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# Benchmarks
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What this library sustains, and against what. Run them before setting or changing a scale goal.
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```bash
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docker compose run --rm node node benchmarks/run.ts # this library, both ends
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COUNT=100000 docker compose run --rm node node benchmarks/run.ts # longer, steadier
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```
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`run.ts` spawns `smsc-sink.ts` — a server that answers every `submit_sm` `ESME_ROK` and stores
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nothing — and drives it with `submit-load.ts` at four window sizes. Point `submit-load.ts` at any
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SMSC to compare:
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```bash
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docker compose -f compose.yaml -f interop-tests/compose.jasmin.yaml run --rm node \
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node benchmarks/submit-load.ts --host=jasmin --port=2775 --username=esme1 --password=esme1pw \
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--count=20000 --concurrency=50
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```
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**A short run measures the JIT, not the library.** At 2,000 messages per point the same build
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reported 16k/s where 100,000 messages reported 40k/s. Give each point several seconds.
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## Results, 2026-09-20
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Single host, 8 cores, Node 24.18.0 in the project container, loopback. Client and SMSC are separate
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processes competing for the same CPUs, so these are a floor for split hosts.
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`maxOutstanding` is the send window, and it is the setting that matters most:
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| Window | msgs/s | with `dlr: true` |
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| --- | --- | --- |
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| 1 | 7,385 | 7,289 |
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| 10 (default) | 25,358 | 24,282 |
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| 50 | 37,125 | 37,502 |
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| 200 | 40,046 | 39,730 |
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Requesting delivery receipts costs nothing measurable at any window. A window of 1 — one request in
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flight at a time — costs 5x, which is the round trip rather than the codec.
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Against real peers, same driver, window 50, 20,000 messages:
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| SMSC | msgs/s | failed |
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| --- | --- | --- |
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| this library's sink | 37,125 | 0 |
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| Jasmin 0.10 | 2,207 | 0 |
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| SMPPSim 3.0.0 | — | 19,000 of 20,000 |
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Jasmin routes and persists where the sink does neither, so the gap is not an efficiency ratio
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between two comparable things — what it establishes is that this library is not the bottleneck
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against a production SMSC, by more than an order of magnitude. SMPPSim's store fills at roughly a
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thousand messages and it then refuses the rest, so it cannot be loaded; that is a property of the
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simulator, not a result.
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`smppload`, the one purpose-built SMPP load generator among the peers, is blocked by a bind defect
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of its own ([findings/07-load.md](../interop-tests/findings/07-load.md)), so no third-party load
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tool drives these numbers.
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import { spawn } from 'node:child_process';
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import { once } from 'node:events';
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import { createInterface } from 'node:readline';
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/**
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* Node rather than Python, unlike the repo's other standalone scripts: it spawns the two processes
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* it measures, and they must run on the same runtime this library is measured under.
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*/
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const concurrencies = [1, 10, 50, 200];
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const count = Number(process.env.COUNT ?? 5000);
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function node(script: string, args: string[] = []) {
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return spawn(process.execPath, [`${import.meta.dirname}/${script}`, ...args], {
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stdio: ['ignore', 'pipe', 'inherit'],
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});
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}
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async function firstLine(stream: NodeJS.ReadableStream): Promise<string> {
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for await (const line of createInterface({ input: stream })) {
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return line;
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}
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return '';
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}
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const sink = node('smsc-sink.ts');
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const listening: unknown = JSON.parse(await firstLine(sink.stdout));
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if (typeof listening !== 'object' || listening === null || !('port' in listening)) {
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throw new Error('the sink did not report a port');
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}
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const port = String(listening.port);
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const rows: Record<string, unknown>[] = [];
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for (const dlr of [false, true]) {
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for (const concurrency of concurrencies) {
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const load = node('submit-load.ts', [
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`--port=${port}`,
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`--count=${String(count)}`,
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`--concurrency=${String(concurrency)}`,
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...(dlr ? ['--dlr'] : []),
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]);
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const reported: unknown = JSON.parse(await firstLine(load.stdout));
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await once(load, 'exit');
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if (typeof reported === 'object' && reported !== null) rows.push({ ...reported });
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}
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}
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sink.kill('SIGTERM');
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await once(sink, 'exit');
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process.stdout.write(`\n${'dlr'.padEnd(6)}${'window'.padEnd(9)}${'msgs/s'.padEnd(10)}seconds\n`);
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for (const row of rows) {
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const dlr = String(row.dlr).padEnd(6);
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const window = String(row.concurrency).padEnd(9);
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const rate = String(row.perSecond).padEnd(10);
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process.stdout.write(`${dlr}${window}${rate}${String(row.seconds)}\n`);
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}
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import { server } from '../src/server.ts';
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/**
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* Answers every submit_sm ESME_ROK and does nothing else, so a measurement against it reads this
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* library's own ceiling rather than an SMSC's storage. Prints the bound port on stdout, then waits.
