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The effective pairing default lived in two places: the CLI omitted scopes unless --restrict was passed, and the server filled in its own literal. handlePairAgent now always sends an explicit scopes list and both sides reference one exported constant, DEFAULT_PAIR_SCOPES, so the default cannot silently drift again (pinned by a server-auth source tripwire). Three input traps closed in the same surface: - Bare --restrict (or --restrict swallowing the next flag) parsed as "no restriction" and silently granted FULL access, the opposite of the user's intent. validatePairAgentFlags rejects it pre-server, before any consent gate, so an arg error never boots a daemon. - A scopes list could smuggle the control scope past the explicit flag: --restrict "read,control" minted a control-scoped session with no --control. /pair now 400s on control in a scopes list without the control flag, and the CLI points the user at --control. - Option typos validated only at exchange time: createSetupKey stored any scope string and any rateLimit, so /pair returned 200 with a poisoned setup key whose failure surfaced to the REMOTE agent at /connect as a misleading "Invalid request body". Shared validation now runs in both creators and throws typed InvalidScopeError; /pair and /token 400 with the message, naming the bad scope or negative rateLimit. Also `opts.rateLimit || 10` became `?? 10` so the documented "0 = unlimited" survives the /pair path. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
524 lines
20 KiB
TypeScript
524 lines
20 KiB
TypeScript
import { describe, it, expect, beforeEach } from 'bun:test';
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import {
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initRegistry, getRootToken, isRootToken,
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createToken, createSetupKey, exchangeSetupKey,
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validateToken, checkScope, checkDomain, checkRate,
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revokeToken, rotateRoot, listTokens, recordCommand,
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serializeRegistry, restoreRegistry, checkConnectRateLimit,
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SCOPE_READ, SCOPE_WRITE, SCOPE_ADMIN, SCOPE_CONTROL, SCOPE_META,
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DEFAULT_PAIR_SCOPES, InvalidScopeError,
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__resetRegistry,
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} from '../src/token-registry';
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describe('token-registry', () => {
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beforeEach(() => {
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// __resetRegistry zeroes rootToken so the new initRegistry mismatch guard
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// doesn't fire on the immediate initRegistry call. rotateRoot would leave
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// a UUID in rootToken and the guard would throw.
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__resetRegistry();
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initRegistry('root-token-for-tests');
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});
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describe('root token', () => {
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it('identifies root token correctly', () => {
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expect(isRootToken('root-token-for-tests')).toBe(true);
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expect(isRootToken('not-root')).toBe(false);
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});
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it('validates root token with full scopes', () => {
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const info = validateToken('root-token-for-tests');
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expect(info).not.toBeNull();
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expect(info!.clientId).toBe('root');
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expect(info!.scopes).toEqual(['read', 'write', 'admin', 'meta', 'control']);
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expect(info!.rateLimit).toBe(0);
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});
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// Regression: the previous fix did a JS string-length short-circuit before
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// crypto.timingSafeEqual, but the buffers passed in are UTF-8. A multibyte
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// input with matching string length but mismatched byte length would slip
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// past the check and crash inside timingSafeEqual. Auth path must return
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// false, not error.
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it('returns false for a multibyte token whose string length matches but UTF-8 byte length differs', () => {
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// 'root-token-for-tests' is 20 ASCII chars (20 bytes).
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// 'é'.repeat(20) is 20 chars but 40 UTF-8 bytes.
