runtime.spec.ts 282 KB

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  1. import { existsSync, realpathSync, rmSync, statSync, writeFileSync } from 'node:fs'
  2. import { mkdtemp, writeFile } from 'node:fs/promises'
  3. import { tmpdir } from 'node:os'
  4. import { basename, dirname, join, relative } from 'node:path'
  5. import { describe, expect, it, vi } from 'vitest'
  6. import { Context } from '@deepseek-ai/cordis'
  7. import { PythonCodeRuntime, readProcessStart, resolvePythonBin } from '../src/index.ts'
  8. import { logTruncationMarker } from '../src/protocol.ts'
  9. import type { Config } from '../src/index.ts'
  10. // Absolute supported interpreter path for shell wrappers. The runtime gives a
  11. // child only TMPDIR, so a bare `python3` inside a wrapper would resolve against
  12. // /bin/sh's default PATH rather than the caller's selected interpreter.
  13. const PYABS = resolvePythonBin('python3') ?? 'python3'
  14. import type { CodeBindingFunction, CodeJsonValue, CodeRunResult } from '@deepseek-ai/dsh-code-runtime'
  15. /**
  16. * Names one `py/` script whose `copyFileSync` must fail, for the partial-staging
  17. * case. A real disk-full or missing-asset failure mid-copy cannot be produced
  18. * from a test, and the leak only shows when `mkdtempSync` has already succeeded.
  19. *
  20. * `stagedDirs` records every staging directory THIS test file creates, so the
  21. * leak assertions check the exact paths instead of a global tmpdir diff: a
  22. * parallel vitest worker running the same prefix could create or remove
  23. * `dsh-code-runtime-python-*` directories inside the sampling window, which a
  24. * readdir diff would misattribute to this test. `boot-write-failure.spec.ts`
  25. * records the same race and solves it with argv-based identity; recording the
  26. * mkdtempSync results is the fs-mock equivalent.
  27. */
  28. const { failNextCopyOf, stagedDirs } = vi.hoisted(() => ({
  29. failNextCopyOf: { value: undefined as string | undefined },
  30. stagedDirs: [] as string[],
  31. }))
  32. vi.mock('node:fs', async (importOriginal) => {
  33. const actual = await importOriginal<typeof import('node:fs')>()
  34. return {
  35. ...actual,
  36. copyFileSync(source: string, destination: string): void {
  37. if (failNextCopyOf.value !== undefined && basename(source) === failNextCopyOf.value) {
  38. failNextCopyOf.value = undefined
  39. throw Object.assign(new Error('simulated ENOSPC on copy'), { code: 'ENOSPC' })
  40. }
  41. actual.copyFileSync(source, destination)
  42. },
  43. mkdtempSync(prefix: string): string {
  44. const dir = actual.mkdtempSync(prefix)
  45. if (basename(prefix).startsWith('dsh-code-runtime-python-')) stagedDirs.push(dir)
  46. return dir
  47. },
  48. }
  49. })
  50. /**
  51. * Integration suite over REAL python3 subprocesses (no subprocess mocks — it is
  52. * cheap and local, per docs/testing.md's real-over-mock policy; the only mock is
  53. * `node:fs.copyFileSync` for the staging-failure cases). Each test builds a fresh
  54. * runtime so budgets can be tuned per case.
  55. */
  56. async function setup(config: Config = {}) {
  57. const ctx = new Context()
  58. const fiber = await ctx.plugin(PythonCodeRuntime, config)
  59. const runtime = ctx.codeRuntime as PythonCodeRuntime
  60. return { ctx, fiber, runtime }
  61. }
  62. /** Convenience: one namespace `tools` with the given functions. */
  63. function tools(functions: Record<string, CodeBindingFunction>) {
  64. return [{ global: 'tools', functions }]
  65. }
  66. describe('PythonCodeRuntime — seam descriptors and misuse', () => {
  67. it('registers the seam descriptors', async () => {
  68. const { runtime } = await setup()
  69. expect(runtime.language).toBe('python')
  70. expect(runtime.isolation).toBe('process')
  71. })
  72. it('rejects non-positive config as seam misuse', async () => {
  73. const ctx = new Context()
  74. await expect(ctx.plugin(PythonCodeRuntime, { cpuSeconds: 0 }))
  75. .rejects.toThrow(/cpuSeconds must be a positive number/)
  76. await expect(ctx.plugin(PythonCodeRuntime, { maxWallMs: -1 }))
  77. .rejects.toThrow(/maxWallMs must be a positive number/)
  78. })
  79. it('rejects a non-integer cpuSeconds at load (setrlimit needs an int)', async () => {
  80. const ctx = new Context()
  81. await expect(ctx.plugin(PythonCodeRuntime, { cpuSeconds: 1.5 }))
  82. .rejects.toThrow(/cpuSeconds must be a positive integer, got 1.5/)
  83. })
  84. it('rejects a non-integer byte budget at load (the child int()-truncates it)', async () => {
  85. // maxLogBytes/maxValueBytes cross to the child, which reads them through
  86. // int(...): a float would floor there while the host meters the fraction, so
  87. // the two sides would enforce different public config. Reject at load.
  88. const ctxLog = new Context()
  89. await expect(ctxLog.plugin(PythonCodeRuntime, { maxLogBytes: 3.5 }))
  90. .rejects.toThrow(/maxLogBytes must be a positive integer/)
  91. const ctxValue = new Context()
  92. await expect(ctxValue.plugin(PythonCodeRuntime, { maxValueBytes: 1024.5 }))
  93. .rejects.toThrow(/maxValueBytes must be a positive integer/)
  94. })
  95. it('rejects finite numeric config that cannot cross as an exact rlimit integer', async () => {
  96. // `Number.isFinite` and `Number.isInteger` both admit values that cannot
  97. // round-trip. `addressSpaceMb: 1e308` overflows to `Infinity` once multiplied
  98. // by 1 MiB, and `encodeJsonPlain` renders that as `null`, so the child gets no
  99. // limit at all; `cpuSeconds: 1e100` clears `Number.isInteger` while sitting
  100. // far past the safe range, so `setrlimit` receives a different number than was
  101. // configured. Both used to end every run in a bootstrap exception instead of
  102. // failing at load, where a self-contained configuration error belongs.
  103. const ctx = new Context()
  104. await expect(ctx.plugin(PythonCodeRuntime, { addressSpaceMb: 1e308 }))
  105. .rejects.toThrow(/addressSpaceMb must be at most \d+ .*exact integer/)
  106. await expect(ctx.plugin(PythonCodeRuntime, { cpuSeconds: 1e100 }))
  107. .rejects.toThrow(/cpuSeconds must be at most \d+ .*exact integers/)
  108. // The boundary values still load: the bound rejects what cannot be encoded,
  109. // not everything large.
  110. const okMb = await ctx.plugin(PythonCodeRuntime, { addressSpaceMb: Math.floor(Number.MAX_SAFE_INTEGER / (1024 * 1024)) })
  111. await okMb.dispose()
  112. const okCpu = await ctx.plugin(PythonCodeRuntime, { cpuSeconds: Number.MAX_SAFE_INTEGER - 1 })
  113. await okCpu.dispose()
  114. })
  115. it('rejects an output cap whose payload could not cross the frame ceiling', async () => {
  116. // The caps budget a payload that must arrive inside ONE fd-3 frame, and the
  117. // 64 MiB frame parse cap is fixed. A larger cap is unsatisfiable rather
  118. // than generous: a completion the cap admits arrives as an over-ceiling
  119. // frame and fails the run as `worker-exit`, inverting the `output-limit`
  120. // the cap describes. Both budgets are metered in already-escaped serialized
  121. // bytes, so a payload occupies at most `cap + envelope` on the wire; the
  122. // bound is `parse-cap - envelope`, not `(ceiling - envelope) / 6` (that
  123. // divided in escape expansion the charge already counts). The receive path
  124. // rejects raw frames past the 64 MiB parse cap (the run settles as a
  125. // worker-exit), so a budget above it would admit a config whose honest
  126. // child frames the host then rejects.
  127. const admissible = 64 * 1024 * 1024 - 64
  128. const ctx = new Context()
  129. await expect(ctx.plugin(PythonCodeRuntime, { maxLogBytes: admissible + 1 }))
  130. .rejects.toThrow(/maxLogBytes must not exceed 67108800/)
  131. await expect(ctx.plugin(PythonCodeRuntime, { maxValueBytes: admissible + 1 }))
  132. .rejects.toThrow(/maxValueBytes must not exceed 67108800/)
  133. // The boundary value itself loads: the bound is the largest cap a frame can
  134. // still carry, not one below it. It needs an address space large enough to
  135. // clear the separate maxValueBytes/addressSpaceMb worst-case gate (the cap
  136. // times the 12x Unicode expansion must fit), so this pairs it with a 4 GiB
  137. // addressSpaceMb — the two load-time bounds are independent.
  138. const boundary = await ctx.plugin(PythonCodeRuntime, { maxValueBytes: admissible, addressSpaceMb: 4096 })
  139. await boundary.dispose()
  140. })
  141. it('rejects a pythonBin that spawn() would throw on, at load', async () => {
  142. // Both values pass the string schema and both make `spawn` throw
  143. // SYNCHRONOUSLY from inside run() — ERR_INVALID_ARG_VALUE for the empty
  144. // path, ERR_INVALID_ARG_TYPE for the NUL — so run() would REJECT instead of
  145. // resolving the worker-exit the seam promises for a child that cannot
  146. // start. Both are self-contained configuration errors, so they fail here.
  147. const ctx = new Context()
  148. await expect(ctx.plugin(PythonCodeRuntime, { pythonBin: '' }))
  149. .rejects.toThrow(/pythonBin must be a non-empty path without NUL bytes/)
  150. await expect(ctx.plugin(PythonCodeRuntime, { pythonBin: 'py\u0000thon3' }))
  151. .rejects.toThrow(/pythonBin must be a non-empty path without NUL bytes/)
  152. })
  153. it('rejects an explicit pythonBin that is not an executable regular file, at load', async () => {
  154. // An explicit path (absolute, or containing a slash) bypasses PATH lookup,
  155. // so it must be validated directly: missing, non-executable, or directory
  156. // paths are self-contained configuration errors that used to slip through
  157. // load and surface only at the first run() as a misleading worker-exit.
  158. // The message distinguishes the explicit-path failure from a basename that
  159. // simply does not resolve on PATH.
  160. const nodePath = await import('node:path')
  161. const { mkdtempSync, writeFileSync, mkdirSync } = await import('node:fs')
  162. const dir = mkdtempSync(nodePath.join(tmpdir(), 'dsh-bad-bin-'))
  163. const notExecutable = nodePath.join(dir, 'not-executable')
  164. writeFileSync(notExecutable, '#!/bin/sh\nexit 0\n') // Regular file, but no X bit.
  165. const directory = nodePath.join(dir, 'is-a-directory')
  166. mkdirSync(directory)
  167. try {
  168. const missing = new Context()
  169. await expect(missing.plugin(PythonCodeRuntime, { pythonBin: nodePath.join(dir, 'missing') }))
  170. .rejects.toThrow(/is not an executable regular file/)
  171. const noX = new Context()
  172. await expect(noX.plugin(PythonCodeRuntime, { pythonBin: notExecutable }))
  173. .rejects.toThrow(/is not an executable regular file/)
  174. const isDir = new Context()
  175. await expect(isDir.plugin(PythonCodeRuntime, { pythonBin: directory }))
  176. .rejects.toThrow(/is not an executable regular file/)
  177. // A relative explicit path fails the same way, resolved against the host
  178. // CWD: `dir` is absolute, so a slash-containing relative form of it is
  179. // the dirname prefix plus the file, which does not exist as such.
  180. const rel = new Context()
  181. await expect(rel.plugin(PythonCodeRuntime, { pythonBin: './definitely-not-there-python' }))
  182. .rejects.toThrow(/is not an executable regular file/)
  183. } finally {
  184. const { rmSync } = await import('node:fs')
  185. rmSync(dir, { recursive: true, force: true })
  186. }
  187. })
  188. it('rejects a non-CPython, outdated, or probe-failing interpreter at load', async () => {
  189. const nonPython = new Context()
  190. await expect(nonPython.plugin(PythonCodeRuntime, { pythonBin: '/bin/echo' }))
  191. .rejects.toThrow(/did not report a CPython version/)
  192. const dir = await mkdtemp(join(tmpdir(), 'dsh-python-probe-'))
  193. const oldMajor = join(dir, 'python-old-major')
  194. const old = join(dir, 'python-old')
  195. const future = join(dir, 'python-future')
  196. const pypy = join(dir, 'pypy')
  197. const failed = join(dir, 'python-failed')
  198. await writeFile(oldMajor, '#!/bin/sh\nprintf \'cpython 2 99 0\\n\'\n', { mode: 0o755 })
  199. await writeFile(old, '#!/bin/sh\nprintf \'cpython 3 9 6\\n\'\n', { mode: 0o755 })
  200. await writeFile(future, '#!/bin/sh\nprintf \'cpython 4 0 0\\n\'\n', { mode: 0o755 })
  201. await writeFile(pypy, '#!/bin/sh\nprintf \'pypy 3 10 0\\n\'\n', { mode: 0o755 })
  202. await writeFile(failed, '#!/bin/sh\nexit 7\n', { mode: 0o755 })
  203. try {
  204. expect(resolvePythonBin(relative(process.cwd(), old))).toBe(old)
  205. const obsolete = new Context()
  206. await expect(obsolete.plugin(PythonCodeRuntime, { pythonBin: oldMajor }))
  207. .rejects.toThrow(/must be CPython 3\.10 or newer, got cpython 2\.99\.0/)
  208. const outdated = new Context()
  209. await expect(outdated.plugin(PythonCodeRuntime, { pythonBin: old }))
  210. .rejects.toThrow(/must be CPython 3\.10 or newer, got cpython 3\.9\.6/)
  211. const forwardCompatible = new Context()
  212. const fiber = await forwardCompatible.plugin(PythonCodeRuntime, { pythonBin: future })
  213. await fiber.dispose()
  214. const alternative = new Context()
  215. await expect(alternative.plugin(PythonCodeRuntime, { pythonBin: pypy }))
  216. .rejects.toThrow(/must be CPython, got pypy/)
  217. const probeFailure = new Context()
  218. await expect(probeFailure.plugin(PythonCodeRuntime, { pythonBin: failed }))
  219. .rejects.toThrow(/failed the CPython version probe/)
  220. } finally {
  221. rmSync(dir, { recursive: true, force: true })
  222. }
  223. })
  224. it('keeps an explicit executable pythonBin working through load and run', async () => {
  225. // The same validation that rejects bad explicit paths must admit a good
  226. // one: an absolute path to the real interpreter (or a wrapper around it)
  227. // is the deployment form the validation exists to serve.
  228. const pyAbs = resolvePythonBin('python3') ?? 'python3'
  229. const { runtime, fiber } = await setup({ pythonBin: pyAbs, maxWallMs: 30_000 })
  230. const result = await runtime.run({ program: 'return 1', bindings: [] })
  231. expect(result.error).toBeUndefined()
  232. expect(result.value).toBe(1)
  233. await fiber.dispose()
  234. })
  235. it('rejects a binding member accessor that throws, as seam misuse', async () => {
  236. // `namespace.functions` is caller-supplied, so its members may come from a
  237. // getter or Proxy. Reading one of them inside the fd-3 `data` callback used
  238. // to throw OUTSIDE the dispatcher's try and terminate the host; the
  239. // validation now snapshots the callables synchronously, so the throw
  240. // surfaces as the seam-misuse rejection run() reserves for malformed
  241. // bindings — the child is never spawned.
  242. const { runtime } = await setup()
  243. const exploding = {
  244. get explode(): CodeBindingFunction {
  245. throw new Error('getter blew up')
  246. },
  247. }
  248. await expect(runtime.run({
  249. program: 'return 1',
  250. bindings: [{ global: 'tools', functions: exploding }],
  251. })).rejects.toThrow(/getter blew up/)
  252. })
  253. it('snapshots binding callables once, so a getter is read exactly once', async () => {
  254. // The snapshot also fixes the key set the boot frame advertises: the child
  255. // learns the namespace names from the SAME record dispatch reads, so a
  256. // getter whose keys differ between reads cannot desynchronize the two.
  257. let reads = 0
  258. const countReads = {
  259. get first(): CodeBindingFunction {
  260. reads += 1
  261. return async () => 1
  262. },
  263. }
  264. const { runtime, fiber } = await setup()
  265. const result = await runtime.run({
  266. program: 'return 1',
  267. bindings: [{ global: 'tools', functions: countReads }],
  268. })
  269. expect(result.error).toBeUndefined()
  270. // One read for the validation snapshot; the boot frame and every dispatch
  271. // read the snapshot, not the getter.
  272. expect(reads).toBe(1)
  273. await fiber.dispose()
  274. })
  275. it('keeps a __proto__ binding member dispatchable', async () => {
  276. // The seam contract treats member names like `__proto__` or `constructor`
  277. // as ordinary own properties (null-prototype construction). The binding
  278. // snapshot must preserve that: a plain `{}` record would hit the prototype
  279. // setter on assignment and drop the member, so the child would never learn
  280. // the name and a call to it would fail with KeyError.
  281. const { runtime, fiber } = await setup()
  282. const result = await runtime.run({
  283. program: 'return await tools["__proto__"]({})',
  284. bindings: [{
  285. global: 'tools',
  286. functions: { ['__proto__']: async () => 'proto-callable' },
  287. }],
  288. })
  289. expect(result.error).toBeUndefined()
  290. expect(result.value).toBe('proto-callable')
  291. await fiber.dispose()
  292. })
  293. it('resolves pythonBin once so a later PATH change cannot switch interpreters', async () => {
  294. const firstDir = await mkdtemp(join(tmpdir(), 'dsh-python-first-'))
  295. const secondDir = await mkdtemp(join(tmpdir(), 'dsh-python-second-'))
  296. const wrapper = (marker: string): string => `#!/bin/sh\nDSH_TEST_PYTHON=${marker}\nexport DSH_TEST_PYTHON\nexec "${PYABS}" "$@"\n`
  297. await writeFile(join(firstDir, 'python3'), wrapper('first'), { mode: 0o755 })
  298. await writeFile(join(secondDir, 'python3'), wrapper('second'), { mode: 0o755 })
  299. vi.stubEnv('PATH', firstDir)
  300. let fiber: Awaited<ReturnType<typeof setup>>['fiber'] | undefined
  301. try {
  302. const mounted = await setup({ pythonBin: 'python3' })
  303. fiber = mounted.fiber
  304. vi.stubEnv('PATH', secondDir)
  305. const result = await mounted.runtime.run({
  306. program: 'import os\nreturn os.environ.get("DSH_TEST_PYTHON")',
  307. bindings: [],
  308. })
  309. expect(result.error).toBeUndefined()
  310. expect(result.value).toBe('first')
  311. } finally {
  312. await fiber?.dispose()
  313. vi.unstubAllEnvs()
  314. rmSync(firstDir, { recursive: true, force: true })
  315. rmSync(secondDir, { recursive: true, force: true })
  316. }
  317. })
  318. it('skips relative PATH entries when resolving a basename pythonBin', async () => {
  319. // resolvePythonBin must return an absolute path: a RELATIVE PATH entry
  320. // ('.' here) would otherwise resolve the basename against the host CWD.
  321. // This run's CWD holds no executable named python3, so both the relative
  322. // skip and the accessSync-miss fall through to the absolute entry — the
  323. // case pins the contract (absolute candidate wins over a relative PATH
  324. // prefix), not a worker-exit distinction, which would need an executable
  325. // named python3 in the test CWD.
  326. const cp = await import('node:child_process')
  327. const nodePath = await import('node:path')
  328. const pythonDir = nodePath.dirname(cp.execFileSync('which', ['python3'], { encoding: 'utf8' }).trim())
  329. vi.stubEnv('PATH', `.:${pythonDir}`)
  330. try {
  331. const { runtime, fiber } = await setup({ pythonBin: 'python3', maxWallMs: 30_000 })
  332. const result = await runtime.run({ program: 'return 1', bindings: [] })
  333. expect(result.error).toBeUndefined()
  334. expect(result.value).toBe(1)
  335. await fiber.dispose()
  336. } finally {
  337. vi.unstubAllEnvs()
  338. }
  339. }, 45_000)
  340. it('ignores a forged second boot-ack without re-sending the run frame', async () => {
  341. // The run frame is sent once, from the first boot-ack; a program that
  342. // forges an extra boot-ack frame on fd 3 must not re-enter the gate (a
  343. // second run frame would confuse the child's frame reader). The honest
  344. // child sends exactly one ack; the forged one exercises the re-entry
  345. // guard.
  346. const { runtime } = await setup()
  347. const result = await runtime.run({
  348. program: [
  349. 'import os',
  350. // One forged boot-ack after the program starts; the run already went
  351. // out on the real ack.
  352. "os.write(3, b'{\"type\":\"boot-ack\"}\\n')",
  353. 'return "done"',
  354. ].join('\n'),
  355. bindings: [],
  356. })
  357. expect(result.error).toBeUndefined()
  358. expect(result.value).toBe('done')
  359. }, 15_000)
  360. it('skips a PATH entry that is an executable DIRECTORY named like the interpreter', async () => {
  361. // accessSync(X_OK) succeeds on directories, so without the isFile guard a
  362. // PATH entry like a `python3` directory would be chosen over a later real
  363. // interpreter. The stub PATH puts such a directory first and asserts the
  364. // real interpreter is used.
  365. const cp = await import('node:child_process')
  366. const nodePath = await import('node:path')
  367. const { mkdtempSync, mkdirSync } = await import('node:fs')
  368. const { tmpdir } = await import('node:os')
  369. const realPythonDir = nodePath.dirname(cp.execFileSync('which', ['python3'], { encoding: 'utf8' }).trim())
  370. const fakeDir = mkdtempSync(nodePath.join(tmpdir(), 'dsh-fake-bin-'))
  371. mkdirSync(nodePath.join(fakeDir, 'python3')) // A directory named python3, executable by default.
  372. vi.stubEnv('PATH', `${fakeDir}:${realPythonDir}`)
  373. try {
  374. const { runtime, fiber } = await setup({ pythonBin: 'python3', maxWallMs: 30_000 })
  375. const result = await runtime.run({ program: 'return 1', bindings: [] })
  376. expect(result.error).toBeUndefined()
  377. expect(result.value).toBe(1)
  378. await fiber.dispose()
  379. } finally {
  380. vi.unstubAllEnvs()
  381. }
  382. }, 45_000)
  383. it('rejects a timer budget setTimeout would silently clamp to 1 ms', async () => {
  384. // Node stores a setTimeout delay as a signed 32-bit value and substitutes
  385. // 1 ms for anything larger, inverting the knob's meaning: a huge maxWallMs
  386. // would time every run out at once, and a huge graceMs would SIGKILL one
  387. // millisecond after SIGTERM. Both must fail at load instead.
  388. const ctx = new Context()
  389. await expect(ctx.plugin(PythonCodeRuntime, { maxWallMs: 2_147_483_648 }))
  390. .rejects.toThrow(/maxWallMs must not exceed 2147483647/)
  391. // graceMs is bounded by the close deadline's added margin, not by the raw
  392. // timer maximum, because that sum is what gets armed.
  393. await expect(ctx.plugin(PythonCodeRuntime, { graceMs: 2_147_481_648 }))
  394. .rejects.toThrow(/graceMs must not exceed 2147481647/)
  395. // The exact maxima still load.
  396. await expect(ctx.plugin(PythonCodeRuntime, { maxWallMs: 2_147_483_647, graceMs: 2_147_481_647 }))
  397. .resolves.toBeDefined()
  398. })
  399. it('rejects loading this Unix-only backend on Windows', async () => {
  400. // The bootstrap needs the POSIX `resource` module, a positional fd 3, and
  401. // negative-PID process-group signals — none on Windows. The constructor
  402. // must throw at load rather than register ctx.codeRuntime and defer the
  403. // failure to the first run.
  404. const original = process.platform
  405. Object.defineProperty(process, 'platform', { value: 'win32', configurable: true })
  406. try {
  407. const ctx = new Context()
  408. await expect(ctx.plugin(PythonCodeRuntime, {})).rejects.toThrow(/requires a Unix platform/)
  409. } finally {
  410. Object.defineProperty(process, 'platform', { value: original, configurable: true })
  411. }
  412. })
  413. it('rejects a binding global that is not a Python identifier or is reserved', async () => {
  414. const { runtime } = await setup()
  415. await expect(runtime.run({
  416. program: 'return 1',
  417. bindings: [{ global: '1bad', functions: {} }],
  418. })).rejects.toThrow(/is not a usable Python identifier/)
  419. await expect(runtime.run({
  420. program: 'return 1',
  421. bindings: [{ global: 'class', functions: {} }],
  422. })).rejects.toThrow(/is not a usable Python identifier/)
  423. })
  424. it('rejects duplicate binding namespaces', async () => {
  425. const { runtime } = await setup()
  426. await expect(runtime.run({
  427. program: 'return 1',
  428. bindings: [
  429. { global: 'tools', functions: {} },
  430. { global: 'tools', functions: {} },
  431. ],
  432. })).rejects.toThrow(/duplicate binding global/)
  433. })
  434. it('rejects run() after disposal, and unregisters ctx.codeRuntime', async () => {
  435. const { ctx, fiber, runtime } = await setup()
  436. await fiber.dispose()
  437. await expect(runtime.run({ program: 'return 1', bindings: [] }))
  438. .rejects.toThrow(/after disposal/)
  439. expect(ctx.get('codeRuntime')).toBeUndefined()
  440. })
  441. it('short-circuits when the request signal is already aborted', async () => {
  442. const { runtime } = await setup()
  443. const signal = AbortSignal.abort('already-cancelled')
  444. const result = await runtime.run({ program: 'return 1', bindings: [], signal })
  445. expect(result.error?.kind).toBe('abort')
  446. expect(result.error?.message).toContain('already-cancelled')
  447. expect(result.logs).toEqual([])
  448. })
  449. it('short-circuits on an already-aborted signal whose reason cannot be converted', async () => {
  450. // The pre-flight arm converted the reason with a bare `String()`, so a
  451. // hostile reason threw out of `run()` — the seam promises to reject only for
  452. // misuse, and a caller's cancellation token is not misuse.
  453. const { runtime } = await setup()
  454. const signal = AbortSignal.abort({
  455. [Symbol.toPrimitive]() { throw new Error('reason blew up') },
  456. })
  457. const result = await runtime.run({ program: 'return 1', bindings: [], signal })
  458. expect(result.error?.kind).toBe('abort')
  459. expect(result.error?.message).toBe('<unrenderable rejection value>')
  460. expect(result.logs).toEqual([])
  461. })
  462. it('runs the interpreter from materialized scripts outside the package, and removes them per run', async () => {
  463. // The interpreter is an EXTERNAL process, so it can only open paths the OS
  464. // resolves. Inside the single-file Python-SDK executable the packaged `py/`
  465. // directory lives in pkg's virtual filesystem, which Node reads through its
  466. // patched `fs` but `python3` cannot see, so spawning from that path fails
  467. // with ENOENT. The scripts are therefore copied to a real directory first.
  468. //
  469. // The path is read from the child's own `__main__` module, so it proves
  470. // where the interpreter actually loaded the entry script — asserting on a
  471. // host-side constant would only restate the source. The program namespace
  472. // seeds `__name__` but no `__file__`, hence the module lookup.
  473. // `protocol.py` must land in the SAME directory, since `bootstrap.py` puts
  474. // its own directory on `sys.path` to import it; the run completing at all
  475. // already exercises that import.
  476. const { runtime } = await setup()
  477. const entryOf = async (): Promise<string> => {
  478. const result = await runtime.run({ program: 'import sys\nreturn sys.modules["__main__"].__file__', bindings: [] })
  479. expect(result.error).toBeUndefined()
  480. return result.value as string
  481. }
  482. const entry = await entryOf()
  483. expect(entry.endsWith('/bootstrap.py')).toBe(true)
  484. const dir = dirname(entry)
  485. expect(realpathSync(dirname(dir))).toBe(realpathSync(tmpdir()))
  486. expect(basename(dir)).toMatch(/^dsh-code-runtime-python-/)
  487. expect(dir).not.toContain('/packages/')
  488. // Staging is per RUN and removed at settlement, so by the time `run()`
  489. // resolved the directory is already gone — nothing survives to be rewritten
  490. // by a later run. `protocol.py` had to be beside the entry script for the run
  491. // to complete at all, since `bootstrap.py` imports it off `sys.path`.
  492. expect(existsSync(dir)).toBe(false)
  493. // A second run stages its own copy rather than reusing the first.
  494. expect(dirname(await entryOf())).not.toBe(dir)
  495. })
  496. it('contains a program that rewrites its own bootstrap to the run that did it', async () => {
  497. // The child runs as the same UID as the host, so `0o700` does not stop model
  498. // code from rewriting the scripts it was started from —
  499. // `sys.modules['__main__'].__file__` names them. While all runs shared one
  500. // staged copy, a program that overwrote `bootstrap.py` broke the NEXT run
  501. // (measured: it settled as `worker-exit`), and substituted code would have
  502. // run before the resource limits were applied.
  503. const { runtime } = await setup({ maxWallMs: 10_000 })
  504. const sabotage = await runtime.run({
  505. program: [
  506. 'import sys',
  507. 'path = sys.modules["__main__"].__file__',
  508. 'open(path, "w").write("raise SystemExit(1)\\n")',
  509. 'return path',
  510. ].join('\n'),
  511. bindings: [],
  512. })
  513. expect(sabotage.error).toBeUndefined()
  514. // The damage stayed inside the run that caused it.
  515. const after = await runtime.run({ program: 'return 1 + 1', bindings: [] })
  516. expect(after.error).toBeUndefined()
  517. expect(after.value).toBe(2)
  518. }, 20_000)
  519. it('leaves no subprocess or scripts behind when disposal races the first run', async () => {
  520. // Staging runs SYNCHRONOUSLY so no async boundary opens between `run()` and
  521. // the point where `execute` registers the run in `live` and installs the
  522. // abort listener. With an `await` there, a disposal landing in that window
  523. // saw an empty `live`, returned, removed the script directory, and let the
  524. // continuation spawn a subprocess after the fiber was gone.
  525. //
  526. // `dispose()` is called in the same synchronous turn as `run()`, with no
  527. // `await` between them, so it lands exactly in that window.
  528. //
  529. // The leak assertion checks the EXACT paths this test file staged (recorded
  530. // by the mocked mkdtempSync) rather than diffing a global tmpdir: a
  531. // parallel vitest worker can create or remove same-prefix directories
  532. // inside the sampling window, which a readdir diff would misattribute to
  533. // this test (boot-write-failure.spec.ts records the same race).
  534. const stagedBefore = stagedDirs.length
  535. const { fiber, runtime } = await setup({ maxWallMs: 8_000 })
  536. const pending = runtime.run({ program: 'import time\nwhile True: time.sleep(0.1)', bindings: [] })
  537. const disposed = fiber.dispose()
  538. const result = await pending
  539. await disposed
  540. // Whatever the run reports, it must be terminal and must not be a success.
  541. expect(result.value).toBeUndefined()
  542. expect(['abort', 'worker-exit', 'timeout']).toContain(result.error?.kind)
  543. // Disposal is to quiescence, so every directory this run staged is gone.
  544. const created = stagedDirs.slice(stagedBefore)
  545. for (const dir of created) expect(existsSync(dir)).toBe(false)
  546. }, 15_000)
  547. it('settles as abort when the signal fires in the same turn as the first run', async () => {
  548. // Same window, the other listener. `addEventListener('abort')` does not
  549. // replay an event that already fired, so an abort landing before the
  550. // listener was installed used to be missed entirely and the program ran to
  551. // success or the wall ceiling instead of resolving as `abort`. Synchronous
  552. // staging keeps the pre-flight check and the listener in one turn, leaving
  553. // no gap for the signal to slip through.
  554. const { runtime } = await setup({ maxWallMs: 4_000, graceMs: 200 })
  555. const controller = new AbortController()
  556. const pending = runtime.run({
  557. program: 'import time\nwhile True: time.sleep(0.1)',
  558. bindings: [],
  559. signal: controller.signal,
  560. })
  561. controller.abort('same-turn-abort')
  562. const result = await pending
  563. expect(result.error?.kind).toBe('abort')
  564. expect(result.error?.message).toContain('same-turn-abort')
  565. }, 15_000)
  566. it('reports a staging failure as worker-exit instead of rejecting run()', async () => {
  567. // Staging touches the filesystem, so it can fail for reasons that are not
  568. // the caller's doing: a full or read-only temp filesystem, or a deployment
  569. // that failed to ship the packaged scripts. Those are SUBSTRATE failures,
  570. // the same class as a child that cannot start, and the seam reserves
  571. // rejection for misuse — so `run()` must resolve, not throw.
  572. //
  573. // `TMPDIR` is the honest lever: `mkdtempSync` builds its path from
  574. // `os.tmpdir()`, so pointing it at a path that is not a directory makes the
  575. // real call fail without stubbing the module under test.
  576. const previous = process.env.TMPDIR
  577. const notADirectory = join(await mkdtemp(join(tmpdir(), 'dsh-staging-')), 'file')
  578. await writeFile(notADirectory, '')
  579. process.env.TMPDIR = notADirectory
  580. try {
  581. const { runtime } = await setup()
  582. const result = await runtime.run({ program: 'return 1', bindings: [] })
  583. expect(result.error?.kind).toBe('worker-exit')
  584. expect(result.error?.message).toContain('failed to stage the python bootstrap')
  585. expect(result.logs).toEqual([])
  586. } finally {
  587. if (previous === undefined) delete process.env.TMPDIR
  588. else process.env.TMPDIR = previous
  589. }
  590. })
  591. it('leaves no staging directory behind when a script copy fails', async () => {
  592. // `mkdtempSync` succeeding and a later `copyFileSync` failing is its own
  593. // case: the directory exists but is only partially populated. Recording it
  594. // before the copies would leak it, because `run` retries staging on the next
  595. // call and overwrites the single recorded path — teardown could then remove
  596. // only the newest attempt. Staging must clean up its own partial directory.
  597. //
  598. // Only `copyFileSync` is stubbed, and only for the second script, so
  599. // `mkdtempSync` really runs and the directory under assertion is real.
  600. // The assertion checks the exact paths this test staged (see the sibling
  601. // disposal-race test for why a global tmpdir diff races parallel workers).
  602. const stagedBefore = stagedDirs.length
  603. failNextCopyOf.value = 'protocol.py'
  604. try {
  605. const { runtime } = await setup()
  606. const result = await runtime.run({ program: 'return 1', bindings: [] })
  607. expect(result.error?.kind).toBe('worker-exit')
  608. expect(result.error?.message).toContain('failed to stage the python bootstrap')
  609. // The partial directory is gone, so nothing accumulates across retries.
  610. for (const dir of stagedDirs.slice(stagedBefore)) expect(existsSync(dir)).toBe(false)
  611. } finally {
  612. failNextCopyOf.value = undefined
  613. }
  614. }, 15_000)
  615. })
  616. describe('PythonCodeRuntime — process identity', () => {
  617. it('reads a live process start time and distinguishes it from an absent pid', () => {
  618. // The teardown guard signals `-child.pid` with a RAW `process.kill`, which
  619. // (unlike `child.kill()`) has no handle check, so it would reach a recycled
  620. // pgid during the window between the leader being reaped and `close` firing.
  621. // A pid alone cannot separate the original from its replacement -- both
  622. // answer `kill(pid, 0)` -- so the guard compares START TIME, and this pins
  623. // that the reading is stable for one process and absent for a pid that
  624. // cannot be read.
  625. const own = readProcessStart(process.pid)
  626. if (process.platform === 'linux') {
  627. // Same process, two reads: the identity must be stable, or the guard would
  628. // refuse to signal its own live group.
  629. expect(own).toBeDefined()
  630. expect(readProcessStart(process.pid)).toBe(own)
  631. // Pid 0 is never a readable /proc entry, so the guard degrades to
  632. // undefined rather than throwing on a teardown path. This is also the
  633. // reading a REAPED leader produces -- its /proc entry is gone while the
  634. // group it led can still hold survivors -- so `undefined` must NOT be
  635. // treated as an identity mismatch. Reading it as one refused the SIGKILL
  636. // that the same-group survivor tests depend on, which is why they went red
  637. // on Linux while passing on Darwin (where the reader always returns
  638. // undefined and the guard is inert).
  639. expect(readProcessStart(0)).toBeUndefined()
  640. } else {
  641. // Darwin has no /proc: the reader reports undefined, and `killGroup`
  642. // signals the pgid without the identity re-check instead of paying a `ps`
  643. // fork per signal.
  644. expect(own).toBeUndefined()
  645. }
  646. })
  647. })
  648. describe('PythonCodeRuntime — inherited resource limits', () => {
  649. it.skipIf(process.platform === 'darwin')('runs under an inherited hard limit tighter than addressSpaceMb', async () => {
  650. // An unprivileged process may lower a hard rlimit but never raise it. Under
  651. // a harness started with `ulimit -v` below `addressSpaceBytes`, requesting
  652. // the configured cap made `setrlimit` raise `ValueError` and every run
  653. // returned a bootstrap exception — even though the inherited limit is
  654. // STRONGER than the one asked for. The bootstrap clamps to the inherited
  655. // hard limit instead, so the run proceeds under the stricter bound.
  656. //
  657. // `pythonBin` is the honest lever: a wrapper that lowers RLIMIT_AS and then
  658. // execs the real interpreter reproduces the inherited-limit condition
  659. // without touching this test process's own limits.
  660. const dir = await mkdtemp(join(tmpdir(), 'dsh-rlimit-'))
  661. const wrapper = join(dir, 'python3-capped')
  662. // 256 MiB, half the 512 MiB addressSpaceMb default, so the requested cap is
  663. // unambiguously above the inherited ceiling.
  664. await writeFile(wrapper, `#!/bin/sh\nulimit -v 262144\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  665. const { runtime } = await setup({ pythonBin: wrapper })
  666. const result = await runtime.run({
  667. program: 'import resource\nreturn resource.getrlimit(resource.RLIMIT_AS)[1]',
  668. bindings: [],
  669. })
  670. expect(result.error).toBeUndefined()
  671. // The applied hard limit is the inherited one, not the configured 512 MiB.
