security.test.ts 18 KB

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  1. /**
  2. * Security Tests
  3. *
  4. * Tests for P0/P1 security fixes:
  5. * - FileLock (cross-process locking)
  6. * - Path traversal prevention
  7. * - MCP input validation
  8. * - Atomic writes
  9. */
  10. import { describe, it, expect, beforeEach, afterEach } from 'vitest';
  11. import * as fs from 'fs';
  12. import * as path from 'path';
  13. import * as os from 'os';
  14. import { FileLock, validateProjectPath } from '../src/utils';
  15. import CodeGraph from '../src/index';
  16. import { ToolHandler, tools } from '../src/mcp/tools';
  17. import { scanDirectory, isSourceFile } from '../src/extraction';
  18. import { DatabaseConnection, getDatabasePath } from '../src/db';
  19. import { QueryBuilder } from '../src/db/queries';
  20. function createTempDir(): string {
  21. return fs.mkdtempSync(path.join(os.tmpdir(), 'codegraph-security-test-'));
  22. }
  23. function cleanupTempDir(dir: string): void {
  24. if (fs.existsSync(dir)) {
  25. fs.rmSync(dir, { recursive: true, force: true });
  26. }
  27. }
  28. describe('FileLock', () => {
  29. let tempDir: string;
  30. let lockPath: string;
  31. beforeEach(() => {
  32. tempDir = createTempDir();
  33. lockPath = path.join(tempDir, 'test.lock');
  34. });
  35. afterEach(() => {
  36. cleanupTempDir(tempDir);
  37. });
  38. it('should acquire and release a lock', () => {
  39. const lock = new FileLock(lockPath);
  40. lock.acquire();
  41. expect(fs.existsSync(lockPath)).toBe(true);
  42. const content = fs.readFileSync(lockPath, 'utf-8').trim();
  43. expect(parseInt(content, 10)).toBe(process.pid);
  44. lock.release();
  45. expect(fs.existsSync(lockPath)).toBe(false);
  46. });
  47. it('should prevent double acquisition within same process', () => {
  48. const lock1 = new FileLock(lockPath);
  49. const lock2 = new FileLock(lockPath);
  50. lock1.acquire();
  51. // Second lock should fail because our PID is alive
  52. expect(() => lock2.acquire()).toThrow(/locked by another process/);
  53. lock1.release();
  54. });
  55. it('should detect and remove stale locks from dead processes', () => {
  56. // Write a lock file with a PID that doesn't exist
  57. // PID 99999999 is extremely unlikely to be a real process
  58. fs.writeFileSync(lockPath, '99999999');
  59. const lock = new FileLock(lockPath);
  60. // Should succeed because the PID is dead
  61. expect(() => lock.acquire()).not.toThrow();
  62. lock.release();
  63. });
  64. it('should execute function with withLock', () => {
  65. const lock = new FileLock(lockPath);
  66. const result = lock.withLock(() => {
  67. expect(fs.existsSync(lockPath)).toBe(true);
  68. return 42;
  69. });
  70. expect(result).toBe(42);
  71. expect(fs.existsSync(lockPath)).toBe(false);
  72. });
  73. it('should release lock even if function throws', () => {
  74. const lock = new FileLock(lockPath);
  75. expect(() => {
  76. lock.withLock(() => {
  77. throw new Error('test error');
  78. });
  79. }).toThrow('test error');
  80. expect(fs.existsSync(lockPath)).toBe(false);
  81. });
  82. it('should execute async function with withLockAsync', async () => {
  83. const lock = new FileLock(lockPath);
  84. const result = await lock.withLockAsync(async () => {
  85. expect(fs.existsSync(lockPath)).toBe(true);
  86. return 'async-result';
  87. });
  88. expect(result).toBe('async-result');
  89. expect(fs.existsSync(lockPath)).toBe(false);
  90. });
  91. it('should release lock even if async function throws', async () => {
  92. const lock = new FileLock(lockPath);
  93. await expect(
  94. lock.withLockAsync(async () => {
  95. throw new Error('async error');
  96. })
  97. ).rejects.toThrow('async error');
  98. expect(fs.existsSync(lockPath)).toBe(false);
  99. });
  100. it('release should be idempotent', () => {
  101. const lock = new FileLock(lockPath);
  102. lock.acquire();
  103. lock.release();
  104. // Second release should not throw
  105. expect(() => lock.release()).not.toThrow();
  106. });
  107. });
  108. describe('Path Traversal Prevention', () => {
  109. let testDir: string;
  110. let cg: CodeGraph;
  111. beforeEach(async () => {
  112. testDir = createTempDir();
  113. const srcDir = path.join(testDir, 'src');
  114. fs.mkdirSync(srcDir);
  115. fs.writeFileSync(
  116. path.join(srcDir, 'hello.ts'),
  117. `export function hello(): string { return "hi"; }\n`
  118. );
  119. cg = CodeGraph.initSync(testDir, {
  120. config: { include: ['**/*.ts'], exclude: [] },
  121. });
  122. await cg.indexAll();
  123. });
  124. afterEach(() => {