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const multibyte = 'é'.repeat(20);
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expect(multibyte.length).toBe('root-token-for-tests'.length);
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expect(Buffer.byteLength(multibyte, 'utf8')).not.toBe(
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Buffer.byteLength('root-token-for-tests', 'utf8'),
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);
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expect(() => isRootToken(multibyte)).not.toThrow();
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expect(isRootToken(multibyte)).toBe(false);
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});
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it('returns false for a token that differs only in length (same prefix)', () => {
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expect(isRootToken('root-token-for-tests-extra')).toBe(false);
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expect(isRootToken('root-token-for-test')).toBe(false);
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});
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it('returns false for a same-length token that differs only in the last byte', () => {
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const expected = 'root-token-for-tests';
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const wrong = expected.slice(0, -1) + (expected.endsWith('x') ? 'y' : 'x');
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expect(wrong.length).toBe(expected.length);
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expect(isRootToken(wrong)).toBe(false);
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});
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it('returns false for the empty string even when root is set', () => {
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expect(isRootToken('')).toBe(false);
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});
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});
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describe('createToken', () => {
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it('creates a session token with defaults', () => {
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const info = createToken({ clientId: 'test-agent' });
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expect(info.token).toStartWith('gsk_sess_');
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expect(info.clientId).toBe('test-agent');
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expect(info.type).toBe('session');
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expect(info.scopes).toEqual(['read', 'write']);
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expect(info.tabPolicy).toBe('own-only');
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expect(info.rateLimit).toBe(10);
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expect(info.expiresAt).not.toBeNull();
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expect(info.commandCount).toBe(0);
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});
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it('creates token with custom scopes', () => {
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const info = createToken({
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clientId: 'admin-agent',
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scopes: ['read', 'write', 'admin'],
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rateLimit: 20,
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expiresSeconds: 3600,
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});
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expect(info.scopes).toEqual(['read', 'write', 'admin']);
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expect(info.rateLimit).toBe(20);
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});
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it('creates token with indefinite expiry', () => {
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const info = createToken({
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clientId: 'forever',
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expiresSeconds: null,
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});
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expect(info.expiresAt).toBeNull();
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});
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it('overwrites existing token for same clientId', () => {
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const first = createToken({ clientId: 'agent-1' });
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const second = createToken({ clientId: 'agent-1' });
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expect(first.token).not.toBe(second.token);
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expect(validateToken(first.token)).toBeNull();
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expect(validateToken(second.token)).not.toBeNull();
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});
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});
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describe('setup key exchange', () => {
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it('creates setup key with 5-minute expiry', () => {
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const setup = createSetupKey({});
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expect(setup.token).toStartWith('gsk_setup_');
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expect(setup.type).toBe('setup');
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expect(setup.usesRemaining).toBe(1);
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});
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it('exchanges setup key for session token', () => {
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const setup = createSetupKey({ clientId: 'remote-1' });
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const session = exchangeSetupKey(setup.token);
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expect(session).not.toBeNull();
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expect(session!.token).toStartWith('gsk_sess_');
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expect(session!.clientId).toBe('remote-1');
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expect(session!.type).toBe('session');
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});
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it('setup key is single-use', () => {
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const setup = createSetupKey({});
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exchangeSetupKey(setup.token);
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// Second exchange with 0 commands should be idempotent
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const second = exchangeSetupKey(setup.token);
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expect(second).not.toBeNull(); // idempotent — session has 0 commands
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});
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it('idempotent exchange fails after commands are executed', () => {
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const setup = createSetupKey({});
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const session = exchangeSetupKey(setup.token);
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// Simulate command execution
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recordCommand(session!.token);
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// Now re-exchange should fail
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const retry = exchangeSetupKey(setup.token);
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expect(retry).toBeNull();
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});
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it('rejects expired setup key', () => {
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const setup = createSetupKey({});
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// Manually expire it
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const info = validateToken(setup.token);
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if (info) {