  672. expect(result.value).toBe(256 * 1024 * 1024)
  673. }, 15_000)
  674. it('rejects at boot when an inherited RLIMIT_AS is too tight for the output budgets', async () => {
  675. // The host gate validates the output budgets against the CONFIGURED
  676. // addressSpaceMb, but a launch environment can inherit a STRICTER RLIMIT_AS
  677. // (a `ulimit -v` wrapper below addressSpaceMb), which the bootstrap clamps the
  678. // effective limit down to — leaving the budgets sized for a ceiling the child
  679. // never gets, so a near-budget output would OOM mid-run as an opaque
  680. // worker-exit. The bootstrap re-checks both budgets against the EFFECTIVE
  681. // clamped limit and fails loud at boot instead. A 128 MiB inherited limit
  682. // leaves 64 MiB budgetable (~5 MiB admissible under the 12x multiple), under
  683. // which a 32 MiB maxLogBytes — admitted by the 512 MiB configured default — is
  684. // rejected. The rejection surfaces as an 'exception' (bootstrap's
  685. // setrlimit-phase failure class), not a mid-run OOM. The repro is Linux-only
  686. // (macOS ignores `ulimit -v`); there the run proceeds.
  687. const dir = await mkdtemp(join(tmpdir(), 'dsh-rlimit-'))
  688. const wrapper = join(dir, 'python3-tight')
  689. await writeFile(wrapper, `#!/bin/sh\nulimit -v 131072\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  690. const { runtime } = await setup({ pythonBin: wrapper, maxLogBytes: 32 * 1024 * 1024, addressSpaceMb: 512 })
  691. const result = await runtime.run({ program: 'return 1', bindings: [] })
  692. if (process.platform === 'darwin') {
  693. expect(result.error).toBeUndefined()
  694. } else {
  695. // The re-check raises inside bootstrap's resource-limit block, which
  696. // reports every setrlimit-phase failure as kind 'exception'; the message
  697. // discriminates this config rejection from a generic setrlimit error.
  698. expect(result.error?.kind).toBe('exception')
  699. expect(result.error?.message).toContain('too large for the inherited RLIMIT_AS')
  700. }
  701. }, 15_000)
  702. it('applies the configured limits when nothing tighter is inherited', async () => {
  703. // The clamp must not weaken the normal path: with an infinite inherited hard
  704. // limit there is nothing to clamp against, and RLIM_INFINITY compares as -1,
  705. // so treating it as a numeric bound would collapse every limit to -1.
  706. const { runtime } = await setup({ cpuSeconds: 42, addressSpaceMb: 400 })
  707. const result = await runtime.run({
  708. // `getrlimit` returns a tuple, which the lossless-JSON completion check
  709. // rejects; the pair is listed explicitly rather than converted.
  710. program: [
  711. 'import resource, sys',
  712. 'cpu = resource.getrlimit(resource.RLIMIT_CPU)',
  713. 'address_space = None if sys.platform == "darwin" else resource.getrlimit(resource.RLIMIT_AS)[1]',
  714. 'return {"cpu": [cpu[0], cpu[1]], "addressSpace": address_space}',
  715. ].join('\n'),
  716. bindings: [],
  717. })
  718. expect(result.error).toBeUndefined()
  719. // Darwin deliberately skips RLIMIT_AS; every other Unix host applies the
  720. // configured bytes alongside the CPU soft/hard pair.
  721. expect(result.value).toEqual({
  722. cpu: [42, 43],
  723. addressSpace: process.platform === 'darwin' ? null : 400 * 1024 * 1024,
  724. })
  725. }, 15_000)
  726. it('preserves an inherited soft limit stricter than the configured cap', async () => {
  727. // Clamping reads BOTH inherited bounds, not just the hard one. A deployment
  728. // that inherited a soft rlimit below the configured cap must keep that
  729. // stricter soft: returning the configured value would RAISE the effective
  730. // soft limit, loosening containment. The wrapper lowers only the SOFT CPU
  731. // limit (`ulimit -S -t`) and leaves the hard limit unlimited, so the
  732. // requested soft (`cpuSeconds`) sits above the inherited soft — the case that
  733. // exposed the bug. RLIMIT_CPU is used because macOS ignores `ulimit -v`
  734. // (RLIMIT_AS), which is exactly why the backend skips address space there.
  735. const dir = await mkdtemp(join(tmpdir(), 'dsh-rlimit-soft-'))
  736. const wrapper = join(dir, 'python3-soft-capped')
  737. // Soft CPU 5 s, well below the configured 30 s, hard left unlimited.
  738. await writeFile(wrapper, `#!/bin/sh\nulimit -S -t 5\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  739. const { runtime } = await setup({ pythonBin: wrapper, cpuSeconds: 30 })
  740. const result = await runtime.run({
  741. program: 'import resource\nreturn resource.getrlimit(resource.RLIMIT_CPU)[0]',
  742. bindings: [],
  743. })
  744. expect(result.error).toBeUndefined()
  745. // The applied SOFT limit is the inherited 5 s, not the configured 30 s.
  746. expect(result.value).toBe(5)
  747. }, 15_000)
  748. it('reports a CPU overrun under a dual-limit ulimit as a timeout, not a worker-exit', async () => {
  749. // `ulimit -t N` sets BOTH the soft and hard CPU limit to N. The kernel
  750. // checks the hard limit and SIGKILLs a busy loop directly, so with
  751. // soft == hard the SIGXCPU signal is never delivered — and the host
  752. // classifies a CPU overrun ONLY on `signal === 'SIGXCPU'`, so the overrun
  753. // would be misreported as a `worker-exit` instead of a timeout. `_clamped`
  754. // now lowers a clamped soft==hard result by one unit (when hard >= 2), so
  755. // the SIGXCPU signal fires at the softer limit and the run reports a
  756. // timeout. This uses `ulimit -t 2` (hard == 2, so the soft is lowered to 1)
  757. // and leaves SIGXCPU unhandled, so the kernel terminates the busy loop at
  758. // 1 s with SIGXCPU and the host classifies it as a timeout.
  759. const dir = await mkdtemp(join(tmpdir(), 'dsh-rlimit-dual-'))
  760. const wrapper = join(dir, 'python3-dual-capped')
  761. // Both soft and hard CPU 2 s; configured cpuSeconds 30 s.
  762. await writeFile(wrapper, `#!/bin/sh\nulimit -t 2\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  763. const { runtime } = await setup({ pythonBin: wrapper, cpuSeconds: 30, maxWallMs: 12_000 })
  764. const result = await runtime.run({
  765. program: [
  766. 'while True:',
  767. ' pass',
  768. 'return "unreachable"',
  769. ].join('\n'),
  770. bindings: [],
  771. })
  772. expect(result.error?.kind).toBe('timeout')
  773. expect(result.error?.message).toContain('CPU time exhausted')
  774. }, 15_000)
  775. it('reports a timeout when a program masks SIGXCPU and returns past the soft limit', async () => {
  776. // A program can mask SIGXCPU (pthread_sigmask SIG_BLOCK), burn past the
  777. // soft CPU limit, and return during the soft-to-hard gap. The settlement
  778. // recheck (`die_if_cpu_exhausted`) must UNBLOCK the signal before
  779. // re-delivering it, or the SIGXCPU stays pending and the child exits
  780. // normally with a success result. With the unblock, the re-delivered
  781. // SIGXCPU (default disposition) terminates the child and the host
  782. // classifies the run as a timeout. Fail-before: without the unblock the
  783. // run reports `value: "escaped"` and no error. The masking is guarded by
  784. // hasattr so the case is a no-op on platforms without pthread_sigmask.
  785. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 12_000 })
  786. const result = await runtime.run({
  787. program: [
  788. 'import signal, time',
  789. 'if hasattr(signal, "pthread_sigmask"):',
  790. ' signal.pthread_sigmask(signal.SIG_BLOCK, {signal.SIGXCPU})',
  791. 'end = time.process_time() + 1.05',
  792. 'while time.process_time() < end:',
  793. ' pass',
  794. 'return "escaped"',
  795. ].join('\n'),
  796. bindings: [],
  797. })
  798. expect(result.error?.kind).toBe('timeout')
  799. expect(result.value).toBeUndefined()
  800. }, 20_000)
  801. it('reports a timeout when the interpreter was started with SIGXCPU ignored (inherited state)', async () => {
  802. // The child inherits the host's SIGXCPU disposition: a wrapper that
  803. // ignores SIGXCPU before exec'ing python3 hands the child a soft
  804. // RLIMIT_CPU that cannot stop it. The bootstrap resets SIGXCPU to SIG_DFL
  805. // before model code runs, so a busy loop still ends as a timeout rather
  806. // than running to the hard limit and being misclassified as worker-exit.
  807. const wrapper = join(tmpdir(), `dsh-xcpu-ignore-${process.pid}.sh`)
  808. writeFileSync(wrapper, `#!/bin/sh\ntrap "" XCPU\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  809. try {
  810. const { runtime } = await setup({ maxWallMs: 30_000, cpuSeconds: 1, pythonBin: wrapper })
  811. const result = await runtime.run({
  812. program: ['while True: pass'].join('\n'),
  813. bindings: [],
  814. })
  815. expect(result.error?.kind).toBe('timeout')
  816. } finally {
  817. rmSync(wrapper, { force: true })
  818. }
  819. }, 20_000)
  820. it('reports a timeout when a program traps AND masks SIGXCPU and returns past the soft limit', async () => {
  821. // The mask-only case exercises the unblock; the trap+mask combination is
  822. // the harder one: a program that installed a custom handler AND masked the
  823. // signal has that PENDING handler run the moment the signal is unblocked
  824. // (CPython delivers it at the next eval-breaker checkpoint in model code),
  825. // and the handler re-masks — so the settlement recheck must restore the
  826. // default disposition BEFORE unblocking. With SIG_DFL restored first, the
  827. // pending signal kills the process inside the kernel with no bytecode
  828. // window; without it, the handler re-blocks and the child exits normally
  829. // with a success value. Fail-before: the run reports `value: "escaped"`.
  830. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 12_000 })
  831. const result = await runtime.run({
  832. program: [
  833. 'import signal, time',
  834. 'if hasattr(signal, "pthread_sigmask"):',
  835. ' def h(signum, frame):',
  836. ' signal.pthread_sigmask(signal.SIG_BLOCK, {signal.SIGXCPU})',
  837. ' signal.signal(signal.SIGXCPU, h)',
  838. ' signal.pthread_sigmask(signal.SIG_BLOCK, {signal.SIGXCPU})',
  839. ' end = time.process_time() + 1.05',
  840. ' while time.process_time() < end:',
  841. ' pass',
  842. 'return "escaped"',
  843. ].join('\n'),
  844. bindings: [],
  845. })
  846. expect(result.error?.kind).toBe('timeout')
  847. expect(result.value).toBeUndefined()
  848. }, 20_000)
  849. it('rechecks CPU at settlement against the effective inherited soft limit', async () => {
  850. // The settlement-time CPU recheck must compare against the EFFECTIVE soft
  851. // limit (`_clamped` may have lowered it to a stricter inherited value), not
  852. // the configured `cpuSeconds`. A program that traps SIGXCPU, burns past the
  853. // inherited soft, and returns inside the soft-to-hard gap would otherwise be
  854. // compared to the configured value and falsely reported successful, bypassing
  855. // the inherited limit. The wrapper sets a 1 s soft CPU limit; the program
  856. // traps SIGXCPU and busy-loops past it, then returns — the recheck must
  857. // re-deliver SIGXCPU so the host classifies the run as a timeout.
  858. const dir = await mkdtemp(join(tmpdir(), 'dsh-cpu-recheck-'))
  859. const wrapper = join(dir, 'python3-cpu-capped')
  860. await writeFile(wrapper, `#!/bin/sh\nulimit -S -t 1\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  861. const { runtime } = await setup({ pythonBin: wrapper, cpuSeconds: 30, maxWallMs: 12_000 })
  862. const result = await runtime.run({
  863. program: [
  864. 'import signal, time',
  865. // Trap SIGXCPU so the soft limit does not terminate the program; burn
  866. // CPU well past the inherited 1 s soft, then return normally.
  867. 'signal.signal(signal.SIGXCPU, lambda *a: None)',
  868. 'end = time.process_time() + 2.5',
  869. 'while time.process_time() < end:',
  870. ' pass',
  871. 'return "returned"',
  872. ].join('\n'),
  873. bindings: [],
  874. })
  875. // The recheck compares spent CPU against the effective 1 s soft, not 30 s, so
  876. // the run is a timeout rather than a false success.
  877. expect(result.error?.kind).toBe('timeout')
  878. }, 20_000)
  879. })
  880. describe('PythonCodeRuntime — programs and bindings', () => {
  881. it('runs a top-level script, captures print output, and returns `result`', async () => {
  882. const { runtime } = await setup()
  883. const result = await runtime.run({
  884. program: [
  885. 'x = 40',
  886. 'y = 2',
  887. 'print("hello", x + y)',
  888. 'return {"answer": x + y}',
  889. ].join('\n'),
  890. bindings: [],
  891. })
  892. expect(result.error).toBeUndefined()
  893. expect(result.value).toEqual({ answer: 42 })
  894. // `print` in Python emits: text, ' ', text, '\n'. Concat the captured
  895. // fragments and assert the model-visible message survives.
  896. expect(result.logs.join('')).toContain('hello 42')
  897. // 15s: this is usually the suite's first real subprocess — a cold python3
  898. // start (interpreter + asyncio import) on a loaded CI runner can exceed
  899. // the 5s default alone; later tests reuse the warm page cache.
  900. }, 15_000)
  901. it('exposes only the platform temp directory from the host environment', async () => {
  902. const { runtime } = await setup()
  903. const result = await runtime.run({
  904. program: [
  905. 'import os',
  906. 'return {',
  907. ' "tmpdir": os.environ.get("TMPDIR"),',
  908. ' "path": os.environ.get("PATH"),',
  909. ' "home": os.environ.get("HOME"),',
  910. ' "token": os.environ.get("DEEPSEEK_API_KEY"),',
  911. '}',
  912. ].join('\n'),
  913. bindings: [],
  914. })
  915. expect(result.error).toBeUndefined()
  916. expect(result.value).toEqual({ tmpdir: tmpdir(), path: null, home: null, token: null })
  917. expect(result.logs).toEqual([])
  918. })
  919. it('bridges binding calls both ways and rejects the program-side call on a host rejection', async () => {
  920. const { runtime } = await setup()
  921. const calls: unknown[] = []
  922. const result = await runtime.run({
  923. program: [
  924. 'first = await tools.echo({"n": 1})',
  925. 'caught = ""',
  926. 'try:',
  927. ' await tools.fail({})',
  928. 'except RuntimeError as e:',
  929. ' caught = str(e)',
  930. 'return {"first": first, "caught": caught}',
  931. ].join('\n'),
  932. bindings: tools({
  933. echo: async (args) => { calls.push(args); return { echoed: args as CodeJsonValue } },
  934. fail: async () => { throw new Error('nope') },
  935. }),
  936. })
  937. expect(result.error).toBeUndefined()
  938. expect(result.value).toEqual({ first: { echoed: { n: 1 } }, caught: 'nope' })
  939. expect(calls).toEqual([{ n: 1 }])
  940. })
  941. it('keeps decoding binding replies when _decode_json_plain is rebound', async () => {
  942. // read_frame_async resolves _decode_json_plain at call time; a program that
  943. // rebinds __main__._decode_json_plain would otherwise kill the reply pump
  944. // (a broken decode strands every pending Future to the wall clock). The
  945. // decode primitives are def-time captures on the channel methods, so a
  946. // rebind cannot break reply delivery.
  947. const { runtime } = await setup()
  948. const result = await runtime.run({
  949. program: [
  950. 'import __main__',
  951. '__main__._decode_json_plain = None',
  952. 'first = await tools.echo({"n": 1})',
  953. 'return first',
  954. ].join('\n'),
  955. bindings: tools({
  956. echo: async args => ({ echoed: args as CodeJsonValue }),
  957. }),
  958. })
  959. expect(result.error).toBeUndefined()
  960. expect(result.value).toEqual({ echoed: { n: 1 } })
  961. }, 15_000)
  962. it('keeps dispatch working when _lossless_json_violation, asyncio, and send_sync are rebound', async () => {
  963. // dispatch binds _lossless_json_violation, asyncio.get_event_loop, and the
  964. // channel's send method into _run locals before the program runs, so a
  965. // rebind of __main__._lossless_json_violation/__main__.asyncio/
  966. // __main__.ProtocolChannel.send_sync cannot turn a legitimate binding call
  967. // into an exception or a wall-clock timeout.
  968. const { runtime } = await setup()
  969. const result = await runtime.run({
  970. program: [
  971. 'import __main__',
  972. 'def boom(*a, **k):',
  973. ' raise RuntimeError("hijacked")',
  974. '__main__._lossless_json_violation = boom',
  975. '__main__.asyncio = boom',
  976. '__main__.ProtocolChannel.send_sync = boom',
  977. '__main__._encode_json_plain = boom',
  978. '__main__.ProtocolChannel.write_encoded = boom',
  979. 'first = await tools.echo({"n": 1})',
  980. 'return first',
  981. ].join('\n'),
  982. bindings: tools({
  983. echo: async args => ({ echoed: args as CodeJsonValue }),
  984. }),
  985. })
  986. expect(result.error).toBeUndefined()
  987. expect(result.value).toEqual({ echoed: { n: 1 } })
  988. }, 15_000)
  989. it('keeps the reply pump reading when the read_frame_async class attribute is rebound', async () => {
  990. // _pump_replies' frame reader is a bound method captured by _run before the
  991. // program runs and passed in as an explicit argument, so a program rebinding
  992. // `__main__.ProtocolChannel.read_frame_async` cannot redirect the pump (a
  993. // body-local `channel.read_frame_async` lookup would resolve the rebound
  994. // class attribute, since the pump starts after the program's top-level
  995. // statements).
  996. const { runtime } = await setup()
  997. const result = await runtime.run({
  998. program: [
  999. 'import __main__',
  1000. 'async def boom(*a, **k):',
  1001. ' raise RuntimeError("hijacked reader")',
  1002. '__main__.ProtocolChannel.read_frame_async = boom',
  1003. 'first = await tools.echo({"n": 1})',
  1004. 'return first',
  1005. ].join('\n'),
  1006. bindings: tools({
  1007. echo: async args => ({ echoed: args as CodeJsonValue }),
  1008. }),
  1009. })
  1010. expect(result.error).toBeUndefined()
  1011. expect(result.value).toEqual({ echoed: { n: 1 } })
  1012. }, 15_000)
  1013. it('keeps the rejection contract when _BindingRejection is rebound', async () => {
  1014. // `dispatch`'s except clause resolves `_BindingRejection` at call time; a
  1015. // program that rebinds `__main__._BindingRejection = ValueError` would
  1016. // otherwise let the internal marker type leak into model code (the program
  1017. // would catch a `ValueError` for a host rejection). The class is now bound
  1018. // into `_run` locals before the program runs, so a host rejection still
  1019. // surfaces as the declared `RuntimeError`.
  1020. const { runtime } = await setup()
  1021. const result = await runtime.run({
  1022. program: [
  1023. 'import __main__',
  1024. '__main__._BindingRejection = ValueError',
  1025. 'caught = ""',
  1026. 'try:',
  1027. ' await tools.fail({})',
  1028. 'except RuntimeError as e:',
  1029. ' caught = e.args[0] if e.args else ""',
  1030. 'except Exception as e:',
  1031. ' caught = "WRONG TYPE: " + type(e).__name__',
  1032. 'return caught',
  1033. ].join('\n'),
  1034. bindings: tools({
  1035. fail: async () => { throw new Error('nope') },
  1036. }),
  1037. })
  1038. expect(result.error).toBeUndefined()
  1039. expect(result.value).toBe('nope')
  1040. }, 15_000)
  1041. it('still answers the call when the rejection value cannot be converted to a string', async () => {
  1042. // `messageOf` calls `String(error)`, which runs the value's own conversion,
  1043. // and this call site is a DETACHED async reply callback. A rejection whose
  1044. // `Symbol.toPrimitive` throws therefore escaped as an unhandled rejection:
  1045. // the reply frame was never written, the program stayed blocked on `await`,
  1046. // and the run degraded to a `maxWallMs` timeout (observed) — a host with no
  1047. // `unhandledRejection` listener would exit instead. The rejection must reach
  1048. // the program as an ordinary error carrying a fixed placeholder.
  1049. const { runtime } = await setup({ maxWallMs: 8_000 })
  1050. const result = await runtime.run({
  1051. program: [
  1052. 'try:',
  1053. ' await tools.hostile({})',
  1054. 'except RuntimeError as e:',
  1055. ' return "rejected: " + str(e)',
  1056. 'return "no rejection"',
  1057. ].join('\n'),
  1058. bindings: tools({
  1059. hostile: async () => {
  1060. throw { [Symbol.toPrimitive]() { throw new Error('toPrimitive blew up') } }
  1061. },
  1062. }),
  1063. })
  1064. expect(result.error).toBeUndefined()
  1065. expect(result.value).toBe('rejected: <unrenderable rejection value>')
  1066. }, 15_000)
  1067. it('still answers the call when an Error carries a cyclic value in place of its message', async () => {
  1068. // `Error.message` is typed `string` but is a plain writable property, so a
  1069. // rejection can carry any value there. Returning it verbatim handed a
  1070. // non-string to `sendReply`, breaching `encodeJsonPlain`'s JSON-plain
  1071. // precondition: a cyclic object grew the encoder stack until the host threw
  1072. // RangeError from the detached reply callback, so no reply frame was written
  1073. // and the run degraded to a `maxWallMs` timeout (observed). The conversion
  1074. // must contain it — `String()` on a cycle throws inside the guard and lands
  1075. // on the placeholder, so the program sees an ordinary error.
  1076. const { runtime } = await setup({ maxWallMs: 8_000 })
  1077. const result = await runtime.run({
  1078. program: [
  1079. 'try:',
  1080. ' await tools.hostile({})',
  1081. 'except RuntimeError as e:',
  1082. ' return "rejected: " + str(e)',
  1083. 'return "no rejection"',
  1084. ].join('\n'),
  1085. bindings: tools({
  1086. hostile: async () => {
  1087. const cyclic: { self?: unknown; [Symbol.toPrimitive]: () => string } = {
  1088. // A cycle alone is inert for `String()`; the throwing conversion is
  1089. // what proves the guard runs rather than the encoder.
  1090. [Symbol.toPrimitive]: () => { throw new Error('cyclic message') },
  1091. }
  1092. cyclic.self = cyclic
  1093. const error = new Error('placeholder')
  1094. // Writable per spec, so no cast is needed to install a non-string.
  1095. ;(error as unknown as { message: unknown }).message = cyclic
  1096. throw error
  1097. },
  1098. }),
  1099. })
  1100. expect(result.error).toBeUndefined()
  1101. expect(result.value).toBe('rejected: <unrenderable rejection value>')
  1102. }, 15_000)
  1103. it('renders an Error whose message is a value with no JSON form', async () => {
  1104. // The non-cyclic arm. A number would not discriminate: `scalarJson` renders
  1105. // it as digits and the child `str()`s the field back, so it survives the
  1106. // wire either way. `undefined` is the value that separates the two orders —
  1107. // `scalarJson` emits a bare `undefined` token, so the reply line is not JSON
  1108. // at all, the child's parse drops the frame, and the program stays blocked
  1109. // on `await` until the wall ceiling (observed). Converting first sends the
  1110. // string "undefined", which the program receives as an ordinary rejection.
  1111. const { runtime } = await setup({ maxWallMs: 8_000 })
  1112. const result = await runtime.run({
  1113. program: [
  1114. 'try:',
  1115. ' await tools.absent({})',
  1116. 'except RuntimeError as e:',
  1117. ' return "rejected: " + str(e)',
  1118. 'return "no rejection"',
  1119. ].join('\n'),
  1120. bindings: tools({
  1121. absent: async () => {
  1122. const error = new Error('placeholder')
  1123. ;(error as unknown as { message: unknown }).message = undefined
  1124. throw error
  1125. },
  1126. }),
  1127. })
  1128. expect(result.error).toBeUndefined()
  1129. expect(result.value).toBe('rejected: undefined')
  1130. }, 15_000)
  1131. it('runs a program with no await', async () => {
  1132. const { runtime } = await setup()
  1133. const result = await runtime.run({
  1134. program: 'return 2 + 2',
  1135. bindings: [],
  1136. })
  1137. expect(result.error).toBeUndefined()
  1138. expect(result.value).toBe(4)
  1139. })
  1140. it('returns JSON null whether the program returns None or falls off the end', async () => {
  1141. // Python has no `undefined`: an async body that returns None and one that
  1142. // never returns both yield None, so both complete as an exact JSON null.
  1143. // (The worker/TS backend can tell `return undefined` from `return null`;
  1144. // Python cannot, and reporting null for both is the honest rendering.)
  1145. const { runtime } = await setup()
  1146. const explicit = await runtime.run({ program: 'return None', bindings: [] })
  1147. expect(explicit.error).toBeUndefined()
  1148. expect(explicit.value).toBeNull()
  1149. const noReturn = await runtime.run({ program: 'x = 1', bindings: [] })
  1150. expect(noReturn.error).toBeUndefined()
  1151. expect(noReturn.value).toBeNull()
  1152. })
  1153. it('settles with no value on a forged valueless done frame', async () => {
  1154. // The child always sends a value now (return None → JSON null), so a done
  1155. // frame with no value key can only be forged; the host settles it as a
  1156. // value-less completion rather than crashing on the absent field.
  1157. const { runtime } = await setup()
  1158. const result = await runtime.run({
  1159. program: [
  1160. 'import os',
  1161. 'os.write(3, b\'{"type":"done"}\\n\')',
  1162. 'import time',
  1163. 'time.sleep(5)',
  1164. ].join('\n'),
  1165. bindings: [],
  1166. })
  1167. expect(result.error).toBeUndefined()
  1168. expect(result.value).toBeUndefined()
  1169. })
  1170. it('coalesces print arguments into one log line, not per-write fragments', async () => {
  1171. // print("a","b") calls write() per arg/sep/newline; the stream must emit
  1172. // one logical line "a b" so PTC mode's join(newline) does not insert
  1173. // spurious blank lines. Two prints → exactly two entries, no empties.
  1174. const { runtime } = await setup()
  1175. const result = await runtime.run({
  1176. program: ['print("a", "b")', 'print("c")', 'return None'].join('\n'),
  1177. bindings: [],
  1178. })
  1179. expect(result.error).toBeUndefined()
  1180. expect(result.logs).toEqual(['a b', 'c'])
  1181. })
  1182. it('flushes a print with no trailing newline', async () => {
  1183. const { runtime } = await setup()
  1184. const result = await runtime.run({
  1185. program: ['print("partial", end="")', 'return None'].join('\n'),
  1186. bindings: [],
  1187. })
  1188. expect(result.error).toBeUndefined()
  1189. expect(result.logs).toEqual(['partial'])
  1190. })
  1191. it('aggregates a large newline-free native write into one log entry, not one per pipe chunk', async () => {
  1192. // A single `os.write` larger than one pipe read arrives as several Node
  1193. // `data` chunks. `logs` entries are joined with `\n` downstream, so pushing
  1194. // one entry per transport chunk would insert model-visible newlines at
  1195. // arbitrary pipe boundaries inside one native write. Stray capture holds a
  1196. // per-stream residual and admits only on a real `\n`, so a 200 KiB blast
  1197. // with no newline reads back as exactly one entry with no interior breaks.
  1198. const { runtime } = await setup({ maxLogBytes: 300_000 })
  1199. const size = 200_000
  1200. const result = await runtime.run({
  1201. program: ['import os', `os.write(1, b"A" * ${size})`, 'return None'].join('\n'),
  1202. bindings: [],
  1203. })
  1204. expect(result.error).toBeUndefined()
  1205. expect(result.logs).toEqual(['A'.repeat(size)])
  1206. })
  1207. it('splits native output on its own newlines, one entry per line', async () => {
  1208. // The complement of the aggregation case: real newlines in a native write
  1209. // still delimit entries, matching the child's line-granular `log` frames.
  1210. const { runtime } = await setup()
  1211. const result = await runtime.run({
  1212. program: ['import os', 'os.write(1, b"one\\ntwo\\nthree")', 'return None'].join('\n'),
  1213. bindings: [],
  1214. })
  1215. expect(result.error).toBeUndefined()
  1216. expect(result.logs).toEqual(['one', 'two', 'three'])
  1217. })
  1218. it('preserves each native stream order while allowing backend-dependent interleaving', async () => {
  1219. const { runtime } = await setup()
  1220. const result = await runtime.run({
  1221. program: [
  1222. 'import os',
  1223. 'os.write(1, b"stdout-one\\n")',
  1224. 'os.write(2, b"stderr-one\\n")',
  1225. 'os.write(1, b"stdout-two\\n")',
  1226. 'os.write(2, b"stderr-two\\n")',
  1227. 'return None',
  1228. ].join('\n'),
  1229. bindings: [],
  1230. })
  1231. expect(result.error).toBeUndefined()
  1232. expect(result.logs.indexOf('stdout-one')).toBeLessThan(result.logs.indexOf('stdout-two'))
  1233. expect(result.logs.indexOf('stderr-one')).toBeLessThan(result.logs.indexOf('stderr-two'))
  1234. })
  1235. it('bounds a newline-free native flood by the ledger instead of buffering it whole', async () => {
  1236. // A newline-free write far larger than maxLogBytes must not accumulate in
  1237. // the host-side residual: when the pending residual would cross the budget
  1238. // it is admitted (and truncated) immediately, and once the ledger has
  1239. // truncated, later chunks stop buffering entirely. The run still completes
  1240. // and the captured output ends at the truncation marker rather than
  1241. // retaining the whole flood.
  1242. const { runtime } = await setup({ maxLogBytes: 4096 })
  1243. const result = await runtime.run({
  1244. program: ['import os', 'os.write(1, b"A" * 2_000_000)', 'return None'].join('\n'),
  1245. bindings: [],
  1246. })
  1247. expect(result.error).toBeUndefined()
  1248. expect(result.logs.at(-1)).toBe(logTruncationMarker(4096))
  1249. // The retained output is bounded by the budget, not the 2 MB flood.
  1250. expect(result.logs.join('').length).toBeLessThan(4096)
  1251. })
  1252. it('bounds a newline-free single-character Python write drip by the fragment cap, not OOM', async () => {
  1253. // The child-side `_LogStream` buffers one fragment per `write` (so
  1254. // `print("x", end="")` does not concatenate quadratically). A newline-free
  1255. // drip of one character per call past a large `maxLogBytes` would otherwise
  1256. // accumulate one list slot (and one str object) per call — 25 M calls =
  1257. // ~25 M slots, which OOMs the host on its own accounting before the byte
  1258. // budget is reached. The stream seals the fragment list past
  1259. // `_PENDING_MAX_CHUNKS` into one joined block (character count unchanged),
  1260. // bounding the live fragment count exactly as the host-side `captureStray`
  1261. // seal does. This drives well past the cap and asserts the run still
  1262. // completes with a truncation marker rather than a MemoryError.
  1263. const { runtime } = await setup({ maxLogBytes: 4096 })
  1264. const result = await runtime.run({
  1265. program: [
  1266. 'import sys',
  1267. 'for _ in range(200_000):',
  1268. ' sys.stdout.write("x")',
  1269. 'return None',
  1270. ].join('\n'),
  1271. bindings: [],
  1272. })
  1273. expect(result.error).toBeUndefined()
  1274. expect(result.logs.at(-1)).toBe(logTruncationMarker(4096))
  1275. })
  1276. it('bounds a control-char-dense native residual by serialized cost, not raw length', async () => {
  1277. // A newline-free NUL flood passes the cheap `length + 3` lower bound at a
  1278. // raw length well under the budget, but each NUL serializes to `\u0000` (6
  1279. // bytes), so the true JSON cost is ~6x. The ledger must charge that
  1280. // serialized cost — and `jsonStringCostUpTo` must measure it WITHOUT
  1281. // allocating the escaped copy, so a near-budget line under a large
  1282. // maxLogBytes cannot momentarily allocate a multi-gigabyte `JSON.stringify`
  1283. // result. Under a small budget the residual is truncated once the serialized
  1284. // cost crosses it.
  1285. const { runtime } = await setup({ maxLogBytes: 4096 })
  1286. const result = await runtime.run({
  1287. program: ['import os', 'os.write(1, b"\\x00" * 4000)', 'return None'].join('\n'),
  1288. bindings: [],
  1289. })
  1290. expect(result.error).toBeUndefined()
  1291. expect(result.logs.at(-1)).toBe(logTruncationMarker(4096))
  1292. })
  1293. it('rejects an output budget that could breach addressSpaceMb during encode at load', async () => {
  1294. // The child builds, charges, and encodes a `maxLogBytes` log entry or a
  1295. // `maxValueBytes` completion value under RLIMIT_AS, and both trigger on
  1296. // character count against a serialized-byte budget — an astral character is
  1297. // one character but ~4 bytes stored and ~4 encoded, and THREE such copies are
  1298. // live at the peak (the caller's write argument, the slice/join handed to
  1299. // push, and the encode copy), so a budget approaching the address space lets a
  1300. // legitimate near-budget output breach it and die as worker-exit. The
  1301. // incompatible pair is rejected at load: each budget times the worst-case
  1302. // multiple (12) must fit the address space LEFT after the fixed interpreter
  1303. // baseline. Against a 256 MiB address space that leaves 192 MiB budgetable
  1304. // (~16 MiB admissible), so a 50 MB cap is far over; the default caps against
  1305. // 512 MiB are not. Both budgets are gated symmetrically — the value case sets
  1306. // a default-fitting maxLogBytes so the maxValueBytes check is what fires.
  1307. const ctxLog = new Context()
  1308. await expect(ctxLog.plugin(PythonCodeRuntime, { maxLogBytes: 50_000_000, addressSpaceMb: 256 }))
  1309. .rejects.toThrow(/maxLogBytes times the 12x worst-case Unicode expansion must fit/)
  1310. const ctxValue = new Context()
  1311. await expect(ctxValue.plugin(PythonCodeRuntime, { maxValueBytes: 50_000_000, addressSpaceMb: 256 }))
  1312. .rejects.toThrow(/maxValueBytes times the 12x worst-case Unicode expansion must fit/)
  1313. // Discriminates 12 from 8: a 48 MiB maxLogBytes against a 512 MiB address
  1314. // space leaves 448 MiB budgetable. 48*8 = 384 MiB fits (the old 8x multiple
  1315. // wrongly ADMITTED this), but 48*12 = 576 MiB does not. The ~12x peak this
  1316. // guards is the NEWLINE path's single near-budget write — the caller's own
  1317. // string, the line slice, and the encode copy live at once. The settlement
  1318. // flush is no longer the binding case: `flush_line` drops the pending chunks
  1319. // before its push, so it holds two copies, not three.
  1320. const ctxTwelve = new Context()
  1321. await expect(ctxTwelve.plugin(PythonCodeRuntime, { maxLogBytes: 48 * 1024 * 1024, addressSpaceMb: 512 }))
  1322. .rejects.toThrow(/maxLogBytes times the 12x worst-case Unicode expansion must fit/)
  1323. // An addressSpaceMb at or below the interpreter baseline leaves nothing
  1324. // budgetable, so no budget value can pass. It is rejected on its own terms:
  1325. // the budget loop would otherwise report "a limit of -1" (or -2796203 at
  1326. // 32 MiB) while naming maxLogBytes, sending the operator to the wrong knob.
  1327. const ctxBaseline = new Context()
  1328. await expect(ctxBaseline.plugin(PythonCodeRuntime, { addressSpaceMb: 64 }))
  1329. .rejects.toThrow(/addressSpaceMb must exceed the 67108864-byte interpreter baseline/)
  1330. const ctxBelow = new Context()
  1331. await expect(ctxBelow.plugin(PythonCodeRuntime, { addressSpaceMb: 32 }))
  1332. .rejects.toThrow(/addressSpaceMb must exceed the 67108864-byte interpreter baseline/)
  1333. // The default caps against the default 512 MiB address space load.
  1334. const ok = new Context()
  1335. const fiber = await ok.plugin(PythonCodeRuntime, { maxLogBytes: 65536, maxValueBytes: 32768, addressSpaceMb: 512 })
  1336. await fiber.dispose()
  1337. })
  1338. it('bounds an illegal-UTF-8 native residual by its U+FFFD-decoded cost', async () => {
  1339. // Every 0xFF byte is illegal in any UTF-8 sequence, so `toString('utf8')`
  1340. // renders each as U+FFFD (3 serialized bytes). `accrueStrayCost` must charge
  1341. // that 3, not the raw 1: otherwise the newline-free residual grows to a full
  1342. // budget's worth of RAW bytes before flushing — a ~3x undercount that near a
  1343. // large maxLogBytes retains hundreds of MiB then expands toward a ~1 GiB peak
  1344. // in flushStray's concat + toString. Paced single-byte writes (each its own
  1345. // `data` chunk, like the sealing case) expose the sub-chunk accrual: charged
  1346. // at 3 the residual crosses a 3072-byte budget after ~1024 bytes and flushes;
  1347. // charged at 1 it would need ~3072 bytes, so the peak residual triples. The
  1348. // largest merged buffer is the discriminator.
  1349. const realConcat = Buffer.concat.bind(Buffer)
  1350. let maxConcat = 0
  1351. Buffer.concat = (list: readonly Uint8Array[], total?: number): Buffer<ArrayBuffer> => {
  1352. const merged = realConcat(list, total)
  1353. if (merged.length > maxConcat) maxConcat = merged.length
  1354. return merged
  1355. }
  1356. let result: CodeRunResult
  1357. try {
  1358. const { runtime } = await setup({ maxLogBytes: 3072, maxWallMs: 30_000 })
  1359. result = await runtime.run({
  1360. program: [
  1361. 'import os',
  1362. 'for _ in range(6000):',
  1363. ' os.write(1, b"\\xff")',
  1364. ' os.sched_yield()',
  1365. 'return None',
  1366. ].join('\n'),
  1367. bindings: [],
  1368. })
  1369. } finally {
  1370. Buffer.concat = realConcat
  1371. }
  1372. expect(result.error).toBeUndefined()
  1373. expect(result.logs.at(-1)).toBe(logTruncationMarker(3072))
  1374. // Charged at 3, the residual flushes around 1024 raw bytes; the largest
  1375. // merged buffer stays well under 2048. A raw-byte undercount would let it
  1376. // reach ~3072 before flushing, so 2048 discriminates.
