Token导航 LogoToken导航TokenDH.com
研究检索执行命令github未标认证来源可访问许可证需确认审计通过

spring-data-neo4j春季数据 Neo4j

Agent Skill

用于辅助 Java 项目开发、面向对象设计、Spring 生态、Maven 或 Gradle 依赖和后端工程实践。它适合让 Agent 分析类结构、设计接口、整理服务分层、生成测试或检查常见代码坏味道。使用时需要结合项目已有架构、包结构和依赖版本,不应只按通用教程改代码;涉及数据库、事务、并发或框架配置时,应先确认运行环境和回归测试范围。

总安装

16,323

周安装

694

GitHub Stars

229

下载量

5,719
CodexClaudeCursorGemini CLI

安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:spring-data-neo4j(春季数据 Neo4j)
来源仓库:https://github.com/giuseppe-trisciuoglio/developer-kit
仓库路径:skills/spring-data-neo4j
安装命令:
npx skills add https://github.com/giuseppe-trisciuoglio/developer-kit --skill spring-data-neo4j
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/giuseppe-trisciuoglio/developer-kit --skill spring-data-neo4j

简介

Spring Data Neo4j 将图形数据库与存储库、Cypher 查询和反应性操作集成。

  • 三个抽象级别:Neo4j 客户端(低级)、Neo4j 模板(中级)和 Neo4j 存储库(高级查询派生)
  • 支持命令式 Neo4jRepository
  • 和反应式 ReactiveNeo4jRepository
  • 图案;不要在同一应用程序中混合使用两者
  • 使用 @Node 进行实体映射
  • 和@关系
  • 注释,支持业务密钥或具有不可变字段设计的生成 ID
  • 通过 @Query 自定义 Cypher 查询
  • 具有参数化语法的注释;包括从简单情况的方法名称中派生查询
  • 通过带有嵌入式数据库和测试装置的 Neo4j Harness 提供内置测试支持;需要显式的 Cypher-DSL 方言配置

SKILL.md

Spring Data Neo4j Integration Patterns

Overview

Provides Spring Data Neo4j integration patterns for Spring Boot applications. Covers node entity mapping with @Node and @Relationship, repository configuration (imperative and reactive), custom Cypher queries with @Query, and integration testing with embedded Neo4j databases.

When to Use

Use this skill when working with:

  • Graph databases and Neo4j integration in Spring Boot
  • Node entities, relationships, and Cypher queries
  • Spring Data Neo4j repositories (imperative or reactive)
  • Neo4j testing with embedded databases

Instructions

1. Set Up Spring Data Neo4j

Add the dependency:

Maven:

<dependency>
    <groupId>org.springframework.boot</groupId>
    <artifactId>spring-boot-starter-data-neo4j</artifactId>
</dependency>

Gradle:

implementation 'org.springframework.boot:spring-boot-starter-data-neo4j'

Configure connection in application.properties:

spring.neo4j.uri=bolt://localhost:7687
spring.neo4j.authentication.username=neo4j
spring.neo4j.authentication.password=secret

Configure Cypher-DSL dialect (recommended):

@Configuration
public class Neo4jConfig {
    @Bean
    Configuration cypherDslConfiguration() {
        return Configuration.newConfig()
            .withDialect(Dialect.NEO4J_5).build();
    }
}
Validation Checkpoint: Run MATCH (n) RETURN count(n) via cypher-shell to verify the connection works before proceeding.

2. Define Node Entities

  1. Use @Node annotation to mark entity classes
  2. Choose ID strategy:

- Business key as @Id (immutable, natural identifier) - Generated @Id @GeneratedValue (Neo4j internal ID)

  1. Define relationships with @Relationship annotation
  2. Keep entities immutable with final fields
  3. Use @Property for custom property names
Validation Checkpoint: If entity save fails, check for constraint violations—duplicate IDs violate uniqueness constraints.

3. Create Repositories

  1. Extend repository interface:

- Neo4jRepository<Entity, ID> for imperative operations - ReactiveNeo4jRepository<Entity, ID> for reactive operations

  1. Use query derivation for simple queries
  2. Apply @Query annotation for complex Cypher queries
  3. Use $paramName syntax for parameters
Validation Checkpoint: Test repository with findAll() first—if empty, verify the Neo4j instance is running and credentials are correct.

4. Test Your Implementation

  1. Use @DataNeo4jTest for repository testing with test slicing
  2. Set up Neo4j Harness with embedded database and fixtures
  3. Provide test data via withFixture() Cypher queries
  4. Clean up test data between tests
Validation Checkpoint: If tests fail with "Connection refused", ensure the embedded Neo4j started successfully in @BeforeAll.

