564 lines
22 KiB
JavaScript
564 lines
22 KiB
JavaScript
import fs from 'node:fs';
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import path from 'node:path';
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import { getLegacyLiveSessionsDir, getLiveSessionsDir, safeSessionId } from '../lib/impeccable-paths.mjs';
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import { COMPLETED_SESSION_PHASES, GENERATION_FENCED_SESSION_PHASES } from './vocabulary.mjs';
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const COMPLETED_PHASES = new Set(COMPLETED_SESSION_PHASES);
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export const GENERATION_FENCED_PHASES = new Set(GENERATION_FENCED_SESSION_PHASES);
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// The snapshot file carries two bookkeeping fields the snapshot itself does not
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// own: how large the journal was when the snapshot was written, and the next
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// sequence number. Both are stripped before a snapshot is handed to a caller.
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// The byte count is what makes a cached snapshot verifiable — the journal is
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// append-only, so a matching size means no event has landed since.
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const META_JOURNAL_BYTES = '__journalBytes';
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const META_NEXT_SEQ = '__nextSeq';
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// TODO(revision-unification): `checkpointRevision`, `browserCheckpointRevision`,
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// and `publicationCheckpointRevision` are three counters for two domains.
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// `checkpointRevision` is a compatibility mirror of the browser counter kept for
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// older readers. Collapsing them means changing what a resumed browser compares
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// its local revision against, so it belongs in a pass that owns resume ordering,
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// not in a caching change.
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export function createLiveSessionStore({ cwd = process.cwd(), sessionId } = {}) {
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const rootDir = getLiveSessionsDir(cwd);
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const legacyRootDir = getLegacyLiveSessionsDir(cwd);
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fs.mkdirSync(rootDir, { recursive: true });
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// Derived state per session, keyed by what the journal looked like when it was
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// derived. Publisher/complete helpers append from other processes, so the key
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// is the journal's own (path, size, mtime) rather than a trusted local write
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// count: an append this process did not make invalidates the entry and the
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// next read replays. Without the cache every append and every read replayed
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// the whole journal, which made a long session quadratic in its own length.
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/** @type {Map<string, { snapshot: object, nextSeq: number, journalPath: string, size: number, mtimeMs: number }>} */
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const derived = new Map();
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function getReadableJournalPath(id) {
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const primary = getJournalPath(rootDir, id);
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if (fs.existsSync(primary)) return primary;
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const legacy = getJournalPath(legacyRootDir, id);
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if (fs.existsSync(legacy)) return legacy;
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return primary;
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}
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/**
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* The current derived state for a session, from the in-memory cache when the
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* journal has not moved, from the snapshot file when that file is provably
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* current, and from a full replay otherwise.
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*/
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function readState(id, { allowSnapshotFile = true } = {}) {
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const journalPath = getReadableJournalPath(id);
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const stat = statOrNull(journalPath);
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const size = stat ? stat.size : -1;
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const mtimeMs = stat ? stat.mtimeMs : -1;
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const cached = derived.get(id);
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if (cached && cached.journalPath === journalPath && cached.size === size && cached.mtimeMs === mtimeMs) {
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return cached;
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}
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if (allowSnapshotFile && stat) {
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const hydrated = readSnapshotFile(getSnapshotPath(rootDir, id), id, size);
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if (hydrated) {
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const entry = { ...hydrated, journalPath, size, mtimeMs };
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derived.set(id, entry);
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return entry;
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}
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}
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const rebuilt = rebuildSnapshotFromJournal(journalPath, id);
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const entry = { snapshot: rebuilt.snapshot, nextSeq: rebuilt.nextSeq, journalPath, size, mtimeMs };
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derived.set(id, entry);
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return entry;
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}
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function persist(id, snapshot, nextSeq) {
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const snapshotPath = getSnapshotPath(rootDir, id);
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const journalPath = getReadableJournalPath(id);
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const stat = statOrNull(journalPath);
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writeSnapshot(snapshotPath, snapshot, { journalBytes: stat ? stat.size : -1, nextSeq });
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derived.set(id, {
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snapshot,
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nextSeq,
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journalPath,
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size: stat ? stat.size : -1,
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mtimeMs: stat ? stat.mtimeMs : -1,
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});
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}
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return {
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rootDir,
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legacyRootDir,
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appendEvent(event) {
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const normalized = normalizeEvent(event, sessionId);
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const journalPath = getJournalPath(rootDir, normalized.id);
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const legacyJournalPath = getJournalPath(legacyRootDir, normalized.id);
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if (!fs.existsSync(journalPath) && fs.existsSync(legacyJournalPath)) {
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fs.copyFileSync(legacyJournalPath, journalPath);
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// The readable path just moved from legacy to primary; anything derived
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// against the old path describes a file this session no longer reads.
