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azure-eventhub-java

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Entwickeln Sie mit dem Azure Event Hubs SDK für Java Echtzeit-Streaming-Anwendungen, einschließlich des Sendens und Empfangens von Ereignissen, der Stapelverarbeitung und produktionsreifer Ereignisprozessoren.

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Zeit aktualisiert 12. September 2026

Azure Event Hubs SDK für Java

Erstellen Sie Echtzeit-Streaming-Anwendungen mit dem Azure Event Hubs SDK für Java.

Installation


    com.azure
    azure-messaging-eventhubs
    5.19.0




    com.azure
    azure-messaging-eventhubs-checkpointstore-blob
    1.20.0

Client-Erstellung

EventHubProducerClient

import com.azure.messaging.eventhubs.EventHubProducerClient;
import com.azure.messaging.eventhubs.EventHubClientBuilder;

// Mit Verbindungszeichenfolge
EventHubProducerClient producer = new EventHubClientBuilder()
    .connectionString("", "")
    .buildProducerClient();

// Vollständige Verbindungszeichenfolge mit EntityPath
EventHubProducerClient producer = new EventHubClientBuilder()
    .connectionString("")
    .buildProducerClient();

Mit DefaultAzureCredential

import com.azure.core.credential.TokenCredential;
import com.azure.identity.AzureIdentityEnvVars;
import com.azure.identity.DefaultAzureCredentialBuilder;
import com.azure.identity.ManagedIdentityCredentialBuilder;

// Lokale Entwicklung: DefaultAzureCredential. Produktion: Setze AZURE_TOKEN_CREDENTIALS=prod oder AZURE_TOKEN_CREDENTIALS=
TokenCredential credential = new DefaultAzureCredentialBuilder()
    .requireEnvVars(AzureIdentityEnvVars.AZURE_TOKEN_CREDENTIALS)
    .build();
// Oder verwenden Sie in der Produktion direkt eine bestimmte Anmeldeinformation:
// Siehe https://learn.microsoft.com/java/api/overview/azure/identity-readme?view=azure-java-stable#credential-classes
// TokenCredential credential = new ManagedIdentityCredentialBuilder().build();

EventHubProducerClient producer = new EventHubClientBuilder()
    .fullyQualifiedNamespace(".servicebus.windows.net")
    .eventHubName("")
    .credential(credential)
    .buildProducerClient();

EventHubConsumerClient

import com.azure.messaging.eventhubs.EventHubConsumerClient;

EventHubConsumerClient consumer = new EventHubClientBuilder()
    .connectionString("", "")
    .consumerGroup(EventHubClientBuilder.DEFAULT_CONSUMER_GROUP_NAME)
    .buildConsumerClient();

Asynchrone Clients

import com.azure.messaging.eventhubs.EventHubProducerAsyncClient;
import com.azure.messaging.eventhubs.EventHubConsumerAsyncClient;

EventHubProducerAsyncClient asyncProducer = new EventHubClientBuilder()
    .connectionString("", "")
    .buildAsyncProducerClient();

EventHubConsumerAsyncClient asyncConsumer = new EventHubClientBuilder()
    .connectionString("", "")
    .consumerGroup("$Default")
    .buildAsyncConsumerClient();

Kernmuster

Einzelnes Ereignis senden

import com.azure.messaging.eventhubs.EventData;

EventData eventData = new EventData("Hallo, Event Hubs!");
producer.send(Collections.singletonList(eventData));

Ereignisbatch senden

import com.azure.messaging.eventhubs.EventDataBatch;
import com.azure.messaging.eventhubs.models.CreateBatchOptions;

// Batch erstellen
EventDataBatch batch = producer.createBatch();

// Ereignisse hinzufügen (gibt „false“ zurück, wenn der Stapel voll ist)
for (int i = 0; i < 100; i++) {
    EventData event = new EventData("Ereignis " + i);
    if (!batch.tryAdd(event)) {
        // Batch ist voll, senden und neuen Batch erstellen
        producer.send(batch);
        batch = producer.createBatch();
        batch.tryAdd(event);
    }
}