  1377. expect(maxConcat).toBeLessThan(2048)
  1378. })
  1379. it('charges a structurally-valid but illegal UTF-8 sequence its U+FFFD-decoded cost', async () => {
  1380. // A CESU-8 lone surrogate `ED A0 80` is structurally well-formed (a 3-byte
  1381. // lead plus two 0x80–0xBF continuations) but ILLEGAL: `toString('utf8')`
  1382. // renders each of the three bytes as its own U+FFFD (serialized cost 9), not
  1383. // one width-3 character. The newline-free flush trigger weighs the residual
  1384. // through `accrueStrayCost`, which must validate each lead's
  1385. // first-continuation range (ED excludes A0–BF) and charge the true 9 — else a
  1386. // CESU flood undercounts 3x and the residual grows toward a full budget's raw
  1387. // bytes before flushing, the same peak-memory vector as the 0xFF case. The
  1388. // bytes are written one at a time (each its own `data` chunk, no pipe
  1389. // coalescing) and `Buffer.concat` is wrapped to measure the peak residual.
  1390. const realConcat = Buffer.concat.bind(Buffer)
  1391. let maxConcat = 0
  1392. Buffer.concat = (list: readonly Uint8Array[], total?: number): Buffer<ArrayBuffer> => {
  1393. const merged = realConcat(list, total)
  1394. if (merged.length > maxConcat) maxConcat = merged.length
  1395. return merged
  1396. }
  1397. let result: CodeRunResult
  1398. try {
  1399. const { runtime } = await setup({ maxLogBytes: 3072, maxWallMs: 30_000 })
  1400. result = await runtime.run({
  1401. program: [
  1402. 'import os',
  1403. 'seq = (0xed, 0xa0, 0x80)',
  1404. 'for _ in range(2000):',
  1405. ' for b in seq:',
  1406. ' os.write(1, bytes((b,)))',
  1407. ' os.sched_yield()',
  1408. 'return None',
  1409. ].join('\n'),
  1410. bindings: [],
  1411. })
  1412. } finally {
  1413. Buffer.concat = realConcat
  1414. }
  1415. expect(result.error).toBeUndefined()
  1416. expect(result.logs.at(-1)).toBe(logTruncationMarker(3072))
  1417. // Each 3-byte sequence costs 9 (three U+FFFD), so single-byte-paced the
  1418. // residual crosses the 3072 budget after ~342 raw bytes and flushes; the
  1419. // largest merged buffer stays well under 2048. Charging the structural width
  1420. // 3 would need ~1024 raw bytes, tripling the peak past 2048.
  1421. expect(maxConcat).toBeLessThan(2048)
  1422. })
  1423. it('charges a lone surrogate its full six escaped bytes, not three', async () => {
  1424. // A forged `log` frame carrying `\ud800` escapes materializes lone
  1425. // surrogates after JSON.parse. `Buffer.byteLength` of U+FFFD is 3, but
  1426. // ES2019 well-formed `JSON.stringify` emits `\ud800` at 6 bytes, so charging
  1427. // the raw width would admit ~2x the configured budget of serialized bytes
  1428. // (the same family as the NUL-flood undercount, at 2x rather than 6x). The
  1429. // cost walker charges surrogates the full 6, so a flood truncates at budget.
  1430. // Forged on fd 3 because Python stdout will not emit lone surrogates.
  1431. const { runtime } = await setup({ maxLogBytes: 4096 })
  1432. const result = await runtime.run({
  1433. program: [
  1434. 'import os',
  1435. // 1000 \ud800 escapes: charged at the buggy raw width 1000 * 3 = 3000
  1436. // bytes fits under 4096 (wrongly admitted), but the correct serialized
  1437. // width 1000 * 6 = 6000 bytes is over budget — so the ledger must
  1438. // truncate. The count sits in the 683..1365 window where the two
  1439. // chargings disagree, making the test discriminate.
  1440. String.raw`frame = b'{"type":"log","text":"' + b'\\ud800' * 1000 + b'"}\n'`,
  1441. 'os.write(3, frame)',
  1442. 'return None',
  1443. ].join('\n'),
  1444. bindings: [],
  1445. })
  1446. expect(result.error).toBeUndefined()
  1447. expect(result.logs.at(-1)).toBe(logTruncationMarker(4096))
  1448. })
  1449. it('drops a second stray line in the same chunk once the first truncated the ledger', async () => {
  1450. // One `os.write` carrying two newline-terminated lines where the first
  1451. // exhausts maxLogBytes: the first line's admit truncates and marks the
  1452. // ledger, and the second line's admit — reached in the same `data` callback
  1453. // — must be the post-truncation no-op. Proves that branch is exercised, so
  1454. // it carries no v8-ignore. Kept to 108 bytes (< the smallest PIPE_BUF, 512 on
  1455. // macOS) so the whole payload lands in ONE atomic write and one `data`
  1456. // callback — the two newlines cannot split across callbacks and leave the
  1457. // branch un-exercised, which would be a hard-to-attribute per-file coverage
  1458. // flake. The first line's 100 bytes already exceed the 64-byte budget, so it truncates.
  1459. const { runtime } = await setup({ maxLogBytes: 64 })
  1460. const result = await runtime.run({
  1461. program: ['import os', 'os.write(1, b"A" * 100 + b"\\nSECOND\\n")', 'return None'].join('\n'),
  1462. bindings: [],
  1463. })
  1464. expect(result.error).toBeUndefined()
  1465. expect(result.logs.at(-1)).toBe(logTruncationMarker(64))
  1466. expect(result.logs.join('\n')).not.toContain('SECOND')
  1467. })
  1468. it('charges a broken multibyte sequence its U+FFFD bytes, split across pipe chunks', async () => {
  1469. // A 3-byte lead (0xE4) whose continuation never arrives — the next byte is a
  1470. // fresh ASCII 'A' — must be costed as U+FFFD (3) for the orphaned lead, not
  1471. // folded into a phantom character. Driven byte-by-byte so the lead and the
  1472. // breaking byte land in separate `data` chunks, exercising accrueStrayCost's
  1473. // cross-chunk broken-sequence branch. The run completes and the bytes are
  1474. // captured (rendered U+FFFD by toString), proving the walk resynchronizes.
  1475. const { runtime } = await setup({ maxLogBytes: 1024 })
  1476. const result = await runtime.run({
  1477. program: [
  1478. 'import os',
  1479. 'os.write(1, b"\\xe4")',
  1480. 'os.sched_yield()',
  1481. 'os.write(1, b"A\\n")',
  1482. 'return None',
  1483. ].join('\n'),
  1484. bindings: [],
  1485. })
  1486. expect(result.error).toBeUndefined()
  1487. expect(result.logs.join('')).toContain('A')
  1488. expect(result.logs.join('')).toContain('�')
  1489. })
  1490. it('charges the exact serialized cost of short-escape and quote/backslash characters', async () => {
  1491. // Exercises every branch of jsonStringCostUpTo's per-character cost: a tab
  1492. // and other C0 controls with short JSON forms (\t etc., 2 bytes), a quote
  1493. // and backslash (2 bytes each), a `\uXXXX` control (6 bytes), a multibyte
  1494. // BMP character (raw UTF-8 width), and plain ASCII. Under a budget large
  1495. // enough to admit it, the line survives verbatim — proving the cost walker
  1496. // does not over- or under-charge and the string round-trips unescaped.
  1497. const { runtime } = await setup({ maxLogBytes: 4096 })
  1498. const result = await runtime.run({
  1499. program: ['import os', String.raw`os.write(1, "\ta\"b\\c\x01é\n".encode("utf-8"))`, 'return None'].join('\n'),
  1500. bindings: [],
  1501. })
  1502. expect(result.error).toBeUndefined()
  1503. expect(result.logs).toEqual(['\ta"b\\c\x01é'])
  1504. })
  1505. it('fails a completion dict with a non-string key as invalid-output (no key coercion)', async () => {
  1506. // json.dumps would coerce {1: "a", "1": "b"} to a single "1" key, silently
  1507. // dropping data. The shape validator rejects it before encoding.
  1508. const { runtime } = await setup()
  1509. const result = await runtime.run({
  1510. program: 'return {1: "first", "1": "second"}',
  1511. bindings: [],
  1512. })
  1513. expect(result.value).toBeUndefined()
  1514. expect(result.error?.kind).toBe('invalid-output')
  1515. expect(result.error?.message).toContain('non-string dict key')
  1516. })
  1517. it('rejects a binding argument with a non-string dict key before dispatch', async () => {
  1518. const { runtime } = await setup()
  1519. let called = false
  1520. const result = await runtime.run({
  1521. program: [
  1522. 'caught = ""',
  1523. 'try:',
  1524. ' await tools.sink({1: "x"})',
  1525. 'except RuntimeError as e:',
  1526. ' caught = str(e)',
  1527. 'return caught',
  1528. ].join('\n'),
  1529. bindings: tools({ sink: async () => { called = true; return null } }),
  1530. })
  1531. expect(result.error).toBeUndefined()
  1532. expect(result.value).toContain('lossless JSON')
  1533. expect(called).toBe(false)
  1534. })
  1535. it('fails a non-JSON completion value as invalid-output (no repr substitution)', async () => {
  1536. // A set is not lossless JSON. The old draft substituted repr(); the seam
  1537. // now requires refusing the run instead.
  1538. const { runtime } = await setup()
  1539. const result = await runtime.run({
  1540. program: 'return {1, 2, 3}',
  1541. bindings: [],
  1542. })
  1543. expect(result.value).toBeUndefined()
  1544. expect(result.error?.kind).toBe('invalid-output')
  1545. expect(result.error?.message).toContain('lossless JSON')
  1546. expect(result.error?.message).toContain('set')
  1547. })
  1548. it('fails a negative-zero completion value as invalid-output (sign bit is lossy over JSON)', async () => {
  1549. // JSON serialization turns -0.0 into 0 (or JS -0), silently changing the
  1550. // sign bit; the canonical lossless-JSON boundary rejects it, so the
  1551. // Python side must too — as a completion and as a binding argument.
  1552. const { runtime } = await setup()
  1553. const completion = await runtime.run({
  1554. program: 'return -0.0',
  1555. bindings: [],
  1556. })
  1557. expect(completion.error?.kind).toBe('invalid-output')
  1558. expect(completion.error?.message).toContain('negative zero')
  1559. const argument = await runtime.run({
  1560. program: [
  1561. 'try:',
  1562. ' await tools.echo(-0.0)',
  1563. ' return "accepted"',
  1564. 'except RuntimeError as e:',
  1565. ' return str(e)',
  1566. ].join('\n'),
  1567. bindings: tools({ echo: async args => args as never }),
  1568. })
  1569. expect(argument.error).toBeUndefined()
  1570. expect(argument.value).toContain('negative zero')
  1571. })
  1572. it('fails a NaN completion value as invalid-output (allow_nan=False)', async () => {
  1573. // json.dumps would happily emit NaN by default, but NaN is not JSON; the
  1574. // bootstrap passes allow_nan=False so it fails as invalid-output.
  1575. const { runtime } = await setup()
  1576. const result = await runtime.run({
  1577. program: 'return float("nan")',
  1578. bindings: [],
  1579. })
  1580. expect(result.error?.kind).toBe('invalid-output')
  1581. })
  1582. it('fails an over-budget completion value as output-limit (child-side check)', async () => {
  1583. const { runtime } = await setup({ maxValueBytes: 64 })
  1584. const result = await runtime.run({
  1585. program: 'return "V" * 5000',
  1586. bindings: [],
  1587. })
  1588. expect(result.value).toBeUndefined()
  1589. expect(result.error?.kind).toBe('output-limit')
  1590. expect(result.error?.message).toContain('exceeded 64 bytes')
  1591. })
  1592. it('meters a control-heavy completion value without materializing its escaped form', async () => {
  1593. // The child's lower bound admits a string by CHARACTER count, then the meter
  1594. // charged what `_dump_string(current).encode()` returned -- building the
  1595. // escaped copy plus its encode. Each NUL escapes to six bytes, so metering a
  1596. // value the budget then REJECTS allocated ~6x the original twice over:
  1597. // measured at 228.9 MiB of peak for a 20M-NUL string, against 19.1 MiB for
  1598. // the counting path that returns the identical 120,000,002 bytes. Past
  1599. // RLIMIT_AS the meter died as `exception: MemoryError`, inverting the
  1600. // `output-limit` this seam promises for an over-budget value.
  1601. //
  1602. // 8M NULs is 8,000,002 raw but 48,000,002 escaped: over the 16 MiB budget
  1603. // only when charged the escaped cost, so this also pins that the cheap
  1604. // character bound alone does not decide the verdict.
  1605. const { runtime } = await setup({ maxValueBytes: 16 * 1024 * 1024, maxWallMs: 60_000 })
  1606. const result = await runtime.run({
  1607. program: 'return "\\x00" * 8_000_000',
  1608. bindings: [],
  1609. })
  1610. expect(result.value).toBeUndefined()
  1611. expect(result.error?.kind).toBe('output-limit')
  1612. }, 90_000)
  1613. it('rejects a wide completion as output-limit before materializing its traversal state', async () => {
  1614. // `[0] * 2000000` sits far above maxValueBytes but well below the frame
  1615. // ceiling. The folded checker must reject it via the pre-enqueue bound —
  1616. // BEFORE pushing two million elements onto the walk — so a small
  1617. // addressSpaceMb does not turn the check itself into an RLIMIT_AS death.
  1618. const { runtime } = await setup({ maxValueBytes: 64, addressSpaceMb: 256, maxWallMs: 15_000 })
  1619. const result = await runtime.run({
  1620. program: 'return [0] * 2000000',
  1621. bindings: [],
  1622. })
  1623. expect(result.value).toBeUndefined()
  1624. expect(result.error?.kind).toBe('output-limit')
  1625. expect(result.error?.message).toContain('exceeded 64 bytes')
  1626. }, 20_000)
  1627. it('rejects a wide dict as output-limit without materializing its items list', async () => {
  1628. // Same pre-enqueue bound on the dict branch: `len(current)` replaces
  1629. // `list(current.items())`, which allocated one tuple per member before the
  1630. // bound could reject the value. Two million entries under a 64-byte cap
  1631. // fits the 256 MiB address space as a dict but not as a dict PLUS a
  1632. // two-million-tuple list.
  1633. const { runtime } = await setup({ maxValueBytes: 64, addressSpaceMb: 256, maxWallMs: 15_000 })
  1634. const result = await runtime.run({
  1635. program: 'return {str(i): 0 for i in range(2000000)}',
  1636. bindings: [],
  1637. })
  1638. expect(result.value).toBeUndefined()
  1639. expect(result.error?.kind).toBe('output-limit')
  1640. expect(result.error?.message).toContain('exceeded 64 bytes')
  1641. }, 20_000)
  1642. it('meters a float completion in the host\'s number spelling', async () => {
  1643. // CPython's repr disagrees with the host's String(number): `1.0` is three
  1644. // bytes here and one there, `1e-07` pads the exponent the host writes as
  1645. // `1e-7`. Both sides meter the SAME budget, so the child must count the
  1646. // bytes the host will receive — otherwise a boundary-sized value is
  1647. // falsely reported as output-limit.
  1648. const { runtime } = await setup({ maxValueBytes: 1 })
  1649. const integral = await runtime.run({ program: 'return 1.0', bindings: [] })
  1650. expect(integral.error).toBeUndefined()
  1651. expect(integral.value).toBe(1)
  1652. const exponent = await setup({ maxValueBytes: 4 })
  1653. const small = await exponent.runtime.run({ program: 'return 1e-7', bindings: [] })
  1654. expect(small.error).toBeUndefined()
  1655. expect(small.value).toBe(1e-7)
  1656. // The spelling is a meter input, not a licence to overshoot: `1.5` is three
  1657. // bytes on both sides and still fails a two-byte budget.
  1658. const tight = await setup({ maxValueBytes: 2 })
  1659. const over = await tight.runtime.run({ program: 'return 1.5', bindings: [] })
  1660. expect(over.error?.kind).toBe('output-limit')
  1661. })
  1662. it('carries floats across the wire in the host\'s number spelling', async () => {
  1663. // The child ENCODES with the same speller it meters with, so the frame the
  1664. // host parses must reproduce every double exactly — including the branches
  1665. // where CPython and ECMAScript disagree (integral floats, sub-1e-6
  1666. // exponents, >= 1e21, and beyond-safe-range integral doubles whose exact
  1667. // digits differ from the shortest round-trip form).
  1668. const { runtime } = await setup()
  1669. const result = await runtime.run({
  1670. program: 'return [1.0, 100.0, 1.5, 0.1, 1e-7, 1e-6, 1e-5, 123.456, -2.5e-8, 1e21, float(2**60), 5e-324, 1.7976931348623157e308]',
  1671. bindings: [],
  1672. })
  1673. expect(result.error).toBeUndefined()
  1674. expect(result.value).toEqual([1, 100, 1.5, 0.1, 1e-7, 1e-6, 1e-5, 123.456, -2.5e-8, 1e21, 2 ** 60, 5e-324, 1.7976931348623157e308])
  1675. })
  1676. it('rejects a forged non-lossless done value host-side as invalid-output', async () => {
  1677. // A forged done frame bypasses the child's _check_done_value. JSON.parse
  1678. // turns 1e400 into Infinity; validateChildFrame no longer scans done.value,
  1679. // so the host's own checkDoneValue must catch the non-lossless number.
  1680. const { runtime } = await setup()
  1681. const result = await runtime.run({
  1682. program: [
  1683. 'import os',
  1684. String.raw`os.write(3, b'{"type":"done","value":1e400}' + b'\n')`,
  1685. 'import time',
  1686. 'time.sleep(5)',
  1687. ].join('\n'),
  1688. bindings: [],
  1689. })
  1690. expect(result.value).toBeUndefined()
  1691. expect(result.error?.kind).toBe('invalid-output')
  1692. expect(result.error?.message).toContain('non-lossless number')
  1693. })
  1694. it('reports a syntax error as an exception without settling with a value', async () => {
  1695. const { runtime } = await setup()
  1696. const result = await runtime.run({
  1697. program: '$$invalid python$$',
  1698. bindings: [],
  1699. })
  1700. expect(result.error?.kind).toBe('exception')
  1701. expect(result.error?.message).toContain('SyntaxError')
  1702. // The parse-time diagnostic must carry the same source label as compile and
  1703. // runtime tracebacks (ast.parse passes filename="<model>"); a stale
  1704. // "<unknown>" label would leak an inconsistent origin to the model.
  1705. expect(result.error?.message).toContain('File \"<model>\"')
  1706. expect(result.value).toBeUndefined()
  1707. })
  1708. it('reports a runtime raise as an exception with the traceback', async () => {
  1709. const { runtime } = await setup()
  1710. const result = await runtime.run({
  1711. program: 'raise ValueError("intentional")',
  1712. bindings: [],
  1713. })
  1714. expect(result.error?.kind).toBe('exception')
  1715. expect(result.error?.message).toContain('ValueError')
  1716. expect(result.error?.message).toContain('intentional')
  1717. })
  1718. it('bounds a deep exception cause chain instead of burning the wall budget formatting it', async () => {
  1719. // A chain thousands of links deep would make the rendering walk and
  1720. // format() linear in its length, consuming maxWallMs. Rendering is capped
  1721. // at 100 links with a marker; the run reports the exception well within
  1722. // budget rather than timing out.
  1723. const { runtime } = await setup({ maxValueBytes: 1024 * 1024, maxWallMs: 20_000 })
  1724. const start = Date.now()
  1725. const result = await runtime.run({
  1726. program: [
  1727. 'err = None',
  1728. 'for i in range(3000):',
  1729. ' try:',
  1730. ' raise ValueError(i) from err',
  1731. ' except ValueError as e:',
  1732. ' err = e',
  1733. 'raise err',
  1734. ].join('\n'),
  1735. bindings: [],
  1736. })
  1737. expect(result.error?.kind).toBe('exception')
  1738. expect(result.error?.message).toContain('exception chain truncated at 100 links')
  1739. expect(Date.now() - start).toBeLessThan(15_000)
  1740. }, 25_000)
  1741. it('bounds an over-cap chain without assigning to the live exception', async () => {
  1742. // The cap used to be applied by severing the over-cap link ON the live
  1743. // exception. An exception class overriding __setattr__ to raise turned that
  1744. // assignment into model code running inside the bootstrap's failure
  1745. // handler; the throw skipped the `done` send that sits after the handler,
  1746. // so the host blocked on fd 3 and reported a maxWallMs timeout instead of
  1747. // the model's own exception. Cutting the chain on the TracebackException
  1748. // COPY touches no model hook, so the marker still appears and the run
  1749. // reports `exception`.
  1750. const { runtime } = await setup({ maxValueBytes: 1024 * 1024, maxWallMs: 15_000 })
  1751. const start = Date.now()
  1752. const result = await runtime.run({
  1753. program: [
  1754. 'class Sealed(Exception):',
  1755. ' def __setattr__(self, name, value):',
  1756. ' raise RuntimeError("live mutation refused")',
  1757. 'err = None',
  1758. 'for i in range(150):',
  1759. ' try:',
  1760. ' raise Sealed(i) from err',
  1761. ' except Sealed as e:',
  1762. ' err = e',
  1763. 'raise err',
  1764. ].join('\n'),
  1765. bindings: [],
  1766. })
  1767. expect(result.error?.kind).toBe('exception')
  1768. expect(result.error?.message).toContain('Sealed')
  1769. expect(result.error?.message).toContain('exception chain truncated at 100 links')
  1770. // The sever attempt is what used to leak: its message must not appear, and
  1771. // the run must settle well inside the wall budget rather than timing out.
  1772. expect(result.error?.message).not.toContain('live mutation refused')
  1773. expect(Date.now() - start).toBeLessThan(10_000)
  1774. }, 20_000)
  1775. it('still sends done when rendering the diagnostic itself raises', async () => {
  1776. // format() reaches the exception's own __str__, so a model class whose
  1777. // __str__ raises can throw from inside the failure handler. CPython's
  1778. // _safe_string absorbs a raising __str__ during formatting, but the
  1779. // fallback must hold for any throw on that path (a raising __repr__ of an
  1780. // argument, a MemoryError under RLIMIT_AS), so the assertion is the
  1781. // invariant that matters: a `done` frame carrying `exception`, never a
  1782. // timeout, and never the failing renderer's own message.
  1783. const { runtime } = await setup({ maxWallMs: 10_000 })
  1784. const result = await runtime.run({
  1785. program: [
  1786. 'class Unprintable(Exception):',
  1787. ' def __str__(self):',
  1788. ' raise RuntimeError("str refused")',
  1789. ' def __repr__(self):',
  1790. ' raise RuntimeError("repr refused")',
  1791. 'raise Unprintable()',
  1792. ].join('\n'),
  1793. bindings: [],
  1794. })
  1795. expect(result.error?.kind).toBe('exception')
  1796. expect(result.error?.message).toContain('Unprintable')
  1797. expect(result.error?.message).not.toContain('str refused')
  1798. expect(result.error?.message).not.toContain('repr refused')
  1799. }, 15_000)
  1800. it('sends done with an inert diagnostic when the whole rendering path raises', async () => {
  1801. // Drive the fallback itself. `TracebackException.format` reads the
  1802. // exception class's `__module__` to decide whether to qualify the name, and
  1803. // a metaclass property can raise there — a throw INSIDE the formatter,
  1804. // reached with no rebinding of anything the bootstrap owns. Without the
  1805. // wrapper it escapes the handler, the `done` send never runs, and the host
  1806. // times out at maxWallMs.
  1807. const { runtime } = await setup({ maxWallMs: 10_000 })
  1808. const result = await runtime.run({
  1809. program: [
  1810. 'class Meta(type):',
  1811. ' @property',
  1812. ' def __module__(cls):',
  1813. ' raise RuntimeError("renderer refused")',
  1814. 'class Hostile(ValueError, metaclass=Meta):',
  1815. ' pass',
  1816. 'raise Hostile("original failure")',
  1817. ].join('\n'),
  1818. bindings: [],
  1819. })
  1820. expect(result.error?.kind).toBe('exception')
  1821. // The inert fallback names the class and a fixed literal; it must not carry
  1822. // the renderer's message, and must not have become a timeout. `__name__` is
  1823. // still a plain str here, so the class name survives.
  1824. expect(result.error?.message).toBe('Hostile: <diagnostic rendering failed>')
  1825. }, 15_000)
  1826. it('falls back to a placeholder class name when __name__ itself raises', async () => {
  1827. // The fallback reads type(exc).__name__, which a metaclass property can
  1828. // hijack. It must neither run that override's failure into the handler nor
  1829. // format a non-str __name__ into the message. The hostile `__module__` is
  1830. // what drives execution into the fallback in the first place.
  1831. const { runtime } = await setup({ maxWallMs: 10_000 })
  1832. const result = await runtime.run({
  1833. program: [
  1834. 'class Meta(type):',
  1835. ' @property',
  1836. ' def __module__(cls):',
  1837. ' raise RuntimeError("renderer refused")',
  1838. ' @property',
  1839. ' def __name__(cls):',
  1840. ' raise RuntimeError("name refused")',
  1841. 'class Nameless(Exception, metaclass=Meta):',
  1842. ' pass',
  1843. 'raise Nameless()',
  1844. ].join('\n'),
  1845. bindings: [],
  1846. })
  1847. expect(result.error?.kind).toBe('exception')
  1848. expect(result.error?.message).toBe('<unknown>: <diagnostic rendering failed>')
  1849. }, 15_000)
  1850. it('reports the real exception when the program rebinds every name the failure path uses', async () => {
  1851. // The bootstrap IS __main__, so `import __main__; __main__._X = ...` reaches
  1852. // any module global a call-time lookup would read. The failure path is the
  1853. // worst place for that: the reporter, the byte cap, the traceback formatter,
  1854. // the settlement flush and the `done` send all run AFTER the `except` block,
  1855. // so a replacement that raises skips the send, leaves the host blocked on
  1856. // fd 3, and the run reports a maxWallMs timeout instead of the model's own
  1857. // exception. Rebind all of them at once; the run must still carry the real
  1858. // ValueError.
  1859. const { runtime } = await setup({ maxWallMs: 10_000 })
  1860. const result = await runtime.run({
  1861. program: [
  1862. 'import __main__',
  1863. 'def boom(*a, **k):',
  1864. ' raise RuntimeError("hijacked")',
  1865. '__main__._SAFE_MODEL_TRACEBACK = boom',
  1866. '__main__._cap_message = boom',
  1867. '__main__._model_traceback = boom',
  1868. '__main__._UNRENDERABLE_DIAGNOSTIC = boom',
  1869. '__main__._LogStream.flush_line = boom',
  1870. // `send_done` writes via LOCALLY-BOUND `_encode_json_plain` +
  1871. // `ProtocolChannel.write_encoded`; rebinding these at call time must not
  1872. // redirect the done frame (a late lookup would be `boom` -> worker-exit).
  1873. '__main__.ProtocolChannel.send_sync = boom',
  1874. '__main__.ProtocolChannel.write_encoded = boom',
  1875. '__main__._encode_json_plain = boom',
  1876. 'raise ValueError("real failure")',
  1877. ].join('\n'),
  1878. bindings: [],
  1879. })
  1880. expect(result.error?.kind).toBe('exception')
  1881. expect(result.error?.message).toContain('ValueError: real failure')
  1882. expect(result.error?.message).not.toContain('hijacked')
  1883. }, 15_000)
  1884. it('still delivers a done frame when a transitive encode name is rebound', async () => {
  1885. // `send_done` binds `_encode_json_plain` and `ProtocolChannel.write_encoded`
  1886. // into locals, but those callables' BODIES still resolve transitive module
  1887. // globals at call time: `_encode_json_plain` reaches `_dump_scalar`/`_dump_string`/
  1888. // `json.dumps`, and `write_encoded` reaches `os.write`. This bootstrap is
  1889. // `__main__`, so rebinding `__main__._dump_scalar` to a raising function makes
  1890. // the error-frame encode throw AFTER the `except` block. `send_done` catches
  1891. // that and writes a fixed literal done frame (kind `exception`) with the
  1892. // LOCALLY-BOUND `_os_write`/`_memoryview`/`_FALLBACK_DONE_FRAME` captured
  1893. // before the program runs, so the host still gets a verdict — the run must be an
  1894. // `exception`, never a `worker-exit`. The real message is lost (the literal
  1895. // carries a fixed `<unrenderable>` text), which is acceptable: the verdict
  1896. // outranks the diagnostic detail.
  1897. const { runtime } = await setup({ maxWallMs: 10_000 })
  1898. const result = await runtime.run({
  1899. program: [
  1900. 'import __main__',
  1901. 'def boom(*a, **k):',
  1902. ' raise RuntimeError("hijacked")',
  1903. '__main__._dump_scalar = boom',
  1904. '__main__.os = boom',
  1905. // The fallback must also survive a rebind of its own primitives.
  1906. '__main__._os_write = boom',
  1907. '__main__._memoryview = boom',
  1908. '__main__._FALLBACK_DONE_FRAME = boom',
  1909. 'raise ValueError("real failure")',
  1910. ].join('\n'),
  1911. bindings: [],
  1912. })
  1913. expect(result.error?.kind).toBe('exception')
  1914. expect(result.error?.kind).not.toBe('worker-exit')
  1915. }, 15_000)
  1916. it('still reports a model exception when the program rebinds BaseException', async () => {
  1917. // `_run`'s outer try/except catches the program's failure and builds a
  1918. // `done` frame. The clause previously used the module-global `BaseException`,
  1919. // which the program (running as `__main__`) can rebind: `__main__.BaseException
  1920. // = RuntimeError` makes the `except BaseException` resolve to `RuntimeError`,
  1921. // so a subsequent `ValueError` does not match and escapes `_run` with no
  1922. // `done` frame — misreporting the run as a `worker-exit`. The exception class
  1923. // is now bound into a `_run` LOCAL before the program runs, so the rebind
  1924. // cannot change which class the clause catches; the run must still report an
  1925. // `exception`, not a `worker-exit`.
  1926. const { runtime } = await setup({ maxWallMs: 10_000 })
  1927. const result = await runtime.run({
  1928. program: [
  1929. 'import __main__',
  1930. '__main__.BaseException = RuntimeError',
  1931. 'raise ValueError("real failure")',
  1932. ].join('\n'),
  1933. bindings: [],
  1934. })
  1935. expect(result.error?.kind).toBe('exception')
  1936. expect(result.error?.kind).not.toBe('worker-exit')
  1937. }, 15_000)
  1938. it('still reports the exception when BaseException and the traceback reporter are rebound together', async () => {
  1939. // The two rebind families compose: `__main__.BaseException = ValueError`
  1940. // must not change which class the `_run` catch resolves (it is a pre-program
  1941. // local), and a rebound reporter (`_SAFE_MODEL_TRACEBACK`/`_cap_message`/
  1942. // `_model_traceback`/`_UNRENDERABLE_DIAGNOSTIC`) must not break the done
  1943. // frame — `safe_model_traceback` holds its primitives as import-time closure
  1944. // cells. A `KeyError` (not a `ValueError` subclass) escapes a catch that
  1945. // resolves to the rebound class, so without the local binding the run would
  1946. // misreport as `worker-exit`; with it, the run reports the exception and the
  1947. // fallback reporter still produces the fixed literal.
  1948. const { runtime } = await setup({ maxWallMs: 10_000 })
  1949. const result = await runtime.run({
  1950. program: [
  1951. 'import __main__',
  1952. 'def boom(*a, **k):',
  1953. ' raise RuntimeError("hijacked")',
  1954. '__main__.BaseException = ValueError',
  1955. '__main__._SAFE_MODEL_TRACEBACK = boom',
  1956. '__main__._cap_message = boom',
  1957. '__main__._model_traceback = boom',
  1958. '__main__._UNRENDERABLE_DIAGNOSTIC = boom',
  1959. 'raise KeyError("real failure")',
  1960. ].join('\n'),
  1961. bindings: [],
  1962. })
  1963. expect(result.error?.kind).toBe('exception')
  1964. expect(result.error?.kind).not.toBe('worker-exit')
  1965. }, 15_000)
  1966. it('rejects an fd-3 frame whose raw length exceeds the parse cap before joining it', async () => {
  1967. // The 64 MiB frame parse cap bounds the RAW frame bytes, not the decoded
  1968. // structure; a compact wide frame near that ceiling could decode to far
  1969. // more host memory. The unframed-buffer counter is checked against
  1970. // FRAME_PARSE_CAP_BYTES BEFORE the Buffer.concat join, so an oversized
  1971. // frame is dropped at one copy of its wire bytes instead of being fully
  1972. // joined (a second copy) and only then discarded in the line loop — the
  1973. // peak-memory doubling the pre-join check exists to prevent. Fail-before:
  1974. // without the check the frame is joined whole and parsed (its log text
  1975. // admitted, truncating the ledger), and the run completes normally.
  1976. const { runtime } = await setup({ maxWallMs: 60_000 })
  1977. const result = await runtime.run({
  1978. program: [
  1979. 'import os',
  1980. // One frame just past the 64 MiB parse cap.
  1981. 'os.write(3, b"{\\"type\\":\\"log\\",\\"text\\":\\"" + b"a" * (65 * 1024 * 1024) + b"\\"}\\n")',
  1982. 'return "done"',
  1983. ].join('\n'),
  1984. bindings: [],
  1985. })
  1986. expect(result.error?.kind).toBe('worker-exit')
  1987. expect(result.error?.message).toContain('protocol frame exceeded')
  1988. }, 90_000)
  1989. it('caps an oversized rejection diagnostic so an invalid completion stays invalid-output', async () => {
  1990. // _done_with_value caps its rejection diagnostic through _cap_message: a
  1991. // hostile class name (huge type(value).__name__) would otherwise push the
  1992. // done frame past the host's 64 MiB parse cap, misreporting an
  1993. // invalid-output run as a worker-exit. The diagnostic is capped to the
  1994. // value budget, so the frame always crosses the parser.
  1995. const { runtime } = await setup({ maxWallMs: 60_000 })
  1996. const result = await runtime.run({
  1997. program: [
  1998. 'return type("N" * (70 * 1024 * 1024), (), {})()',
  1999. ].join('\n'),
  2000. bindings: [],
  2001. })
  2002. expect(result.error?.kind).toBe('invalid-output')
  2003. expect(result.error?.kind).not.toBe('worker-exit')
  2004. }, 90_000)
  2005. it('appends a flushed unterminated line to the next entry without a fake newline', async () => {
  2006. // An explicit flush of an unterminated line (print(..., end='', flush=True))
  2007. // used to push a full log frame, so the following print() landed in a
  2008. // SECOND entry and logs.join('\n') rendered 'a\nb' for what the program
  2009. // printed as one line. The flush frame now carries `open: true` and the
  2010. // host appends the next frame to the same entry.
  2011. const { runtime } = await setup()
  2012. const result = await runtime.run({
  2013. program: [
  2014. "print('a', end='', flush=True)",
  2015. "print('b')",
  2016. 'return "done"',
  2017. ].join('\n'),
  2018. bindings: [],
  2019. })
  2020. expect(result.error).toBeUndefined()
  2021. expect(result.logs).toEqual(['ab'])
  2022. }, 15_000)
  2023. it('keeps a SEALED open hold when the run ends with it still open', async () => {
  2024. // The finish-residual's sealed side: an open hold past MAX_PENDING_CHUNKS
  2025. // lands in openSealed, and the run ends without a closing frame — finish()
  2026. // must commit the SEALED prefix, not only the current fragments.
  2027. const { runtime } = await setup({ maxLogBytes: 65536 })
  2028. const result = await runtime.run({
  2029. program: [
  2030. 'import os',
  2031. "os.write(3, b'{\"type\":\"log\",\"text\":\"x\",\"open\":true}\\n')",
  2032. 'for _ in range(3000):',
  2033. " os.write(3, b'{\"type\":\"log\",\"text\":\"a\",\"open\":true}\\n')",
  2034. 'return "done"',
  2035. ].join('\n'),
  2036. bindings: [],
  2037. })
  2038. expect(result.error).toBeUndefined()
  2039. expect(result.logs).toEqual(['x' + 'a'.repeat(3000)])
  2040. }, 15_000)
  2041. it('keeps a flushed unterminated line when the run ends with it still open', async () => {
  2042. // The settlement flush pushes the residual with `open: true`; finish()
  2043. // admits it so a program that commits a partial line and returns does not
  2044. // lose it from logs.
  2045. const { runtime } = await setup()
  2046. const result = await runtime.run({
  2047. program: [
  2048. "print('committed', end='', flush=True)",
  2049. 'return "done"',
  2050. ].join('\n'),
  2051. bindings: [],
  2052. })
  2053. expect(result.error).toBeUndefined()
  2054. expect(result.logs).toEqual(['committed'])
  2055. }, 15_000)
  2056. it('skips the hold for a zero-content open continuation', async () => {
  2057. // An empty open continuation bills 0 and is NOT pushed into the held
  2058. // fragment array (an empty fragment contributes nothing to the merged
  2059. // entry, and holding it would let a forged empty-open flood grow host
  2060. // memory without touching the ledger).
  2061. const { runtime } = await setup({ maxLogBytes: 64 })
  2062. const result = await runtime.run({
  2063. program: [
  2064. 'import os',
  2065. "os.write(3, b'{\"type\":\"log\",\"text\":\"x\",\"open\":true}\\n')",
  2066. "os.write(3, b'{\"type\":\"log\",\"text\":\"\",\"open\":true}\\n')",
  2067. "os.write(3, b'{\"type\":\"log\",\"text\":\"y\"}\\n')",
  2068. 'return "done"',
  2069. ].join('\n'),
  2070. bindings: [],
  2071. })
  2072. expect(result.error).toBeUndefined()
  2073. expect(result.logs).toEqual(['xy'])
  2074. }, 15_000)
  2075. it('seals the open hold past MAX_PENDING_CHUNKS without changing the merged entry', async () => {
  2076. // A budget-sized single-character open flood would otherwise accumulate
  2077. // thousands of fragment array slots (each a slot plus string header, ~30x
  2078. // overhead the byte cap cannot see). The hold seals into one block past
  2079. // MAX_PENDING_CHUNKS; the merged entry is byte-identical.
  2080. const { runtime } = await setup({ maxLogBytes: 65536 })
  2081. const result = await runtime.run({
  2082. program: [
  2083. 'import os',
  2084. "os.write(3, b'{\"type\":\"log\",\"text\":\"x\",\"open\":true}\\n')",
  2085. // 3000 single-character open continuations (over MAX_PENDING_CHUNKS).
  2086. 'for _ in range(3000):',
  2087. " os.write(3, b'{\"type\":\"log\",\"text\":\"a\",\"open\":true}\\n')",
  2088. "os.write(3, b'{\"type\":\"log\",\"text\":\"y\"}\\n')",
  2089. 'return "done"',
  2090. ].join('\n'),
  2091. bindings: [],
  2092. })
  2093. expect(result.error).toBeUndefined()
  2094. expect(result.logs).toEqual(['x' + 'a'.repeat(3000) + 'y'])
  2095. }, 15_000)
  2096. it('bounds a forged open-frame flood against the log budget', async () => {
  2097. // The open hold must be bounded by the ledger: without the exact-cost check
  2098. // a forged open flood would grow the held fragment without touching
  2099. // logBudget — unbounded host retention under a small budget. The flood now
  2100. // truncates to the marker like any over-budget log traffic.
