737729c9ce
Le nom @ng-eventually/sdk entrait en collision avec le SDK de NextGraph, dont ce paquet est justement un polyfill. Impossible d'écrire « le SDK » sans lever l'ambiguïté à chaque phrase — et le contrat publié, lu par une application, était le pire endroit pour laisser traîner ça. packages/sdk → packages/polyfill, @ng-eventually/sdk → @ng-eventually/polyfill, contract_sdk-surface → contract_polyfill-surface, e2e/sdk-entry.ts → e2e/polyfill-entry.ts, docs/sdk-reference.md → docs/polyfill-reference.md. Les occurrences de « SDK » qui désignent celui de NextGraph restent intactes, y compris les chemins dans nextgraph-rs (sdk/js/orm, sdk/js/web). Le tri s'est fait occurrence par occurrence, pas par substitution. Le contrat énonce désormais son identité en une phrase : « This package is a polyfill of NextGraph's SDK. »
268 lines
11 KiB
TypeScript
268 lines
11 KiB
TypeScript
import { getCaps } from "../src/shared-wallet/bootstrap";
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import { test, expect, mock, afterAll } from "bun:test";
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import { readUnion } from "../src/surface/read-model";
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import type { Nuri } from "../src/model/types";
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import { configure } from "../src/index";
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import { configureStoreRegistry, setCurrentUser } from "../src/shared-wallet/bootstrap";
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import { resetCaps } from "../src/shared-wallet/bootstrap";
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// The cap registry is process-wide, so each inject() starts from an empty one:
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// once ANY cap exists the possession gate is in force for every reader, and a
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// suite that never declares caps must not inherit another suite's.
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afterAll(() => {
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resetCaps();
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setCurrentUser(null);
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});
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// A fake `ng` whose sparql_query answers the ANCHORED per-doc query (SELECT ?s ?p ?o
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// WHERE { ?s ?p ?o }, anchor = the doc NURI) with ONLY that doc's triples. There is
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// NO anchorless union scan: each doc is read independently by its own anchor. Each
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// entity subject IRI IS its own document NURI (writeEntity convention), so the
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// fixture keys triples by the doc NURI and returns them for the matching anchor.
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function fakeNgWith(triplesByDoc: Record<string, Array<[string, string]>>) {
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return {
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doc_create: mock(async () => "did:ng:o:new"),
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sparql_update: mock(async () => undefined),
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sparql_query: mock(async (_sid: string, _query: string, _base: unknown, anchor: unknown) => {
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// Every read is ANCHORED to one doc NURI — never anchorless.
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if (anchor === undefined) {
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throw new Error("read-model must NEVER run an anchorless (union) query");
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}
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const doc = anchor as string;
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const triples = triplesByDoc[doc];
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if (!triples) return { results: { bindings: [] } };
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const bindings = triples.map(([p, o]) => ({
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s: { value: doc },
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p: { value: p },
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o: { value: o },
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}));
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return { results: { bindings } };
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}),
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};
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}
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function inject(triplesByDoc: Record<string, Array<[string, string]>>) {
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const ng = fakeNgWith(triplesByDoc);
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resetCaps();
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setCurrentUser(null);
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configure({ ng: ng as any, useShape: (() => {}) as any });
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configureStoreRegistry({
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getSession: async () => ({ sessionId: "sid-rm", privateStoreId: "priv" }),
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normalizeId: (u: string) => u,
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});
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return ng;
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}
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const TYPE = "http://www.w3.org/1999/02/22-rdf-syntax-ns#type";
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const FP = "http://festipod.org/";
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test("readUnion reads each doc with its OWN anchored query (never anchorless)", async () => {
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const ng = inject({
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"did:ng:o:a": [[TYPE, `${FP}Event`], [`${FP}title`, "A"]],
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"did:ng:o:b": [[TYPE, `${FP}Event`], [`${FP}title`, "B"]],
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});
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const subjects = await readUnion(["did:ng:o:a", "did:ng:o:b"]);
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// One anchored query per doc = 2 sparql_query calls, each anchored (c[3] set).
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expect(ng.sparql_query).toHaveBeenCalledTimes(2);
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const anchored = ng.sparql_query.mock.calls.filter((c: unknown[]) => c[3] !== undefined);
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expect(anchored.length).toBe(2);
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// The anchors are exactly the requested doc NURIs.
