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ng-eventually/packages/polyfill/test/deferred-inbox-processing.test.ts
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TypeScript

/**
* The inbox-processing service this deployment has not got, emulated by a timer.
*
* A deposit used to sit in an inbox until its owner next connected — hours, on a page
* nobody reloads. `emulated-verifier/inbox-processor.ts` arms a one-shot timer on the
* TARGET's inbox instead, so the deposit converges while the depositor's session is still
* the one in the page. That is identity usurpation, and every test here is about the two
* things that make it acceptable: the result lands in the OWNER's space and nowhere else,
* and the depositor's session comes out of it exactly as it went in.
*
* ── What the actors hand each other, and what they do not ─────────────────
* Nobody is handed an inbox address. Each depositor calls `inbox.share(doc, toUser)` and
* names a document and a person, which is all an application has; the address is resolved
* inside. The one NURI the TEST resolves for itself (`userInbox`) is used only to count
* reads and to inspect what landed — never given to an actor.
*
* ── Time is closed, not slept through ────────────────────────────────────
* `runScheduledInboxProcessingNow()` fires the windows a deposit has ALREADY armed — the
* same runs, the same holder, the same effects, minus the twenty seconds. It cannot name an
* inbox, so it fabricates nothing: every state asserted below is one the timer produces on
* its own.
*/
import { test, expect, mock, afterEach } from "bun:test";
import * as polyfill from "../src/index";
import { configure } from "../src/index";
import {
configureStoreRegistry,
getCaps,
resetCaps,
resetConfig,
resetStoreRegistry,
setCurrentUser,
getCurrentUser,
} from "../src/shared-wallet/bootstrap";
import {
createEntityDoc,
resetRegistryCache,
resolveAccount,
resolveWriteGraph,
userInbox,
} from "../src/shared-wallet/account-registry";
import type { RegistrySession } from "../src/shared-wallet/account-registry";
import { connectedUser } from "../src/emulated-verifier/connect";
import {
cancelScheduledInboxProcessing,
runScheduledInboxProcessingNow,
} from "../src/emulated-verifier/inbox-processor";
import { resetOpenedRepos } from "../src/emulated-verifier/open-repo";
import { share } from "../src/surface/inbox";
import { readUnion } from "../src/surface/read-model";
import { sparqlUpdate } from "../src/surface/docs";
import type { Nuri } from "../src/model/types";
const SESSION: RegistrySession = { sessionId: "sid-deferred", privateStoreId: "PRIV-DEFERRED" };
const SHIM = "urn:ng-eventually:shim";
const INBOX = "urn:ng-eventually:inbox";
const SECRET = "urn:e2e:secret";
interface Quad { g: string; s: string; p: string; o: string }
/** What the broker refuses to do. Mutable after `inject`, so a test builds a healthy world
* first and breaks only the one call it is about — the fault is the broker's, never a
* reach into the library to make one of its own functions reject. */
interface Faults {
/** The anchored read of THIS inbox document's deposits throws. */
depositsRead: Nuri | null;
}
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`: the shim SPARQL, the inbox SPARQL, and the anchored per-doc read. */
function makeFakeNg(faults: Faults) {
const quads: Quad[] = [];
let docCounter = 0;
const doc_create = mock(async () => `did:ng:o:doc${++docCounter}`);
const sparql_update = mock(async (...a: unknown[]) => {
const query = a[1] as string;
const anchor = a[2] as string | undefined;
if (!anchor) return undefined;
const del = query.match(/^\s*DELETE\s+WHERE\s*\{\s*<([^>]+)>\s+<([^>]+)>\s+\?/);
if (del) {
const [s0, p0] = [del[1]!, del[2]!];
for (let i = quads.length - 1; i >= 0; i--) {
const q = quads[i]!;
if (q.g === anchor && q.s === s0 && q.p === p0) quads.splice(i, 1);
}
return undefined;
}
const gm = query.match(/GRAPH\s+<([^>]+)>\s*\{([\s\S]*)\}/);
const body = gm ? gm[2]! : query.replace(/^\s*INSERT DATA\s*\{/, "").replace(/\}\s*$/, "");
const sm = body.match(/<([^>]+)>/);
if (!sm) return undefined;