  2101. const { runtime } = await setup({ maxLogBytes: 64 })
  2102. const result = await runtime.run({
  2103. program: [
  2104. 'import os',
  2105. // 2000 forged open frames, each under the frame parse cap.
  2106. 'for _ in range(2000):',
  2107. " os.write(3, b'{\"type\":\"log\",\"text\":\"a\",\"open\":true}\\n')",
  2108. 'return "done"',
  2109. ].join('\n'),
  2110. bindings: [],
  2111. })
  2112. expect(result.error).toBeUndefined()
  2113. expect(result.logs).toEqual(['a'.repeat(60), logTruncationMarker(64)])
  2114. }, 15_000)
  2115. it('commits a sealed open hold before the truncation marker', async () => {
  2116. // The sealed variant of the prefix-commit case: an open flood past
  2117. // MAX_PENDING_CHUNKS lands in openSealed, then an over-budget line
  2118. // truncates — truncateLogs must commit the SEALED prefix (not only the
  2119. // current fragments) before the marker.
  2120. const { runtime } = await setup({ maxLogBytes: 65536 })
  2121. const result = await runtime.run({
  2122. program: [
  2123. 'import os',
  2124. "os.write(3, b'{\"type\":\"log\",\"text\":\"x\",\"open\":true}\\n')",
  2125. // 3000 single-character open continuations seal the hold, then a
  2126. // forged over-budget open frame trips the ledger: truncateLogs must
  2127. // commit the SEALED prefix before the marker.
  2128. 'for _ in range(3000):',
  2129. " os.write(3, b'{\"type\":\"log\",\"text\":\"a\",\"open\":true}\\n')",
  2130. "os.write(3, ('{\"type\":\"log\",\"text\":\"' + 'z' * 70000 + '\",\"open\":true}\\n').encode())",
  2131. 'return "done"',
  2132. ].join('\n'),
  2133. bindings: [],
  2134. })
  2135. expect(result.error).toBeUndefined()
  2136. expect(result.logs[0]).toBe('x' + 'a'.repeat(3000))
  2137. expect(result.logs[result.logs.length - 1]).toBe(logTruncationMarker(65536))
  2138. }, 15_000)
  2139. it('commits a flushed open prefix before the truncation marker', async () => {
  2140. // A flushed unterminated line is billed and committed; when a later
  2141. // over-budget write truncates, the committed prefix must appear BEFORE the
  2142. // marker — the ledger charged for it, so it cannot vanish.
  2143. const { runtime } = await setup({ maxLogBytes: 64 })
  2144. const result = await runtime.run({
  2145. program: [
  2146. "print('committed', end='', flush=True)",
  2147. "print('x' * 100)",
  2148. 'return "done"',
  2149. ].join('\n'),
  2150. bindings: [],
  2151. })
  2152. expect(result.error).toBeUndefined()
  2153. expect(result.logs).toEqual(['committed', logTruncationMarker(64)])
  2154. }, 15_000)
  2155. it('drops a forged fd-3 frame with illegal UTF-8 instead of accepting a mangled value', async () => {
  2156. // toString('utf8') would replace the illegal 0xFF with U+FFFD, so a forged
  2157. // done frame could land a corrupted completion value; the fatal decode
  2158. // throws and the frame is dropped. The program's real return still settles
  2159. // the run with the honest value.
  2160. const { runtime } = await setup()
  2161. const result = await runtime.run({
  2162. program: [
  2163. 'import os',
  2164. "os.write(3, b'{\"type\":\"done\",\"value\":\"bad' + bytes([0xFF]) + b'\"}\\n')",
  2165. 'return "ok"',
  2166. ].join('\n'),
  2167. bindings: [],
  2168. })
  2169. expect(result.error).toBeUndefined()
  2170. expect(result.value).toBe('ok')
  2171. }, 15_000)
  2172. it('no-ops a closing frame once an open flood already truncated the ledger', async () => {
  2173. // The closing-frame branch's post-truncation arm: an open flood exhausts
  2174. // the ledger (logsTruncated set, marker pushed), then a closing frame
  2175. // arrives — it must be a no-op, not append content past the marker.
  2176. const { runtime } = await setup({ maxLogBytes: 64 })
  2177. const result = await runtime.run({
  2178. program: [
  2179. 'import os',
  2180. 'for _ in range(2000):',
  2181. " os.write(3, b'{\"type\":\"log\",\"text\":\"a\",\"open\":true}\\n')",
  2182. "os.write(3, b'{\"type\":\"log\",\"text\":\"b\"}\\n')",
  2183. 'return "done"',
  2184. ].join('\n'),
  2185. bindings: [],
  2186. })
  2187. expect(result.error).toBeUndefined()
  2188. expect(result.logs).toEqual(['a'.repeat(60), logTruncationMarker(64)])
  2189. }, 15_000)
  2190. it('bills a merged open entry once, not per fragment', async () => {
  2191. // A merged entry's wire cost is billed ONCE, split across its fragments
  2192. // (first fragment pays quotes+separator, continuations pay only content).
  2193. // Under maxLogBytes: 64, 16 single-character flushes merge to one 16-char
  2194. // entry (2 quotes + 16 content + 1 separator = 19), which fits; per-
  2195. // fragment billing (each charged quotes+separator, ~4 bytes) would truncate
  2196. // at 16 x 4 = 64.
  2197. const { runtime } = await setup({ maxLogBytes: 64 })
  2198. const result = await runtime.run({
  2199. program: [
  2200. 'for _ in range(16):',
  2201. " print('x', end='', flush=True)",
  2202. "print('')",
  2203. 'return "done"',
  2204. ].join('\n'),
  2205. bindings: [],
  2206. })
  2207. expect(result.error).toBeUndefined()
  2208. expect(result.logs).toEqual(['x'.repeat(16)])
  2209. }, 15_000)
  2210. it('admits a compliant merged entry whose closing frame fits the remaining budget', async () => {
  2211. // The review's arithmetic check: print('a'*30, flush); print('b'*25) under
  2212. // maxLogBytes: 64 has a merged wire cost of 2 quotes + 55 content + 1
  2213. // separator = 58 <= 63, so it MUST be admitted as one entry. The earlier
  2214. // cap math (logBudget - openCost) made the closing frame's walk see a
  2215. // negative cap and truncate a compliant entry.
  2216. const { runtime } = await setup({ maxLogBytes: 64 })
  2217. const result = await runtime.run({
  2218. program: [
  2219. "print('a' * 30, end='', flush=True)",
  2220. "print('b' * 25)",
  2221. 'return "done"',
  2222. ].join('\n'),
  2223. bindings: [],
  2224. })
  2225. expect(result.error).toBeUndefined()
  2226. expect(result.logs).toEqual(['a'.repeat(30) + 'b'.repeat(25)])
  2227. }, 15_000)
  2228. it('rejects an open frame that would overflow the ledger by one byte', async () => {
  2229. // The review's arithmetic check: an open frame whose full JSON cost is 63
  2230. // (maxLogBytes: 64 -> ledger 63) must be rejected by the first-fragment
  2231. // cap logBudget - 1 (62), not admitted with a bill of 64 that pushes the
  2232. // ledger negative. The frame is FORGED on fd 3 so the child ledger cannot
  2233. // truncate first: a reverted cap of logBudget (63) would admit the frame,
  2234. // hold it, and flush it at settlement, so the marker assertion fails.
  2235. const { runtime } = await setup({ maxLogBytes: 64 })
  2236. const result = await runtime.run({
  2237. program: [
  2238. 'import os',
  2239. "os.write(3, ('{\"type\":\"log\",\"text\":\"' + 'x' * 61 + '\",\"open\":true}\\n').encode())",
  2240. 'return "done"',
  2241. ].join('\n'),
  2242. bindings: [],
  2243. })
  2244. expect(result.error).toBeUndefined()
  2245. expect(result.logs).toEqual([logTruncationMarker(64)])
  2246. }, 15_000)
  2247. it('bills the closing frame as the merged tail under an exact-fit budget', async () => {
  2248. // The child's split billing: a 30-char open + a 30-char closing frame cost
  2249. // 2 + 60 + 1 = 63 = ledger 63 exactly; the closing frame must be billed as
  2250. // the merged tail (content only), not as a fresh entry (which would
  2251. // double-charge the quotes+separator and truncate an exact-fit entry).
  2252. const { runtime } = await setup({ maxLogBytes: 64 })
  2253. const result = await runtime.run({
  2254. program: [
  2255. "print('a' * 30, end='', flush=True)",
  2256. "print('b' * 30)",
  2257. 'return "done"',
  2258. ].join('\n'),
  2259. bindings: [],
  2260. })
  2261. expect(result.error).toBeUndefined()
  2262. expect(result.logs).toEqual(['a'.repeat(30) + 'b'.repeat(30)])
  2263. }, 15_000)
  2264. it('does not over-reject an exact-fit closing line while an open entry accumulates', async () => {
  2265. // The write-path pre-check's cheap bound used +3 (quotes + separator) even
  2266. // while an open entry was accumulating, so an exact-fit merged TAIL was
  2267. // truncated. The recipe below goes through the SCAN pre-check (the
  2268. // newline-terminated write arrives with an empty pending buffer, so the
  2269. // buffered-chunks branch is skipped): 'a'*29 flush bills 32 (ledger 31
  2270. // left), then one write of 'b'*30 + newline merges 30 more chars whose
  2271. // cheap bound is 30, not 33 — the +3 form saw 30 + 3 = 33 > 31, sliced to
  2272. // a budget prefix, and pushed past the ledger, emitting the marker for a
  2273. // line that fits (merged cost 2 + 59 + 1 = 62 <= 63).
  2274. const { runtime } = await setup({ maxLogBytes: 64 })
  2275. const result = await runtime.run({
  2276. program: [
  2277. 'import sys',
  2278. "sys.stdout.write('a' * 29)",
  2279. 'sys.stdout.flush()',
  2280. "sys.stdout.write('b' * 30 + chr(10))",
  2281. 'return "done"',
  2282. ].join('\n'),
  2283. bindings: [],
  2284. })
  2285. expect(result.error).toBeUndefined()
  2286. expect(result.logs).toEqual(['a'.repeat(29) + 'b'.repeat(30)])
  2287. }, 15_000)
  2288. it('rejects a new open entry once the ledger has only two bytes left', async () => {
  2289. // The jsonStringCostUpTo sub-2-byte guard: forged open frames drive the
  2290. // host ledger down to 1 byte, then a new open entry's first-fragment cap
  2291. // (logBudget - 1 = 0) trips the guard and truncates.
  2292. const { runtime } = await setup({ maxLogBytes: 64 })
  2293. const result = await runtime.run({
  2294. program: [
  2295. 'import os',
  2296. "os.write(3, ('{\"type\":\"log\",\"text\":\"' + 'a' * 28 + '\",\"open\":true}\\n').encode())",
  2297. "os.write(3, ('{\"type\":\"log\",\"text\":\"' + 'a' * 31 + '\"}\\n').encode())",
  2298. "os.write(3, b'{\"type\":\"log\",\"text\":\"x\",\"open\":true}\\n')",
  2299. 'return "done"',
  2300. ].join('\n'),
  2301. bindings: [],
  2302. })
  2303. expect(result.error).toBeUndefined()
  2304. expect(result.logs).toEqual(['a'.repeat(59), logTruncationMarker(64)])
  2305. }, 15_000)
  2306. it('truncates when the closing frame of a merged entry overflows the budget', async () => {
  2307. // The merged entry's billed-once cost: an open fragment that nearly
  2308. // exhausts the budget, then a closing frame whose content no longer fits —
  2309. // the closing frame's exact-cost walk trips and the marker replaces the
  2310. // entry, exactly like any other over-budget log traffic.
  2311. const { runtime } = await setup({ maxLogBytes: 64 })
  2312. const result = await runtime.run({
  2313. program: [
  2314. "print('x' * 40, end='', flush=True)",
  2315. "print('y' * 40)",
  2316. 'return "done"',
  2317. ].join('\n'),
  2318. bindings: [],
  2319. })
  2320. expect(result.error).toBeUndefined()
  2321. expect(result.logs).toEqual(['x'.repeat(40), logTruncationMarker(64)])
  2322. }, 15_000)
  2323. it('keeps a float completion exact when the program mutates the decimal context', async () => {
  2324. // The float encoder's Decimal(repr(value)).normalize() used the process
  2325. // GLOBAL decimal context: a legitimate program setting
  2326. // `getcontext().prec = 2` silently rounded the completion value's digits,
  2327. // and `traps[Inexact] = True` made the encode raise, misclassifying a
  2328. // successful run as an exception. A fixed module-level Context(prec=28)
  2329. // makes the spelling decision context-independent.
  2330. const { runtime } = await setup()
  2331. const result = await runtime.run({
  2332. program: [
  2333. 'from decimal import getcontext',
  2334. 'getcontext().prec = 2',
  2335. 'getcontext().traps[__import__("decimal").Inexact] = True',
  2336. 'return 1.2345678901234567',
  2337. ].join('\n'),
  2338. bindings: [],
  2339. })
  2340. expect(result.error).toBeUndefined()
  2341. expect(result.value).toBe(1.2345678901234567)
  2342. }, 15_000)
  2343. it('bounds an over-cap exception-group nesting on the copy', async () => {
  2344. // Exception groups link through `exceptions`, not the cause/context
  2345. // dunders, so the cap has to count that edge too — otherwise a deeply
  2346. // nested group walks past the bound the marker claims to enforce.
  2347. const { runtime } = await setup({ maxValueBytes: 1024 * 1024, maxWallMs: 15_000 })
  2348. const result = await runtime.run({
  2349. program: [
  2350. 'import sys',
  2351. // ExceptionGroup is a 3.11+ builtin; on 3.10 the NameError is the
  2352. // failure mode being probed, so skip to keep the assertion meaningful.
  2353. 'if sys.version_info < (3, 11):',
  2354. ' raise ValueError("skip-old <model>")',
  2355. 'group = ValueError("leaf")',
  2356. 'for i in range(150):',
  2357. ' group = ExceptionGroup(f"g{i}", [group])',
  2358. 'raise group',
  2359. ].join('\n'),
  2360. bindings: [],
  2361. })
  2362. expect(result.error?.kind).toBe('exception')
  2363. // The version guard skips on Python < 3.11 (ExceptionGroup is a 3.11+
  2364. // builtin) with a distinct message; the truncation assertion applies on
  2365. // 3.11+ where the group nesting is what is being probed.
  2366. expect(result.error?.message).toMatch(/exception chain truncated at 100 links|skip-old/)
  2367. }, 20_000)
  2368. it('filters every bootstrap frame from the traceback of an uncaught binding rejection', async () => {
  2369. // A rejection re-raised by the bootstrap's dispatch adds bootstrap frames
  2370. // AFTER the model's own; only <model> frames may reach model-visible,
  2371. // durable output — a bootstrap.py path would leak host absolutes and make
  2372. // transcripts machine-dependent.
  2373. const { runtime } = await setup()
  2374. const result = await runtime.run({
  2375. program: 'await tools.boom({})',
  2376. bindings: tools({ boom: async () => { throw new Error('exploded') } }),
  2377. })
  2378. expect(result.error?.kind).toBe('exception')
  2379. expect(result.error?.message).toContain('exploded')
  2380. expect(result.error?.message).toContain('<model>')
  2381. expect(result.error?.message).not.toContain('bootstrap.py')
  2382. })
  2383. it('renders a non-Error thrown value from a host binding as its String form', async () => {
  2384. const { runtime } = await setup()
  2385. const result = await runtime.run({
  2386. program: [
  2387. 'caught = ""',
  2388. 'try:',
  2389. ' await tools.failRaw({})',
  2390. 'except RuntimeError as e:',
  2391. ' caught = str(e)',
  2392. 'return caught',
  2393. ].join('\n'),
  2394. bindings: tools({
  2395. failRaw: async () => { throw 'raw-nope' },
  2396. }),
  2397. })
  2398. expect(result.error).toBeUndefined()
  2399. expect(result.value).toContain('raw-nope')
  2400. })
  2401. it('reassembles a frame split across writes behind a completed one', async () => {
  2402. // One os.write carrying "<frame>\n<partial...>" leaves a non-empty
  2403. // residual after the newline loop; the tail must survive until its own
  2404. // newline arrives and then parse as a normal frame.
  2405. const { runtime } = await setup()
  2406. const result = await runtime.run({
  2407. program: [
  2408. 'import os, json',
  2409. 'head = json.dumps({"type":"log","text":"first"}).encode()',
  2410. 'tail = json.dumps({"type":"log","text":"second"}).encode()',
  2411. 'import time',
  2412. 'os.write(3, head + b"\\n" + tail[:5])',
  2413. 'time.sleep(0.2)',
  2414. 'os.write(3, tail[5:] + b"\\n")',
  2415. 'return "ok"',
  2416. ].join('\n'),
  2417. bindings: [],
  2418. })
  2419. expect(result.error).toBeUndefined()
  2420. expect(result.value).toBe('ok')
  2421. expect(result.logs).toContain('first')
  2422. expect(result.logs).toContain('second')
  2423. })
  2424. it('raises the declared errorClass with the member name on rejection', async () => {
  2425. // PTC mode declares { name: ToolCallError, memberNameProperty: toolName };
  2426. // a host rejection must surface as that class, carrying the failed tool.
  2427. const { runtime } = await setup()
  2428. const result = await runtime.run({
  2429. program: [
  2430. 'caught = ""',
  2431. 'try:',
  2432. ' await tools.fail({})',
  2433. 'except ToolCallError as e:',
  2434. ' caught = f"{type(e).__name__}:{e.toolName}:{e}"',
  2435. 'return caught',
  2436. ].join('\n'),
  2437. bindings: [{
  2438. global: 'tools',
  2439. functions: { fail: async () => { throw new Error('typed-nope') } },
  2440. errorClass: { name: 'ToolCallError', memberNameProperty: 'toolName' },
  2441. }],
  2442. })
  2443. expect(result.error).toBeUndefined()
  2444. expect(result.value).toBe('ToolCallError:fail:typed-nope')
  2445. })
  2446. it('keeps the declared error class catching when Exception and setattr are rebound', async () => {
  2447. // _make_error_class's minted __init__ def-time captures Exception and
  2448. // setattr, so a program rebinding __main__.Exception/__main__.setattr
  2449. // cannot break the rejection constructor: `except ToolCallError` must still
  2450. // catch and read the member property.
  2451. const { runtime } = await setup()
  2452. const result = await runtime.run({
  2453. program: [
  2454. 'import __main__',
  2455. 'def boom(*a, **k):',
  2456. ' raise RuntimeError("hijacked")',
  2457. '__main__.Exception = boom',
  2458. '__main__.setattr = boom',
  2459. 'caught = ""',
  2460. 'try:',
  2461. ' await tools.fail({})',
  2462. 'except ToolCallError as e:',
  2463. ' caught = f"{type(e).__name__}:{e.toolName}"',
  2464. 'return caught',
  2465. ].join('\n'),
  2466. bindings: [{
  2467. global: 'tools',
  2468. functions: { fail: async () => { throw new Error('typed-nope') } },
  2469. errorClass: { name: 'ToolCallError', memberNameProperty: 'toolName' },
  2470. }],
  2471. })
  2472. expect(result.error).toBeUndefined()
  2473. expect(result.value).toBe('ToolCallError:fail')
  2474. }, 15_000)
  2475. it('runs when errorClass metadata is exposed through one-read getters', async () => {
  2476. // Validation reads errorClass.name and errorClass.memberNameProperty, and
  2477. // the ORIGINAL object used to ride along to the boot frame, whose
  2478. // JSON.stringify re-read it after validation: a getter that throws or
  2479. // changes on a second read turned the seam-misuse rejection into a
  2480. // worker-exit (or injected a different name than validation approved).
  2481. // The snapshot reads each field exactly once into a plain copy, so a
  2482. // getter that only tolerates one read must boot and run cleanly.
  2483. let nameReads = 0
  2484. let memberReads = 0
  2485. const errorClass = {
  2486. get name(): string {
  2487. nameReads += 1
  2488. if (nameReads > 1) throw new Error(`errorClass.name read ${nameReads} times`)
  2489. return 'ToolCallError'
  2490. },
  2491. get memberNameProperty(): string {
  2492. memberReads += 1
  2493. if (memberReads > 1) throw new Error(`errorClass.memberNameProperty read ${memberReads} times`)
  2494. return 'toolName'
  2495. },
  2496. }
  2497. const { runtime } = await setup()
  2498. const result = await runtime.run({
  2499. program: 'return "ok"',
  2500. bindings: [{ global: 'tools', functions: {}, errorClass }],
  2501. })
  2502. expect(result.error).toBeUndefined()
  2503. expect(result.value).toBe('ok')
  2504. expect(nameReads).toBe(1)
  2505. expect(memberReads).toBe(1)
  2506. }, 15_000)
  2507. it('runs when the binding global is exposed through a one-read getter', async () => {
  2508. // Validation reads namespace.global several times (identifier check, map
  2509. // key, claim, boot frame), and the map key came from a fresh read each
  2510. // time: a getter returning a different name on a later read injected a
  2511. // global validation never approved, and the program referencing the
  2512. // approved name died with NameError. Snapshotting reads it exactly once,
  2513. // so the child must receive the name the program was written against.
  2514. let globalReads = 0
  2515. const namespace = {
  2516. get global(): string {
  2517. globalReads += 1
  2518. return globalReads === 1 ? 'tools' : 'evil'
  2519. },
  2520. functions: { echo: async (args: unknown) => args as CodeJsonValue },
  2521. }
  2522. const { runtime } = await setup()
  2523. const result = await runtime.run({
  2524. program: 'return await tools.echo(41)',
  2525. bindings: [namespace],
  2526. })
  2527. expect(result.error).toBeUndefined()
  2528. expect(result.value).toBe(41)
  2529. expect(globalReads).toBe(1)
  2530. }, 15_000)
  2531. it('rejects an errorClass name colliding with its namespace global at the seam', async () => {
  2532. const { runtime } = await setup()
  2533. await expect(runtime.run({
  2534. program: 'return 1',
  2535. bindings: [{ global: 'tools', functions: {}, errorClass: { name: 'tools', memberNameProperty: 'toolName' } }],
  2536. })).rejects.toThrow(/collides with another injected global/)
  2537. })
  2538. it('rejects a namespace global colliding with a runtime-owned name at the seam', async () => {
  2539. // `__dsh_main__` passes the identifier check, but exec()ing the generated
  2540. // wrapper would silently overwrite the binding after injection. `console`
  2541. // is the WORKER backend's slot — refused here too so a namespace list
  2542. // valid on one backend is valid on all.
  2543. const { runtime } = await setup()
  2544. // `__debug__` is refused for a different reason than a collision: CPython
  2545. // compiles a bare `__debug__` reference to the constant True and refuses to
  2546. // assign the name at compile time, so an injected global under it is
  2547. // unreachable from the program — accepted by the seam, unusable here.
  2548. for (const global of ['__dsh_main__', 'console', '__debug__']) {
  2549. await expect(runtime.run({
  2550. program: 'x = 1',
  2551. bindings: [{ global, functions: {} }],
  2552. })).rejects.toThrow(/collides with a runtime-owned global/)
  2553. }
  2554. })
  2555. it('accepts a non-identifier memberNameProperty and rejects only an empty one', async () => {
  2556. // The seam permits any non-empty own property except the reserved
  2557. // members; Python setattr/getattr carry exotic names like `tool-name`,
  2558. // and the worker backend accepts them, so this backend must too.
  2559. const { runtime } = await setup()
  2560. const result = await runtime.run({
  2561. program: [
  2562. 'try:',
  2563. ' await tools.boom({})',
  2564. 'except ToolCallError as e:',
  2565. ' return getattr(e, "tool-name")',
  2566. ].join('\n'),
  2567. bindings: [{
  2568. global: 'tools',
  2569. functions: { boom: async () => { throw new Error('nope') } },
  2570. errorClass: { name: 'ToolCallError', memberNameProperty: 'tool-name' },
  2571. }],
  2572. })
  2573. expect(result.error).toBeUndefined()
  2574. expect(result.value).toBe('boom')
  2575. await expect(runtime.run({
  2576. program: 'return 1',
  2577. bindings: [{ global: 'tools', functions: {}, errorClass: { name: 'ToolCallError', memberNameProperty: '' } }],
  2578. })).rejects.toThrow(/memberNameProperty must be a non-empty attribute name/)
  2579. })
  2580. it('resolves a basename pythonBin to an absolute path (runs a real program)', async () => {
  2581. // A bare `python3` basename must resolve against PATH and actually launch
  2582. // under the empty-env spawn — exercises the accessSync success branch.
  2583. const { runtime } = await setup({ pythonBin: 'python3' })
  2584. const result = await runtime.run({ program: 'return 7', bindings: [] })
  2585. expect(result.error).toBeUndefined()
  2586. expect(result.value).toBe(7)
  2587. })
  2588. it('rejects at load a basename pythonBin with no PATH match', async () => {
  2589. // resolvePythonBin turns a basename into an absolute path before the
  2590. // empty-env spawn; a basename with no PATH match must fail at load (like an
  2591. // empty or NUL pythonBin) rather than silently falling to execvp's
  2592. // platform default PATH and starting a system interpreter the caller never
  2593. // asked for.
  2594. const ctx = new Context()
  2595. await expect(ctx.plugin(PythonCodeRuntime, { pythonBin: 'definitely-no-such-python-xyz' }))
  2596. .rejects.toThrow(/does not resolve to an executable file/)
  2597. })
  2598. it('rejects a memberNameProperty naming a constrained BaseException attribute', async () => {
  2599. // `__dict__`/`__class__` are constrained descriptors alongside
  2600. // `__traceback__` — setattr of a string raises TypeError while
  2601. // constructing the rejection — so every dunder is refused at the seam.
  2602. const { runtime } = await setup()
  2603. // name/message/stack are the seam's own exclusions (CodeBindingErrorClass
  2604. // forbids replacing them; the worker backend rejects them identically).
  2605. for (const member of ['__traceback__', '__dict__', '__class__', 'args', 'name', 'message', 'stack']) {
  2606. await expect(runtime.run({
  2607. program: 'return 1',
  2608. bindings: [{ global: 'tools', functions: {}, errorClass: { name: 'ToolCallError', memberNameProperty: member } }],
  2609. })).rejects.toThrow(/reserved error member/)
  2610. }
  2611. })
  2612. it('rejects a lossy binding resolution (NaN) instead of coercing it to null', async () => {
  2613. // JSON.stringify would turn NaN into null and drop undefined fields; the
  2614. // seam requires a descriptive rejection so data cannot silently corrupt.
  2615. const { runtime } = await setup()
  2616. const result = await runtime.run({
  2617. program: [
  2618. 'caught = ""',
  2619. 'try:',
  2620. ' await tools.bad({})',
  2621. 'except RuntimeError as e:',
  2622. ' caught = str(e)',
  2623. 'return caught',
  2624. ].join('\n'),
  2625. bindings: tools({ bad: async () => Number.NaN }),
  2626. })
  2627. expect(result.error).toBeUndefined()
  2628. expect(result.value).toContain('lossless JSON')
  2629. })
  2630. it('contains a forged pathological done value without crashing the host', async () => {
  2631. // A ~20k-deep nested array forged onto fd 3 would overflow a recursive
  2632. // JSON.stringify; the host's iterative encoder measures it stack-safely
  2633. // and fails it deterministically on the byte budget (40 kB > 32 KiB).
  2634. const { runtime } = await setup()
  2635. const result = await runtime.run({
  2636. program: [
  2637. 'import os, json',
  2638. 'depth = 20000',
  2639. 'payload = "[" * depth + "]" * depth',
  2640. 'os.write(3, b\'{"type":"done","value":\' + payload.encode() + b\'}\\n\')',
  2641. 'import time',
  2642. 'time.sleep(5)',
  2643. ].join('\n'),
  2644. bindings: [],
  2645. })
  2646. expect(result.value).toBeUndefined()
  2647. expect(result.error?.kind).toBe('output-limit')
  2648. })
  2649. it('preserves a deeply nested completion value below the byte budget', async () => {
  2650. // CodeJsonValue has no depth limit: a 10000-deep nested list is only
  2651. // ~20 kB — under maxValueBytes — and must cross intact. That depth
  2652. // overflows BOTH recursive serializers the pipeline used to rely on
  2653. // (CPython's json.dumps recursion limit ~1000s, V8's JSON.stringify), so
  2654. // it proves the child-side _encode_json_plain and the host-side
  2655. // encodeJsonPlain together. The host JSON.parse of the frame is iterative
  2656. // in V8 for arrays, so only the two encoders were at risk.
  2657. const { runtime } = await setup()
  2658. const result = await runtime.run({
  2659. program: [
  2660. 'v = None',
  2661. 'for _ in range(10000):',
  2662. ' v = [v]',
  2663. 'return v',
  2664. ].join('\n'),
  2665. bindings: [],
  2666. })
  2667. expect(result.error).toBeUndefined()
  2668. // Walk down iteratively (a recursive toEqual would itself overflow).
  2669. let depth = 0
  2670. let cursor: unknown = result.value
  2671. while (Array.isArray(cursor)) {
  2672. expect(cursor).toHaveLength(1)
  2673. cursor = cursor[0]
  2674. depth++
  2675. }
  2676. expect(depth).toBe(10000)
  2677. expect(cursor).toBeNull()
  2678. })
  2679. it('bridges a deeply nested binding resolution back into the program stack-safely', async () => {
  2680. // A binding resolution has no seam-level depth or byte cap; neither the
  2681. // host's reply serialization nor the CHILD's reply decode may die on
  2682. // recursion (json.loads raises RecursionError ~10k levels deep; the
  2683. // bootstrap decodes frames iteratively). 12000 levels sits past that
  2684. // limit while staying tiny in bytes.
  2685. const { runtime } = await setup()
  2686. const deep = ((): unknown => {
  2687. let v: unknown = null
  2688. for (let i = 0; i < 12000; i++) v = [v]
  2689. return v
  2690. })()
  2691. const result = await runtime.run({
  2692. program: [
  2693. 'v = await tools.deep({})',
  2694. 'depth = 0',
  2695. 'while isinstance(v, list):',
  2696. ' v = v[0]',
  2697. ' depth += 1',
  2698. 'return depth',
  2699. ].join('\n'),
  2700. bindings: tools({ deep: async () => deep as never }),
  2701. })
  2702. expect(result.error).toBeUndefined()
  2703. expect(result.value).toBe(12000)
  2704. })
  2705. it('rejects a reserved errorClass name at the seam', async () => {
  2706. const { runtime } = await setup()
  2707. await expect(runtime.run({
  2708. program: 'return 1',
  2709. bindings: [{
  2710. global: 'tools',
  2711. functions: {},
  2712. errorClass: { name: 'class', memberNameProperty: 'toolName' },
  2713. }],
  2714. })).rejects.toThrow(/errorClass.name "class" is not a usable Python identifier/)
  2715. })
  2716. it('routes a declared inherited-attribute name through the bridge via subscript', async () => {
  2717. // __class__ resolves on `object` before any fallback hook; the proxy's
  2718. // __getattribute__ intercepts declared names first, and subscript access
  2719. // is the SDK-advertised route for underscore names.
  2720. const { runtime } = await setup()
  2721. const seen: string[] = []
  2722. const result = await runtime.run({
  2723. program: [
  2724. 'a = await tools["__class__"]({"via": "subscript"})',
  2725. 'b = await tools.__class__({"via": "dot"})',
  2726. 'return [a, b]',
  2727. ].join('\n'),
  2728. bindings: tools({
  2729. '__class__': async () => { seen.push('called'); return 'bridged' },
  2730. }),
  2731. })
  2732. expect(result.error).toBeUndefined()
  2733. expect(result.value).toEqual(['bridged', 'bridged'])
  2734. expect(seen).toEqual(['called', 'called'])
  2735. })
  2736. it('rejects NaN binding arguments immediately instead of hanging', async () => {
  2737. // Default json.dumps would emit a non-standard NaN token that the host
  2738. // JSON.parse drops silently, hanging the call until the wall clock;
  2739. // allow_nan=False raises in-program right away.
  2740. const { runtime } = await setup({ maxWallMs: 8000 })
  2741. const start = Date.now()
  2742. const result = await runtime.run({
  2743. program: [
  2744. 'caught = ""',
  2745. 'try:',
  2746. ' await tools.echo({"x": float("nan")})',
  2747. 'except RuntimeError as e:',
  2748. ' caught = str(e)',
  2749. 'return caught',
  2750. ].join('\n'),
  2751. bindings: tools({ echo: async args => args as CodeJsonValue }),
  2752. })
  2753. expect(result.error).toBeUndefined()
  2754. expect(result.value).toContain('lossless JSON')
  2755. expect(Date.now() - start).toBeLessThan(5000)
  2756. })
  2757. it('carries large binding arguments well past maxValueBytes', async () => {
  2758. // Binding traffic has no seam byte cap: a call frame far larger than the
  2759. // completion budget must reach the host intact (the fd-3 ceiling is a
  2760. // fixed memory-safety bound, not an output budget).
  2761. const maxValueBytes = 4096
  2762. const { runtime } = await setup({ maxValueBytes })
  2763. let receivedLength = 0
  2764. const result = await runtime.run({
  2765. program: [
  2766. `big = "B" * ${maxValueBytes * 50}`,
  2767. 'r = await tools.measure({"payload": big})',
  2768. 'return r',
  2769. ].join('\n'),
  2770. bindings: tools({
  2771. measure: async (args) => {
  2772. receivedLength = ((args as { payload: string }).payload).length
  2773. return receivedLength
  2774. },
  2775. }),
  2776. })
  2777. expect(result.error).toBeUndefined()
  2778. expect(receivedLength).toBe(maxValueBytes * 50)
  2779. expect(result.value).toBe(maxValueBytes * 50)
  2780. })
  2781. it('rejects an unknown binding name inside the program with a matching error', async () => {
  2782. const { runtime } = await setup()
  2783. const result = await runtime.run({
  2784. program: [
  2785. 'caught = ""',
  2786. 'try:',
  2787. ' await tools.nope({})',
  2788. 'except (AttributeError, RuntimeError) as e:',
  2789. ' caught = str(e)',
  2790. 'return caught',
  2791. ].join('\n'),
  2792. bindings: tools({ known: async () => 'ok' }),
  2793. })
  2794. expect(result.error).toBeUndefined()
  2795. expect(result.value).toContain('nope')
  2796. })
  2797. it('bounds an unknown-binding diagnostic built from a forged call frame', async () => {
  2798. // `call.global` and `call.name` carry no byte cap of their own, only the
  2799. // 64 MiB fd-3 frame parse cap, and the reply interpolated them raw: one copy
  2800. // into the template result, one into the `JSON.stringify` escape, one into
  2801. // the `encodeJsonPlain` frame, one into the pipe write. Slicing each field
  2802. // to `maxValueBytes` code units first makes an 8 MiB forged name a
  2803. // 128-byte reply. The observable effect is the reply the child then has to
  2804. // READ: its fd-3 reader is unbuffered, so `readline` consumes an oversized
  2805. // reply one `read(2)` per byte and the run's own legitimate call never gets
  2806. // answered — measured under a 60 s ceiling, the 8 MiB case timed out and a
  2807. // 64 MiB case cost the host 509.9 MiB of heap against 120.3 MiB with the
  2808. // slices in place. The child's address space stays generous enough to BUILD
  2809. // the forgery, which is not what is under test.
  2810. const { runtime } = await setup({ maxValueBytes: 128, addressSpaceMb: 1024, maxWallMs: 20_000 })
  2811. const result = await runtime.run({
  2812. program: [
  2813. 'import os',
  2814. 'frame = b\'{"type":"call","id":9001,"global":"tools","name":"\' + b"n" * (8 * 1024 * 1024) + b\'","args":{}}\\n\'',
  2815. // One os.write returns short past the pipe buffer, and a partial frame
  2816. // would glue itself to the next one and be dropped as malformed, so the
  2817. // forgery goes out through a drain loop.
  2818. 'view = memoryview(frame)',
  2819. 'while view:',
  2820. ' view = view[os.write(3, view):]',
  2821. // A legitimate call after the forgery: its reply can only arrive once
  2822. // the child has read past whatever the forged frame was answered with.
  2823. 'await tools.known({})',
  2824. 'return "settled"',
  2825. ].join('\n'),
  2826. bindings: tools({ known: async () => 'ok' }),
  2827. })
  2828. expect(result.error).toBeUndefined()
  2829. expect(result.value).toBe('settled')
  2830. }, 40_000)
  2831. it('bridges a binding call reached via subscript access (tools["name"])', async () => {
  2832. // The SDK tells the model `await tools["my-tool"](args)` works for exotic
  2833. // names; the proxy's __getitem__ must route it through the bridge.
  2834. const { runtime } = await setup()
  2835. const result = await runtime.run({
  2836. program: [
  2837. 'r = await tools["my-tool"]({"n": 7})',
  2838. 'return r',
  2839. ].join('\n'),
  2840. bindings: tools({ 'my-tool': async args => ({ got: args as CodeJsonValue }) }),
  2841. })
  2842. expect(result.error).toBeUndefined()
  2843. expect(result.value).toEqual({ got: { n: 7 } })
  2844. })
  2845. it('raises KeyError for an undeclared subscript name', async () => {
  2846. const { runtime } = await setup()
  2847. const result = await runtime.run({
  2848. program: [
  2849. 'caught = ""',
  2850. 'try:',
  2851. ' await tools["absent"]({})',
  2852. 'except KeyError as e:',
  2853. ' caught = str(e)',
  2854. 'return caught',
  2855. ].join('\n'),
  2856. bindings: tools({ known: async () => 'ok' }),
  2857. })
  2858. expect(result.error).toBeUndefined()
  2859. expect(result.value).toContain('absent')
  2860. })
  2861. })
  2862. describe('PythonCodeRuntime — budgets, termination, disposal', () => {
  2863. it('kills a wall-clock runaway program via SIGTERM/SIGKILL and reports timeout', async () => {
  2864. const { runtime } = await setup({ maxWallMs: 500, graceMs: 200 })
  2865. const start = Date.now()
  2866. const result = await runtime.run({
  2867. program: 'import time\nwhile True: time.sleep(1)',
  2868. bindings: [],
  2869. })
  2870. const elapsed = Date.now() - start
  2871. // The wall timer may fire first or the exit-after-signal may resolve; both are ok.
