01ca965c7f
Coordinate registered resource edits bottom-up into retained exact remote sources. Use one Nix-owned source graph for provisional checking, template publication, explicit baseline upgrades and host activation; retain independent runtime pins. Add scoped contract inspection, historical recovery, derived worklists, crash-safe locks, named dependency adoption and plain-QX structural editing. Repair TODO ownership and template instantiation, and document the supported agent workflow. Validated with protocol and command suites, real jj/Nix convergence and cache checks, TS/React installed-command acceptance, and fresh TODO first-edit acceptance. No live deployment or public publication performed. Props projection generation and a one-command rich feature generator remain explicitly outside this delivery.
296 lines
11 KiB
TypeScript
296 lines
11 KiB
TypeScript
import assert from "node:assert/strict";
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import { test } from "node:test";
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import {
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compileWorkspaceRevision,
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computeCapabilityClosure,
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resolveOperationPlan,
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validateWorkspaceRevision,
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valueType,
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type CapabilityValidationIssueCode,
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type WorkspaceRevision,
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} from "../src/capability-model/index.js";
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import {
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fixtureId,
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makeValidCapabilityWorkspace,
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} from "./fixtures/capability-model.js";
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test("ordinary state rejects managed references even under list/optional wrappers", () => {
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const workspace = makeValidCapabilityWorkspace();
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const state = [...workspace.sharedAttachments, ...workspace.conformances.flatMap((entry) => entry.privateAttachments)].find((entry) => entry.kind === "state")!;
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if (state.kind !== "state") throw new Error("fixture missing state");
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state.valueType = {kind: "list", value: {kind: "optional", value: {kind: "object-ref", expectation: {kind: "atom", atomId: state.attachedTo}}}};
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assert.ok(validateWorkspaceRevision(workspace).some((entry) => entry.message.includes("graph relationships")));
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});
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const expectIssue = (
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workspace: WorkspaceRevision,
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code: CapabilityValidationIssueCode,
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) => {
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const issues = validateWorkspaceRevision(workspace);
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assert.ok(
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issues.some((entry) => entry.code === code),
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`Expected ${code}, got:\n${issues
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.map((entry) => `${entry.code} ${entry.path}: ${entry.message}`)
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.join("\n")}`,
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);
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assert.equal(compileWorkspaceRevision(workspace).ok, false);
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};
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test("constructor dependency input contracts match the selected constructor", () => {
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const workspace = makeValidCapabilityWorkspace();
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const port = workspace.packageImports.flatMap((pkg) => pkg.exports).flatMap((entry) => entry.dependencyPorts)
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.find((port) => port.requirement.kind === "constructor")!;
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assert.equal(port.requirement.kind, "constructor");
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if (port.requirement.kind !== "constructor") return;
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port.requirement.inputType = valueType.unit;
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assert.deepEqual(validateWorkspaceRevision(workspace), []);
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port.requirement.inputType = valueType.string;
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expectIssue(workspace, "invalid-dependency-binding");
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});
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const conformance = (
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workspace: WorkspaceRevision,
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identity: Pick<(typeof workspace.conformances)[number], "atomId" | "interfaceRevisionId">,
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) => {
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const result = workspace.conformances.find((entry) =>
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entry.atomId === identity.atomId &&
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entry.interfaceRevisionId === identity.interfaceRevisionId
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);
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assert.ok(
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result,
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`Missing fixture conformance ${identity.atomId} as ${identity.interfaceRevisionId}`,
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);
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return result;
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};
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test("the representative v1 workspace compiles to native and package plans", () => {
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const workspace = makeValidCapabilityWorkspace();
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assert.deepEqual(validateWorkspaceRevision(workspace), []);
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const compiled = compileWorkspaceRevision(workspace);
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assert.equal(compiled.ok, true);
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if (!compiled.ok) return;
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const title = resolveOperationPlan(
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compiled.plan,
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fixtureId.project,
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fixtureId.namedV1,
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fixtureId.namedGet,
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);
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assert.equal(title?.kind, "state");
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if (title?.kind === "state") {
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assert.equal(title.binding.slotId, fixtureId.projectTitle);
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assert.equal(title.binding.primitive, "read");
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assert.deepEqual(title.attachment.owner, { kind: "workspace" });
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}
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const owner = resolveOperationPlan(
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compiled.plan,
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fixtureId.project,
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fixtureId.ownedV1,
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fixtureId.ownerResolve,
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);
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assert.equal(owner?.kind, "edge");
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if (owner?.kind === "edge") {
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assert.equal(owner.binding.edgeTypeId, fixtureId.projectOwner);
