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dashcaddy/dashcaddy-api/__tests__/credential-manager.test.js
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Hermes eb2bab7a96
CI / Test & Lint (push) Canceled after 0s
CI / Security audit (push) Canceled after 0s
refactor(persistence): migrate credential-manager to canonical atomic-write util (DC-106) [glm-grade=B]
All three writeFileSync sites in the encrypted-credentials manager now
delegate to src/utils/atomic-write.js atomicWriteJSON — rotateEncryptionKey
save, _ensureFileExists bootstrap, and the _lockedUpdate commit under the
proper-lockfile lock. A crash can no longer tear credentials.json
mid-write: power loss through the old path could leave an empty/short
file and silently drop every stored credential (DNS provider tokens etc).
Lock-safety pre-study: proper-lockfile only stats its own sibling .lock
dir, never the target file, so the rename swap cannot trip ECOMPROMISED.

Test mock extended to the fd-level fs API (openSync/writeSync/
fsyncSync/closeSync/renameSync + fdMap/closedTmp state) so the canonical
path is exercised end-to-end under the mock; write assertions moved from
writeFileSync.mock.calls to destination-state reads. New DC-106 pins:
wx+0600+fsync+rename discipline, plaintext-secret canary never on disk,
fd-lifecycle order fsync->close->rename via invocationCallOrder, and
atomic _ensureFileExists create at 0600. Eighth store migrated
(DC-099..DC-105 preceded).

Judge: GLM-5.3 cold read, round-1 B/ship (deleg_b3c038c2).
URN urn:ump:vscequdet7wt5un7jhtl2nlg6cfkabsbazy5m2tjnyyguu5wstxa
(readback verified: grade B, topic codex-judge-verdict).
Sole finding is pre-existing and non-blocking: rotateEncryptionKey
persists the new key before writing rotated creds (crash window) —
queued as DC-107 follow-up.
Full suite: 121 suites / 2783 tests green.
2026-08-23 03:06:58 -07:00

505 lines
19 KiB
JavaScript

// Mock dependencies before requiring the module
jest.mock('../src/security/keychain-manager', () => ({
available: false,
store: jest.fn().mockResolvedValue(false),
retrieve: jest.fn().mockResolvedValue(null),
delete: jest.fn().mockResolvedValue(true),
}));
jest.mock('../src/security/crypto-utils', () => ({
encrypt: jest.fn(data => `enc:tag:${Buffer.from(String(data)).toString('base64')}`),
decrypt: jest.fn(data => {
const parts = data.split(':');
return Buffer.from(parts[2], 'base64').toString('utf8');
}),
isEncrypted: jest.fn(data => typeof data === 'string' && data.startsWith('enc:')),
loadOrCreateKey: jest.fn(() => Buffer.alloc(32, 'k')),
rotateKey: jest.fn(() => ({ oldKey: Buffer.alloc(32, 'k'), newKey: Buffer.alloc(32, 'n') })),
}));
jest.mock('proper-lockfile', () => ({
lock: jest.fn().mockResolvedValue(jest.fn().mockResolvedValue()),
unlock: jest.fn().mockResolvedValue(),
check: jest.fn().mockResolvedValue(false),
}));
// DC-106: fd-level mock exercising the canonical atomic-write path
// (openSync('wx') -> writeSync -> fsyncSync -> closeSync -> renameSync).
const mockFsState = {
files: {}, // path -> content (destination state after rename)
fdMap: new Map(), // open fd -> { p, content }
closedTmp: new Map(), // closed-but-not-yet-renamed tmp path -> content
openedWith: [], // { p, flags, mode } per openSync call
nextFd: 0,
};
jest.mock('fs', () => ({
existsSync: jest.fn((p) => mockFsState.files[p] !== undefined),
readFileSync: jest.fn((p) => {
if (mockFsState.files[p] === undefined) {
const e = new Error(`ENOENT: ${p}`);
e.code = 'ENOENT';
throw e;
}
return mockFsState.files[p];
}),
mkdirSync: jest.fn(),
// DC-105/DC-106 canonical atomic-write path (atomic-write.js).
