mirror of
https://github.com/misskey-dev/misskey.git
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184 lines
6.6 KiB
TypeScript
184 lines
6.6 KiB
TypeScript
/*
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* SPDX-FileCopyrightText: syuilo and misskey-project
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* SPDX-License-Identifier: AGPL-3.0-only
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*/
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import { readFile, writeFile } from 'node:fs/promises';
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import * as util from './utility.mts';
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import * as heapSnapshotUtil from './heap-snapshot-util.mts';
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import type { MemoryReport } from './backend-diagnostics.inspect.mts';
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const [baseFile, headFile, outputFile] = process.argv.slice(2);
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const memoryReportPhases = [
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{
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key: 'afterGc',
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title: 'After GC',
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},
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] as const;
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const memoryMetrics = [
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'HeapUsed',
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'Pss',
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'USS',
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'External',
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] as const;
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function formatMemoryMb(valueKiB: number | null | undefined) {
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if (valueKiB == null) return '-';
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return `${util.formatNumber(valueKiB / 1000)} MB`;
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}
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function formatMemoryMetricName(metric: typeof memoryMetrics[number]) {
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return metric === 'Pss' ? 'PSS' : metric;
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}
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function getMemoryValueFromSample(sample: MemoryReport['samples'][number], phase: typeof memoryReportPhases[number]['key'], metric: typeof memoryMetrics[number]) {
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const memoryUsage = sample.phases[phase].memoryUsage;
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if (metric !== 'USS') return memoryUsage[metric];
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return memoryUsage.Private_Clean + memoryUsage.Private_Dirty;
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}
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function getSampleValues(report: MemoryReport, phase: typeof memoryReportPhases[number]['key'], metric: typeof memoryMetrics[number]) {
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return report.samples.map(sample => getMemoryValueFromSample(sample, phase, metric));
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}
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function getMemoryValue(report: MemoryReport, phase: typeof memoryReportPhases[number]['key'], metric: typeof memoryMetrics[number]) {
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if (metric !== 'USS') return report.summary[phase].memoryUsage[metric];
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return util.median(getSampleValues(report, phase, metric));
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}
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function getSampleSpread(report: MemoryReport, phase: typeof memoryReportPhases[number]['key'], metric: typeof memoryMetrics[number]) {
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const values = getSampleValues(report, phase, metric);
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if (values.length < 2) return null;
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const center = util.median(values);
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return util.median(values.map(value => Math.abs(value - center)));
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}
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function renderMainTableForPhase(base: MemoryReport, head: MemoryReport, phase: typeof memoryReportPhases[number]['key']) {
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const lines = [
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'| Metric | Base | Head | Δ median | Δ MAD | Δ min | Δ max |',
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'| --- | ---: | ---: | ---: | ---: | ---: | ---: |',
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];
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function formatDeltaMemory(deltaKiB: number) {
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return util.formatColoredDelta(deltaKiB, v => formatMemoryMb(v), 100); // 0.1 MB threshold
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}
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for (const metric of memoryMetrics) {
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const baseValue = getMemoryValue(base, phase, metric);
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const headValue = getMemoryValue(head, phase, metric);
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const baseSpread = getSampleSpread(base, phase, metric);
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const headSpread = getSampleSpread(head, phase, metric);
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const summary = util.pairedDeltaSummary(base.samples, head.samples, (sample) => getMemoryValueFromSample(sample, phase, metric));
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const percent = summary.median * 100 / baseValue;
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const deltaMedian = `${formatDeltaMemory(summary.median)}<br>${util.formatDeltaPercent(percent, 0.1).replaceAll('\\%', '\\\\%')}`;
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lines.push(`| **${formatMemoryMetricName(metric)}** | ${formatMemoryMb(baseValue)} <br> ± ${formatMemoryMb(baseSpread)} | ${formatMemoryMb(headValue)} <br> ± ${formatMemoryMb(headSpread)} | ${deltaMedian} | ${formatMemoryMb(summary.mad)} | ${formatDeltaMemory(summary.min)} | ${formatDeltaMemory(summary.max)} |`);
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}
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return lines.join('\n');
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}
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function renderHeapSnapshotSection(base: MemoryReport, head: MemoryReport) {
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const baseHeapSnapshotReport = {
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summary: base.summary.afterGc.heapSnapshot!,
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samples: base.samples.map(sample => ({