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assert.deepEqual(owner.attachment.owner, {
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kind: "conformance",
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...fixtureId.projectOwnedConformance,
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});
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}
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const summary = resolveOperationPlan(
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compiled.plan,
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fixtureId.project,
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fixtureId.summaryV1,
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fixtureId.summaryGet,
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);
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assert.equal(summary?.kind, "package");
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if (summary?.kind === "package") {
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assert.equal(summary.packageRevision.revisionId, fixtureId.todoRuntimeV1);
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assert.equal(summary.packageExport.id, fixtureId.summaryGetExport);
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assert.deepEqual(
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summary.dependencies.map((entry) => [entry.port.id, entry.binding.kind]),
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[
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[fixtureId.titlePort, "state"],
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[fixtureId.namedPort, "interface"],
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[fixtureId.personPort, "constructor"],
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],
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);
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}
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});
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test("the closure is an exact tree-shaking boundary", () => {
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const result = compileWorkspaceRevision(makeValidCapabilityWorkspace());
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assert.equal(result.ok, true);
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if (!result.ok) return;
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const closure = computeCapabilityClosure(result.plan, [
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{ atomId: fixtureId.project, interfaceRevisionId: fixtureId.summaryV1 },
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]);
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assert.deepEqual(closure.conformances, [
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fixtureId.projectNamedConformance,
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fixtureId.projectSummaryConformance,
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]);
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assert.deepEqual(closure.packageRevisionIds, [fixtureId.todoRuntimeV1]);
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assert.deepEqual(closure.attachmentIds, [fixtureId.projectTitle]);
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assert.deepEqual(closure.constructorAtomIds, [fixtureId.person]);
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});
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test("compiled plans are snapshots, not mutable authoring state", () => {
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const workspace = makeValidCapabilityWorkspace();
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const result = compileWorkspaceRevision(workspace);
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assert.equal(result.ok, true);
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if (!result.ok) return;
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conformance(workspace, fixtureId.projectNamedConformance)
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.operationBindings[0]!.binding = {
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kind: "state",
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slotId: fixtureId.personName,
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primitive: "read",
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};
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const resolved = resolveOperationPlan(
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result.plan,
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fixtureId.project,
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fixtureId.namedV1,
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fixtureId.namedGet,
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);
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assert.equal(resolved?.kind, "state");
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if (resolved?.kind === "state") {
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assert.equal(resolved.binding.slotId, fixtureId.projectTitle);
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}
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});
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test("a conformance binds every operation exactly once", () => {
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const missing = makeValidCapabilityWorkspace();
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conformance(missing, fixtureId.projectNamedConformance).operationBindings.pop();
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expectIssue(missing, "missing-operation-binding");
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const duplicate = makeValidCapabilityWorkspace();
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const bindings = conformance(
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duplicate,
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fixtureId.projectNamedConformance,
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).operationBindings;
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bindings.push(structuredClone(bindings[0]!));
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expectIssue(duplicate, "duplicate-operation-binding");
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});
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test("private attachments are visible only to their owning conformance", () => {
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const workspace = makeValidCapabilityWorkspace();
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const binding = conformance(
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workspace,
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fixtureId.projectNamedConformance,
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).operationBindings[0]!.binding;
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assert.equal(binding.kind, "state");
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if (binding.kind !== "state") return;
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binding.slotId = fixtureId.personName;
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expectIssue(workspace, "private-attachment-access");
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});
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test("related-object dependency views cannot traverse another conformance's private edge", () => {
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const workspace = makeValidCapabilityWorkspace();
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const packageBinding = conformance(
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workspace,
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fixtureId.projectSummaryConformance,
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).operationBindings[0]!.binding;
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assert.equal(packageBinding.kind, "package");
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if (packageBinding.kind !== "package") return;
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const named = packageBinding.dependencies.find(
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(dependency) => dependency.portId === fixtureId.namedPort,
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);
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assert.ok(named && named.binding.kind === "interface");
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named.binding.via = {
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edgeTypeId: fixtureId.projectOwner,
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projectionId: fixtureId.projectOwnerProjection,
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};
