Files
ng-eventually/packages/polyfill/test/connection-surfaces-failure.test.ts
T
Sylvain Duchesne f6d1734679 fix: à la reconnexion, on retrouve ce qu'on possède — pas seulement ce qu'on a reçu
Une application signalait deux symptômes. Ils sont indépendants, et ils ont une
racine commune : se connecter ne rejouait qu'UN des registres durables du
portefeuille.

connectedUser lisait les AddLink de la branche User — ce qu'on vous a partagé —
et rien d'autre. Les capacités des documents que vous avez FAITS vivent sur la
branche Store, et un seul chemin les relisait : listMyEntityDocs. Une
application qui recharge et va droit à sa note ne tenait donc rien pour elle.
Constaté : capFor(note) vaut undefined juste après une connexion résolue, et
devient défini dès que listMyEntityDocs passe.

Le public survivait en lecture parce que fetchReadCap va rechercher la clé dans
le store ; il échouait quand même à l'écriture, qui ne fait pas cette démarche.

Deuxième défaut : myInboxes énumérait les inbox sans en remettre la clé au
détenteur. Se connecter demandait donc un document qu'on n'avait pas de quoi
lire — sur une inbox, que l'application n'a jamais nommée puisque rien ne le
lui permet.

Troisième défaut, et c'est lui qui rendait tout ça fatal : un drainage refusé
faisait échouer toute la connexion. Une inbox n'étant pas consommée par un
échec, elle refusait à chaque tentative suivante. D'où le « trois fois sur
trois », et d'où un verrouillage plutôt qu'un partage manquant.

C'est ma spécification qui l'a créé. En rendant les échecs visibles j'avais
écrasé une distinction : ne pas ATTEINDRE la file est une panne, et refuser la
session est juste ; ne pas pouvoir APPLIQUER un élément est une donnée, et ça ne
doit priver personne de sa session. Le drainage par inbox est désormais isolé —
signalé haut et fort, les autres files drainées, la session accordée — tandis
qu'énumérer les files et restaurer rejettent toujours.

Le parcours e2e ratait les deux : personne ne se reconnecte après avoir ouvert
son document aux messages. Il s'arrêtait une reconnexion trop tôt.
2026-08-16 17:23:27 +02:00

641 lines
27 KiB
TypeScript

/**
* Connecting a user either DID THE WORK or SAYS IT DID NOT — the whole case space.
*
* `connectedUser()` restores the caps a person was given (the Links already applied on
* their User branch) and drains their inboxes. `ensureIdentity()` awaits it, and the
* published contract says that call "completes the connection work it starts". So the one
* thing it must never do is resolve after failing: an application then renders, shows empty
* lists, and nothing anywhere says the restore never happened. The symptom a consumer sees
* is *"the app works but the documents shared with me never appear"* — the worst kind,
* because it looks like a permission decision and is a swallowed error.
*
* The rule this file pins, one line: **failing to ESTABLISH the session surfaces; failing
* to apply one of its queues is reported and does not deny the session; only "there was
* nothing to do" resolves quietly.** Nothing to do means exactly two things — no identity
* is connected, or the identity has no account yet (connecting must never PROVISION one,
* see `connect.ts`) — plus abandoning when the identity changed under the run, which is not
* a failure either: the next connection picks it up.
*
* The queue clause was added 2026-08-16, and it is a correction rather than a softening.
* Rejecting on an undrained inbox looked like the same rigour as the rest, and it was not:
* a queue that cannot be applied is not consumed by failing, so it is still there at the
* next connection and the one after — one unapplicable item denied a live application's
* user their sign-in, permanently, three times out of three. Reporting it and carrying on
* is what makes the failure recoverable instead of terminal; nothing about it is silent
* (the branch below asserts the report, and that the OTHER queues still ran).