// Verbleibende Ereignisse senden
if (batch.getCount() > 0) {
    producer.send(batch);
}

An eine bestimmte Partition senden

CreateBatchOptions options = new CreateBatchOptions()
    .setPartitionId("0");

EventDataBatch batch = producer.createBatch(options);
batch.tryAdd(new EventData("Ereignis in Partition 0"));
producer.send(batch);

Mit Partitionsschlüssel senden

CreateBatchOptions options = new CreateBatchOptions()
    .setPartitionKey("customer-123");

EventDataBatch batch = producer.createBatch(options);
batch.tryAdd(new EventData("Kundenereignis"));
producer.send(batch);

Ereignis mit Eigenschaften

EventData event = new EventData("Bestellung erstellt");
event.getProperties().put("orderId", "ORD-123");
event.getProperties().put("customerId", "CUST-456");
event.getProperties().put("priority", 1);

producer.send(Collections.singletonList(event));

Ereignisse empfangen (einfach)

import com.azure.messaging.eventhubs.models.EventPosition;
import com.azure.messaging.eventhubs.models.PartitionEvent;

// Von einer bestimmten Partition empfangen
Iterable events = consumer.receiveFromPartition(
    "0",                           // partitionId
    10,                            // maxEvents
    EventPosition.earliest(),      // startingPosition
    Duration.ofSeconds(30)         // timeout
);

for (PartitionEvent partitionEvent : events) {
    EventData event = partitionEvent.getData();
    System.out.println("Body: " + event.getBodyAsString());
    System.out.println("Sequenz: " + event.getSequenceNumber());
    System.out.println("Offset: " + event.getOffset());
}

EventProcessorClient (Produktion)

import com.azure.messaging.eventhubs.EventProcessorClient;
import com.azure.messaging.eventhubs.EventProcessorClientBuilder;
import com.azure.messaging.eventhubs.checkpointstore.blob.BlobCheckpointStore;
import com.azure.storage.blob.BlobContainerAsyncClient;
import com.azure.storage.blob.BlobContainerClientBuilder;

// Checkpoint-Speicher erstellen
BlobContainerAsyncClient blobClient = new BlobContainerClientBuilder()
    .connectionString("")
    .containerName("checkpoints")
    .buildAsyncClient();

// Prozessor erstellen
EventProcessorClient processor = new EventProcessorClientBuilder()
    .connectionString("", "")
    .consumerGroup("$Default")
    .checkpointStore(new BlobCheckpointStore(blobClient))
    .processEvent(eventContext -> {
        EventData event = eventContext.getEventData();
        System.out.println("Verarbeitung: " + event.getBodyAsString());
        
        // Checkpoint nach der Verarbeitung
        eventContext.updateCheckpoint();
    })
    .processError(errorContext -> {
        System.err.println("Fehler: " + errorContext.getThrowable().getMessage());
        System.err.println("Partition: " + errorContext.getPartitionContext().getPartitionId());
    })
    .buildEventProcessorClient();

// Verarbeitung starten
processor.start();

// Weiterlaufen lassen...
Thread.sleep(Duration.ofMinutes(5).toMillis());

// Ordentlich beenden
processor.stop();

Stapelverarbeitung

EventProcessorClient processor = new EventProcessorClientBuilder()
    .connectionString("", "")
    .consumerGroup("$Default")
    .checkpointStore(new BlobCheckpointStore(blobClient))
    .processEventBatch(eventBatchContext -> {
        List events = eventBatchContext.getEvents();
        System.out.printf("%d Ereignisse empfangen%n", events.size());
        
        for (EventData event : events) {
            // Jedes Ereignis verarbeiten
            System.out.println(event.getBodyAsString());
        }
        
