483 lines
22 KiB
TypeScript
483 lines
22 KiB
TypeScript
// Shared scaffold for the keyless browser e2e lane (Agent Note:
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// .agents/notes/implemented/testing/2026-07-24-web-gui-browser-e2e-lane.md).
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// Boots the REAL web composition — the shipped apps/cli/cordis.yml through
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// the vendored Loader (the same include boot AppCLIEntry drives), patched the
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// snapshot way — so a real chromium exercises the real HTTP/SSE wire, the
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// api-gateway, agent loop, tools, and persistence. Modes ride $DSH_SNAPSHOT:
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// replay (default, keyless: llm-deepseek row disabled, dsh-llm-replay row
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// inserted in providers mode), record (real adapter + key, harvests fixtures
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// from live session memory), refresh (keyless replay that rewrites goldens).
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//
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// Composition divergences from `dsh web`, all deliberate, all via include
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// patches over the SAME tree (never a second yml): temp persistenceRoot;
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// workspace-context disabled (recorded fixtures must not embed this repo's
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// AGENTS.md); session-title-llm disabled (its fire-and-forget title call
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// would race the loop for the session's replay cursor); webserver pinned to
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// port 0 with the built dist; keyless modes disable llm-deepseek and fill
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// the open llm seam post-boot with installLlmReplay on the settled root ctx
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// (the plugin-row path discards the ReplayHandle; the direct install keeps
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// assertConsumed for the teardown fixture-consumption check).
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import { existsSync } from 'node:fs'
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import { mkdtemp, readFile, readdir, realpath, rm, utimes, writeFile } from 'node:fs/promises'
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import { tmpdir } from 'node:os'
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import { join, resolve } from 'node:path'
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import { pathToFileURL } from 'node:url'
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import type { Page } from 'playwright'
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import { expect } from 'vitest'
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import { Context } from 'cordis'
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import Loader from '@cordisjs/plugin-loader'
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import Include, { type PatchOptions } from '@cordisjs/plugin-include'
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import { scrubRequestHeaders } from '@deepseek-ai/dsh-acp-snapshot'
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import { assertEntriesLoaded } from '@deepseek-ai/dsh-app-boot'
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import type { ReplayHandle } from '@deepseek-ai/dsh-llm-replay'
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import { installLlmReplay, parseSessionLog } from '@deepseek-ai/dsh-llm-replay'
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import SessionStore, {
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packChunkRuns,
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SESSION_FORMAT_VERSION,
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SessionId,
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type Session,
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type SessionEvent,
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type SessionHeader,
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} from '@deepseek-ai/dsh-session'
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import SessionPersistenceJsonl from '@deepseek-ai/dsh-session-persistence-jsonl'
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import * as ToolCordis from '@deepseek-ai/dsh-tool-cordis'
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// Empty type imports carry the httpServer/agents/sessionPersistence Context merges.
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import type {} from '@deepseek-ai/dsh-host-webserver'
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import type {} from '@deepseek-ai/dsh-agent'
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import { DIST_INDEX, REPO_ROOT, requireDist } from './support.ts'
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/** Snapshot mode for the lane, from $DSH_SNAPSHOT (same vocabulary as the ACP/TUI suites). */
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export type WebSnapshotMode = 'replay' | 'record' | 'refresh'
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/**
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* Resolve and validate the lane's snapshot mode.
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* @returns the active mode; unset/empty selects replay.
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*/
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export function webSnapshotMode(): WebSnapshotMode {
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const value = process.env.DSH_SNAPSHOT
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if (value === undefined || value === '' || value === 'replay') return 'replay'
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if (value === 'record' || value === 'refresh') return value
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throw new Error(`DSH_SNAPSHOT must be replay, record, or refresh; got ${JSON.stringify(value)}`)
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}
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/** The shipped composition under test: apps/cli's config tree. */
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const CONFIG_PATH = join(REPO_ROOT, 'apps/cli/cordis.yml')
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// Replay publishes the provider catalog the gateway routes to (providers
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// mode, never catch-all: with llm-deepseek disabled no adapter exists, so a
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// catch-all would leave resolveModelInfo unroutable and compact-basic's
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// post-step pressure check would warn every step). The published
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// contextWindow keeps that pressure path provably inert for small fixtures.