openSync: jest.fn((p, flags, mode) => {
mockFsState.openedWith.push({ p, flags, mode });
mockFsState.nextFd += 1;
mockFsState.fdMap.set(mockFsState.nextFd, { p, content: '' });
return mockFsState.nextFd;
}),
writeSync: jest.fn((fd, content) => {
const rec = mockFsState.fdMap.get(fd);
if (!rec) throw new Error(`EBADF: fd ${fd}`);
rec.content += content;
}),
fsyncSync: jest.fn(),
closeSync: jest.fn((fd) => {
const rec = mockFsState.fdMap.get(fd);
if (rec) {
mockFsState.closedTmp.set(rec.p, rec.content);
mockFsState.fdMap.delete(fd);
}
}),
renameSync: jest.fn((src, dst) => {
const content = mockFsState.closedTmp.has(src)
? mockFsState.closedTmp.get(src)
: mockFsState.files[src];
mockFsState.files[dst] = content;
mockFsState.closedTmp.delete(src);
delete mockFsState.files[src];
}),
unlinkSync: jest.fn(),
}));
// DC-106: mirror the production path resolution so assertions read the same
// destination the manager writes to, regardless of env overrides.
const path = require('path');
const platformPaths = require('../platform-paths');
const CREDENTIALS_FILE = process.env.CREDENTIALS_FILE
|| path.join(platformPaths.dataDir, 'credentials.json');
describe('CredentialManager', () => {
let credentialManager;
let fs, lockfile, keychainManager, cryptoUtils;
beforeEach(() => {
jest.resetModules();
// Re-get mocked modules
fs = require('fs');
lockfile = require('proper-lockfile');
keychainManager = require('../src/security/keychain-manager');
cryptoUtils = require('../src/security/crypto-utils');
// Reset mock implementations and fd-level atomic-write state
for (const k of Object.keys(mockFsState.files)) delete mockFsState.files[k];
mockFsState.fdMap.clear();
mockFsState.closedTmp.clear();
mockFsState.openedWith.length = 0;
mockFsState.nextFd = 0;
// Default world: credentials.json exists with empty payload (the previous
// mock's existsSync=true / readFileSync='{}' semantics, now truthful).
mockFsState.files[CREDENTIALS_FILE] = '{}';
fs.existsSync.mockImplementation((p) => mockFsState.files[p] !== undefined);
fs.readFileSync.mockImplementation((p) => {
if (mockFsState.files[p] === undefined) {
const e = new Error(`ENOENT: ${p}`);
e.code = 'ENOENT';
throw e;
}
return mockFsState.files[p];
});
fs.openSync.mockClear();
fs.writeSync.mockClear();
fs.fsyncSync.mockClear();
fs.closeSync.mockClear();
fs.renameSync.mockClear();
fs.unlinkSync.mockClear();
lockfile.lock.mockResolvedValue(jest.fn().mockResolvedValue());
keychainManager.available = false;
credentialManager = require('../src/managers/credential-manager');
credentialManager.cache.clear();
});
describe('store', () => {
it('stores value in encrypted file when keychain unavailable', async () => {
const result = await credentialManager.store('test.key', 'secret-value');
expect(result).toBe(true);
expect(cryptoUtils.encrypt).toHaveBeenCalledWith('secret-value');
expect(fs.renameSync).toHaveBeenCalled(); // DC-106: canonical write landed
});
it('stores value in keychain when available', async () => {
keychainManager.available = true;
// Need to get a fresh instance that sees available=true
jest.resetModules();
fs = require('fs');
for (const k of Object.keys(mockFsState.files)) delete mockFsState.files[k];
mockFsState.fdMap.clear();
mockFsState.closedTmp.clear();
mockFsState.openedWith.length = 0;
lockfile = require('proper-lockfile');
lockfile.lock.mockResolvedValue(jest.fn().mockResolvedValue());
keychainManager = require('../src/security/keychain-manager');
keychainManager.available = true;
keychainManager.store.mockResolvedValue(true);
credentialManager = require('../src/managers/credential-manager');
const result = await credentialManager.store('test.key', 'value');
expect(result).toBe(true);
expect(keychainManager.store).toHaveBeenCalledWith('test.key', 'value');
});
it('falls back to file if keychain store fails', async () => {
keychainManager.available = true;
jest.resetModules();
fs = require('fs');
for (const k of Object.keys(mockFsState.files)) delete mockFsState.files[k];
mockFsState.fdMap.clear();
