Nestjs Testing Expert

shipshitdev/skills/skills/nestjs-testing-expert

by shipshitdev82fb91a7ce71No license38 starsListed Oct 9, 2026Updated Oct 8, 2026Repository updated yesterday

Writes NestJS Vitest tests — testing modules, provider mocks, service/controller specs, Supertest e2e. Use for any test touching a NestJS service, controller, guard, or endpoint.

Instructions onlySoftware Development
AI-generated overview

Guides writing Vitest unit, integration and end-to-end tests for NestJS services, controllers, guards and HTTP endpoints.

What it does
Provides instructions and code patterns for building Vitest test suites in NestJS projects: testing module setup, provider mocks and overrides, service and controller specs, and Supertest HTTP flows. It covers Vitest configuration with SWC for decorator metadata, database strategies, and teardown practices. It produces test code and configuration guidance rather than running anything itself.
When to use it
Use when writing or setting up unit, integration or end-to-end tests for a NestJS application, including testing modules, overriding providers or guards, and exercising HTTP endpoints against a booted Nest app.
Requirements
Instructions only, no bundled scripts. Assumes a NestJS project with Vitest and packages such as unplugin-swc, @swc/core, @golevelup/ts-vitest, supertest and @types/supertest; integration and e2e tests need a database and a booted application.

NestJS Testing Expert

Build reliable Vitest suites for NestJS modules, services, controllers, and HTTP endpoints.

Scope

This skill owns NestJS mechanics: testing modules, provider wiring, and request-level end-to-end flows. For framework-agnostic questions — which level a behavior belongs at, what a coverage number means, how to design a test that survives refactoring, how to kill a flake — use testing-expert.

When to Use

  • Writing unit, integration, or end-to-end tests for a NestJS application
  • Setting up a testing module, overriding providers, or faking a database
  • Testing controllers, guards, interceptors, or pipes
  • Exercising HTTP endpoints against a booted Nest application

Levels in a Nest Application

  • Unit — a service or provider in isolation, collaborators replaced with test doubles. No module graph beyond the providers under test.
  • Integration — a module compiled with its real providers, external systems faked. Proves the wiring and the contracts between layers.
  • End-to-end — a booted application driven over HTTP. Proves the full request path: pipes, guards, controller, service, persistence.

Vitest Setup for NestJS

Nest's dependency injection reads decorator metadata (emitDecoratorMetadata). Vitest transforms with esbuild, which does not emit it, so constructor injection silently resolves to undefined. Compile with unplugin-swc, which does emit decorator metadata.

bash
bun add -D vitest unplugin-swc @swc/core @golevelup/ts-vitest supertest @types/supertest
typescript
// vitest.config.ts — unit and integration specsimport swc from 'unplugin-swc';import { defineConfig } from 'vitest/config';
export default defineConfig({  test: {    globals: true,    root: './',    environment: 'node',    include: ['src/**/*.spec.ts'],    testTimeout: 10_000,  },  plugins: [    swc.vite({      module: { type: 'es6' },    }),  ],});

Keep end-to-end specs in a separate config so bun run test stays fast and bun run test:e2e boots the application:

typescript
// vitest.config.e2e.tsimport swc from 'unplugin-swc';import { defineConfig } from 'vitest/config';
export default defineConfig({  test: {    globals: true,    root: './',    environment: 'node',    include: ['test/**/*.e2e-spec.ts'],    testTimeout: 30_000,  },  plugins: [swc.vite({ module: { type: 'es6' } })],});
json
{  "scripts": {    "test": "vitest run",    "test:e2e": "vitest run --config vitest.config.e2e.ts",    "test:cov": "vitest run --coverage"  }}

Options from older runner configs map to Vitest one to one: path aliases move from moduleNameMapper to resolve.alias (or the vite-tsconfig-paths plugin), testEnvironment becomes test.environment, transform is replaced by the SWC plugin, and per-suite timeouts use test.testTimeout or vi.setConfig({ testTimeout }). Import describe, it, expect, vi, and the lifecycle hooks from vitest explicitly when globals is off. Browser-driven end-to-end flows belong to Playwright; Supertest here covers HTTP against a booted Nest app.

For auto-mocking whole providers, createMock from @golevelup/ts-vitest returns a deep mock typed to the class:

typescript
import { createMock, DeepMocked } from '@golevelup/ts-vitest';

Service Specs

Compile a testing module with the subject real and every collaborator supplied explicitly. Injection tokens come from whatever integration provides them — an ORM's token helper, a class reference, or a custom token constant.

typescript
import { Test, TestingModule } from '@nestjs/testing';import { afterEach, beforeEach, describe, expect, it, vi, type Mocked } from 'vitest';
describe('UsersService', () => {  let service: UsersService;  let repository: Mocked<UsersRepository>;
  beforeEach(async () => {    const module: TestingModule = await Test.createTestingModule({      providers: [        UsersService,        { provide: UsersRepository, useValue: createUsersRepositoryMock() },      ],    }).compile();
    service = module.get(UsersService);    repository = module.get(UsersRepository);  });
  afterEach(() => {    vi.resetAllMocks();  });
  it('returns only the active users of the requested organization', async () => {    const expected = [{ id: '1', organization: 'org1' }];    repository.find.mockResolvedValue(expected);
    const result = await service.findAll('org1');
    expect(result).toEqual(expected);    expect(repository.find).toHaveBeenCalledWith({      organization: 'org1',      isDeleted: false,    });  });});

Assert on the arguments the collaborator received when they encode a business rule — the isDeleted: false filter above is the behavior, not an implementation detail.