  125. if (cg) cg.close();
  126. cleanupTempDir(testDir);
  127. });
  128. it('should read code for valid nodes within project', async () => {
  129. const nodes = cg.getNodesByKind('function');
  130. const hello = nodes.find((n) => n.name === 'hello');
  131. expect(hello).toBeDefined();
  132. const code = await cg.getCode(hello!.id);
  133. expect(code).toContain('hello');
  134. });
  135. it('should return null for non-existent node', async () => {
  136. const code = await cg.getCode('does-not-exist');
  137. expect(code).toBeNull();
  138. });
  139. });
  140. describe('validateProjectPath — sensitive directory blocking', () => {
  141. // POSIX-only: on Windows '/etc' resolves to C:\etc (non-existent), not a
  142. // sensitive dir — the Windows case is covered by the win32-gated test below.
  143. it.runIf(process.platform !== 'win32')('blocks POSIX system directories (exact match)', () => {
  144. expect(validateProjectPath('/')).toMatch(/sensitive system directory/i);
  145. expect(validateProjectPath('/etc')).toMatch(/sensitive system directory/i);
  146. });
  147. it('allows a normal, existing directory', () => {
  148. const dir = fs.mkdtempSync(path.join(os.tmpdir(), 'cg-validate-'));
  149. try {
  150. expect(validateProjectPath(dir)).toBeNull();
  151. } finally {
  152. fs.rmSync(dir, { recursive: true, force: true });
  153. }
  154. });
  155. // SENSITIVE_PATHS stores the Windows entries lowercase and validateProjectPath
  156. // matches via resolved.toLowerCase(), so 'C:\\Windows' and 'c:\\windows' are
  157. // both blocked. path.resolve is platform-specific, so this only runs on Windows.
  158. it.runIf(process.platform === 'win32')(
  159. 'blocks Windows system directories regardless of case',
  160. () => {
  161. expect(validateProjectPath('C:\\Windows')).toMatch(/sensitive system directory/i);
  162. expect(validateProjectPath('c:\\windows')).toMatch(/sensitive system directory/i);
  163. expect(validateProjectPath('C:\\WINDOWS\\System32')).toMatch(/sensitive system directory/i);
  164. }
  165. );
  166. });
  167. describe('MCP Input Validation', () => {
  168. let testDir: string;
  169. let cg: CodeGraph;
  170. let handler: ToolHandler;
  171. beforeEach(async () => {
  172. testDir = createTempDir();
  173. const srcDir = path.join(testDir, 'src');
  174. fs.mkdirSync(srcDir);
  175. fs.writeFileSync(
  176. path.join(srcDir, 'example.ts'),
  177. `export function exampleFunc(): void {}\nexport class ExampleClass {}\n`
  178. );
  179. cg = CodeGraph.initSync(testDir, {
  180. config: { include: ['**/*.ts'], exclude: [] },
  181. });
  182. await cg.indexAll();
  183. handler = new ToolHandler(cg);
  184. });
  185. afterEach(() => {
  186. if (cg) cg.close();
  187. cleanupTempDir(testDir);
  188. });
  189. it('should reject non-string query in codegraph_search', async () => {
  190. const result = await handler.execute('codegraph_search', { query: null });
  191. expect(result.isError).toBe(true);
  192. expect(result.content[0].text).toContain('non-empty string');
  193. });
  194. it('should reject empty string query in codegraph_search', async () => {
  195. const result = await handler.execute('codegraph_search', { query: '' });
  196. expect(result.isError).toBe(true);
  197. expect(result.content[0].text).toContain('non-empty string');
  198. });
  199. it('should accept valid query in codegraph_search', async () => {
  200. const result = await handler.execute('codegraph_search', { query: 'example' });
  201. expect(result.isError).toBeFalsy();
  202. });
  203. it('should clamp limit to valid range in codegraph_search', async () => {
  204. // Extremely large limit should still work (clamped to 100)
  205. const result = await handler.execute('codegraph_search', { query: 'example', limit: 999999 });
  206. expect(result.isError).toBeFalsy();
  207. });
  208. it('should reject non-string symbol in codegraph_callers', async () => {
  209. const result = await handler.execute('codegraph_callers', { symbol: 123 });
  210. expect(result.isError).toBe(true);
  211. expect(result.content[0].text).toContain('non-empty string');
  212. });
  213. it('should reject non-string query in codegraph_explore', async () => {
  214. const result = await handler.execute('codegraph_explore', { query: undefined });
  215. expect(result.isError).toBe(true);
  216. expect(result.content[0].text).toContain('non-empty string');
  217. });
  218. it('should truncate oversized tool output', async () => {
  219. // Force a huge result set through codegraph_search; the response must be
  220. // truncated with the sentinel rather than flooding the agent's context.
