mirror of
https://github.com/deepseek-ai/deepseek-harness
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The seed-boundary change made fork-child replay route correctly but shipped with no recorded fork scenario — the seedLength slice was exercised only by llm-replay unit tests and a persistence round-trip, never by the full-transcript snapshot tier. Add two recorded scenarios that drive a real fork child through it: - subagent-fork: parent completes a turn, then forks one child (child fixture carries a non-zero seedLength, the boundary the replay slice consumes). - subagent-mixed: parent completes a turn, then delegates once via spawn (seedLength 0) and once via fork (non-zero seedLength) in one transcript — the first scenario to drive two subagent backends at once, exercising both branches of the slice. Both need a completed turn-1 so the fork seed is a non-empty completed-turn prefix (a turn-1 fork seeds empty = spawn, which would not exercise the slice). Removing the slice turns both scenarios red (the fork child receives the parent's recorded chunks), proving the guard bites. ACP (out-of-process) subagent replay remains a different shape, still tracked as TODO(acp-subagent-replay).
197 lines
11 KiB
TypeScript
197 lines
11 KiB
TypeScript
import { readFile, readdir, writeFile } from 'node:fs/promises'
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import { existsSync } from 'node:fs'
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import { fileURLToPath } from 'node:url'
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import { dirname, join } from 'node:path'
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import { describe, expect, it } from 'vitest'
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import { type HarvestedLog, type InputScript, runScenario } from './snapshot-harness.ts'
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import { type NormalizeContext, normalizeSessionLog, normalizeStdout } from './snapshot-normalize.ts'
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/**
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* ACP snapshot tests (REPLAY by default, keyless). Each scenario under
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* `snapshots/<name>/` ships an `input.json` (the client stdin script) and a
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* `session.jsonl` fixture; replay boots the real acp-agent subprocess, drives
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* it, and diffs the normalized stdout transcript against the committed
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* `stdout.golden.jsonl`. For model scenarios it ALSO checks the re-persisted
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* session log — against the `session.jsonl` fixture itself, not a separate
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* golden: the fixture doubles as the replay source (recorded scenarios) and the
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* expected produced log (both sides normalized before comparing).
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*
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* `pnpm run test:snapshot:record` (DSH_SNAPSHOT=record + -u) re-records the
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* `session.jsonl` fixtures against the real API and refreshes the stdout golden
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* in one pass.
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*/
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const SNAPSHOTS_DIR = join(dirname(fileURLToPath(import.meta.url)), 'snapshots')
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const RECORDING = process.env.DSH_SNAPSHOT === 'record'
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/** A snapshot scenario and how its fixtures are produced. */
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interface Scenario {
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name: string
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/** Whether the scenario drives at least one model turn (so a JSONL golden applies). */
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hasModelTurn: boolean
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/**
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* Whether `test:snapshot:record` regenerates this scenario's `session.jsonl`
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* from the LIVE API. `recorded` scenarios are model-driven and reproducible;
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* `authored` scenarios (a hand-written `replay.override.json` sidecar drives
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* replay — e.g. a provider error or a cancel, which the live API can't be
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* coaxed into deterministically) are NEVER re-recorded.
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*/
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recorded: boolean
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/**
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* How many SUBAGENT child sessions this scenario records beyond the top-level
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* one (0 for a single-session scenario). Each child rides in a sibling fixture
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* `session.<n>.jsonl` (1-based); replay forwards them to `dsh-llm-replay` so
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* each child session replays from its own script, and record mode writes the
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* harvested child logs back to those files. Defaults to 0.
