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Microservices Communication Patterns (Saga, Circuit Breaker) · レッスン

イベントによる補償処理

以前のアクションを取り消す専用のロールバックイベントを発行し、Choreography Sagaの補償ステップを実装します。

「イベントによる補償処理」はCoddyKit上の無料Microservices Communication Patterns (Saga, Circuit Breaker)レッスンです。 これはレッスン3/4です。 下記で完全なレッスンを無料で読むことができます。その後、ブラウザ内の組み込みコードエディタと24時間対応のAIチューターでハンズオン演習できます。 これはMicroservices Communication Patterns (Saga, Circuit Breaker)学習パスの一部であり、ウェブとCoddyKitアプリ全体で進捗が同期されます。 Microservices Communication Patterns (Saga, Circuit Breaker)コースには全4レッスンが含まれています。

このレッスンの一部はまだ翻訳されておらず、英語で表示されています。

Why Compensation is Crucial

In choreography sagas, services react to events. But what happens when one of those services fails to complete its part of a distributed transaction?

We need a way to undo any actions that were successfully performed by previous services. This is where compensation comes in.

What is Compensation?

Compensation is the process of reversing previously completed operations within a distributed transaction. Think of it as a 'rollback' mechanism tailored for microservices.

It ensures that if any step in a multi-service business process fails, the system can return to a consistent state.

Compensation in Choreography

In a choreography saga, there's no central orchestrator. Services communicate directly via events. So, how do we trigger compensation?

  • When a service fails to complete its task, it publishes a specific compensation event.
  • Other services that have successfully completed their part listen for these compensation events.
  • Upon receiving a compensation event, they execute their own rollback logic.

Designing Compensation Events

Compensation events must contain enough information for services to perform their rollback. Key details often include:

  • The original saga ID or transaction ID.
  • Details about the original action that needs to be reversed.
  • Any data required to perform the reversal (e.g., amount to refund, item to unreserve).

Example: Order Processing Saga

Consider an online order process:

  1. Order Service: Creates order (publishes OrderCreated)
  2. Payment Service: Processes payment (publishes PaymentProcessed)
  3. Inventory Service: Reserves stock (publishes InventoryReserved)

What if the Inventory Service fails to reserve stock?

Initiating the Rollback

If the Inventory Service fails to reserve stock, it should:

  • Not publish InventoryReserved.
  • Instead, publish a compensation event, like InventoryReservationFailed.

This event signals to other services that the saga could not complete successfully and they need to undo their actions.

Payment Service's Compensation

The Payment Service is subscribed to events that indicate failures. When it receives InventoryReservationFailed, it knows it needs to act:

  • It will initiate a refund for the payment it previously processed.
  • After refunding, it might publish a new event, like PaymentRefunded, to inform other interested services.

Order Service's Compensation

The Order Service, having created the initial order, also needs to react. It might listen for InventoryReservationFailed or PaymentRefunded.

  • Upon receiving such an event, the Order Service updates the order's status to 'Cancelled' or 'Failed'.
  • This ensures the user sees an accurate status for their order.

Implementing Compensation Logic

Each service must contain logic to handle both successful forward-progress events and specific compensation events. This often means having separate event handlers for each.

Here's a simplified example of how a Payment Service might listen for a compensation event and trigger a refund:

public class PaymentService {

  public static void main(String[] args) {
    System.out.println("Payment Service Started.");
    // Simulate receiving an event from a message broker
    String receivedEvent = "InventoryReservationFailed: Order123";

    if (receivedEvent.startsWith("InventoryReservationFailed")) {
      String orderId = receivedEvent.split(":")[1];
      System.out.println("Received compensation event: " + receivedEvent);
      System.out.println("Initiating refund for Order ID: " + orderId + "...");
      
      // In a real system, call a payment gateway API to refund
      boolean refundSuccess = processRefund(orderId);
      
      if (refundSuccess) {
        System.out.println("Refund processed successfully for " + orderId + ".");
        // Publish 'PaymentRefunded' event for other services
        System.out.println("Publishing PaymentRefunded event.");
      } else {
        System.out.println("Refund failed for " + orderId + ".");
        // Handle refund failure (e.g., alert, manual intervention)
      }
    } else {
      System.out.println("No compensation event received yet.");
    }
    System.out.println("Payment Service Shutting Down.");
  }

  private static boolean processRefund(String orderId) {
    // Simulate external refund API call
    return true; // Assume success for this example
  }
}

Quick Check: Compensation Purpose

In a choreography saga, if the 'Inventory Service' fails to reserve items after 'Payment Service' has processed a payment, what is the primary purpose of the 'Inventory Service' publishing an InventoryReservationFailed event?

Recap: Handling Compensation

You've learned how critical compensation is in choreography sagas to maintain data consistency in distributed systems. Key takeaways:

  • Compensation reverses successful actions when a saga step fails.
  • In choreography, services publish specific compensation events to initiate rollbacks.
  • Each service must implement logic to listen for and react to these events, performing its own undo operations.
  • Clear event design and robust handling are essential for resilient sagas.

よくある質問

「イベントによる補償処理」レッスンは無料ですか?

はい。「イベントによる補償処理」の完全なテキストはこのウェブで無料で読めます。インタラクティブに演習し(組み込みコードエディタと24時間対応のAIチューター)、Microservices Communication Patterns (Saga, Circuit Breaker)コースの残りをアンロックするには、CoddyKit PROにアップグレードしてください。 Microservices Communication Patterns (Saga, Circuit Breaker)コースには全4レッスンが含まれています。

「イベントによる補償処理」で何を学びますか?

以前のアクションを取り消す専用のロールバックイベントを発行し、Choreography Sagaの補償ステップを実装します。 ブラウザで直接実行するハンズオンコードでMicroservices Communication Patterns (Saga, Circuit Breaker)を演習し、24時間対応のAIチューターがレッスンを進める中での質問に答えます。

Microservices Communication Patterns (Saga, Circuit Breaker)を始めるのに経験は必要ですか?

事前経験は必要ありません。CoddyKitのMicroservices Communication Patterns (Saga, Circuit Breaker)は初級者から上級者向けに構成されているため、ここから始めるか最初から始めて、自分のペースで進むことができます。 これはレッスン3/4です。

「イベントによる補償処理」レッスンにはどのくらい時間がかかりますか?

ほとんどのCoddyKitレッスンは約5~10分かかります。各レッスンはコンパクトでインタラクティブなので、着実に進歩し、ウェブとアプリ全体で正確に前回の場所から再開できます。

このMicroservices Communication Patterns (Saga, Circuit Breaker)レッスンでコードを書いて実行できますか?

はい。すべてのMicroservices Communication Patterns (Saga, Circuit Breaker)レッスンに組み込みコードエディタが含まれているため、ブラウザでリアルコードを書いて実行し、即座のAIフィードバックを取得できます。ローカル設定は不要です。

このコースのすべてのレッスン

  1. イベント駆動型Sagaの設計
  2. イベントバスとメッセージブローカー
  3. イベントによる補償処理
  4. 冪等なイベントコンシューマーの構築
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