mockFsState.closedTmp.clear();
mockFsState.openedWith.length = 0;
lockfile = require('proper-lockfile');
lockfile.lock.mockResolvedValue(jest.fn().mockResolvedValue());
keychainManager = require('../src/security/keychain-manager');
keychainManager.available = true;
keychainManager.store.mockResolvedValue(false);
cryptoUtils = require('../src/security/crypto-utils');
credentialManager = require('../src/managers/credential-manager');
const result = await credentialManager.store('test.key', 'value');
expect(result).toBe(true);
expect(cryptoUtils.encrypt).toHaveBeenCalled();
});
it('rejects empty key', async () => {
const result = await credentialManager.store('', 'value');
expect(result).toBe(false);
});
it('rejects empty value', async () => {
const result = await credentialManager.store('key', '');
expect(result).toBe(false);
});
it('updates cache after storing', async () => {
await credentialManager.store('test.key', 'cached-value');
expect(credentialManager.cache.has('test.key')).toBe(true);
expect(credentialManager.cache.get('test.key').value).toBe('cached-value');
});
});
describe('retrieve', () => {
it('returns cached value within TTL', async () => {
credentialManager.cache.set('cached.key', {
value: 'cached-val',
exp: Date.now() + 60000
});
const result = await credentialManager.retrieve('cached.key');
expect(result).toBe('cached-val');
});
it('does not return expired cache entry', async () => {
credentialManager.cache.set('expired.key', {
value: 'old-val',
exp: Date.now() - 1000
});
// Set up file to return data
fs.readFileSync.mockReturnValue(JSON.stringify({
'expired.key': { value: 'enc:tag:' + Buffer.from('file-val').toString('base64') }
}));
const result = await credentialManager.retrieve('expired.key');
expect(result).toBe('file-val');
});
it('retrieves from encrypted file as fallback', async () => {
fs.readFileSync.mockReturnValue(JSON.stringify({
'file.key': { value: 'enc:tag:' + Buffer.from('secret').toString('base64') }
}));
const result = await credentialManager.retrieve('file.key');
expect(result).toBe('secret');
});
it('returns null when key not found', async () => {
fs.readFileSync.mockReturnValue('{}');
const result = await credentialManager.retrieve('missing.key');
expect(result).toBeNull();
});
it('returns null on error', async () => {
fs.existsSync.mockReturnValue(false);
fs.readFileSync.mockImplementation(() => { throw new Error('fail'); });
const result = await credentialManager.retrieve('broken.key');
expect(result).toBeNull();
});
});
describe('delete', () => {
it('removes from cache, keychain, and file', async () => {
credentialManager.cache.set('del.key', { value: 'x', exp: Date.now() + 60000 });
fs.readFileSync.mockReturnValue(JSON.stringify({ 'del.key': { value: 'x' } }));
const result = await credentialManager.delete('del.key');
expect(result).toBe(true);
expect(credentialManager.cache.has('del.key')).toBe(false);
});
it('returns false on error', async () => {
lockfile.lock.mockRejectedValue(new Error('lock fail'));
const result = await credentialManager.delete('fail.key');
expect(result).toBe(false);
});
});
describe('list', () => {
it('returns all keys from credentials file', async () => {
fs.readFileSync.mockReturnValue(JSON.stringify({
'key1': { value: 'a' },
'key2': { value: 'b' }
}));
const keys = await credentialManager.list();
expect(keys).toEqual(['key1', 'key2']);
});
it('returns empty array on error', async () => {
fs.existsSync.mockReturnValue(false);
const keys = await credentialManager.list();
expect(keys).toEqual([]);
});
});
describe('getMetadata', () => {
it('returns metadata for a credential', async () => {
fs.readFileSync.mockReturnValue(JSON.stringify({
'test.key': { value: 'x', metadata: { provider: 'cloudflare' } }
}));
const meta = await credentialManager.getMetadata('test.key');
expect(meta).toEqual({ provider: 'cloudflare' });
});
it('returns null when key not found', async () => {
fs.readFileSync.mockReturnValue('{}');
const meta = await credentialManager.getMetadata('missing');