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expect(new Set(anchored.map((c: unknown[]) => c[3]))).toEqual(
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new Set(["did:ng:o:a", "did:ng:o:b"]),
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);
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expect(subjects.length).toBe(2);
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const a = subjects.find((s) => s.subject === "did:ng:o:a")!;
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expect(a.props[`${FP}title`]).toEqual(["A"]);
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expect(a.graph).toBe("did:ng:o:a");
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});
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test("readUnion groups predicates per subject", async () => {
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inject({
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"did:ng:o:p": [
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[TYPE, `${FP}Participation`],
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[`${FP}event`, "did:ng:o:e"],
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[`${FP}user`, "urn:festipod:user:x"],
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],
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});
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const s = (await readUnion(["did:ng:o:p"]))[0]!;
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expect(s.subject).toBe("did:ng:o:p");
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expect(s.props[`${FP}event`]).toEqual(["did:ng:o:e"]);
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expect(s.props[`${FP}user`]).toEqual(["urn:festipod:user:x"]);
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});
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test("readUnion returns [] for an empty doc set (no query)", async () => {
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const ng = inject({});
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const subjects = await readUnion([]);
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expect(subjects).toEqual([]);
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expect(ng.sparql_query).toHaveBeenCalledTimes(0);
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});
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test("a doc that fails to read is skipped, not aborting the batch", async () => {
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const ng = fakeNgWith({ "did:ng:o:ok": [[TYPE, `${FP}Event`], [`${FP}title`, "ok"]] });
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const orig = ng.sparql_query;
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// Make the anchored read throw for the bad doc only.
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ng.sparql_query = mock(async (sid: string, query: string, base: unknown, anchor: unknown) => {
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if (anchor === "did:ng:o:bad") throw new Error("RepoNotFound");
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return orig(sid, query, base, anchor);
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}) as any;
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configure({ ng: ng as any, useShape: (() => {}) as any });
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configureStoreRegistry({
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getSession: async () => ({ sessionId: "sid-rm", privateStoreId: "priv" }),
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normalizeId: (u: string) => u,
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});
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const subjects = await readUnion(["did:ng:o:ok", "did:ng:o:bad"]);
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// The bad doc failed its read but the good one still lists.
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expect(subjects.map((s) => s.subject)).toEqual(["did:ng:o:ok"]);
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});
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// The possession gate, at the read-model's own level: once ANY cap exists, a doc
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// whose cap is not in what the current holder holds is dropped — however well its
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// NURI resolves. Before the first cap the gate is inert (no regression).
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test("readUnion drops a doc whose cap the holder does not hold", async () => {
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inject({
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"did:ng:o:mine": [[TYPE, `${FP}Event`], [`${FP}title`, "mine"]],
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"did:ng:o:theirs": [[TYPE, `${FP}Event`], [`${FP}title`, "theirs"]],
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});
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const both: Nuri[] = ["did:ng:o:mine", "did:ng:o:theirs"];
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// Inert: no cap issued yet → everything flows through.
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expect((await readUnion(both)).map((s) => s.subject).sort()).toEqual(both);
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// One cap issued → possession is now the rule for every document.
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setCurrentUser("alice");
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getCaps().mint("did:ng:o:mine");
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expect((await readUnion(both)).map((s) => s.subject)).toEqual(["did:ng:o:mine"]);
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// …and for every holder: bob holds nothing, so bob reads nothing.
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setCurrentUser("bob");
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expect(await readUnion(both)).toEqual([]);
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});
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test("readUnion tolerates holes in the list, and refuses a malformed reference", async () => {
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// Two different things that must not be conflated, and conflating them broke a whole
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// reconnect run: an EMPTY entry is absence — a scope index can carry one, and a caller
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// assembling a list from optional values should not have to compact it — while a
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// non-reference is a caller mistake worth a loud error. Validating before filtering
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// turned the first into the second.
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inject({});
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await expect(readUnion(["", null as never, undefined as never])).resolves.toEqual([]);
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await expect(readUnion(["not-a-nuri"])).rejects.toThrow(/not a NextGraph reference/i);
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});
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// ── several subjects inside one document ───────────────────────────────────
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//
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// The fixture above pins every row's subject to the doc NURI, which is what an
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// application writing one entity per document produces — the recommended placement,
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// and the only case it can exercise. A document may nevertheless carry SEVERAL
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// subjects, and upstream that is the provided case, not an accident: the ORM carries
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// `@id` and `@graph` as two distinct read-only properties and fabricates an `@id`
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// when the writer leaves it empty, precisely so objects sharing a `@graph` stay
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// distinguishable. This fixture lets the subject vary so that case can be tested.
