fix(housekeeping): close schema reflection escapes
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3 files changed
+539
-37
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@@ -5,6 +5,7 @@ import type { HousekeepingCapabilityContext } from "../contracts";
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import { anyCapability, fail, ok } from "../contracts";
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import { dispatchHousekeepingCommand } from "./dispatcher";
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import {
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getHousekeepingCommand,
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type HousekeepingCommand,
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registerHousekeepingCommand,
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} from "./registry";
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@@ -150,6 +151,129 @@ describe("dispatchHousekeepingCommand", () => {
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expect(executed).toBe(false);
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});
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it("uses unchanged private validation after public descriptor mutation attempts", async () => {
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const commandId = "system.dispatch.reflective-schema-mutation";
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let executions = 0;
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register(
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baseCommand(commandId, {
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input: z.object({
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objectDescriptor: z.string().min(3),
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objectDescriptors: z.string().min(3),
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reflectDescriptor: z.string().min(3),
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}),
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execute: async (context) => {
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executions += 1;
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return ok(null, context.correlationId);
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},
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}),
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);
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const registered = getHousekeepingCommand(commandId);
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if (!registered) throw new Error("registered command missing");
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const readers = [
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["objectDescriptor", Object.getOwnPropertyDescriptor],
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[
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"objectDescriptors",
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(target: object, property: PropertyKey) =>
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Reflect.get(Object.getOwnPropertyDescriptors(target), property) as
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| PropertyDescriptor
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| undefined,
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],
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["reflectDescriptor", Reflect.getOwnPropertyDescriptor],
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] as const;
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const descriptorValue = (
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target: object,
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property: PropertyKey,
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readDescriptor: (
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target: object,
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property: PropertyKey,
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) => PropertyDescriptor | undefined,
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): unknown => {
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const descriptor = readDescriptor(target, property);
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if (!descriptor) {
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throw new Error(`missing descriptor: ${String(property)}`);
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}
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if ("value" in descriptor) return descriptor.value;
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if (descriptor.get) return Reflect.apply(descriptor.get, target, []);
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return undefined;
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};
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for (const [field, readDescriptor] of readers) {
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const definition = descriptorValue(
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registered.input,
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"def",
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readDescriptor,
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) as object;
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const shape = descriptorValue(
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definition,
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"shape",
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readDescriptor,
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) as Record<string, z.ZodType>;
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const child = shape[field];
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if (!child) throw new Error(`public child missing: ${field}`);
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const childDefinition = descriptorValue(
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child,
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"def",
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readDescriptor,
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) as object;
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const checks = descriptorValue(
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childDefinition,
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"checks",
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readDescriptor,
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) as readonly object[];
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const internal = descriptorValue(
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checks[0] as object,
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"_zod",
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readDescriptor,
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) as object;
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const checkDefinition = descriptorValue(
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internal,
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"def",
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readDescriptor,
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) as { minimum: number };
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try {
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shape[field] = z.number();
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} catch {
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// A readonly facade may reject the assignment.
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}
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try {
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checkDefinition.minimum = 0;
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} catch {
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// A readonly facade may reject the assignment.
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}
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}
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const forged = await dispatchHousekeepingCommand(
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{
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commandId,
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input: {
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objectDescriptor: 7,
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objectDescriptors: 7,
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reflectDescriptor: 7,
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},
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},
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dependencies(),
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);
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expect(forged).toMatchObject({
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ok: false,
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error: { code: "VALIDATION" },
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});
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expect(executions).toBe(0);
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const valid = await dispatchHousekeepingCommand(
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{
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commandId,
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input: {
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objectDescriptor: "valid",
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objectDescriptors: "valid",
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reflectDescriptor: "valid",
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},
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},
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dependencies(),
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);
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expect(valid).toMatchObject({ ok: true });
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expect(executions).toBe(1);
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});
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it("rejects a missing required reason before the command can execute", async () => {
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let executed = false;
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const audit = auditRecorder();
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@@ -25,6 +25,52 @@ function command(
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};
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}
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type DescriptorReader = (
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target: object,
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property: PropertyKey,
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) => PropertyDescriptor | undefined;
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const descriptorReaders = [
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[
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"Object.getOwnPropertyDescriptor",
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"object-descriptor",
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Object.getOwnPropertyDescriptor,
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],
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[
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"Object.getOwnPropertyDescriptors",
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"object-descriptors",
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(target: object, property: PropertyKey) =>
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Reflect.get(Object.getOwnPropertyDescriptors(target), property) as
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| PropertyDescriptor
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| undefined,
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],
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[
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"Reflect.getOwnPropertyDescriptor",
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"reflect-descriptor",
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Reflect.getOwnPropertyDescriptor,
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],
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] as const satisfies readonly (readonly [string, string, DescriptorReader])[];
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function readDescriptorValue(
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target: object,
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property: PropertyKey,
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readDescriptor: DescriptorReader,
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): unknown {
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const descriptor = readDescriptor(target, property);
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if (!descriptor) throw new Error(`missing descriptor: ${String(property)}`);
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if ("value" in descriptor) return descriptor.value;
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if (descriptor.get) return Reflect.apply(descriptor.get, target, []);
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return undefined;
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}
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function attemptMutation(mutate: () => void): void {
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try {
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mutate();
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} catch {
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// Readonly public views may reject the mutation directly.
