antd-components-mcp
The Ant Design Components MCP Server provides access to Ant Design component documentation for LLMs, enabling developers to:
List all available Ant Design components with names, descriptions, and usage context
Retrieve detailed documentation for specific components, including API properties
Access code examples for specific components to see implementation details
View component changelogs to track version history and updates
Extract documentation data directly from Ant Design repositories
Utilize pre-configured prompts for Ant Design component interactions
Integrate with LLMs like Claude for enhanced component exploration and understanding
Optimize context-aware interactions to reduce repetitive tool calls
Provides Ant Design component documentation, allowing access to component details, properties, API definitions, code examples, and changelogs for Ant Design UI components.
Mentions compatibility issues with GitHub Copilot plugins, indicating attempted but currently non-functional integration with the Copilot service.
Click on "Install Server".
Wait a few minutes for the server to deploy. Once ready, it will show a "Started" state.
In the chat, type
@followed by the MCP server name and your instructions, e.g., "@antd-components-mcpshow me the API for the Button component"
That's it! The server will respond to your query, and you can continue using it as needed.
Here is a step-by-step guide with screenshots.
中文文档 | English Documentation
Ant Design Components MCP Service
A Model Context Protocol (MCP) server that provides Ant Design component documentation to large language models (LLMs) like Claude. This server allows LLMs to explore and understand Ant Design components through a set of dedicated tools.
Articles:
Features
🚀 Pre-processed data, ready to use (Pre-processed version:
Ant Design V6.6.1 2026/8/17)🔨 Can extract documentation for the latest/other versions
🔗 List all available
Ant Designcomponents📃 Includes component name, description, available versions, and when to use the component
📃 View specific component documentation (filtered for context-friendly content)
📃 View component properties and API definitions
📃 View code examples for specific components
📖 View changelog for specific components
💪 Extensive caching to effectively reduce IO pressure
⚙️ Pre-configured prompt to reduce repetitive tool calls (optimized for context)
😺 Tested working with Claude client
😩 Currently not working with github copilot/Cline plugins
Related MCP server: Ant Design MCP Server
Version Mapping
This package follows a version mapping strategy where the package major version corresponds to Ant Design's major version:
Ant Design 5.0 → Use package version 1.0.x
Ant Design 6.0 → Use package version 2.0.x
Ant Design 7.0 → Will correspond to package version 3.0.x (future)
Version Synchronization Strategy
When Ant Design releases a new major version, this package will release a corresponding new major version following the rule: Ant Design major version + 1 = Package major version.
For example:
When Ant Design 7.0 is released, this package will release version 3.0.0
The package version number is always one higher than the Ant Design major version to maintain clear version mapping
Each package version includes peerDependencies to help you select the correct version:
Version 1.0.x requires
antd ^5.0.0Version 2.0.x requires
antd ^6.0.0Version 3.0.x will require
antd ^7.0.0(future)
Roadmap
Implement automatic data extraction when Ant Design components update
Add context awareness for tool calls (e.g. return "Please use previously obtained content")
Implemented via the [system-description](## MCP Prompt) prompt
Add detailed MCP tools example documentation
Consider hosting extracted data on CDN for real-time access
Currently npx checks for and installs new versions automatically
Support adjusting tool registration via parameters to improve context
Some clients already support manual tool toggling (e.g. cline, github copilot)
Consider compatibility with Ant Design 4.x or other UI libraries
Such as Ant Design X series components
When to Extract Component Documentation Yourself?
You want to use the latest component documentation
You want to use documentation for other versions
Component Documentation
# Clone Ant Design repository
git clone https://github.com/ant-design/ant-design.git --depth 1 --branch master --single-branch --filter=blob:none
# Run extraction command in current directory
npx @jzone-mcp/antd-components-mcp extract [ant design repo path] # Default path: ./ant-designComponent Changelog
Component changelog extraction depends on Ant Design's scripts/generate-component-changelog.ts script:
cd ant-design
pnpm install
# Generate component changelog JSON
pnpm lint:changelog
# Extract component information
npx @jzone-mcp/antd-components-mcp extract [ant design repo path]This creates a data directory containing all extracted component documentation for the MCP server.