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function injectTriples(triplesByDoc: Record<string, Array<[string, string, string]>>) {
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const ng = {
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doc_create: mock(async () => "did:ng:o:new"),
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sparql_update: mock(async () => undefined),
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sparql_query: mock(async (_sid: string, _query: string, _base: unknown, anchor: unknown) => {
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if (anchor === undefined) {
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throw new Error("read-model must NEVER run an anchorless (union) query");
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}
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const triples = triplesByDoc[anchor as string];
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if (!triples) return { results: { bindings: [] } };
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return {
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results: {
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bindings: triples.map(([s, p, o]) => ({
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s: { value: s },
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p: { value: p },
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o: { value: o },
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})),
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},
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};
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}),
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};
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resetCaps();
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setCurrentUser(null);
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configure({ ng, useShape: () => undefined });
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configureStoreRegistry({
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getSession: async () => ({ sessionId: "sid-rm", privateStoreId: "priv" }),
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normalizeId: (u: string) => u,
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});
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return ng;
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}
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test("two subjects in ONE document come back as two entries, unmixed", async () => {
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// The document holds two entities under two IRIs of the consumer's choosing.
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injectTriples({
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"did:ng:o:d": [
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["urn:app:alice", TYPE, `${FP}Person`],
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["urn:app:alice", `${FP}title`, "A"],
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["urn:app:bob", TYPE, `${FP}Person`],
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["urn:app:bob", `${FP}title`, "B"],
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],
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});
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const subjects = await readUnion(["did:ng:o:d"]);
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// Under the old per-document fold this was ONE entry subject'd `did:ng:o:d`,
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// whose `${FP}title` carried BOTH ["A","B"] — two entities conflated into one bag,
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// and both re-labelled with the document's own NURI.
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expect(subjects.length).toBe(2);
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expect(subjects.map((s) => s.subject).sort()).toEqual(["urn:app:alice", "urn:app:bob"]);
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const alice = subjects.find((s) => s.subject === "urn:app:alice")!;
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const bob = subjects.find((s) => s.subject === "urn:app:bob")!;
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expect(alice.props[`${FP}title`]).toEqual(["A"]);
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expect(bob.props[`${FP}title`]).toEqual(["B"]);
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// Both were read from the same document, and `graph` is the reference the caller
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// passed — that is what identifies the document and what goes back into the SDK.
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expect(alice.graph).toBe("did:ng:o:d");
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expect(bob.graph).toBe("did:ng:o:d");
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});
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test("a subject written under an IRI of its own is NOT re-labelled with the doc NURI", async () => {
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injectTriples({
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"did:ng:o:d": [["urn:app:thing", `${FP}title`, "T"]],
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});
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const [only] = await readUnion(["did:ng:o:d"]);
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// The old fold reported `did:ng:o:d` here, a subject the document never carried.
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expect(only!.subject).toBe("urn:app:thing");
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expect(only!.graph).toBe("did:ng:o:d");
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});
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test("the SAME subject IRI in two documents stays two entries, told apart by graph", async () => {
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injectTriples({
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"did:ng:o:a": [["urn:app:shared", `${FP}title`, "in-a"]],
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"did:ng:o:b": [["urn:app:shared", `${FP}title`, "in-b"]],
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});
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const subjects = await readUnion(["did:ng:o:a", "did:ng:o:b"]);
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expect(subjects.length).toBe(2);
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expect(subjects.map((s) => s.graph).sort()).toEqual(["did:ng:o:a", "did:ng:o:b"]);
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// Never merged across documents: an object is identified by its subject WITHIN a graph.
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expect(subjects.find((s) => s.graph === "did:ng:o:a")!.props[`${FP}title`]).toEqual(["in-a"]);
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expect(subjects.find((s) => s.graph === "did:ng:o:b")!.props[`${FP}title`]).toEqual(["in-b"]);
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});
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test("machinery is dropped per subject, and the real subjects beside it survive", async () => {
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injectTriples({
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"did:ng:o:d": [
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["urn:ng-eventually:shim:headerBranch", "urn:ng-eventually:p:inboxAddress", "did:ng:o:inbox"],
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["urn:app:entity", `${FP}title`, "kept"],
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],
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});
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const subjects = await readUnion(["did:ng:o:d"]);
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expect(subjects.map((s) => s.subject)).toEqual(["urn:app:entity"]);
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expect(subjects[0]!.props[`${FP}title`]).toEqual(["kept"]);
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});
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test("a document holding ONLY machinery yields no entry at all", async () => {
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injectTriples({
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"did:ng:o:d": [
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["urn:ng-eventually:shim:headerBranch", "urn:ng-eventually:p:inboxAddress", "did:ng:o:inbox"],
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],
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});
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expect(await readUnion(["did:ng:o:d"])).toEqual([]);
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});
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