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ng-eventually/packages/sdk
Sylvain Duchesne b7dc8ca2c3 fix: la suite n'était pas hermétique, et deux tests ne pouvaient pas échouer
Second tour adverse sur le lot D. Trois trouvailles, et une erreur de diagnostic de ma
part qui vaut d'être consignée.

**La suite verte dépendait de l'ordre des fichiers.** `bun test isolation-active
public-store` donnait 5 échecs quand chaque fichier seul était vert — donc un checkout de
CI avec un autre ordre d'inodes livrait rouge. Deux causes distinctes :

- le travail de connexion, lancé sans être attendu par `setCurrentUser`, débordait d'un
  fichier sur le suivant et armait l'émulation. `connectedUser` abandonne désormais dès
  que l'identité pour laquelle il a démarré n'est plus connectée — ce qui est de toute
  façon la bonne sémantique : en amont une session appartient à un utilisateur, et
  changer d'utilisateur est une autre session ;
- et surtout **mon propre test de store public exposait le cap d'un document que
  personne ne détient** — un état que la bibliothèque ne produit jamais. Il ne passait
  que tant que l'émulation était désarmée. Alice crée sa note avant de l'exposer,
  maintenant. Balayage des 21 paires de fichiers : plus aucune ne pollue.

**Le contrôle symétrique ajouté hier ne pouvait pas échouer.** « La liste d'Alice ne
contient pas la note de Bob » lisait un rendu ANTÉRIEUR à l'écriture de Bob : l'attente
de `showScope` était satisfaite au premier sondage par le marqueur déjà à l'écran, sans
synchroniser quoi que ce soit. Alice écrit désormais une note APRÈS celle de Bob —
`writeNote` attend son apparition, donc ce qui suit est un rendu qui post-date. Et le
`.catch` qui avalait le délai d'attente est retiré : une liste qui ne se stabilise jamais
est un échec à voir, pas une dégradation à absorber.

**Le test anti-fork prouvait « pas le premier », pas « le canonique ».** Son minimum
lexicographique était aussi le DERNIER élément, si bien qu'un choix positionnel — la
faute exacte que ce test existe pour attraper — restait vert. Le minimum est déplacé au
milieu ; vérifié par mutation, « prendre le dernier » le fait rougir.

**Mon erreur de diagnostic.** J'ai cru trouver, sous la trouvaille d'ordre, une fuite
entre utilisateurs — les caps d'Alice classés chez Bob — et je l'ai « reproduite ». Le
repro était faux : son faux `ng` ignorait le sujet dans la requête d'inbox, donc l'inbox
de Bob résolvait vers celle d'Alice. Une fois le faux corrigé, la fuite ne se reproduit
plus, ni avec ni sans correctif. Le danger reste réel en lecture du code — trois chemins
classent des caps plusieurs `await` après la garde qui les autorisait — donc
`caps.holderKey`/`learnFor` le ferment par construction, mais les commentaires disent
maintenant ce que c'est : un risque fermé, pas un défaut observé.

189 tests unitaires, e2e 40/40 et applicatif 12/12.
2026-08-10 10:02:45 +02:00
..

@ng-eventually/sdk

One entry point. Most of what it publishes has the same signature as the future SDK — ng, useShape, watchShape, docs, inbox, storeRegistry, readUnion (+ types) — and is a drop-in for @ng-org/web / @ng-org/orm: as NextGraph matures it resolves to the real SDK (build alias removed) with no code change.

One call does not, and it is the whole of what you will delete: configure. It exists because one shared wallet hosts every user; upstream, an application imports the SDK and each user opens their own wallet. src/index.ts groups it under a heading that says so. (ensureIdentity is a second in substance — the shared-wallet gate — but its call site survives: an application still awaits a session before it renders.)

(There were two entry points until 2026-08-07, . and ./polyfill, and the second one WAS that list. One door is easier to import from and says less — hence the grouping, and hence docs/api-contract.md, whose export inventory a test keeps honest.)

Per-symbol, with the target signature and an epistemic label on every claim: docs/api-contract.md.