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(info as any).expiresAt = new Date(Date.now() - 1000).toISOString();
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}
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const session = exchangeSetupKey(setup.token);
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expect(session).toBeNull();
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});
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it('rejects unknown setup key', () => {
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expect(exchangeSetupKey('gsk_setup_nonexistent')).toBeNull();
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});
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it('rejects session token as setup key', () => {
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const session = createToken({ clientId: 'test' });
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expect(exchangeSetupKey(session.token)).toBeNull();
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});
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});
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describe('validateToken', () => {
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it('validates active session token', () => {
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const created = createToken({ clientId: 'valid' });
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const info = validateToken(created.token);
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expect(info).not.toBeNull();
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expect(info!.clientId).toBe('valid');
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});
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it('rejects unknown token', () => {
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expect(validateToken('gsk_sess_unknown')).toBeNull();
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});
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it('rejects expired token', async () => {
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// expiresSeconds: 0 creates a token that expires at creation time
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const created = createToken({ clientId: 'expiring', expiresSeconds: 0 });
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// Wait 1ms so the expiry is definitively in the past
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await new Promise(r => setTimeout(r, 2));
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expect(validateToken(created.token)).toBeNull();
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});
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});
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describe('checkScope', () => {
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it('allows read commands with read scope', () => {
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const info = createToken({ clientId: 'reader', scopes: ['read'] });
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expect(checkScope(info, 'snapshot')).toBe(true);
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expect(checkScope(info, 'text')).toBe(true);
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expect(checkScope(info, 'html')).toBe(true);
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});
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it('denies write commands with read-only scope', () => {
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const info = createToken({ clientId: 'reader', scopes: ['read'] });
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expect(checkScope(info, 'click')).toBe(false);
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expect(checkScope(info, 'goto')).toBe(false);
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expect(checkScope(info, 'fill')).toBe(false);
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});
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it('denies admin commands without admin scope', () => {
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const info = createToken({ clientId: 'normal', scopes: ['read', 'write'] });
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expect(checkScope(info, 'eval')).toBe(false);
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expect(checkScope(info, 'js')).toBe(false);
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expect(checkScope(info, 'cookies')).toBe(false);
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expect(checkScope(info, 'storage')).toBe(false);
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});
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it('allows admin commands with admin scope', () => {
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const info = createToken({ clientId: 'admin', scopes: ['read', 'write', 'admin'] });
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expect(checkScope(info, 'eval')).toBe(true);
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expect(checkScope(info, 'cookies')).toBe(true);
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});
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it('allows chain with meta scope', () => {
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const info = createToken({ clientId: 'meta', scopes: ['read', 'meta'] });
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expect(checkScope(info, 'chain')).toBe(true);
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});
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it('denies chain without meta scope', () => {
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const info = createToken({ clientId: 'no-meta', scopes: ['read'] });
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expect(checkScope(info, 'chain')).toBe(false);
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});
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it('root token allows everything', () => {
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const root = validateToken('root-token-for-tests')!;
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expect(checkScope(root, 'eval')).toBe(true);
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expect(checkScope(root, 'state')).toBe(true);
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expect(checkScope(root, 'stop')).toBe(true);
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});
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it('denies destructive commands without admin scope', () => {
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const info = createToken({ clientId: 'normal', scopes: ['read', 'write'] });
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expect(checkScope(info, 'useragent')).toBe(false);
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expect(checkScope(info, 'state')).toBe(false);
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expect(checkScope(info, 'handoff')).toBe(false);
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expect(checkScope(info, 'stop')).toBe(false);
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});
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});
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describe('checkDomain', () => {
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it('allows any domain when no restrictions', () => {
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const info = createToken({ clientId: 'unrestricted' });
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expect(checkDomain(info, 'https://evil.com')).toBe(true);
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});
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it('matches exact domain', () => {
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const info = createToken({ clientId: 'exact', domains: ['myapp.com'] });
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expect(checkDomain(info, 'https://myapp.com/page')).toBe(true);
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expect(checkDomain(info, 'https://evil.com')).toBe(false);
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});
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it('matches wildcard domain', () => {
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const info = createToken({ clientId: 'wild', domains: ['*.myapp.com'] });
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expect(checkDomain(info, 'https://api.myapp.com/v1')).toBe(true);