        // Checkpoint nach dem Batch
        eventBatchContext.updateCheckpoint();
    }, 50) // maxBatchSize
    .processError(errorContext -> {
        System.err.println("Fehler: " + errorContext.getThrowable());
    })
    .buildEventProcessorClient();

Asynchrones Empfangen

asyncConsumer.receiveFromPartition("0", EventPosition.latest())
    .subscribe(
        partitionEvent -> {
            EventData event = partitionEvent.getData();
            System.out.println("Empfangen: " + event.getBodyAsString());
        },
        error -> System.err.println("Fehler: " + error),
        () -> System.out.println("Abgeschlossen")
    );

Event-Hub-Eigenschaften abrufen

// Hub-Informationen abrufen
EventHubProperties hubProps = producer.getEventHubProperties();
System.out.println("Hub: " + hubProps.getName());
System.out.println("Partitionen: " + hubProps.getPartitionIds());

// Partitionsinformationen abrufen
PartitionProperties partitionProps = producer.getPartitionProperties("0");
System.out.println("Sequenzanfang: " + partitionProps.getBeginningSequenceNumber());
System.out.println("Letzte Sequenz: " + partitionProps.getLastEnqueuedSequenceNumber());
System.out.println("Letzter Offset: " + partitionProps.getLastEnqueuedOffset());

Ereignispositionen

// Vom Anfang aus
EventPosition.earliest()

// Vom Ende aus (nur neue Ereignisse)
EventPosition.latest()

// Ab einem bestimmten Offset
EventPosition.fromOffset(12345L)

// Ab einer bestimmten Sequenznummer
EventPosition.fromSequenceNumber(100L)

// Ab einem bestimmten Zeitpunkt
EventPosition.fromEnqueuedTime(Instant.now().minus(Duration.ofHours(1)))

Fehlerbehandlung

import com.azure.messaging.eventhubs.models.ErrorContext;

.processError(errorContext -> {
    Throwable error = errorContext.getThrowable();
    String partitionId = errorContext.getPartitionContext().getPartitionId();
    
    if (error instanceof AmqpException) {
        AmqpException amqpError = (AmqpException) error;
        if (amqpError.isTransient()) {
            System.out.println("Transienter Fehler, wird erneut versucht");
        }
    }
    
    System.err.printf("Fehler auf Partition %s: %s%n", partitionId, error.getMessage());
})

Ressourcenbereinigung

// Clients immer schließen
try {
    producer.send(batch);
} finally {
    producer.close();
}

// Oder „try-with-resources“ verwenden
try (EventHubProducerClient producer = new EventHubClientBuilder()
        .connectionString(connectionString, eventHubName)
        .buildProducerClient()) {
    producer.send(events);
}

Umgebungsvariablen

EVENT_HUBS_CONNECTION_STRING=Endpoint=sb://.servicebus.windows.net/;SharedAccessKeyName=...  # Alternative zur Entra-ID-Authentifizierung
EVENT_HUBS_NAME= # Erforderlich für den Namen des Event Hubs
STORAGE_CONNECTION_STRING= # Alternative zur Entra-ID-Authentifizierung für das Checkpointing
AZURE_TOKEN_CREDENTIALS=prod  # Nur erforderlich, wenn „DefaultAzureCredential“ in der Produktion verwendet wird

Bewährte Verfahren

  1. Verwenden Sie EventProcessorClient: Bietet in der Produktion Lastenausgleich und Checkpointing
  2. Ereignisse bündeln: Verwenden Sie „EventDataBatch“ für effizientes Senden
  3. Partitionsschlüssel: Verwenden Siediese für Reihenfolgegarantien innerhalb einer Partition
  4. Checkpointing: Führen Sie nach der Verarbeitung einen Checkpoint durch, um eine erneute Verarbeitung zu vermeiden
  5. Fehlerbehandlung: Behandeln Sie vorübergehende Fehler mit Wiederholungsversuchen
  6. Clients schließen: Schließen Sie Produzenten und Konsumenten immer, wenn der Vorgang abgeschlossen ist