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derived.delete(normalized.id);
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}
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// Reuse the derived state when the journal has not changed under us, and
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// apply the new event on top of it. Correctness still comes from the
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// journal: any append from another process invalidates the entry above
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// and this replays before writing, so sequence numbers and phase fences
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// are never taken from a stale copy.
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const prior = readState(normalized.id);
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const entry = {
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seq: prior.nextSeq,
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id: normalized.id,
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type: normalized.type,
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ts: new Date().toISOString(),
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event: normalized,
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};
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fs.appendFileSync(journalPath, JSON.stringify(entry) + '\n');
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const next = applyEvent(prior.snapshot, entry);
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persist(normalized.id, next, prior.nextSeq + 1);
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return next;
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},
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/**
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* True when a journal exists for the id in either root. appendEvent
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* CREATES a journal for any id it is handed, so callers that should only
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* ever touch existing sessions (browser checkpoints, mount acks) check
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* here first — otherwise a stale id from another project's browser
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* storage materializes a ghost session in this store.
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*/
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has(id) {
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if (!id || typeof id !== 'string') return false;
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return fs.existsSync(getJournalPath(rootDir, id))
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|| fs.existsSync(getJournalPath(legacyRootDir, id));
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},
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/**
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* Read-only. `live-status` and `live-resume` call this against a session a
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* running server owns; writing the snapshot file here made every read a
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* write and let a reader's replay of a half-written journal land on disk.
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* Snapshot files are written by appendEvent and by flush().
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*/
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getSnapshot(id = sessionId, opts = {}) {
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if (!id) throw new Error('session id required');
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const { snapshot } = readState(id);
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if (!opts.includeCompleted && COMPLETED_PHASES.has(snapshot.phase)) return null;
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return snapshot;
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},
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/**
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* Write the snapshot file for a session without appending an event. The
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* durable truth is the journal, so this only refreshes the read cache other
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* processes use; callers that need the state itself should use getSnapshot.
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*/
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flush(id = sessionId) {
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if (!id) throw new Error('session id required');
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const state = readState(id, { allowSnapshotFile: false });
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persist(id, state.snapshot, state.nextSeq);
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return state.snapshot;
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},
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listActiveSessions() {
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const ids = new Set();
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for (const dir of [legacyRootDir, rootDir]) {
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if (!fs.existsSync(dir)) continue;
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for (const name of fs.readdirSync(dir)) {
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if (name.endsWith('.jsonl')) ids.add(name.slice(0, -'.jsonl'.length));
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}
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}
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// Each id goes through readState, so a session whose journal has not moved
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// since it was last derived costs a stat and nothing more. The server calls
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// this on every /status and on every SSE connect.
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return [...ids]
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.sort()
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.map((id) => this.getSnapshot(id))
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.filter(Boolean);
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},
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};
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}
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function statOrNull(filePath) {
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try {
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return fs.statSync(filePath);
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} catch {
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return null;
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}
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}
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/**
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* Hydrate derived state from a snapshot file, but only when it provably
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* describes the journal as it stands right now. Anything short of an exact byte
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* match on an append-only file means events landed after the snapshot was
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* written, and the caller replays instead.