  221. const many = Array.from({ length: 3000 }, (_, i) => ({
  222. node: {
  223. id: `n${i}`,
  224. name: `symbol_${i}_${'x'.repeat(40)}`,
  225. kind: 'function',
  226. filePath: `src/very/deep/path/file_${i}.ts`,
  227. startLine: 1,
  228. endLine: 2,
  229. language: 'typescript',
  230. },
  231. score: 1,
  232. }));
  233. const fakeCg = {
  234. searchNodes: () => many,
  235. };
  236. const fakeHandler = new ToolHandler(fakeCg as unknown as CodeGraph);
  237. const result = await fakeHandler.execute('codegraph_search', { query: 'x' });
  238. expect(result.isError).toBeFalsy();
  239. expect(result.content[0].text).toContain('... (output truncated)');
  240. });
  241. it('should reject non-string symbol in codegraph_impact', async () => {
  242. const result = await handler.execute('codegraph_impact', { symbol: [] });
  243. expect(result.isError).toBe(true);
  244. });
  245. it('should reject non-string symbol in codegraph_node', async () => {
  246. const result = await handler.execute('codegraph_node', { symbol: false });
  247. expect(result.isError).toBe(true);
  248. });
  249. it('should reject non-string symbol in codegraph_callees', async () => {
  250. const result = await handler.execute('codegraph_callees', { symbol: {} });
  251. expect(result.isError).toBe(true);
  252. });
  253. it('should handle NaN limit gracefully', async () => {
  254. const result = await handler.execute('codegraph_search', { query: 'example', limit: 'abc' });
  255. expect(result.isError).toBeFalsy();
  256. });
  257. it('should handle negative limit gracefully', async () => {
  258. const result = await handler.execute('codegraph_search', { query: 'example', limit: -5 });
  259. expect(result.isError).toBeFalsy();
  260. });
  261. // #230: getCodeGraph must reject a sensitive system directory passed as
  262. // projectPath before opening it. The error surfaces through execute()'s
  263. // catch as an isError result. /etc is sensitive on POSIX; C:\Windows on
  264. // Windows (path.resolve is platform-specific, so each case is gated).
