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azure-eventhub-py

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Erfassen und verarbeiten Sie Ereignisströme mit hohem Durchsatz mithilfe des Azure Event Hubs SDK für Python, das Unterstützung für Produzenten, Konsumenten und Checkpoints bietet.

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Zeit aktualisiert 12. September 2026

Azure Event Hubs SDK für Python

Big-Data-Streaming-Plattform für die Erfassung von Ereignissen mit hohem Durchsatz.

Installation

pip install azure-eventhub azure-identity
# For checkpointing with blob storage
pip install azure-eventhub-checkpointstoreblob-aio

Umgebungsvariablen

EVENT_HUB_FULLY_QUALIFIED_NAMESPACE=.servicebus.windows.net  # Required for all auth methods
EVENT_HUB_NAME=my-eventhub  # Required for all auth methods
STORAGE_ACCOUNT_URL=https://.blob.core.windows.net  # Required for checkpoint storage
CHECKPOINT_CONTAINER=checkpoints  # Required for checkpoint storage
AZURE_TOKEN_CREDENTIALS=prod # Required only if DefaultAzureCredential is used in production

Authentifizierung und Lebenszyklus

🔑 Für alle folgenden Code-Beispiele gelten zwei Regeln:

  1. Verwenden Sie vorzugsweise „DefaultAzureCredential“. Es funktioniert lokal (Azure CLI / VS Code / Developer CLI) und in Azure (verwaltete Identität, Workload-Identität) ohne Codeänderungen. Vermeiden Sie Verbindungszeichenfolgen, Konto- und API-Schlüssel – diese umgehen die Entra-Prüfung und -Rotation.
    • Lokale Entwicklung: DefaultAzureCredential funktioniert so wie es ist.
    • Produktion: Setzen Sie AZURE_TOKEN_CREDENTIALS=prod (oder AZURE_TOKEN_CREDENTIALS=), um die Anmeldeinformationskette auf produktionssichere Anmeldeinformationen zu beschränken.
  2. Hüllen Sie jeden Client in einen Kontextmanager ein, damit HTTP-Transporte, Sockets und Token-Caches deterministisch freigegeben werden:
    • Sync: with (...) as client:
    • Async: async with (...) as client: und async with DefaultAzureCredential() as credential: (aus azure.identity.aio)

Code-Schnipsel können diese Konfiguration zwar vereinfachen, aber Produktionscode sollte stets beide Regeln befolgen.

from azure.identity import DefaultAzureCredential, ManagedIdentityCredential
from azure.eventhub import EventHubProducerClient, EventHubConsumerClient

# Local dev: DefaultAzureCredential. Production: set AZURE_TOKEN_CREDENTIALS=prod or AZURE_TOKEN_CREDENTIALS=
credential = DefaultAzureCredential(require_envvar=True)
# Or use a specific credential directly in production:
# See https://learn.microsoft.com/python/api/overview/azure/identity-readme?view=azure-python#credential-classes
# credential = ManagedIdentityCredential()
namespace = ".servicebus.windows.net"
eventhub_name = "my-eventhub"

# Producer
with EventHubProducerClient(
    fully_qualified_namespace=namespace,
    eventhub_name=eventhub_name,
    credential=credential
) as producer:
    # Use producer here (see following sections for operations)
    ...

# Consumer
with EventHubConsumerClient(
    fully_qualified_namespace=namespace,
    eventhub_name=eventhub_name,
    consumer_group="$Default",
    credential=credential
) as consumer:
    # Use consumer here (see following sections for operations)
    ...

Client-Typen

Client Zweck
EventHubProducerClient Ereignisse an den Event Hub senden
EventHubConsumerClient Empfangen von Ereignissen aus dem Event Hub
BlobCheckpointStore Fortschritt des Consumers verfolgen

Ereignisse senden

from azure.eventhub import EventHubProducerClient, EventData
from azure.identity import DefaultAzureCredential

with EventHubProducerClient(
    fully_qualified_namespace=".servicebus.windows.net",
    eventhub_name="my-eventhub",
    credential=DefaultAzureCredential()
) as producer:
    # Create batch (handles size limits)
    event_data_batch = producer.create_batch()
    
    for i in range(10):
        try:
            event_data_batch.add(EventData(f"Event {i}"))
        except ValueError:
            # Batch is full, send and create new one
            producer.send_batch(event_data_batch)
            event_data_batch = producer.create_batch()
            event_data_batch.add(EventData(f"Event {i}"))
    