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const REPLAY_PROVIDERS = [{
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id: 'deepseek',
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name: 'DeepSeek',
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models: [{ id: 'deepseek-v4-flash', name: 'DeepSeek-V4-Flash', contextWindow: 128_000 }],
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}]
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/** A booted web scaffold: real composition, mode-selected model backend, temp world. */
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export interface WebScaffold {
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/** The active snapshot mode this scaffold booted under. */
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mode: WebSnapshotMode
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/** Browser-facing origin (http://127.0.0.1:<bound port>). */
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baseUrl: string
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/** Settled root context (the in-process barrier seam; headless event subscription is its sanctioned use). */
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ctx: Context
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/** Temp project directory sessions run in (bash/fs tool cwd). */
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workspaceCwd: string
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/** Temp persistence root (seeded sessions land here through the real API). */
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persistenceRoot: string
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/** Await a settled turn end: in-process turn/end, then the agent's idle flip (which follows the persistence flush). */
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whenTurnSettled(timeoutMs?: number): Promise<SessionId>
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/** Tear everything down; asserts the replay fixture was fully consumed first (replay/refresh). */
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close(): Promise<void>
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}
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/** Options for {@link launchWebScaffold}. */
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export interface LaunchOptions {
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/**
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* Replay fixture (session.jsonl) served by the inserted dsh-llm-replay row
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* in replay/refresh modes; ignored in record mode (the real adapter
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* answers). Omit for scenarios issuing no model calls — a stray stream then
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* fails loud with NO_ADAPTER (llm-deepseek is disabled and no replay row
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* mounts).
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*/
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replayFixture?: string
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/**
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* Optional replay.override.json sidecar (whole-script replacement or
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* `{ patches }` augmentation) for throw/hang scenarios not expressible as
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* recorded chunks; replay/refresh only.
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*/
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replayOverride?: string
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/** Per-chunk replay pacing (ms) so the browser observes genuinely incremental SSE; replay/refresh only. */
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paceMs?: number
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/**
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* Tool presentation mode patched onto the shipped `tools` row (`code`
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* collapses the wire to run_code + the SDK prompt section). Omit for the
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* yml default. The code runtime row is always in the tree, so no extra
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* insertion is needed.
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*/
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toolsMode?: 'native' | 'code' | 'both'
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/**
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* Insert the opt-in self-referential Cordis tools into the shipped tree.
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* Record and replay use the same tool surface, so captured request headers
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* remain reconstructable without making the tools a product default.
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*/
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cordisTools?: boolean
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}
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/** Dispose the booted tree and remove both owned temp roots, reporting every independent cleanup failure. */
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async function cleanupScaffoldWorld(ctx: Context, workspaceCwd: string, persistenceRoot: string): Promise<unknown[]> {
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const failures: unknown[] = []
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await Promise.resolve(ctx.fiber.dispose()).catch((error: unknown) => failures.push(error))
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await rm(workspaceCwd, { recursive: true, force: true }).catch((error: unknown) => failures.push(error))
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await rm(persistenceRoot, { recursive: true, force: true }).catch((error: unknown) => failures.push(error))
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return failures
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}
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/**
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* Boot the real web composition under the current snapshot mode.
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* @param options - replay fixture selection and pacing.
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* @returns the running scaffold.
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*/
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export async function launchWebScaffold(options: LaunchOptions = {}): Promise<WebScaffold> {
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requireDist()
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const mode = webSnapshotMode()
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if (mode === 'record') {
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// Both owning vitest configs (web unconditionally, snapshot in record
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// mode) load the repo-root .env before this file runs.