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}
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}
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describe("housekeeping command registry", () => {
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it("returns the validated snapshot registered under its global ID", () => {
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const registered = command("people.registry.lookup");
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@@ -296,6 +342,170 @@ describe("housekeeping command registry", () => {
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});
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expect(String(thrown)).not.toContain("caller lazy secret");
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});
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it.each(descriptorReaders)(
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"keeps private validation unchanged after nested mutation through %s",
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(_api, suffix, readDescriptor) => {
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const input = z.object({ value: z.string().min(3) });
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const id = `people.registry.${suffix}`;
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registerHousekeepingCommand({
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...command(id),
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input,
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execute: async (context) => ok({ id: 1 }, context.correlationId),
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} as HousekeepingCommand<z.output<typeof input>, { id: number }>);
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const registered = getHousekeepingCommand(id);
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if (!registered) throw new Error("registered command missing");
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const definition = readDescriptorValue(
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registered.input,
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"def",
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readDescriptor,
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) as object;
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const shape = readDescriptorValue(
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definition,
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"shape",
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readDescriptor,
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) as { value: z.ZodType };
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const child = shape.value;
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const childDefinition = readDescriptorValue(
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child,
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"def",
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readDescriptor,
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) as object;
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const checks = readDescriptorValue(
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childDefinition,
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"checks",
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readDescriptor,
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) as readonly object[];
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const internal = readDescriptorValue(
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checks[0] as object,
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"_zod",
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readDescriptor,
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) as object;
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const checkDefinition = readDescriptorValue(
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internal,
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"def",
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readDescriptor,
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) as { minimum: number };
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attemptMutation(() => {
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shape.value = z.number();
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});
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attemptMutation(() => {
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checkDefinition.minimum = 0;
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});
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expect(registered.input.safeParse({ value: "ab" }).success).toBe(false);
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expect(registered.input.safeParse({ value: "abcd" }).success).toBe(true);
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expect(registered.input.safeParse({ value: 7 }).success).toBe(false);
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},
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);
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it("keeps own-key and symbol iteration detached from private checks", () => {
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const input = z.object({ value: z.string().min(3) });
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const id = "people.registry.symbol-iteration";
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registerHousekeepingCommand({
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...command(id),
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input,
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execute: async (context) => ok({ id: 1 }, context.correlationId),
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} as HousekeepingCommand<z.output<typeof input>, { id: number }>);
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const registered = getHousekeepingCommand(id);
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if (!registered) throw new Error("registered command missing");
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const publicInput = registered.input as z.ZodObject<{
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value: z.ZodString;
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}>;
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const shape = publicInput.shape;
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expect(Reflect.ownKeys(publicInput.def)).toContain("shape");
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expect(Object.keys(shape)).toEqual(["value"]);
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const child = Object.entries(shape)[0]?.[1];
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if (!child) throw new Error("public child schema missing");
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const checks = child.def.checks ?? [];
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const spreadChecks = [...checks];
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const iterator = checks[Symbol.iterator]();
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const iteratedCheck = iterator.next().value;
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if (!iteratedCheck) throw new Error("public check missing");
