Files
gstack/browse/test/terminal-agent-integration.test.ts
T
garrytan 5ec930d569 test: replace product tests that fake the product with real-boundary tests (F)
- design: serve.test.ts drove an inline mirror server; now two tests run the
  real serve() on an ephemeral port (reload confinement, submit exit 0).
- setup-gbrain: rollback + voyage tests execute the template-extracted init
  blocks (3 sites) instead of drifted local bash copies.
- terminal-agent: internalHandler source greps replaced by a behavioral
  /internal/grant + /internal/revoke auth matrix (no/wrong/valid token).
- /health: server-security-surface and the server-auth / security-audit-r2 /
  sidebar-tabs source greps fold into one liveness-only check on the real
  body; the L4 sidecar wiring gets a behavioral /pty-inject-scan test.
- delete tautologies (browser-manager onDisconnect, memory-command #12),
  ios swiftui tap fixture self-check, memory-ingest put_page grep, detach
  source greps, sidebar-agent absence pins, dead-CSS pins + the dead CSS,
  security-audit-r2 Task 1 + the test-only meta-commands re-export,
  duplicate generated-SKILL.md checks.
- make-pdf coverage-gaps cases move into their owner test files.
2026-09-29 04:43:28 +00:00

536 lines
23 KiB
TypeScript

/**
* Integration tests for terminal-agent.ts.
*
* Spawns the agent as a real subprocess in a temp state directory,
* exercises:
* 1. /internal/grant — loopback handshake with the internal token.
* 2. /ws Origin gate — non-extension Origin → 403.
* 3. /ws cookie gate — missing/invalid cookie → 401.
* 4. /ws full PTY round-trip — write `echo hi\n`, read `hi`.
* 5. resize control message — terminal accepts and stays alive.
* 6. close behavior — sending close terminates the PTY child.
*
* Uses a CLI-compatible wrapper around /bin/bash via BROWSE_TERMINAL_BINARY
* so CI doesn't need the `claude` binary installed.
*/
import { describe, test, expect, beforeAll, afterAll } from 'bun:test';
import * as fs from 'fs';
import * as path from 'path';
import * as os from 'os';
const AGENT_SCRIPT = path.join(import.meta.dir, '../src/terminal-agent.ts');
const BASH = '/bin/bash';
let stateDir: string;
let agentProc: any;
let agentPort: number;
let internalToken: string;
function readPortFile(): number {
for (let i = 0; i < 50; i++) {
try {
const v = parseInt(fs.readFileSync(path.join(stateDir, 'terminal-port'), 'utf-8').trim(), 10);
if (Number.isFinite(v) && v > 0) return v;
} catch {}
Bun.sleepSync(40);
}
throw new Error('terminal-agent never wrote port file');
}
function readTokenFile(): string {
for (let i = 0; i < 50; i++) {
try {
const t = fs.readFileSync(path.join(stateDir, 'terminal-internal-token'), 'utf-8').trim();
if (t.length > 16) return t;
} catch {}
Bun.sleepSync(40);
}
throw new Error('terminal-agent never wrote internal token');
}
beforeAll(() => {
stateDir = fs.mkdtempSync(path.join(os.tmpdir(), 'gstack-term-'));
const stateFile = path.join(stateDir, 'browse.json');
// browse.json must exist so the agent's readBrowseToken doesn't throw.
fs.writeFileSync(stateFile, JSON.stringify({ token: 'test-browse-token' }));
const terminalCli = path.join(stateDir, 'terminal-cli');
// Production supplies Claude's CLI arguments. Validate that contract before
// handing the real PTY to Bash; bare Bash rejects --append-system-prompt.