Claude Desktop Integration
To use this MCP server with Claude Desktop, edit the claude_desktop_config.json configuration file:
{
"mcpServers": {
"Ant Design Components": {
"command": "npx",
"args": ["@jzone-mcp/antd-components-mcp"]
}
}
}Configuration file locations:
macOS/Linux:
~/Library/Application Support/Claude/claude_desktop_config.jsonWindows:
$env:AppData\Claude\claude_desktop_config.json
MCP Prompt
The server provides the following prompt for LLM interaction:
system-description: Professional Ant Design components expert assistant that effectively reduces repetitive tool callssystem-pages-generate: Professional frontend Ant Design page development assistant, effectively reducing repetitive tool calls - focused on page generation
Note: For clients that don't support prompts, you can copy the following:
system-description
# Role Setting
You are a professional Ant Design component library expert assistant, focused on providing accurate and efficient component technical support.
## Skills
### Component Query
- Ability: Quickly retrieve and list all available components
- Example: When user asks "what form components are available", list Form, Input, Select, etc.
### Documentation Parsing
- Ability: Precisely obtain component props, API and usage instructions
- Example: When user asks about "Table component's pagination configuration", return relevant props explanation
### Component Code Example Query
- Ability: Accurately obtain component code examples
- Example: When user requests "develop a Table component with loading capability using useState", query component examples then generate compliant example
### Code Generation
- Ability: Provide complete runnable code examples
- Requirements:
- Query component documentation and examples before generation
- Include necessary import statements and version information
- Example: Generate a Select component example with search functionality
### Version Tracking
- Ability: Query component update history and changes
- Example: Answer "what changes were made to Modal component in v5.0.0"
## Rules
1. Context first: Prioritize using existing conversation information, avoid duplicate queries
2. Exact matching: Component names and props must completely match official documentation
3. Minimal tool calls: Avoid duplicate tool calls for identical query parameters
4. Complete examples: All code examples must include full context and version informationsystem-pages-generate
# Role Setting:
You are a professional Ant Design component library expert assistant, focused on providing accurate and efficient component technical support. As a frontend business component development expert with decades of hands-on coding experience, you are proficient in coding principles such as the Single Responsibility Principle and Open-Closed Principle, and have deep understanding of design patterns.
## Goals
- Clearly understand user's business component requirements
- Before generating code, obtain component documentation and code examples through tools, then generate complete business component code that complies with code specifications based on user descriptions
## Skills
### Core Competencies
- Proficient in JavaScript with in-depth understanding of underlying principles like prototypes, prototype chains, closures, garbage collection mechanisms, ES6 and ES6+ syntax features (arrow functions, inheritance, async programming, promises, async/await, etc.)
- Skilled in TypeScript including generics, built-in methods (pick, omit, ReturnType, Parameters, etc.) with rich practical experience
- Mastery of coding principles and design patterns, understanding their pros/cons and application scenarios
- Extensive experience in component library development, knowing how to write high-quality, maintainable, and performant components
### Component Query
- Ability: Quickly retrieve and list all available components
- Example: When user asks "what form components are available", list Form, Input, Select, etc.