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*/
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childSessions?: number
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}
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const SCENARIOS: Scenario[] = [
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{ name: 'handshake', hasModelTurn: false, recorded: false },
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{ name: 'reject-extra-dirs', hasModelTurn: false, recorded: false },
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{ name: 'text-turn', hasModelTurn: true, recorded: true },
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{ name: 'tool-call-turn', hasModelTurn: true, recorded: true },
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{ name: 'workspace-edit', hasModelTurn: true, recorded: true },
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{ name: 'multi-turn', hasModelTurn: true, recorded: true },
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{ name: 'error-finish', hasModelTurn: true, recorded: false },
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{ name: 'cancel', hasModelTurn: true, recorded: false },
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{ name: 'subagent-spawn', hasModelTurn: true, recorded: true, childSessions: 1 },
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{ name: 'subagent-multi', hasModelTurn: true, recorded: true, childSessions: 2 },
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{ name: 'subagent-fork', hasModelTurn: true, recorded: true, childSessions: 1 },
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{ name: 'subagent-mixed', hasModelTurn: true, recorded: true, childSessions: 2 },
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]
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/** The sibling child-fixture paths for a scenario (`session.1.jsonl` …). */
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function childFixturePaths(dir: string, childSessions: number): string[] {
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return Array.from({ length: childSessions }, (_, i) => join(dir, `session.${i + 1}.jsonl`))
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}
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/**
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* Derive the {@link NormalizeContext} for a `session.jsonl` fixture from its own
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* header line (`{ type: 'session', id, cwd }`). A committed fixture carries the
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* session id and cwd of the run that harvested it — different from the live
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* replay run — so normalizing it against the live run's ctx would leave those
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* recorded values unscrubbed. Reading them from the header scrubs the fixture's
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* own id/cwd to the same `{{sessionId}}`/`{{cwd}}` tokens the replay output gets.
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* An authored fixture whose header is already normalized (`id:'{{sessionId}}'`,
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* `cwd:'{{cwd}}'`) yields those tokens as the volatile values, so scrubbing them
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* is an idempotent no-op. A header with no `cwd` falls back to a sentinel that
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* cannot occur in a log (NOT `''`, which `String.split` would match on every
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* character boundary and corrupt the output).
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*/
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function fixtureContext(fixture: string): NormalizeContext {
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const firstLine = fixture.split('\n').find(line => line.trim().length > 0) ?? '{}'
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const header = JSON.parse(firstLine) as { id?: unknown; cwd?: unknown }
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return {
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sessionIds: typeof header.id === 'string' ? [header.id] : [],
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cwd: typeof header.cwd === 'string' ? header.cwd : '\0no-cwd\0',
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}
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}
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for (const scenario of SCENARIOS) {
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describe(`snapshot: ${scenario.name}`, () => {
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// In RECORD mode, only re-run the `recorded` (live-API) scenarios; the
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// `authored` ones (sidecar-driven errors/cancel) are never re-recorded.
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it.skipIf(RECORDING && !scenario.recorded)('matches the goldens', async () => {
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const dir = join(SNAPSHOTS_DIR, scenario.name)
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const input = JSON.parse(await readFile(join(dir, 'input.json'), 'utf8')) as InputScript
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const overrideFile = join(dir, 'replay.override.json')
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const workspaceDir = join(dir, 'workspace')
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const childSessions = scenario.childSessions ?? 0
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const result = await runScenario(input, {
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mode: RECORDING ? 'record' : 'replay',
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fixtureFile: join(dir, 'session.jsonl'),
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...existsSync(overrideFile) ? { overrideFile } : {},
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// In REPLAY, forward the recorded child fixtures so each subagent session
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// replays from its own script. In RECORD they are harvested, not read.
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...!RECORDING && childSessions > 0 ? { childFiles: childFixturePaths(dir, childSessions) } : {},
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...existsSync(workspaceDir) ? { workspaceDir } : {},
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})
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// Scrub every volatile id the run produced: the ACP server-issued session
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// id plus every harvested log's recorded id (a subagent child id never
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// surfaces over ACP, but it appears in the child's own log header). The
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// normalizer's UUID catch-all covers any we don't enumerate.
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const ctx: NormalizeContext = {
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sessionIds: [
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...result.sessionId !== undefined ? [result.sessionId] : [],
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...result.sessionLogs.map(l => l.id),
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],
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cwd: result.cwd,
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}
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// RECORD mode (recorded model scenarios only): persist the freshly-harvested
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// logs back to their fixtures — the primary to session.jsonl, each child to
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// session.<n>.jsonl in harvest order. `--update` refreshes the Vitest
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// goldens but NOT these fixtures, so write them here.