fs.writeFileSync(terminalCli, [
`#!${BASH}`,
'if [ "$#" -ne 2 ] || [ "$1" != "--append-system-prompt" ] || [ -z "$2" ]; then',
' echo "unexpected terminal CLI arguments" >&2; exit 64',
'fi',
'shift 2',
`exec ${BASH} --noprofile --norc "$@"`,
'',
].join('\n'));
fs.chmodSync(terminalCli, 0o755);
agentProc = Bun.spawn(['bun', 'run', AGENT_SCRIPT], {
env: {
...process.env,
BROWSE_STATE_FILE: stateFile,
BROWSE_SERVER_PORT: '0', // not used in this test
BROWSE_TERMINAL_BINARY: terminalCli,
},
stdio: ['ignore', 'pipe', 'pipe'],
});
agentPort = readPortFile();
internalToken = readTokenFile();
});
afterAll(() => {
try { agentProc?.kill?.(); } catch {}
try { fs.rmSync(stateDir, { recursive: true, force: true }); } catch {}
});
async function grantToken(token: string): Promise<Response> {
return fetch(`http://127.0.0.1:${agentPort}/internal/grant`, {
method: 'POST',
headers: {
'Content-Type': 'application/json',
'Authorization': `Bearer ${internalToken}`,
},
body: JSON.stringify({ token }),
});
}
describe('terminal-agent: /internal/grant', () => {
test('accepts grants signed with the internal token', async () => {
const resp = await grantToken('test-cookie-token-very-long-yes');
expect(resp.status).toBe(200);
});
test('rejects grants with the wrong internal token', async () => {
const resp = await fetch(`http://127.0.0.1:${agentPort}/internal/grant`, {
method: 'POST',
headers: {
'Content-Type': 'application/json',
'Authorization': 'Bearer wrong-token',
},
body: JSON.stringify({ token: 'whatever' }),
});
expect(resp.status).toBe(403);
});
});
describe('terminal-agent: /internal/grant and /internal/revoke bearer auth', () => {
function post(route: 'grant' | 'revoke', token: string, authorization?: string): Promise<Response> {
const headers: Record<string, string> = { 'Content-Type': 'application/json' };
if (authorization !== undefined) headers.Authorization = authorization;
return fetch(`http://127.0.0.1:${agentPort}/internal/${route}`, {
method: 'POST',
headers,
body: JSON.stringify({ token }),
});
}
function wsStatus(token: string): Promise<number> {
return fetch(`http://127.0.0.1:${agentPort}/ws`, {
headers: { 'Origin': 'chrome-extension://abc123', 'Cookie': `gstack_pty=${token}` },
}).then((r) => r.status);
}
for (const route of ['grant', 'revoke'] as const) {
test(`${route}: no token → 403, wrong token → 403, valid internal token → 200`, async () => {
const target = `auth-matrix-${route}-token-long-enough`;
expect((await post(route, target)).status).toBe(403);
expect((await post(route, target, 'Bearer wrong-token')).status).toBe(403);
expect((await post(route, target, `Bearer ${internalToken}`)).status).toBe(200);
});
}
test('an unauthenticated revoke leaves the grant usable; an authenticated revoke removes it', async () => {
const token = 'revoke-auth-token-at-least-seventeen';
expect((await grantToken(token)).status).toBe(200);
expect(await wsStatus(token)).not.toBe(401);
expect((await post('revoke', token)).status).toBe(403);
expect((await post('revoke', token, 'Bearer wrong-token')).status).toBe(403);
expect(await wsStatus(token)).not.toBe(401);
expect((await post('revoke', token, `Bearer ${internalToken}`)).status).toBe(200);
expect(await wsStatus(token)).toBe(401);
});
test('an unauthenticated grant does not register the token', async () => {
const token = 'forged-grant-token-at-least-seventeen';
expect((await post('grant', token, 'Bearer wrong-token')).status).toBe(403);
expect(await wsStatus(token)).toBe(401);
});
});
describe('terminal-agent: /ws gates', () => {
test('rejects upgrade attempts without an extension Origin', async () => {
const resp = await fetch(`http://127.0.0.1:${agentPort}/ws`);
expect(resp.status).toBe(403);
expect(await resp.text()).toBe('forbidden origin');
});
test('rejects upgrade attempts from a non-extension Origin', async () => {
const resp = await fetch(`http://127.0.0.1:${agentPort}/ws`, {
headers: { 'Origin': 'https://evil.example.com' },
});
expect(resp.status).toBe(403);
});
test('rejects extension-Origin upgrades without a granted cookie', async () => {