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*/
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function readSnapshotFile(snapshotPath, id, journalBytes) {
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let parsed;
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try {
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parsed = JSON.parse(fs.readFileSync(snapshotPath, 'utf-8'));
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} catch {
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return null;
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}
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if (!parsed || typeof parsed !== 'object') return null;
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if (parsed[META_JOURNAL_BYTES] !== journalBytes) return null;
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if (!Number.isInteger(parsed[META_NEXT_SEQ])) return null;
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const nextSeq = parsed[META_NEXT_SEQ];
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delete parsed[META_JOURNAL_BYTES];
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delete parsed[META_NEXT_SEQ];
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// The journal owns identity; a snapshot file copied between session ids is
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// not a reason to answer with the wrong id.
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if (parsed.id !== id) return null;
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return { snapshot: { ...baseSnapshot(id), ...parsed }, nextSeq };
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}
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function normalizeEvent(event, fallbackId) {
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if (!event || typeof event !== 'object') throw new Error('event object required');
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const id = event.id || fallbackId;
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if (!id || typeof id !== 'string') throw new Error('event id required');
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if (!event.type || typeof event.type !== 'string') throw new Error('event type required');
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return { ...event, id };
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}
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function getJournalPath(rootDir, id) {
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return path.join(rootDir, safeSessionId(id) + '.jsonl');
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}
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function getSnapshotPath(rootDir, id) {
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return path.join(rootDir, safeSessionId(id) + '.snapshot.json');
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}
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function baseSnapshot(id) {
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return {
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id,
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phase: 'new',
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pageUrl: null,
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sourceFile: null,
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previewFile: null,
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previewMode: null,
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expectedVariants: 0,
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arrivedVariants: 0,
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visibleVariant: null,
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paramValues: {},
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pendingEventSeq: null,
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pendingEvent: null,
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deliveryLease: null,
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checkpointRevision: 0,
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browserCheckpointRevision: 0,
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publicationCheckpointRevision: 0,
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activeOwner: null,
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sourceMarkers: {},
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fallbackMode: null,
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generationPhase: null,
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generationCompletedAt: null,
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generationTimings: {},
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variantPlan: null,
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generationCanceled: false,
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generationCanceledAt: null,
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cancelReason: null,
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annotationArtifacts: [],
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// Render truth. `arrivedVariants` says what the agent published; these say
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// what the browser actually got on screen. They are kept alongside the
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// published counters rather than replacing them so older readers keep
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// working, but they are the only fields that answer "did the user ever see
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// a variant".
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mountedVariants: [],
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mountFailures: [],
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renderState: null,
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diagnostics: [],
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updatedAt: null,
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};
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}
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// How many mount failures a session keeps. The card in the browser shows the
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// newest one; the agent needs enough history to spot a variant that fails
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// every republish, not the whole retry storm.
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const MOUNT_FAILURE_HISTORY = 5;
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/**
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* `pending` = the agent published and nothing has acked yet, `mounted` = at
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* least one variant reached the DOM, `failed` = the browser reported failures
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* and nothing ever mounted. A single success outranks any number of failures:
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* the user is looking at something.
