console.log(` Tested ${tested}/${maxTests} combinations, found ${validPaths.length} valid paths`); } } } return validPaths; } /** * Measure QPS for a given operation with detailed analysis */ function measureQPSWithAnalysis(operation, duration = 5000, operationName = 'Operation') { const startTime = Date.now(); const endTime = startTime + duration; let operationCount = 0; const latencies = []; let successCount = 0; let failureCount = 0; while (Date.now() < endTime) { const opStart = process.hrtime.bigint(); try { const result = operation(); operationCount++; if (result && result.possibility > 0) { successCount++; } else { failureCount++; } const opEnd = process.hrtime.bigint(); const latency = Number(opEnd - opStart) / 1000000; // Convert to milliseconds latencies.push(latency); } catch (error) { operationCount++; failureCount++; const opEnd = process.hrtime.bigint(); const latency = Number(opEnd - opStart) / 1000000; latencies.push(latency); } } const actualDuration = Date.now() - startTime; const qps = (operationCount / actualDuration) * 1000; const avgLatency = latencies.reduce((a, b) => a + b, 0) / latencies.length; // Sort once and reuse const sortedLatencies = latencies.sort((a, b) => a - b); const p95Latency = sortedLatencies[Math.floor(latencies.length * 0.95)]; const p99Latency = sortedLatencies[Math.floor(latencies.length * 0.99)]; return { qps, operationCount, duration: actualDuration, avgLatency, p95Latency, p99Latency, maxLatency: sortedLatencies[sortedLatencies.length - 1], minLatency: sortedLatencies[0], successCount, failureCount, successRate: successCount / operationCount }; } test('Million Node Chain Query Performance', async () => { if (process.env.TEST_DEBUG === '1') console.log('📊 Testing Million Node Chain Query QPS...'); if (validPaths.length === 0) { if (process.env.TEST_DEBUG === '1') console.log(' ⚠️ No valid paths found - skipping test'); return; } let queryIndex = 0; const result = measureQPSWithAnalysis(() => { const path = validPaths[queryIndex % validPaths.length]; return testArbiter.check(path.user, path.relation, path.doc); }, 5000, 'Million Node Chain Query'); if (process.env.TEST_DEBUG === '1') console.log(` QPS: ${result.qps.toFixed(2)}`); if (process.env.TEST_DEBUG === '1') console.log(` Operations: ${result.operationCount}`); if (process.env.TEST_DEBUG === '1') console.log(` Duration: ${result.duration}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Avg Latency: ${result.avgLatency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` P95 Latency: ${result.p95Latency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` P99 Latency: ${result.p99Latency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Max Latency: ${result.maxLatency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Min Latency: ${result.minLatency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Success Rate: ${(result.successRate * 100).toFixed(1)}%`); if (process.env.TEST_DEBUG === '1') console.log(` Success Count: ${result.successCount}`); if (process.env.TEST_DEBUG === '1') console.log(` Failure Count: ${result.failureCount}`); // More lenient expectations for million-node graph assert.ok(result.qps > 1000, `Million node chain query QPS ${result.qps.toFixed(0)} below 1000 threshold`); assert.ok(result.avgLatency < 100, `Million node chain query latency ${result.avgLatency.toFixed(3)}ms too high`); assert.ok(result.successRate > 0.5, `Success rate ${(result.successRate * 100).toFixed(1)}% too low for valid paths`); }); test('Million Node Direct Query Performance', async () => { if (process.env.TEST_DEBUG === '1') console.log('📊 Testing Million Node Direct Query QPS...'); // Test direct queries (should be much faster) const directRelations = graphData.relations.filter(r => r.src.startsWith('user:') && r.dst.startsWith('doc:') && ['can_read', 'can_write', 'can_delete'].includes(r.relation) ).slice(0, 1000); // Use 1000 direct relations if (directRelations.length === 0) { if (process.env.TEST_DEBUG === '1') console.log(' ⚠️ No