0Pricing
Spring Boot 4 Complete Guide · Lezione

Test d’integrazione dei moduli e scenari

Testi le interazioni tra moduli in isolamento usando il supporto agli scenari e ai test slice di Modulith.

Test d’integrazione dei moduli e scenari è una lezione Spring Boot 4 Complete Guide gratuita su CoddyKit. Questa è la lezione 4 di 4. Puoi leggere la lezione completa qui gratuitamente — poi esercitati direttamente nel browser con un editor di codice integrato e un tutor IA disponibile 24/7. Fa parte del percorso di apprendimento Spring Boot 4 Complete Guide, e i tuoi progressi si sincronizzano tra il web e l'app CoddyKit. Il corso Spring Boot 4 Complete Guide include 4 lezioni in totale.

Parti di questa lezione non sono ancora state tradotte e vengono mostrate in inglese.

Why Module Integration Tests?

In an event-driven Modulith, modules talk to each other by publishing and consuming application events rather than calling each other directly. A unit test of a single bean can verify the publishing side, but it cannot prove that the other module actually reacts correctly.

  • Unit test — one bean, everything else mocked.
  • Module integration test — one module's Spring context, its real beans, but neighbours stubbed.
  • Full integration test — the whole application context.

Spring Modulith gives you the middle layer: spin up exactly one module, exercise its event flow, and assert what it publishes — all in isolation.

The @ApplicationModuleTest Slice

The core annotation is @ApplicationModuleTest from spring-modulith-test. It bootstraps only the module that contains the test class, not the entire application.

  • It auto-detects the module from the test's package.
  • Beans from other modules are not loaded — their events are captured instead of really handled.
  • It behaves like a Spring Boot test slice (similar to @DataJpaTest), so it is fast and focused.

Place the test in the same base package as the module under test so Modulith can resolve module boundaries correctly.

package com.example.shop.order;

import org.springframework.modulith.test.ApplicationModuleTest;

@ApplicationModuleTest
class OrderModuleIntegrationTests {

    // Only the 'order' module's beans are bootstrapped here.
    // Other modules (inventory, shipping) are NOT loaded.
}

Bootstrap Modes

@ApplicationModuleTest accepts a bootstrap mode that controls how many neighbouring modules are pulled in:

  • STANDALONE (default) — only the current module.
  • DIRECT_DEPENDENCIES — the current module plus the modules it directly depends on.
  • ALL_DEPENDENCIES — the current module and its entire transitive dependency tree.

Start with STANDALONE for the tightest isolation; widen the mode only when a test genuinely needs a real collaborator bean instead of a captured event.

import org.springframework.modulith.test.ApplicationModuleTest;
import org.springframework.modulith.test.ApplicationModuleTest.BootstrapMode;

@ApplicationModuleTest(BootstrapMode.DIRECT_DEPENDENCIES)
class OrderModuleIntegrationTests {
    // 'order' + every module it directly depends on are loaded.
}

Capturing Published Events

The simplest assertion is: did my module publish the right event? Modulith injects a PublishedEvents instance that records every event published during the test.

  • Inject it as a test parameter or autowire it.
  • Filter by type with ofType(...).
  • Refine with matching(...) on a field or predicate.

This lets you verify the publishing module's contract without loading any consumer.

@ApplicationModuleTest
class OrderModuleIntegrationTests {

    @Autowired OrderService orders;

    @Test
    void publishesEventOnCompletion(PublishedEvents events) {
        orders.complete(new OrderId("4711"));

        var completed = events.ofType(OrderCompleted.class)
                .matching(OrderCompleted::orderId, new OrderId("4711"));

        assertThat(completed).hasSize(1);
    }
}

AssertablePublishedEvents

For a more fluent, AssertJ-style API, inject AssertablePublishedEvents instead. It exposes assertThat() directly so you can chain expressive assertions.

  • contains(Type.class) — at least one event of that type.
  • matching(...) — narrow to events whose field equals a value.
  • Great for readability in larger scenarios.

