Persistence

Persistence Internals

Persistence Internals

This page describes the server-side contracts between the persistence middleware and the state stores.

Separate boundaries

Server state persistence is one of three boundaries that intentionally share no code:

  • Server state (this page): AIPersistence stores driven by the middleware lifecycle, the authoritative record.
  • Client hydration: the browser restores a rendered conversation, a separate concern covered in Client persistence.
  • Stream delivery: replaying an in-flight SSE response, Resumable Streams.

State middleware never mutates chunks to add delivery offsets, and it stores server event state, not the client's rendered messages.

Chat middleware lifecycle

withPersistence(persistence) derives a plan from store presence:

  1. setup provides persistence, interrupt, and lock capabilities when their stores exist.
  2. onConfig creates or resumes the run, loads pending interrupts, and validates the request's resume batch against them, then merges stored messages into the request when the request carries no history.
  3. onChunk reacts only to a RUN_FINISHED interrupt outcome by committing the accepted resumes, storing the new interrupts, marking the run interrupted, and saving messages.
  4. onFinish, onError, and onAbort terminalize the run record.

Accepted resumes are committed (interrupts marked resolved/cancelled) only once the run reaches a successful boundary, so a provider failure or abort between accepting a resume and reaching that boundary leaves the interrupt pending and a retry with the same resume succeeds. The canonical AG-UI chunk stream remains unchanged; persistence does not create a second event stream.

When a request carries a non-empty messages array it is treated as the full authoritative history and, on finish, overwrites the stored thread. To continue a stored thread without resending history, pass an empty messages array — the stored transcript is loaded and used.

Generation middleware lifecycle

withGenerationPersistence(persistence) records the run: onStart creates or resumes the run record, and onFinish, onError, and onAbort terminalize it. Durable media storage (artifact metadata plus blob bytes) is a follow-up feature.

Do not treat this as the long-term generation model. Today it reuses chat RunStore and dual-keys (runId, threadId) both to requestId. That is a stopgap: generation jobs must not fake threadId = requestId. threadId is the shared conversation key (Scope.threadId); a generation job's primary id is requestId / jobId. The follow-up should introduce a dedicated generation job store (and later artifact store), not chat RunStore / MessageStore.

Composition semantics

ts
import {
  composePersistence,
  memoryPersistence,
} from '@tanstack/ai-persistence'

const base = memoryPersistence()
const replacement = base.stores.messages

const result = composePersistence(base, {
  overrides: {
    messages: replacement,
    metadata: undefined,
    interrupts: false,
  },
})
  • messages is replaced.
  • metadata is inherited because the override is undefined.
  • interrupts is removed.
  • every omitted store is inherited.

Composition copies the store map and does not mutate or dispose either input. The return type calculates which keys are required, optional, replaced, or removed. Unknown store keys are rejected statically and by runtime validation.

Middleware adds entrypoint validation:

  • chat requires messages; rejects interrupts without runs.
  • generation requires runs.
  • reconstructChat requires messages.

The runtime checks are required because JavaScript, configuration loading, and explicitly widened types can bypass static guarantees.

Backend ownership

An adapter owns its own resources: connection lifecycle, when migrations run, and how each store record maps to rows. The middleware only calls the store methods; it never opens a connection or inspects a table. A backend may provide any subset of the stores (for example, no metadata), and the return type reflects exactly the stores it exposes. Build your own adapter shows this end to end for SQLite.

composePersistence does not add distributed transactions. When related stores use different systems, adapter authors must define retry, idempotency, and consistency behavior.