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Spring Boot 4 Microservices & REST APIs · 강의

Docker Compose로 컨테이너 관리하기

Docker Compose를 사용하여 마이크로서비스의 여러 Docker 컨테이너를 오케스트레이션합니다.

Docker Compose로 컨테이너 관리하기은(는) CoddyKit의 무료 Spring Boot 4 Microservices & REST APIs 강의입니다. 이것은 3개 중 2번째 강의입니다. 아래에서 전체 강의를 무료로 읽을 수 있으며, 내장 코드 에디터와 24/7 AI 튜터와 함께 브라우저에서 직접 실습할 수 있습니다. 이 강의는 Spring Boot 4 Microservices & REST APIs 학습 경로의 일부이며, 진행 상황이 웹과 CoddyKit 앱에 동기화됩니다. Spring Boot 4 Microservices & REST APIs 강의에는 총 3개의 강의가 포함되어 있습니다.

이 강의의 일부는 아직 번역되지 않았으며 영어로 표시됩니다.

Why Multi-Container Apps?

Microservices often rely on several components. Think of a Spring Boot application needing a database, a message queue, or another API service.

Each component typically runs in its own Docker container. Managing these individually can become complex, especially during development.

How do we start them all together, ensure they can communicate, and manage their lifecycle efficiently? This is where Docker Compose steps in!

Introducing Docker Compose

Docker Compose is a tool for defining and running multi-container Docker applications. Instead of managing each container separately, you define all services in a single, easy-to-read file.

This definition file is typically named docker-compose.yml. It uses YAML syntax, which is both human-readable and machine-parseable.

Compose simplifies your development workflow by letting you spin up your entire application stack with a single command.

Basic docker-compose.yml Structure

The docker-compose.yml file starts with a version, followed by the services section where you define each container as a distinct service.

Each service represents a container, and you can specify its image, exposed ports, environment variables, and more.

Here's a minimal structure for a simple web app:

version: '3.8'
services:
  webapp:
    image: 'nginx:latest'
    ports:
      - '80:80'

Defining a Web Service

Let's define a simple web service. We'll use the official Nginx image, map a port, and give it an optional container_name.

The image key specifies the Docker image to use (e.g., nginx:latest). The ports key maps host ports to container ports (e.g., host's port 80 to container's port 80).

version: '3.8'
services:
  webapp:
    image: 'nginx:latest'
    ports:
      - '80:80'
    container_name: my_nginx_app

Adding a Database Service

Most applications need a database. Let's add a PostgreSQL database service to our docker-compose.yml file.

We'll specify the postgres:13 image and set crucial environment variables for credentials (POSTGRES_DB, POSTGRES_USER, POSTGRES_PASSWORD).

version: '3.8'
services:
  webapp:
    image: 'nginx:latest'
    ports:
      - '80:80'
  database:
    image: 'postgres:13'
    environment:
      POSTGRES_DB: mydatabase
      POSTGRES_USER: user
      POSTGRES_PASSWORD: password

Connecting Services (Networking)

Docker Compose automatically creates a default network for all services defined in your docker-compose.yml file.

Services can communicate with each other using their service names as hostnames. For example, your web app can connect to the database using database as the hostname and the specified port (e.g., 5432 for PostgreSQL).

This automatic networking simplifies inter-service communication setup significantly.

Data Persistence with Volumes

Containers are ephemeral; data inside them is lost if the container is removed. For databases, this is a critical problem!

Docker volumes provide a way to persist data generated by Docker containers. We can use a named volume to store our database's data outside the container, ensuring it survives container restarts or removals.

version: '3.8'
services:
  database:
    image: 'postgres:13'
    environment:
      POSTGRES_DB: mydatabase
      POSTGRES_USER: user
      POSTGRES_PASSWORD: password
    volumes:
      - db_data:/var/lib/postgresql/data
volumes:
  db_data:

Building Custom Images

Often, you'll have your own application code (like a Spring Boot JAR) that needs to be built into a Docker image. Docker Compose can handle this too.