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expect(spreadChecks[0]).toBe(iteratedCheck);
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attemptMutation(() => {
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(
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iteratedCheck as unknown as {
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_zod: { def: { minimum: number } };
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}
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)._zod.def.minimum = 0;
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});
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expect(registered.input.safeParse({ value: "ab" }).success).toBe(false);
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expect(registered.input.safeParse({ value: "abcd" }).success).toBe(true);
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});
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it("keeps prototype methods operational without passing the private schema to callbacks", async () => {
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const input = z.object({ value: z.string().min(3) });
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const id = "people.registry.prototype-methods";
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registerHousekeepingCommand({
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...command(id),
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input,
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execute: async (context) => ok({ id: 1 }, context.correlationId),
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} as HousekeepingCommand<z.output<typeof input>, { id: number }>);
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const registered = getHousekeepingCommand(id);
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if (!registered) throw new Error("registered command missing");
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const publicInput = registered.input as z.ZodObject<{
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value: z.ZodString;
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}>;
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const publicPrototype = Object.getPrototypeOf(publicInput);
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expect(publicPrototype).toBe(Reflect.getPrototypeOf(publicInput));
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const prototypeMutation = Symbol("prototype-mutation");
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Object.defineProperty(publicPrototype, prototypeMutation, {
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configurable: true,
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value(this: z.ZodObject<{ value: z.ZodString }>): unknown {
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attemptMutation(() => {
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this.def.shape.value = z.number() as never;
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});
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return this.def;
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},
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});
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try {
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(
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publicInput as typeof publicInput & {
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[prototypeMutation](): unknown;
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}
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)[prototypeMutation]();
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} finally {
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Reflect.deleteProperty(publicPrototype, prototypeMutation);
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}
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expect(publicInput.safeParse({ value: "abcd" }).success).toBe(true);
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expect(publicInput.safeParse({ value: 7 }).success).toBe(false);
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let appliedSchema: z.ZodType | undefined;
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const applied = publicInput.apply((schema) => {
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appliedSchema = schema;
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return schema;
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});
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expect(appliedSchema).toBe(publicInput);
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expect(applied).toBe(publicInput);
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let externallyRegistered: z.ZodType | undefined;
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const externalRegistry = {
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add(schema: z.ZodType): void {
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externallyRegistered = schema;
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},
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};
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expect(
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publicInput.register(externalRegistry as never, undefined as never),
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).toBe(publicInput);
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expect(externallyRegistered).toBe(publicInput);
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const partial = publicInput.partial();
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const picked = publicInput.pick({ value: true });
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expect(partial.safeParse({}).success).toBe(true);
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expect(picked.safeParse({ value: "abcd" }).success).toBe(true);
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expect((await publicInput.safeParseAsync({ value: "ab" })).success).toBe(
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false,
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);
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expect((await publicInput.safeParseAsync({ value: "abcd" })).success).toBe(
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true,
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);
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});
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it("seals the global registry after deterministic bootstrap", () => {
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sealHousekeepingCommandRegistry();
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@@ -357,6 +357,22 @@ function isZodInternalNode(value: object): value is ZodInternalNode {
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function createReadonlyValidationFacade<T extends z.ZodType>(schema: T): T {
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const views = new WeakMap<object, unknown>();
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const parseResultMethods = new Set<PropertyKey>([
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"parse",
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"safeParse",
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"parseAsync",
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"safeParseAsync",