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if (process.env.DEEPSEEK_API_KEY === undefined || process.env.DEEPSEEK_API_KEY.length === 0) {
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throw new Error('web e2e record mode needs DEEPSEEK_API_KEY (env or repo-root .env)')
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}
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}
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const workspaceCwd = await realpath(await mkdtemp(join(tmpdir(), 'dsh-web-e2e-ws-')))
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let persistenceRoot: string
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try {
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persistenceRoot = await mkdtemp(join(tmpdir(), 'dsh-web-e2e-sessions-'))
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} catch (error) {
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const failures: unknown[] = [error]
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await rm(workspaceCwd, { recursive: true, force: true }).catch((cleanupError: unknown) => failures.push(cleanupError))
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if (failures.length > 1) throw new AggregateError(failures, 'web scaffold temp-root setup failed')
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throw error
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}
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// The include patch set — the same mechanism AppCLIEntry and the ACP
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// snapshot overlay use, applied over the SAME shipped tree (a patch id that
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// stops matching a row fails the boot sweep loudly instead of drifting).
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const patches: PatchOptions[] = [
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{ id: 'session-persistence-jsonl', config: { root: persistenceRoot } },
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// storage-json's './.storages' yml default is cwd-relative and resolves
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// per write; the scaffold restores the original cwd after boot, so the
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// row gets an absolute temp root (removed with the workspace at close).
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{ id: 'storage-json', config: { root: join(workspaceCwd, '.dsh-storages') } },
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// fs/bash cwd default to process.cwd(); the gateway injects the same
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// value into session.cwd — chdir below anchors all three to the temp
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// workspace, keeping the composition untouched.
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{ id: 'workspace-context', disabled: true },
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{ id: 'session-title-llm', disabled: true },
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{ id: 'webserver', config: { host: '127.0.0.1', port: 0, distIndex: DIST_INDEX } },
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...options.toolsMode === undefined ? [] : [{ id: 'tools', config: { mode: options.toolsMode } }],
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...options.cordisTools === true
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? [{ insert: [{ id: 'tool-cordis', name: 'cordis:tool-cordis' }] }]
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: [],
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...mode === 'record' ? [] : [{ id: 'llm-deepseek', disabled: true }],
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]
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// Sessions inherit the gateway's process.cwd() default; run the boot from
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// the temp workspace so tool cwd, session cwd, and fixtures agree.
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const originalCwd = process.cwd()
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const ctx = new Context()
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let port = 0
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let replayHandle: ReplayHandle | undefined
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try {
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process.chdir(workspaceCwd)
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ctx.baseUrl = pathToFileURL(join(resolve(CONFIG_PATH), '..')).href + '/'
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await ctx.plugin(Loader)
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ctx.loader.builtins.include = Include
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// The shipped CLI deliberately has no dependency on this opt-in package.
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// Keep the Loader row real without broadening the product installation.
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if (options.cordisTools === true) ctx.loader.builtins['tool-cordis'] = ToolCordis
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await ctx.loader.create({
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name: 'cordis:include',
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config: { path: pathToFileURL(resolve(CONFIG_PATH)).href, patches },
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})
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await ctx.loader.await()
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assertEntriesLoaded(ctx, 'web e2e scaffold')
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const boundPort = ctx.get('httpServer')?.port
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if (boundPort === undefined) {
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throw new Error('web e2e scaffold: httpServer service missing after settled boot')
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}
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port = boundPort
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// Fill the open llm seam on the settled root ctx (llm-deepseek is disabled
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// in keyless modes; a scenario with no fixture leaves the seam empty so a
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// stray stream fails loud with NO_ADAPTER). The direct install, unlike the
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// plugin row, returns the ReplayHandle for the teardown consumption check.
