171 lines
6.4 KiB
TypeScript
171 lines
6.4 KiB
TypeScript
// Real PG14 (control-plane) + PG17 (run-ops) proof for the waitpoint presenter after its
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// inlined environment select was decomposed onto the ControlPlaneResolver. The waitpoint
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// scalar row lives on PG17 (run-ops); the env (apiKey/organizationId) lives on PG14
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// (control-plane), with the cross-seam Waitpoint FKs dropped. The presenter reads waitpoint
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// scalars + environmentId from run-ops and resolves the env-derived fields from control-plane.
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// The DB is never mocked; the .count() proof shows neither DB joins the other.
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import { heteroPostgresTest } from "@internal/testcontainers";
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import { describe, expect, vi } from "vitest";
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// The presenter resolves the env off the module-level `controlPlaneResolver` singleton, which reads
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// the `~/db.server` `prisma` singleton (split off -> controlPlanePrimary). We point that proxy at the
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// REAL control-plane container (PG14). The DB is NEVER mocked: the proxy forwards to a real client.
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const primaryHolder = vi.hoisted(() => ({ client: undefined as any }));
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vi.mock("~/db.server", async () => {
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const { Prisma } = await import("@trigger.dev/database");
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const lazyProxy = (holder: { client: any }, label: string) =>
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new Proxy(
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{},
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{
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get(_t, prop) {
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if (!holder.client) {
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throw new Error(`${label} not set for this test`);
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}
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return holder.client[prop];
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},
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}
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);
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const proxy = lazyProxy(primaryHolder, "primaryHolder.client");
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return {
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prisma: proxy,
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$replica: proxy,
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runOpsNewPrisma: proxy,
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sqlDatabaseSchema: Prisma.sql([`public`]),
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};
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});
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import type { PrismaClient } from "@trigger.dev/database";
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import { WaitpointPresenter } from "~/presenters/v3/WaitpointPresenter.server";
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import { ControlPlaneCache } from "~/v3/runOpsMigration/controlPlaneCache.server";
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import { ControlPlaneResolver } from "~/v3/runOpsMigration/controlPlaneResolver.server";
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vi.setConfig({ testTimeout: 60_000, hookTimeout: 60_000 });
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const WAITPOINT_CROSS_SEAM_FKS = [
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"Waitpoint_environmentId_fkey",
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"Waitpoint_projectId_fkey",
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] as const;
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async function dropWaitpointCrossSeamFks(prisma: PrismaClient) {
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for (const c of WAITPOINT_CROSS_SEAM_FKS) {
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await prisma.$executeRawUnsafe(`ALTER TABLE "Waitpoint" DROP CONSTRAINT IF EXISTS "${c}"`);
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}
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}
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let n = 0;
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async function seedControlPlane(prisma: PrismaClient) {
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const s = n++;
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const organization = await prisma.organization.create({
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data: { title: `Org ${s}`, slug: `org-${s}` },
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});
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const project = await prisma.project.create({
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data: {
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name: `P ${s}`,
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slug: `p-${s}`,
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externalRef: `proj_${s}`,
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organizationId: organization.id,
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},
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});
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const environment = await prisma.runtimeEnvironment.create({
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data: {
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type: "PRODUCTION",
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slug: `env-${s}`,
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projectId: project.id,
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organizationId: organization.id,
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apiKey: `tr_${s}`,
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pkApiKey: `pk_${s}`,
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shortcode: `sc_${s}`,
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},
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});
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return { organization, project, environment };
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}
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async function seedWaitpoint(
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prisma: PrismaClient,
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ctx: { environmentId: string; projectId: string }
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) {
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const s = n++;
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return prisma.waitpoint.create({
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data: {
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id: `waitpoint_${s}_pg17`,
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friendlyId: `waitpoint_fr_${s}`,
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type: "MANUAL",
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status: "PENDING",
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idempotencyKey: `idem_${s}`,
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userProvidedIdempotencyKey: false,
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environmentId: ctx.environmentId,
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projectId: ctx.projectId,
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},
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});
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}
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describe("waitpoint presenter cross-DB read-through", () => {
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heteroPostgresTest(
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"waitpoint scalars resolve from run-ops; apiKey/organizationId resolve from control-plane",
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async ({ prisma14, prisma17 }) => {
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await dropWaitpointCrossSeamFks(prisma17 as unknown as PrismaClient);
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const cp = await seedControlPlane(prisma14 as unknown as PrismaClient);
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const waitpoint = await seedWaitpoint(prisma17 as unknown as PrismaClient, {
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environmentId: cp.environment.id,
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projectId: cp.project.id,
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});
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// Run-ops read: waitpoint scalars + environmentId, no environment relation.
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const found = await (prisma17 as unknown as PrismaClient).waitpoint.findFirst({
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where: { friendlyId: waitpoint.friendlyId, environmentId: cp.environment.id },
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select: { id: true, friendlyId: true, environmentId: true },
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});
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expect(found).not.toBeNull();
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expect(found!.environmentId).toBe(cp.environment.id);
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// Control-plane resolution of the env-derived fields the presenter uses.
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const resolver = new ControlPlaneResolver({
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controlPlanePrimary: prisma14 as unknown as PrismaClient,
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controlPlaneReplica: prisma14 as unknown as PrismaClient,
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cache: new ControlPlaneCache(),
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splitEnabled: () => false,
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});
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const env = await resolver.resolveAuthenticatedEnv(found!.environmentId);
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expect(env).not.toBeNull();
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expect(env!.apiKey).toBe(cp.environment.apiKey);
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expect(env!.organizationId).toBe(cp.organization.id);
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expect(await (prisma17 as unknown as PrismaClient).runtimeEnvironment.count()).toBe(0);
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expect(await (prisma14 as unknown as PrismaClient).waitpoint.count()).toBe(0);
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}
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);
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heteroPostgresTest(
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"presenter returns null when env unresolvable (no false hydrate)",
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async ({ prisma14, prisma17 }) => {
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await dropWaitpointCrossSeamFks(prisma17 as unknown as PrismaClient);
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const cp = await seedControlPlane(prisma14 as unknown as PrismaClient);
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// The waitpoint references an environmentId with NO row on control-plane (PG14).
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const absentEnvironmentId = `env_absent_${n++}`;
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const waitpoint = await seedWaitpoint(prisma17 as unknown as PrismaClient, {
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environmentId: absentEnvironmentId,
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projectId: cp.project.id,
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});
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// The presenter reads waitpoint scalars off its own replica (PG17); the resolver singleton
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// reads the env off the `~/db.server` proxy -> control-plane (PG14), where it is absent.
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primaryHolder.client = prisma14;
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const presenter = new WaitpointPresenter(
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prisma17 as unknown as PrismaClient,
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prisma17 as unknown as PrismaClient
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);
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const result = await presenter.call({
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friendlyId: waitpoint.friendlyId,
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environmentId: absentEnvironmentId,
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projectId: cp.project.id,
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});
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// env resolves null after the waitpoint is found -> presenter returns null, no CH hydrate.
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expect(result).toBeNull();
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}
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);
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});
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