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*/
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function deriveRenderState(snapshot) {
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if (snapshot.mountedVariants.length > 0) return 'mounted';
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if (snapshot.mountFailures.length > 0) return 'failed';
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if (snapshot.generationCompletedAt) return 'pending';
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return null;
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}
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function rebuildSnapshotFromJournal(journalPath, id) {
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let snapshot = baseSnapshot(id);
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const diagnostics = [];
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let nextSeq = 1;
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if (!fs.existsSync(journalPath)) return { snapshot, diagnostics, nextSeq };
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const lines = fs.readFileSync(journalPath, 'utf-8').split('\n');
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for (let i = 0; i < lines.length; i++) {
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const line = lines[i];
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if (!line.trim()) continue;
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try {
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const entry = JSON.parse(line);
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if (!entry || typeof entry !== 'object') throw new Error('entry is not object');
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if (Number.isInteger(entry.seq)) nextSeq = Math.max(nextSeq, entry.seq + 1);
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snapshot = applyEvent(snapshot, entry);
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} catch (err) {
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diagnostics.push({
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error: 'journal_parse_failed',
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line: i + 1,
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message: err.message,
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});
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}
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}
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snapshot.diagnostics = [...snapshot.diagnostics, ...diagnostics];
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return { snapshot, diagnostics, nextSeq };
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}
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function applyEvent(snapshot, entry) {
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const event = entry.event || entry;
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const next = {
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...snapshot,
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paramValues: { ...(snapshot.paramValues || {}) },
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sourceMarkers: { ...(snapshot.sourceMarkers || {}) },
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generationTimings: { ...(snapshot.generationTimings || {}) },
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variantPlan: snapshot.variantPlan || null,
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annotationArtifacts: [...(snapshot.annotationArtifacts || [])],
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mountedVariants: [...(snapshot.mountedVariants || [])],
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mountFailures: [...(snapshot.mountFailures || [])],
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renderState: snapshot.renderState ?? null,
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diagnostics: [...(snapshot.diagnostics || [])],
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updatedAt: entry.ts || new Date().toISOString(),
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};
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switch (event.type) {
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case 'generate':
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next.phase = 'generate_requested';
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next.pageUrl = event.pageUrl ?? next.pageUrl;
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next.expectedVariants = event.count ?? next.expectedVariants;
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next.pendingEventSeq = entry.seq ?? next.pendingEventSeq;
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next.pendingEvent = toPendingEvent(event);
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next.variantPlan = null;
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// A new cycle publishes new files: everything the browser told us about
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// the previous batch is now about modules that no longer exist.
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next.mountedVariants = [];
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next.mountFailures = [];
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next.renderState = null;
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if (event.screenshotPath) upsertArtifact(next.annotationArtifacts, { type: 'screenshot', path: event.screenshotPath });
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break;
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case 'variant_plan':
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if (!next.generationCanceled && !GENERATION_FENCED_PHASES.has(next.phase)) {
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next.variantPlan = event.plan ?? next.variantPlan;
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}
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break;
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case 'detector_waivers':
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if (!next.generationCanceled && !GENERATION_FENCED_PHASES.has(next.phase)) {
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next.detectorWaivers = [
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...(next.detectorWaivers || []),
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...(Array.isArray(event.waivers) ? event.waivers : []),
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];
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}
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break;
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case 'agent_phase':
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next.generationPhase = event.phase ?? next.generationPhase;
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if (event.phase) {
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next.generationTimings[event.phase] = {
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at: event.at ?? (Date.parse(entry.ts || '') || null),
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durationMs: event.durationMs ?? null,
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};
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}
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break;
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case 'variants_ready':
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case 'agent_done':
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if ((next.generationCanceled || GENERATION_FENCED_PHASES.has(next.phase))
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&& !(event.type === 'agent_done' && event.carbonize === true && next.phase === 'accept_requested')) {
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next.diagnostics.push({
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error: 'late_generation_event_ignored',
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type: event.type,
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phase: next.phase,
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});
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break;
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}
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next.phase = event.carbonize === true ? 'carbonize_required' : 'variants_ready';
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// Durable completion marker: later browser checkpoints (a resumed page
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// reporting phase "generating") regress `phase`, but generation staying
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// finished is monotone — the live server keys missed-`done` redelivery
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// on this field.
