Add Phase 0 test harness (vitest + ESLint) and fix build config

- Add vitest unit tests for Zustand app store state transitions (6 tests)
- Add mock speech-engine WebSocket protocol integration test (spawns server.py --mock on a free port)
- Add ESLint 10 flat config with typescript-eslint; add typecheck/lint/test scripts to package.json
- Fix pre-existing tsc -b breakage via noEmit in tsconfig.node.json; add dedicated tsconfig.tests.json project for Node-side tests
- Track src-tauri/Cargo.lock for reproducible Rust builds; enable protocol-asset Tauri feature
- Ignore generated artifacts (*.tsbuildinfo, src-tauri/gen/, emitted vite.config.js/.d.ts); remove stale emitted vite config copies
- Update AGENTS.md agent guide (demo scope lock, roadmap, verification commands)
- Add HANDOFF.md documenting Phase 0 state and remaining steps for the next agent
This commit is contained in:
2026-10-03 22:33:47 +07:00
parent 9eff88215c
commit 654033fba3
15 changed files with 7824 additions and 61 deletions

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@@ -0,0 +1,223 @@
// Integration test for the mock speech-engine WebSocket protocol.
// Spawns `speech-engine/server.py --mock` from the local .venv on a free port
// and drives it with Node's native WebSocket client. Skipped when the venv is missing.
import { spawn } from 'node:child_process';
import type { ChildProcessWithoutNullStreams } from 'node:child_process';
import fs from 'node:fs';
import net from 'node:net';
import path from 'node:path';
import { fileURLToPath } from 'node:url';
import { afterAll, beforeAll, describe, expect, it } from 'vitest';
const repoRoot = path.resolve(path.dirname(fileURLToPath(import.meta.url)), '..');
interface SpeechEvent {
type: string;
[key: string]: unknown;
}
interface SegmentPayload {
id: string;
speakerId: string;
start: number;
end: number;
text: string;
final: boolean;
}
function venvPython(): string | null {
const candidates =
process.platform === 'win32'
? [path.join(repoRoot, 'speech-engine', '.venv', 'Scripts', 'python.exe')]
: [path.join(repoRoot, 'speech-engine', '.venv', 'bin', 'python')];
return candidates.find((candidate) => fs.existsSync(candidate)) ?? null;
}
function findFreePort(): Promise<number> {
return new Promise((resolve, reject) => {
const server = net.createServer();
server.unref();
server.on('error', reject);
server.listen(0, '127.0.0.1', () => {
const address = server.address();
if (!address || typeof address === 'string') {
reject(new Error('Could not determine a free port'));
return;
}
server.close(() => resolve(address.port));
});
});
}
async function waitForHealth(url: string, timeoutMs: number): Promise<void> {
const deadline = Date.now() + timeoutMs;
for (;;) {
try {
const response = await fetch(url);
if (response.ok) return;
} catch {
// Server not up yet.
}
if (Date.now() > deadline) throw new Error(`Speech engine did not become healthy at ${url}`);
await new Promise((resolve) => setTimeout(resolve, 250));
}
}
function openSocket(url: string): Promise<WebSocket> {
return new Promise((resolve, reject) => {
const socket = new WebSocket(url);
socket.onopen = () => resolve(socket);
socket.onerror = (event) => reject(new Error(`WebSocket error: ${String(event.message ?? event.type)}`));
});
}
function nextEvent(socket: WebSocket, timeoutMs: number): Promise<SpeechEvent> {
return new Promise((resolve, reject) => {
const timer = setTimeout(() => reject(new Error('Timed out waiting for a speech engine event')), timeoutMs);
socket.onmessage = (event) => {
clearTimeout(timer);
try {
resolve(JSON.parse(String(event.data)) as SpeechEvent);
} catch (error) {
reject(error instanceof Error ? error : new Error('Non-JSON message from speech engine'));
}
};
});
}
function waitForClose(socket: WebSocket, timeoutMs: number): Promise<number> {
return new Promise((resolve, reject) => {
const timer = setTimeout(() => reject(new Error('Timed out waiting for the socket to close')), timeoutMs);