const resp = await fetch(`http://127.0.0.1:${agentPort}/ws`, {
headers: {
'Origin': 'chrome-extension://abc123',
'Cookie': 'gstack_pty=never-granted',
},
});
expect(resp.status).toBe(401);
});
});
describe('terminal-agent: PTY round-trip via real WebSocket (Cookie auth)', () => {
test('binary writes go to PTY stdin, output streams back', async () => {
const cookie = 'rt-token-must-be-at-least-seventeen-chars-long';
const granted = await grantToken(cookie);
expect(granted.status).toBe(200);
const ws = new WebSocket(`ws://127.0.0.1:${agentPort}/ws`, {
headers: {
'Origin': 'chrome-extension://test-extension-id',
'Cookie': `gstack_pty=${cookie}`,
},
} as any);
const collected: string[] = [];
let opened = false;
let closed = false;
await new Promise<void>((resolve, reject) => {
const timer = setTimeout(() => reject(new Error('ws never opened')), 5000);
ws.addEventListener('open', () => { opened = true; clearTimeout(timer); resolve(); });
ws.addEventListener('error', (e: any) => { clearTimeout(timer); reject(new Error('ws error')); });
});
ws.addEventListener('message', (ev: any) => {
if (typeof ev.data === 'string') return; // ignore control frames
const buf = ev.data instanceof ArrayBuffer ? new Uint8Array(ev.data) : ev.data;
collected.push(new TextDecoder().decode(buf));
});
ws.addEventListener('close', () => { closed = true; });
// Lazy-spawn trigger: any binary frame causes the agent to spawn the fixture CLI.
// The expected token must not occur in the input: PTY echo alone is not
// proof that the child accepted its arguments and executed the command.
ws.send(new TextEncoder().encode("printf 'hello-%s-world\\n' pty\nexit\n"));
// Wait up to 5s for output and shutdown.
await new Promise<void>((resolve) => {
const start = Date.now();
const tick = () => {
const joined = collected.join('');
if (joined.includes('hello-pty-world')) return resolve();
if (Date.now() - start > 5000) return resolve();
setTimeout(tick, 50);
};
tick();
});
expect(opened).toBe(true);
const allOutput = collected.join('');
expect(allOutput).toContain('hello-pty-world');
try { ws.close(); } catch {}
// Give cleanup a moment.
await Bun.sleep(200);
});
test('Sec-WebSocket-Protocol auth path: browser-style upgrade with token in protocol', async () => {
// This is the path the actual browser extension takes. Cross-port
// SameSite=Strict cookies don't reliably survive the jump from the
// browse server (port A) to the agent (port B) when initiated from a
// chrome-extension origin, so we send the token via the only auth
// header the browser WebSocket API lets us set: Sec-WebSocket-Protocol.
//
// The browser sends `gstack-pty.<token>` and the agent must:
// 1) strip the gstack-pty. prefix
// 2) validate the token
// 3) ECHO the protocol back in the upgrade response
// Without (3) the browser closes the connection immediately, which
// is the exact bug the original cookie-only implementation hit in
// manual dogfood. This test catches that regression in CI.
const token = 'sec-protocol-token-must-be-at-least-seventeen-chars';
await grantToken(token);
// We exercise the protocol path by raw-handshaking via fetch+Upgrade,
// because Bun's test-client WebSocket constructor doesn't propagate
// `protocols` cleanly when also passed `headers` (the constructor
// detects the third-arg form unreliably). Real browsers (Chromium)
// use the standard protocols arg fine — the server-side handler is
// identical either way, so this test still locks the load-bearing
// invariant: the agent accepts a token via Sec-WebSocket-Protocol
// and echoes the protocol back so a browser would accept the upgrade.
const handshakeKey = 'dGhlIHNhbXBsZSBub25jZQ==';
const resp = await fetch(`http://127.0.0.1:${agentPort}/ws`, {
headers: {
'Connection': 'Upgrade',
'Upgrade': 'websocket',
'Sec-WebSocket-Version': '13',
'Sec-WebSocket-Key': handshakeKey,
'Sec-WebSocket-Protocol': `gstack-pty.${token}`,
'Origin': 'chrome-extension://test-extension-id',
},
});
// 101 Switching Protocols + protocol echoed back = browser would accept.