direct relations found - skipping test'); return; } let queryIndex = 0; const result = measureQPSWithAnalysis(() => { const relation = directRelations[queryIndex % directRelations.length]; return testArbiter.check(relation.src, relation.relation, relation.dst); }, 5000, 'Million Node Direct Query'); if (process.env.TEST_DEBUG === '1') console.log(` QPS: ${result.qps.toFixed(2)}`); if (process.env.TEST_DEBUG === '1') console.log(` Operations: ${result.operationCount}`); if (process.env.TEST_DEBUG === '1') console.log(` Duration: ${result.duration}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Avg Latency: ${result.avgLatency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` P95 Latency: ${result.p95Latency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` P99 Latency: ${result.p99Latency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Max Latency: ${result.maxLatency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Min Latency: ${result.minLatency.toFixed(3)}ms`); if (process.env.TEST_DEBUG === '1') console.log(` Success Rate: ${(result.successRate * 100).toFixed(1)}%`); // Direct queries should be much faster than chain queries assert.ok(result.qps > 10000, `Million node direct query QPS ${result.qps.toFixed(0)} below 10000 threshold`); assert.ok(result.avgLatency < 10, `Million node direct query latency ${result.avgLatency.toFixed(3)}ms too high`); }); test('Memory Usage Analysis', async () => { if (process.env.TEST_DEBUG === '1') console.log('📊 Memory Usage Analysis...'); const memUsage = process.memoryUsage(); const memUsageMB = { rss: (memUsage.rss / 1024 / 1024).toFixed(2), heapTotal: (memUsage.heapTotal / 1024 / 1024).toFixed(2), heapUsed: (memUsage.heapUsed / 1024 / 1024).toFixed(2), external: (memUsage.external / 1024 / 1024).toFixed(2) }; if (process.env.TEST_DEBUG === '1') console.log(` RSS Memory: ${memUsageMB.rss} MB`); if (process.env.TEST_DEBUG === '1') console.log(` Heap Total: ${memUsageMB.heapTotal} MB`); if (process.env.TEST_DEBUG === '1') console.log(` Heap Used: ${memUsageMB.heapUsed} MB`); if (process.env.TEST_DEBUG === '1') console.log(` External: ${memUsageMB.external} MB`); // Check if we're within reasonable memory limits const heapUsedMB = parseFloat(memUsageMB.heapUsed); assert.ok(heapUsedMB < 16384, `Heap usage ${heapUsedMB}MB too high for million-node graph`); }); test('Graph Statistics', async () => { if (process.env.TEST_DEBUG === '1') console.log('📊 Million Node Graph Statistics:'); if (process.env.TEST_DEBUG === '1') console.log(` Total Relations: ${graphData.relations.length.toLocaleString()}`); if (process.env.TEST_DEBUG === '1') console.log(` Total Users: ${graphData.users.length.toLocaleString()}`); if (process.env.TEST_DEBUG === '1') console.log(` Total Documents: ${graphData.documents.length.toLocaleString()}`); const userCount = graphData.users.length; const docCount = graphData.documents.length; const groupCount = graphData.enterprises ? graphData.enterprises.length : 0; if (process.env.TEST_DEBUG === '1') console.log(` Users: ${userCount.toLocaleString()}`); if (process.env.TEST_DEBUG === '1') console.log(` Documents: ${docCount.toLocaleString()}`); if (process.env.TEST_DEBUG === '1') console.log(` Groups: ${groupCount.toLocaleString()}`); const relationTypes = [...new Set(graphData.relations.map(r => r.relation))]; if (process.env.TEST_DEBUG === '1') console.log(` Relation Types: ${relationTypes.length} (${relationTypes.join(', ')})`); if (process.env.TEST_DEBUG === '1') console.log(` Valid Chain Paths Found: ${validPaths.length.toLocaleString()}`); // Verify we have a million-node graph const totalNodes = userCount + docCount + groupCount; if (process.env.TEST_DEBUG === '1') console.log(` Total Nodes: ${totalNodes.toLocaleString()}`); assert.ok(totalNodes >= 1000000, `Graph too small: ${totalNodes.toLocaleString()} nodes (expected 1M+)`); assert.ok(graphData.relations.length >= 1000000, `Graph too small: ${graphData.relations.length.toLocaleString()} relations (expected 1M+)`); }); });