socket.onclose = (event) => {
clearTimeout(timer);
resolve(event.code);
};
});
}
const python = venvPython();
describe.skipIf(python === null)(
'mock speech protocol (server.py --mock)',
() => {
let server: ChildProcessWithoutNullStreams | undefined;
let port = 0;
const stderr: string[] = [];
beforeAll(async () => {
if (!python) return;
port = await findFreePort();
server = spawn(python, [path.join(repoRoot, 'speech-engine', 'server.py'), '--mock', '--port', String(port)], {
cwd: repoRoot,
stdio: ['ignore', 'pipe', 'pipe'],
});
server.stdout.on('data', () => undefined);
server.stderr.on('data', (chunk) => stderr.push(String(chunk)));
try {
await waitForHealth(`http://127.0.0.1:${port}/health`, 30_000);
} catch (error) {
throw new Error(
`Speech engine did not start: ${error instanceof Error ? error.message : String(error)}\n--- stderr ---\n${stderr.join('')}`,
);
}
}, 60_000);
afterAll(() => {
server?.kill();
});
const validConfig = JSON.stringify({
model: 'small',
compute: 'auto',
language: 'auto',
diarization: true,
sample_rate: 16000,
});
it('reports mock mode on /health', async () => {
const response = await fetch(`http://127.0.0.1:${port}/health`);
expect(response.ok).toBe(true);
const body = (await response.json()) as { ok: boolean; mode: string; sample_rate: number };
expect(body.ok).toBe(true);
expect(body.mode).toBe('mock');
expect(body.sample_rate).toBe(16000);
});
it('completes the ready handshake for a valid config', async () => {
const socket = await openSocket(`ws://127.0.0.1:${port}/ws/live`);
socket.send(validConfig);
const ready = await nextEvent(socket, 10_000);
expect(ready.type).toBe('ready');
expect(String(ready.engine)).toContain('mock');
socket.close();
});
it('emits final segments with cycling speakers for streamed PCM', async () => {
const socket = await openSocket(`ws://127.0.0.1:${port}/ws/live`);
socket.send(validConfig);
expect((await nextEvent(socket, 10_000)).type).toBe('ready');
// Stream 5 seconds of silence (16 kHz mono int16) in 100 ms chunks; the mock
// emits one final segment per 2.4 s of samples with cycling speaker labels.
const totalBytes = 16000 * 5 * 2;
const chunkSize = 3200;
for (let offset = 0; offset < totalBytes; offset += chunkSize) {
socket.send(new ArrayBuffer(chunkSize));
}
const finals: SpeechEvent[] = [];
while (finals.length < 2) {
const event = await nextEvent(socket, 15_000);
if (event.type === 'error') throw new Error(String(event.message));
if (event.type === 'final') finals.push(event);
}
expect(finals).toHaveLength(2);
const first = finals[0].segment as SegmentPayload;
const second = finals[1].segment as SegmentPayload;
for (const segment of [first, second]) {
expect(segment.id).toBeTruthy();
expect(segment.text.length).toBeGreaterThan(0);
expect(segment.final).toBe(true);
}
expect(first.speakerId).toBe('speaker_1');
expect(second.speakerId).toBe('speaker_2');
expect(first.start).toBeCloseTo(0.3, 1);
expect(first.end).toBeCloseTo(2.4, 1);
expect(second.start).toBeCloseTo(2.7, 1);
expect(second.end).toBeCloseTo(4.8, 1);
expect(second.start).toBeGreaterThan(first.end);
socket.send(JSON.stringify({ type: 'stop' }));
const code = await waitForClose(socket, 5_000);
expect(code).toBe(1000);
});
it('rejects unsupported sample rates', async () => {
const socket = await openSocket(`ws://127.0.0.1:${port}/ws/live`);
socket.send(
JSON.stringify({ model: 'small', compute: 'auto', language: 'auto', diarization: true, sample_rate: 44100 }),
);
const event = await nextEvent(socket, 10_000);
expect(event.type).toBe('error');
expect(String(event.message)).toContain('16 kHz');
await waitForClose(socket, 5_000);
});
it('reports malformed config as an error event', async () => {
const socket = await openSocket(`ws://127.0.0.1:${port}/ws/live`);
socket.send('this is not json');
const event = await nextEvent(socket, 10_000);
expect(event.type).toBe('error');
expect(String(event.message)).not.toBe('');
await waitForClose(socket, 5_000);
});
},
);