// 401/403/anything else = browser would close the connection immediately
// (the bug we hit in manual dogfood).
expect(resp.status).toBe(101);
expect(resp.headers.get('upgrade')?.toLowerCase()).toBe('websocket');
expect(resp.headers.get('sec-websocket-protocol')).toBe(`gstack-pty.${token}`);
});
test('upgrade response contains exactly ONE Sec-WebSocket-Protocol header', async () => {
// RFC 6455: the server MUST select at most one subprotocol. Bun >= 1.3
// auto-echoes the first offered protocol in server.upgrade(), so a
// manual echo on top of that produced TWO Sec-WebSocket-Protocol
// headers — and strict clients (Chromium, python websockets) reject the
// handshake, leaving the sidebar terminal permanently disconnected.
//
// Headers.get() normalizes duplicates away, so this test handshakes
// over a raw socket and counts header lines in the response head.
const token = 'dup-proto-token-must-be-at-least-seventeen-chars';
await grantToken(token);
const head = await new Promise<string>((resolve, reject) => {
const req =
'GET /ws HTTP/1.1\r\n' +
`Host: 127.0.0.1:${agentPort}\r\n` +
'Connection: Upgrade\r\n' +
'Upgrade: websocket\r\n' +
'Sec-WebSocket-Version: 13\r\n' +
'Sec-WebSocket-Key: dGhlIHNhbXBsZSBub25jZQ==\r\n' +
`Sec-WebSocket-Protocol: gstack-pty.${token}\r\n` +
'Origin: chrome-extension://test-extension-id\r\n' +
'\r\n';
let buf = '';
const socket = require('net').connect(agentPort, '127.0.0.1', () => socket.write(req));
socket.setTimeout(5000, () => { socket.destroy(); reject(new Error('handshake timeout')); });
socket.on('data', (chunk: Buffer) => {
buf += chunk.toString('utf8');
const end = buf.indexOf('\r\n\r\n');
if (end !== -1) { socket.destroy(); resolve(buf.slice(0, end)); }
});
socket.on('error', reject);
});
expect(head).toContain('101');
const protoLines = head.split('\r\n').filter(l => l.toLowerCase().startsWith('sec-websocket-protocol:'));
expect(protoLines).toEqual([`Sec-WebSocket-Protocol: gstack-pty.${token}`]);
});
test('Sec-WebSocket-Protocol auth: rejects unknown token even with valid Origin', async () => {
const resp = await fetch(`http://127.0.0.1:${agentPort}/ws`, {
headers: {
'Connection': 'Upgrade',
'Upgrade': 'websocket',
'Sec-WebSocket-Version': '13',
'Sec-WebSocket-Key': 'dGhlIHNhbXBsZSBub25jZQ==',
'Sec-WebSocket-Protocol': 'gstack-pty.never-granted-token',
'Origin': 'chrome-extension://test-extension-id',
},
});
expect(resp.status).toBe(401);
});
test('text frame {type:"resize"} is accepted (no crash, ws stays open)', async () => {
const cookie = 'resize-token-must-be-at-least-seventeen-chars';
await grantToken(cookie);
const ws = new WebSocket(`ws://127.0.0.1:${agentPort}/ws`, {
headers: {
'Origin': 'chrome-extension://test-extension-id',
'Cookie': `gstack_pty=${cookie}`,
},
} as any);
await new Promise<void>((resolve, reject) => {
const timer = setTimeout(() => reject(new Error('ws never opened')), 5000);
ws.addEventListener('open', () => { clearTimeout(timer); resolve(); });
ws.addEventListener('error', () => { clearTimeout(timer); reject(new Error('ws error')); });
});
// Send a resize before anything else (lazy-spawn won't fire).
ws.send(JSON.stringify({ type: 'resize', cols: 120, rows: 40 }));
// After resize, send a binary frame; should still work.
ws.send(new TextEncoder().encode('exit\n'));
await Bun.sleep(300);
// ws still readyState 1 (OPEN) or 3 (CLOSED after exit) — both fine.
expect([WebSocket.OPEN, WebSocket.CLOSED]).toContain(ws.readyState);
try { ws.close(); } catch {}
});
});
// Route-level lifecycle regressions use the same owned Bash CLI fixture and
// real PTY/WS transport above. Every expected result is absent from typed input.