Schlüsselbegriffe

  • „Event Hubs Java“
  • „Event-Streaming Azure“
  • „Echtzeit-Datenerfassung“
  • „EventProcessorClient“
  • „Event Hub-Produzent und -Konsument“
  • „Partitionsverarbeitung“
Auf GitHub ansehen
---
name: azure-eventhub-java
description: Build real-time streaming applications with the Azure Event Hubs SDK for Java, including sending and receiving events, batch processing, and production-ready event processors.
license: MIT
---

# Azure Event Hubs SDK for Java

Build real-time streaming applications using the Azure Event Hubs SDK for Java.

## Installation

```xml
<dependency>
    <groupId>com.azure</groupId>
    <artifactId>azure-messaging-eventhubs</artifactId>
    <version>5.19.0</version>
</dependency>

<!-- For checkpoint store (production) -->
<dependency>
    <groupId>com.azure</groupId>
    <artifactId>azure-messaging-eventhubs-checkpointstore-blob</artifactId>
    <version>1.20.0</version>
</dependency>
```

## Client Creation

### EventHubProducerClient

```java
import com.azure.messaging.eventhubs.EventHubProducerClient;
import com.azure.messaging.eventhubs.EventHubClientBuilder;

// With connection string
EventHubProducerClient producer = new EventHubClientBuilder()
    .connectionString("<connection-string>", "<event-hub-name>")
    .buildProducerClient();

// Full connection string with EntityPath
EventHubProducerClient producer = new EventHubClientBuilder()
    .connectionString("<connection-string-with-entity-path>")
    .buildProducerClient();
```

### With DefaultAzureCredential

```java
import com.azure.core.credential.TokenCredential;
import com.azure.identity.AzureIdentityEnvVars;
import com.azure.identity.DefaultAzureCredentialBuilder;
import com.azure.identity.ManagedIdentityCredentialBuilder;

// Local dev: DefaultAzureCredential. Production: set AZURE_TOKEN_CREDENTIALS=prod or AZURE_TOKEN_CREDENTIALS=<specific_credential>
TokenCredential credential = new DefaultAzureCredentialBuilder()
    .requireEnvVars(AzureIdentityEnvVars.AZURE_TOKEN_CREDENTIALS)
    .build();
// Or use a specific credential directly in production:
// See https://learn.microsoft.com/java/api/overview/azure/identity-readme?view=azure-java-stable#credential-classes
// TokenCredential credential = new ManagedIdentityCredentialBuilder().build();

EventHubProducerClient producer = new EventHubClientBuilder()
    .fullyQualifiedNamespace("<namespace>.servicebus.windows.net")
    .eventHubName("<event-hub-name>")
    .credential(credential)
    .buildProducerClient();
```

### EventHubConsumerClient

```java
import com.azure.messaging.eventhubs.EventHubConsumerClient;

EventHubConsumerClient consumer = new EventHubClientBuilder()
    .connectionString("<connection-string>", "<event-hub-name>")
    .consumerGroup(EventHubClientBuilder.DEFAULT_CONSUMER_GROUP_NAME)
    .buildConsumerClient();
```

### Async Clients

```java
import com.azure.messaging.eventhubs.EventHubProducerAsyncClient;
import com.azure.messaging.eventhubs.EventHubConsumerAsyncClient;

EventHubProducerAsyncClient asyncProducer = new EventHubClientBuilder()
    .connectionString("<connection-string>", "<event-hub-name>")
    .buildAsyncProducerClient();

EventHubConsumerAsyncClient asyncConsumer = new EventHubClientBuilder()
    .connectionString("<connection-string>", "<event-hub-name>")
    .consumerGroup("$Default")
    .buildAsyncConsumerClient();
```

## Core Patterns

### Send Single Event

```java
import com.azure.messaging.eventhubs.EventData;

EventData eventData = new EventData("Hello, Event Hubs!");
producer.send(Collections.singletonList(eventData));
```