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"spa",
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"encode",
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"decode",
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"encodeAsync",
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"decodeAsync",
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"safeEncode",
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"safeDecode",
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"safeEncodeAsync",
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"safeDecodeAsync",
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"toJSONSchema",
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]);
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function readonlyView(value: unknown): unknown {
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if (
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@@ -369,56 +385,208 @@ function createReadonlyValidationFacade<T extends z.ZodType>(schema: T): T {
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if (cached !== undefined) return cached;
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if (value instanceof z.ZodType) return schemaFacade(value);
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if (typeof value === "function") {
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const wrapped = (...args: unknown[]) =>
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readonlyView(Reflect.apply(value, undefined, args));
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views.set(value, wrapped);
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return Object.freeze(wrapped);
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return functionFacade(value as (...args: never[]) => unknown);
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}
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const view = new Proxy(value, {
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defineProperty: () => false,
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deleteProperty: () => false,
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get: (target, property, receiver) => {
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const raw = Reflect.get(target, property, receiver);
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if (typeof raw !== "function") return readonlyView(raw);
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return (...args: unknown[]) =>
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readonlyView(Reflect.apply(raw, receiver, args));
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},
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set: () => false,
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setPrototypeOf: () => false,
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});
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views.set(value, view);
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return view;
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if (Array.isArray(value)) return arrayFacade(value);
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if (value instanceof Map) return mapFacade(value);
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if (value instanceof Set) return setFacade(value);
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if (value instanceof RegExp) {
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const detached = new RegExp(value.source, value.flags);
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views.set(value, detached);
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return Object.freeze(detached);
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}
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if (value instanceof Date) {
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const detached = new Date(value.getTime());
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views.set(value, detached);
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return Object.freeze(detached);
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}
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return objectFacade(value);
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}
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function functionFacade(value: (...args: never[]) => unknown): unknown {
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const wrapped = function (this: unknown, ...args: unknown[]) {
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const result = new.target
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? Reflect.construct(value, args)
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: Reflect.apply(value, this, args);
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return readonlyView(result);
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};
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views.set(value, wrapped);
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return Object.freeze(wrapped);
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}
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function arrayFacade(value: readonly unknown[]): readonly unknown[] {
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const detached: unknown[] = [];
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views.set(value, detached);
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for (const item of value) detached.push(readonlyView(item));
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return Object.freeze(detached);
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}
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function mapFacade(
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value: ReadonlyMap<unknown, unknown>,
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): ReadonlyMap<unknown, unknown> {
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const detached = new Map<unknown, unknown>();
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views.set(value, detached);
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for (const [key, item] of value) {
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detached.set(readonlyView(key), readonlyView(item));
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}
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return Object.freeze(detached);
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}
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function setFacade(value: ReadonlySet<unknown>): ReadonlySet<unknown> {
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const detached = new Set<unknown>();
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views.set(value, detached);
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for (const item of value) detached.add(readonlyView(item));
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return Object.freeze(detached);
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}
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function objectFacade(value: object): object {
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const detached = Object.create(Object.getPrototypeOf(value)) as Record<
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PropertyKey,
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unknown