const s = sm[1]!;
const pairRe = /(?:a|<([^>]+)>)\s+(?:"((?:[^"\\]|\\.)*)"|<([^>]+)>)/g;
let m: RegExpExecArray | null;
const after = body.slice(body.indexOf(sm[0]) + sm[0].length);
while ((m = pairRe.exec(after)) !== null) {
const p = m[1] ?? (query.includes(`${INBOX}:Deposit`) ? `${INBOX}:Deposit` : `${SHIM}:Account`);
const o = m[2] !== undefined ? unescapeLiteral(m[2]) : (m[3] ?? "");
quads.push({ g: anchor, s, p, o });
}
return undefined;
});
const sparql_query = mock(async (...a: unknown[]) => {
const query = a[1] as string;
const anchor = a[3] as string | undefined;
const byPred = (pred: string, v: string) => ({
results: {
bindings: quads
.filter((q) => q.g === anchor && q.p === pred)
.map((q) => ({ [v]: { value: q.o } })),
},
});
if (query.includes(`<${SHIM}:shimDoc>`)) return byPred(`${SHIM}:shimDoc`, "shimDoc");
if (query.includes(`<${SHIM}:id>`)) {
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 ?? "" },
})),
},
};
}
if (query.includes(`<${INBOX}:payload>`)) {
// The one failure this fake can inject, at the platform boundary: the anchored read
// of an inbox document throws, exactly as the engine hard-errors for a repo it
// cannot resolve (`RepoNotFound`, `engine/verifier/src/request_processor.rs:264`).
if (faults.depositsRead !== null && faults.depositsRead === anchor) {
throw new Error("RepoNotFound");
}
const bySubject = new Map<string, Record<string, string>>();
for (const q of quads) {
if (q.g !== anchor) continue;
const rec = bySubject.get(q.s) ?? {};
if (q.p === `${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;
}),
},
};
}
if (query.includes(`<${SHIM}:inboxCap>`)) return byPred(`${SHIM}:inboxCap`, "c");
if (query.includes(`<${SHIM}:inboxAddress>`)) return byPred(`${SHIM}:inboxAddress`, "a");
if (query.includes(`<${SHIM}:readCap>`)) return byPred(`${SHIM}:readCap`, "c");
if (query.includes(`<${SHIM}:link>`)) return byPred(`${SHIM}:link`, "c");
if (query.includes(`${SHIM}:isInbox`)) return byPred(`${SHIM}:isInbox`, "i");
// Shim `inboxOwner` SELECT — WHOSE inbox a NURI is, the emulated routing entry the
// deferred service resolves its holder from. Keyed by the INBOX (the subject), as
// upstream's `inboxes: PubKey → RepoId` is keyed by the inbox's pubkey.
if (query.includes(`<${SHIM}:inboxOwner>`)) {
const sm = query.match(/<([^>]+)>\s+<urn:ng-eventually:shim:inboxOwner>/);
const subj = sm ? sm[1]! : null;
return {
results: {
bindings: quads
.filter((q) => q.g === anchor && q.p === `${SHIM}:inboxOwner` && q.s === subj)
.map((q) => ({ u: { value: q.o } })),
},
};
}
if (query.includes(`${SHIM}:docInbox`)) {
const pm = query.match(/<(urn:ng-eventually:shim:docInbox:[a-z]+)>/);
const pred = pm ? pm[1]! : "";
const sm = query.match(/<([^>]+)>\s+<urn:ng-eventually:shim:docInbox/);
const subj = sm ? sm[1]! : null;
return {
results: {
bindings: quads
.filter((q) => q.g === anchor && q.p === pred && (subj === null || q.s === subj))
.map((q) => ({ d: { value: q.o } })),
},
};
}
if (query.includes(`<${SHIM}:exposedReadCap>`)) return byPred(`${SHIM}:exposedReadCap`, "c");
if (query.includes(`<${SHIM}:contains>`)) return byPred(`${SHIM}:contains`, "e");
return {
results: {
bindings: quads
.filter((q) => q.g === anchor)
.map((q) => ({ s: { value: q.s }, p: { value: q.p }, o: { value: q.o } })),
},
};
});
return { doc_create, sparql_update, sparql_query, quads };
}
let fake: ReturnType<typeof makeFakeNg>;
let faults: Faults;
function inject() {
faults = { depositsRead: null };
fake = makeFakeNg(faults);
configure({ ng: fake as never, useShape: (() => {}) as never });
configureStoreRegistry({ getSession: async () => SESSION });
resetRegistryCache();
resetOpenedRepos();
resetCaps();
setCurrentUser(null);
}
afterEach(() => {
cancelScheduledInboxProcessing();
resetConfig();
resetStoreRegistry();
resetCaps();
resetRegistryCache();
resetOpenedRepos();
setCurrentUser(null);
});
/**
* Bob has been in the page once — which is what makes him someone a share can NAME
* (`inbox.share` refuses a recipient nobody has ever signed in as). Nothing of his crosses
* to the depositors afterwards: they name the person, never his address.