*
* ── Why every branch is here, not just the interesting ones ───────────────
* A swallowed failure is invisible by construction, so a suite that covers "the happy path
* and one error" leaves exactly the places a bug hides. Every path through the function is
* asserted below: no holder, no account, a lookup that could not answer, each of the three
* identity checkpoints, each of the three collaborators failing, joining a run in flight
* (both outcomes), the fire-and-forget entry, and success.
*
* ── The faults are the broker's, not the test's ───────────────────────────
* Every failure below is injected at the `ng` boundary — a read that throws `RepoNotFound`
* (what the engine hard-errors when a repo is not in `self.repos`,
* `engine/verifier/src/verifier.rs`, and what `cold-start-anchor.test.ts` models too), or a
* `doc_create` that cannot reach the broker. Nothing here reaches into the library to make
* one of its functions reject artificially: a fake that fabricates a state the real system
* never produces goes green while leaving the real state untested.
*/
import { test, expect, mock, afterEach } from "bun:test";
import { configure } from "../src/index";
import {
adoptCurrentUser,
configureStoreRegistry,
getCaps,
resetCaps,
resetConfig,
resetStoreRegistry,
setCurrentUser,
} from "../src/shared-wallet/bootstrap";
import {
createEntityDoc,
ensureAccount,
resetRegistryCache,
userInbox,
} from "../src/shared-wallet/account-registry";
import type { RegistrySession } from "../src/shared-wallet/account-registry";
import { resetOpenedRepos } from "../src/emulated-verifier/open-repo";
import { connectedUser } from "../src/emulated-verifier/connect";
import { share } from "../src/surface/inbox";
import { sparqlUpdate } from "../src/surface/docs";
import type { Nuri } from "../src/model/types";
const SESSION: RegistrySession = { sessionId: "sid-connect", privateStoreId: "PRIV-CONNECT" };
const SHIM = "urn:ng-eventually:shim";
const INBOX = "urn:ng-eventually:inbox";
const SECRET = "urn:connect-test:secret";
interface Quad { g: string; s: string; p: string; o: string }
/**
* What the broker refuses to do, and when. Every field arms a REAL failure of the
* corresponding platform call; `null` means "answer normally".
*/
interface Faults {
/** The doc-shim read that answers "does this account exist" throws. */
accountLookup: boolean;
/** The User-branch read that answers "which Links has this user applied" throws. */
linksRead: boolean;
/** `doc_create` throws — the broker cannot mint the document an inbox needs. */
docCreate: boolean;
/** The User-branch read that answers "which document inboxes may I read" throws. */
inboxCapRead: boolean;
/** Reading THIS inbox throws (a repo the session cannot resolve). */
inboxRead: Nuri | null;
/** Called before every anchored read — the seam the identity-switch cases use. */
onQuery: ((query: string, anchor: string | undefined) => void) | null;
}
function noFaults(): Faults {
return {
accountLookup: false,
linksRead: false,
docCreate: false,
inboxCapRead: false,
inboxRead: null,
onQuery: null,
};
}
/** Reverse of the lib's `escapeLiteral`: one left-to-right pass over `\x`. */
function unescapeLiteral(s: string): string {
let out = "";
for (let i = 0; i < s.length; i++) {
if (s[i] === "\\" && i + 1 < s.length) {
const next = s[++i];
out += next === "n" ? "\n" : next === "r" ? "\r" : next === "t" ? "\t" : next!;
} else out += s[i];
}
return out;
}
/**
* A stateful fake `ng` over an in-memory quad store — the shim SPARQL, the User-branch
* registers, the inbox SPARQL and the anchored per-doc read. Same shape as the one
* `cross-user-access.test.ts` drives the model with, plus the fault switches above.
*
* No `doc_subscribe`: `ensureRepoOpen` is then a no-op by design (`open-repo.ts`), which
* keeps every failure below attributable to the call that was armed.