Instead of specifying an image, you can use the build key and point to the directory containing your Dockerfile.

Compose will then build your custom image before starting the service. Here's how it looks:

# docker-compose.yml
version: '3.8'
services:
  my-app:
    build: ./my-app-dir
    ports:
      - '8080:8080'

# my-app-dir/Dockerfile
FROM openjdk:17-jdk-slim
COPY target/my-app.jar app.jar
ENTRYPOINT ["java", "-jar", "app.jar"]

Key Docker Compose Commands

Once your docker-compose.yml is ready, a few commands will be essential for managing your application stack:

  • docker compose up: Builds (if needed) and starts all services. Use -d for detached mode.
  • docker compose down: Stops and removes containers, networks, and optionally volumes.
  • docker compose ps: Lists all running services defined in the Compose file.
  • docker compose logs: Shows log output from services.

Remember to run these commands in the directory where your docker-compose.yml file is located.

Quick Check: Compose Essentials

Consider a docker-compose.yml file that defines two services: web and db.

Which of the following statements about how these services communicate and store data are generally TRUE?

Recap: Your Multi-Container Powerhouse

Congratulations! You've learned how Docker Compose simplifies the management of multi-container applications.

You can now define your entire application stack in a single docker-compose.yml file, including web services, databases, and custom-built images.

This tool is incredibly useful for local development and testing of microservices, allowing you to spin up your whole environment with just one command. Keep practicing!

자주 묻는 질문

“Docker Compose로 컨테이너 관리하기” 강의는 무료인가요?

네 — “Docker Compose로 컨테이너 관리하기” 전체 내용을 이 웹사이트에서 무료로 읽을 수 있습니다. 인터랙티브하게 실습하려면(내장 코드 에디터와 24/7 AI 튜터), CoddyKit PRO로 업그레이드하면 Spring Boot 4 Microservices & REST APIs 강의 전체를 잠금 해제할 수 있습니다. Spring Boot 4 Microservices & REST APIs 강의에는 총 3개의 강의가 포함되어 있습니다.

“Docker Compose로 컨테이너 관리하기”에서 뭘 배우나요?

Docker Compose를 사용하여 마이크로서비스의 여러 Docker 컨테이너를 오케스트레이션합니다. 브라우저에서 직접 실행하는 실습 코드로 Spring Boot 4 Microservices & REST APIs을(를) 배우며, 24/7 AI 튜터가 강의를 진행하면서 질문에 답변해줍니다.

Spring Boot 4 Microservices & REST APIs을(를) 시작하는 데 경험이 필요한가요?

사전 경험은 필요하지 않습니다. CoddyKit의 Spring Boot 4 Microservices & REST APIs은(는) 초급자부터 고급 학습자까지를 위해 구성되어 있으므로, 여기서 시작하거나 처음부터 시작할 수 있으며 자신의 속도대로 진행할 수 있습니다. 이것은 3개 중 2번째 강의입니다.

“Docker Compose로 컨테이너 관리하기” 강의는 얼마나 걸리나요?

대부분의 CoddyKit 강의는 약 5~10분이 소요됩니다. 각 강의는 간결하고 인터랙티브하여 꾸준한 진행이 가능하며, 웹과 앱에서 중단한 부분부터 바로 시작할 수 있습니다.

이 Spring Boot 4 Microservices & REST APIs 강의에서 코드를 작성하고 실행할 수 있나요?

네. 모든 Spring Boot 4 Microservices & REST APIs 강의에는 내장 코드 에디터가 포함되어 있으므로, 브라우저에서 바로 실제 코드를 작성하고 실행한 후 즉시 AI 피드백을 받을 수 있습니다 — 로컬 설정이 필요 없습니다.

이 강의의 모든 강의

  1. Spring Boot 애플리케이션 Docker 이미지 만들기
  2. Docker Compose로 컨테이너 관리하기
  3. 컨테이너 오케스트레이션 개념
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