*/
async function bobSignsInOnce(): Promise<void> {
setCurrentUser("bob");
await resolveWriteGraph("bob", "protected");
setCurrentUser(null);
}
/** Write one triple into `doc`, as the consumer's write path would. */
async function write(doc: Nuri, p: string, o: string): Promise<void> {
await sparqlUpdate(SESSION.sessionId, `INSERT DATA { <${doc}> <${p}> "${o}" }`, doc, "test");
}
/** The values `p` carries in `docs`, as the CURRENT holder reads them. */
async function readValues(docs: Nuri[], p: string): Promise<string[]> {
const subjects = await readUnion(docs);
return subjects.flatMap((s) => s.props[p] ?? []);
}
/** How many times an inbox document's deposits have been read — one per drain. */
function depositReadsOf(inbox: Nuri): number {
return fake.sparql_query.mock.calls.filter(
(c) => c[3] === inbox && String(c[1]).includes(`${INBOX}:payload`),
).length;
}
/** The Links durably filed on a user's User branch — the emulated `AddLink` records. */
async function linksFiledFor(id: string): Promise<string[]> {
const record = await resolveAccount(id);
const store = record?.docPrivate;
if (!store) return [];
return fake.quads.filter((q) => q.g === store && q.p === `${SHIM}:link`).map((q) => q.o);
}
// --- the drain acts for the OWNER, and touches nothing of the depositor's ---
test("a deposit is drained for the inbox's OWNER, while the depositor still holds the session", async () => {
inject();
await bobSignsInOnce();
// Carol shares one of her documents with Bob. Her deposit is in Bob's inbox, unapplied.
setCurrentUser("carol");
const carolDoc = await createEntityDoc("carol", "protected");
await write(carolDoc, SECRET, "carol's content");
await share(carolDoc, "bob");
// Alice, later, shares one of hers with Bob too. Neither of them is ever handed an
// address: `share` names a document and a person.
setCurrentUser("alice");
const aliceDoc = await createEntityDoc("alice", "protected");
await write(aliceDoc, SECRET, "alice's content");
await share(aliceDoc, "bob");
// Before the window closes: nothing has been applied for anyone.
const caps = getCaps();
expect(caps.capForHolder("bob", carolDoc)).toBeUndefined();
expect(caps.capForHolder("bob", aliceDoc)).toBeUndefined();
// The service picks the deposits up. Alice is the connected identity throughout.
await runScheduledInboxProcessingNow();
// The session is untouched — and this is the assertion that matters, because the drain
// read an inbox holding a Link for CAROL's document. Had it filed against whoever was
// connected, Alice would now hold a capability nobody gave her.
expect(getCurrentUser()).toBe("alice");
expect(caps.capForHolder("alice", carolDoc)).toBeUndefined();
expect(await readValues([carolDoc], SECRET)).toEqual([]);
expect(await linksFiledFor("alice")).toEqual([]);
// …and both Links landed in Bob's space instead.