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if (RECORDING && scenario.recorded && scenario.hasModelTurn) {
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expect(result.sessionLogs.length, 'record produced no session log to harvest').toBeGreaterThan(0)
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expect(result.sessionLogs.length, `expected ${childSessions + 1} session logs (parent + children)`)
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.toBe(childSessions + 1)
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await writeFile(join(dir, 'session.jsonl'), (result.sessionLogs[0] as HarvestedLog).content)
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for (let i = 1; i < result.sessionLogs.length; i++) {
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await writeFile(join(dir, `session.${i}.jsonl`), (result.sessionLogs[i] as HarvestedLog).content)
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}
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}
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await expect(normalizeStdout(result.rawStdout, ctx))
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.toMatchFileSnapshot(join(dir, 'stdout.golden.jsonl'))
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if (scenario.hasModelTurn) {
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// The harvested logs (primary-first) must match their committed fixtures
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// 1:1. Each side passes through normalizeSessionLog, scrubbed against ITS
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// OWN volatile values — the live run's via `ctx`, the committed fixture's
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// via its own header (a committed file cannot share the live run's ids).
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expect(result.sessionLogs.length, 'a model scenario must persist a session log').toBe(childSessions + 1)
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const fixtureFiles = ['session.jsonl', ...Array.from({ length: childSessions }, (_, i) => `session.${i + 1}.jsonl`)]
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for (let i = 0; i < fixtureFiles.length; i++) {
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const harvested = (result.sessionLogs[i] as HarvestedLog).content
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const fixture = await readFile(join(dir, fixtureFiles[i] as string), 'utf8')
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expect(normalizeSessionLog(harvested, ctx), `${fixtureFiles[i]} mismatch`)
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.toEqual(normalizeSessionLog(fixture, fixtureContext(fixture)))
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}
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}
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})
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})
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}
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describe('snapshot fixtures', () => {
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it('every scenario directory is registered (no orphans)', async () => {
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// toMatchFileSnapshot does not prune orphaned golden/fixture files, so a
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// renamed/removed scenario could leave a stale dir that nothing exercises.
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// Fail loud on any snapshots/<dir> not present in SCENARIOS.
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const entries = await readdir(SNAPSHOTS_DIR, { withFileTypes: true })
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const onDisk = entries.filter(e => e.isDirectory()).map(e => e.name).sort()
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const registered = SCENARIOS.map(s => s.name).sort()
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expect(onDisk).toEqual(registered)
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})
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it('every registered scenario has its required fixture files', async () => {
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// Every scenario has an input script and an stdout golden. EVERY scenario
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// also needs `session.jsonl`: the harness boots `llm-replay` with that path
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// as the replay source for ALL scenarios (acp.snapshot.ts passes
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// `fixtureFile: <dir>/session.jsonl` unconditionally), and `loadReplayScript`
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// throws "fixture not found" when it is absent and no override replaces it.
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// A no-model scenario ships a header-only `session.jsonl` (it derives to an
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// empty script — no model call is made); a model scenario's fixture also
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// doubles as the expected-log artifact the run is diffed against. An authored
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// (non-`recorded`) model scenario additionally ships a `replay.override.json`
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// sidecar for the throw/hang cases a derived script cannot express.
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for (const { name, hasModelTurn, recorded, childSessions } of SCENARIOS) {
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const dir = join(SNAPSHOTS_DIR, name)
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expect(existsSync(join(dir, 'input.json')), `${name}/input.json`).toBe(true)
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expect(existsSync(join(dir, 'stdout.golden.jsonl')), `${name}/stdout.golden.jsonl`).toBe(true)
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expect(existsSync(join(dir, 'session.jsonl')), `${name}/session.jsonl`).toBe(true)
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if (hasModelTurn && !recorded) {
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expect(existsSync(join(dir, 'replay.override.json')), `${name}/replay.override.json`).toBe(true)
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}
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// A nested-agent scenario ships one child fixture per recorded subagent
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// session (`session.1.jsonl` …), the replay source for that child session.
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for (const childFixture of childFixturePaths(dir, childSessions ?? 0)) {
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expect(existsSync(childFixture), childFixture).toBe(true)
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}
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}
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})
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})
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