describe('terminal-agent: owned PTY completion and restart', () => {
async function internal(route: string, body: unknown) {
return fetch(`http://127.0.0.1:${agentPort}/internal/${route}`, {
method: 'POST',
headers: { 'Content-Type': 'application/json', Authorization: `Bearer ${internalToken}` },
body: JSON.stringify(body),
});
}
async function until(check: () => boolean | Promise<boolean>, label: string) {
const deadline = Date.now() + 5000;
while (!(await check())) {
if (Date.now() >= deadline) throw new Error(`timed out waiting for ${label}`);
await Bun.sleep(10);
}
}
async function attach(sessionId: string, token: string) {
const granted = await internal('grant', { token, sessionId });
expect(granted.status).toBe(200);
const ws = new WebSocket(`ws://127.0.0.1:${agentPort}/ws`, {
headers: { Origin: 'chrome-extension://test-extension-id', Cookie: `gstack_pty=${token}` },
} as any);
const events: Array<{ type: string; [key: string]: any }> = [];
let output = '';
let closed: number | null = null;
ws.addEventListener('message', (event: any) => {
if (typeof event.data === 'string') events.push(JSON.parse(event.data));
else {
const chunk = new TextDecoder().decode(event.data);
output += chunk;
events.push({ type: 'output', text: chunk });
}
});
ws.addEventListener('close', event => { closed = event.code; events.push({ type: 'closed', code: event.code }); });
await new Promise<void>((resolve, reject) => {
const timer = setTimeout(() => reject(new Error('ws never opened')), 5000);
ws.addEventListener('open', () => { clearTimeout(timer); resolve(); });
ws.addEventListener('error', () => { clearTimeout(timer); reject(new Error('ws error')); });
});
return { ws, events, output: () => output, closed: () => closed };
}
test('restart closes the old socket and grants a fresh child only to its replacement', async () => {
const sessionId = 'owned-restart-session';
const old = await attach(sessionId, 'owned-restart-old-token-long-enough');
let replacement: Awaited<ReturnType<typeof attach>> | undefined;
try {
old.ws.send(new TextEncoder().encode("printf 'restart-%s:%s\\n' old $$\n"));
await until(() => /restart-old:\d+\r?\n/.test(old.output()), 'old child output');
const oldPid = /restart-old:(\d+)\r?\n/.exec(old.output())![1];
const response = await internal('restart', { sessionId });
expect(response.status).toBe(200);
expect(await response.json()).toEqual({ killed: 1 });
// A message can already be queued while the close handshake completes.
try { old.ws.send(new TextEncoder().encode("printf 'restart-%s\\n' forbidden\n")); } catch {}
await until(() => old.closed() !== null, 'old socket close');
expect(old.closed()).toBe(4001);
expect(old.output()).not.toContain('restart-forbidden');
replacement = await attach(sessionId, 'owned-restart-new-token-long-enough');
replacement.ws.send(new TextEncoder().encode("printf 'restart-%s:%s\\n' new $$\nexit\n"));
await until(() => replacement!.closed() !== null, 'replacement completion');
expect(replacement.output()).toContain('restart-new:');
const newPid = /restart-new:(\d+)/.exec(replacement.output())?.[1];
expect(newPid).toBeDefined();
expect(newPid).not.toBe(oldPid);
expect(replacement.events.find(event => event.type === 'pty-exit')?.process.exitCode).toBe(0);
expect(old.output()).not.toContain('restart-new:');
} finally {
try { old.ws.close(1000); } catch {}
try { replacement?.ws.close(1000); } catch {}
await internal('restart', { sessionId });
}
});
test('replacement attachment ignores stale input and survives the old socket close', async () => {
const sessionId = 'owned-overlapping-attachment-session';
const oldToken = 'owned-overlapping-old-token-long-enough';
const old = await attach(sessionId, oldToken);
let replacement: Awaited<ReturnType<typeof attach>> | undefined;
try {
old.ws.send(new TextEncoder().encode("printf 'overlap-%s:%s\\n' original $$\n"));
await until(() => /overlap-original:\d+\r?\n/.test(old.output()), 'original child output');
const pid = /overlap-original:(\d+)\r?\n/.exec(old.output())![1];
// Reattach while the original is still open. The replay proves open()
// has replaced liveWs before we deliver the stale socket's final input.