Both PublishedEvents and AssertablePublishedEvents are populated by the same event-capturing infrastructure.

@Test
void completionPublishesExactlyOnce(AssertablePublishedEvents events) {
    orders.complete(new OrderId("4711"));

    assertThat(events)
            .contains(OrderCompleted.class)
            .matching(OrderCompleted::orderId, new OrderId("4711"));
}

The Scenario API

Captured events tell you what was published, but event-driven flows are often asynchronous: a stimulus triggers a listener that publishes a follow-up event. The Scenario API models exactly this stimulus → expectation shape, and it transparently waits for async work to settle.

  • stimulate(...) — the action that kicks off the flow.
  • andWaitForEventOfType(...) — block until that event appears (with a timeout).
  • toArrive() / toArriveAndVerify(...) — the terminal assertion.

Inject Scenario as a test-method parameter; you do not construct it yourself.

Stimulus Triggered by a Method Call

The most common scenario starts with a bean method invocation. Pass a lambda receiving the Scenario, call your service inside stimulate(...), then declare what event you expect downstream.

Modulith polls until the event arrives or the timeout expires — no manual Thread.sleep needed.

@ApplicationModuleTest
class OrderModuleIntegrationTests {

    @Autowired OrderService orders;

    @Test
    void completingOrderTriggersFollowUp(Scenario scenario) {
        scenario.stimulate(() -> orders.complete(new OrderId("4711")))
                .andWaitForEventOfType(OrderCompleted.class)
                .matchingMappedValue(OrderCompleted::orderId, new OrderId("4711"))
                .toArrive();
    }
}

Stimulus Triggered by Publishing an Event

To test the consuming side of a module in isolation, make the stimulus an incoming event rather than a method call. The module's listener reacts to it and (typically) publishes its own result event.

  • stimulate(event) publishes the inbound event into the context.
  • You then wait for the module's own outbound event.

This is how you verify one module's reaction to another module's event without loading that other module at all.

@Test
void inventoryReservesStockOnOrder(Scenario scenario) {
    scenario.publish(new OrderCompleted(new OrderId("4711")))
            .andWaitForEventOfType(StockReserved.class)
            .matchingMappedValue(StockReserved::orderId, new OrderId("4711"))
            .toArrive();
}

Verifying State, Not Just Events

Sometimes the assertion you really care about is a state change — a repository row, a counter, a status flag — rather than another event. toArriveAndVerify(...) runs your assertion once the awaited event has arrived.

You can also use andVerify(...) after waiting for state to stabilise. This bridges the gap between async event delivery and synchronous database checks.

@Test
void reservationPersistsState(Scenario scenario) {
    scenario.publish(new OrderCompleted(new OrderId("4711")))
            .andWaitForEventOfType(StockReserved.class)
            .toArriveAndVerify(event ->
                assertThat(reservations.findByOrderId(event.orderId()))
                        .isPresent());
}

Customising Timeouts and State Changes

Async tests need sensible timeouts. The Scenario API lets you tune the wait and even wait on arbitrary state instead of an event:

  • customize(c -> c.atMost(Duration.ofSeconds(2))) — cap the wait.
  • andWaitForStateChange(() -> repo.findStatus(id)) — poll a supplier until it returns a non-null / truthy value.

Prefer waiting for the concrete signal you care about; a generous-but-bounded timeout avoids flaky CI without masking real hangs.

@Test
void statusFlipsToShipped(Scenario scenario) {
    scenario.stimulate(() -> orders.complete(new OrderId("4711")))
            .customize(it -> it.atMost(Duration.ofSeconds(2)))
            .andWaitForStateChange(() -> orders.statusOf(new OrderId("4711")))
            .andVerify(status ->
                assertThat(status).isEqualTo(OrderStatus.SHIPPED));
}

Mocking Out-of-Module Collaborators

In STANDALONE mode, beans from other modules are absent. If your module under test directly autowires a collaborator that lives in another module (not an event-based dependency), the context cannot start. Two clean options:

  • Provide a @MockitoBean (formerly @MockBean) for that collaborator in the test.
  • Or widen the bootstrap mode to DIRECT_DEPENDENCIES so the real bean loads.