  2872. expect(['timeout', 'worker-exit']).toContain(result.error?.kind)
  2873. // We got somewhere in the neighborhood of maxWallMs, not the underlying `sleep(1)`.
  2874. expect(elapsed).toBeLessThan(2000)
  2875. }, 5000)
  2876. it('aborts a run when the outer signal fires mid-flight', async () => {
  2877. const { runtime } = await setup({ maxWallMs: 10_000 })
  2878. const controller = new AbortController()
  2879. const settled: Promise<CodeRunResult> = runtime.run({
  2880. program: 'import time\nwhile True: time.sleep(0.1)',
  2881. bindings: [],
  2882. signal: controller.signal,
  2883. })
  2884. setTimeout(() => { controller.abort('outer-abort') }, 200)
  2885. const result = await settled
  2886. expect(['abort', 'worker-exit']).toContain(result.error?.kind)
  2887. }, 5000)
  2888. it('settles the run when a mid-flight abort reason cannot be converted', async () => {
  2889. // The listener converted the reason before calling `finish()`, so a hostile
  2890. // reason threw from inside an `AbortSignal` listener. Node reports that as an
  2891. // uncaught exception — it can terminate the host — and `finish()` never ran,
  2892. // so the run stayed live until the wall ceiling and misreported as `timeout`
  2893. // (observed) instead of the caller's cancellation. `maxWallMs` is short so
  2894. // that misreport is a fast assertion failure rather than a suite timeout.
  2895. const uncaught: unknown[] = []
  2896. const record = (error: unknown): void => { uncaught.push(error) }
  2897. process.on('uncaughtException', record)
  2898. try {
  2899. const { runtime } = await setup({ maxWallMs: 4_000, graceMs: 200 })
  2900. const controller = new AbortController()
  2901. const settled: Promise<CodeRunResult> = runtime.run({
  2902. program: 'import time\nwhile True: time.sleep(0.1)',
  2903. bindings: [],
  2904. signal: controller.signal,
  2905. })
  2906. setTimeout(() => {
  2907. controller.abort({ [Symbol.toPrimitive]() { throw new Error('reason blew up') } })
  2908. }, 200)
  2909. const result = await settled
  2910. expect(result.error?.kind).toBe('abort')
  2911. expect(result.error?.message).toBe('<unrenderable rejection value>')
  2912. expect(uncaught).toEqual([])
  2913. } finally {
  2914. process.off('uncaughtException', record)
  2915. }
  2916. }, 15_000)
  2917. it('disposes to quiescence: an in-flight run resolves as abort and the child exits', async () => {
  2918. const { fiber, runtime } = await setup({ maxWallMs: 10_000 })
  2919. const pending = runtime.run({
  2920. program: 'import time\nwhile True: time.sleep(0.1)',
  2921. bindings: [],
  2922. })
  2923. // Give the process time to spawn and start running.
  2924. await new Promise(resolve => setTimeout(resolve, 200))
  2925. await fiber.dispose()
  2926. const result = await pending
  2927. expect(['abort', 'worker-exit']).toContain(result.error?.kind)
  2928. }, 5000)
  2929. it('reports an interpreter removed after load as worker-exit', async () => {
  2930. const dir = await mkdtemp(join(tmpdir(), 'dsh-python-removed-'))
  2931. const pythonBin = join(dir, 'python3')
  2932. await writeFile(pythonBin, `#!/bin/sh\nexec "${PYABS}" "$@"\n`, { mode: 0o755 })
  2933. const { runtime, fiber } = await setup({ pythonBin, maxWallMs: 3000 })
  2934. rmSync(pythonBin)
  2935. try {
  2936. const result = await runtime.run({ program: 'return 1', bindings: [] })
  2937. expect(result.error?.kind).toBe('worker-exit')
  2938. } finally {
  2939. await fiber.dispose()
  2940. rmSync(dir, { recursive: true, force: true })
  2941. }
  2942. }, 8000)
  2943. it('applies the strictest of the configured and inherited resource limits', async () => {
  2944. // This case used to drive the bootstrap's `applying resource limits failed`
  2945. // handler with `cpuSeconds: 2 ** 63`, asserting that a cap the child cannot
  2946. // apply fails the run rather than running it uncapped. That premise no longer
  2947. // holds, for two independent reasons, so the test now pins what is actually
  2948. // guaranteed instead of a path no admissible input reaches.
  2949. //
  2950. // First, `2 ** 63` is not a safe integer, so it is now rejected at LOAD as a
  2951. // configuration error — it can never reach the child at all. Second, even the
  2952. // largest admissible values are applied successfully, because `_clamped`
  2953. // bounds every requested pair by the inherited hard limit: an unprivileged
  2954. // process may lower a hard limit but never raise one, so the child keeps the
  2955. // stricter of the two rather than asking for something `setrlimit` refuses.
  2956. // The failure handler remains as a substrate guard (a platform whose kernel
  2957. // refuses the call for its own reasons), but it is no longer reachable from
  2958. // configuration, and a test that pretends otherwise documents a contract the
  2959. // code does not have.
  2960. //
  2961. // What is observable: a very large cap still yields a working run, and the
  2962. // containment it promises is met by the inherited ceiling.
  2963. const { runtime } = await setup({ cpuSeconds: Number.MAX_SAFE_INTEGER - 1, maxWallMs: 10_000 })
  2964. const result = await runtime.run({ program: 'return 1', bindings: [] })
  2965. expect(result.error).toBeUndefined()
  2966. expect(result.value).toBe(1)
  2967. }, 20_000)
  2968. it('settles as worker-exit when the child exits before sending done (no hang)', async () => {
  2969. // Regression: settlement must key off `close` (process reaped AND stdio
  2970. // drained), not `exit`. With `exit`, finish() re-armed a second exit
  2971. // listener that never fired — run() hung forever whenever the exit event
  2972. // beat the final fd-3 data (deterministic on macOS, a lost race elsewhere).
  2973. const { runtime } = await setup({ maxWallMs: 10_000 })
  2974. const result = await runtime.run({
  2975. program: 'import os\nos._exit(7)',
  2976. bindings: [],
  2977. })
  2978. expect(result.error?.kind).toBe('worker-exit')
  2979. expect(result.error?.message).toContain('code=7')
  2980. }, 5000)
  2981. it('classifies RLIMIT_CPU soft-limit expiry (SIGXCPU) as a timeout', async () => {
  2982. // A CPU hot loop burns the soft limit; the kernel delivers SIGXCPU, whose
  2983. // close signal the host maps to `timeout`. macOS re-delivers SIGXCPU
  2984. // differently, so we assert only kind/message here — CI's darwin leg
  2985. // validates real delivery. cpuSeconds must be an integer for setrlimit.
  2986. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 20_000 })
  2987. const result = await runtime.run({
  2988. program: 'while True: pass',
  2989. bindings: [],
  2990. })
  2991. expect(result.error?.kind).toBe('timeout')
  2992. expect(result.error?.message).toContain('CPU time exhausted')
  2993. }, 8000)
  2994. it('keeps an early self-inflicted SIGKILL a worker-exit, not a CPU timeout', async () => {
  2995. // The unsolicited-SIGKILL-as-timeout classification applies only when the
  2996. // CPU budget could have expired (wall time >= cpuSeconds). A SIGKILL
  2997. // seconds before that (cgroup OOM, an operator, os.kill) is substrate
  2998. // death and stays worker-exit per the orthogonal taxonomy.
  2999. const { runtime } = await setup({ cpuSeconds: 60, maxWallMs: 10_000 })
  3000. const result = await runtime.run({
  3001. program: [
  3002. 'import os, signal',
  3003. 'os.kill(os.getpid(), signal.SIGKILL)',
  3004. ].join('\n'),
  3005. bindings: [],
  3006. })
  3007. expect(result.error?.kind).toBe('worker-exit')
  3008. expect(result.error?.message).toContain('SIGKILL')
  3009. })
  3010. it('charges a forked descendant against the run CPU budget', async () => {
  3011. // RLIMIT_CPU is per-process and every child inherits a FRESH budget, so a
  3012. // program that shells out multiplies `cpuSeconds` by the number of
  3013. // descendants it starts. Measured before the aggregate meter existed: with
  3014. // cpuSeconds 1, two sequential busy children burned 2.0 CPU-seconds
  3015. // (RUSAGE_CHILDREN) and the run still returned a SUCCESS completion. The
  3016. // settle-time check meters RUSAGE_SELF + RUSAGE_CHILDREN and converts the
  3017. // overrun into the same SIGXCPU the untrapped soft limit sends.
  3018. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 30_000 })
  3019. const result = await runtime.run({
  3020. program: [
  3021. 'import subprocess, sys',
  3022. 'for _ in range(2):',
  3023. ' subprocess.run([sys.executable, "-c", "import time\\nt=time.time()\\nwhile time.time()-t<1.2: pass"])',
  3024. 'return "escaped the cpu budget"',
  3025. ].join('\n'),
  3026. bindings: [],
  3027. })
  3028. // Darwin's SIGXCPU re-delivery differs, so accept either terminal
  3029. // classification; what must NOT happen is the completion crossing.
  3030. expect(['timeout', 'worker-exit']).toContain(result.error?.kind)
  3031. expect(result.value).toBeUndefined()
  3032. }, 40_000)
  3033. it('does not charge wall time or a cheap descendant against the CPU budget', async () => {
  3034. // The meter is CPU, not wall clock, and it must not fire on a child that
  3035. // burns almost nothing: a sleeping program and a trivial subprocess both
  3036. // have to complete normally, or the check would reject every program that
  3037. // shells out.
  3038. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 30_000 })
  3039. const slept = await runtime.run({
  3040. program: 'import time\ntime.sleep(1.5)\nreturn "slept"',
  3041. bindings: [],
  3042. })
  3043. expect(slept.error).toBeUndefined()
  3044. expect(slept.value).toBe('slept')
  3045. const cheap = await runtime.run({
  3046. program: [
  3047. 'import subprocess, sys',
  3048. 'subprocess.run([sys.executable, "-c", "pass"])',
  3049. 'return "cheap child"',
  3050. ].join('\n'),
  3051. bindings: [],
  3052. })
  3053. expect(cheap.error).toBeUndefined()
  3054. expect(cheap.value).toBe('cheap child')
  3055. }, 40_000)
  3056. it('spends no part of addressSpaceMb on bootstrap machinery', async () => {
  3057. // RLIMIT_AS counts RESERVED address space, so anything the bootstrap maps
  3058. // for its own accounting is subtracted from the program's `addressSpaceMb`.
  3059. // A sampling thread for the descendant-CPU meter cost 72 MiB here (an 8 MiB
  3060. // stack plus a 64 MiB glibc per-thread malloc arena reservation) and turned
  3061. // the 2-million-entry dict rejection below into a MemoryError under a
  3062. // 256 MiB cap on a slower runner. Assert the child's own mappings directly
  3063. // rather than inferring the budget from a near-cap allocation, so the bound
  3064. // is read from /proc instead of from how much headroom one machine happens
  3065. // to have; 48 MiB is well above the ~30 MiB a bare interpreter maps and
  3066. // well below the 102 MiB the thread produced. `addressSpaceMb` itself is
  3067. // skipped on darwin (the dyld shared cache makes any practical cap
  3068. // unsettable) and /proc/self/maps does not exist there, so the mapping
  3069. // assertion is Linux-only; the completion path is checked everywhere.
  3070. const { runtime } = await setup({ maxValueBytes: 4096, addressSpaceMb: 256 })
  3071. const mapped = await runtime.run({
  3072. program: [
  3073. 'import sys',
  3074. 'if sys.platform != "linux":',
  3075. ' return 0',
  3076. 'total = 0',
  3077. 'with open("/proc/self/maps") as handle:',
  3078. ' for line in handle:',
  3079. ' low, high = (int(part, 16) for part in line.split(" ", 1)[0].split("-"))',
  3080. ' total += high - low',
  3081. 'return total // (1024 * 1024)',
  3082. ].join('\n'),
  3083. bindings: [],
  3084. })
  3085. expect(mapped.error).toBeUndefined()
  3086. expect(mapped.value).toBeLessThan(48)
  3087. }, 20_000)
  3088. it('spends no part of addressSpaceMb on the reply pump, across a binding await', async () => {
  3089. // The test above measures BEFORE the program yields, so it could not see the
  3090. // reply pump's cost: `loop.run_in_executor(None, read_frame)` created the
  3091. // default executor's first thread on the first `await tools.*`, and that
  3092. // thread's 8 MiB stack plus a 64 MiB glibc per-thread malloc arena are
  3093. // charged to RLIMIT_AS while the limit is already in force — measured, the
  3094. // child went from 30.34 MiB to 102.39 MiB across one binding call. Under a
  3095. // small `addressSpaceMb` the thread cannot start and a legitimate call hangs
  3096. // to `maxWallMs`; under a larger one an allocation that should have fit dies
  3097. // as MemoryError. `loop.add_reader` watches the fd with no thread at all.
  3098. //
  3099. // Measuring both sides inside one run is what discriminates: a single
  3100. // after-the-fact number cannot separate the pump's cost from the
  3101. // interpreter's own footprint. Linux-only for the same reason as above.
  3102. const { runtime } = await setup({ addressSpaceMb: 256, maxWallMs: 20_000 })
  3103. const result = await runtime.run({
  3104. program: [
  3105. 'import sys',
  3106. 'def mapped():',
  3107. ' if sys.platform != "linux":',
  3108. ' return 0',
  3109. ' total = 0',
  3110. ' with open("/proc/self/maps") as handle:',
  3111. ' for line in handle:',
  3112. ' low, high = (int(part, 16) for part in line.split(" ", 1)[0].split("-"))',
  3113. ' total += high - low',
  3114. ' return total // (1024 * 1024)',
  3115. 'before = mapped()',
  3116. 'echoed = await tools.echo({"ping": True})',
  3117. 'return {"before": before, "after": mapped(), "echoed": echoed}',
  3118. ].join('\n'),
  3119. bindings: tools({ echo: async args => args as CodeJsonValue }),
  3120. })
  3121. expect(result.error).toBeUndefined()
  3122. const value = result.value as { before: number; after: number; echoed: unknown }
  3123. // The binding call really happened, so the pump really ran.
  3124. expect(value.echoed).toEqual({ ping: true })
  3125. // Awaiting a binding maps nothing extra. The 8 MiB allowance absorbs ordinary
  3126. // heap growth while staying far below the 72 MiB a pump thread cost.
  3127. expect(value.after - value.before).toBeLessThan(8)
  3128. }, 30_000)
  3129. it('still terminates a program that ignores SIGXCPU (hard-limit backstop)', async () => {
  3130. // A hot loop under SIG_IGN burns through the soft limit; the kernel's
  3131. // hard limit (cpuSeconds + 1) SIGKILLs it. Only a kernel-authoritative
  3132. // SIGXCPU close classifies as the CPU timeout — a bare SIGKILL is
  3133. // indistinguishable from a cgroup OOM kill, so it reports worker-exit
  3134. // (Darwin re-delivers SIGXCPU instead, where the wall clock settles it
  3135. // as timeout). Either way the run TERMINATES within the budget — the
  3136. // backstop holds even when the classification is the opaque one.
  3137. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 6_000 })
  3138. const result = await runtime.run({
  3139. program: [
  3140. 'import signal',
  3141. 'signal.signal(signal.SIGXCPU, signal.SIG_IGN)',
  3142. 'while True: pass',
  3143. ].join('\n'),
  3144. bindings: [],
  3145. })
  3146. expect(['timeout', 'worker-exit']).toContain(result.error?.kind)
  3147. }, 12_000)
  3148. it('enforces the CPU budget even when the program monkeypatches the enforcement primitives', async () => {
  3149. // The check uses import-time-captured references, so replacing
  3150. // resource.getrusage / signal.signal / os.kill on the modules cannot
  3151. // defang it: a trapping program that also swaps the callables and burns
  3152. // past the budget still dies by the authoritative SIGXCPU.
  3153. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 15_000 })
  3154. const result = await runtime.run({
  3155. program: [
  3156. 'import signal, os, resource, time',
  3157. 'signal.signal(signal.SIGXCPU, lambda *a: None)',
  3158. 'resource.getrusage = lambda *a: (_ for _ in ()).throw(RuntimeError("nope"))',
  3159. 'os.kill = lambda *a: None',
  3160. 'signal.signal = lambda *a: None',
  3161. 'deadline = time.process_time() + 1.05',
  3162. 'while time.process_time() < deadline: pass',
  3163. 'return "escaped"',
  3164. ].join('\n'),
  3165. bindings: [],
  3166. })
  3167. expect(result.error?.kind).toBe('timeout')
  3168. expect(result.value).toBeUndefined()
  3169. }, 15_000)
  3170. it('re-delivers SIGXCPU when a trapping program returns inside the soft-to-hard gap', async () => {
  3171. // A program can trap SIGXCPU and settle during the one-second gap; the
  3172. // bootstrap re-checks the kernel CPU meter (getrusage) after settlement
  3173. // and dies by SIGXCPU with the default disposition restored, so the host
  3174. // still classifies the exhausted budget as a timeout instead of success.
  3175. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 15_000 })
  3176. const result = await runtime.run({
  3177. program: [
  3178. 'import signal, time',
  3179. 'fired = []',
  3180. 'signal.signal(signal.SIGXCPU, lambda *a: fired.append(1))',
  3181. 'deadline = time.process_time() + 1.05',
  3182. 'while time.process_time() < deadline: pass',
  3183. 'return "escaped"',
  3184. ].join('\n'),
  3185. bindings: [],
  3186. })
  3187. expect(result.error?.kind).toBe('timeout')
  3188. expect(result.error?.message).toContain('CPU time exhausted')
  3189. expect(result.value).toBeUndefined()
  3190. }, 15_000)
  3191. it('enforces the CPU budget when the program rebinds the enforcer on __main__', async () => {
  3192. // The bootstrap IS `__main__`, so `import __main__` reaches its globals.
  3193. // The enforcement callable holds its primitives in closure cells (not
  3194. // module attributes) and `_run` reads the callable into a frame local
  3195. // before the program starts, so neither replacing the global nor swapping
  3196. // the module's captured names changes what runs after settlement.
  3197. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 15_000 })
  3198. const result = await runtime.run({
  3199. program: [
  3200. 'import signal, time, __main__',
  3201. 'signal.signal(signal.SIGXCPU, lambda *a: None)',
  3202. '__main__._DIE_IF_CPU_EXHAUSTED = lambda *_: None',
  3203. 'deadline = time.process_time() + 1.05',
  3204. 'while time.process_time() < deadline: pass',
  3205. 'return "escaped"',
  3206. ].join('\n'),
  3207. bindings: [],
  3208. })
  3209. expect(result.error?.kind).toBe('timeout')
  3210. expect(result.value).toBeUndefined()
  3211. }, 15_000)
  3212. it('bounds a program that defeats the post-check by writing its closure cell', async () => {
  3213. // The closure-cell capture raises the cost of defeating the post-check; it
  3214. // does NOT make it unreachable, and nothing in-process could: a cell is
  3215. // writable through `fn.__closure__[i].cell_contents`, and `sys._getframe`
  3216. // reads _run's frame locals. This program does exactly that — walks to
  3217. // _run's frame, takes the enforcement callable, and replaces its captured
  3218. // `getrusage` with one reporting zero CPU used — then burns past cpuSeconds
  3219. // with SIGXCPU trapped. The run must still fail, because the bound that
  3220. // model code cannot forge is outside the interpreter: the RLIMIT_CPU HARD
  3221. // limit at cpuSeconds + 1, whose SIGKILL admits no handler. No success is
  3222. // reportable either way.
  3223. const { runtime } = await setup({ cpuSeconds: 1, maxWallMs: 20_000 })
  3224. const start = Date.now()
  3225. const result = await runtime.run({
  3226. program: [
  3227. 'import signal, sys, time',
  3228. 'signal.signal(signal.SIGXCPU, lambda *a: None)',
  3229. // Walk out of __dsh_main__ to _run's frame and take its local.
  3230. 'die = None',
  3231. 'depth = 1',
  3232. 'while depth < 12:',
  3233. ' frame = sys._getframe(depth)',
  3234. ' if "die_if_cpu_exhausted" in frame.f_locals:',
  3235. ' die = frame.f_locals["die_if_cpu_exhausted"]',
  3236. ' break',
  3237. ' depth += 1',
  3238. 'assert die is not None, "enforcer not reachable from the frame chain"',
  3239. 'class Zero:',
  3240. ' ru_utime = 0.0',
  3241. ' ru_stime = 0.0',
  3242. 'names = die.__code__.co_freevars',
  3243. 'die.__closure__[names.index("getrusage")].cell_contents = lambda *a: Zero()',
  3244. // Burn well past the soft limit into the hard limit's SIGKILL.
  3245. 'while True: pass',
  3246. ].join('\n'),
  3247. bindings: [],
  3248. })
  3249. // What holds on EVERY platform: the tampering bought no success. The run
  3250. // failed, carried no value, and the reported kind is one of the two
  3251. // kernel-level outcomes — never a completion.
  3252. expect(result.value).toBeUndefined()
  3253. expect(result.error?.kind === 'worker-exit' || result.error?.kind === 'timeout').toBe(true)
  3254. if (process.platform === 'linux') {
  3255. // Linux enforces the RLIMIT_CPU HARD limit at cpuSeconds + 1 promptly, so
  3256. // the CPU bound — not the 20 s wall ceiling — is what stops the program.
  3257. // Its SIGKILL is not SIGXCPU, so the orthogonal-failure taxonomy reports
  3258. // `worker-exit`: a bare SIGKILL is not evidence of CPU burn.
  3259. expect(result.error?.kind).toBe('worker-exit')
  3260. expect(Date.now() - start).toBeLessThan(15_000)
  3261. } else {
  3262. // Darwin does not deliver the hard limit's SIGKILL on the same schedule;
  3263. // observed on the macOS lane, a program that patches the post-check runs
  3264. // to the WALL ceiling instead. The CPU budget is therefore not the
  3265. // binding constraint against a tampering program there — the wall clock
  3266. // is. Asserted rather than skipped so the difference stays visible.
  3267. expect(result.error?.kind).toBe('timeout')
  3268. }
  3269. }, 30_000)
  3270. it('keeps a finished-but-not-closed run live so dispose awaits the child\'s death', async () => {
  3271. // finish() no longer drops the run from `live`; settle() (at close) does.
  3272. // A SIGTERM-trapping program with a small graceMs sits in the grace window
  3273. // after finish() fires — dispose() must not resolve until the SIGKILL
  3274. // backstop actually reaps the child. The program prints its pid (captured
  3275. // as a log even on abort); once dispose() resolves, that pid must be dead
  3276. // (process.kill(pid, 0) throws ESRCH).
  3277. const { fiber, runtime } = await setup({ maxWallMs: 10_000, graceMs: 400 })
  3278. // Deterministic readiness: the program reports its pid through a binding
  3279. // AFTER installing the trap, so dispose cannot race the spawn (a fixed
  3280. // sleep lost that race on slow CI runners — SIGTERM landed pre-trap).
  3281. let reportedPid!: (pid: number) => void
  3282. const trapReady = new Promise<number>((resolve) => { reportedPid = resolve })
  3283. const pending = runtime.run({
  3284. program: [
  3285. 'import signal, time, os',
  3286. 'signal.signal(signal.SIGTERM, lambda *a: None)',
  3287. 'await tools.ready({"pid": os.getpid()})',
  3288. 'while True: time.sleep(0.05)',
  3289. ].join('\n'),
  3290. bindings: tools({
  3291. ready: async (args) => {
  3292. reportedPid((args as { pid: number }).pid)
  3293. return 'ok'
  3294. },
  3295. }),
  3296. })
  3297. const pid = await trapReady
  3298. const start = Date.now()
  3299. await fiber.dispose()
  3300. const elapsed = Date.now() - start
  3301. const result = await pending
  3302. expect(['abort', 'worker-exit', 'timeout']).toContain(result.error?.kind)
  3303. // dispose() returned only after the grace window elapsed (the SIGTERM trap
  3304. // forces the SIGKILL backstop path), proving the run stayed live past finish().
  3305. expect(elapsed).toBeGreaterThanOrEqual(300)
  3306. expect(Number.isInteger(pid) && pid > 0).toBe(true)
  3307. // The child is fully reaped by the time dispose() resolved.
  3308. expect(() => process.kill(pid, 0)).toThrow(/ESRCH/)
  3309. }, 8000)
  3310. it('settles on the decided result even when a setsid-escaped orphan holds stdio open past close', async () => {
  3311. // `close` only fires once every inherited stdio stream drains. A descendant
  3312. // started with start_new_session=True escapes the child's process group, so
  3313. // the SIGTERM/SIGKILL aimed at that group never reaches it; if it inherited
  3314. // our stdout/stderr/fd 3 and outlives the run, `close` would never fire and
  3315. // run() would hang forever. The close-deadline backstop (graceMs + margin)
  3316. // must force settlement on the value the `done` frame already decided.
  3317. const { runtime } = await setup({ graceMs: 100 })
  3318. const start = Date.now()
  3319. const result = await runtime.run({
  3320. program: [
  3321. 'import subprocess, sys',
  3322. // Orphan in a fresh session, inheriting our stdout/stderr/fd 3, alive
  3323. // past the close-deadline so `close` cannot fire on its own. Its own
  3324. // 5 s self-exit is the leak ceiling AND the discriminator: it must stay
  3325. // ABOVE the < 4000 ms upper-bound assertion below, so if the deadline
  3326. // backstop failed to settle, settlement could only come from this
  3327. // self-exit at ~5 s and blow the bound — a sharper signal than the wall
  3328. // ceiling would give.
  3329. 'subprocess.Popen([sys.executable, "-c", "import time; time.sleep(5)"],',
  3330. ' start_new_session=True)',
  3331. 'return "escaped"',
  3332. ].join('\n'),
  3333. bindings: [],
  3334. })
  3335. const elapsed = Date.now() - start
  3336. // The done frame decided the value; the deadline settled it despite the
  3337. // orphan pinning the pipes open.
  3338. expect(result.error).toBeUndefined()
  3339. expect(result.value).toBe('escaped')
  3340. // Settlement waited for the backstop (graceMs + CLOSE_REAP_MARGIN_MS ≈ 2.1s),
  3341. // not the orphan's 5 s self-exit — proving the deadline, not a fallback, fired.
  3342. expect(elapsed).toBeGreaterThanOrEqual(1_500)
  3343. expect(elapsed).toBeLessThan(4_000)
  3344. }, 8000)
  3345. it('flushes a newline-free diagnostic when the closeDeadline forces settlement', async () => {
  3346. // A leader that writes an unterminated diagnostic via `os.write(1, ...)` and
  3347. // then exits, leaving a setsid orphan holding the pipes open, settles through
  3348. // the closeDeadline destroy() path — which fires no `end`. The residual must
  3349. // be flushed before destroy() drops it, or the diagnostic is lost from
  3350. // `logs`. The value is decided by the done frame; the diagnostic must survive.
  3351. const { runtime } = await setup({ graceMs: 100 })
  3352. const result = await runtime.run({
  3353. program: [
  3354. 'import os, subprocess, sys',
  3355. 'os.write(1, b"leader-diagnostic-no-newline")',
  3356. 'subprocess.Popen([sys.executable, "-c", "import time; time.sleep(5)"],',
  3357. ' start_new_session=True)',
  3358. 'return "escaped"',
  3359. ].join('\n'),
  3360. bindings: [],
  3361. })
  3362. expect(result.error).toBeUndefined()
  3363. expect(result.value).toBe('escaped')
  3364. expect(result.logs).toContain('leader-diagnostic-no-newline')
  3365. }, 8000)
  3366. it('closes the child stdin so a program read sees EOF instead of blocking', async () => {
  3367. // The host closes the child's stdin write handle immediately after spawn
  3368. // (the program is an async body that reads nothing from fd 0; a live pipe
  3369. // would hold a host-side handle open past the run). A program that DOES
  3370. // read fd 0 therefore sees EOF at once. Fail-before: with the handle left
  3371. // open and no data written, `sys.stdin.read()` blocks and the run would
  3372. // hang to maxWallMs as a timeout.
  3373. const { runtime } = await setup({ maxWallMs: 8_000 })
  3374. const result = await runtime.run({
  3375. program: [
  3376. 'import sys',
  3377. 'data = sys.stdin.read()',
  3378. 'return "read: " + repr(data)',
  3379. ].join('\n'),
  3380. bindings: [],
  3381. })
  3382. expect(result.error).toBeUndefined()
  3383. expect(result.value).toBe("read: ''")
  3384. }, 15_000)
  3385. it('keeps runtime type annotations as live classes, not PEP 563 strings, when the program reads them', async () => {
  3386. // bootstrap.py imports `from __future__ import annotations`; without
  3387. // dont_inherit=True on compile(), that PEP 563 flag leaks into the program's
  3388. // compiled code and stringifies its type annotations, changing the semantics
  3389. // of a legal program that reads `f.__annotations__` at runtime.
  3390. const { runtime } = await setup()
  3391. const result = await runtime.run({
  3392. program: [
  3393. 'def f(x: int) -> int:',
  3394. ' return x',
  3395. 'return f.__annotations__["x"].__name__',
  3396. ].join('\n'),
  3397. bindings: [],
  3398. })
  3399. expect(result.error).toBeUndefined()
  3400. expect(result.value).toBe('int')
  3401. }, 15_000)
  3402. it('reaps a same-group child that ignores SIGTERM and releases the pipes before close', async () => {
  3403. // The same-group counterpart to the setsid-orphan case above. A descendant
  3404. // left in the child's OWN process group (no setsid, so `kill(-pid)` reaches
  3405. // it) can ignore SIGTERM yet still release the inherited stdout/stderr/fd 3
  3406. // it does not hold — here by giving the Popen child DEVNULL streams and
  3407. // letting close_fds drop fd 3. The leader then writes `done` and exits, its
  3408. // `close` fires because the pipes drained, and settle() runs while that
  3409. // descendant is still alive. settle() then keeps a REF'd poll alive until the
  3410. // grace-window SIGKILL has emptied the whole process group, so the host cannot
  3411. // exit and reparent the survivor to init: no subprocess outlives the fiber.
  3412. //
  3413. // The descendant must have SIG_IGN installed BEFORE the host sends SIGTERM,
  3414. // or it dies from the default SIGTERM whether the fix is present or not — so
  3415. // it writes a readiness marker after trapping and the leader waits for that
  3416. // marker before returning. While alive it bumps a heartbeat file every 50 ms;
  3417. // the test asserts the heartbeat STOPS, which is what "no longer executing"
  3418. // means whether the killed descendant is reaped or lingers as a zombie (a
  3419. // SIGKILL'd process runs no more code either way). It sleeps 30 s as a safety
  3420. // net so a broken fix cannot leak it forever.
  3421. const handoff = await mkdtemp(join(tmpdir(), 'dsh-samegroup-'))
  3422. const readyMarker = join(handoff, 'ready')
  3423. const heartbeat = join(handoff, 'heartbeat')
  3424. const { runtime } = await setup({ maxWallMs: 10_000, graceMs: 300 })
  3425. const result = await runtime.run({
  3426. program: [
  3427. 'import subprocess, sys, os, time',
  3428. `marker = ${JSON.stringify(readyMarker)}`,
  3429. `heartbeat = ${JSON.stringify(heartbeat)}`,
  3430. // Same group (no start_new_session); ignores SIGTERM; holds none of the
  3431. // leader's pipes (DEVNULL std streams, close_fds drops fd 3). It writes
  3432. // the marker (argv[1]) only AFTER the trap is installed — so the leader
  3433. // cannot return, and the host cannot send SIGTERM, before it is ignored —
  3434. // then rewrites the heartbeat (argv[2]) every 50 ms for up to 30 s.
  3435. 'code = ("import signal, sys, time\\n"',
  3436. ' "signal.signal(signal.SIGTERM, signal.SIG_IGN)\\n"',
  3437. ' "open(sys.argv[1], \'w\').close()\\n"',
  3438. ' "end = time.time() + 30\\n"',
  3439. ' "while time.time() < end:\\n"',
  3440. ' " open(sys.argv[2], \'w\').close()\\n"',
  3441. ' " time.sleep(0.05)\\n")',
  3442. 'child = subprocess.Popen([sys.executable, "-c", code, marker, heartbeat],',
  3443. ' stdin=subprocess.DEVNULL,',
  3444. ' stdout=subprocess.DEVNULL,',
  3445. ' stderr=subprocess.DEVNULL)',
  3446. 'deadline = time.time() + 5',
  3447. 'while not os.path.exists(marker) and time.time() < deadline:',
  3448. ' time.sleep(0.02)',
  3449. 'return "spawned"',
  3450. ].join('\n'),
  3451. bindings: [],
  3452. })
  3453. expect(result.error).toBeUndefined()
  3454. expect(result.value).toBe('spawned')
  3455. // The trap really installed before the leader returned, so this is the
  3456. // SIGTERM-ignoring descendant, not one that would have died to the default.
  3457. expect(existsSync(readyMarker)).toBe(true)
  3458. // The grace-window SIGKILL (graceMs 300 + reap margin) empties the group. Once
  3459. // it has, the descendant stops bumping the heartbeat. Poll the heartbeat's
  3460. // mtime: two consecutive reads far enough apart with no change means it is no
  3461. // longer executing — true whether it was reaped or lingers as a zombie, so
  3462. // the assertion holds in a container whose init does not wait() orphans. The
  3463. // window (well under the 30 s self-timeout) proves the SIGKILL did the work.
  3464. const mtime = (): number => { try { return statSync(heartbeat).mtimeMs } catch { return 0 } }
  3465. const stopDeadline = Date.now() + 8_000
  3466. let last = mtime()
  3467. let still = false
  3468. while (Date.now() < stopDeadline) {
  3469. await new Promise(resolve => setTimeout(resolve, 400))
  3470. const now = mtime()
  3471. if (now === last && now !== 0) { still = true; break }
  3472. last = now
  3473. }
  3474. expect(still).toBe(true)
  3475. }, 20_000)
  3476. it('dispose awaits reaping of a same-group survivor from a completed run', async () => {
  3477. // The quiescence contract also holds for a run that ALREADY resolved: the run
  3478. // stays tracked in `live` until its process group is reaped, so a `dispose()`
  3479. // that races a just-returned run() still awaits the survivor rather than
  3480. // snapshotting an empty `live` and returning while it lives. Here the run
  3481. // completes (leaving a SIGTERM-ignoring same-group descendant), then dispose()
  3482. // is called; the heartbeat must be stale BY THE TIME dispose() resolves —
  3483. // proving teardown waited for the reap, not merely that the reap eventually
  3484. // happened.
  3485. const handoff = await mkdtemp(join(tmpdir(), 'dsh-dispose-quiesce-'))
  3486. const readyMarker = join(handoff, 'ready')
  3487. const heartbeat = join(handoff, 'heartbeat')
  3488. const { runtime, fiber } = await setup({ maxWallMs: 10_000, graceMs: 300 })
  3489. const result = await runtime.run({
  3490. program: [
  3491. 'import subprocess, sys, os, time',
  3492. `marker = ${JSON.stringify(readyMarker)}`,
  3493. `heartbeat = ${JSON.stringify(heartbeat)}`,
  3494. 'code = ("import signal, sys, time\\n"',
  3495. ' "signal.signal(signal.SIGTERM, signal.SIG_IGN)\\n"',
  3496. ' "open(sys.argv[1], \'w\').close()\\n"',
  3497. ' "end = time.time() + 30\\n"',
  3498. ' "while time.time() < end:\\n"',
  3499. ' " open(sys.argv[2], \'w\').close()\\n"',
  3500. ' " time.sleep(0.05)\\n")',
  3501. 'child = subprocess.Popen([sys.executable, "-c", code, marker, heartbeat],',
  3502. ' stdin=subprocess.DEVNULL,',
  3503. ' stdout=subprocess.DEVNULL,',
  3504. ' stderr=subprocess.DEVNULL)',
  3505. 'deadline = time.time() + 5',
  3506. 'while not os.path.exists(marker) and time.time() < deadline:',
  3507. ' time.sleep(0.02)',
  3508. 'return "spawned"',
  3509. ].join('\n'),
  3510. bindings: [],
  3511. })
  3512. expect(result.error).toBeUndefined()
  3513. expect(existsSync(readyMarker)).toBe(true)
  3514. // dispose() must not return until the group is reaped. After it resolves, the
  3515. // heartbeat must already be stale: read its mtime, wait past the heartbeat
  3516. // interval, and confirm it did not advance — the descendant is no longer
  3517. // executing (reaped or zombie), so teardown was genuinely quiescent.
  3518. await fiber.dispose()
  3519. const mtime = (): number => { try { return statSync(heartbeat).mtimeMs } catch { return 0 } }
  3520. const afterDispose = mtime()
  3521. // Pin the assertion to a heartbeat that actually ran: mtime() returns 0 when
  3522. // the file never existed, so without this the `toBe` below would pass
  3523. // vacuously (0 === 0) if the survivor never wrote a heartbeat at all.
  3524. expect(afterDispose).toBeGreaterThan(0)
  3525. await new Promise(resolve => setTimeout(resolve, 500))
  3526. expect(mtime()).toBe(afterDispose)
  3527. }, 20_000)
  3528. it('sends SIGKILL at the poll deadline when the event loop was blocked past both timers', async () => {
  3529. // If the host event loop is blocked (a big synchronous computation) from
  3530. // before the group-reap poll was scheduled until after the deadline, both the
  3531. // poll timer and the grace-window SIGKILL timer are overdue when the loop
  3532. // resumes. Node runs the earlier-scheduled poll first, so the SIGKILL timer
  3533. // may not have fired yet. The deadline arm must then send SIGKILL ITSELF
  3534. // rather than cancel the unfired escalation — otherwise a SIGTERM-ignoring
  3535. // same-group survivor is released for good. A synchronous busy-loop after
  3536. // run() resolves reproduces the block deterministically.
