'use strict'; const common = require('../common'); const assert = require('assert'); const { performance } = require('perf_hooks'); assert(performance); assert(performance.nodeTiming); assert.strictEqual(typeof performance.timeOrigin, 'number'); // Use a fairly large epsilon value, since we can only guarantee that the node // process started up in 20 seconds. assert(Math.abs(performance.timeOrigin - Date.now()) < 20000); const inited = performance.now(); assert(inited < 20000); { // Should work without throwing any errors performance.mark('A'); performance.clearMarks('A'); performance.mark('B'); performance.clearMarks(); } { performance.mark('A'); [undefined, null, 'foo', 'initialize', 1].forEach((i) => { performance.measure('test', i, 'A'); // Should not throw. }); [undefined, null, 'foo', 1].forEach((i) => { common.expectsError( () => performance.measure('test', 'A', i), { code: 'ERR_INVALID_PERFORMANCE_MARK', type: Error, message: `The "${i}" performance mark has not been set` }); }); performance.clearMarks(); } { performance.mark('A'); setImmediate(() => { performance.mark('B'); performance.measure('foo', 'A', 'B'); }); } assert.strictEqual(performance.nodeTiming.name, 'node'); assert.strictEqual(performance.nodeTiming.entryType, 'node'); function checkNodeTiming(props) { for (const prop of Object.keys(props)) { if (props[prop].around !== undefined) { assert.strictEqual(typeof performance.nodeTiming[prop], 'number'); const delta = performance.nodeTiming[prop] - props[prop].around; assert(Math.abs(delta) < 1000); } else { assert.strictEqual(performance.nodeTiming[prop], props[prop]); } } } checkNodeTiming({ name: 'node', entryType: 'node', startTime: 0, duration: { around: performance.now() }, nodeStart: { around: 0 }, v8Start: { around: 0 }, bootstrapComplete: -1, environment: { around: 0 }, loopStart: -1, loopExit: -1, thirdPartyMainStart: -1, thirdPartyMainEnd: -1, clusterSetupStart: -1, clusterSetupEnd: -1, moduleLoadStart: { around: inited }, moduleLoadEnd: { around: inited }, preloadModuleLoadStart: { around: inited }, preloadModuleLoadEnd: { around: inited }, }); setTimeout(() => { checkNodeTiming({ name: 'node', entryType: 'node', startTime: 0, duration: { around: performance.now() }, nodeStart: { around: 0 }, v8Start: { around: 0 }, bootstrapComplete: { around: inited }, environment: { around: 0 }, loopStart: { around: inited }, loopExit: -1, thirdPartyMainStart: -1, thirdPartyMainEnd: -1, clusterSetupStart: -1, clusterSetupEnd: -1, moduleLoadStart: { around: inited }, moduleLoadEnd: { around: inited }, preloadModuleLoadStart: { around: inited }, preloadModuleLoadEnd: { around: inited }, }); }, 2000); process.on('exit', () => { checkNodeTiming({ name: 'node', entryType: 'node', startTime: 0, duration: { around: performance.now() }, nodeStart: { around: 0 }, v8Start: { around: 0 }, bootstrapComplete: { around: inited }, environment: { around: 0 }, loopStart: { around: inited }, loopExit: { around: performance.now() }, thirdPartyMainStart: -1, thirdPartyMainEnd: -1, clusterSetupStart: -1, clusterSetupEnd: -1, moduleLoadStart: { around: inited }, moduleLoadEnd: { around: inited }, preloadModuleLoadStart: { around: inited }, preloadModuleLoadEnd: { around: inited }, }); });