    # Send remaining
    producer.send_batch(event_data_batch)

An eine bestimmte Partition senden

# By partition ID
event_data_batch = producer.create_batch(partition_id="0")

# By partition key (consistent hashing)
event_data_batch = producer.create_batch(partition_key="user-123")

Ereignisse empfangen

Einfacher Empfang

from azure.eventhub import EventHubConsumerClient

def on_event(partition_context, event):
    print(f"Partition: {partition_context.partition_id}")
    print(f"Data: {event.body_as_str()}")
    partition_context.update_checkpoint(event)

with EventHubConsumerClient(
    fully_qualified_namespace=".servicebus.windows.net",
    eventhub_name="my-eventhub",
    consumer_group="$Default",
    credential=DefaultAzureCredential()
) as consumer:
    consumer.receive(
       
        starting_position="-1",  # Beginning of stream
    )

Mit Blob Checkpoint Store (Produktion)

from azure.eventhub import EventHubConsumerClient
from azure.eventhub.extensions.checkpointstoreblob import BlobCheckpointStore
from azure.identity import DefaultAzureCredential

checkpoint_store = BlobCheckpointStore(
    blob_account_url="https://.blob.core.windows.net",
    container_name="checkpoints",
    credential=DefaultAzureCredential()
)

with EventHubConsumerClient(
    fully_qualified_namespace=".servicebus.windows.net",
    eventhub_name="my-eventhub",
    consumer_group="$Default",
    credential=DefaultAzureCredential(),
    checkpoint_store=checkpoint_store
) as consumer:
    def on_event(partition_context, event):
        print(f"Received: {event.body_as_str()}")
        # Checkpoint after processing
        partition_context.update_checkpoint(event)

    consumer.receive(on_event=on_event)

Asynchroner Client

from azure.eventhub.aio import EventHubProducerClient, EventHubConsumerClient
from azure.identity.aio import DefaultAzureCredential
import asyncio

async def send_events():
    credential = DefaultAzureCredential()
    
    async with EventHubProducerClient(
        fully_qualified_namespace=".servicebus.windows.net",
        eventhub_name="my-eventhub",
        credential=credential
    ) as producer:
        batch = await producer.create_batch()
        batch.add(EventData("Async event"))
        await producer.send_batch(batch)

async def receive_events():
    async def on_event(partition_context, event):
        print(event.body_as_str())
        await partition_context.update_checkpoint(event)
    
    async with EventHubConsumerClient(
        fully_qualified_namespace=".servicebus.windows.net",
        eventhub_name="my-eventhub",
        consumer_group="$Default",
        credential=DefaultAzureCredential()
    ) as consumer:
        await consumer.receive(on_event=on_event)

asyncio.run(send_events())

Ereigniseigenschaften

event = EventData("My event body")

# Set properties
event.properties = {"custom_property": "value"}
event.content_type = "application/json"

# Read properties (on receive)
print(event.body_as_str())
print(event.sequence_number)
print(event.offset)
print(event.enqueued_time)
print(event.partition_key)

Event-Hub-Informationen abrufen

with producer:
    info = producer.get_eventhub_properties()
    print(f"Name: {info['name']}")
    print(f"Partitions: {info['partition_ids']}")
    
    for partition_id in info['partition_ids']:
        partition_info = producer.get_partition_properties(partition_id)
        print(f"Partition {partition_id}: {partition_info['last_enqueued_sequence_number']}")

Bewährte Vorgehensweisen

  1. Entscheiden Sie sich für „sync“ ODER „async“ und bleiben Sie dabei. Mischen Sie azure.xxx synchrone Clients nicht mit azure.xxx.aio asynchrone Clients im selben Aufrufpfad. Wählen Sie pro Modul einen Modus.
  2. Verwenden Sie stets Kontextmanager für Clients und asynchrone Anmeldeinformationen. Hüllen Sie jeden Client in with Client(...) as client: (synchron) oder async with Client(...) as client: (async) ein, um eine ordnungsgemäße Bereinigung zu gewährleisten. Für asynchrone DefaultAzureCredential aus azure.identity.aiosollten Sie außerdem async with credential: , damit Tokens und Transporte bereinigt werden.
  3. Verwenden Sie „DefaultAzureCredential für eine portierbare Authentifizierung zwischen lokaler Entwicklung und Azure (vermeiden Sie nach Möglichkeit Verbindungszeichenfolgen und API-Schlüssel).
  4. Verwenden Sie Batches zum Senden mehrerer Ereignisse
  5. Verwenden Sie in der Produktion den Checkpoint-Speicher für eine zuverlässige Verarbeitung
  6. Verwenden Sie den asynchronen Client für Szenarien mit hohem Durchsatz
  7. Verwenden Sie Partitionsschlüssel für eine geordnete Zustellung innerhalb einer Partition
  8. Beachten Sie die Beschränkungen für die Batchgröße – fangen Sie einen „ValueError“ ab, wenn der Batch voll ist
  9. Legen Sie geeignete Verbrauchergruppen für verschiedene Anwendungen fest