Controller Specs

Register the controller, stub its service, and verify only the controller's own job: argument extraction, delegation, and response shaping. Business rules belong to the service spec.

typescript
describe('UsersController', () => {  let controller: UsersController;  let service: Mocked<UsersService>;
  beforeEach(async () => {    const module: TestingModule = await Test.createTestingModule({      controllers: [UsersController],      providers: [{ provide: UsersService, useValue: createUsersServiceMock() }],    }).compile();
    controller = module.get(UsersController);    service = module.get(UsersService);  });
  it('passes the organization from the request through to the service', async () => {    const expected = [{ id: '1', email: '[email protected]' }];    service.findAll.mockResolvedValue(expected);
    const result = await controller.findAll('org1');
    expect(result).toEqual(expected);    expect(service.findAll).toHaveBeenCalledWith('org1');  });});

Overriding Providers

Compile the real module and swap only what must not run for real. overrideProvider and overrideGuard keep the rest of the graph authentic, so the test still proves the wiring.

typescript
const module: TestingModule = await Test.createTestingModule({  imports: [UsersModule],})  .overrideProvider(MailerService)  .useValue(mailerMock)  .overrideGuard(AuthGuard)  .useValue({ canActivate: () => true })  .compile();

Override the guard only in tests about something else. Authorization itself deserves end-to-end tests that run the real guard.

Integration Tests

Boot the application, keep persistence real against a disposable database, and reset state between tests.

typescript
describe('Users (integration)', () => {  let app: INestApplication;
  beforeAll(async () => {    const moduleFixture: TestingModule = await Test.createTestingModule({      imports: [AppModule],    }).compile();
    app = moduleFixture.createNestApplication();    await app.init();  });
  afterAll(async () => {    await app.close();  });
  beforeEach(async () => {    await resetDatabase();  });
  it('persists a created user and returns it on read', async () => {    const created = await request(app.getHttpServer())      .post('/api/users')      .send({ email: '[email protected]', name: 'Test' })      .expect(201);
    const read = await request(app.getHttpServer())      .get(`/api/users/${created.body.id}`)      .expect(200);
    expect(read.body.email).toBe('[email protected]');  });});

Close the application in afterAll. A leaked Nest application holds its connection pool open and hangs the Vitest run.

End-to-End Tests

Same boot, driven as a real client — authentication included.

typescript
describe('Users API (e2e)', () => {  let app: INestApplication;  let authToken: string;
  beforeAll(async () => {    const moduleFixture: TestingModule = await Test.createTestingModule({      imports: [AppModule],    }).compile();
    app = moduleFixture.createNestApplication();    await app.init();
    authToken = await signInTestUser(app);  });
  afterAll(async () => {    await app.close();  });
  it('rejects an unauthenticated list request', () =>    request(app.getHttpServer()).get('/api/users').expect(401));
  it('returns the caller organization users when authenticated', () =>    request(app.getHttpServer())      .get('/api/users')      .set('Authorization', `Bearer ${authToken}`)      .expect(200)      .expect((res) => {        expect(Array.isArray(res.body)).toBe(true);      }));});

A shared signInTestUser helper keeps the token flow in one place and out of every spec.

Database Strategy

ApproachFitsCost
Repository test doubleUnit specsFastest; proves no SQL or schema
In-memory or embedded engineIntegration specsFast; behavior can drift from production
Disposable container per runIntegration and e2e specsSlowest; highest fidelity

Reset between tests by truncating or rolling back a transaction rather than recreating the schema — schema rebuilds dominate suite runtime.

Tips

  • Give each spec its own module compilation; a shared one leaks state between tests.
  • Reset mocks in afterEach so a stub set in one test cannot satisfy the next.
  • Boot the application once per describe block and reset data per test — booting per test is the usual cause of a slow Nest suite.
  • Keep tests deterministic: freeze the clock (vi.useFakeTimers() with vi.setSystemTime) and pin the timezone rather than asserting on the real one.
  • Restore spies with vi.restoreAllMocks() in afterEach when a spec uses vi.spyOn on shared objects.

Checklist

  • Clear arrange/act/assert structure
  • Subject real, collaborators explicit — never the reverse
  • Error and unauthorized paths covered, not just the happy path
  • Application closed and mocks reset in teardown
  • Fast to run

Source and attribution

Source:shipshitdev/skillsinskills/nestjs-testing-expertat commit82fb91a

License: No license

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