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if (mode !== 'record' && options.replayFixture !== undefined) {
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replayHandle = installLlmReplay(ctx, {
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file: options.replayFixture,
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providers: REPLAY_PROVIDERS,
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...(options.replayOverride === undefined ? {} : { overrideFile: options.replayOverride }),
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...(options.paceMs === undefined ? {} : { paceMs: options.paceMs }),
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})
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}
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} catch (error) {
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if (process.cwd() !== originalCwd) process.chdir(originalCwd)
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const cleanupFailures = await cleanupScaffoldWorld(ctx, workspaceCwd, persistenceRoot)
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if (cleanupFailures.length > 0) {
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throw new AggregateError([error, ...cleanupFailures], 'web scaffold setup failed and cleanup was incomplete')
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}
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throw error
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} finally {
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if (process.cwd() !== originalCwd) process.chdir(originalCwd)
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}
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return {
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mode,
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baseUrl: `http://127.0.0.1:${port}`,
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ctx,
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workspaceCwd,
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persistenceRoot,
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// Barrier stack: the in-process turn/end identifies the session, then
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// agent.whenIdle() covers the persistence flush (the idle flip follows
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// the flush), and the caller's browser settled-poll comes last because
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// host completion strictly precedes render.
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whenTurnSettled(timeoutMs = mode === 'record' ? 180_000 : 30_000): Promise<SessionId> {
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return new Promise<SessionId>((resolveSettled, reject) => {
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const timer = setTimeout(() => {
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off()
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reject(new Error(`no turn/end within ${timeoutMs}ms`))
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}, timeoutMs)
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const off = ctx.on('session/event', (session: { id: SessionId }, event: SessionEvent) => {
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if (event.type !== 'turn/end') return
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clearTimeout(timer)
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off()
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const agent = ctx.agents.get(session.id)
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if (agent === undefined) {
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reject(new Error(`turn/end for ${session.id} but no live agent`))
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return
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}
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agent.whenIdle().then(() => { resolveSettled(session.id) }, reject)
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})
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})
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},
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async close(): Promise<void> {
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const failures: unknown[] = []
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// Fixture-consumption check first, while the run's binding state is
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// still authoritative — a scenario that drove fewer model calls than
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// recorded fails here instead of drifting green.
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try {
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replayHandle?.assertConsumed()
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} catch (error) {
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failures.push(error)
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}
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failures.push(...await cleanupScaffoldWorld(ctx, workspaceCwd, persistenceRoot))
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if (failures.length > 0) throw new AggregateError(failures, 'web scaffold teardown failed')
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},
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}
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}
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/**
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* Serialize a live session to the canonical raw session-JSONL layout — the
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* in-memory record-mode harvest, so the on-disk zstd default never matters.
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*/
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function rawSessionLog(session: Session): string {
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return [
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JSON.stringify({ type: 'session', ...session.header }),
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...packChunkRuns(session.events).map(record => JSON.stringify(record)),
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'',
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].join('\n')
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}
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/**
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* Record-mode fixture write-back: harvest the live session, scrub request
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* headers to {{system}}/{{tools}} (TODO(web-header-pin): the web lane pins no
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* header class — a deliberate deviation logged in the Agent Note's deferred
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* work), tokenize the run-local session id, cwd, and browser RPC id
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* ({{sessionId}}/{{cwd}}/{{rpcId}}, the committed fixture convention —
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* re-records then diff only on real content), and write the fixture.
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* @param scaffold - the record-mode scaffold.
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* @param sessionId - the driven session.
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* @param fixturePath - the committed session.jsonl / seed.jsonl target.
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*/
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export async function recordFixture(scaffold: WebScaffold, sessionId: SessionId, fixturePath: string): Promise<void> {
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const agent = scaffold.ctx.agents.get(sessionId)
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if (agent === undefined) throw new Error(`record harvest: no live agent for ${sessionId}`)
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const tokenized = scrubRequestHeaders(rawSessionLog(agent.session))
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.split(sessionId).join('{{sessionId}}')
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.split(scaffold.workspaceCwd).join('{{cwd}}')
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.replace(/"rpcId":"[^"]+"/g, '"rpcId":"{{rpcId}}"')
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await writeFile(fixturePath, tokenized)
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}
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/**
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* The user prompts recorded in a fixture, in order — the single source tying
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* spec drive steps to recorded reality so script and fixture cannot drift.
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* @param fixtureText - raw session.jsonl contents.
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* @returns the recorded user prompt texts.