### Send Event Batch

```java
import com.azure.messaging.eventhubs.EventDataBatch;
import com.azure.messaging.eventhubs.models.CreateBatchOptions;

// Create batch
EventDataBatch batch = producer.createBatch();

// Add events (returns false if batch is full)
for (int i = 0; i < 100; i++) {
    EventData event = new EventData("Event " + i);
    if (!batch.tryAdd(event)) {
        // Batch is full, send and create new batch
        producer.send(batch);
        batch = producer.createBatch();
        batch.tryAdd(event);
    }
}

// Send remaining events
if (batch.getCount() > 0) {
    producer.send(batch);
}
```

### Send to Specific Partition

```java
CreateBatchOptions options = new CreateBatchOptions()
    .setPartitionId("0");

EventDataBatch batch = producer.createBatch(options);
batch.tryAdd(new EventData("Partition 0 event"));
producer.send(batch);
```

### Send with Partition Key

```java
CreateBatchOptions options = new CreateBatchOptions()
    .setPartitionKey("customer-123");

EventDataBatch batch = producer.createBatch(options);
batch.tryAdd(new EventData("Customer event"));
producer.send(batch);
```

### Event with Properties

```java
EventData event = new EventData("Order created");
event.getProperties().put("orderId", "ORD-123");
event.getProperties().put("customerId", "CUST-456");
event.getProperties().put("priority", 1);

producer.send(Collections.singletonList(event));
```

### Receive Events (Simple)

```java
import com.azure.messaging.eventhubs.models.EventPosition;
import com.azure.messaging.eventhubs.models.PartitionEvent;

// Receive from specific partition
Iterable<PartitionEvent> events = consumer.receiveFromPartition(
    "0",                           // partitionId
    10,                            // maxEvents
    EventPosition.earliest(),      // startingPosition
    Duration.ofSeconds(30)         // timeout
);

for (PartitionEvent partitionEvent : events) {
    EventData event = partitionEvent.getData();
    System.out.println("Body: " + event.getBodyAsString());
    System.out.println("Sequence: " + event.getSequenceNumber());
    System.out.println("Offset: " + event.getOffset());
}
```

### EventProcessorClient (Production)

```java
import com.azure.messaging.eventhubs.EventProcessorClient;
import com.azure.messaging.eventhubs.EventProcessorClientBuilder;
import com.azure.messaging.eventhubs.checkpointstore.blob.BlobCheckpointStore;
import com.azure.storage.blob.BlobContainerAsyncClient;
import com.azure.storage.blob.BlobContainerClientBuilder;

// Create checkpoint store
BlobContainerAsyncClient blobClient = new BlobContainerClientBuilder()
    .connectionString("<storage-connection-string>")
    .containerName("checkpoints")
    .buildAsyncClient();

// Create processor
EventProcessorClient processor = new EventProcessorClientBuilder()
    .connectionString("<eventhub-connection-string>", "<event-hub-name>")
    .consumerGroup("$Default")
    .checkpointStore(new BlobCheckpointStore(blobClient))
    .processEvent(eventContext -> {
        EventData event = eventContext.getEventData();
        System.out.println("Processing: " + event.getBodyAsString());
        
        // Checkpoint after processing
        eventContext.updateCheckpoint();
    })
    .processError(errorContext -> {
        System.err.println("Error: " + errorContext.getThrowable().getMessage());
        System.err.println("Partition: " + errorContext.getPartitionContext().getPartitionId());
    })
    .buildEventProcessorClient();

// Start processing
processor.start();

// Keep running...
Thread.sleep(Duration.ofMinutes(5).toMillis());

// Stop gracefully
processor.stop();
```