*/
function makeFakeNg(faults: Faults) {
const quads: Quad[] = [];
/** The anchors an inbox READ was issued against, in order — what "was it drained" reads. */
const inboxReads: string[] = [];
/** How many times the Links register was read — what "the work ran once" reads. */
let linksReads = 0;
let docCounter = 0;
const doc_create = mock(async () => {
if (faults.docCreate) throw new Error("BrokerError: cannot create document");
return `did:ng:o:cdoc${++docCounter}`;
});
const sparql_update = mock(async (...a: unknown[]) => {
const query = a[1] as string;
const anchor = a[2] as string | undefined;
if (!anchor) return undefined;
// `INSERT DATA { GRAPH <g> { … } }` — the shape the store-ROOT pointer write uses;
// everything else writes the anchored default graph.
const gm = query.match(/GRAPH\s+<([^>]+)>\s*\{([\s\S]*)\}/);
const body = gm ? gm[2]! : query.replace(/^\s*INSERT DATA\s*\{/, "").replace(/\}\s*$/, "");
const sm = body.match(/<([^>]+)>/);
if (!sm) return undefined;
const s = sm[1]!;
const after = body.slice(body.indexOf(sm[0]) + sm[0].length);
const pairRe = /(?:a|<([^>]+)>)\s+(?:"((?:[^"\\]|\\.)*)"|<([^>]+)>)/g;
let m: RegExpExecArray | null;
while ((m = pairRe.exec(after)) !== null) {
const p = m[1] ?? (query.includes(`${INBOX}:Deposit`) ? `${INBOX}:Deposit` : `${SHIM}:Account`);
const o = m[2] !== undefined ? unescapeLiteral(m[2]) : (m[3] ?? "");
quads.push({ g: anchor, s, p, o });
}
return undefined;
});
const rows = (anchor: string | undefined, pred: string, name: string) => ({
results: {
bindings: quads
.filter((q) => q.g === anchor && q.p === pred)
.map((q) => ({ [name]: { value: q.o } })),
},
});
const sparql_query = mock(async (...a: unknown[]) => {
const query = a[1] as string;
const anchor = a[3] as string | undefined;
faults.onQuery?.(query, anchor);
// Store-root pointer → the doc-shim.
if (query.includes(`<${SHIM}:shimDoc>`)) return rows(anchor, `${SHIM}:shimDoc`, "shimDoc");
// The account record — the read `lookupAccount` issues.
if (query.includes(`<${SHIM}:id>`)) {
if (faults.accountLookup) throw new Error("RepoNotFound");
const subjM = query.match(/<([^>]+)>\s+a\s+<urn:ng-eventually:shim:Account>/);
const only = subjM ? subjM[1]! : null;
const bySubject = new Map<string, Record<string, string>>();
for (const q of quads) {
if (q.g !== anchor) continue;
if (only !== null && q.s !== only) continue;
const rec = bySubject.get(q.s) ?? {};
if (q.p === `${SHIM}:id`) rec.id = q.o;
if (q.p === `${SHIM}:docPublic`) rec.docPublic = q.o;
if (q.p === `${SHIM}:docProtected`) rec.docProtected = q.o;
if (q.p === `${SHIM}:docPrivate`) rec.docPrivate = q.o;
bySubject.set(q.s, rec);
}
return {
results: {
bindings: [...bySubject.values()].filter((r) => r.id).map((r) => ({
id: { value: r.id! },
docPublic: { value: r.docPublic ?? "" },
docProtected: { value: r.docProtected ?? "" },
docPrivate: { value: r.docPrivate ?? "" },
})),
},
};
}
// An inbox READ — the deposits queued for its owner.
if (query.includes(`<${INBOX}:payload>`)) {
inboxReads.push(anchor ?? "");
if (faults.inboxRead !== null && anchor === faults.inboxRead) throw new Error("RepoNotFound");
const bySubject = new Map<string, Record<string, string>>();
for (const q of quads) {
if (q.g !== anchor) continue;
const rec = bySubject.get(q.s) ?? {};
if (q.p === `${INBOX}:payload`) rec.payload = q.o;
if (q.p === `${INBOX}:ts`) rec.ts = q.o;
if (q.p === `${INBOX}:from`) rec.from = q.o;
bySubject.set(q.s, rec);
}
return {
results: {
bindings: [...bySubject.values()]
.filter((r) => r.payload !== undefined && r.ts !== undefined)
.map((r) => {
const row: Record<string, { value: string }> = {
payload: { value: r.payload! },
ts: { value: r.ts! },
};
if (r.from !== undefined) row.from = { value: r.from };
return row;
}),
},
};
}
// The User branch: the applied Links, and the inbox caps.