  3537. const handoff = await mkdtemp(join(tmpdir(), 'dsh-deadline-'))
  3538. const readyMarker = join(handoff, 'ready')
  3539. const heartbeat = join(handoff, 'heartbeat')
  3540. const graceMs = 300
  3541. const { runtime } = await setup({ maxWallMs: 10_000, graceMs })
  3542. const result = await runtime.run({
  3543. program: [
  3544. 'import subprocess, sys, os, time',
  3545. `marker = ${JSON.stringify(readyMarker)}`,
  3546. `heartbeat = ${JSON.stringify(heartbeat)}`,
  3547. 'code = ("import signal, sys, time\\n"',
  3548. ' "signal.signal(signal.SIGTERM, signal.SIG_IGN)\\n"',
  3549. ' "open(sys.argv[1], \'w\').close()\\n"',
  3550. ' "end = time.time() + 30\\n"',
  3551. ' "while time.time() < end:\\n"',
  3552. ' " open(sys.argv[2], \'w\').close()\\n"',
  3553. ' " time.sleep(0.05)\\n")',
  3554. 'child = subprocess.Popen([sys.executable, "-c", code, marker, heartbeat],',
  3555. ' stdin=subprocess.DEVNULL,',
  3556. ' stdout=subprocess.DEVNULL,',
  3557. ' stderr=subprocess.DEVNULL)',
  3558. 'deadline = time.time() + 5',
  3559. 'while not os.path.exists(marker) and time.time() < deadline:',
  3560. ' time.sleep(0.02)',
  3561. 'return "spawned"',
  3562. ].join('\n'),
  3563. bindings: [],
  3564. })
  3565. expect(result.error).toBeUndefined()
  3566. expect(existsSync(readyMarker)).toBe(true)
  3567. // Block the event loop synchronously past graceMs + CLOSE_REAP_MARGIN_MS
  3568. // (2000) with margin, so both timers are overdue when the loop resumes.
  3569. const blockUntil = Date.now() + graceMs + 2_000 + 800
  3570. while (Date.now() < blockUntil) { /* busy-wait, no yield */ }
  3571. // Yield: the overdue poll runs (group still non-empty, deadline passed) and
  3572. // must send SIGKILL itself. The survivor then stops bumping the heartbeat.
  3573. const mtime = (): number => { try { return statSync(heartbeat).mtimeMs } catch { return 0 } }
  3574. const stopDeadline = Date.now() + 5_000
  3575. let last = mtime()
  3576. let stopped = false
  3577. while (Date.now() < stopDeadline) {
  3578. await new Promise(resolve => setTimeout(resolve, 400))
  3579. const now = mtime()
  3580. if (now === last && now !== 0) { stopped = true; break }
  3581. last = now
  3582. }
  3583. expect(stopped).toBe(true)
  3584. }, 20_000)
  3585. })
  3586. describe('PythonCodeRuntime — hostile peer', () => {
  3587. it('drops garbage bytes and unknown-shape frames posted directly to fd 3', async () => {
  3588. // The model program can reach fd 3 and write anything. We inject a
  3589. // non-JSON line, a valid JSON but unknown-shape frame, and a broken done
  3590. // frame; the host must not crash, and the real `done` still settles the run.
  3591. const { runtime } = await setup()
  3592. const result = await runtime.run({
  3593. program: [
  3594. 'import os',
  3595. 'os.write(3, b"not-json\\n")',
  3596. 'os.write(3, b\'{"type":"unknown"}\\n\')',
  3597. 'os.write(3, b\'{"type":"done","error":{"message":42}}\\n\')',
  3598. 'return "survived"',
  3599. ].join('\n'),
  3600. bindings: [],
  3601. })
  3602. expect(result.error).toBeUndefined()
  3603. expect(result.value).toBe('survived')
  3604. })
  3605. it('answers a forged call frame for an unknown binding and never crashes', async () => {
  3606. // The unknown-binding reply path, driven through the id the host expects:
  3607. // the program lets its own first call claim id 0 and forges id 1, which the
  3608. // host answers with the `unknown binding` rejection the honest call would
  3609. // have received. A forged id out of sequence is dropped instead — that is
  3610. // the id-bound test below, not this one.
  3611. const { runtime } = await setup({ maxWallMs: 8_000 })
  3612. let seenLegitCall = false
  3613. const result = await runtime.run({
  3614. program: [
  3615. 'import os, json',
  3616. 'x = await tools.echo({"ping": True})',
  3617. 'os.write(3, json.dumps({"type":"call","id":1,"global":"tools","name":"forged","args":{}}).encode() + b"\\n")',
  3618. // The forged frame is answered, but nothing in the child awaits id 1, so
  3619. // the reply is ignored and the run completes on its own value.
  3620. 'return x',
  3621. ].join('\n'),
  3622. bindings: tools({
  3623. echo: async (args) => { seenLegitCall = true; return args as CodeJsonValue },
  3624. }),
  3625. })
  3626. expect(result.error).toBeUndefined()
  3627. expect(result.value).toEqual({ ping: true })
  3628. expect(seenLegitCall).toBe(true)
  3629. }, 15_000)
  3630. it('caps the unknown-binding preview for a huge forged name', async () => {
  3631. // The unknown-binding reply's JSON.stringify ran on the WHOLE capped
  3632. // target, allocating the escaped form — up to ~6x under control-heavy
  3633. // input. The preview is now built from a 1 KiB prefix, so a forged call
  3634. // with a huge global/name cannot spike host memory near the value ceiling;
  3635. // the reply still identifies the binding.
  3636. const { runtime } = await setup({ maxWallMs: 8_000, maxValueBytes: 1024 * 1024 })
  3637. const result = await runtime.run({
  3638. program: [
  3639. 'import os, json',
  3640. 'x = await tools.echo({"ping": True})',
  3641. 'name = "n" * 100000',
  3642. 'os.write(3, json.dumps({"type":"call","id":1,"global":"tools","name":name,"args":{}}).encode() + b"\\n")',
  3643. 'return x',
  3644. ].join('\n'),
  3645. bindings: tools({
  3646. echo: async args => args as CodeJsonValue,
  3647. }),
  3648. })
  3649. expect(result.error).toBeUndefined()
  3650. expect(result.value).toEqual({ ping: true })
  3651. }, 15_000)
  3652. it('drops forged call frames whose ids are not the next in sequence, retaining no per-id state', async () => {
  3653. // The host used to remember every answered id in a Set, so a program could
  3654. // write an unbounded run of unique forged ids — each frame far below the
  3655. // 64 MiB cap, so nothing rejected them — and grow host memory for the
  3656. // whole run. Ids are consecutive from 0, so one counter replaces the set.
  3657. //
  3658. // The discriminator is that the forgeries must not be answered. Each names a
  3659. // binding that does exist, so a host answering them would run `echo` once
  3660. // per forgery; the count proves only the legitimate call was dispatched.
  3661. // Ids also run DESCENDING, so a high-water-mark test would drop the honest
  3662. // call that follows rather than the forgeries.
  3663. const { runtime } = await setup()
  3664. let echoCalls = 0
  3665. const result = await runtime.run({
  3666. program: [
  3667. 'import os, json',
  3668. 'for i in range(2000, 0, -1):',
  3669. ' os.write(3, json.dumps({"type":"call","id":i,"global":"tools","name":"echo","args":{"forged":i}}).encode() + b"\\n")',
  3670. 'x = await tools.echo({"ping": True})',
  3671. 'return x',
  3672. ].join('\n'),
  3673. bindings: tools({
  3674. echo: async (args) => { echoCalls += 1; return args as CodeJsonValue },
  3675. }),
  3676. })
  3677. expect(result.error).toBeUndefined()
  3678. expect(result.value).toEqual({ ping: true })
  3679. expect(echoCalls).toBe(1)
  3680. }, 15_000)
  3681. it('keeps answering calls a program makes after one with unserializable arguments', async () => {
  3682. // The child claims an id only once its write succeeds, so a call rejected
  3683. // child-side for non-lossless arguments leaves no gap. Were a gap possible,
  3684. // the host's exact-successor test would drop every later call and the run
  3685. // would hang to the wall ceiling instead of completing.
  3686. const { runtime } = await setup({ maxWallMs: 8_000 })
  3687. const seen: unknown[] = []
  3688. const result = await runtime.run({
  3689. program: [
  3690. 'caught = ""',
  3691. 'try:',
  3692. ' await tools.echo({"bad": float("inf")})',
  3693. 'except RuntimeError as e:',
  3694. ' caught = str(e)',
  3695. 'after = await tools.echo({"ok": True})',
  3696. 'return {"caught": caught, "after": after}',
  3697. ].join('\n'),
  3698. bindings: tools({
  3699. echo: async (args) => { seen.push(args); return args as CodeJsonValue },
  3700. }),
  3701. })
  3702. expect(result.error).toBeUndefined()
  3703. const value = result.value as { caught: string; after: unknown }
  3704. expect(value.caught).toContain('lossless JSON')
  3705. expect(value.after).toEqual({ ok: true })
  3706. // The rejected call never reached the host; the one after it did.
  3707. expect(seen).toEqual([{ ok: true }])
  3708. }, 15_000)
  3709. it('drops a forged frame carrying an integer outside JavaScript safe range', async () => {
  3710. // JSON.parse would silently round 9007199254740993 to ...992 BEFORE any
  3711. // validation, corrupting a dispatched argument or completion. The host
  3712. // scans the raw line and drops such frames as hostile traffic; the honest
  3713. // child cannot produce one (its validator rejects unsafe ints).
  3714. const { runtime } = await setup()
  3715. let dispatched: unknown
  3716. const result = await runtime.run({
  3717. program: [
  3718. 'import os',
  3719. // Forged call frame with an unsafe int argument, then a forged done
  3720. // frame with an unsafe int value — both must be dropped whole.
  3721. 'os.write(3, b\'{"type":"call","id":7,"global":"tools","name":"echo","args":9007199254740993}\\n\')',
  3722. 'os.write(3, b\'{"type":"done","value":9007199254740993}\\n\')',
  3723. 'x = await tools.echo({"ok": True})',
  3724. 'return x',
  3725. ].join('\n'),
  3726. bindings: tools({
  3727. echo: async (args) => { dispatched = args; return args as CodeJsonValue },
  3728. }),
  3729. })
  3730. expect(result.error).toBeUndefined()
  3731. // The forged done did not settle the run; the legit call and completion did.
  3732. expect(result.value).toEqual({ ok: true })
  3733. expect(dispatched).toEqual({ ok: true })
  3734. })
  3735. it('truncates host-side logs once the budget is exhausted and emits the marker', async () => {
  3736. // Set a tiny host-side budget; the Python side has a much larger one, so
  3737. // its LogBuffer will not truncate — the host ledger fires first.
  3738. const { runtime } = await setup({ maxLogBytes: 128 })
  3739. const result = await runtime.run({
  3740. program: [
  3741. 'for _ in range(50):',
  3742. ' print("aaaaaaaaaa")',
  3743. 'return "done"',
  3744. ].join('\n'),
  3745. bindings: [],
  3746. })
  3747. expect(result.error).toBeUndefined()
  3748. const markers = result.logs.filter(line => line.includes('log capture truncated at 128 bytes'))
  3749. expect(markers.length).toBeGreaterThanOrEqual(1)
  3750. })
  3751. it('reports an exception whose message holds an unpaired surrogate instead of stranding to the wall clock', async () => {
  3752. // A strict UTF-8 encode of "\ud800" throws while BUILDING the failure
  3753. // frame; the run would then hang to maxWallMs and misreport as timeout.
  3754. const { runtime } = await setup({ maxWallMs: 8_000 })
  3755. const result = await runtime.run({
  3756. program: String.raw`raise Exception("bad \ud800 surrogate")`,
  3757. bindings: [],
  3758. })
  3759. expect(result.error?.kind).toBe('exception')
  3760. expect(result.error?.message).toContain('bad')
  3761. expect(result.error?.message).toContain('surrogate')
  3762. })
  3763. it('carries a lone-surrogate completion string across the wire as its JSON escape', async () => {
  3764. // UTF-8 has no encoding for a lone surrogate, but JSON does: the ASCII
  3765. // `\ud800` escape, which JSON.parse reads back as the same UTF-16 code
  3766. // unit. `CodeJsonValue`, `snapshotJsonValue`, and the worker backend all
  3767. // accept such a string, so this backend must not narrow the shared seam.
  3768. const { runtime } = await setup()
  3769. const result = await runtime.run({
  3770. program: String.raw`return {"lone": "a\ud800b", "spelled": "😀"}`,
  3771. bindings: [],
  3772. })
  3773. expect(result.error).toBeUndefined()
  3774. // The lone half survives as the code unit itself; a spelled-out high-low
  3775. // PAIR folds into the astral character the host would hold for it.
  3776. expect(result.value).toEqual({ lone: 'a\ud800b', spelled: '\u{1f600}' })
  3777. })
  3778. it('meters a lone surrogate at its six escaped bytes, matching the host', async () => {
  3779. // The child and the host share maxValueBytes, so the child must charge the
  3780. // escape's six ASCII bytes (plus two quotes): eight fits, nine does not.
  3781. const { runtime } = await setup({ maxValueBytes: 8 })
  3782. const ok = await runtime.run({ program: String.raw`return "\ud800"`, bindings: [] })
  3783. expect(ok.error).toBeUndefined()
  3784. expect(ok.value).toBe('\ud800')
  3785. const over = await setup({ maxValueBytes: 7 })
  3786. const result = await over.runtime.run({ program: String.raw`return "\ud800"`, bindings: [] })
  3787. expect(result.error?.kind).toBe('output-limit')
  3788. })
  3789. it('meters a surrogate-dense completion by counting, not by materializing a match list', async () => {
  3790. // `_json_str_cost` counted lone surrogates with `_SURROGATE.findall`,
  3791. // which materializes one single-character string PER surrogate: a
  3792. // surrogate-dense value near the budget (each surrogate serializes to six
  3793. // bytes, so a budget-sized value holds millions of them) would allocate
  3794. // millions of objects before the meter returned — an O(N)-objects spike
  3795. // that defeats the meter's documented contract of counting without
  3796. // building. The count is now a length difference over the removal `sub`
  3797. // already performs. Three million lone surrogates pin the boundary at
  3798. // scale: 18,000,002 serialized bytes succeed at an 18,000,002 budget and
  3799. // report output-limit one byte under, proving the meter counts every
  3800. // surrogate exactly rather than dropping or over-charging any.
  3801. const { runtime } = await setup({ maxValueBytes: 18_000_002 })
  3802. const ok = await runtime.run({ program: 'return "\\ud800" * 3000000', bindings: [] })
  3803. expect(ok.error).toBeUndefined()
  3804. expect(ok.value).toBe('\ud800'.repeat(3_000_000))
  3805. const over = await setup({ maxValueBytes: 18_000_001 })
  3806. const result = await over.runtime.run({ program: 'return "\\ud800" * 3000000', bindings: [] })
  3807. expect(result.error?.kind).toBe('output-limit')
  3808. }, 60_000)
  3809. it('passes a lone-surrogate binding argument through instead of failing the call', async () => {
  3810. // The argument validator shared the same over-narrow rejection; a host
  3811. // binding must receive the code unit the program passed.
  3812. const seen: unknown[] = []
  3813. const { runtime } = await setup()
  3814. const result = await runtime.run({
  3815. program: String.raw`return await tools.echo({"text": "x\udfff"})`,
  3816. bindings: tools({ echo: async (args: unknown) => { seen.push(args); return args as CodeJsonValue } }),
  3817. })
  3818. expect(result.error).toBeUndefined()
  3819. expect(seen).toEqual([{ text: 'x\udfff' }])
  3820. expect(result.value).toEqual({ text: 'x\udfff' })
  3821. })
  3822. it('meters a non-ASCII completion in UTF-8 JSON bytes, matching the host', async () => {
  3823. // json.dumps' default \uXXXX escaping would count "é" as 8 bytes while
  3824. // the host meter counts its UTF-8 JSON form (4); the shared budget must
  3825. // agree, so a 4-byte-fitting value passes a maxValueBytes of 4.
  3826. const { runtime } = await setup({ maxValueBytes: 4 })
  3827. const ok = await runtime.run({ program: 'return "é"', bindings: [] })
  3828. expect(ok.error).toBeUndefined()
  3829. expect(ok.value).toBe('é')
  3830. const over = await runtime.run({ program: 'return "éx"', bindings: [] })
  3831. expect(over.error?.kind).toBe('output-limit')
  3832. })
  3833. it('filters bootstrap frames from exception-group members (TaskGroup)', async () => {
  3834. // Python 3.11+ stores member stacks under TracebackException.exceptions;
  3835. // the <model>-frame filter must recurse into them too.
  3836. const { runtime } = await setup()
  3837. const result = await runtime.run({
  3838. program: [
  3839. 'import asyncio, sys',
  3840. 'if sys.version_info < (3, 11):',
  3841. ' raise ValueError("skip-old <model>")',
  3842. 'async def boom():',
  3843. ' raise ValueError("group-member")',
  3844. 'async with asyncio.TaskGroup() as tg:',
  3845. ' tg.create_task(boom())',
  3846. ].join('\n'),
  3847. bindings: [],
  3848. })
  3849. expect(result.error?.kind).toBe('exception')
  3850. expect(result.error?.message).toContain('<model>')
  3851. expect(result.error?.message).not.toContain('bootstrap.py')
  3852. })
  3853. it('keeps frames intact when a model thread floods logs while a large frame drains', async () => {
  3854. // os.write releases the GIL and a frame beyond PIPE_BUF is not atomic:
  3855. // without the writer lock + full-write loop, the printing thread could
  3856. // interleave bytes mid-frame and the host would drop the malformed JSON,
  3857. // hanging the run to the wall clock (or losing the completion).
  3858. const { runtime } = await setup({ maxValueBytes: 1024 * 1024, maxLogBytes: 4 * 1024 * 1024, maxWallMs: 15_000 })
  3859. const result = await runtime.run({
  3860. program: [
  3861. 'import threading',
  3862. 'stop = False',
  3863. 'def spam():',
  3864. ' while not stop:',
  3865. ' print("spam-line-" + "y" * 100)',
  3866. 't = threading.Thread(target=spam)',
  3867. 't.start()',
  3868. // A ~300 KiB completion — several PIPE_BUF units — while spam runs.
  3869. 'big = "x" * (300 * 1024)',
  3870. 'stop = True',
  3871. 't.join()',
  3872. 'return big',
  3873. ].join('\n'),
  3874. bindings: [],
  3875. })
  3876. expect(result.error).toBeUndefined()
  3877. expect(result.value).toBe('x'.repeat(300 * 1024))
  3878. }, 20_000)
  3879. it('settles cleanly while a daemon thread keeps writing unterminated log text', async () => {
  3880. // WARNING regression: the settlement `flush_out()/flush_err()` on the main
  3881. // coroutine read and clear `_LogStream._pending` and the shared LogBuffer
  3882. // ledger with NO lock, while a model daemon thread's `print`/`write` mutate
  3883. // the same state. Capturing the bound method (`out_stream.flush_line`) only
  3884. // fixes WHICH callable runs, not what it reads mid-flight: the flush could
  3885. // interleave with a concurrent write and join a `_pending` list being
  3886. // mutated under it, corrupting the ledger and costing the `done` frame — the
  3887. // run would then strand to the wall clock instead of completing. The shared
  3888. // re-entrant lock serializes them.
  3889. //
  3890. // A pure data race has no single bad input to reject deterministically, so
  3891. // this maximizes overlap: daemon threads emit UNTERMINATED writes (which
  3892. // pile into `_pending` rather than flushing per line) right up to the moment
  3893. // the body returns and settlement flushes. Repeated so the interleave lands.
  3894. for (let attempt = 0; attempt < 5; attempt++) {
  3895. const { runtime, fiber } = await setup({ maxLogBytes: 4 * 1024 * 1024, maxWallMs: 15_000 })
  3896. const result = await runtime.run({
  3897. program: [
  3898. 'import sys, threading',
  3899. 'stop = False',
  3900. 'def spam():',
  3901. ' while not stop:',
  3902. // No newline: the text accumulates in the stream's `_pending`, which is
  3903. // exactly the state the settlement flush also touches.
  3904. ' sys.stdout.write("tail-fragment-" + "z" * 64)',
  3905. 'workers = [threading.Thread(target=spam, daemon=True) for _ in range(4)]',
  3906. 'for t in workers: t.start()',
  3907. // Let the daemons build up pending writes, then return so settlement
  3908. // flushes while they are still mid-write.
  3909. 'import time; time.sleep(0.05)',
  3910. 'return "settled"',
  3911. ].join('\n'),
  3912. bindings: [],
  3913. })
  3914. expect(result.error).toBeUndefined()
  3915. expect(result.value).toBe('settled')
  3916. await fiber.dispose()
  3917. }
  3918. }, 30_000)
  3919. it('completes a binding called from a worker thread on its own event loop', async () => {
  3920. // A binding reply Future is created on the loop that ran `dispatch`. When the
  3921. // model calls a binding from a worker THREAD via `asyncio.run(tools.x(...))`,
  3922. // that Future belongs to the thread's loop, not the main loop where
  3923. // `_pump_replies` reads the reply. `asyncio.Future` is not thread-safe:
  3924. // completing it from another thread does not wake its own loop, so a direct
  3925. // `set_result` would strand the awaiting thread and the run would degrade to a
  3926. // wall-clock timeout. The pump must schedule completion on the Future's own
  3927. // loop via `call_soon_threadsafe`. The tight maxWallMs makes the pre-fix
  3928. // failure a fast timeout rather than a hang.
  3929. //
  3930. // The main coroutine yields with `await asyncio.sleep` while the worker runs,
  3931. // rather than a synchronous `t.join()`: joining would block the main thread,
  3932. // so the main loop could not run `_pump_replies` and the call would deadlock
  3933. // regardless of the fix — that blocks the pump, not the cross-loop delivery
  3934. // this test pins.
  3935. const { runtime } = await setup({ maxWallMs: 8_000 })
  3936. const seen: unknown[] = []
  3937. const result = await runtime.run({
  3938. program: [
  3939. 'import asyncio, threading',
  3940. 'result = {}',
  3941. 'def worker():',
  3942. // A fresh loop in this thread; the binding Future is created here.
  3943. ' result["value"] = asyncio.run(tools.echo({"from": "thread"}))',
  3944. 't = threading.Thread(target=worker)',
  3945. 't.start()',
  3946. 'while t.is_alive():',
  3947. ' await asyncio.sleep(0.02)',
  3948. 'return result["value"]',
  3949. ].join('\n'),
  3950. bindings: tools({
  3951. echo: async (args) => { seen.push(args); return args as CodeJsonValue },
  3952. }),
  3953. })
  3954. expect(result.error).toBeUndefined()
  3955. expect(result.value).toEqual({ from: 'thread' })
  3956. // The host binding actually ran (the reply round-tripped), not a timeout.
  3957. expect(seen).toEqual([{ from: 'thread' }])
  3958. }, 15_000)
  3959. it('keeps the reply pump alive when a late reply targets a closed thread loop', async () => {
  3960. // A binding called from a worker thread that ABANDONS the call (its
  3961. // `asyncio.run` is cancelled) leaves the pending entry holding that thread's
  3962. // loop, which `asyncio.run` closes on return. When the host later answers
  3963. // that call, `_pump_replies` schedules the completion onto the closed loop —
  3964. // `call_soon_threadsafe` raises `RuntimeError('Event loop is closed')`.
  3965. // Unguarded, that RuntimeError ends the pump task and strands every later
  3966. // reply; the guard drops the moot reply and keeps the pump serving.
  3967. //
  3968. // The ordering is a STRUCTURAL guarantee, not a timing window: the worker
  3969. // closes its loop before the main coroutine signals `closed`; the host
  3970. // answers the abandoned `slow` call (hitting the closed loop) before it
  3971. // answers `release`, because `release`'s handler only resolves `slow` first
  3972. // and then yields a microtask. So the pump provably meets the closed loop on
  3973. // `slow`'s reply before it must deliver `release`'s. Fail-before: the pump
  3974. // dies on `slow`, `release`'s reply is never read, and `await tools.release`
  3975. // hangs to the (small) maxWallMs as a timeout.
  3976. let releaseSlow!: () => void
  3977. const slowGate = new Promise<void>((resolve) => { releaseSlow = resolve })
  3978. const { runtime } = await setup({ maxWallMs: 6_000 })
  3979. const result = await runtime.run({
  3980. program: [
  3981. 'import asyncio, threading',
  3982. 'closed = threading.Event()',
  3983. 'def worker():',
  3984. ' async def body():',
  3985. // Abandon the call: wait_for cancels it, but the pending host-side entry
  3986. // survives (dispatch does not pop on cancellation), holding this loop.
  3987. ' try:',
  3988. ' await asyncio.wait_for(tools.slow({}), timeout=0.1)',
  3989. ' except asyncio.TimeoutError:',
  3990. ' pass',
  3991. ' asyncio.run(body())', // closes the thread's loop on return
  3992. ' closed.set()',
  3993. 't = threading.Thread(target=worker)',
  3994. 't.start()',
  3995. 'while not closed.is_set():',
  3996. ' await asyncio.sleep(0.02)',
  3997. // The loop is closed. Now the host answers slow (dead-loop reply) then
  3998. // release; the pump must survive the first to deliver the second.
  3999. 'after = await tools.release({})',
  4000. 'return after',
  4001. ].join('\n'),
  4002. bindings: tools({
  4003. slow: async () => {
  4004. // Answer only once the worker has closed its loop AND the main
  4005. // coroutine is awaiting release, so this reply reaches the pump against
  4006. // the closed loop.
  4007. await slowGate
  4008. return 'late'
  4009. },
  4010. release: async () => {
  4011. // Let slow's reply be written first, then yield a microtask so the
  4012. // pump processes the dead-loop reply before release's own reply lands.
  4013. releaseSlow()
  4014. await new Promise(resolve => setImmediate(resolve))
  4015. return 'released'
  4016. },
  4017. }),
  4018. })
  4019. expect(result.error).toBeUndefined()
  4020. // The pump survived the closed-loop reply and delivered the later binding.
  4021. expect(result.value).toBe('released')
  4022. }, 15_000)
  4023. it('keeps the reply pump alive when RuntimeError is rebound before the program runs', async () => {
  4024. // `_pump_replies` catches a closed-loop scheduling failure with `except
  4025. // _RuntimeError`. If that name were bound as a pump BODY local, it would be
  4026. // captured at pump-start — but `_run` reaches the model's top-level
  4027. // statements (which run before the pump's first step, since there is no
  4028. // suspension point between `create_task` and `await __dsh_main__`) with the
  4029. // rebind already applied, so `_RuntimeError` would capture the REBOUND class
  4030. // and the closed-loop `RuntimeError` would escape, killing the pump. Binding
  4031. // it as a DEF-TIME default argument captures the original before any model
  4032. // code runs. This rebinds `__main__.RuntimeError` as the very first program
  4033. // statement and drives the closed-loop worker pattern: the pump must survive
  4034. // the dead-loop reply and deliver the later binding.
  4035. let releaseSlow!: () => void
  4036. const slowGate = new Promise<void>((resolve) => { releaseSlow = resolve })
  4037. const { runtime } = await setup({ maxWallMs: 6_000 })
  4038. const result = await runtime.run({
  4039. program: [
  4040. 'import __main__',
  4041. '__main__.RuntimeError = ValueError',
  4042. 'import asyncio, threading',
  4043. 'closed = threading.Event()',
  4044. 'def worker():',
  4045. ' async def body():',
  4046. ' try:',
  4047. ' await asyncio.wait_for(tools.slow({}), timeout=0.1)',
  4048. ' except asyncio.TimeoutError:',
  4049. ' pass',
  4050. ' asyncio.run(body())',
  4051. ' closed.set()',
  4052. 't = threading.Thread(target=worker)',
  4053. 't.start()',
  4054. 'while not closed.is_set():',
  4055. ' await asyncio.sleep(0.02)',
  4056. 'after = await tools.release({})',
  4057. 'return after',
  4058. ].join('\n'),
  4059. bindings: tools({
  4060. slow: async () => { await slowGate; return 'late' },
  4061. release: async () => { releaseSlow(); await new Promise(resolve => setImmediate(resolve)); return 'released' },
  4062. }),
  4063. })
  4064. expect(result.error).toBeUndefined()
  4065. expect(result.value).toBe('released')
  4066. }, 15_000)
  4067. it('keeps a successful completion when _done_with_value is rebound', async () => {
  4068. // `_run` calls `_done_with_value(value, max_value_bytes)` after the program
  4069. // returns. The name is a module global, and this bootstrap IS `__main__`, so
  4070. // `__main__._done_with_value = boom` as a program statement would otherwise
  4071. // be resolved at call time and a legitimate success would be rewritten into
  4072. // an `exception`. `_run` now binds `done_with_value_bound = _done_with_value`
  4073. // before the program runs, so the entry name is immune; the run must still
  4074. // report the success value.
  4075. const { runtime } = await setup({ maxWallMs: 10_000 })
  4076. const result = await runtime.run({
  4077. program: [
  4078. 'import __main__',
  4079. 'def boom(*a, **k):',
  4080. ' raise RuntimeError("hijacked")',
  4081. '__main__._done_with_value = boom',
  4082. 'return 1',
  4083. ].join('\n'),
  4084. bindings: [],
  4085. })
  4086. expect(result.error).toBeUndefined()
  4087. expect(result.value).toBe(1)
  4088. }, 15_000)
  4089. it('round-trips an exactly representable large integer through a binding echo', async () => {
  4090. // The reply serializer must print BigInt digits for a beyond-safe
  4091. // integral double: String(2**60) emits a rounded form, and the child
  4092. // would receive a DIFFERENT integer than the binding resolved.
  4093. const { runtime } = await setup()
  4094. const result = await runtime.run({
  4095. program: [
  4096. 'v = await tools.echo(2**60)',
  4097. 'return v == 2**60',
  4098. ].join('\n'),
  4099. bindings: tools({ echo: async args => args as never }),
  4100. })
  4101. expect(result.error).toBeUndefined()
  4102. expect(result.value).toBe(true)
  4103. })
  4104. it('preserves an exactly representable large integer and rejects a rounding one', async () => {
  4105. // The canonical boundary accepts every JS-double-exact value: 2**53 and
  4106. // 2**60 round-trip exactly and must cross (matching the worker backend);
  4107. // 2**53+1 rounds and must fail as invalid-output.
  4108. const { runtime } = await setup()
  4109. const exact = await runtime.run({ program: 'return [2**53, 2**60]', bindings: [] })
  4110. expect(exact.error).toBeUndefined()
  4111. expect(exact.value).toEqual([2 ** 53, 2 ** 60])
  4112. const lossy = await runtime.run({ program: 'return 2**53 + 1', bindings: [] })
  4113. expect(lossy.error?.kind).toBe('invalid-output')
  4114. expect(lossy.error?.message).toContain('not exactly representable')
  4115. })
  4116. it('rejects a container subclass whose overridden methods hide its contents', async () => {
  4117. // A dict subclass returning [] from items() passes an isinstance check but
  4118. // serializes as {}, so the host would receive a value the program did not
  4119. // compute. Exact-type matching fails it as invalid-output instead. The
  4120. // worker backend rejects the prototype-equivalent shapes the same way.
  4121. const { runtime } = await setup()
  4122. const hidden = await runtime.run({
  4123. program: [
  4124. 'class Sneaky(dict):',
  4125. ' def items(self): return []',
  4126. ' def keys(self): return []',
  4127. ' def __iter__(self): return iter([])',
  4128. ' def __len__(self): return 0',
  4129. 'return Sneaky(secret="kept")',
  4130. ].join('\n'),
  4131. bindings: [],
  4132. })
  4133. expect(hidden.error?.kind).toBe('invalid-output')
  4134. expect(hidden.error?.message).toContain('unsupported type (Sneaky)')
  4135. // A list subclass is refused on the same rule.
  4136. const listish = await runtime.run({
  4137. program: ['class L(list):', ' def __iter__(self): return iter([])', 'return L([1, 2, 3])'].join('\n'),
  4138. bindings: [],
  4139. })
  4140. expect(listish.error?.kind).toBe('invalid-output')
  4141. expect(listish.error?.message).toContain('unsupported type (L)')
  4142. // The exact built-in containers still cross unchanged.
  4143. const plain = await runtime.run({ program: 'return {"secret": [1, 2]}', bindings: [] })
  4144. expect(plain.error).toBeUndefined()
  4145. expect(plain.value).toEqual({ secret: [1, 2] })
  4146. })
  4147. it('rejects a scalar subclass whose overrides disagree with what gets serialized', async () => {
  4148. // The validators checked scalars with isinstance, so a subclass passed
  4149. // every check by its real value while the ENCODER read an override — the
  4150. // host then received a value the walk never approved. Each case below is a
  4151. // distinct override reaching a distinct reader.
  4152. const { runtime } = await setup()
  4153. // _dump_float spells a float from repr(value), so an overridden __repr__
  4154. // decides the digits: F(2.5) serialized as 1.
  4155. const floated = await runtime.run({
  4156. program: [
  4157. 'class F(float):',
  4158. ' def __repr__(self): return "1.0"',
  4159. 'return F(2.5)',
  4160. ].join('\n'),
  4161. bindings: [],
  4162. })
  4163. expect(floated.error?.kind).toBe('invalid-output')
  4164. expect(floated.error?.message).toContain('unsupported type (F)')
  4165. // The JS-safe-range bound is two comparisons, so overriding them admits an
  4166. // int whose true digits (json.dumps reads the C-level value) the host's
  4167. // JSON.parse rounds: 9007199254740993 arrives as ...992.
  4168. const inted = await runtime.run({
  4169. program: [
  4170. 'class I(int):',
  4171. ' def __gt__(self, other): return False',
  4172. ' def __lt__(self, other): return False',
  4173. 'return I(2 ** 53 + 1)',
  4174. ].join('\n'),
  4175. bindings: [],
  4176. })
  4177. expect(inted.error?.kind).toBe('invalid-output')
  4178. expect(inted.error?.message).toContain('unsupported type (I)')
  4179. // The pre-encode size bound reads len(), so overriding it to 0 admits a
  4180. // string of any length past maxValueBytes.
  4181. const stringed = await runtime.run({
  4182. program: [
  4183. 'class S(str):',
  4184. ' def __len__(self): return 0',
  4185. 'return S("Q" * 100000)',
  4186. ].join('\n'),
  4187. bindings: [],
  4188. })
  4189. expect(stringed.error?.kind).toBe('invalid-output')
  4190. expect(stringed.error?.message).toContain('unsupported type (S)')
  4191. // A str-subclass dict KEY reaches the same len() bound.
  4192. const keyed = await runtime.run({
  4193. program: [
  4194. 'class S(str):',
  4195. ' def __len__(self): return 0',
  4196. 'return {S("Q" * 100000): 1}',
  4197. ].join('\n'),
  4198. bindings: [],
  4199. })
  4200. expect(keyed.error?.kind).toBe('invalid-output')
  4201. expect(keyed.error?.message).toContain('non-string dict key (S)')
  4202. // bool is an int subclass that IS lossless JSON, and the exact scalars all
  4203. // still cross unchanged.
  4204. const plain = await runtime.run({
  4205. program: 'return {"t": True, "f": False, "n": None, "i": 7, "d": 2.5, "s": "ok"}',
  4206. bindings: [],
  4207. })
  4208. expect(plain.error).toBeUndefined()
  4209. expect(plain.value).toEqual({ t: true, f: false, n: null, i: 7, d: 2.5, s: 'ok' })
  4210. })
  4211. it('rejects a scalar subclass passed as a binding argument', async () => {
  4212. // The uncapped binding-argument validator shares the exact-type rule, so
  4213. // the call fails through its rejection contract instead of dispatching a
  4214. // float whose digits come from an override.
  4215. const { runtime } = await setup()
  4216. const seen: CodeJsonValue[] = []
  4217. const result = await runtime.run({
  4218. program: [
  4219. 'class F(float):',
  4220. ' def __repr__(self): return "1.0"',
  4221. 'try:',
  4222. ' await tools.echo({"v": F(2.5)})',
  4223. 'except Exception as exc:',
  4224. ' return str(exc)',
  4225. ].join('\n'),
  4226. bindings: tools({ echo: async (args) => {
  4227. seen.push(args as CodeJsonValue)
  4228. return null
  4229. } }),
  4230. })
  4231. expect(result.error).toBeUndefined()
  4232. expect(result.value).toContain('unsupported type (F)')
  4233. expect(seen).toEqual([])
  4234. })
  4235. it('rejects a container subclass passed as a binding argument', async () => {
  4236. // Binding arguments run the uncapped validator, which must apply the same
  4237. // exact-type rule: the call fails descriptively instead of dispatching a
  4238. // value whose serialization disagrees with what was validated.
  4239. const { runtime } = await setup()
  4240. const seen: CodeJsonValue[] = []
  4241. const result = await runtime.run({
  4242. program: [
  4243. 'class Sneaky(dict):',
  4244. ' def items(self): return []',
  4245. 'try:',
  4246. ' await tools.echo(Sneaky(secret="kept"))',
  4247. 'except Exception as exc:',
  4248. ' return str(exc)',
  4249. ].join('\n'),
  4250. bindings: tools({ echo: async (args) => {
  4251. seen.push(args as CodeJsonValue)
  4252. return null
  4253. } }),
  4254. })
  4255. expect(result.error).toBeUndefined()
  4256. expect(result.value).toContain('unsupported type (Sneaky)')
  4257. expect(seen).toEqual([])
  4258. })
  4259. it('fails an oversized completion as output-limit without materializing its encoding', async () => {
  4260. // A 100 MiB string under maxValueBytes: 1024 must fail as output-limit.
  4261. // The address-space cap leaves room for the program to BUILD the string
  4262. // (one copy + interpreter) but not for the old full pre-check encode,
  4263. // which materialized chunk fragments plus the joined copy (~2 more
  4264. // copies) and died on RLIMIT_AS as MemoryError/worker-exit.
  4265. const { runtime } = await setup({ maxValueBytes: 1024, addressSpaceMb: 384, maxWallMs: 15_000 })
  4266. const result = await runtime.run({
  4267. program: 'return "x" * (100 * 1024 * 1024)',
  4268. bindings: [],
  4269. })
  4270. expect(result.error?.kind).toBe('output-limit')
  4271. expect(result.error?.message).toContain('exceeded 1024 bytes')
  4272. }, 20_000)
  4273. it('rejects a control-heavy oversized completion on its length, not its escaped copy', async () => {
  4274. // Every "\x00" escapes to the six bytes "\u0000", so the escaped form of a
  4275. // 40 MB string is ~240 MB. The walk must refuse on the cheap
  4276. // `len(current) + 2` lower bound; the 384 MiB address space holds the raw
  4277. // string but not its escaped expansion, so a pre-escape check dies on
  4278. // RLIMIT_AS instead of returning output-limit.
  4279. const { runtime } = await setup({ maxValueBytes: 1024, addressSpaceMb: 384, maxWallMs: 15_000 })
  4280. const result = await runtime.run({
  4281. program: 'return "\\x00" * (40 * 1024 * 1024)',
  4282. bindings: [],
  4283. })
  4284. expect(result.error?.kind).toBe('output-limit')
  4285. expect(result.error?.message).toContain('exceeded 1024 bytes')
  4286. }, 20_000)
  4287. it('truncates a single print far above maxLogBytes instead of dying on the encode', async () => {
  4288. // LogBuffer must reject via the cheap char-count lower bound BEFORE
  4289. // UTF-8-encoding the whole string: the full encode of a ~100 MB line
  4290. // would double the allocation and can breach RLIMIT_AS. 256 MiB
  4291. // address space comfortably holds one copy of the 100 MB string but
  4292. // not the pre-fix double allocation plus interpreter overhead spikes.