expect(meta).toBeNull();
});
});
describe('_lockedUpdate', () => {
it('acquires lock, reads, applies update, writes, releases', async () => {
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
fs.readFileSync.mockReturnValue(JSON.stringify({ a: 1 }));
await credentialManager._lockedUpdate(creds => {
creds.b = 2;
return creds;
});
expect(lockfile.lock).toHaveBeenCalled();
const writtenData = JSON.parse(mockFsState.files[CREDENTIALS_FILE]);
expect(writtenData).toEqual({ a: 1, b: 2 });
expect(releaseFn).toHaveBeenCalled();
});
it('throws on ELOCKED error', async () => {
const error = new Error('locked');
error.code = 'ELOCKED';
lockfile.lock.mockRejectedValue(error);
await expect(credentialManager._lockedUpdate(() => ({}))).rejects.toThrow('locked by another process');
});
it('releases lock even on error', async () => {
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
fs.readFileSync.mockReturnValue('{}');
await expect(
credentialManager._lockedUpdate(() => { throw new Error('update error'); })
).rejects.toThrow('update error');
expect(releaseFn).toHaveBeenCalled();
});
});
describe('rotateEncryptionKey', () => {
it('decrypts all credentials then re-encrypts with new key', async () => {
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
fs.readFileSync.mockReturnValue(JSON.stringify({
'key1': { value: 'enc:tag:' + Buffer.from('secret1').toString('base64'), metadata: {} }
}));
const result = await credentialManager.rotateEncryptionKey();
expect(result).toBe(true);
expect(cryptoUtils.rotateKey).toHaveBeenCalled();
expect(fs.renameSync).toHaveBeenCalled(); // DC-106: canonical write landed
});
it('clears cache after rotation', async () => {
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
credentialManager.cache.set('x', { value: 'y', exp: Date.now() + 60000 });
// Must have non-empty credentials so code path reaches cache.clear()
fs.readFileSync.mockReturnValue(JSON.stringify({
'key1': { value: 'enc:tag:' + Buffer.from('val').toString('base64'), metadata: {} }
}));
await credentialManager.rotateEncryptionKey();
expect(credentialManager.cache.size).toBe(0);
});
it('returns false on error', async () => {
lockfile.lock.mockRejectedValue(new Error('nope'));
const result = await credentialManager.rotateEncryptionKey();
expect(result).toBe(false);
});
});
describe('exportBackup / importBackup', () => {
it('exportBackup returns encrypted JSON string', async () => {
fs.readFileSync.mockReturnValue(JSON.stringify({ key1: { value: 'x' } }));
const backup = await credentialManager.exportBackup();
expect(cryptoUtils.encrypt).toHaveBeenCalled();
expect(typeof backup).toBe('string');
});
it('importBackup decrypts and replaces credentials', async () => {
const backupData = JSON.stringify({
version: '1.0',
exportedAt: new Date().toISOString(),
credentials: { imported: { value: 'y' } }
});
const encrypted = `enc:tag:${Buffer.from(backupData).toString('base64')}`;
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
fs.readFileSync.mockReturnValue('{}');
const result = await credentialManager.importBackup(encrypted);
expect(result).toBe(true);
});
it('importBackup rejects unsupported backup version', async () => {
const backupData = JSON.stringify({ version: '2.0', credentials: {} });
const encrypted = `enc:tag:${Buffer.from(backupData).toString('base64')}`;
const result = await credentialManager.importBackup(encrypted);
expect(result).toBe(false);
});
it('importBackup returns false on error', async () => {
cryptoUtils.decrypt.mockImplementationOnce(() => { throw new Error('bad'); });
const result = await credentialManager.importBackup('bad-data');
expect(result).toBe(false);
});
});
describe('DC-106 canonical atomic-write migration', () => {
it('writes credentials.json via wx tmp + fsync + rename, mode 0600', async () => {
await credentialManager.store('dc106.key', 'dc106-secret');
// fsyncDir also openSync()s the parent dir (flags 'r') — filter to the
// payload tmp opens to assert on the canonical write itself.