if (query.includes(`<${SHIM}:link>`)) {
linksReads += 1;
if (faults.linksRead) throw new Error("RepoNotFound");
return rows(anchor, `${SHIM}:link`, "c");
}
if (query.includes(`<${SHIM}:inboxCap>`)) {
if (faults.inboxCapRead) throw new Error("RepoNotFound");
return rows(anchor, `${SHIM}:inboxCap`, "c");
}
if (query.includes(`<${SHIM}:inboxAddress>`)) return rows(anchor, `${SHIM}:inboxAddress`, "a");
if (query.includes(`<${SHIM}:readCap>`)) return rows(anchor, `${SHIM}:readCap`, "c");
if (query.includes(`<${SHIM}:exposedReadCap>`)) return rows(anchor, `${SHIM}:exposedReadCap`, "c");
if (query.includes(`<${SHIM}:contains>`)) return rows(anchor, `${SHIM}:contains`, "e");
if (query.includes(`${SHIM}:isInbox`)) return rows(anchor, `${SHIM}:isInbox`, "i");
if (query.includes(`${SHIM}:docInbox`)) {
const pm = query.match(/<(urn:ng-eventually:shim:docInbox:[a-z]+)>/);
const pred = pm ? pm[1]! : "";
const sm = query.match(/<([^>]+)>\s+<urn:ng-eventually:shim:docInbox/);
const subj = sm ? sm[1]! : null;
return {
results: {
bindings: quads
.filter((q) => q.g === anchor && q.p === pred && (subj === null || q.s === subj))
.map((q) => ({ d: { value: q.o } })),
},
};
}
// Anchored per-doc read (`SELECT ?s ?p ?o`).
return {
results: {
bindings: quads
.filter((q) => q.g === anchor)
.map((q) => ({ s: { value: q.s }, p: { value: q.p }, o: { value: q.o } })),
},
};
});
return {
doc_create,
sparql_query,
sparql_update,
inboxReads,
linksReadCount: (): number => linksReads,
};
}
/** Wire a clean world: fresh fake broker, fresh caches, nobody connected. */
function inject(faults: Faults) {
const ng = makeFakeNg(faults);
configure({ ng: ng as never, useShape: (() => {}) as never });
configureStoreRegistry({
getSession: async (): Promise<RegistrySession> => SESSION,
normalizeId: (id: string) => id.trim().toLowerCase(),
});
resetRegistryCache();
resetOpenedRepos();
resetCaps();
setCurrentUser(null);
return ng;
}
afterEach(() => {
setCurrentUser(null);
resetConfig();
resetStoreRegistry();
resetRegistryCache();
resetOpenedRepos();
resetCaps();
});
/** Write one triple into `doc`, as a consumer's write path would. */
async function write(doc: Nuri, p: string, o: string): Promise<void> {
await sparqlUpdate(SESSION.sessionId, `INSERT DATA { <${doc}> <${p}> "${o}" }`, doc, "test");
}
/**
* Alice owns a protected note and shares it with Bob — the ordinary way a cap reaches
* someone. Bob's account and inbox come into existence through the system (he signs in
* once), never through a value the test hands across the identity boundary.
*
* Returns the note Alice shared, so a later assertion can ask "does Bob hold it".