expect(caps.capForHolder("bob", carolDoc)).toBeDefined();
expect(caps.capForHolder("bob", aliceDoc)).toBeDefined();
expect((await linksFiledFor("bob")).length).toBe(2);
});
test("what the drain filed for the owner is DURABLE: he restores it with his inbox emptied", async () => {
inject();
await bobSignsInOnce();
setCurrentUser("alice");
const aliceDoc = await createEntityDoc("alice", "protected");
await write(aliceDoc, SECRET, "the-protected-content");
await share(aliceDoc, "bob");
await runScheduledInboxProcessingNow();
// EMPTY the inbox, as a consumed queue would be, and drop every in-memory cap — so what
// Bob recovers below can only have come from his own User branch, where the drain filed
// it. Without that, he would simply be draining the queue himself on connection, which
// is the behaviour this service exists to get ahead of.
const bobInbox = await userInbox("bob", "protected");
for (let k = fake.quads.length - 1; k >= 0; k--) {
if (fake.quads[k]!.g === bobInbox) fake.quads.splice(k, 1);
}
resetCaps();
setCurrentUser("alice");
await createEntityDoc("alice", "private"); // re-arms the emulation: a cap exists again
setCurrentUser("bob");
expect(getCaps().capFor(aliceDoc)).toBeUndefined(); // he holds nothing yet
await connectedUser();
expect(getCaps().capFor(aliceDoc)).toBeDefined();
expect(await readValues([aliceDoc], SECRET)).toEqual(["the-protected-content"]);
});
// --- coalescing --------------------------------------------------------------
test("several deposits inside the window produce exactly ONE drain, and lose nothing", async () => {
inject();
await bobSignsInOnce();
setCurrentUser("alice");
const docs: Nuri[] = [];
for (const marker of ["one", "two", "three"]) {
const doc = await createEntityDoc("alice", "protected");
await write(doc, SECRET, marker);
docs.push(doc);
}
const bobInbox = await userInbox("bob", "protected");
const readsBefore = depositReadsOf(bobInbox);
for (const doc of docs) await share(doc, "bob");
// The window is open, not running: depositing processes nothing by itself.
expect(depositReadsOf(bobInbox)).toBe(readsBefore);
await runScheduledInboxProcessingNow();
// ONE pass over the queue for three deposits. Two passes would race each other on the
// very writes the pass makes (`addLink`, on the owner's User branch).
expect(depositReadsOf(bobInbox)).toBe(readsBefore + 1);
// …and coalescing loses nothing: the one pass reads the whole queue.
for (const doc of docs) expect(getCaps().capForHolder("bob", doc)).toBeDefined();
expect((await linksFiledFor("bob")).length).toBe(3);
});
test("a deposit after the window has closed arms a NEW one", async () => {
inject();
await bobSignsInOnce();
setCurrentUser("alice");
const first = await createEntityDoc("alice", "protected");
const second = await createEntityDoc("alice", "protected");
const bobInbox = await userInbox("bob", "protected");
const readsBefore = depositReadsOf(bobInbox);
await share(first, "bob");
await runScheduledInboxProcessingNow();
await share(second, "bob");
await runScheduledInboxProcessingNow();
expect(depositReadsOf(bobInbox)).toBe(readsBefore + 2);
expect(getCaps().capForHolder("bob", second)).toBeDefined();
});
// --- failure ----------------------------------------------------------------
test("a drain that fails says so in the package's log, and rejects into nobody", async () => {
inject();
await bobSignsInOnce();
setCurrentUser("alice");
const doc = await createEntityDoc("alice", "protected");
await write(doc, SECRET, "content");
const bobInbox = await userInbox("bob", "protected");
// The deposit itself must still succeed — what breaks is the drain that follows it.
await share(doc, "bob");
faults.depositsRead = bobInbox;
const errors: string[] = [];
const realError = console.error;
console.error = ((...args: unknown[]) => {
errors.push(args.map((a) => String(a)).join(" "));
}) as typeof console.error;
try {
// Resolves. The application never asked for this work, so it must not be handed a
// rejection for it — and an unhandled one would take the runtime down.
