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The subprocess-booting test suites hand-picked fixed ports in a cramped ~3955-4021 range, and 156-schedule-read-path deviated to a RANDOM port (3900 + rand%90) that overlapped those fixed ports. Under CI load two servers could race on the same port, surfacing as flaky "no such table: devices" / "FOREIGN KEY constraint failed" (a server answering a request against a half-migrated or wrong DB). It's environmental — the suites pass locally and in isolation. Fix: a shared test/helpers/free-port.js (bind :0 on loopback, read the OS-assigned port, release) called in before() so every suite gets a guaranteed-unique ephemeral port — concurrent suites can no longer collide, and no one has to hand-assign ports. - Codemod converted 30 suites: const PORT = <fixed|random> -> let PORT (+ BASE) assigned via `PORT = await freePort()` at the top of before(). - 3 hand-fixed (different structure): 148-eviction-storm (lowercase `base`), boot-health (no before() — allocates PORT + a throwaway SEED_PORT inside the test, replacing the hardcoded 3894), totp-keyrotation (no before() — allocates at the test start before bootServer()). No fixed 39xx/40xx ports remain. Full server suite 435/435; the 4 hand-touched suites pass in isolation. Pure test-infra change — no app code touched.
90 lines
4.5 KiB
JavaScript
90 lines
4.5 KiB
JavaScript
'use strict';
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// #143 integration — a device cycling DIFFERENT content ids at high rate (the case
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// dedup misses) is rate-limited; an under-budget device passes every ack. Observed
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// via the server log: passing acks log `Device <id> content <cid>: ready`; over-
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// budget drops are silent except ONE `[content-ack] shedding device <id>` line.
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// Normal band (default lag thresholds), unique PORT 3985.
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const { test, before, after } = require('node:test');
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const assert = require('node:assert/strict');
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const { spawn } = require('node:child_process');
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const path = require('node:path');
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const os = require('node:os');
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const fs = require('node:fs');
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const crypto = require('node:crypto');
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const ioClient = require('socket.io-client');
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const { freePort } = require('./helpers/free-port');
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let PORT, BASE;
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const DATA_DIR = path.join(os.tmpdir(), 'st-flood-' + crypto.randomBytes(4).toString('hex'));
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const LOG = path.join(os.tmpdir(), 'st-flood-' + crypto.randomBytes(4).toString('hex') + '.log');
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let proc;
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const sleep = (ms) => new Promise(r => setTimeout(r, ms));
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before(async () => {
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PORT = await freePort();
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BASE = `http://127.0.0.1:${PORT}`;
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const logFd = fs.openSync(LOG, 'w');
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proc = spawn('node', ['server.js'], {
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cwd: path.join(__dirname, '..'),
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env: {
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...process.env, DATA_DIR, SELF_HOSTED: 'true', PORT: String(PORT), NODE_ENV: 'test',
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CONTENT_ACK_MAX_PER_WINDOW: '5', CONTENT_ACK_RATE_WINDOW_MS: '10000', CONTENT_ACK_DEDUP_MS: '50',
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},
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stdio: ['ignore', logFd, logFd],
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});
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let up = false;
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for (let i = 0; i < 80; i++) { try { const r = await fetch(BASE + '/api/status'); if (r.ok) { up = true; break; } } catch { /* */ } await sleep(250); }
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if (!up) throw new Error('server did not boot:\n' + fs.readFileSync(LOG, 'utf8').slice(-2000));
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});
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after(() => { try { proc.kill('SIGKILL'); } catch { /* */ } });
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function provision() {
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const code = String(crypto.randomInt(100000, 1000000));
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return new Promise((resolve) => {
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const sock = ioClient(`${BASE}/device`, { transports: ['websocket'], reconnection: false, forceNew: true });
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sock.on('connect', () => sock.emit('device:register', { pairing_code: code }));
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sock.on('device:registered', (d) => { try { sock.close(); } catch { /* */ } resolve({ id: d.device_id, token: d.device_token }); });
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setTimeout(() => resolve(null), 4000);
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});
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}
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function openRegistered(dev) {
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return new Promise((resolve, reject) => {
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const sock = ioClient(`${BASE}/device`, { transports: ['websocket'], reconnection: false, forceNew: true });
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sock.on('connect', () => sock.emit('device:register', { device_id: dev.id, device_token: dev.token, device_info: { app_version: 'test' } }));
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sock.on('device:registered', () => resolve(sock));
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sock.on('device:auth-error', () => reject(new Error('auth-error')));
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setTimeout(() => reject(new Error('register timeout')), 4000);
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});
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}
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const linesFor = (id, needle) => fs.readFileSync(LOG, 'utf8').split('\n').filter(l => l.includes(id) && l.includes(needle)).length;
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test('#143: cycling 4 different content ids at high rate is rate-limited (dedup misses it)', async () => {
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const dev = await provision();
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assert.ok(dev, 'provisioned');
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const sock = await openRegistered(dev);
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const ids = ['a', 'b', 'c', 'd'];
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// 15 acks, ~100ms apart -> each id repeats every ~400ms (> 50ms dedup) so dedup
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// never fires; budget is 5/10s, so only 5 pass and the rest are shed.
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for (let i = 0; i < 15; i++) { sock.emit('device:content-ack', { device_id: dev.id, content_id: ids[i % 4], status: 'ready' }); await sleep(100); }
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await sleep(400);
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try { sock.close(); } catch { /* */ }
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const passed = linesFor(dev.id, 'content '); // `Device <id> content <cid>: ready`
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const shedStart = linesFor(dev.id, 'shedding device');
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assert.equal(passed, 5, `exactly the budget (5) passed/logged, got ${passed}`);
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assert.ok(shedStart >= 1, 'a single shed-start line was logged when flood control engaged');
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assert.ok(shedStart === 1, `shed-start logged ONCE per window (no per-drop flood), got ${shedStart}`);
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});
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test('a device under budget has every ack processed', async () => {
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const dev = await provision();
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const sock = await openRegistered(dev);
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for (const id of ['p', 'q', 'r', 's']) { sock.emit('device:content-ack', { device_id: dev.id, content_id: id, status: 'ready' }); await sleep(60); }
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await sleep(300);
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try { sock.close(); } catch { /* */ }
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assert.equal(linesFor(dev.id, 'content '), 4, 'all 4 under-budget acks processed');
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assert.equal(linesFor(dev.id, 'shedding device'), 0, 'no shedding for an under-budget device');
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});
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