*/
async function aliceSharesANoteWithBob(): Promise<Nuri> {
adoptCurrentUser("bob");
await ensureAccount("bob"); // Bob has signed in before: he exists, so he can be shared with.
adoptCurrentUser("alice");
const note = await createEntityDoc("alice", "protected");
await write(note, SECRET, "the-protected-content");
await share(note, "bob");
adoptCurrentUser(null);
return note;
}
/** Does the connected identity hold this document's cap? */
function holds(doc: Nuri): boolean {
return getCaps().capFor(doc) !== undefined;
}
// --- nothing to do: the only two silences that are legitimate ---------------
test("no identity connected: nothing to restore, and the call resolves", async () => {
// Anonymous holds nothing and owns no inbox, so there is genuinely no work. This is the
// one branch `ensureIdentity` can never reach — it has settled an identity by then — and
// it exists for the internal callers (`startConnect` is gated on a non-null id; a test or
// the e2e harness may call in before signing in).
const ng = inject(noFaults());
await expect(connectedUser()).resolves.toBeUndefined();
expect(ng.linksReadCount()).toBe(0);
expect(ng.inboxReads).toEqual([]);
});
test("an identity with no account yet: nothing to restore, and the call resolves", async () => {
// Connecting must not PROVISION (see `connect.ts`): an account that does not exist has no
// Links to restore and no inbox to drain. A genuine absence is therefore silence, and the
// ONLY silence a failed read may not borrow — see the next test.
const ng = inject(noFaults());
adoptCurrentUser("nobody-has-signed-in-as-this");
await expect(connectedUser()).resolves.toBeUndefined();
expect(ng.linksReadCount()).toBe(0);
expect(ng.inboxReads).toEqual([]);
});
// --- the failures, one per collaborator -------------------------------------
test("an account lookup that could not answer is not an absent account: the call rejects", async () => {
// The shipped shape of this defect. The tolerant resolver answers `null` for a read that
// FAILED exactly as for one that found nothing, so a broker that cannot answer looks like
// "you have no account" — which connecting is entitled to pass over in silence. The whole
// restore is then skipped and the promise resolves like a success.
const faults = noFaults();
inject(faults);
await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
resetRegistryCache(); // a fresh session: nothing is answered from a warm cache
faults.accountLookup = true;
await expect(connectedUser()).rejects.toThrow(/RepoNotFound/);
});
test("a Links register that cannot be read fails the connection", async () => {
// The restore step. Its failure is the one with no other symptom at all: every document
// ever shared with this person stays invisible, and an application has no way to tell
// that from "nobody has shared anything with me".
const faults = noFaults();
inject(faults);
const note = await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
await connectedUser(); // a first, healthy connection: the cap is applied durably
resetCaps();
resetRegistryCache();
faults.linksRead = true;
await expect(connectedUser()).rejects.toThrow(/RepoNotFound/);
expect(holds(note)).toBe(false); // and it really did not restore
});
test("an inbox list that cannot be built fails the connection", async () => {
// Enumerating the inboxes resolves the user's own two, minting the document on first
// ask. A broker that cannot create it leaves the drain list unknowable — not empty.
const faults = noFaults();
inject(faults);
adoptCurrentUser("bob");
await ensureAccount("bob"); // exists, but has never opened an inbox
faults.docCreate = true;
await expect(connectedUser()).rejects.toThrow(/cannot create document/);
});
test("a document-inbox list that cannot be read fails the connection", async () => {
// The other half of the drain list: the inboxes this user opened on its own documents.
// Unreadable is not empty — a queue skipped for want of knowing it exists holds a share
// that was delivered and will never be applied, with nothing to see anywhere.
const faults = noFaults();
inject(faults);
adoptCurrentUser("bob");
await userInbox("bob", "public"); // so the OWN inboxes resolve and the fault lands later
await userInbox("bob", "protected");
faults.inboxCapRead = true;
await expect(connectedUser()).rejects.toThrow(/RepoNotFound/);
});
/**
* The one branch where a failure does NOT reject — and the four things that have to hold
* at once for that to be honest. Rewritten 2026-08-16, when the previous contract
* ("stop at the first failure, reject") was reported doing this to a live application:
* one queue it could not apply denied its user the application, at every sign-in, because
* an inbox that fails is not consumed and is still there next time. See `connect.ts`.