  4293. const { runtime } = await setup({ maxLogBytes: 1024, addressSpaceMb: 256, maxWallMs: 15_000 })
  4294. const result = await runtime.run({
  4295. program: [
  4296. 'print("x" * (100 * 1024 * 1024))',
  4297. 'return "done"',
  4298. ].join('\n'),
  4299. bindings: [],
  4300. })
  4301. expect(result.error).toBeUndefined()
  4302. expect(result.value).toBe('done')
  4303. expect(result.logs.some(line => line.includes('log capture truncated'))).toBe(true)
  4304. }, 20_000)
  4305. it('stops host capture at the child ledger truncation, keeping exactly one marker', async () => {
  4306. // The two ledgers exhaust independently. One child entry larger than
  4307. // `maxLogBytes` sends ONLY the marker, so the host budget is still nearly
  4308. // untouched — and the marker used to arrive as an ordinary `log` frame the
  4309. // host could not tell from program output. Text written afterwards was
  4310. // therefore retained AFTER the marker, contradicting the stop-after-
  4311. // truncation contract, and a later host-side exhaustion could append a
  4312. // second marker. The frame now carries `truncated: true`.
  4313. //
  4314. // `os.write(1, ...)` bypasses the child's own stream, so those bytes reach
  4315. // the host as stray stdout and take the host ledger path rather than the
  4316. // child's — which is exactly the route that leaked past the marker.
  4317. const { runtime } = await setup({ maxLogBytes: 64, maxWallMs: 10_000 })
  4318. const result = await runtime.run({
  4319. program: [
  4320. 'import os',
  4321. 'print("y" * 70000)',
  4322. 'os.write(1, b"AFTER")',
  4323. 'return "done"',
  4324. ].join('\n'),
  4325. bindings: [],
  4326. })
  4327. expect(result.error).toBeUndefined()
  4328. expect(result.value).toBe('done')
  4329. const markers = result.logs.filter(line => line.includes('log capture truncated'))
  4330. expect(markers).toHaveLength(1)
  4331. // The marker is the LAST entry: nothing was retained after truncation.
  4332. expect(result.logs.at(-1)).toBe(markers[0])
  4333. expect(result.logs.join('\n')).not.toContain('AFTER')
  4334. }, 20_000)
  4335. it('keeps one marker when a program forges repeated truncation frames', async () => {
  4336. // `truncated` is attacker-reachable: the program owns fd 3 and can write the
  4337. // flag itself, so the field is a hostile input rather than a trusted signal.
  4338. // Repeats must collapse to the single marker the contract promises, and only
  4339. // the literal `true` counts — a forged `"yes"` is rebuilt away by
  4340. // validateChildFrame, so that frame stays ordinary text.
  4341. const { runtime } = await setup({ maxLogBytes: 4096, maxWallMs: 10_000 })
  4342. const result = await runtime.run({
  4343. program: [
  4344. 'import os, json',
  4345. 'os.write(3, json.dumps({"type":"log","text":"first","truncated":"yes"}).encode() + b"\\n")',
  4346. 'os.write(3, json.dumps({"type":"log","text":"MARK-A","truncated":True}).encode() + b"\\n")',
  4347. 'os.write(3, json.dumps({"type":"log","text":"MARK-B","truncated":True}).encode() + b"\\n")',
  4348. 'return "done"',
  4349. ].join('\n'),
  4350. bindings: [],
  4351. })
  4352. expect(result.error).toBeUndefined()
  4353. expect(result.value).toBe('done')
  4354. // The non-boolean flag did not truncate, so its text was captured normally.
  4355. expect(result.logs).toContain('first')
  4356. // The first genuine flag stopped capture and emitted the HOST's own marker;
  4357. // the frame's own text is discarded, so neither payload appears.
  4358. expect(result.logs).not.toContain('MARK-A')
  4359. expect(result.logs).not.toContain('MARK-B')
  4360. expect(result.logs.at(-1)).toBe(logTruncationMarker(4096))
  4361. expect(result.logs.filter(line => line.includes('log capture truncated'))).toHaveLength(1)
  4362. }, 20_000)
  4363. it('discards the text of a forged truncation frame instead of retaining it', async () => {
  4364. // The marker branch bypasses `admit`, so retaining the frame's own text put
  4365. // attacker-controlled bytes into `logs` with no cap at all: measured, a 1 MiB
  4366. // forged text was retained whole under `maxLogBytes: 64`, and the only bound
  4367. // left was the 64 MiB frame parse cap. The host emits its own marker instead,
  4368. // so the retained size is fixed regardless of what the program sent.
  4369. const forgedBytes = 1024 * 1024
  4370. const { runtime } = await setup({ maxLogBytes: 64, maxWallMs: 20_000 })
  4371. const result = await runtime.run({
  4372. program: [
  4373. 'import os, json',
  4374. `big = "A" * ${forgedBytes}`,
  4375. 'os.write(3, json.dumps({"type":"log","truncated":True,"text":big}).encode() + b"\\n")',
  4376. 'return "done"',
  4377. ].join('\n'),
  4378. bindings: [],
  4379. })
  4380. expect(result.error).toBeUndefined()
  4381. expect(result.value).toBe('done')
  4382. // Only the host marker is kept, so the total stays orders of magnitude below
  4383. // what the forgery carried — and below the cap it was trying to escape.
  4384. expect(result.logs).toEqual([logTruncationMarker(64)])
  4385. expect(result.logs.join('').length).toBeLessThan(forgedBytes / 1000)
  4386. }, 30_000)
  4387. it('coalesces unframed fd-3 fragments without recopying the sealed prefix', async () => {
  4388. // The frame ceiling meters payload BYTES, but each retained chunk is its own
  4389. // Buffer with object and backing-store overhead the byte count cannot see:
  4390. // 5000 single-byte newline-free writes produced 5000 chunks holding 5031
  4391. // bytes, so a program pacing such writes could accumulate millions of objects
  4392. // inside the wall budget and exhaust the host heap far below 256 MiB.
  4393. //
  4394. // The observable behavior is that the run still completes normally: the
  4395. // fragments are coalesced rather than rejected, since a slow trickle of bytes
  4396. // is not itself a protocol violation.
  4397. //
  4398. // `Buffer.concat` is wrapped for the duration so the cumulative copy volume
  4399. // is measured rather than inferred: that total is what separates sealing into
  4400. // blocks from re-merging the whole buffer, and both shapes pass every
  4401. // behavioral assertion below.
  4402. //
  4403. // The trickle is terminated with its own newline before the real frame is
  4404. // written. Without that, those 5000 bytes prefix the frame on the SAME line,
  4405. // which then parses as junk and is dropped — correct framing behavior, but it
  4406. // would leave this test asserting the wrong thing.
  4407. // Bound at capture: `Buffer.concat` is a static method, and taking a bare
  4408. // reference to one trips no-unbound-method.
  4409. const realConcat = Buffer.concat.bind(Buffer)
  4410. let copied = 0
  4411. Buffer.concat = (list: readonly Uint8Array[], total?: number): Buffer<ArrayBuffer> => {
  4412. for (const part of list) copied += part.length
  4413. return realConcat(list, total)
  4414. }
  4415. const program = [
  4416. 'import os',
  4417. // Newline-free single-byte writes, spaced so each lands as its own read.
  4418. // 60000 rather than 5000: the trickle has to cross the seal threshold
  4419. // enough times for the two shapes to separate. At 5000 writes there are
  4420. // only four seals, so even the quadratic form copies well under a
  4421. // megabyte and the budget below could not tell them apart.
  4422. 'for _ in range(60000):',
  4423. ' os.write(3, b"x")',
  4424. ' os.sched_yield()',
  4425. 'os.write(3, b"\\n")',
  4426. // A real frame after the trickle proves framing still works on the
  4427. // coalesced residual.
  4428. 'print("after-trickle")',
  4429. 'return "done"',
  4430. ].join('\n')
  4431. let result: CodeRunResult
  4432. try {
  4433. const { runtime } = await setup({ maxWallMs: 30_000 })
  4434. result = await runtime.run({ program, bindings: [] })
  4435. } finally {
  4436. Buffer.concat = realConcat
  4437. }
  4438. expect(result.error).toBeUndefined()
  4439. expect(result.value).toBe('done')
  4440. expect(result.logs).toContain('after-trickle')
  4441. // Sealing appends a finished block rather than re-merging everything held, so
  4442. // each byte is copied once. Re-concatenating the whole buffer at every
  4443. // threshold made the cumulative copy volume quadratic — 10 MiB trickled a
  4444. // byte at a time copies 53.7 GB that way. A per-byte-copied budget is the
  4445. // discriminator, and it is measured rather than reasoned about: this shape
  4446. // copies about 119 KB for 60000 trickled bytes, the re-merging shape about
  4447. // 540 KB. 256 KiB sits between them with margin on both sides — most writes
  4448. // are coalesced by the pipe before they reach us, so the observed ratio is
  4449. // smaller than the asymptotic one, and the threshold has to sit where a real
  4450. // measurement lands rather than where the asymptote suggests.
  4451. expect(copied).toBeLessThan(256 * 1024)
  4452. }, 40_000)
  4453. it('seals trickled stray fragments into blocks without recopying the sealed prefix', async () => {
  4454. // The stray-capture buffer has the same object-overhead exposure as the fd-3
  4455. // reader above: each newline-free `data` chunk is its own Buffer, so a
  4456. // program pacing single-byte `os.write(1, ...)` accumulates one object per
  4457. // write, which the serialized-cost counter cannot see. Past MAX_PENDING_CHUNKS
  4458. // the fragments seal into a finished block; re-merging the whole residual at
  4459. // each threshold instead would copy the sealed prefix again and again, making
  4460. // the cumulative copy volume quadratic. `Buffer.concat` is wrapped to measure
  4461. // that volume — both shapes admit the same final log entry, so the copy total
  4462. // is the discriminator. maxLogBytes is raised so the trickle is retained,
  4463. // not truncated, which is what forces the fragments to accumulate and seal.
  4464. const realConcat = Buffer.concat.bind(Buffer)
  4465. let copied = 0
  4466. Buffer.concat = (list: readonly Uint8Array[], total?: number): Buffer<ArrayBuffer> => {
  4467. for (const part of list) copied += part.length
  4468. return realConcat(list, total)
  4469. }
  4470. let result: CodeRunResult
  4471. try {
  4472. const { runtime } = await setup({ maxLogBytes: 200_000, maxWallMs: 30_000 })
  4473. result = await runtime.run({
  4474. program: [
  4475. 'import os',
  4476. 'for _ in range(60000):',
  4477. ' os.write(1, b"x")',
  4478. ' os.sched_yield()',
  4479. 'os.write(1, b"\\n")',
  4480. 'return "done"',
  4481. ].join('\n'),
  4482. bindings: [],
  4483. })
  4484. } finally {
  4485. Buffer.concat = realConcat
  4486. }
  4487. expect(result.error).toBeUndefined()
  4488. expect(result.value).toBe('done')
  4489. // The trickle coalesces into one log line (no interior newlines). Its exact
  4490. // length depends on pipe coalescing, but it is one entry and non-empty.
  4491. expect(result.logs.length).toBe(1)
  4492. expect((result.logs[0] as string).length).toBeGreaterThan(0)
  4493. // Sealing appends a finished block rather than re-merging everything held, so
  4494. // each byte is copied a bounded number of times. Re-merging the whole
  4495. // residual at every seal threshold instead makes the cumulative copy volume
  4496. // quadratic. Measured like the fd-3 sibling above rather than reasoned about:
  4497. // this sealed shape copies about 120 KB for 60000 trickled bytes, the
  4498. // re-merging shape about 538 KB (the stray path adds one whole-residual
  4499. // concat at the terminating newline over the fd-3 sibling's 119/540, landing
  4500. // at the same order). 256 KiB sits between them with margin on both sides, so
  4501. // reverting the seal to a re-merge turns this assertion red.
  4502. expect(copied).toBeLessThan(256 * 1024)
  4503. }, 40_000)
  4504. it('caps a huge exception diagnostic child-side before it crosses the wire', async () => {
  4505. // A program can raise with a multi-megabyte message; the child must cap
  4506. // it at maxValueBytes before formatting/sending, not ship the whole
  4507. // payload for the host to truncate after parsing.
  4508. const { runtime } = await setup({ maxValueBytes: 1024 })
  4509. const result = await runtime.run({
  4510. program: 'raise ValueError("boom-" + "x" * (8 * 1024 * 1024))',
  4511. bindings: [],
  4512. })
  4513. expect(result.error?.kind).toBe('exception')
  4514. expect(result.error?.message).toContain('boom-')
  4515. expect(result.error?.message.endsWith('… [truncated]')).toBe(true)
  4516. expect(Buffer.byteLength(result.error?.message ?? '', 'utf8')).toBeLessThan(2048)
  4517. })
  4518. it('caps a control-heavy exception diagnostic by its serialized cost, not raw bytes', async () => {
  4519. // The diagnostic crosses fd 3 inside a JSON frame where a control character
  4520. // escapes sixfold (a NUL is one raw byte, six as `\u0000`). Capping by raw
  4521. // UTF-8 length would let a NUL-heavy message near maxValueBytes serialize to
  4522. // ~6x that and breach the frame ceiling — the silent worker-exit inversion
  4523. // the load-time cap check exists to prevent. The child meters the diagnostic
  4524. // by its serialized cost, so a NUL flood is truncated to fit the frame and
  4525. // the run still reports the exception rather than a worker-exit.
  4526. const { runtime } = await setup({ maxValueBytes: 4096 })
  4527. const result = await runtime.run({
  4528. // 512 KiB of NUL: ~3 MiB once escaped, far past the 4 KiB cap.
  4529. program: 'raise ValueError("\\x00" * (512 * 1024))',
  4530. bindings: [],
  4531. })
  4532. expect(result.error?.kind).toBe('exception')
  4533. expect(result.error?.message.endsWith('… [truncated]')).toBe(true)
  4534. // The SERIALIZED form (what the frame carried) fits the budget, so its raw
  4535. // length is well under it too — a raw-byte cap would have admitted ~4 KiB of
  4536. // NULs that serialize to ~24 KiB.
  4537. const serialized = JSON.stringify(result.error?.message ?? '')
  4538. expect(Buffer.byteLength(serialized, 'utf8')).toBeLessThanOrEqual(4096 + 8)
  4539. })
  4540. it('bounds a newline-free partial-line flood while the program is still running', async () => {
  4541. // print("x", end="") never completes a line, so nothing reaches the
  4542. // Python LogBuffer until settlement — the buffered tail must still hit
  4543. // the budget mid-run instead of growing without bound to RLIMIT/timeout.
  4544. const { runtime } = await setup({ maxLogBytes: 1024, maxWallMs: 15_000 })
  4545. const result = await runtime.run({
  4546. program: [
  4547. 'for _ in range(100000):',
  4548. ' print("xxxxxxxxxx", end="")',
  4549. 'return "done"',
  4550. ].join('\n'),
  4551. bindings: [],
  4552. })
  4553. expect(result.error).toBeUndefined()
  4554. expect(result.value).toBe('done')
  4555. expect(result.logs.some(line => line.includes('log capture truncated'))).toBe(true)
  4556. // The retained text is bounded by the budget, not the 1 MB the program wrote.
  4557. expect(result.logs.join('\n').length).toBeLessThan(4096)
  4558. }, 20_000)
  4559. it('discards empty writes instead of buffering one list slot each', async () => {
  4560. // An empty chunk adds no character, so the mid-run budget check (which
  4561. // compares buffered CHARS against the remaining ledger) can never fire on
  4562. // it. Buffering empty strings therefore grew `_pending` without bound —
  4563. // millions of slots per CPU second — until RLIMIT_AS turned an append into
  4564. // a MemoryError, long after the log ledger was exhausted. Two million
  4565. // empty writes must instead settle normally and contribute NO log entry,
  4566. // proving the chunk was dropped rather than joined at flush_line.
  4567. const { runtime } = await setup({ maxLogBytes: 256, addressSpaceMb: 256, maxWallMs: 20_000 })
  4568. const result = await runtime.run({
  4569. program: [
  4570. 'import sys',
  4571. 'for _ in range(2000000):',
  4572. ' sys.stdout.write("")',
  4573. 'return "done"',
  4574. ].join('\n'),
  4575. bindings: [],
  4576. })
  4577. expect(result.error).toBeUndefined()
  4578. expect(result.value).toBe('done')
  4579. expect(result.logs).toEqual([])
  4580. }, 30_000)
  4581. it('stops scanning a single-write newline flood once the log ledger truncates', async () => {
  4582. // One write carrying half a million newlines: the offset scan must exit the
  4583. // instant LogBuffer truncates rather than re-slicing and pushing every
  4584. // remaining line. If it kept scanning it would exhaust the CPU/wall budget;
  4585. // the run instead settles quickly with exactly one truncation marker.
  4586. const { runtime } = await setup({ maxLogBytes: 256, maxWallMs: 10_000 })
  4587. const start = Date.now()
  4588. const result = await runtime.run({
  4589. program: ['print("x\\n" * 500000, end="")', 'return "done"'].join('\n'),
  4590. bindings: [],
  4591. })
  4592. expect(result.error).toBeUndefined()
  4593. expect(result.value).toBe('done')
  4594. expect(result.logs.filter(line => line.includes('log capture truncated'))).toHaveLength(1)
  4595. expect(Date.now() - start).toBeLessThan(8_000)
  4596. }, 15_000)
  4597. it('bounds an oversized newline-terminated write before joining and slicing it', async () => {
  4598. // The newline branch slices the first line out of the write before
  4599. // `LogBuffer.push` can apply its cheap budget rejection, so a single
  4600. // over-budget write cost a full extra copy of itself in peak address space —
  4601. // the amplification that bound exists to avoid, applied one layer too late.
  4602. // Measured under a 400 MiB addressSpaceMb with the slice unbounded: writes
  4603. // of 200 MiB and up died on MemoryError inside `sys.stdout.write`, reported
  4604. // as the PROGRAM's own exception rather than the promised truncation marker.
  4605. // `"\\n".rjust(n, "A")` is a single allocation ending in the newline, so the
  4606. // payload itself fits and the only remaining allocation is the stream's own
  4607. // slice; 340 MiB of a 400 MiB cap cannot survive one more copy of it.
  4608. const { runtime } = await setup({ maxLogBytes: 256, addressSpaceMb: 400, maxWallMs: 30_000 })
  4609. const result = await runtime.run({
  4610. program: [
  4611. 'import sys',
  4612. 'payload = "\\n".rjust(340 * 1024 * 1024, "A")',
  4613. 'sys.stdout.write(payload)',
  4614. 'return "done"',
  4615. ].join('\n'),
  4616. bindings: [],
  4617. })
  4618. expect(result.error).toBeUndefined()
  4619. expect(result.value).toBe('done')
  4620. expect(result.logs).toEqual([logTruncationMarker(256)])
  4621. }, 40_000)
  4622. it('bounds a newline-free write against the already-buffered chunks before joining them', async () => {
  4623. // The newline-free arm buffers the write and then compared the buffered
  4624. // CHARACTER COUNT against the ledger — correct — but paid for the comparison
  4625. // with `"".join(self._pending)`, a second full copy of everything held. One
  4626. // buffered character is enough to make that join a copy of the whole
  4627. // following write. Measured under a 400 MiB addressSpaceMb with a 340 MiB
  4628. // second write: the join raised MemoryError inside `sys.stdout.write`, and
  4629. // because the oversized chunks stayed in `_pending` the settlement
  4630. // `flush_line` raised it again — that throw sits after the `except
  4631. // BaseException` block, so it costs the `done` frame and the run came back
  4632. // `timeout: wall-clock ceiling reached (30000ms)` with no logs at all. The
  4633. // bound must be applied BEFORE the join and the chunks dropped on that path,
  4634. // so the run settles with the truncation marker it promises.
  4635. const { runtime } = await setup({ maxLogBytes: 256, addressSpaceMb: 400, maxWallMs: 30_000 })
  4636. const result = await runtime.run({
  4637. program: [
  4638. 'import sys',
  4639. // One unterminated character first, so `_pending` is non-empty and the
  4640. // large write cannot take the "buffered text IS the write" shortcut.
  4641. 'sys.stdout.write("x")',
  4642. 'payload = "A" * (340 * 1024 * 1024)',
  4643. 'sys.stdout.write(payload)',
  4644. 'return "done"',
  4645. ].join('\n'),
  4646. bindings: [],
  4647. })
  4648. expect(result.error).toBeUndefined()
  4649. expect(result.value).toBe('done')
  4650. expect(result.logs).toEqual([logTruncationMarker(256)])
  4651. }, 40_000)
  4652. it('bounds a newline-terminated write against the already-buffered chunks before joining them', async () => {
  4653. // Same allocation, reached through the newline arm: with chunks pending, the
  4654. // whole write used to be appended and joined so the offset scan could run
  4655. // over one string. Only the FIRST line needs those chunks, so a pending
  4656. // chunk plus a 340 MiB newline-terminated write under a 400 MiB
  4657. // addressSpaceMb died on MemoryError in the join before the per-line bound
  4658. // could reject anything, and the retained chunks made the settlement flush
  4659. // die the same way: measured, `timeout: wall-clock ceiling reached
  4660. // (30000ms)`. The reconstructed first line is now checked against the ledger
  4661. // and only a budget-sized prefix of it is copied; the rest of the write is
  4662. // scanned in place.
  4663. const { runtime } = await setup({ maxLogBytes: 256, addressSpaceMb: 400, maxWallMs: 30_000 })
  4664. const result = await runtime.run({
  4665. program: [
  4666. 'import sys',
  4667. 'sys.stdout.write("x")',
  4668. 'payload = "\\n".rjust(340 * 1024 * 1024, "A")',
  4669. 'sys.stdout.write(payload)',
  4670. 'return "done"',
  4671. ].join('\n'),
  4672. bindings: [],
  4673. })
  4674. expect(result.error).toBeUndefined()
  4675. expect(result.value).toBe('done')
  4676. expect(result.logs).toEqual([logTruncationMarker(256)])
  4677. }, 40_000)
  4678. it('emits pending text on an explicit flush, before the run can be killed', async () => {
  4679. // `_LogStream` inherits TextIOBase's no-op `flush()`, so an explicit
  4680. // `print(..., flush=True)` or `sys.stdout.flush()` left the text in
  4681. // `_pending` with nothing to drain it but `flush_line` after settlement — a
  4682. // call a hanging or killed run never reaches. Measured: printing
  4683. // "before hang" with flush=True ahead of an infinite loop returned
  4684. // `logs: []`, losing the one diagnostic the program deliberately committed.
  4685. const { runtime } = await setup({ maxWallMs: 4_000 })
  4686. const result = await runtime.run({
  4687. program: [
  4688. 'import sys',
  4689. 'print("before hang", end="", flush=True)',
  4690. 'while True: pass',
  4691. ].join('\n'),
  4692. bindings: [],
  4693. })
  4694. expect(result.error?.kind).toBe('timeout')
  4695. expect(result.logs).toContain('before hang')
  4696. }, 15_000)
  4697. it('marks a dropped tail when the ledger lands on exactly zero remaining', async () => {
  4698. // One 100-character line costs 103 serialized bytes (quotes + separator),
  4699. // consuming a 104-byte budget minus the 1-byte array-envelope reservation
  4700. // (104 - 1 = 103) EXACTLY. Landing on zero never trips
  4701. // LogBuffer's "cost > remaining" branch, so `_truncated` stays unset and the
  4702. // stream's own `remaining > 0` guard silently discarded the unscanned tail —
  4703. // the run reported a complete log while dropping text. The tail must be
  4704. // pushed so the marker is emitted. (This surfaced only after empty writes
  4705. // stopped being buffered: `print` issues a trailing `write("")` whose
  4706. // buffered-empty path used to force the marker out incidentally.) A single
  4707. // wide line is used rather than many narrow ones so the CHILD ledger is the
  4708. // one that lands on zero: the host's identical ledger truncates first when
  4709. // many small entries precede the long marker text. `["y"*100]` serializes to
  4710. // exactly 104 bytes (103 payload + 1 envelope), so 104 is the smallest
  4711. // budget that admits the entry.
  4712. const { runtime } = await setup({ maxLogBytes: 104, maxWallMs: 10_000 })
  4713. const result = await runtime.run({
  4714. program: ['print("y" * 100 + "\\n" + "z" * 10, end="")', 'return "done"'].join('\n'),
  4715. bindings: [],
  4716. })
  4717. expect(result.error).toBeUndefined()
  4718. expect(result.value).toBe('done')
  4719. expect(result.logs).toContain('y'.repeat(100))
  4720. expect(result.logs.filter(line => line.includes('log capture truncated'))).toHaveLength(1)
  4721. // The dropped tail is not retained, but its loss is now reported.
  4722. expect(result.logs.some(line => line.includes('z'))).toBe(false)
  4723. }, 15_000)
  4724. it('keeps an admitted log within the serialized array envelope at the exact limit', async () => {
  4725. // Each entry is charged its JSON-string cost plus one separator byte, and
  4726. // the serialized outer logs array adds one more byte of envelope (two
  4727. // brackets and n-1 commas). The ledgers reserve that byte, so a result that
  4728. // exactly exhausts the ledger still serializes within the configured cap.
  4729. // At the 64-byte floor (the smallest admissible maxLogBytes): ledger 63,
  4730. // a 60-character line serializes as `"aaa...a"` (62 bytes) + 1 separator
  4731. // = 63, exactly exhausting the ledger and serializing as `["aaa...a"]`
  4732. // = 64 = the cap; a 61-character line costs 64 > 63 and truncates. The
  4733. // marker rides envelope, so the serialized logs run to cap + marker.
  4734. const { runtime } = await setup({ maxLogBytes: 64, maxWallMs: 10_000 })
  4735. const result = await runtime.run({
  4736. program: ['print("a" * 60 + "\\n" + "b" * 61, end="")', 'return "done"'].join('\n'),
  4737. bindings: [],
  4738. })
  4739. expect(result.error).toBeUndefined()
  4740. expect(result.value).toBe('done')
  4741. // The 60-character line was admitted; the 61-character line was not (a
  4742. // single 'b' would also match the marker's "bytes", so check for the line).
  4743. expect(result.logs).toContain('a'.repeat(60))
  4744. expect(result.logs.some(line => line.includes('b'.repeat(61)))).toBe(false)
  4745. expect(result.logs.some(line => line.includes('log capture truncated'))).toBe(true)
  4746. }, 15_000)
  4747. it('rejects a log budget too small to serialize the truncation marker', async () => {
  4748. // A maxLogBytes below 64 cannot serialize the truncation marker itself;
  4749. // it is rejected at construction so a marker-only truncated run cannot
  4750. // report more than the public cap. maxValueBytes keeps no floor beyond the
  4751. // positive-integer requirement (a completion can be 1 byte).
  4752. await expect(setup({ maxLogBytes: 63, maxWallMs: 10_000 })).rejects.toThrow(/must be at least 64/)
  4753. }, 15_000)
  4754. it('charges the JSON-escaped cost of control characters against the log ledger', async () => {
  4755. // A NUL renders as \u0000 (6 bytes) in the serialized outer logs; the
  4756. // ledger must charge that expansion, or a control-character flood admits
  4757. // 6x the configured cap.
  4758. const { runtime } = await setup({ maxLogBytes: 256 })
  4759. const result = await runtime.run({
  4760. program: [
  4761. 'for _ in range(500):',
  4762. ' print("\\x00" * 10)',
  4763. 'return "done"',
  4764. ].join('\n'),
  4765. bindings: [],
  4766. })
  4767. expect(result.error).toBeUndefined()
  4768. expect(result.logs.some(line => line.includes('log capture truncated'))).toBe(true)
  4769. // Serialized (escaped) size of retained entries stays in the budget's
  4770. // neighborhood: well under the ~30 kB an uncharged flood would retain.
  4771. const serialized = Buffer.byteLength(JSON.stringify(result.logs), 'utf8')
  4772. expect(serialized).toBeLessThan(1024)
  4773. })
  4774. it('charges the serialized cost child-side, so a control-heavy line truncates instead of being admitted whole', async () => {
  4775. // The child's ledger must charge what the entry costs on the wire, not its
  4776. // raw UTF-8 length: a NUL is one raw byte but six as its escape. A 24 MiB NUL
  4777. // line clears the cheap char-count lower bound (24 MiB < 32 MiB budget), so
  4778. // charging raw bytes would ADMIT it and emit a ~144 MiB escaped entry;
  4779. // charging the serialized cost (~144 MiB > the 32 MiB budget) rejects it
  4780. // before any encode and emits the marker instead. The address space (512 MiB,
  4781. // clearing the 12x load gate for a 32 MiB budget) is sized so the run loads;
  4782. // the gate separately guarantees a correctly-charged near-budget entry fits.
  4783. const { runtime } = await setup({ maxLogBytes: 32 * 1024 * 1024, addressSpaceMb: 512, maxWallMs: 20_000 })
  4784. const result = await runtime.run({
  4785. program: [
  4786. 'print("\\x00" * (24 * 1024 * 1024))',
  4787. 'return "done"',
  4788. ].join('\n'),
  4789. bindings: [],
  4790. })
  4791. expect(result.error).toBeUndefined()
  4792. expect(result.value).toBe('done')
  4793. expect(result.logs.filter(line => line.includes('log capture truncated'))).toHaveLength(1)
  4794. // Nothing of the line itself was retained: the ledger refused the whole entry.
  4795. expect(result.logs.every(line => !line.includes(String.fromCharCode(0)))).toBe(true)
  4796. }, 30_000)
  4797. it('bounds a huge unterminated tail after an early newline without copying it whole', async () => {
  4798. // The newline branch of _LogStream.write buffered the whole unterminated
  4799. // tail after the last newline into `_pending` before the flush trigger could
  4800. // bound it, so an early newline followed by a huge tail made a second full
  4801. // copy of the model's own string — a MemoryError the config gate cannot
  4802. // catch (the tail far exceeds maxLogBytes). The tail is now sliced to a
  4803. // budget-sized prefix, so the run truncates and completes. Linux-only RLIMIT_AS
  4804. // repro (Darwin skips the limit); on macOS this asserts the happy path.
  4805. //
  4806. // Sizing: the model builds `tail` (N) then the `"\n" + tail` write argument
  4807. // (another ~N), so construction peaks at ~2N — kept under the 384 MiB address
  4808. // space at N = 150 MiB (~300 MiB). The pre-fix code then buffered the whole
  4809. // ~150 MiB tail again, pushing past 384 MiB; the sliced prefix does not.
  4810. const { runtime } = await setup({ maxLogBytes: 256, addressSpaceMb: 384, maxWallMs: 20_000 })
  4811. const result = await runtime.run({
  4812. program: [
  4813. 'import sys',
  4814. 'tail = "A" * (150 * 1024 * 1024)',
  4815. 'sys.stdout.write("\\n" + tail)',
  4816. 'return "done"',
  4817. ].join('\n'),
  4818. bindings: [],
  4819. })
  4820. expect(result.error).toBeUndefined()
  4821. expect(result.value).toBe('done')
  4822. expect(result.logs.some(line => line.includes('log capture truncated'))).toBe(true)
  4823. }, 30_000)
  4824. it('flushes logs before framing the value so their peaks do not add against RLIMIT_AS', async () => {
  4825. // The load gate bounds maxLogBytes and maxValueBytes INDEPENDENTLY against the
  4826. // address space, each at the 12x worst case. But the child framed the
  4827. // completion value (materializing its escaped form to meter it, then encoding
  4828. // the frame) while a newline-free log tail still sat unflushed in _pending.
  4829. // Those two peaks added: two budgets each admitted alone could together breach
  4830. // RLIMIT_AS, dying as worker-exit instead of settling. The flush now runs
  4831. // before the value is framed, so the log pending is freed first.
  4832. //
  4833. // Config: 32 MiB each against 512 MiB (each 32*12 = 384 MiB < 448 MiB
  4834. // budgetable, so both load). The program writes ~33M astral chars with no
  4835. // newline (buffered ~132 MB, under the char-count flush trigger) then returns
  4836. // ~33M astral chars — a ~132 MB serialized value that is itself OVER the 32 MiB
  4837. // maxValueBytes, so the correct outcome is `output-limit`. Pre-fix the
  4838. // unflushed 132 MB plus the value's build-and-encode (~396 MB) exceeded 512 MiB
  4839. // and OOM'd (reported as exception/worker-exit); flushing first lets the value
  4840. // check complete (~460 MB alone) and report output-limit. On Darwin (no
  4841. // RLIMIT_AS) the value is over budget too, so output-limit holds either way;
  4842. // the OOM the reorder prevents is the Linux-only failure.
  4843. const { runtime } = await setup({
  4844. maxLogBytes: 32 * 1024 * 1024,
  4845. maxValueBytes: 32 * 1024 * 1024,
  4846. addressSpaceMb: 512,
  4847. maxWallMs: 20_000,
  4848. })
  4849. const result = await runtime.run({
  4850. program: [
  4851. 'import sys',
  4852. 'sys.stdout.write("\\U0001F600" * 33_000_000)',
  4853. 'return "\\U0001F600" * 33_000_000',
  4854. ].join('\n'),
  4855. bindings: [],
  4856. })
  4857. expect(result.error?.kind).toBe('output-limit')
  4858. }, 30_000)
  4859. it('checks and encodes a wide completion value in O(depth), not O(width)', async () => {
  4860. // A wide flat list serializes to ~2 bytes per element but the pre-fix walk
  4861. // enqueued one traversal tuple per element (_check_done_value) and one stack
  4862. // entry plus a separator marker per element (_encode_json_plain) — ~56 bytes
  4863. // per element, ~28x the serialized size. A value the byte meter admits could
  4864. // therefore OOM on the checker's or encoder's own bookkeeping, the inversion
  4865. // the load gate exists to prevent (the gate reserves 12x, not 28x). Both now
  4866. // walk with an O(depth) cursor that pulls one child at a time, so the only
  4867. // width-proportional allocation is the output string the meter bounded.
  4868. //
  4869. // Config: maxValueBytes 20 MiB against 384 MiB (20*12 = 240 MiB < 320 MiB
  4870. // budgetable, so it loads). `[0] * 6_000_000` is ~12 MB of JSON, under the
  4871. // 20 MiB budget, so it must round-trip. Pre-fix the ~400 MB of per-element
  4872. // frames plus the interpreter exceeded 384 MiB and returned MemoryError as an
  4873. // exception. Linux-only RLIMIT_AS repro; on macOS the value round-trips
  4874. // either way, but the fixture stays within the address space so it is honest.
  4875. //
  4876. // `maxWallMs` is 60s, not the 20s the memory assertion alone needs: the O(depth)
  4877. // cursor pulls 6M elements one at a time through Python-level frames, which costs
  4878. // ~11s on an idle machine and more under the coverage lane's V8 instrumentation
  4879. // with several workers sharing a box. This budget bounds the run without letting a
  4880. // loaded runner's scheduling latency read as a `timeout` — what this test asserts
  4881. // is the O(depth) memory shape, not a speed claim.
  4882. const { runtime } = await setup({ maxValueBytes: 20 * 1024 * 1024, addressSpaceMb: 384, maxWallMs: 60_000 })
  4883. const result = await runtime.run({ program: 'return [0] * 6_000_000', bindings: [] })
  4884. expect(result.error).toBeUndefined()
  4885. expect(Array.isArray(result.value)).toBe(true)
  4886. expect((result.value as number[]).length).toBe(6_000_000)
  4887. }, 90_000)
  4888. it('validates wide binding arguments in O(depth), not O(width)', async () => {
  4889. // The completion-value walks are budgeted; this one is not. `dispatch` runs
  4890. // `_lossless_json_violation` on the arguments the MODEL built, and no
  4891. // child-side byte budget bounds them first: the frame ceiling is the host's
  4892. // and applies only after this validation returns. A per-member traversal
  4893. // frame therefore turned a legitimate call into the program's own
  4894. // MemoryError. Measured with tracemalloc on the two walk shapes over this
  4895. // exact argument (JSON ~17 MB): the cursor peaks at 0.0 MiB of auxiliary
  4896. // state, the pre-fix `stack.extend` at 459.1 MiB -- past the 384 MiB
  4897. // configured below, so the discriminating failure is real. It is Linux-only:
  4898. // Darwin skips RLIMIT_AS, so this case round-trips there either way.
  4899. //
  4900. // The binding echoes its argument's length back, so the assertion proves the
  4901. // call actually round-tripped rather than merely avoiding a crash.
  4902. const { runtime } = await setup({ addressSpaceMb: 384, maxWallMs: 60_000 })
  4903. const result = await runtime.run({
  4904. program: 'return await tools.width([0] * 6_000_000)',
  4905. bindings: [{
  4906. global: 'tools',
  4907. functions: { width: async (items: unknown) => (items as number[]).length },
  4908. }],
  4909. })
  4910. expect(result.error).toBeUndefined()
  4911. expect(result.value).toBe(6_000_000)
  4912. }, 90_000)
  4913. it('decodes a multi-megabyte binding reply without regex backtracking state', async () => {
  4914. // The child parses every host reply with `_decode_json_plain`. Its scalar
  4915. // regex matched strings with a `(?:[^"\\]|\\.)*` repetition, which makes
  4916. // CPython's backtracking engine retain state proportional to the string's
  4917. // WIDTH -- measured at ~146 MiB of engine state for a 1 MiB string and
  4918. // ~558 MiB for 4 MiB. A legitimate multi-megabyte reply therefore raised
  4919. // MemoryError inside `_pump_replies`; because that pump is the only settler
  4920. // of the call's future, the run stranded until the wall clock reported a
  4921. // `timeout` instead of returning the value the binding produced.
  4922. //
  4923. // Strings now scan chunk-to-chunk over a character class (no backtracking
  4924. // state). Measured on this exact 4 MiB reply: the pre-fix regex peaks at
  4925. // 557.8 MiB, past the default 512 MiB address space, while the scanner peaks
  4926. // at the 4.0 MiB result itself. Linux-only, like the other RLIMIT_AS repros:
  4927. // Darwin does not apply the limit, so the spike is merely allocated there.