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expect(checkDomain(info, 'https://myapp.com')).toBe(true);
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expect(checkDomain(info, 'https://evil.com')).toBe(false);
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});
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it('root allows all domains', () => {
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const root = validateToken('root-token-for-tests')!;
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expect(checkDomain(root, 'https://anything.com')).toBe(true);
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});
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it('denies invalid URLs', () => {
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const info = createToken({ clientId: 'strict', domains: ['myapp.com'] });
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expect(checkDomain(info, 'not-a-url')).toBe(false);
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});
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});
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describe('checkRate', () => {
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it('allows requests under limit', () => {
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const info = createToken({ clientId: 'rated', rateLimit: 10 });
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for (let i = 0; i < 10; i++) {
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expect(checkRate(info).allowed).toBe(true);
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}
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});
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it('denies requests over limit', () => {
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const info = createToken({ clientId: 'limited', rateLimit: 3 });
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checkRate(info);
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checkRate(info);
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checkRate(info);
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const result = checkRate(info);
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expect(result.allowed).toBe(false);
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expect(result.retryAfterMs).toBeGreaterThan(0);
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});
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it('root is unlimited', () => {
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const root = validateToken('root-token-for-tests')!;
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for (let i = 0; i < 100; i++) {
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expect(checkRate(root).allowed).toBe(true);
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}
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});
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});
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describe('revokeToken', () => {
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it('revokes existing token', () => {
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const info = createToken({ clientId: 'to-revoke' });
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// revokeToken returns the delete count, not a boolean (truthy for callers)
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expect(revokeToken('to-revoke')).toBe(1);
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expect(validateToken(info.token)).toBeNull();
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});
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it('returns 0 for non-existent client', () => {
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expect(revokeToken('no-such-client')).toBe(0);
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});
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// Regression: revokeToken deleted only the FIRST matching Map entry. The
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// spent setup key (kept for idempotent re-exchange) is inserted before the
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// session token, so it shadowed the session: revoke reported success while
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// the live session survived and DELETE /token returned a false 200.
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it('revokes the session even when a spent setup key precedes it (shape a)', () => {
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const setup = createSetupKey({ clientId: 'shadowed' });
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const session = exchangeSetupKey(setup.token)!;
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expect(revokeToken('shadowed')).toBe(2);
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expect(validateToken(session.token)).toBeNull();
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expect(exchangeSetupKey(setup.token)).toBeNull();
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});
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// Regression: an UNSPENT setup key created after the session survived the
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// old first-match revoke, so a "revoked" agent could POST /connect and
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// mint a brand-new session within the key's 5-minute validity window.
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it('closes the re-grant hole: unspent setup key dies with the revoke (shape b)', () => {
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const first = createSetupKey({ clientId: 'regrant' });
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exchangeSetupKey(first.token);
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const second = createSetupKey({ clientId: 'regrant' });
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expect(revokeToken('regrant')).toBe(3);
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expect(exchangeSetupKey(second.token)).toBeNull();
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expect(listTokens().filter(t => t.clientId === 'regrant')).toHaveLength(0);
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});
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it('revokes multiple pending setup keys for one clientId in a single call (shape c)', () => {
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const keys = [1, 2, 3].map(() => createSetupKey({ clientId: 'multi' }));
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expect(revokeToken('multi')).toBe(3);
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for (const k of keys) expect(exchangeSetupKey(k.token)).toBeNull();
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expect(revokeToken('multi')).toBe(0); // idempotent: second call finds nothing
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});
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it('does not touch other clients\' tokens', () => {
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const bystander = createToken({ clientId: 'bystander' });
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createSetupKey({ clientId: 'target' });
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createToken({ clientId: 'target' });
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expect(revokeToken('target')).toBe(2);
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expect(validateToken(bystander.token)).not.toBeNull();
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});
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});
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describe('pair defaults and option validation', () => {
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it('DEFAULT_PAIR_SCOPES is exactly read,write,admin,meta (b73f3644: the ceremony is the trust boundary)', () => {
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expect([...DEFAULT_PAIR_SCOPES]).toEqual(['read', 'write', 'admin', 'meta']);
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});
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// Regression: only createToken validated options, so a scope typo minted
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// a poisoned setup key at /pair and surfaced to the REMOTE agent at
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// /connect as a misleading "Invalid request body".