Reading is key possession, and the isolation here is still fake. The cap surface has the shape of the real model — you hold a document's ReadCap or you do not read it, and there is no authorization list anywhere — but nothing is encrypted yet and the stand-in key is a constant. Nothing this library does may be described as "anonymous" or "private" until per-document encryption lands (P1b).

import {
  // SDK-shaped — the real SDK replaces these in place.
  ensureIdentity, storeRegistry, inbox, readUnion, docs,
  // Polyfill-era — one call, and it is the whole of what goes away.
  configure,
} from "@ng-eventually/sdk";

configure({ ng: realNg, useShape: realUseShape, getSession, sharedWallet });
await ensureIdentity();   // resolves who I am, and waits for the connection work
const doc = await storeRegistry.createEntityDoc(me, "protected");
await docs.sparqlUpdate(sid, `INSERT DATA { … }`, doc);
const subjects = await readUnion(await storeRegistry.listMyEntityDocs(me, "protected"));

Principle — the polyfill compensates, it never extends

Its only reason to exist is to bridge a NextGraph implementation gap. Every non-SDK surface must map to something NextGraph will provide natively, and must fall away at that point — no bespoke features, no observability, no convenience API that isn't strictly "NextGraph will do this later". The test for any proposed addition: does it compensate a real, exhibited gap? If not, it belongs in the consumer application. And a compensation whose gap is not actually exhibited on the target broker is dead weight, not defensive code.

Both halves are binding — the surface AND the implementation stay as close as possible to what NextGraph plans. The question to ask at every choice: would this make a caller learn something it has to UNLEARN at migration? If yes, it is a deviation, whatever it buys.

What the polyfill adds, each emulated now and native later:

  • Shared-wallet identity — one wallet hosts every user, so the library fabricates virtual users and confines every access to the connected one (emulated-verifier/reach.ts). Upstream, each user opens their own wallet.
  • Capability emulation — per-identity cap possession plus a read filter over it: you read the documents whose cap you hold. There is no authorization list, because the real model has none.
  • Inboxpost, postToDocument, share, and the recipient's processing. The model is verified (an inbox is a keypair on one repo); no JS surface exists yet.

Generic by construction: no application domain here. See examples/notebook for an application written against it, which the e2e suite drives.

How a document is reached — the three acts, and no others

import { storeRegistry, inbox, readUnion } from "@ng-eventually/sdk";

// 1. CREATE — you hold its cap, with nothing to declare.
const doc = await storeRegistry.createEntityDoc(me, "protected");

// 2. GIVE TO READ — name the document and the person. The key is looked up and
//    sealed into a deposit; the recipient applies it by connecting, with nothing
//    to call. Irreversible: there is no revoking a key already handed out.
await inbox.share(doc, "bob");

// 3. CIRCULATE THE REFERENCE — no call at all. Every reference this surface returns
//    is BARE: it names the document and grants nothing. If the document sits in a
//    PUBLIC store, the store serves its read cap to whoever asks, so the bare
//    reference is enough to read it — and if it does not, the reference still names
//    it and opens nothing.
const publicDoc = await storeRegistry.createEntityDoc(me, "public");
// …put `publicDoc` in a QR code, a message, another document. Nothing else to do.
await readUnion([publicDoc]);   // a stranger holding only this reads it

The invariant behind all three: you never derive a cap from a bare reference. You look it up in what you hold, you were given it, or a public store served it. A did:ng:o:… without :r: names a document and opens nothing — which is what makes confidentiality composable: a widely circulated document may point at a restricted one, and following the reference gets you a name, not a key. See docs/readcap-and-nuri-model.md § 0.

The types carry that invariant

Nuri and ReadCap are template literal types, not string aliases:

type Nuri    = `did:ng:${string}`
type ReadCap = `did:ng:${string}:r:${string}`

They are still strings — assignable to string, JSON-serializable, no wrapper — but the distinction is checked. A ReadCap goes wherever a Nuri is expected (a cap is a NURI with the key inside); the reverse does not compile.

Permissive in, precise out. Public entries take NuriLike (Nuri | string) and validate at the door, so a value coming from storage, a URL or a form needs no narrowing and no cast on your side; what they return is a precise Nuri. The runtime checks stay regardless — a JavaScript caller never meets the compiler.

const saved = localStorage.getItem("doc");        // string | null
if (saved) await readUnion([saved]);              // ✓ validated at the door