Referenzdateien

Datei Inhalt
references/checkpointing.md Muster für Checkpoint-Speicher, Blob-Checkpointing, Checkpoint-Strategien
references/partitions.md Partitionsverwaltung, Lastenausgleich, Startpositionen
scripts/setup_consumer.py CLI für Event Hub-Informationen, Consumer-Einrichtung sowie Senden und Empfangen von Ereignissen
Auf GitHub ansehen
---
name: azure-eventhub-py
description: Ingest and process high-throughput event streams using Azure Event Hubs SDK for Python, with support for producers, consumers, and checkpointing.
license: MIT
---

# Azure Event Hubs SDK for Python

Big data streaming platform for high-throughput event ingestion.

## Installation

```bash
pip install azure-eventhub azure-identity
# For checkpointing with blob storage
pip install azure-eventhub-checkpointstoreblob-aio
```

## Environment Variables

```bash
EVENT_HUB_FULLY_QUALIFIED_NAMESPACE=<namespace>.servicebus.windows.net  # Required for all auth methods
EVENT_HUB_NAME=my-eventhub  # Required for all auth methods
STORAGE_ACCOUNT_URL=https://<account>.blob.core.windows.net  # Required for checkpoint storage
CHECKPOINT_CONTAINER=checkpoints  # Required for checkpoint storage
AZURE_TOKEN_CREDENTIALS=prod # Required only if DefaultAzureCredential is used in production
```

## Authentication & Lifecycle

> **🔑 Two rules apply to every code sample below:**
>
> 1. **Prefer `DefaultAzureCredential`.** It works locally (Azure CLI / VS Code / Developer CLI) and in Azure (managed identity, workload identity) with no code change. Avoid connection strings, account/API keys — they bypass Entra audit and rotation.
>    - Local dev: `DefaultAzureCredential` works as-is.
>    - Production: set `AZURE_TOKEN_CREDENTIALS=prod` (or `AZURE_TOKEN_CREDENTIALS=<specific_credential>`) to constrain the credential chain to production-safe credentials.
> 2. **Wrap every client in a context manager** so HTTP transports, sockets, and token caches are released deterministically:
>    - Sync: `with <Client>(...) as client:`
>    - Async: `async with <Client>(...) as client:` **and** `async with DefaultAzureCredential() as credential:` (from `azure.identity.aio`)
>
> Snippets may abbreviate this setup, but production code should always follow both rules.

```python
from azure.identity import DefaultAzureCredential, ManagedIdentityCredential
from azure.eventhub import EventHubProducerClient, EventHubConsumerClient

# Local dev: DefaultAzureCredential. Production: set AZURE_TOKEN_CREDENTIALS=prod or AZURE_TOKEN_CREDENTIALS=<specific_credential>
credential = DefaultAzureCredential(require_envvar=True)
# Or use a specific credential directly in production:
# See https://learn.microsoft.com/python/api/overview/azure/identity-readme?view=azure-python#credential-classes
# credential = ManagedIdentityCredential()
namespace = "<namespace>.servicebus.windows.net"
eventhub_name = "my-eventhub"

# Producer
with EventHubProducerClient(
    fully_qualified_namespace=namespace,
    eventhub_name=eventhub_name,
    credential=credential
) as producer:
    # Use producer here (see following sections for operations)
    ...

# Consumer
with EventHubConsumerClient(
    fully_qualified_namespace=namespace,
    eventhub_name=eventhub_name,
    consumer_group="$Default",
    credential=credential
) as consumer:
    # Use consumer here (see following sections for operations)
    ...
```

## Client Types

| Client | Purpose |
|--------|---------|
| `EventHubProducerClient` | Send events to Event Hub |
| `EventHubConsumerClient` | Receive events from Event Hub |
| `BlobCheckpointStore` | Track consumer progress |

## Send Events

```python
from azure.eventhub import EventHubProducerClient, EventData
from azure.identity import DefaultAzureCredential

with EventHubProducerClient(
    fully_qualified_namespace="<namespace>.servicebus.windows.net",
    eventhub_name="my-eventhub",
    credential=DefaultAzureCredential()
) as producer:
    # Create batch (handles size limits)
    event_data_batch = producer.create_batch()
    
    for i in range(10):
        try:
            event_data_batch.add(EventData(f"Event {i}"))
        except ValueError:
            # Batch is full, send and create new one
            producer.send_batch(event_data_batch)
            event_data_batch = producer.create_batch()
            event_data_batch.add(EventData(f"Event {i}"))
    
    # Send remaining
    producer.send_batch(event_data_batch)
```