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*/
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export function fixtureUserPrompts(fixtureText: string): string[] {
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return parseSessionLog(fixtureText).flatMap((event) => {
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if (event.type !== 'user/message' || event.data.source.kind !== 'user') return []
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const text = event.data.content.filter(block => block.type === 'text').map(block => block.text).join('')
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return text.length > 0 ? [text] : []
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})
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}
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/**
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* Seed a recorded session fixture into the scaffold's persistence root
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* through the REAL backend API (throwaway Context + SessionStore + JSONL
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* plugin — the semantic-checkpoint precedent), never raw file writes: no
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* knowledge of bucket hashing, filename encoding, or compression, and
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* malformed shapes fail loud at seed time. The fixture's tokenized identity
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* ({{sessionId}}/{{cwd}}) is realized for this world before parsing.
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* @param scaffold - the target scaffold.
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* @param fixtureText - raw recorded session.jsonl contents.
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* @param id - the seeded session id (stable for deterministic goldens).
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* @returns the seeded id.
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*/
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export async function seedSession(scaffold: WebScaffold, fixtureText: string, id: string): Promise<SessionId> {
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const realized = fixtureText
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.split('{{sessionId}}').join(id)
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.split('{{cwd}}').join(scaffold.workspaceCwd)
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const fixtureCwd = (JSON.parse(realized.split('\n', 1)[0]!) as { cwd?: string }).cwd
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const rewritten = fixtureCwd === undefined
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? realized
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: realized.split(fixtureCwd).join(scaffold.workspaceCwd)
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const events = parseSessionLog(rewritten)
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if (events.length === 0) throw new Error('seed fixture has no events')
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const last = events[events.length - 1]!
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// An open final turn would be mutated by resume's crash repair on first
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// open; a committed seed must be a closed recording.
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if (last.type !== 'turn/end') throw new Error(`seed fixture must end in turn/end, got ${last.type}`)
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const meta: SessionHeader = {
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version: SESSION_FORMAT_VERSION,
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id: SessionId(id),
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createdAt: Date.now() - 60_000,
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cwd: scaffold.workspaceCwd,
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delegationDepth: 0,
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}
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const seeder = new Context()
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try {
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await seeder.plugin(SessionStore)
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// Same root as the booted tree with the plugin's own default compression,
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// so the host's directory-scan list() sees one consistent encoding.
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await seeder.plugin(SessionPersistenceJsonl, { root: scaffold.persistenceRoot })
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await seeder.sessionPersistence.create(meta)
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await seeder.sessionPersistence.append(meta.id, events)
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// Deterministic sidebar order: cold summaries take updatedAt from mtime.
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const located = seeder.sessionPersistence.locate(meta)
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if (located !== undefined) {
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const backdated = new Date(meta.createdAt)
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await utimes(located.path, backdated, backdated)
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}
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} finally {
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await seeder.fiber.dispose()
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}
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return meta.id
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}
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/**
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* Normalize an aria snapshot: uuid, cwd, workspace-basename, and duration
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* volatility collapse to stable tokens.
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*/
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function normalizeAria(snapshot: string, workspaceCwd: string): string {
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// The header breadcrumb renders the workspace's basename, not the full
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// path, so both spellings must collapse to the token.
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const base = workspaceCwd.split('/').pop()!
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return snapshot
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.split(workspaceCwd).join('{{cwd}}')
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.split(base).join('{{workspace}}')
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.replace(/[0-9a-f]{8}-[0-9a-f]{4}-[0-9a-f]{4}-[0-9a-f]{4}-[0-9a-f]{12}/gi, '{{uuid}}')
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.replace(/\b\d+(?:\.\d+)?(?:ms|s|秒)\b/g, '{{duration}}')
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}
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/**
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* Capture the region's aria snapshot at a settled milestone: poll until two
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* consecutive normalized captures are equal — a single-shot capture races the
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* last React commits.
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* @param page - the page under test.
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* @param selector - the region locator selector.
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* @param workspaceCwd - normalization input.
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* @returns the stable normalized snapshot.