replacement = await attach(sessionId, 'owned-overlapping-new-token-long-enough');
await until(() => replacement!.events.some(event => event.type === 'reattach-begin')
&& replacement!.output().includes(`overlap-original:${pid}`), 'replacement replay');
expect(old.ws.readyState).toBe(WebSocket.OPEN);
old.ws.send(new TextEncoder().encode("printf 'overlap-%s\\n' forbidden\n"));
old.ws.close(1000);
// Frames on the old connection are ordered: its close follows the late
// input. No guessed sleep is needed before probing replacement ownership.
await until(() => old.closed() !== null, 'stale socket close');
expect(old.closed()).toBe(1000);
expect(replacement.closed()).toBeNull();
const revoked = await fetch(`http://127.0.0.1:${agentPort}/ws`, {
headers: { Origin: 'chrome-extension://test-extension-id', Cookie: `gstack_pty=${oldToken}` },
});
expect(revoked.status).toBe(401);
replacement.ws.send(new TextEncoder().encode("printf 'overlap-%s:%s\\n' current $$\nexit\n"));
await until(() => replacement!.closed() !== null, 'replacement child completion');
expect(replacement.output()).toContain(`overlap-current:${pid}`);
expect(replacement.output()).not.toContain('overlap-forbidden');
expect(replacement.events.find(event => event.type === 'pty-exit')?.process.exitCode).toBe(0);
expect(replacement.closed()).toBe(1000);
expect(old.output()).not.toContain('overlap-current:');
} finally {
try { old.ws.close(1000); } catch {}
try { replacement?.ws.close(1000); } catch {}
await internal('restart', { sessionId });
}
});
test('completion while detached replays final output before closing without a new child', async () => {
const sessionId = 'owned-detached-completion-session';
const release = path.join(stateDir, 'release-detached-child');
const quotedRelease = `'${release.replace(/'/g, "'\\''")}'`;
const old = await attach(sessionId, 'owned-detached-old-token-long-enough');
let replacement: Awaited<ReturnType<typeof attach>> | undefined;
try {
const command = `printf 'detached-%s:%s\\n' start $$; while [ ! -e ${quotedRelease} ]; do sleep 0.01; done; printf 'detached-%s:%s\\n' final $$; exit\n`;
old.ws.send(new TextEncoder().encode(command));
await until(() => /detached-start:\d+\r?\n/.test(old.output()), 'child waiting at release barrier');
const pid = /detached-start:(\d+)\r?\n/.exec(old.output())![1];
old.ws.close(1001);
await until(() => old.closed() !== null, 'detach handshake');
fs.writeFileSync(release, 'release\n');
// Authenticated completion state proves BOTH native callbacks happened
// while detached; no guessed post-exit sleep or early reattachment.
await until(async () => {
const health = await fetch(`http://127.0.0.1:${agentPort}/internal/healthz`, {
headers: { Authorization: `Bearer ${internalToken}` },
});
return (await health.json()).completedSessions === 1;
}, 'detached completion');
replacement = await attach(sessionId, 'owned-detached-new-token-long-enough');
await until(() => replacement!.closed() !== null, 'replayed completion close');
const kinds = replacement.events.map(event => event.type);
expect(kinds).toEqual(['reattach-begin', 'output', 'pty-exit', 'closed']);
expect(replacement.output()).toContain(`detached-start:${pid}`);
expect(replacement.output()).toContain(`detached-final:${pid}`);
const completion = replacement.events.find(event => event.type === 'pty-exit')!;
expect(completion.process.exitCode).toBe(0);
expect(completion.drainTimedOut).toBe(false);
expect(completion.exitTimedOut).toBe(false);
expect(completion.reader).not.toBeNull();
expect(replacement.closed()).toBe(1000);
} finally {
fs.writeFileSync(release, 'release\n');
try { old.ws.close(1000); } catch {}
try { replacement?.ws.close(1000); } catch {}
await internal('restart', { sessionId });
}
});
});