*
* A queue is not the session. Failing to REACH the queues still rejects — that case is
* the test above, and it is untouched.
*/
test("an inbox that cannot be drained is reported, the rest are drained, and the session stands", async () => {
const faults = noFaults();
const ng = inject(faults);
const note = await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
const publicInbox = await userInbox("bob", "public"); // the first of the two drained
const protectedInbox = await userInbox("bob", "protected"); // where Alice's share landed
faults.inboxRead = publicInbox;
const reported: string[] = [];
const realError = console.error;
console.error = (...args: unknown[]): void => void reported.push(args.map(String).join(" "));
try {
// 1. The person gets their session. This is what the previous contract denied them.
await connectedUser();
} finally {
console.error = realError;
}
// 2. The queue after the failing one was still drained — a failure that took the others
// down with it lost shares that had nothing to do with it.
expect(ng.inboxReads).toEqual([publicInbox, protectedInbox]);
// 3. …so the share this reconnection was for actually arrived.
expect(holds(note)).toBe(true);
// 4. And it is NOT silence: the failure names the queue and carries the broker's error.
// Ungated — this suite never turns the access log on.
expect(reported.some((line) => line.includes("RepoNotFound"))).toBe(true);
expect(reported.some((line) => line.includes("could not be drained"))).toBe(true);
});
// The property the live report was actually about: not one refused sign-in, but EVERY one
// of them. An inbox is not consumed by failing to be read, so a fault that persists is
// still on the drain list at the next connection — which, under the previous contract, made
// the first refusal permanent rather than transient. Signing in twice over the same
// standing fault is the cheapest way to pin that it no longer is.
test("a queue that keeps failing does not deny the session at the NEXT connection either", async () => {
const faults = noFaults();
const ng = inject(faults);
await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
const publicInbox = await userInbox("bob", "public");
faults.inboxRead = publicInbox; // a standing fault: nothing about it heals
const realError = console.error;
console.error = (): void => undefined;
try {
await connectedUser();
// A second connection, the way a reload produces one: the caches go, the wallet stays.
resetRegistryCache();
resetCaps();
adoptCurrentUser("bob");
await connectedUser();
} finally {
console.error = realError;
}
// Both connections went all the way through the list rather than stopping at the fault.
expect(ng.inboxReads.filter((r) => r === publicInbox).length).toBe(2);
});
// --- abandoning on an identity switch: not a failure ------------------------
test("the identity changes right after the account resolved: abandons, and resolves", async () => {
// Everything below the checkpoint resolves the CURRENT holder when it reads a register,
// so after a switch it would read the WRONG user's. Abandoning loses nothing: the new
// identity's own connection does its own work.
const faults = noFaults();
const ng = inject(faults);
await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
resetRegistryCache();
faults.onQuery = (query) => {
if (query.includes(`<${SHIM}:id>`)) adoptCurrentUser("carol");
};
await expect(connectedUser()).resolves.toBeUndefined();
expect(ng.linksReadCount()).toBe(0);
expect(ng.inboxReads).toEqual([]);
});
test("the identity changes while the Links are being read: abandons, and resolves", async () => {
const faults = noFaults();
const ng = inject(faults);
const note = await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
await connectedUser(); // apply the cap durably, so there IS something to restore
resetCaps();
resetRegistryCache();
const drainedBefore = ng.inboxReads.length; // the healthy connection above drained them
faults.onQuery = (query) => {
if (query.includes(`<${SHIM}:link>`)) adoptCurrentUser("carol");
};
await expect(connectedUser()).resolves.toBeUndefined();
expect(holds(note)).toBe(false); // nothing was filed under the wrong holder
expect(ng.inboxReads.length).toBe(drainedBefore); // and it never reached the queues
});
test("the identity changes between two inboxes: abandons, and resolves", async () => {
const faults = noFaults();
const ng = inject(faults);
adoptCurrentUser("bob");
const publicInbox = await userInbox("bob", "public");
const protectedInbox = await userInbox("bob", "protected");
expect(protectedInbox).not.toBe(publicInbox);
faults.onQuery = (query, anchor) => {
if (query.includes(`<${INBOX}:payload>`) && anchor === publicInbox) adoptCurrentUser("carol");
};
await expect(connectedUser()).resolves.toBeUndefined();
expect(ng.inboxReads).toEqual([publicInbox]); // the checkpoint stopped the loop
});
// --- joining a run already in flight ----------------------------------------
test("a concurrent caller joins the run in flight and inherits its success", async () => {
const ng = inject(noFaults());
await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
const publicInbox = await userInbox("bob", "public");
const protectedInbox = await userInbox("bob", "protected");
resetRegistryCache();
const first = connectedUser();
const second = connectedUser();
await expect(first).resolves.toBeUndefined();
await expect(second).resolves.toBeUndefined();
// ONE run, two callers: each inbox was drained exactly once. Two independent runs
// would show each anchor twice — the memoisation is what the joiner depends on.