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next.generationCompletedAt = event.at ?? (Date.parse(entry.ts || '') || Date.now());
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next.sourceFile = event.sourceFile ?? event.file ?? next.sourceFile;
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next.previewFile = event.previewFile ?? next.previewFile;
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next.previewMode = event.previewMode ?? next.previewMode;
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next.arrivedVariants = event.arrivedVariants ?? (next.expectedVariants || next.arrivedVariants || 0);
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next.pendingEventSeq = null;
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next.pendingEvent = null;
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if (event.carbonize === true) {
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next.diagnostics.push({
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error: 'carbonize_cleanup_required',
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file: event.file || null,
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message: 'Accepted variant still has carbonize markers that must be folded into source CSS.',
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});
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}
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next.renderState = deriveRenderState(next);
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break;
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case 'variant_mounted': {
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const variant = Number(event.variant);
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if (!Number.isInteger(variant) || variant < 1) {
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next.diagnostics.push({ error: 'malformed_mount_ack', type: event.type, variant: event.variant ?? null });
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break;
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}
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if (!next.mountedVariants.includes(variant)) {
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next.mountedVariants = [...next.mountedVariants, variant].sort((a, b) => a - b);
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}
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next.renderState = deriveRenderState(next);
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break;
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}
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case 'variant_mount_failed': {
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const variant = Number(event.variant);
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if (!Number.isInteger(variant) || variant < 1) {
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next.diagnostics.push({ error: 'malformed_mount_ack', type: event.type, variant: event.variant ?? null });
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break;
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}
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next.mountFailures = [
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...next.mountFailures,
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{
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variant,
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url: typeof event.url === 'string' ? event.url : null,
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error: typeof event.error === 'string' ? event.error : null,
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at: event.at ?? (Date.parse(entry.ts || '') || Date.now()),
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},
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].slice(-MOUNT_FAILURE_HISTORY);
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next.renderState = deriveRenderState(next);
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// The failure needs an agent reply, so it must survive a helper
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// restart the same way a generate does. Never clobber a still-pending
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// generate: a progressive publish can fail an early mount while the
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// generate event itself is still leased.
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if (!next.pendingEvent) {
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next.pendingEvent = toPendingEvent(event);
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}
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break;
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}
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case 'checkpoint':
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if (next.generationCanceled || GENERATION_FENCED_PHASES.has(next.phase)) {
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next.diagnostics.push({ error: 'checkpoint_after_terminal_ignored', phase: event.phase ?? null, revision: event.revision ?? null });
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break;
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}
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{
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const revisionDomain = event.revisionDomain === 'publication'
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|| (event.reason === 'variants_progress' && !event.owner)
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? 'publication'