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*/
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export async function captureStableAria(page: Page, selector: string, workspaceCwd: string): Promise<string> {
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const region = page.locator(selector).first()
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let previous = normalizeAria(await region.ariaSnapshot(), workspaceCwd)
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await expect.poll(async () => {
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const current = normalizeAria(await region.ariaSnapshot(), workspaceCwd)
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const stable = current === previous
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previous = current
|
|
return stable
|
|
}, { timeout: 5_000, message: 'aria snapshot did not stabilize' }).toBe(true)
|
|
return previous
|
|
}
|
|
|
|
/**
|
|
* Compare a normalized golden, or rewrite it under refresh. Refresh is the
|
|
* ONLY writer: a missing golden in replay mode fails with the healing command
|
|
* instead of silently self-bootstrapping.
|
|
* @param goldenPath - the committed ui.expected.md path.
|
|
* @param actual - the stable normalized snapshot.
|
|
* @param mode - the active snapshot mode.
|
|
*/
|
|
export async function compareOrRefreshGolden(goldenPath: string, actual: string, mode: WebSnapshotMode): Promise<void> {
|
|
const payload = `${actual}\n`
|
|
if (mode === 'refresh') {
|
|
await writeFile(goldenPath, payload)
|
|
return
|
|
}
|
|
if (!existsSync(goldenPath)) {
|
|
throw new Error(`missing golden ${goldenPath} — run DSH_SNAPSHOT=refresh pnpm run test:web to generate it`)
|
|
}
|
|
expect(payload).toBe(await readFile(goldenPath, 'utf8'))
|
|
}
|
|
|
|
/**
|
|
* Fixture-inventory guard (the TUI afterAll shape): the scenario directory
|
|
* holds exactly the expected files and every committed JSONL is a scrub
|
|
* fixed-point without a run-local browser RPC id.
|
|
* @param dir - the scenario snapshot directory.
|
|
* @param expected - the exact expected file inventory.
|
|
*/
|
|
export async function assertFixtureInventory(dir: string, expected: string[]): Promise<void> {
|
|
const entries = (await readdir(dir)).sort()
|
|
expect(entries).toEqual([...expected].sort())
|
|
for (const entry of entries.filter(name => name.endsWith('.jsonl'))) {
|
|
const content = await readFile(join(dir, entry), 'utf8')
|
|
expect(scrubRequestHeaders(content), `${dir}/${entry} carries request-header bulk`).toBe(content)
|
|
expect(content, `${dir}/${entry} carries a run-local rpcId`)
|
|
.not.toMatch(/"rpcId":"(?!\{\{rpcId\}\})[^"]+"/)
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Console tripwires: reconnect/gap-repair self-healing or a pageerror must
|
|
* fail the scenario, not mask a dead wire behind eventual consistency.
|
|
* @param page - the page under test.
|
|
* @returns live warning/pageerror collectors to assert empty at scenario end.
|
|
*/
|
|
export function watchConsole(page: Page): { warnings: string[]; pageErrors: string[] } {
|
|
const warnings: string[] = []
|
|
const pageErrors: string[] = []
|
|
page.on('console', (message) => {
|
|
const text = message.text()
|
|
if (/connection lost|gap repair|discontinuous/i.test(text)) warnings.push(text)
|
|
})
|
|
page.on('pageerror', (error) => { pageErrors.push(String(error)) })
|
|
return { warnings, pageErrors }
|
|
}
|
|
|
|
/**
|
|
* Remove only connection-loss warnings emitted after an intentional reload.
|
|
* Earlier warnings and all gap-repair/discontinuity warnings remain fatal.
|
|
* @param tripwire - the live console-warning collector.
|
|
* @param warningStart - warning count captured immediately before reloading.
|
|
*/
|
|
export function acknowledgeReloadConnectionLoss(
|
|
tripwire: ReturnType<typeof watchConsole>,
|
|
warningStart: number,
|
|
): void {
|
|
const reloadWarnings = tripwire.warnings.splice(warningStart)
|
|
tripwire.warnings.push(...reloadWarnings.filter(text => !/connection lost/i.test(text)))
|
|
}
|