  4928. const reply = 'A'.repeat(4 * 1024 * 1024)
  4929. const { runtime } = await setup({ maxWallMs: 60_000 })
  4930. const result = await runtime.run({
  4931. program: 'value = await tools.big({})\nreturn len(value)',
  4932. bindings: [{ global: 'tools', functions: { big: async () => reply } }],
  4933. })
  4934. expect(result.error).toBeUndefined()
  4935. expect(result.value).toBe(reply.length)
  4936. }, 90_000)
  4937. it('drops a late binding resolution before snapshotting it', async () => {
  4938. // `sendReply` checks `settled`, but only after the resolution has been walked
  4939. // and copied by `snapshotJsonValue`. Binding resolution carries no seam-level
  4940. // byte cap, so a binding that resolves a wide value AFTER the run already
  4941. // settled (here on `maxWallMs`) spent host heap building a frame that is then
  4942. // discarded. The check now runs before the snapshot.
  4943. //
  4944. // The binding resolves well after the 1s wall clock with a 2M-element array;
  4945. // the run must still report `timeout`, and the late value must not appear.
  4946. let resolvedLate = false
  4947. const { runtime } = await setup({ maxWallMs: 1_000 })
  4948. const result = await runtime.run({
  4949. program: 'return await tools.slow({})',
  4950. bindings: [{
  4951. global: 'tools',
  4952. functions: {
  4953. slow: async () => {
  4954. await new Promise(resolve => setTimeout(resolve, 2_500))
  4955. resolvedLate = true
  4956. return Array.from({ length: 2_000_000 }, () => 0)
  4957. },
  4958. },
  4959. }],
  4960. })
  4961. expect(result.error?.kind).toBe('timeout')
  4962. expect(result.value).toBeUndefined()
  4963. // Pin that the late path actually ran, so the assertion above is not vacuous.
  4964. await new Promise(resolve => setTimeout(resolve, 2_000))
  4965. expect(resolvedLate).toBe(true)
  4966. }, 90_000)
  4967. it('paces concurrent binding replies instead of queueing every frame at once', async () => {
  4968. // Binding resolution carries no seam-level byte cap. Before pacing, a program
  4969. // resolving several large values in one `asyncio.gather` round encoded them
  4970. // all in the same turn and queued every frame in fd 3's writable buffer,
  4971. // which exhausted the host heap and killed the whole process rather than
  4972. // failing the run. Replies are now encoded one at a time, waiting for
  4973. // `drain` when the pipe is full.
  4974. //
  4975. // Eight concurrent 4 MiB replies (32 MiB of frames) must all round-trip. The
  4976. // program sums the lengths, so the assertion proves every reply arrived and
  4977. // was matched to its own call -- pacing must not drop or misroute any. What
  4978. // this case cannot show is the peak itself, which lives in the stream's
  4979. // buffer: measured directly on a 64 KiB-highWaterMark pipe with this same
  4980. // 8x4 MiB shape, the unpaced writes buffered 32.0 MiB while the paced ones
  4981. // peaked at 0.0 MiB.
  4982. const chunk = 'A'.repeat(4 * 1024 * 1024)
  4983. const { runtime } = await setup({ maxWallMs: 60_000 })
  4984. const result = await runtime.run({
  4985. program: [
  4986. 'import asyncio',
  4987. 'parts = await asyncio.gather(*[tools.chunk({}) for _ in range(8)])',
  4988. 'return sum(len(p) for p in parts)',
  4989. ].join('\n'),
  4990. bindings: [{ global: 'tools', functions: { chunk: async () => chunk } }],
  4991. })
  4992. expect(result.error).toBeUndefined()
  4993. expect(result.value).toBe(8 * chunk.length)
  4994. }, 90_000)
  4995. it('drops queued binding replies when the child dies mid-drain, without hanging', async () => {
  4996. // drainReplies waits for `drain` when fd 3's buffer is full. If the child
  4997. // exits while a reply is queued, the pipe never emits `drain` again — the
  4998. // wait must also settle on `close`/`error`/destroyed, or `draining` stays
  4999. // true and the queue is pinned with the closure forever. The program fills
  5000. // the pipe with a wide binding reply and then exits without reading it, so
  5001. // the host is blocked mid-drain when the child dies; the run must still
  5002. // settle promptly (worker-exit from the close) rather than hanging on the
  5003. // drain wait.
  5004. const chunk = 'A'.repeat(4 * 1024 * 1024)
  5005. const { runtime } = await setup({ maxWallMs: 10_000 })
  5006. const result = await runtime.run({
  5007. program: [
  5008. 'import asyncio',
  5009. // Resolve a reply big enough to backpressure fd 3, then exit without
  5010. // reading it: the child's `close` lands while the host still waits for
  5011. // `drain`, exercising the destroyed-pipe branch of the reply drain.
  5012. 'pending = asyncio.create_task(tools.chunk({}))',
  5013. 'await asyncio.sleep(0.05)',
  5014. 'return "done"',
  5015. ].join('\n'),
  5016. bindings: [{ global: 'tools', functions: { chunk: async () => chunk } }],
  5017. })
  5018. // The program returned, so the completion wins over the mid-flight reply;
  5019. // whatever the result, the run must settle (no hang on the drain wait).
  5020. expect(result.error).toBeUndefined()
  5021. expect(result.value).toBe('done')
  5022. }, 30_000)
  5023. it('caps the pending reply backlog when a child floods calls without reading its replies', async () => {
  5024. // drainReplies writes one reply at a time and waits for `drain` when fd 3's
  5025. // buffer is full. A child that never reads its replies (it only writes
  5026. // call frames, never draining the reply side) leaves the pipe full, so
  5027. // every call frame it keeps sending resolves a binding and adds a reply the
  5028. // drain cannot write: without a bound, the backlog grows until the wall
  5029. // clock, pinning each binding result in host memory. The cap settles the
  5030. // run as worker-exit instead, mirroring the frame cap's treatment of an
  5031. // oversized frame. The child floods 5000 sequential valid calls and never
  5032. // reads fd 3 (its reply pump is starved by the synchronous write loop and
  5033. // the blocking sleep); the pipe buffer absorbs ~1600 tiny replies, so the
  5034. // pending backlog crosses MAX_PENDING_REPLIES long before maxWallMs, and
  5035. // the run must settle worker-exit with the reply-queue message, not a
  5036. // wall-clock timeout.
  5037. const { runtime } = await setup({ maxWallMs: 30_000 })
  5038. const result = await runtime.run({
  5039. program: [
  5040. 'import os, time',
  5041. 'frame = b\'{"type":"call","id":%d,"global":"tools","name":"echo","args":{}}\\n\'',
  5042. 'for i in range(5000):',
  5043. ' view = memoryview(frame % i)',
  5044. ' while view:',
  5045. ' view = view[os.write(3, view):]',
  5046. // Keep the child alive without reading fd 3: the run must settle via
  5047. // the reply-backlog cap, not by the child finishing or exiting.
  5048. 'time.sleep(30)',
  5049. 'return "unreachable"',
  5050. ].join('\n'),
  5051. bindings: [{ global: 'tools', functions: { echo: async (args: unknown) => args as CodeJsonValue } }],
  5052. })
  5053. expect(result.error?.kind).toBe('worker-exit')
  5054. expect(result.error?.message).toContain('reply queue exceeded')
  5055. }, 30_000)
  5056. it('caps the outstanding binding-call backlog when a child floods calls against a binding that never settles', async () => {
  5057. // The reply backlog cap only counts RESOLVED calls (`pendingReplies` grows
  5058. // after the await), so a child flooding calls against a binding whose
  5059. // promise never settles would accumulate one async closure per frame until
  5060. // the wall clock without tripping it. The outstanding-call counter bounds
  5061. // the in-flight closures to MAX_PENDING_REPLIES and settles the run as
  5062. // worker-exit, mirroring the reply cap. The binding below never resolves,
  5063. // so no reply is ever produced; the flood of 5000 sequential calls must
  5064. // cross the in-flight bound long before maxWallMs.
  5065. const { runtime } = await setup({ maxWallMs: 30_000 })
  5066. const result = await runtime.run({
  5067. program: [
  5068. 'import os, time',
  5069. 'frame = b\'{"type":"call","id":%d,"global":"tools","name":"hang","args":{}}\\n\'',
  5070. 'for i in range(5000):',
  5071. ' view = memoryview(frame % i)',
  5072. ' while view:',
  5073. ' view = view[os.write(3, view):]',
  5074. 'time.sleep(30)',
  5075. 'return "unreachable"',
  5076. ].join('\n'),
  5077. bindings: [{ global: 'tools', functions: { hang: async () => await new Promise<never>(() => {}) } }],
  5078. })
  5079. expect(result.error?.kind).toBe('worker-exit')
  5080. expect(result.error?.message).toContain('call backlog exceeded')
  5081. }, 30_000)
  5082. it('compacts the reply queue mid-drain without dropping pending frames', async () => {
  5083. // A reply larger than the writable high-water mark makes the FIRST write
  5084. // return false, suspending the drain loop while the child's synchronous
  5085. // flood starves the reply pump; the frames queued behind it push the
  5086. // drain's consumed head past MAX_PENDING_REPLIES, so the resumed drain
  5087. // compacts the queue mid-run. The child reads fd 3 itself (blocking the
  5088. // asyncio pump, so its reads cannot race the host's pushes) and sends a
  5089. // second wave of calls AFTER reading part of the first wave's replies —
  5090. // those replies are still pending when the drain's head crosses the
  5091. // compaction bound, so a compaction that dropped pending frames would
  5092. // leave the child's reply count short and the read loop spinning to the
  5093. // wall clock. The second wave is sent mid-delivery (not with the first
  5094. // flood): pushing it earlier would trip the 1024-pending reply cap
  5095. // before the drain resumed.
  5096. const { runtime } = await setup({ maxWallMs: 30_000 })
  5097. const result = await runtime.run({
  5098. program: [
  5099. 'import os, time',
  5100. 'frame = b\'{"type":"call","id":%d,"global":"tools","name":"big","args":{}}\\n\'',
  5101. 'for i in range(1024):',
  5102. ' view = memoryview(frame % i)',
  5103. ' while view:',
  5104. ' view = view[os.write(3, view):]',
  5105. 'time.sleep(0.5)',
  5106. 'total = b""',
  5107. 'while total.count(b"\\n") < 500:',
  5108. ' chunk = os.read(3, 65536)',
  5109. ' if not chunk:',
  5110. ' break',
  5111. ' total += chunk',
  5112. 'for i in range(500):',
  5113. ' view = memoryview(frame % (1024 + i))',
  5114. ' while view:',
  5115. ' view = view[os.write(3, view):]',
  5116. 'while total.count(b"\\n") < 1524:',
  5117. ' chunk = os.read(3, 65536)',
  5118. ' if not chunk:',
  5119. ' break',
  5120. ' total += chunk',
  5121. 'return "done"',
  5122. ].join('\n'),
  5123. bindings: [{ global: 'tools', functions: { big: async () => 'x'.repeat(65 * 1024) } }],
  5124. })
  5125. expect(result.error).toBeUndefined()
  5126. expect(result.value).toBe('done')
  5127. }, 30_000)
  5128. it('bounds a flood of zero-byte log lines through the per-entry separator charge', async () => {
  5129. // Blank print() lines carry zero content bytes; without the +1 separator
  5130. // charge they would bypass maxLogBytes entirely and grow the retained
  5131. // array without bound. Each empty entry costs one byte, so a 64-byte
  5132. // budget retains at most 64 entries before the marker.
  5133. const { runtime } = await setup({ maxLogBytes: 64, maxWallMs: 10_000 })
  5134. const result = await runtime.run({
  5135. program: [
  5136. 'for _ in range(10000):',
  5137. ' print()',
  5138. 'return "done"',
  5139. ].join('\n'),
  5140. bindings: [],
  5141. })
  5142. expect(result.error).toBeUndefined()
  5143. expect(result.logs.length).toBeLessThanOrEqual(65)
  5144. expect(result.logs.some(line => line.includes('log capture truncated'))).toBe(true)
  5145. })
  5146. it('reassembles multibyte UTF-8 split across stray-output pipe chunks', async () => {
  5147. // A single os.write far past the 64 KiB pipe buffer forces multiple
  5148. // 'data' chunks; when the boundary lands inside a multibyte sequence,
  5149. // per-chunk decoding would corrupt it into replacement characters. Raw bytes
  5150. // are buffered and only decoded once a complete line (or the whole tail at
  5151. // flush) is assembled, so the split sequence is whole by the time it is
  5152. // decoded. The payload spans every valid multibyte lead class so
  5153. // accrueStrayCost's per-lead continuation ranges are all exercised: U+0900
  5154. // (E0 A4 80, the range-restricted E0 lead), U+4F60 and U+597D (E4/E5, plain
  5155. // 3-byte), U+1F600 (F0, the range-restricted F0 lead), and U+10FFFF (F4 8F
  5156. // BF BF, the range-restricted F4 lead).
  5157. const { runtime } = await setup({ maxLogBytes: 1024 * 1024 })
  5158. const result = await runtime.run({
  5159. program: [
  5160. 'import os',
  5161. // os.write is one syscall and returns a partial count on a full
  5162. // pipe, so loop until the whole payload (odd prefix -> a chunk
  5163. // boundary lands inside a multibyte sequence) is out.
  5164. String.raw`payload = b"a" * 65535 + "\u0900\u4f60\u597d\U0001f600\U0010ffff".encode("utf-8")`,
  5165. 'view = memoryview(payload)',
  5166. 'while view:',
  5167. ' view = view[os.write(1, view):]',
  5168. 'return "done"',
  5169. ].join('\n'),
  5170. bindings: [],
  5171. })
  5172. expect(result.error).toBeUndefined()
  5173. const text = result.logs.join('')
  5174. expect(text).toContain('\u0900\u4f60\u597d\u{1f600}\u{10ffff}')
  5175. expect(text).not.toContain('\ufffd')
  5176. })
  5177. it('flushes a stray-output byte sequence left incomplete when the pipe ends', async () => {
  5178. // The child writes the first two bytes of a 3-byte UTF-8 character to fd 1
  5179. // and exits, so the pipe closes with the sequence unfinished in the raw
  5180. // residual. The 'end' flush decodes the residual with `toString('utf8')`,
  5181. // which renders the stranded bytes as U+FFFD instead of dropping them.
  5182. const { runtime } = await setup({ maxLogBytes: 1024 * 1024 })
  5183. const result = await runtime.run({
  5184. program: [
  5185. 'import os',
  5186. // b"\xe4\xbd" is the leading two bytes of U+4F60; no continuation byte
  5187. // follows before exit.
  5188. String.raw`os.write(1, b"\xe4\xbd")`,
  5189. 'return "done"',
  5190. ].join('\n'),
  5191. bindings: [],
  5192. })
  5193. expect(result.error).toBeUndefined()
  5194. expect(result.logs.join('')).toContain('�')
  5195. })
  5196. it('rejects reserved words of EITHER backend language as binding globals', async () => {
  5197. // The seam's portable contract: `lambda` (Python keyword, legal JS name)
  5198. // and `typeof` (JS keyword, legal Python name) are both refused, so a
  5199. // namespace list valid on one backend is valid on every backend.
  5200. const { runtime } = await setup()
  5201. for (const global of ['lambda', 'typeof']) {
  5202. await expect(runtime.run({
  5203. program: 'return 1',
  5204. bindings: [{ global, functions: {} }],
  5205. })).rejects.toThrow(/is not a usable Python identifier/)
  5206. }
  5207. })
  5208. it('captures stray stdout bytes the child writes bypassing sys.stdout', async () => {
  5209. // Model code that writes to fd 1 via os.write() bypasses the Python-side
  5210. // LogBuffer, so the host's stray-byte capture on child.stdout is what
  5211. // records it.
  5212. const { runtime } = await setup()
  5213. const result = await runtime.run({
  5214. program: [
  5215. 'import os',
  5216. 'os.write(1, b"stray stdout\\n")',
  5217. 'os.write(2, b"stray stderr\\n")',
  5218. 'return "done"',
  5219. ].join('\n'),
  5220. bindings: [],
  5221. })
  5222. expect(result.error).toBeUndefined()
  5223. expect(result.logs.join('')).toContain('stray stdout')
  5224. expect(result.logs.join('')).toContain('stray stderr')
  5225. })
  5226. it('flushes bytes written through sys.__stdout__/sys.__stderr__ before the done frame', async () => {
  5227. // The bootstrap only replaces sys.stdout/sys.stderr with the _LogStream;
  5228. // sys.__stdout__/sys.__stderr__ are the original block-buffered wrappers
  5229. // over fd 1/2. A program that writes through them without an explicit flush
  5230. // would lose those bytes when the host SIGTERMs the child right after the
  5231. // done frame (the default SIGTERM disposition terminates without
  5232. // interpreter finalization). The settlement flush now drains the original
  5233. // std streams before sending the done frame, so the bytes land in the
  5234. // kernel pipe buffer and the host's stray capture records them.
  5235. const { runtime } = await setup()
  5236. const result = await runtime.run({
  5237. program: [
  5238. 'import sys',
  5239. // `-u` makes the streams write-through; re-enable block buffering so
  5240. // the bytes sit in the wrapper until the SETTLEMENT drain flushes them
  5241. // — the drain path, not the -u immediate write, is what this case pins.
  5242. 'if hasattr(sys.__stdout__, "reconfigure"):',
  5243. ' sys.__stdout__.reconfigure(write_through=False)',
  5244. ' sys.__stderr__.reconfigure(write_through=False)',
  5245. 'sys.__stdout__.write("orig stdout\\n")',
  5246. 'sys.__stderr__.write("orig stderr\\n")',
  5247. 'return "done"',
  5248. ].join('\n'),
  5249. bindings: [],
  5250. })
  5251. expect(result.error).toBeUndefined()
  5252. expect(result.value).toBe('done')
  5253. expect(result.logs.join('')).toContain('orig stdout')
  5254. expect(result.logs.join('')).toContain('orig stderr')
  5255. }, 15_000)
  5256. it('escalates to SIGKILL when the program traps SIGTERM and ignores the grace period', async () => {
  5257. // A program that traps SIGTERM should still die: the kill() escalation
  5258. // fires SIGKILL after graceMs. The full run reports either timeout (wall)
  5259. // or worker-exit depending on which finish reason wins the race.
  5260. const { runtime } = await setup({ maxWallMs: 400, graceMs: 200 })
  5261. const result = await runtime.run({
  5262. program: [
  5263. 'import signal, time',
  5264. 'signal.signal(signal.SIGTERM, lambda *a: None)',
  5265. 'while True: time.sleep(1)',
  5266. ].join('\n'),
  5267. bindings: [],
  5268. })
  5269. expect(['timeout', 'worker-exit']).toContain(result.error?.kind)
  5270. }, 6000)
  5271. it('bounds the fd-3 receive buffer against a newline-free flood', async () => {
  5272. // A program looping os.write(3, ...) with no newline would grow the host
  5273. // accumulator unbounded (the child's RLIMIT_AS does not cover the host
  5274. // string). The frame cap is a fixed 64 MiB memory-safety invariant —
  5275. // deliberately NOT derived from maxValueBytes, because legitimate binding
  5276. // call frames may be large. We flood slightly past it in 8 MiB writes so
  5277. // the test terminates promptly once the guard trips.
  5278. const ceiling = 64 * 1024 * 1024
  5279. const { runtime } = await setup({ maxWallMs: 60_000, addressSpaceMb: 2048 })
  5280. const start = Date.now()
  5281. const result = await runtime.run({
  5282. program: [
  5283. 'import os',
  5284. `for _ in range(${Math.ceil((ceiling * 1.1) / (8 * 1024 * 1024))}):`,
  5285. ' os.write(3, b"A" * (8 * 1024 * 1024))',
  5286. 'return "never"',
  5287. ].join('\n'),
  5288. bindings: [],
  5289. })
  5290. const elapsed = Date.now() - start
  5291. expect(result.error?.kind).toBe('worker-exit')
  5292. expect(result.error?.message).toContain(`protocol frame exceeded ${ceiling} bytes`)
  5293. // The breach ends the run before the wall ceiling (the run did not idle
  5294. // out); absolute pipe throughput varies too much under parallel suites
  5295. // for a tight bound.
  5296. expect(elapsed).toBeLessThan(30_000)
  5297. }, 45_000)
  5298. it('fails a forged oversized done value host-side as output-limit', async () => {
  5299. // The Python-side _done_with_value check is bypassable by writing a done
  5300. // frame straight to fd 3. The host re-enforces maxValueBytes; the seam
  5301. // forbids substituting a truncated value, so the run FAILS as output-limit
  5302. // instead of returning a lie.
  5303. const maxValueBytes = 64
  5304. const { runtime } = await setup({ maxValueBytes })
  5305. const result = await runtime.run({
  5306. program: [
  5307. 'import os, json',
  5308. 'big = "B" * 5000',
  5309. 'os.write(3, json.dumps({"type":"done","value":big}).encode() + b"\\n")',
  5310. // The real done never sends; the forged one settles the run.
  5311. 'import time',
  5312. 'time.sleep(5)',
  5313. ].join('\n'),
  5314. bindings: [],
  5315. })
  5316. expect(result.value).toBeUndefined()
  5317. expect(result.error?.kind).toBe('output-limit')
  5318. expect(result.error?.message).toContain('exceeded 64 bytes')
  5319. }, 8000)
  5320. it('drops a forged oversized log frame on its code-unit lower bound, before escaping it', async () => {
  5321. // A forged `log` frame carrying a control-heavy string: NULs escape
  5322. // several-fold (one NUL -> six bytes `\u0000`). The raw frame stays under
  5323. // the host's 64 MiB parse cap (4 MiB of `\u0000` text = 24 MiB raw) while
  5324. // the escaped form would be ~24 MiB. Charging it required building that
  5325. // escaped copy first, so a 32-byte maxLogBytes could still force a large
  5326. // host allocation. The cheap `length + 3` lower bound truncates it instead.
  5327. // The host's own heap is what is under test, so keep the child's address
  5328. // space generous enough to BUILD the frame.
  5329. const { runtime } = await setup({ maxLogBytes: 128, addressSpaceMb: 1024, maxWallMs: 60_000 })
  5330. const before = process.memoryUsage().heapUsed
  5331. const result = await runtime.run({
  5332. program: [
  5333. 'import os',
  5334. // Written as a raw frame so the child's own ledger never sees it.
  5335. 'os.write(3, b\'{"type":"log","text":"\' + b"\\\\u0000" * (4 * 1024 * 1024) + b\'"}\\n\')',
  5336. 'return "settled"',
  5337. ].join('\n'),
  5338. bindings: [],
  5339. })
  5340. expect(result.error).toBeUndefined()
  5341. expect(result.value).toBe('settled')
  5342. // The frame was dropped as one truncation marker, not retained.
  5343. expect(result.logs).toEqual([logTruncationMarker(128)])
  5344. // The escaped copy (~144 MiB) was never materialized.
  5345. expect(process.memoryUsage().heapUsed - before).toBeLessThan(256 * 1024 * 1024)
  5346. }, 90_000)
  5347. it('charges a forged log frame its escaped cost once past the code-unit lower bound', async () => {
  5348. // The cheap lower bound only rejects what cannot possibly fit; a SHORT
  5349. // control-heavy frame clears it and must still be charged what it costs on
  5350. // the wire. Eleven NULs are 14 against the 64-byte ledger's cheap bound
  5351. // (six bytes each, two quotes, one separator), so the full charge truncates.
  5352. const { runtime } = await setup({ maxLogBytes: 64 })
  5353. const result = await runtime.run({
  5354. program: [
  5355. 'import os',
  5356. 'os.write(3, b\'{"type":"log","text":"\' + b"\\\\u0000" * 11 + b\'"}\\n\')',
  5357. 'return "settled"',
  5358. ].join('\n'),
  5359. bindings: [],
  5360. })
  5361. expect(result.error).toBeUndefined()
  5362. expect(result.value).toBe('settled')
  5363. expect(result.logs).toEqual([logTruncationMarker(64)])
  5364. }, 8000)
  5365. it('caps a forged done error.message from its code-unit prefix, never encoding the whole message', async () => {
  5366. // `Buffer.from(message)` on a message near the frame ceiling allocates a
  5367. // full UTF-8 copy before maxValueBytes applies. Only the first
  5368. // maxValueBytes code units can fit the cap, so only that prefix is encoded
  5369. // — at most 3x the cap in bytes. The message here is 48 MiB of ASCII: its
  5370. // full encode would be another 48 MiB in the host.
  5371. const maxValueBytes = 64
  5372. const { runtime } = await setup({ maxValueBytes, addressSpaceMb: 1024, maxWallMs: 60_000 })
  5373. const before = process.memoryUsage().heapUsed
  5374. const result = await runtime.run({
  5375. program: [
  5376. 'import os',
  5377. 'os.write(3, b\'{"type":"done","error":{"kind":"exception","message":"\' + b"E" * (48 * 1024 * 1024) + b\'"}}\\n\')',
  5378. 'import time',
  5379. 'time.sleep(30)',
  5380. ].join('\n'),
  5381. bindings: [],
  5382. })
  5383. expect(result.error?.kind).toBe('exception')
  5384. const message = result.error?.message ?? ''
  5385. // The marker's 15 bytes come OUT of the 64-byte cap, so 49 E's precede it
  5386. // and the whole string is exactly 64 bytes — not 64 plus the marker.
  5387. expect(message).toBe(`${'E'.repeat(maxValueBytes - 15)}… [truncated]`)
  5388. expect(Buffer.byteLength(message, 'utf8')).toBe(maxValueBytes)
  5389. // JSON.parse already holds the 48 MiB string; the cap must not add a
  5390. // second full-length copy on top of it.
  5391. expect(process.memoryUsage().heapUsed - before).toBeLessThan(256 * 1024 * 1024)
  5392. }, 90_000)
  5393. it('keeps a capped diagnostic within maxValueBytes, marker included', async () => {
  5394. // The marker is part of the emitted diagnostic, so its bytes are reserved
  5395. // from the cap rather than appended past it — the host meters this same
  5396. // field downstream. Checked on BOTH producers: the child's own _cap_message
  5397. // (a raised exception) and the host's capMessage (a forged done frame).
  5398. const maxValueBytes = 40
  5399. const { runtime } = await setup({ maxValueBytes })
  5400. const raised = await runtime.run({
  5401. program: 'raise ValueError("R" * 100000)',
  5402. bindings: [],
  5403. })
  5404. expect(raised.error?.kind).toBe('exception')
  5405. const raisedMessage = raised.error?.message ?? ''
  5406. expect(raisedMessage.endsWith('… [truncated]')).toBe(true)
  5407. expect(Buffer.byteLength(raisedMessage, 'utf8')).toBeLessThanOrEqual(maxValueBytes)
  5408. const forged = await runtime.run({
  5409. program: [
  5410. 'import os, json',
  5411. 'msg = "F" * 100000',
  5412. 'os.write(3, json.dumps({"type":"done","error":{"kind":"exception","message":msg}}).encode() + b"\\n")',
  5413. 'import time',
  5414. 'time.sleep(5)',
  5415. ].join('\n'),
  5416. bindings: [],
  5417. })
  5418. expect(forged.error?.kind).toBe('exception')
  5419. const forgedMessage = forged.error?.message ?? ''
  5420. expect(forgedMessage.endsWith('… [truncated]')).toBe(true)
  5421. expect(Buffer.byteLength(forgedMessage, 'utf8')).toBe(maxValueBytes)
  5422. }, 15_000)
  5423. it('emits the marker alone when the cap is smaller than the marker itself', async () => {
  5424. // With maxValueBytes below the marker's own 15 bytes there is no room for
  5425. // message text; the marker still goes out, so the truncation stays reported
  5426. // instead of the diagnostic silently becoming empty. Both producers agree.
  5427. const { runtime } = await setup({ maxValueBytes: 4 })
  5428. const raised = await runtime.run({ program: 'raise ValueError("R" * 500)', bindings: [] })
  5429. expect(raised.error?.kind).toBe('exception')
  5430. expect(raised.error?.message).toBe('… [truncated]')
  5431. const forged = await runtime.run({
  5432. program: [
  5433. 'import os, json',
  5434. 'os.write(3, json.dumps({"type":"done","error":{"kind":"exception","message":"F" * 500}}).encode() + b"\\n")',
  5435. 'import time',
  5436. 'time.sleep(5)',
  5437. ].join('\n'),
  5438. bindings: [],
  5439. })
  5440. expect(forged.error?.kind).toBe('exception')
  5441. expect(forged.error?.message).toBe('… [truncated]')
  5442. }, 15_000)
  5443. it('caps a forged done error.message without splitting a surrogate pair', async () => {
  5444. // At exactly maxValueBytes code units the prefix can end on a high
  5445. // surrogate whose low half sits just outside it. `Buffer.from` encodes that
  5446. // orphan as U+FFFD — the same corruption a mid-sequence byte cut causes —
  5447. // and those three replacement bytes sit past the marker-reserved budget, so
  5448. // the byte trim-back drops them.
  5449. const maxValueBytes = 32
  5450. const { runtime } = await setup({ maxValueBytes })
  5451. const result = await runtime.run({
  5452. program: [
  5453. 'import os, json',
  5454. // 32 ASCII chars then astral characters: code unit 32 is the first
  5455. // character's high surrogate (Python spells it as one code point, so
  5456. // json.dumps emits the raw 4 bytes the host reads back as a pair).
  5457. 'msg = "A" * 32 + "\\U0001f600" * 4',
  5458. 'os.write(3, json.dumps({"type":"done","error":{"kind":"exception","message":msg}}).encode() + b"\\n")',
  5459. 'import time',
  5460. 'time.sleep(5)',
  5461. ].join('\n'),
  5462. bindings: [],
  5463. })
  5464. expect(result.error?.kind).toBe('exception')
  5465. // 17 A's fill the marker-reserved budget; no orphaned half, no U+FFFD.
  5466. expect(result.error?.message).toBe(`${'A'.repeat(17)}… [truncated]`)
  5467. expect(Buffer.byteLength(result.error?.message ?? '', 'utf8')).toBe(maxValueBytes)
  5468. }, 8000)
  5469. it('returns a diagnostic under a third of the cap untouched, skipping the encode', async () => {
  5470. // Under maxValueBytes/3 code units a message cannot overflow the cap
  5471. // whatever it holds (3 bytes is the per-code-unit maximum), so the fast
  5472. // path returns it without encoding anything. Non-ASCII proves the bound is
  5473. // the code-unit count, not a byte assumption: 6 characters at 3 bytes each
  5474. // is 18 bytes, inside the 64-byte cap.
  5475. const { runtime } = await setup({ maxValueBytes: 64 })
  5476. const result = await runtime.run({
  5477. program: [
  5478. 'import os, json',
  5479. 'os.write(3, json.dumps({"type":"done","error":{"kind":"exception","message":"中文中文中文"}}).encode() + b"\\n")',
  5480. 'import time',
  5481. 'time.sleep(5)',
  5482. ].join('\n'),
  5483. bindings: [],
  5484. })
  5485. expect(result.error?.kind).toBe('exception')
  5486. expect(result.error?.message).toBe('中文中文中文')
  5487. }, 8000)
  5488. it('re-caps a forged done error.message host-side on a UTF-8 boundary', async () => {
  5489. // A forged done frame can carry an arbitrarily long error message; the
  5490. // host caps it to maxValueBytes and appends the shared marker. The
  5491. // message is emoji-dense and the cap is chosen so the marker-reserved
  5492. // 51-byte cut lands INSIDE a 4-byte sequence (one ASCII byte then 4-byte
  5493. // runs, so only a cut at 1 + 4k is aligned) — the cap must trim back to a
  5494. // code-point boundary rather than decode a replacement character, which
  5495. // would also exceed the cap.
  5496. const maxValueBytes = 66
  5497. const { runtime } = await setup({ maxValueBytes })
  5498. const result = await runtime.run({
  5499. program: [
  5500. 'import os, json',
  5501. 'msg = "E" + "\\U0001f600" * 2000',
  5502. 'os.write(3, json.dumps({"type":"done","error":{"kind":"exception","message":msg}}).encode() + b"\\n")',
  5503. 'import time',
  5504. 'time.sleep(5)',
  5505. ].join('\n'),
  5506. bindings: [],
  5507. })
  5508. expect(result.error?.kind).toBe('exception')
  5509. const message = result.error?.message ?? ''
  5510. expect(message.endsWith('… [truncated]')).toBe(true)
  5511. const marker = '… [truncated]'
  5512. const body = message.slice(0, message.length - marker.length)
  5513. // The WHOLE message, marker included, honors the cap.
  5514. expect(Buffer.byteLength(message, 'utf8')).toBeLessThanOrEqual(maxValueBytes)
  5515. // 'E' plus 12 emoji is 49 bytes: the trim-back walked the 51-byte budget
  5516. // down past two continuation bytes rather than splitting the 13th.
  5517. expect(body).toBe(`E${'\u{1f600}'.repeat(12)}`)
  5518. // The cut landed on a code-point boundary — no replacement character.
  5519. expect(body).not.toContain('\ufffd')
  5520. }, 8000)
  5521. it('bounds a single oversized newline-terminated line on fd 3', async () => {
  5522. // The same cap applies to one giant framed line. Write EXACTLY the
  5523. // cap with no newline — at the limit, not past it, so nothing trips —
  5524. // then a small newline tail, which is the chunk that crosses.
  5525. const ceiling = 64 * 1024 * 1024
  5526. const { runtime } = await setup({ maxWallMs: 60_000, addressSpaceMb: 2048 })
  5527. const result = await runtime.run({
  5528. program: [
  5529. 'import os',
  5530. 'chunk = b"A" * (8 * 1024 * 1024)',
  5531. `for _ in range(${ceiling / (8 * 1024 * 1024)}):`,
  5532. ' os.write(3, chunk)',
  5533. 'os.write(3, b"AAAA\\n")',
  5534. 'return "never"',
  5535. ].join('\n'),
  5536. bindings: [],
  5537. })
  5538. expect(result.error?.kind).toBe('worker-exit')
  5539. expect(result.error?.message).toContain(`protocol frame exceeded ${ceiling} bytes`)
  5540. }, 90_000)
  5541. it('rejects an over-cap newline-free fd-3 buffer without first joining it into one line', async () => {
  5542. // The cap has to be enforced on the byte COUNTER before Buffer.concat,
  5543. // not on the joined line afterwards: the join is a second copy of
  5544. // everything held, so a program could force roughly twice the advertised
  5545. // 64 MiB of host memory before anything rejected it.
  5546. //
  5547. // This program writes past the cap with no newline: the counter crosses on
  5548. // the 9th 8 MiB write (72 MiB) while the buffer is still a single unframed
  5549. // line, so the pre-join check rejects it without concat-ing a second copy.
  5550. // Checking the joined line instead would have produced a 72 MiB FIRST LINE
  5551. // that the per-line bound then dropped only after the doubling had happened.
  5552. const ceiling = 64 * 1024 * 1024
  5553. const { runtime } = await setup({ maxWallMs: 60_000, addressSpaceMb: 2048 })
  5554. const result = await runtime.run({
  5555. program: [
  5556. 'import os',
  5557. 'chunk = b"A" * (8 * 1024 * 1024)',
  5558. `for _ in range(${ceiling / (8 * 1024 * 1024) + 1}):`,
  5559. ' os.write(3, chunk)',
  5560. 'return "never"',
  5561. ].join('\n'),
  5562. bindings: [],
  5563. })
  5564. expect(result.value).toBeUndefined()
  5565. expect(result.error?.kind).toBe('worker-exit')
  5566. expect(result.error?.message).toContain(`protocol frame exceeded ${ceiling} bytes`)
  5567. }, 120_000)
  5568. it('keeps two within-cap frames whose combined buffer crosses the cap', async () => {
  5569. // The unframed byte counter charges the WHOLE buffer, which legitimately
  5570. // holds several frames each within FRAME_PARSE_CAP_BYTES. A first frame of
  5571. // exactly the cap followed by a second frame crosses the counter without
  5572. // either frame exceeding the cap; the first-frame check (not the counter)
  5573. // must let them through, or a legitimate near-cap frame plus a trailing
  5574. // frame would be misreported as a worker-exit.
  5575. const { runtime } = await setup({ maxWallMs: 60_000, addressSpaceMb: 2048 })
  5576. const result = await runtime.run({
  5577. program: [
  5578. 'import os',
  5579. 'chunk = b"A" * (8 * 1024 * 1024)',
  5580. // Exactly the cap, no newline — at the limit, so nothing trips.
  5581. 'for _ in range(8):',
  5582. ' os.write(3, chunk)',
  5583. // A newline, then a small legitimate log frame.
  5584. 'os.write(3, b"\\n{\\"type\\":\\"log\\",\\"text\\":\\"after-cap-frames\\"}\\n")',
  5585. 'return "done"',
  5586. ].join('\n'),
  5587. bindings: [],
  5588. })
  5589. expect(result.error).toBeUndefined()
  5590. expect(result.value).toBe('done')
  5591. expect(result.logs).toContain('after-cap-frames')
  5592. }, 120_000)
  5593. it('rejects an oversized first frame that lands on the sealing threshold with a newline', async () => {
  5594. // The fragment-count seal runs only on newline-free chunks (the ELSE half
  5595. // of the newline branch), so a chunk that carries the first newline always
  5596. // reaches the join and its first-frame check; sealing it into a block
  5597. // would empty pendingChunks, leave sawNewline false, and skip that check.
  5598. // Whether the pipe delivers exactly 1024 chunks is timing-dependent, but
  5599. // the oversized first frame (63.9 MiB of A's + 12289 more before the
  5600. // newline) exceeds FRAME_PARSE_CAP_BYTES no matter how it arrives — the
  5601. // case pins the worker-exit settlement, not a pre/post copy-count
  5602. // distinction (both orders reject an over-cap frame).
  5603. const { runtime } = await setup({ maxWallMs: 60_000, addressSpaceMb: 2048 })
  5604. const result = await runtime.run({
  5605. program: [
  5606. 'import os',
  5607. // 4 KiB writes are <= PIPE_BUF, so each os.write is atomic and the
  5608. // host sees one chunk per write; 16384 of them accumulate 64 MiB of
  5609. // newline-free bytes (16 fragment-count seals of 1024 chunks).
  5610. 'chunk = b"A" * 4096',
  5611. 'for _ in range(16384):',
  5612. ' os.write(3, chunk)',
  5613. // 12289 more A's push the first frame past 64 MiB; drain-loop so the
  5614. // write cannot truncate, then a newline and a small legitimate frame.
  5615. "data = b'A' * 12289 + b'\\n' + b'{\"type\":\"log\",\"text\":\"after-seal\"}\\n'",
  5616. 'view = memoryview(data)',
  5617. 'while view:',
  5618. ' view = view[os.write(3, view):]',
  5619. 'return "done"',
  5620. ].join('\n'),
  5621. bindings: [],
  5622. })
  5623. expect(result.error?.kind).toBe('worker-exit')
  5624. expect(result.error?.message).toContain('protocol frame exceeded')
  5625. }, 120_000)
  5626. })