### Send to Specific Partition

```python
# By partition ID
event_data_batch = producer.create_batch(partition_id="0")

# By partition key (consistent hashing)
event_data_batch = producer.create_batch(partition_key="user-123")
```

## Receive Events

### Simple Receive

```python
from azure.eventhub import EventHubConsumerClient

def on_event(partition_context, event):
    print(f"Partition: {partition_context.partition_id}")
    print(f"Data: {event.body_as_str()}")
    partition_context.update_checkpoint(event)

with EventHubConsumerClient(
    fully_qualified_namespace="<namespace>.servicebus.windows.net",
    eventhub_name="my-eventhub",
    consumer_group="$Default",
    credential=DefaultAzureCredential()
) as consumer:
    consumer.receive(
        on_event=on_event,
        starting_position="-1",  # Beginning of stream
    )
```

### With Blob Checkpoint Store (Production)

```python
from azure.eventhub import EventHubConsumerClient
from azure.eventhub.extensions.checkpointstoreblob import BlobCheckpointStore
from azure.identity import DefaultAzureCredential

checkpoint_store = BlobCheckpointStore(
    blob_account_url="https://<account>.blob.core.windows.net",
    container_name="checkpoints",
    credential=DefaultAzureCredential()
)

with EventHubConsumerClient(
    fully_qualified_namespace="<namespace>.servicebus.windows.net",
    eventhub_name="my-eventhub",
    consumer_group="$Default",
    credential=DefaultAzureCredential(),
    checkpoint_store=checkpoint_store
) as consumer:
    def on_event(partition_context, event):
        print(f"Received: {event.body_as_str()}")
        # Checkpoint after processing
        partition_context.update_checkpoint(event)

    consumer.receive(on_event=on_event)
```

## Async Client

```python
from azure.eventhub.aio import EventHubProducerClient, EventHubConsumerClient
from azure.identity.aio import DefaultAzureCredential
import asyncio

async def send_events():
    credential = DefaultAzureCredential()
    
    async with EventHubProducerClient(
        fully_qualified_namespace="<namespace>.servicebus.windows.net",
        eventhub_name="my-eventhub",
        credential=credential
    ) as producer:
        batch = await producer.create_batch()
        batch.add(EventData("Async event"))
        await producer.send_batch(batch)

async def receive_events():
    async def on_event(partition_context, event):
        print(event.body_as_str())
        await partition_context.update_checkpoint(event)
    
    async with EventHubConsumerClient(
        fully_qualified_namespace="<namespace>.servicebus.windows.net",
        eventhub_name="my-eventhub",
        consumer_group="$Default",
        credential=DefaultAzureCredential()
    ) as consumer:
        await consumer.receive(on_event=on_event)

asyncio.run(send_events())
```

## Event Properties

```python
event = EventData("My event body")

# Set properties
event.properties = {"custom_property": "value"}
event.content_type = "application/json"

# Read properties (on receive)
print(event.body_as_str())
print(event.sequence_number)
print(event.offset)
print(event.enqueued_time)
print(event.partition_key)
```

## Get Event Hub Info

```python
with producer:
    info = producer.get_eventhub_properties()
    print(f"Name: {info['name']}")
    print(f"Partitions: {info['partition_ids']}")
    
    for partition_id in info['partition_ids']:
        partition_info = producer.get_partition_properties(partition_id)
        print(f"Partition {partition_id}: {partition_info['last_enqueued_sequence_number']}")
```

## Best Practices

1. **Pick sync OR async and stay consistent.** Do not mix `azure.xxx` sync clients with `azure.xxx.aio` async clients in the same call path. Choose one mode per module.
2. **Always use context managers for clients and async credentials.** Wrap every client in `with Client(...) as client:` (sync) or `async with Client(...) as client:` (async) for proper cleanup. For async `DefaultAzureCredential` from `azure.identity.aio`, also use `async with credential:` so tokens and transports are cleaned up.
3. **Use `DefaultAzureCredential`** for portable auth across local dev and Azure (avoid connection strings / API keys when possible).
4. **Use batches** for sending multiple events
5. **Use checkpoint store** in production for reliable processing
6. **Use async client** for high-throughput scenarios
7. **Use partition keys** for ordered delivery within a partition
8. **Handle batch size limits** — catch ValueError when batch is full
9. **Set appropriate consumer groups** for different applications

## Reference Files

| File | Contents |
|------|----------|
| [references/checkpointing.md](references/checkpointing.md) | Checkpoint store patterns, blob checkpointing, checkpoint strategies |
| [references/partitions.md](references/partitions.md) | Partition management, load balancing, starting positions |
| [scripts/setup_consumer.py](scripts/setup_consumer.py) | CLI for Event Hub info, consumer setup, and event sending/receiving |

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