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*/
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const port = Number(process.env.PORT ?? 0);
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const { err, server: smpp } = await server({ port });
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if (err) {
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process.stderr.write(`sink failed to listen: ${err.message}\n`);
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process.exit(1);
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}
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let answered = 0;
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smpp.on('session', session => {
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session.on('sms', async sms => {
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answered++;
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await sms.sendResp();
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});
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});
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smpp.on('serverError', reason => {
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process.stderr.write(`sink serverError: ${reason.message}\n`);
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});
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process.stdout.write(`${JSON.stringify({ port: smpp.port })}\n`);
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process.on('SIGTERM', () => {
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process.stderr.write(`sink answered ${String(answered)}\n`);
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void smpp.close({ signal: AbortSignal.abort() }).then(() => process.exit(0));
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});
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import { client } from '../src/client.ts';
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/**
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* Pushes `count` single-segment messages and reports what the wire carried per second. Keeps
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* `concurrency` sends in flight so the send window, not the caller, is what bounds the rate.
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*/
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function arg(name: string, fallback: string): string {
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const found = process.argv.find(one => one.startsWith(`--${name}=`));
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return found === undefined ? fallback : found.slice(name.length + 3);
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}
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const host = arg('host', '127.0.0.1');
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const port = Number(arg('port', '2775'));
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const count = Number(arg('count', '2000'));
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const concurrency = Number(arg('concurrency', '20'));
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const message = arg('message', 'benchmark');
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const dlr = process.argv.includes('--dlr');
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const username = arg('username', 'user');
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const password = arg('password', 'pass');
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const { err, session } = await client({
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host,
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maxOutstanding: concurrency,
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password,
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port,
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responseTimeout: 60_000,
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username,
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});
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if (err) {
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process.stdout.write(`${JSON.stringify({ error: err.message })}\n`);
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process.exit(1);
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}
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// Narrowing from the guard above does not reach into worker(), which runs after it.
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const bound = session;
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let issued = 0;
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let failed = 0;
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let unanswered = 0;
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async function worker(): Promise<void> {
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while (issued < count) {
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issued++;
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const sent = await bound.sendSms({ dlr, from: 'BENCH', message, to: '46709771337' });
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if (sent.err) failed++;
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unanswered += sent.unanswered;
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}
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}
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const started = process.hrtime.bigint();
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await Promise.all(Array.from({ length: concurrency }, () => worker()));
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const seconds = Number(process.hrtime.bigint() - started) / 1e9;
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process.stdout.write(`${JSON.stringify({
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concurrency,
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count,
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dlr,
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failed,
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perSecond: Math.round(count / seconds),
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seconds: Number(seconds.toFixed(3)),
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unanswered,
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})}\n`);
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await bound.close({ signal: AbortSignal.abort() });
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process.exit(0);
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+1
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"types": ["node"],
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"types": ["node"],
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"verbatimModuleSyntax": true
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"verbatimModuleSyntax": true
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},
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},
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"include": ["eslint.config.ts", "interop-tests", "src", "test"]
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"include": ["benchmarks", "eslint.config.ts", "interop-tests", "src", "test"]
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}
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}
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Reference in New Issue
Block a user