### Batch Processing

```java
EventProcessorClient processor = new EventProcessorClientBuilder()
    .connectionString("<connection-string>", "<event-hub-name>")
    .consumerGroup("$Default")
    .checkpointStore(new BlobCheckpointStore(blobClient))
    .processEventBatch(eventBatchContext -> {
        List<EventData> events = eventBatchContext.getEvents();
        System.out.printf("Received %d events%n", events.size());
        
        for (EventData event : events) {
            // Process each event
            System.out.println(event.getBodyAsString());
        }
        
        // Checkpoint after batch
        eventBatchContext.updateCheckpoint();
    }, 50) // maxBatchSize
    .processError(errorContext -> {
        System.err.println("Error: " + errorContext.getThrowable());
    })
    .buildEventProcessorClient();
```

### Async Receiving

```java
asyncConsumer.receiveFromPartition("0", EventPosition.latest())
    .subscribe(
        partitionEvent -> {
            EventData event = partitionEvent.getData();
            System.out.println("Received: " + event.getBodyAsString());
        },
        error -> System.err.println("Error: " + error),
        () -> System.out.println("Complete")
    );
```

### Get Event Hub Properties

```java
// Get hub info
EventHubProperties hubProps = producer.getEventHubProperties();
System.out.println("Hub: " + hubProps.getName());
System.out.println("Partitions: " + hubProps.getPartitionIds());

// Get partition info
PartitionProperties partitionProps = producer.getPartitionProperties("0");
System.out.println("Begin sequence: " + partitionProps.getBeginningSequenceNumber());
System.out.println("Last sequence: " + partitionProps.getLastEnqueuedSequenceNumber());
System.out.println("Last offset: " + partitionProps.getLastEnqueuedOffset());
```

## Event Positions

```java
// Start from beginning
EventPosition.earliest()

// Start from end (new events only)
EventPosition.latest()

// From specific offset
EventPosition.fromOffset(12345L)

// From specific sequence number
EventPosition.fromSequenceNumber(100L)

// From specific time
EventPosition.fromEnqueuedTime(Instant.now().minus(Duration.ofHours(1)))
```

## Error Handling

```java
import com.azure.messaging.eventhubs.models.ErrorContext;

.processError(errorContext -> {
    Throwable error = errorContext.getThrowable();
    String partitionId = errorContext.getPartitionContext().getPartitionId();
    
    if (error instanceof AmqpException) {
        AmqpException amqpError = (AmqpException) error;
        if (amqpError.isTransient()) {
            System.out.println("Transient error, will retry");
        }
    }
    
    System.err.printf("Error on partition %s: %s%n", partitionId, error.getMessage());
})
```

## Resource Cleanup

```java
// Always close clients
try {
    producer.send(batch);
} finally {
    producer.close();
}

// Or use try-with-resources
try (EventHubProducerClient producer = new EventHubClientBuilder()
        .connectionString(connectionString, eventHubName)
        .buildProducerClient()) {
    producer.send(events);
}
```

## Environment Variables

```bash
EVENT_HUBS_CONNECTION_STRING=Endpoint=sb://<namespace>.servicebus.windows.net/;SharedAccessKeyName=...  # Alternative to Entra ID auth
EVENT_HUBS_NAME=<event-hub-name>  # Required for event hub name
STORAGE_CONNECTION_STRING=<for-checkpointing>  # Alternative to Entra ID auth for checkpointing
AZURE_TOKEN_CREDENTIALS=prod  # Required only if DefaultAzureCredential is used in production
```

## Best Practices

1. **Use EventProcessorClient**: For production, provides load balancing and checkpointing
2. **Batch Events**: Use `EventDataBatch` for efficient sending
3. **Partition Keys**: Use for ordering guarantees within a partition
4. **Checkpointing**: Checkpoint after processing to avoid reprocessing
5. **Error Handling**: Handle transient errors with retries
6. **Close Clients**: Always close producer/consumer when done

## Trigger Phrases

- "Event Hubs Java"
- "event streaming Azure"
- "real-time data ingestion"
- "EventProcessorClient"
- "event hub producer consumer"
- "partition processing"

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