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it('createSetupKey rejects an unknown scope with InvalidScopeError naming it', () => {
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expect(() => createSetupKey({ scopes: ['raed' as never] }))
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.toThrow(InvalidScopeError);
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expect(() => createSetupKey({ scopes: ['raed' as never] }))
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.toThrow('Invalid scope: raed');
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});
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it('createSetupKey rejects a negative rateLimit', () => {
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expect(() => createSetupKey({ rateLimit: -5 })).toThrow(InvalidScopeError);
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});
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// Regression: `opts.rateLimit || 10` coerced the documented "0 = unlimited"
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// into 10 on the /pair path while /token honored it.
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it('createSetupKey preserves rateLimit 0 (unlimited)', () => {
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const setup = createSetupKey({ rateLimit: 0 });
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expect(setup.rateLimit).toBe(0);
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const session = exchangeSetupKey(setup.token)!;
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expect(session.rateLimit).toBe(0);
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});
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});
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describe('rotateRoot', () => {
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it('generates new root and invalidates all tokens', () => {
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const oldRoot = getRootToken();
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createToken({ clientId: 'will-die' });
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const newRoot = rotateRoot();
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expect(newRoot).not.toBe(oldRoot);
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expect(isRootToken(newRoot)).toBe(true);
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expect(isRootToken(oldRoot)).toBe(false);
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expect(listTokens()).toHaveLength(0);
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});
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});
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describe('listTokens', () => {
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it('lists active session tokens', () => {
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createToken({ clientId: 'a' });
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createToken({ clientId: 'b' });
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createSetupKey({}); // setup keys not listed
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expect(listTokens()).toHaveLength(2);
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});
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it('includeSetup lists pending setup keys but hides spent ones', () => {
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createToken({ clientId: 'sess' });
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createSetupKey({ clientId: 'pending' });
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const spent = createSetupKey({ clientId: 'spent' });
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exchangeSetupKey(spent.token);
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expect(listTokens().map(t => t.clientId).sort()).toEqual(['sess', 'spent']);
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const withSetup = listTokens({ includeSetup: true });
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// Pending key = a live grant the operator must see; the SPENT key is
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// re-exchange bookkeeping for the already-listed session and stays hidden.
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expect(withSetup.filter(t => t.type === 'setup').map(t => t.clientId)).toEqual(['pending']);
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});
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});
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describe('serialization', () => {
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it('serializes and restores registry', () => {
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createToken({ clientId: 'persist-1', scopes: ['read'] });
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createToken({ clientId: 'persist-2', scopes: ['read', 'write', 'admin'] });
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const state = serializeRegistry();
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expect(Object.keys(state.agents)).toHaveLength(2);
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// Clear and restore. __resetRegistry instead of rotateRoot+initRegistry
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// so the new initRegistry mismatch guard doesn't fire — rotateRoot
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// leaves a UUID in rootToken and initRegistry('new-root') would throw.