Basic Entity Mapping

Node Entity with Business Key

@Node("Movie")
public class MovieEntity {

    @Id
    private final String title;  // Business key as ID

    @Property("tagline")
    private final String description;

    private final Integer year;

    @Relationship(type = "ACTED_IN", direction = Direction.INCOMING)
    private List<Roles> actorsAndRoles = new ArrayList<>();

    @Relationship(type = "DIRECTED", direction = Direction.INCOMING)
    private List<PersonEntity> directors = new ArrayList<>();

    public MovieEntity(String title, String description, Integer year) {
        this.title = title;
        this.description = description;
        this.year = year;
    }
}

Node Entity with Generated ID

@Node("Movie")
public class MovieEntity {

    @Id @GeneratedValue
    private Long id;

    private final String title;

    @Property("tagline")
    private final String description;

    public MovieEntity(String title, String description) {
        this.id = null;  // Never set manually
        this.title = title;
        this.description = description;
    }

    // Wither method for immutability with generated IDs
    public MovieEntity withId(Long id) {
        if (this.id != null && this.id.equals(id)) {
            return this;
        } else {
            MovieEntity newObject = new MovieEntity(this.title, this.description);
            newObject.id = id;
            return newObject;
        }
    }
}

Repository Patterns

Basic Repository Interface

@Repository
public interface MovieRepository extends Neo4jRepository<MovieEntity, String> {

    // Query derivation from method name
    MovieEntity findOneByTitle(String title);

    List<MovieEntity> findAllByYear(Integer year);

    List<MovieEntity> findByYearBetween(Integer startYear, Integer endYear);
}

Reactive Repository

@Repository
public interface MovieRepository extends ReactiveNeo4jRepository<MovieEntity, String> {

    Mono<MovieEntity> findOneByTitle(String title);

    Flux<MovieEntity> findAllByYear(Integer year);
}

Imperative vs Reactive:

  • Use Neo4jRepository for blocking, imperative operations
  • Use ReactiveNeo4jRepository for non-blocking, reactive operations
  • Do not mix imperative and reactive in the same application
  • Reactive requires Neo4j 4+ on the database side

Custom Queries with @Query

@Repository
public interface AuthorRepository extends Neo4jRepository<Author, Long> {

    @Query("MATCH (b:Book)-[:WRITTEN_BY]->(a:Author) " +
           "WHERE a.name = $name AND b.year > $year " +
           "RETURN b")
    List<Book> findBooksAfterYear(@Param("name") String name,
                                   @Param("year") Integer year);

    @Query("MATCH (b:Book)-[:WRITTEN_BY]->(a:Author) " +
           "WHERE a.name = $name " +
           "RETURN b ORDER BY b.year DESC")
    List<Book> findBooksByAuthorOrderByYearDesc(@Param("name") String name);
}

Custom Query Best Practices:

  • Use $parameterName for parameter placeholders
  • Use @Param annotation when parameter name differs from method parameter
  • MATCH specifies node patterns and relationships
  • WHERE filters results
  • RETURN defines what to return

Testing Strategies

Neo4j Harness for Integration Testing

Test Configuration:

@DataNeo4jTest
class BookRepositoryIntegrationTest {

    private static Neo4j embeddedServer;

    @BeforeAll
    static void initializeNeo4j() {
        embeddedServer = Neo4jBuilders.newInProcessBuilder()
            .withDisabledServer()  // No HTTP access needed
            .withFixture(
                "CREATE (b:Book {isbn: '978-0547928210', " +
                "name: 'The Fellowship of the Ring', year: 1954})" +
                "-[:WRITTEN_BY]->(a:Author {id: 1, name: 'J. R. R. Tolkien'}) " +
                "CREATE (b2:Book {isbn: '978-0547928203', " +
                "name: 'The Two Towers', year: 1956})" +
                "-[:WRITTEN_BY]->(a)"
            )
            .build();
    }

    @AfterAll
    static void stopNeo4j() {
        embeddedServer.close();
    }

    @DynamicPropertySource
    static void neo4jProperties(DynamicPropertyRegistry registry) {
        registry.add("spring.neo4j.uri", embeddedServer::boltURI);
        registry.add("spring.neo4j.authentication.username", () -> "neo4j");
        registry.add("spring.neo4j.authentication.password", () -> "null");
    }

    @Autowired
    private BookRepository bookRepository;

    @Test
    void givenBookExists_whenFindOneByTitle_thenBookIsReturned() {
        Book book = bookRepository.findOneByTitle("The Fellowship of the Ring");
        assertThat(book.getIsbn()).isEqualTo("978-0547928210");
    }
}

Examples

Example 1: Saving and Retrieving Entities

Input:

MovieEntity movie = new MovieEntity("The Matrix", "Welcome to the Real World", 1999);
movieRepository.save(movie);

MovieEntity found = movieRepository.findOneByTitle("The Matrix");

Output:

MovieEntity{
    title="The Matrix",
    description="Welcome to the Real World",
    year=1999,
    actorsAndRoles=[],
    directors=[]
}

Example 2: Custom Cypher Query

Input:

List<Book> books = authorRepository.findBooksAfterYear("J.R.R. Tolkien", 1950);

