0Pricing
Spring Boot 4 Microservices & REST APIs · レッスン

RESTエンドポイントのセキュリティ保護

Spring Securityを実装し、不正アクセスからREST APIエンドポイントを保護します。

「RESTエンドポイントのセキュリティ保護」はCoddyKit上の無料Spring Boot 4 Microservices & REST APIsレッスンです。 これはレッスン2/3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Spring Boot 4 Microservices & REST APIs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。 Spring Boot 4 Microservices & REST APIsコースには全3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 Secure Your API Endpoints?

APIs are gateways to your application's data and functionality. Without proper security, anyone could access, modify, or delete sensitive information.

This lesson will show you how Spring Security helps protect your REST APIs from unauthorized access, ensuring only legitimate users can interact with your services.

Spring Security: Your API's Bouncer

Spring Security is a powerful and highly customizable framework for authentication and access control. For REST APIs, it acts like a bouncer, checking credentials before allowing requests to reach your endpoints.

  • It handles user authentication (who you are).
  • It manages authorization (what you can do).
  • It protects against common web vulnerabilities.

Get Started: Add Dependency

To integrate Spring Security into your Spring Boot project, you need to add its starter dependency to your pom.xml file (if using Maven).

This dependency brings in all the necessary Spring Security components and auto-configuration.

<dependency>
    <groupId>org.springframework.boot</groupId>
    <artifactId>spring-boot-starter-security</artifactId>
</dependency>

Default Security Behavior

Once the Spring Security dependency is added, your Spring Boot application automatically secures all HTTP endpoints!

When you run the app, Spring Security generates a random password and logs it to the console. You'll need this password, along with the default username "user", to access any endpoint.

Customizing Security Rules

The default security is a good start, but you'll want to define your own rules. We do this by creating a security configuration class.

This class uses @Configuration and @EnableWebSecurity, and defines a SecurityFilterChain bean to customize HTTP security.

Try running this basic setup. It will still require authentication, but we'll add users next!

import org.springframework.boot.SpringApplication;
import org.springframework.boot.autoconfigure.SpringBootApplication;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
import org.springframework.security.config.annotation.web.builders.HttpSecurity;
import org.springframework.security.config.annotation.web.configuration.EnableWebSecurity;
import org.springframework.security.web.SecurityFilterChain;
import org.springframework.web.bind.annotation.GetMapping;
import org.springframework.web.bind.annotation.RestController;

@SpringBootApplication
public class Main {
    public static void main(String[] args) {
        SpringApplication.run(Main.class, args);
    }
}

@Configuration
@EnableWebSecurity
class SecurityConfig {
    @Bean
    public SecurityFilterChain securityFilterChain(HttpSecurity http) throws Exception {
        http.httpBasic(); // Enable basic auth
        http.authorizeHttpRequests(authorize -> authorize
            .anyRequest().authenticated() // All requests need auth
        );
        return http.build();
    }
}

@RestController
class HelloController {
    @GetMapping("/hello")
    public String hello() {
        return "Hello, Secured World!";
    }
}

Defining Users in Memory

For simple applications or testing, you can define users directly in your security configuration using an InMemoryUserDetailsManager bean.

We'll add a user named "user" with password "password" and role "USER". Note: withDefaultPasswordEncoder() is for quick demos; in production, use strong password encoders.

import org.springframework.boot.SpringApplication;
import org.springframework.boot.autoconfigure.SpringBootApplication;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
import org.springframework.security.config.annotation.web.builders.HttpSecurity;
import org.springframework.security.config.annotation.web.configuration.EnableWebSecurity;
import org.springframework.security.core.userdetails.User;
import org.springframework.security.core.userdetails.UserDetails;
import org.springframework.security.core.userdetails.UserDetailsService;
import org.springframework.security.provisioning.InMemoryUserDetailsManager;
import org.springframework.security.web.SecurityFilterChain;
import org.springframework.web.bind.annotation.GetMapping;
import org.springframework.web.bind.annotation.RestController;

@SpringBootApplication
public class Main {
    public static void main(String[] args) {
        SpringApplication.run(Main.class, args);
    }
}

@Configuration
@EnableWebSecurity
class SecurityConfig {
    @Bean
    public SecurityFilterChain securityFilterChain(HttpSecurity http) throws Exception {
        http.httpBasic();
        http.authorizeHttpRequests(authorize -> authorize
            .anyRequest().authenticated()
        );
        return http.build();
    }

    @Bean
    public UserDetailsService userDetailsService() {
        UserDetails user = User.withDefaultPasswordEncoder()
            .username("user")
            .password("password")
            .roles("USER")
            .build();
        return new InMemoryUserDetailsManager(user);
    }
}

@RestController
class HelloController {
    @GetMapping("/hello")
    public String hello() {
        return "Hello, Secured User!";
    }
}

Endpoint-Specific Authorization

You can define different security rules for different URL patterns using requestMatchers(). The anyRequest().authenticated() rule ensures all other requests require authentication.