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__resetRegistry();
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initRegistry('new-root');
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restoreRegistry(state);
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const restored = listTokens();
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expect(restored).toHaveLength(2);
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expect(restored.find(t => t.clientId === 'persist-1')?.scopes).toEqual(['read']);
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});
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});
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describe('connect rate limit', () => {
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it('allows up to 3 attempts per minute', () => {
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// Reset by creating a new module scope (can't easily reset static state)
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// Just verify the function exists and returns boolean
|
|
const result = checkConnectRateLimit();
|
|
expect(typeof result).toBe('boolean');
|
|
});
|
|
});
|
|
|
|
describe('scope coverage', () => {
|
|
it('every command in commands.ts is covered by a scope', () => {
|
|
// Import the command sets to verify coverage
|
|
const allInScopes = new Set([
|
|
...SCOPE_READ, ...SCOPE_WRITE, ...SCOPE_ADMIN, ...SCOPE_CONTROL, ...SCOPE_META,
|
|
]);
|
|
// chain is a special case (checked via meta scope but dispatches subcommands)
|
|
allInScopes.add('chain');
|
|
|
|
// These commands don't need scope coverage (server control, handled separately)
|
|
const exemptFromScope = new Set(['status', 'snapshot']);
|
|
// snapshot appears in both READ and META (it's read-safe)
|
|
|
|
// Verify dangerous commands are in admin scope
|
|
expect(SCOPE_ADMIN.has('eval')).toBe(true);
|
|
expect(SCOPE_ADMIN.has('js')).toBe(true);
|
|
expect(SCOPE_ADMIN.has('cookies')).toBe(true);
|
|
expect(SCOPE_ADMIN.has('storage')).toBe(true);
|
|
expect(SCOPE_ADMIN.has('useragent')).toBe(true);
|
|
// Browser-wide destructive commands moved to SCOPE_CONTROL
|
|
expect(SCOPE_CONTROL.has('state')).toBe(true);
|
|
expect(SCOPE_CONTROL.has('handoff')).toBe(true);
|
|
expect(SCOPE_CONTROL.has('stop')).toBe(true);
|
|
expect(SCOPE_CONTROL.has('restart')).toBe(true);
|
|
expect(SCOPE_CONTROL.has('disconnect')).toBe(true);
|
|
|
|
// Verify safe read commands are NOT in admin
|
|
expect(SCOPE_ADMIN.has('text')).toBe(false);
|
|
expect(SCOPE_ADMIN.has('snapshot')).toBe(false);
|
|
expect(SCOPE_ADMIN.has('screenshot')).toBe(false);
|
|
});
|
|
});
|
|
|
|
// ─── CSO Fix #4: Input validation ──────────────────────────────
|
|
describe('Input validation (CSO finding #4)', () => {
|
|
it('rejects invalid scope values', () => {
|
|
expect(() => createToken({
|
|
clientId: 'test-invalid-scope',
|
|
scopes: ['read', 'bogus' as any],
|
|
})).toThrow('Invalid scope: bogus');
|
|
});
|
|
|
|
it('rejects negative rateLimit', () => {
|
|
expect(() => createToken({
|
|
clientId: 'test-neg-rate',
|
|
rateLimit: -1,
|
|
})).toThrow('rateLimit must be >= 0');
|
|
});
|
|
|
|
it('rejects negative expiresSeconds', () => {
|
|
expect(() => createToken({
|
|
clientId: 'test-neg-expire',
|
|
expiresSeconds: -100,
|
|
})).toThrow('expiresSeconds must be >= 0 or null');
|
|
});
|
|
|
|
it('accepts null expiresSeconds (indefinite)', () => {
|
|
const token = createToken({
|
|
clientId: 'test-indefinite',
|
|
expiresSeconds: null,
|
|
});
|
|
expect(token.expiresAt).toBeNull();
|
|
});
|
|
|
|
it('accepts zero rateLimit (unlimited)', () => {
|
|
const token = createToken({
|
|
clientId: 'test-unlimited-rate',
|
|
rateLimit: 0,
|
|
});
|
|
expect(token.rateLimit).toBe(0);
|
|
});
|
|
|
|
it('accepts valid scopes', () => {
|
|
const token = createToken({
|
|
clientId: 'test-valid-scopes',
|
|
scopes: ['read', 'write', 'admin', 'meta'],
|
|
});
|
|
expect(token.scopes).toEqual(['read', 'write', 'admin', 'meta']);
|
|
});
|
|
});
|
|
});
|