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expectIssue(workspace, "private-attachment-access");
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const owner = conformance(workspace, fixtureId.projectOwnedConformance);
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const edge = owner.privateAttachments.find((entry) => entry.kind === "edge" && entry.id === fixtureId.projectOwner);
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assert.ok(edge?.kind === "edge");
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edge.endpoints.find((endpoint) => endpoint.projectionId === fixtureId.projectOwnerProjection)!.publicTraversal = true;
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assert.equal(validateWorkspaceRevision(workspace).some((entry) => entry.code === "private-attachment-access"), false, "Only an explicitly exported read-only traversal crosses ownership");
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});
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test("public traversal permits a native inverse read without exporting mutation authority", () => {
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const workspace = makeValidCapabilityWorkspace();
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const owned = conformance(workspace, fixtureId.projectOwnedConformance);
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const index = owned.privateAttachments.findIndex(entry => entry.kind === "edge" && entry.id === fixtureId.projectOwner);
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const edge = owned.privateAttachments.splice(index, 1)[0];
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assert.ok(edge?.kind === "edge");
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conformance(workspace, fixtureId.projectNamedConformance).privateAttachments.push(edge);
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expectIssue(workspace, "private-attachment-access");
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edge.endpoints.find(endpoint => endpoint.projectionId === fixtureId.projectOwnerProjection)!.publicTraversal = true;
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const readPath = `conformances[${workspace.conformances.indexOf(owned)}].operationBindings[0]`;
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assert.equal(validateWorkspaceRevision(workspace).some(issue => issue.code === "private-attachment-access" && issue.path.startsWith(readPath)), false);
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const binding = owned.operationBindings[0].binding;
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assert.ok(binding.kind === "edge");
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binding.primitive = "connect";
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expectIssue(workspace, "private-attachment-access");
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});
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test("native state and edge providers must match operation shape", () => {
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const stateWorkspace = makeValidCapabilityWorkspace();
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const state = conformance(
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stateWorkspace,
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fixtureId.projectNamedConformance,
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).operationBindings[0]!.binding;
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assert.equal(state.kind, "state");
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if (state.kind === "state") state.primitive = "write";
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expectIssue(stateWorkspace, "invalid-state-binding");
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const edgeWorkspace = makeValidCapabilityWorkspace();
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const edge = conformance(
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edgeWorkspace,
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fixtureId.projectOwnedConformance,
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).operationBindings[0]!.binding;
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assert.equal(edge.kind, "edge");
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if (edge.kind === "edge") edge.primitive = "connect";
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expectIssue(edgeWorkspace, "invalid-edge-binding");
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});
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test("package dependencies are complete, exact, and explicitly injected", () => {
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const missing = makeValidCapabilityWorkspace();
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const packageBinding = conformance(
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missing,
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fixtureId.projectSummaryConformance,
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).operationBindings[0]!.binding;
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assert.equal(packageBinding.kind, "package");
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if (packageBinding.kind === "package") packageBinding.dependencies.pop();
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expectIssue(missing, "invalid-dependency-binding");
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const wrongType = makeValidCapabilityWorkspace();
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const summaryExport = wrongType.packageImports[0]!.exports.find(
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(entry) => entry.id === fixtureId.summaryGetExport,
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);
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assert.ok(summaryExport);
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summaryExport.dependencyPorts[0]!.requirement = {
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kind: "state",
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valueType: valueType.int32,
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primitives: ["read"],
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};
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expectIssue(wrongType, "invalid-dependency-binding");
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});
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test("package receiver requirements cannot depend on themselves", () => {
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const workspace = makeValidCapabilityWorkspace();
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const summaryExport = workspace.packageImports[0]!.exports.find(
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(entry) => entry.id === fixtureId.summaryGetExport,
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);
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assert.ok(summaryExport && summaryExport.kind === "operation");
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summaryExport.receiverRequirement = {
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kind: "all-interfaces",
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interfaceRevisionIds: [fixtureId.summaryV1],
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};
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summaryExport.dependencyPorts = [];
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const packageBinding = conformance(
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workspace,
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fixtureId.projectSummaryConformance,
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).operationBindings[0]!.binding;
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assert.equal(packageBinding.kind, "package");
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if (packageBinding.kind === "package") packageBinding.dependencies = [];
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expectIssue(workspace, "cyclic-conformance-requirement");
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});
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test("constructors are statically checked", () => {
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const badConstructor = makeValidCapabilityWorkspace();
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badConstructor.constructors[0]!.exportId = fixtureId.summaryGetExport;
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expectIssue(badConstructor, "invalid-constructor");
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});
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