Here, we'll make our /hello endpoint require authentication, while other paths will be public.

import org.springframework.boot.SpringApplication;
import org.springframework.boot.autoconfigure.SpringBootApplication;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
import org.springframework.security.config.annotation.web.builders.HttpSecurity;
import org.springframework.security.config.annotation.web.configuration.EnableWebSecurity;
import org.springframework.security.core.userdetails.User;
import org.springframework.security.core.userdetails.UserDetails;
import org.springframework.security.core.userdetails.UserDetailsService;
import org.springframework.security.provisioning.InMemoryUserDetailsManager;
import org.springframework.security.web.SecurityFilterChain;
import org.springframework.web.bind.annotation.GetMapping;
import org.springframework.web.bind.annotation.RestController;

@SpringBootApplication
public class Main {
    public static void main(String[] args) {
        SpringApplication.run(Main.class, args);
    }
}

@Configuration
@EnableWebSecurity
class SecurityConfig {
    @Bean
    public SecurityFilterChain securityFilterChain(HttpSecurity http) throws Exception {
        http.httpBasic();
        http.authorizeHttpRequests(authorize -> authorize
            .requestMatchers("/hello").authenticated() // /hello requires auth
            .anyRequest().permitAll() // All other requests are public
        );
        return http.build();
    }

    @Bean
    public UserDetailsService userDetailsService() {
        UserDetails user = User.withDefaultPasswordEncoder()
            .username("user")
            .password("password")
            .roles("USER")
            .build();
        return new InMemoryUserDetailsManager(user);
    }
}

@RestController
class HelloController {
    @GetMapping("/hello")
    public String hello() {
        return "Hello, Secured User!";
    }

    @GetMapping("/public")
    public String publicEndpoint() {
        return "Hello, Public!";
    }
}

Public Endpoints with permitAll()

Sometimes you need endpoints that don't require any authentication, like a health check or public information. For these, you use .permitAll().

Order matters! More specific rules (like /public/**) should come before more general ones (like anyRequest()).

import org.springframework.boot.SpringApplication;
import org.springframework.boot.autoconfigure.SpringBootApplication;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
import org.springframework.security.config.annotation.web.builders.HttpSecurity;
import org.springframework.security.config.annotation.web.configuration.EnableWebSecurity;
import org.springframework.security.core.userdetails.User;
import org.springframework.security.core.userdetails.UserDetails;
import org.springframework.security.core.userdetails.UserDetailsService;
import org.springframework.security.provisioning.InMemoryUserDetailsManager;
import org.springframework.security.web.SecurityFilterChain;
import org.springframework.web.bind.annotation.GetMapping;
import org.springframework.web.bind.annotation.RestController;

@SpringBootApplication
public class Main {
    public static void main(String[] args) {
        SpringApplication.run(Main.class, args);
    }
}

@Configuration
@EnableWebSecurity
class SecurityConfig {
    @Bean
    public SecurityFilterChain securityFilterChain(HttpSecurity http) throws Exception {
        http.httpBasic();
        http.authorizeHttpRequests(authorize -> authorize
            .requestMatchers("/public/**").permitAll() // Public access
            .requestMatchers("/secure/**").authenticated() // Requires authentication
            .anyRequest().denyAll() // Deny all other requests by default
        );
        return http.build();
    }

    @Bean
    public UserDetailsService userDetailsService() {
        UserDetails user = User.withDefaultPasswordEncoder()
            .username("user")
            .password("password")
            .roles("USER")
            .build();
        return new InMemoryUserDetailsManager(user);
    }
}

@RestController
class MyController {
    @GetMapping("/public/info")
    public String publicInfo() {
        return "This is public information!";
    }

    @GetMapping("/secure/data")
    public String secureData() {
        return "This is secure data!";
    }
}

CSRF Protection & REST APIs

CSRF (Cross-Site Request Forgery) protection is crucial for browser-based applications. However, for stateless REST APIs typically consumed by non-browser clients (like mobile apps or other services), CSRF protection is generally not needed and can sometimes cause issues.