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round: sample.round,
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data: sample.phases.afterGc.heapSnapshot!,
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})),
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};
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const headHeapSnapshotReport = {
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summary: head.summary.afterGc.heapSnapshot!,
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samples: head.samples.map(sample => ({
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round: sample.round,
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data: sample.phases.afterGc.heapSnapshot!,
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})),
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};
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const table = heapSnapshotUtil.renderHeapSnapshotTable(baseHeapSnapshotReport, headHeapSnapshotReport);
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if (table == null) return null;
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const lines = [
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'### V8 Heap Snapshot Statistics',
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'',
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table,
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'',
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];
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for (const graph of [
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//heapSnapshotUtil.renderHeapSnapshotSankey(baseHeapSnapshotReport, 'Base'),
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heapSnapshotUtil.renderHeapSnapshotSankey(headHeapSnapshotReport, 'Head'),
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]) {
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if (graph == null) continue;
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lines.push(graph);
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lines.push('');
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}
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return lines.join('\n');
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}
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const base = JSON.parse(await readFile(baseFile, 'utf8')) as MemoryReport;
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const head = JSON.parse(await readFile(headFile, 'utf8')) as MemoryReport;
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const lines = [
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'## ⚙️ Backend Diagnostics Report',
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'',
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];
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//const summary = measurementSummary(base, head);
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//if (summary != null) {
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// lines.push(summary);
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// lines.push('');
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//}
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for (const phase of memoryReportPhases) {
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lines.push(`### Memory: ${phase.title}`);
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lines.push(renderMainTableForPhase(base, head, phase.key));
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lines.push('');
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}
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const heapSnapshotSection = renderHeapSnapshotSection(base, head);
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if (heapSnapshotSection != null) {
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lines.push(heapSnapshotSection);
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lines.push('');
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}
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const baseHeapSnapshotArtifactUrl = process.env.MK_MEMORY_HEAP_SNAPSHOT_ARTIFACT_URL_BASE!.trim();
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const headHeapSnapshotArtifactUrl = process.env.MK_MEMORY_HEAP_SNAPSHOT_ARTIFACT_URL_HEAD!.trim();
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lines.push(`You can download the representative heap snapshot: [base](${baseHeapSnapshotArtifactUrl}) / [head](${headHeapSnapshotArtifactUrl})`);
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lines.push('');
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function getDiffPercent(base: MemoryReport, head: MemoryReport, phase: typeof memoryReportPhases[number]['key'], metric: typeof memoryMetrics[number]) {
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const baseValue = getMemoryValue(base, phase, metric);
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const headValue = getMemoryValue(head, phase, metric);
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return ((headValue - baseValue) * 100) / baseValue;
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}
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function isBeyondSampleNoise(base: MemoryReport, head: MemoryReport, phase: typeof memoryReportPhases[number]['key'], metric: typeof memoryMetrics[number]) {
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const baseValue = getMemoryValue(base, phase, metric);
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const headValue = getMemoryValue(head, phase, metric);
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const delta = headValue - baseValue;
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if (delta <= 0) return false;
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const baseSpread = getSampleSpread(base, phase, metric);
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const headSpread = getSampleSpread(head, phase, metric);
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if (baseSpread == null || headSpread == null) return true;
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const combinedSpread = Math.hypot(baseSpread, headSpread);
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return delta > combinedSpread * 3;
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}
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const warningMetric = 'Pss';
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const warningDiffPercent = getDiffPercent(base, head, 'afterGc', warningMetric);
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if (warningDiffPercent > 5 && isBeyondSampleNoise(base, head, 'afterGc', warningMetric)) {
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lines.push(`⚠️ **Warning**: Memory usage (${formatMemoryMetricName(warningMetric)}) has increased by more than 5% and exceeds the observed sample noise. Please verify this is not an unintended change.`);
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lines.push('');
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}
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await writeFile(outputFile, `${lines.join('\n')}\n`);
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