await expect(runScheduledInboxProcessingNow()).resolves.toBeUndefined();
} finally {
console.error = realError;
}
// The wording is the SHARED reporter's since 2026-08-17 (`emulated-verifier/inbox-drain.ts`):
// the timer is no longer the only thing that drains an inbox — the continuous observation
// does too, through the same queue — so the line names the act and not the schedule.
const reported = errors.filter((line) => /could not apply what is in this inbox/.test(line));
expect(reported.length).toBe(1);
// Prefixed by the CONNECTED identity, like every other polyfill-layer line — which is
// what makes a drain running under someone else's session legible in a live trace.
expect(reported[0]).toContain("[alice][polyfill]");
expect(reported[0]).toContain("RepoNotFound");
// Nothing was applied on a drain that could not read, and nothing was applied for the
// depositor either: a failure leaves the deposit where it was, waiting for its owner.
expect(getCaps().capForHolder("bob", doc)).toBeUndefined();
expect(await linksFiledFor("alice")).toEqual([]);
});
test("an inbox the shim records no owner for is reported, not drained for whoever is connected", async () => {
inject();
await bobSignsInOnce();
setCurrentUser("alice");
const doc = await createEntityDoc("alice", "protected");
await write(doc, SECRET, "content");
const bobInbox = await userInbox("bob", "protected");
await share(doc, "bob");
// A wallet written before inboxes carried a routing entry — the record simply is not
// there. Drained for the connected identity, this is exactly how a capability addressed
// to Bob ends up in Alice's hands, so it has to refuse and say so.
for (let k = fake.quads.length - 1; k >= 0; k--) {
if (fake.quads[k]!.p === `${SHIM}:inboxOwner`) fake.quads.splice(k, 1);
}
resetRegistryCache(); // …and the session's memo of it goes too
const errors: string[] = [];
const realError = console.error;
console.error = ((...args: unknown[]) => {
errors.push(args.map((a) => String(a)).join(" "));
}) as typeof console.error;
try {
await runScheduledInboxProcessingNow();
} finally {
console.error = realError;
}
expect(errors.some((l) => /records no owner for this inbox/.test(l))).toBe(true);
expect(getCaps().capForHolder("alice", doc)).toBeDefined(); // hers, she created it
expect(await linksFiledFor("alice")).toEqual([]); // and nothing of Bob's was filed for her
expect(depositReadsOf(bobInbox)).toBe(0); // the queue was never even read
});
// --- the surface ------------------------------------------------------------
test("nothing about the deferred service reaches the published surface", () => {
// The published entry, as an application really sees it at runtime. A "process now", a
// delay knob, or any way to name another user's inbox would show up here — and each of
// them would publish a call that processes somebody else's queue, which is the one thing
// the shared-wallet emulation cannot survive.
expect(Object.keys(polyfill).sort()).toEqual([
"configure",
"docChangeType",
"docs",
"ensureIdentity",
"inbox",
"init",
"initNg",
"ng",
"readUnion",
"storeRegistry",
"subscribeDoc",
"subscribeDocs",
"useShape",
"watchShape",
]);
expect(Object.keys(polyfill.inbox).sort()).toEqual([
"post",
"postToDocument",
"processInbox",
"read",
"readForDocument",
"readSynced",
// Added 2026-08-17. It names a DOCUMENT, like every other door an application has
// here: the two reads it composes were published separately, so reaching the synced
// one meant holding an inbox address. It processes nobody else's queue — the owner
// guard is `readSynced`'s, unchanged.
"readSyncedForDocument",
"share",
"watch",
]);
expect(Object.keys(polyfill.docs).sort()).toEqual([
"docCreate",
"sparqlQuery",
"sparqlUpdate",
]);
expect(Object.keys(polyfill.storeRegistry).sort()).toEqual([
"createEntityDoc",
"listMyEntityDocs",
"openDocumentInbox",
"resolveScopeGraph",
"resolveWriteGraph",
]);
});