const wxOpens = mockFsState.openedWith.filter((o) => o.flags === 'wx');
expect(wxOpens.length).toBe(1); // file pre-existed -> no ensure-create
expect(wxOpens[0].mode).toBe(0o600); // sensitive file mode preserved
expect(fs.fsyncSync).toHaveBeenCalled(); // bytes pinned before rename
expect(fs.renameSync).toHaveBeenCalled();
const [tmpSrc, dst] = fs.renameSync.mock.calls
.find((c) => c[1] === CREDENTIALS_FILE);
expect(tmpSrc).not.toBe(dst);
expect(tmpSrc).toMatch(/\.credentials\.json\.tmp-/); // canonical tmp prefix
expect(dst).toBe(CREDENTIALS_FILE);
expect(mockFsState.files[CREDENTIALS_FILE]).toBeDefined();
// No leftover tmp files: every payload tmp was renamed away
const renamedSrcs = fs.renameSync.mock.calls.map((c) => c[0]);
for (const o of wxOpens) {
expect(renamedSrcs).toContain(o.p);
}
});
it('never writes plaintext secret to disk', async () => {
await credentialManager.store('dc106b.key', 'plaintext-canary-9f1a');
const raw = mockFsState.files[CREDENTIALS_FILE];
expect(raw).toBeDefined();
expect(raw).not.toContain('plaintext-canary-9f1a');
expect(raw).toContain('enc:'); // crypto-utils mock prefix
});
it('_lockedUpdate closes fd before rename (torn-write window eliminated)', async () => {
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
mockFsState.files[CREDENTIALS_FILE] = '{}';
await credentialManager._lockedUpdate((creds) => {
creds.k = { value: 'enc:x' };
return creds;
});
// fd lifecycle: open -> write -> fsync -> close -> rename. The dir
// fsync adds a second openSync/closeSync pair — so assert on counts of
// payload operations and the GLOBAL invocation order, which jest tracks
// across mocks (invocationCallOrder).
const wxOpens = mockFsState.openedWith.filter((o) => o.flags === 'wx');
expect(wxOpens.length).toBe(1); // exactly one payload write
expect(fs.writeSync).toHaveBeenCalledTimes(1); // dir fsync writes nothing
expect(fs.renameSync).toHaveBeenCalledTimes(1);
const fsyncFirst = fs.fsyncSync.mock.invocationCallOrder[0];
const closeFirst = fs.closeSync.mock.invocationCallOrder[0];
const renameFirst = fs.renameSync.mock.invocationCallOrder[0];
expect(fsyncFirst).toBeDefined();
expect(closeFirst).toBeGreaterThan(fsyncFirst); // fsync before close
expect(renameFirst).toBeGreaterThan(closeFirst); // close before rename
expect(mockFsState.files[CREDENTIALS_FILE]).toContain('enc:x');
});
it('_ensureFileExists creates initial {} atomically at 0600 when absent', async () => {
const releaseFn = jest.fn().mockResolvedValue();
lockfile.lock.mockResolvedValue(releaseFn);
delete mockFsState.files[CREDENTIALS_FILE]; // absent on disk
await credentialManager._lockedUpdate((c) => {
c.k = { value: 'enc:x' };
return c;
});
const wxOpens = mockFsState.openedWith.filter((o) => o.flags === 'wx');
expect(wxOpens.length).toBe(2); // ensure-created '{}' + the locked update
expect(wxOpens[0].mode).toBe(0o600);
// The ensure write staged its tmp FIRST and renamed it into place before
// the locked update renamed over it — creation itself was atomic.
expect(fs.renameSync.mock.calls[0][0]).toBe(wxOpens[0].p);
const final = JSON.parse(mockFsState.files[CREDENTIALS_FILE]);
expect(final.k.value).toBe('enc:x');
});
});
describe('cache TTL', () => {
it('cache entries expire after TTL', async () => {
credentialManager.cache.set('ttl.key', {
value: 'val',
exp: Date.now() - 1 // Already expired
});
fs.readFileSync.mockReturnValue('{}');
const result = await credentialManager.retrieve('ttl.key');
expect(result).toBeNull();
expect(credentialManager.cache.has('ttl.key')).toBe(false);
});
it('new store refreshes cache TTL', async () => {
await credentialManager.store('fresh.key', 'val');
const cached = credentialManager.cache.get('fresh.key');
expect(cached.exp).toBeGreaterThan(Date.now());
});
});
});