expect(ng.inboxReads).toEqual([publicInbox, protectedInbox]);
});
test("a concurrent caller joins the run in flight and inherits its FAILURE", async () => {
// The sibling defect: a run that gives up registers itself as the run in flight FIRST, so
// a caller that did nothing wrong joins it and resolves having done nothing. Inheriting
// the outcome — failure included — is what makes joining safe.
const faults = noFaults();
inject(faults);
await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
resetRegistryCache();
faults.accountLookup = true;
// Both handlers attached in the same tick, as two real concurrent callers would: awaiting
// one and only THEN the other leaves the second rejection momentarily unobserved, which
// the runtime reports as an unhandled rejection rather than as the outcome under test.
const outcomes = await Promise.allSettled([connectedUser(), connectedUser()]);
expect(outcomes.map((o) => o.status)).toEqual(["rejected", "rejected"]);
const reasons = outcomes.flatMap((o) => (o.status === "rejected" ? [String(o.reason)] : []));
expect(reasons).toEqual([expect.stringContaining("RepoNotFound"), expect.stringContaining("RepoNotFound")]);
});
// --- the fire-and-forget entry ----------------------------------------------
test("the fire-and-forget entry reports the failure instead of dropping it", async () => {
// `setCurrentUser` fires the work un-awaited, so there is no caller to reject at. The
// failure must still leave a trace rather than vanish — and it must not surface as an
// unhandled rejection, which would take down whatever runtime the consumer is in.
const faults = noFaults();
inject(faults);
await aliceSharesANoteWithBob();
resetRegistryCache();
faults.accountLookup = true;
const logged: string[] = [];
const original = console.error;
console.error = (...args: unknown[]): void => void logged.push(args.map(String).join(" "));
try {
setCurrentUser("bob");
await expect(connectedUser()).rejects.toThrow(/RepoNotFound/);
} finally {
console.error = original;
}
expect(logged.some((line) => /connect(ing)? failed/i.test(line))).toBe(true);
});
// --- success ----------------------------------------------------------------
test("a healthy connection restores the applied Links and drains every inbox", async () => {
// The normal case, and the reason all of the above matters: this is what an application
// is entitled to assume happened when `ensureIdentity()` came back.
const faults = noFaults();
const ng = inject(faults);
const note = await aliceSharesANoteWithBob();
adoptCurrentUser("bob");
const publicInbox = await userInbox("bob", "public");
const protectedInbox = await userInbox("bob", "protected");
// First connection: the cap is in the inbox, draining APPLIES it (durably, as a Link).
await expect(connectedUser()).resolves.toBeUndefined();
expect(holds(note)).toBe(true);
expect(ng.inboxReads).toEqual([publicInbox, protectedInbox]);
// Second connection, as a later session would: nothing left in the queue, and the cap
// comes back from the durable register alone.
resetCaps();
resetRegistryCache();
await expect(connectedUser()).resolves.toBeUndefined();
expect(holds(note)).toBe(true);
expect(ng.linksReadCount()).toBeGreaterThanOrEqual(1);
});