Favour the mock when you only need to stub a response; favour widening when the real collaboration is the point of the test.

@ApplicationModuleTest
class OrderModuleIntegrationTests {

    @MockitoBean PricingClient pricingClient; // bean from another module

    @Autowired OrderService orders;

    @Test
    void usesQuotedPrice(Scenario scenario) {
        when(pricingClient.quote(any())).thenReturn(Money.of(42));
        scenario.stimulate(() -> orders.place(new Cart("4711")))
                .andWaitForEventOfType(OrderPlaced.class)
                .toArrive();
    }
}

Quick Check

You want to test that the inventory module reserves stock when it receives an OrderCompleted event — without loading the order module that normally publishes it. Which approach fits best?

Recap

You learned how Spring Modulith tests cross-module event flows in isolation:

  • @ApplicationModuleTest bootstraps a single module; bootstrap modes (STANDALONE, DIRECT_DEPENDENCIES, ALL_DEPENDENCIES) control how many neighbours load.
  • PublishedEvents / AssertablePublishedEvents capture and assert what a module publishes.
  • The Scenario API models stimulus → expectation for async flows: stimulate(...) or publish(...), then andWaitForEventOfType(...) and toArrive() / toArriveAndVerify(...).
  • andWaitForStateChange(...) plus customize(...atMost...) handle state assertions and bounded timeouts.
  • Stub out-of-module collaborators with @MockitoBean, or widen the bootstrap mode when the real collaboration matters.

Together these let you prove module contracts hold without spinning up the entire application.

Domande Frequenti

La lezione «Test d’integrazione dei moduli e scenari» è gratuita?

Sì — il testo completo di «Test d’integrazione dei moduli e scenari» è gratuito qui sul web. Per esercitarvi in modo interattivo (un editor di codice integrato e un tutor IA 24/7) e sbloccare il resto del corso Spring Boot 4 Complete Guide, passa a CoddyKit PRO. Il corso Spring Boot 4 Complete Guide include 4 lezioni in totale.

Cosa imparerò in «Test d’integrazione dei moduli e scenari»?

Testi le interazioni tra moduli in isolamento usando il supporto agli scenari e ai test slice di Modulith. Eserciti Spring Boot 4 Complete Guide con codice pratico che esegui direttamente nel browser, e un tutor IA 24/7 risponde alle tue domande mentre lavori sulla lezione.

Ho bisogno di esperienza per iniziare Spring Boot 4 Complete Guide?

Non è richiesta alcuna esperienza precedente. Spring Boot 4 Complete Guide su CoddyKit è strutturato per principianti e studenti avanzati, quindi puoi iniziare da qui o dall'inizio e procedere al tuo ritmo. Questa è la lezione 4 di 4.

Quanto tempo richiede la lezione «Test d’integrazione dei moduli e scenari»?

La maggior parte delle lezioni CoddyKit richiede circa 5–10 minuti. Ogni lezione è breve e interattiva, quindi fai progressi costanti e riprendi esattamente da dove hai lasciato su web e app.

Posso scrivere ed eseguire codice in questa lezione Spring Boot 4 Complete Guide?

Sì. Ogni lezione Spring Boot 4 Complete Guide include un editor di codice integrato, quindi scrivi ed esegui codice reale direttamente nel tuo browser e ricevi feedback istantaneo dall'IA — nessuna configurazione locale necessaria.

Tutte le lezioni di questo corso

  1. Moduli applicativi e verifica dei confini
  2. Eventi interni dell’applicazione e listener
  3. Pubblicazione transazionale degli eventi e outbox
  4. Test d’integrazione dei moduli e scenari
← Torna a Spring Boot 4 Complete Guide