クラスベースの依存関係とyield依存関係
クラスを使ってより複雑な依存関係を作成し、`yield`によるセットアップと後処理でリソースを管理する方法を学びます。
「クラスベースの依存関係とyield依存関係」はCoddyKit上の無料FastAPI Backend Development Bootcamp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FastAPI Backend Development Bootcamp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。 FastAPI Backend Development Bootcamp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。
Beyond Simple Function Dependencies
In previous lessons, we learned about basic function-based dependencies in FastAPI. These are great for simple tasks like validation or injecting common values.
But what if your dependency needs to maintain state, accept configuration, or manage resources that require both setup and cleanup? That's where class-based and yield dependencies come in!
Why Use Class-Based Dependencies?
Class-based dependencies offer several advantages for more complex scenarios:
- Organization: Encapsulate related logic and data within a class.
- State: Classes can hold internal state, which can be useful (though be mindful of request isolation).
- Configuration: Easily pass parameters to the dependency during its instantiation.
- Testability: Easier to mock or inject specific class instances for testing.
Defining a Class Dependency
To create a class-based dependency, you define a Python class. FastAPI can then use an instance of this class. If your class has a __call__ method, FastAPI will invoke it to get the dependency's value.
Let's see a simple example:
class MyService:
def __init__(self):
self.message = "Welcome from MyService!"
def __call__(self):
# This method is called by FastAPI to get the value
return self.message
# Simulate FastAPI's usage:
# FastAPI would instantiate MyService() once or per request
service_instance = MyService()
# It then calls the __call__ method to get the value
dependency_value = service_instance()
print(dependency_value)How FastAPI Handles Class Dependencies
When you use Depends(MyClass), FastAPI will:
- Create an instance of
MyClass. - If
MyClasshas a__call__method, it will call it and use the returned value as the dependency. - Otherwise, it will use the instance of
MyClassitself as the dependency.
If you use Depends(MyClass()), you're passing an already instantiated object, and FastAPI will simply use that object (and its __call__ method if present).
Class Dependencies with Parameters
A major benefit of class-based dependencies is the ability to pass parameters to their constructor. This is perfect for injecting configuration or other dependencies into your service class.
Imagine a service that needs an API key:
class ExternalApiService:
def __init__(self, api_key: str):
self.api_key = api_key
self.base_url = "https://api.external.com"
def __call__(self):
return f"API Service configured with key: {self.api_key}"
# In a real FastAPI app, the api_key might come from
# an environment variable or another dependency.
# Here, we simulate instantiation with different keys.
prod_api = ExternalApiService(api_key="prod_secret_123")
dev_api = ExternalApiService(api_key="dev_test_abc")
print(prod_api())
print(dev_api())Introducing Yield Dependencies
Some resources, like database connections or file handlers, need not only to be set up but also properly cleaned up afterwards. This is where yield dependencies shine!
A yield dependency is a generator function that allows you to run code before the endpoint is executed (setup) and after the response is sent (teardown).
Yield for Resource Setup
The code before the yield statement in your dependency function is executed as setup logic. The value that is yielded is what your endpoint function will receive as a dependency.
def get_database_session():
print("DB: Establishing connection...") # Setup logic
db_session = {"id": 1, "status": "active"} # Simulate a session
yield db_session # This value is passed to the dependent function
# Teardown logic (after yield) would go here
# Simulate a function that uses the dependency
def process_data(session):
print(f"Endpoint: Processing data with session ID: {session['id']}")
# How FastAPI conceptually uses it:
# 1. Calls get_database_session()
# 2. Takes the yielded value
# 3. Passes it to process_data()
session_generator = get_database_session()
active_session = next(session_generator) # Runs setup, gets yielded value
process_data(active_session)
# FastAPI would then ensure the generator is closed, triggering teardown.Yield for Resource Teardown
The power of yield dependencies is in their ability to perform cleanup. Any code placed after the yield statement will execute once the request has finished and the response has been sent.
This is typically done within a try...finally block to guarantee cleanup, even if errors occur.
def get_file_handle():
print("File: Opening 'log.txt'...")
file_handle = open("log.txt", "w") # Simulate opening a file
try:
yield file_handle # Provide the file handle
finally:
print("File: Closing 'log.txt'.")
file_handle.close() # Teardown logic: close the file
# Simulate a function using the dependency
def write_log(f_handle):
f_handle.write("Lesson content generated.\n")
print("Endpoint: Wrote to log file.")
# Manual simulation of FastAPI's lifecycle:
file_generator = get_file_handle()
current_file = next(file_generator) # Setup runs
write_log(current_file)
# This step would be handled by FastAPI to trigger teardown
try:
next(file_generator) # Continues generator, runs finally block
except StopIteration:
print("Generator exhausted, teardown complete.")Combining Class-based & Yield Dependencies
You can use both class-based and yield dependencies together! For instance, a class-based dependency might provide configuration for a database, and a yield dependency would then use that configuration to establish and close a database connection.
This allows for highly modular and robust resource management within your FastAPI application.
Quick Check
Consider the benefits and use cases for advanced dependency injection patterns.
Lesson Summary
Great job! In this lesson, you've leveled up your understanding of FastAPI dependencies.
- Class-based dependencies help organize complex logic, maintain state, and accept configuration.
- Yield dependencies (generator functions) are powerful for managing resources that require both setup (before
yield) and guaranteed teardown (afteryield, often in afinallyblock).
These patterns make your FastAPI applications more robust, maintainable, and easier to test.
よくある質問
「クラスベースの依存関係とyield依存関係」レッスンは無料ですか?
はい。「クラスベースの依存関係とyield依存関係」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)、FastAPI Backend Development Bootcamp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。 FastAPI Backend Development Bootcampコースには全4レッスンが含まれています。
「クラスベースの依存関係とyield依存関係」で何を学びますか?
クラスを使ってより複雑な依存関係を作成し、`yield`によるセットアップと後処理でリソースを管理する方法を学びます。 ブラウザで直接実行するハンズオンコードでFastAPI Backend Development Bootcamp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。
FastAPI Backend Development Bootcamp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FastAPI Backend Development Bootcamp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。
「クラスベースの依存関係とyield依存関係」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FastAPI Backend Development Bootcamp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FastAPI Backend Development Bootcamp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
- FastAPIの依存関係を理解する
- 共通の依存関係を注入する
- クラスベースの依存関係とyield依存関係
- グローバル依存関係とサブ依存関係