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>;
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views.set(value, detached);
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copyReadonlyProperties(value, detached, (method) =>
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boundFunctionFacade(method, value),
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);
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return Object.freeze(detached);
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}
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function boundFunctionFacade(
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method: (...args: never[]) => unknown,
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receiver: object,
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): (...args: unknown[]) => unknown {
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return Object.freeze((...args: unknown[]) =>
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readonlyView(Reflect.apply(method, receiver, args)),
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);
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}
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function copyReadonlyProperties(
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source: object,
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destination: Record<PropertyKey, unknown>,
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wrapMethod: (
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method: (...args: never[]) => unknown,
|
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property: PropertyKey,
|
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) => unknown,
|
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): void {
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for (const key of Reflect.ownKeys(source)) {
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const descriptor = Object.getOwnPropertyDescriptor(source, key);
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if (!descriptor) continue;
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if ("value" in descriptor) {
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Object.defineProperty(destination, key, {
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configurable: false,
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enumerable: descriptor.enumerable,
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value:
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typeof descriptor.value === "function"
|
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? wrapMethod(descriptor.value, key)
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: readonlyView(descriptor.value),
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writable: false,
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});
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continue;
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}
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const getter = descriptor.get;
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const safeGetter = getter
|
||||
? () => readonlyView(Reflect.apply(getter, source, []))
|
||||
: undefined;
|
||||
Object.defineProperty(destination, key, {
|
||||
configurable: false,
|
||||
enumerable: descriptor.enumerable,
|
||||
get: safeGetter,
|
||||
});
|
||||
}
|
||||
}
|
||||
|
||||
function materializeSchemaPrototypeMethods(target: z.ZodType): void {
|
||||
let prototype = Object.getPrototypeOf(target);
|
||||
while (prototype && prototype !== Object.prototype) {
|
||||
for (const property of Reflect.ownKeys(prototype)) {
|
||||
if (Object.hasOwn(target, property)) continue;
|
||||
const descriptor = Object.getOwnPropertyDescriptor(prototype, property);
|
||||
if (
|
||||
!descriptor?.get ||
|
||||
!descriptor.set ||
|
||||
!descriptor.configurable ||
|
||||
descriptor.enumerable
|
||||
) {
|
||||
continue;
|
||||
}
|
||||
Reflect.get(target, property, target);
|
||||
}
|
||||
prototype = Object.getPrototypeOf(prototype);
|
||||
}
|
||||
}
|
||||
function schemaFacade<S extends z.ZodType>(target: S): S {
|
||||
const cached = views.get(target);
|
||||
if (cached !== undefined) return cached as S;
|
||||
|
||||
const facade = Object.create(Object.getPrototypeOf(target)) as Record<
|
||||
materializeSchemaPrototypeMethods(target);
|
||||
const shell = Object.create(Object.getPrototypeOf(target)) as Record<
|
||||
PropertyKey,
|
||||
unknown
|
||||
>;
|
||||
let facade: S;
|
||||
facade = new Proxy(shell, {
|
||||
defineProperty: () => false,
|
||||
deleteProperty: () => false,
|
||||
get: (publicShell, property, receiver) => {
|
||||
if (Object.hasOwn(publicShell, property)) {
|
||||
return Reflect.get(publicShell, property, receiver);
|
||||
}
|
||||
const inherited = Reflect.get(publicShell, property, receiver);
|
||||
return readonlyView(inherited);
|
||||
},
|
||||
set: () => false,
|
||||
setPrototypeOf: () => false,
|
||||
}) as unknown as S;
|
||||
views.set(target, facade);
|
||||
for (const key of Reflect.ownKeys(target)) {
|
||||
const raw = Reflect.get(target, key);
|
||||
const exposed =
|
||||
typeof raw === "function"
|
||||
? (...args: unknown[]) => {
|
||||
const result = Reflect.apply(raw, target, args);
|
||||
return result instanceof z.ZodType
|
||||
? isolateValidationGraph(result, "derived-schema")
|
||||
: result;
|
||||
}
|
||||
: readonlyView(raw);
|
||||
Object.defineProperty(facade, key, {
|
||||
configurable: false,
|
||||
enumerable: Object.prototype.propertyIsEnumerable.call(target, key),
|
||||
value: exposed,
|
||||
writable: false,
|
||||
copyReadonlyProperties(target, shell, (method, property) =>
|
||||
schemaMethodFacade(method, property, target, facade),
|
||||
);
|
||||
Object.freeze(shell);
|
||||
return facade;
|
||||
}
|
||||
|
||||
function schemaMethodFacade<S extends z.ZodType>(
|
||||
method: (...args: never[]) => unknown,
|
||||
property: PropertyKey,
|
||||
target: S,
|
||||
facade: S,
|
||||
): (...args: unknown[]) => unknown {
|
||||
if (property === "apply") {
|
||||
return Object.freeze((...args: unknown[]) => {
|
||||
const callback = args[0];
|
||||
if (typeof callback !== "function") {
|
||||
throw new TypeError("schema apply callback missing");
|
||||
}
|
||||
return Reflect.apply(callback, undefined, [facade]);
|
||||
});
|
||||
}
|
||||
return Object.freeze(facade) as S;
|
||||
if (property === "register") {
|
||||
return Object.freeze((...args: unknown[]) => {
|
||||
const registry = args[0];
|
||||
if (
|
||||
typeof registry !== "object" ||
|
||||
registry === null ||
|
||||
typeof (registry as { add?: unknown }).add !== "function"
|
||||
) {
|
||||
throw new TypeError("schema registry missing");
|
||||
}
|
||||
(
|
||||
registry as {
|
||||
add(schema: S, metadata?: unknown): unknown;
|
||||
}
|
||||
).add(facade, args[1]);
|
||||
return facade;
|
||||
});
|
||||
}
|
||||
|
||||
return Object.freeze((...args: unknown[]) => {
|
||||
const result = Reflect.apply(method, target, args);
|
||||
if (result instanceof z.ZodType) {
|
||||
return isolateValidationGraph(result, "derived-schema");
|
||||
}
|
||||
return parseResultMethods.has(property) ? result : readonlyView(result);
|
||||
});
|
||||
}
|
||||
|
||||
return schemaFacade(schema);
|
||||
|
||||
Reference in new issue
Block a user