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: 'browser';
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const revisionField = revisionDomain === 'publication'
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? 'publicationCheckpointRevision'
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: 'browserCheckpointRevision';
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const currentRevision = next[revisionField]
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?? (revisionDomain === 'browser' ? next.checkpointRevision : 0)
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?? 0;
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if ((event.revision ?? 0) >= currentRevision) {
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next.phase = event.phase ?? next.phase;
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next[revisionField] = event.revision ?? currentRevision;
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if (revisionDomain === 'browser') {
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next.checkpointRevision = event.revision ?? next.checkpointRevision;
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next.activeOwner = event.owner ?? next.activeOwner;
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}
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next.arrivedVariants = event.arrivedVariants ?? next.arrivedVariants;
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if (revisionDomain === 'browser') next.visibleVariant = event.visibleVariant ?? next.visibleVariant;
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next.sourceFile = event.sourceFile ?? next.sourceFile;
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next.previewFile = event.previewFile ?? next.previewFile;
|
|
next.previewMode = event.previewMode ?? next.previewMode;
|
|
if (revisionDomain === 'browser' && event.paramValues) next.paramValues = { ...event.paramValues };
|
|
} else {
|
|
next.diagnostics.push({ error: 'stale_checkpoint_ignored', revision: event.revision, revisionDomain });
|
|
}
|
|
}
|
|
break;
|
|
case 'accept':
|
|
case 'accept_intent':
|
|
next.phase = 'accept_requested';
|
|
next.generationCanceled = true;
|
|
next.generationCanceledAt = event.at ?? (Date.parse(entry.ts || '') || Date.now());
|
|
next.cancelReason = 'accept';
|
|
next.visibleVariant = Number(event.variantId ?? next.visibleVariant);
|
|
if (event.paramValues) next.paramValues = { ...event.paramValues };
|
|
next.pendingEventSeq = entry.seq ?? next.pendingEventSeq;
|
|
next.pendingEvent = toPendingEvent(event);
|
|
break;
|
|
case 'manual_edit_apply':
|
|
next.phase = 'manual_edit_apply_requested';
|
|
next.pageUrl = event.pageUrl ?? next.pageUrl;
|
|
next.pendingEventSeq = entry.seq ?? next.pendingEventSeq;
|
|
next.pendingEvent = toPendingEvent(event);
|
|
break;
|
|
case 'steer':
|
|
next.phase = 'steer_requested';
|
|
next.pageUrl = event.pageUrl ?? next.pageUrl;
|
|
next.pendingEventSeq = entry.seq ?? next.pendingEventSeq;
|
|
next.pendingEvent = toPendingEvent(event);
|
|
break;
|
|
case 'carbonize_cleanup':
|
|
next.phase = 'carbonize_cleanup_requested';
|
|
next.sourceFile = event.file ?? next.sourceFile;
|
|
next.pendingEventSeq = entry.seq ?? next.pendingEventSeq;
|
|
next.pendingEvent = toPendingEvent(event);
|
|
break;
|
|
case 'steer_done':
|
|
next.phase = 'steer_done';
|
|
next.sourceFile = event.sourceFile ?? event.file ?? next.sourceFile;
|
|
next.previewFile = event.previewFile ?? next.previewFile;
|
|
next.previewMode = event.previewMode ?? next.previewMode;
|
|
next.message = event.message ?? next.message;
|
|
next.pendingEventSeq = null;
|
|
next.pendingEvent = null;
|
|
break;
|
|
case 'discard':
|
|
next.phase = 'discard_requested';
|
|
next.generationCanceled = true;
|
|
next.generationCanceledAt = event.at ?? (Date.parse(entry.ts || '') || Date.now());
|
|
next.cancelReason = 'discard';
|
|
next.pendingEventSeq = entry.seq ?? next.pendingEventSeq;
|
|
next.pendingEvent = toPendingEvent(event);
|
|
break;
|
|
case 'discarded':
|
|
next.phase = 'discarded';
|
|
next.pendingEventSeq = null;
|
|
next.pendingEvent = null;
|
|
break;
|
|
case 'complete':
|
|
next.phase = 'completed';
|
|
next.sourceFile = event.sourceFile ?? event.file ?? next.sourceFile;
|
|
next.previewFile = event.previewFile ?? next.previewFile;
|
|
next.previewMode = event.previewMode ?? next.previewMode;
|
|
next.pendingEventSeq = null;
|
|
next.pendingEvent = null;
|
|
break;
|
|
case 'agent_error':
|
|
if (next.generationCanceled && event.sourceEventType === 'generate') {
|
|
next.diagnostics.push({ error: 'late_generation_event_ignored', type: event.type, phase: next.phase });
|
|
break;
|
|
}
|
|
next.phase = 'agent_error';
|
|
next.pendingEventSeq = null;
|
|
next.pendingEvent = null;
|
|
next.diagnostics.push({ error: 'agent_error', message: event.message || 'unknown agent error' });
|
|
break;
|
|
default:
|
|
next.diagnostics.push({ error: 'unknown_event_type', type: event.type });
|
|
break;
|
|
}
|
|
return next;
|
|
}
|
|
|
|
function toPendingEvent(event) {
|
|
const pending = { ...event };
|
|
delete pending.token;
|
|
return pending;
|
|
}
|
|
|
|
function upsertArtifact(artifacts, artifact) {
|
|
if (!artifacts.some((existing) => existing.path === artifact.path && existing.type === artifact.type)) {
|
|
artifacts.push(artifact);
|
|
}
|
|
}
|
|
|
|
function writeSnapshot(snapshotPath, snapshot, meta) {
|
|
const payload = {
|
|
...snapshot,
|
|
[META_JOURNAL_BYTES]: meta?.journalBytes ?? -1,
|
|
[META_NEXT_SEQ]: meta?.nextSeq ?? 1,
|
|
};
|
|
fs.writeFileSync(snapshotPath, JSON.stringify(payload, null, 2) + '\n');
|
|
}
|