Output:

[
    Book{isbn="978-0547928210", name="The Fellowship of the Ring", year=1954},
    Book{isbn="978-0547928203", name="The Two Towers", year=1956},
    Book{isbn="978-0547928227", name="The Return of the King", year=1957}
]

Example 3: Relationship Traversal

Input:

@Query("MATCH (m:Movie)<-[:ACTED_IN]-(a:Person) " +
       "WHERE m.title = $title RETURN a.name as actorName")
List<String> findActorsByMovieTitle(@Param("title") String title);

List<String> actors = movieRepository.findActorsByMovieTitle("The Matrix");

Output:

["Keanu Reeves", "Laurence Fishburne", "Carrie-Anne Moss", "Hugo Weaving"]

Progress from basic to advanced examples covering complete movie database, social network patterns, e-commerce product catalogs, custom queries, and reactive operations.

See examples for comprehensive code examples.

Best Practices

Entity Design

  • Use immutable entities with final fields
  • Choose between business keys (@Id) or generated IDs (@Id @GeneratedValue)
  • Keep entities focused on graph structure, not business logic
  • Use proper relationship directions (INCOMING, OUTGOING, UNDIRECTED)

Repository Design

  • Extend Neo4jRepository for imperative or ReactiveNeo4jRepository for reactive
  • Use query derivation for simple queries
  • Write custom @Query for complex graph patterns
  • Don't mix imperative and reactive in same application

Configuration

  • Always configure Cypher-DSL dialect explicitly
  • Use environment-specific properties for credentials
  • Never hardcode credentials in source code
  • Configure connection pooling based on load

Testing

  • Use Neo4j Harness for integration tests
  • Provide test data via withFixture() Cypher queries
  • Use @DataNeo4jTest for test slicing
  • Test both successful and edge-case scenarios

Architecture

  • Use constructor injection exclusively
  • Separate domain entities from DTOs
  • Follow feature-based package structure
  • Keep domain layer framework-agnostic

Security

  • Use Spring Boot property overrides for credentials
  • Configure proper authentication and authorization
  • Validate input parameters in service layer
  • Use parameterized queries to prevent Cypher injection

Constraints and Warnings

  • Do not mix imperative and reactive repositories in the same application.
  • Neo4j transactions are required for write operations; ensure @Transactional is properly configured.
  • Be cautious with deep relationship traversal as it can cause performance issues.
  • Large result sets should be paginated to avoid memory problems.
  • Cypher queries are case-sensitive; ensure consistent casing in property names.
  • Immutable entities require proper wither methods for generated IDs.
  • Relationships in Spring Data Neo4j are not lazy-loaded by default; consider projection for large graphs.
  • The Neo4j Java driver is not compatible with reactive streams; use the reactive driver for reactive operations.

Troubleshooting

ProblemCauseSolution
Connection refused on localhost:7687Neo4j server not runningStart Neo4j or use embedded Neo4j for tests
Authentication failedWrong credentialsCheck spring.neo4j.authentication.username/password
Entity not saved / MATCH returns nothingTransaction not committedAdd @Transactional or verify auto-commit settings
ConstraintViolationException on saveDuplicate @Id valueEnsure IDs are unique or use @GeneratedValue
Relationships missing in resultsWrong @Relationship directionCheck Direction.INCOMING/OUTGOING/UNDIRECTED
@Query returns wrong dataCypher parameter syntaxUse $paramName not $ {paramName}
Test fails with @DataNeo4jTestEmbedded Neo4j not startedEnsure @BeforeAll starts Neo4j before tests

References

For detailed documentation including complete API reference, Cypher query patterns, and configuration options:

External Resources

适合场景

01

用户想查找某类 Agent Skill 时

02

需要根据任务场景推荐可安装能力包时

03

需要对比不同来源的安装命令和来源信息时

能力概览

能力 1

按任务关键词查找相关 Skills

能力 2

展示可复制的安装命令

能力 3

保留来源站点、仓库和原始说明,方便继续核验

能力 4

展示第三方安全扫描或审计结果

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

平台分布

Codex

33.15%
按下载量换算1,896

Claude

29.58%
按下载量换算1,692

Cursor

17.77%
按下载量换算1,016

Gemini CLI

9.95%
按下载量换算569

安全审计

Gen Agent Trust Hub

通过

Socket

通过

Snyk

通过

权限和风险

执行命令

安装流程涉及命令执行,可能通过 npx skills add https://github.com/giuseppe-trisciuoglio/developer-kit --skill spring-data-neo4j 联网下载 Skill 或依赖。用户安装前应确认命令来源、仓库内容和执行环境。

安装前确认

本站仅展示第三方公开信息,不托管安装包,不提供自动安装或运行环境。安装前应自行审查源码、依赖和命令行为。当前只有一个来源,正式发布前建议补源仓库或其他目录站核验。

来源信息

继续浏览同类 Skills