You can explicitly disable it in your security configuration:

import org.springframework.boot.SpringApplication;
import org.springframework.boot.autoconfigure.SpringBootApplication;
import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
import org.springframework.security.config.annotation.web.builders.HttpSecurity;
import org.springframework.security.config.annotation.web.configuration.EnableWebSecurity;
import org.springframework.security.core.userdetails.User;
import org.springframework.security.core.userdetails.UserDetails;
import org.springframework.security.core.userdetails.UserDetailsService;
import org.springframework.security.provisioning.InMemoryUserDetailsManager;
import org.springframework.security.web.SecurityFilterChain;
import org.springframework.web.bind.annotation.GetMapping;
import org.springframework.web.bind.annotation.RestController;

@SpringBootApplication
public class Main {
    public static void main(String[] args) {
        SpringApplication.run(Main.class, args);
    }
}

@Configuration
@EnableWebSecurity
class SecurityConfig {
    @Bean
    public SecurityFilterChain securityFilterChain(HttpSecurity http) throws Exception {
        http
            .csrf().disable() // Disable CSRF for REST APIs
            .httpBasic();
        http.authorizeHttpRequests(authorize -> authorize
            .requestMatchers("/public/**").permitAll()
            .requestMatchers("/secure/**").authenticated()
            .anyRequest().denyAll()
        );
        return http.build();
    }

    @Bean
    public UserDetailsService userDetailsService() {
        UserDetails user = User.withDefaultPasswordEncoder()
            .username("user")
            .password("password")
            .roles("USER")
            .build();
        return new InMemoryUserDetailsManager(user);
    }
}

@RestController
class MyController {
    @GetMapping("/public/info")
    public String publicInfo() {
        return "This is public information!";
    }

    @GetMapping("/secure/data")
    public String secureData() {
        return "This is secure data!";
    }
}

Quick Check: Security Access

Consider the following SecurityConfig. What would happen if you try to access /api/status without providing any credentials?

import org.springframework.context.annotation.Bean;
import org.springframework.context.annotation.Configuration;
import org.springframework.security.config.annotation.web.builders.HttpSecurity;
import org.springframework.security.config.annotation.web.configuration.EnableWebSecurity;
import org.springframework.security.web.SecurityFilterChain;

@Configuration
@EnableWebSecurity
class SecurityConfig {
    @Bean
    public SecurityFilterChain securityFilterChain(HttpSecurity http) throws Exception {
        http
            .csrf().disable()
            .httpBasic();
        http.authorizeHttpRequests(authorize -> authorize
            .requestMatchers("/api/public/**").permitAll()
            .requestMatchers("/api/admin/**").hasRole("ADMIN")
            .anyRequest().authenticated()
        );
        return http.build();
    }
}

Lesson Recap: Securing Endpoints

In this lesson, you learned the foundational steps to secure your Spring Boot REST API endpoints:

  • Added the Spring Security dependency.
  • Understood the default security behavior.
  • Configured a SecurityFilterChain to define custom rules.
  • Set up in-memory users for basic authentication.
  • Used requestMatchers() with permitAll() and authenticated() to define access for specific paths.
  • Disabled CSRF protection for stateless REST APIs.

This knowledge is crucial for building robust and secure microservices!

よくある質問

「RESTエンドポイントのセキュリティ保護」レッスンは無料ですか?

はい。「RESTエンドポイントのセキュリティ保護」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)、Spring Boot 4 Microservices & REST APIs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。 Spring Boot 4 Microservices & REST APIsコースには全3レッスンが含まれています。

「RESTエンドポイントのセキュリティ保護」で何を学びますか?

Spring Securityを実装し、不正アクセスからREST APIエンドポイントを保護します。 ブラウザで直接実行するハンズオンコードでSpring Boot 4 Microservices & REST APIs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。

Spring Boot 4 Microservices & REST APIs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Spring Boot 4 Microservices & REST APIs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2/3です。

「RESTエンドポイントのセキュリティ保護」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Spring Boot 4 Microservices & REST APIs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Spring Boot 4 Microservices & REST APIs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. OAuth2とJWTの基礎
  2. RESTエンドポイントのセキュリティ保護
  3. ロールベースアクセス制御
← Spring Boot 4 Microservices & REST APIsに戻る