  265. it.runIf(process.platform !== 'win32')(
  266. 'rejects a sensitive POSIX projectPath (/etc) via the MCP handler',
  267. async () => {
  268. const result = await handler.execute('codegraph_search', {
  269. query: 'example',
  270. projectPath: '/etc',
  271. });
  272. expect(result.isError).toBe(true);
  273. expect(result.content[0].text).toMatch(/sensitive system directory/i);
  274. }
  275. );
  276. it.runIf(process.platform === 'win32')(
  277. 'rejects a sensitive Windows projectPath (C:\\Windows) via the MCP handler',
  278. async () => {
  279. const result = await handler.execute('codegraph_search', {
  280. query: 'example',
  281. projectPath: 'C:\\Windows',
  282. });
  283. expect(result.isError).toBe(true);
  284. expect(result.content[0].text).toMatch(/sensitive system directory/i);
  285. }
  286. );
  287. });
  288. describe('Atomic Writes', () => {
  289. let tempDir: string;
  290. beforeEach(() => {
  291. tempDir = createTempDir();
  292. });
  293. afterEach(() => {
  294. cleanupTempDir(tempDir);
  295. });
  296. it('should not leave temp files on success', () => {
  297. // We test this indirectly through the config-writer module
  298. // by checking that no .tmp files remain after writing
  299. const configDir = path.join(tempDir, '.claude');
  300. fs.mkdirSync(configDir, { recursive: true });
  301. const testFile = path.join(configDir, 'test.json');
  302. // Simulate what atomicWriteFileSync does
  303. const tmpPath = testFile + '.tmp.' + process.pid;
  304. fs.writeFileSync(tmpPath, '{"test": true}');
  305. fs.renameSync(tmpPath, testFile);
  306. expect(fs.existsSync(testFile)).toBe(true);
  307. expect(fs.existsSync(tmpPath)).toBe(false);
  308. const content = JSON.parse(fs.readFileSync(testFile, 'utf-8'));
  309. expect(content.test).toBe(true);
  310. });
  311. });
  312. describe('Source file detection (isSourceFile)', () => {
  313. it('selects files by supported extension', () => {
  314. expect(isSourceFile('src/index.ts')).toBe(true);
  315. expect(isSourceFile('src/deep/nested/file.ts')).toBe(true);
  316. expect(isSourceFile('src/component.tsx')).toBe(true);
  317. expect(isSourceFile('lib/util.js')).toBe(true);
  318. expect(isSourceFile('src/main.py')).toBe(true);
  319. });
  320. it('rejects unsupported extensions and extensionless files', () => {
  321. expect(isSourceFile('src/component.css')).toBe(false);
  322. expect(isSourceFile('README.md')).toBe(false);
  323. expect(isSourceFile('Makefile')).toBe(false);
  324. expect(isSourceFile('.gitignore')).toBe(false);
  325. });
  326. it('matches regardless of leading dot directories', () => {
  327. expect(isSourceFile('.hidden/index.ts')).toBe(true);
  328. });
  329. });
  330. describe('JSON.parse Error Boundaries in DB', () => {
  331. let tempDir: string;
  332. beforeEach(() => {
  333. tempDir = createTempDir();
  334. });
  335. afterEach(() => {
  336. cleanupTempDir(tempDir);
  337. });
  338. it('should not crash when node has malformed JSON in decorators column', () => {
  339. const dbPath = path.join(tempDir, 'test.db');
  340. const db = DatabaseConnection.initialize(dbPath);
  341. const queries = new QueryBuilder(db.getDb());
  342. // Insert a node with malformed JSON in the decorators column
  343. db.getDb().prepare(`
  344. INSERT INTO nodes (id, kind, name, qualified_name, file_path, language, start_line, end_line, start_column, end_column, decorators, is_exported, is_async, is_static, is_abstract, updated_at)
  345. VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
  346. `).run(
  347. 'test-node-1', 'function', 'myFunc', 'myFunc', 'test.ts', 'typescript',
  348. 1, 5, 0, 0,
  349. '{not valid json!!!}', // malformed decorators
  350. 0, 0, 0, 0, Date.now()
  351. );
  352. // Should not throw - should return node with undefined decorators
  353. const node = queries.getNodeById('test-node-1');
  354. expect(node).not.toBeNull();
  355. expect(node!.name).toBe('myFunc');
  356. expect(node!.decorators).toBeUndefined();
  357. db.close();
  358. });
  359. it('should not crash when edge has malformed JSON in metadata column', () => {
  360. const dbPath = path.join(tempDir, 'test.db');
  361. const db = DatabaseConnection.initialize(dbPath);
  362. const queries = new QueryBuilder(db.getDb());
  363. // Insert two nodes first
  364. const insertNode = db.getDb().prepare(`
  365. INSERT INTO nodes (id, kind, name, qualified_name, file_path, language, start_line, end_line, start_column, end_column, is_exported, is_async, is_static, is_abstract, updated_at)
  366. VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
  367. `);
  368. insertNode.run('node-a', 'function', 'funcA', 'funcA', 'a.ts', 'typescript', 1, 5, 0, 0, 0, 0, 0, 0, Date.now());
  369. insertNode.run('node-b', 'function', 'funcB', 'funcB', 'b.ts', 'typescript', 1, 5, 0, 0, 0, 0, 0, 0, Date.now());
  370. // Insert edge with malformed metadata
  371. db.getDb().prepare(`
  372. INSERT INTO edges (source, target, kind, metadata)
  373. VALUES (?, ?, ?, ?)
  374. `).run('node-a', 'node-b', 'calls', 'broken json {{{');
  375. // Should not throw - should return edge with undefined metadata
  376. const edges = queries.getOutgoingEdges('node-a');
  377. expect(edges.length).toBe(1);
  378. expect(edges[0].source).toBe('node-a');
  379. expect(edges[0].target).toBe('node-b');
  380. expect(edges[0].metadata).toBeUndefined();
  381. db.close();
  382. });
  383. it('should not crash when file record has malformed JSON in errors column', () => {
  384. const dbPath = path.join(tempDir, 'test.db');
  385. const db = DatabaseConnection.initialize(dbPath);
  386. const queries = new QueryBuilder(db.getDb());
  387. // Insert a file with malformed errors JSON
  388. db.getDb().prepare(`
  389. INSERT INTO files (path, content_hash, language, size, modified_at, indexed_at, node_count, errors)
  390. VALUES (?, ?, ?, ?, ?, ?, ?, ?)
  391. `).run('test.ts', 'abc123', 'typescript', 100, Date.now(), Date.now(), 5, 'not-an-array');
  392. // Should not throw - should return file with undefined errors
  393. const file = queries.getFileByPath('test.ts');
  394. expect(file).not.toBeNull();
  395. expect(file!.path).toBe('test.ts');
  396. expect(file!.errors).toBeUndefined();
  397. db.close();
  398. });
  399. });
  400. describe('Symlink Cycle Detection', () => {
  401. let tempDir: string;
  402. beforeEach(() => {
  403. tempDir = createTempDir();
  404. });
  405. afterEach(() => {
  406. cleanupTempDir(tempDir);
  407. });
  408. it('should handle symlink cycle without infinite loop', () => {
  409. // Create directory structure with a symlink cycle
  410. const srcDir = path.join(tempDir, 'src');
  411. fs.mkdirSync(srcDir);
  412. fs.writeFileSync(path.join(srcDir, 'index.ts'), 'export const x = 1;\n');
  413. // Create a symlink from src/loop -> tempDir (parent directory)
  414. try {
  415. fs.symlinkSync(tempDir, path.join(srcDir, 'loop'), 'dir');
  416. } catch {
  417. // Skip test if symlinks not supported (e.g., Windows without admin)
  418. return;
  419. }
  420. // This should complete without hanging
  421. const files = scanDirectory(tempDir);
  422. // Should find the real file but not loop infinitely
  423. expect(files).toContain('src/index.ts');
  424. // Should not find duplicates via the symlink path
  425. const indexFiles = files.filter(f => f.endsWith('index.ts'));
  426. expect(indexFiles.length).toBe(1);
  427. });
  428. it('should follow valid symlinks to directories', () => {
  429. // Create source directory with a file
  430. const realDir = path.join(tempDir, 'real');
  431. fs.mkdirSync(realDir);
  432. fs.writeFileSync(path.join(realDir, 'hello.ts'), 'export function hello() {}\n');
  433. // Create a symlink to realDir
  434. const srcDir = path.join(tempDir, 'src');
  435. fs.mkdirSync(srcDir);
  436. try {
  437. fs.symlinkSync(realDir, path.join(srcDir, 'linked'), 'dir');
  438. } catch {
  439. return;
  440. }
  441. const files = scanDirectory(tempDir);
  442. // Should find files from both the real dir and via the symlink
  443. // But deduplicate since they resolve to the same real path
  444. expect(files.some(f => f.includes('hello.ts'))).toBe(true);
  445. });
  446. it('should skip broken symlinks gracefully', () => {
  447. const srcDir = path.join(tempDir, 'src');
  448. fs.mkdirSync(srcDir);
  449. fs.writeFileSync(path.join(srcDir, 'valid.ts'), 'export const y = 2;\n');
  450. try {
  451. fs.symlinkSync('/nonexistent/path', path.join(srcDir, 'broken'), 'dir');
  452. } catch {
  453. return;
  454. }
  455. // Should not throw
  456. const files = scanDirectory(tempDir);
  457. expect(files).toContain('src/valid.ts');
  458. });
  459. });