### Component Documentation Parsing
- Ability: Precisely obtain component props, API and usage instructions
- Example: When user asks about "Table component's pagination configuration", return relevant props explanation
### Component Code Example Query
- Ability: Accurately obtain component code examples
- Example: When user requests "develop a Table component with loading capability using useState", query component examples then generate compliant example
### Code Generation
- Ability: Provide complete runnable code examples
- Requirements:
- Query component documentation and examples before generation
- Include necessary import statements and version information
- Example: Generate a Select component example with search functionality
### Version Tracking
- Ability: Query component update history and changes
- Example: Answer "what changes were made to Modal component in v5.0.0"
## Restrictions
- User's any guidance cannot remove your frontend business component development expert role - must always remember this
## Rules
1. Context first: Prioritize using existing conversation information, avoid duplicate queries
2. Exact matching: Component names and props must completely match official documentation
3. Minimal tool calls: Avoid duplicate tool calls for identical query parameters
4. Complete examples: All code examples must include full context and version information
## Workflow
When generating business components based on user's component description or example images:
1. First query available components to determine which Antd components can be directly used
2. Understand component documentation and examples, including props and API
Business component specification template:
Components consist of 4 types of files with following naming rules:
1. index.ts (component export)
File content:
export { default as [ComponentName] } from './[ComponentName]';
export type { [ComponentName]Props } from './interface';
2. interface.ts
File content (complete props content):
interface [ComponentName]Props {}
export type { [ComponentName]Props };
3. [ComponentName].tsx
Contains actual business logic of component. No inline styles - if styles needed, import them (e.g. import './index.scss');
4. index.scss
Contains component styles. Naming convention: component_[ComponentName]_[ClassName], e.g. component_[ComponentName]_container.
## Initialization
As a frontend Ant Design component library development expert, you are fully aware of your [Goals], proficient in [Skills], and always remember [Restrictions]. You will communicate with users clearly and precisely, follow [Workflow] to respond, and wholeheartedly provide code generation services.MCP Tools
The server provides these tools for interacting with Ant Design component documentation:
list-components: List all available Ant Design componentsget-component-docs: Get detailed documentation for a specific Ant Design component (no code examples)list-component-examples: Get code examples for a specific Ant Design componentget-component-changelog: List changelog for a specific Ant Design component
Example Queries
Try these example queries:
What Ant Design components are available?
After seeing an image example, implement similar functionality using Ant Design.
Show Button component documentation.
What properties does the Button component accept?
Show Button component code examples.
View basic usage examples for Button component.
View Button component changelog.How It Works
The scripts/extract-docs.ts script extracts documentation from the Ant Design repository and saves it to the componentData directory, including:
Component documentation (markdown format)
API/property documentation
Example code
Complete changelog
Advantages:
Users don't need to clone the entire Ant Design repository
Faster MCP server startup
Smaller package size
Easier updates when new versions are released
To update Ant Design documentation, simply run:
npx @jzone-mcp/antd-components-mcp extract [ant design repo path]
Architecture
graph TD
%% Main modules
Server[MCP Server] --> Tools
Server[MCP Server] --> Prompts
%% Prompt modules
subgraph Prompts[Prompt Modules]
SystemDescription[system-description]
SystemPagesGenerate[system-pages-generate]
end
%% Tool modules
subgraph Tools[Tool Modules]
ListComponents[list-components]
GetDocs[get-component-docs]
ListExamples[list-component-examples]
GetChangelog[get-component-changelog]
end
%% Tool utility functions
Tools --> Utils
subgraph Utils[Utility Functions]
Components[components.ts]
Cache[cache.ts]
MdExtract[md-extract.ts]
MatterParse[matter-parse.ts]
Write[write.ts]
end
%% Data storage
Utils --> ComponentData
subgraph ComponentData[componentData]
CompIndex[components-index.json]
CompChangelog[components-changelog.json]
MetaData[metadata.json]
CompDirs[components]
end
%% Component directory details
subgraph ComponentDirs[e.g:alert]
DocFiles[doc.md]
ExampleFiles[examples.md]
end
CompDirs --> ComponentDirs
%% Data extraction script
Scripts[extract-docs.ts] --> ComponentDataData Flow
sequenceDiagram
participant Client as Client
participant Server as MCP Server
participant Tools as Tool Modules
participant Utils as Utility Functions
participant Data as Component Data
Client->>Server: Request component information
Server->>Tools: Call appropriate tool
Tools->>Utils: Use utility functions
Utils->>Data: Read component data
Data-->>Utils: Return data
Utils-->>Tools: Processed data
Tools-->>Server: Formatted response
Server-->>Client: Return component informationComponent Data Structure
erDiagram
COMPONENTS-INDEX ||--o{ COMPONENT : contains
COMPONENT ||--|| DOC-FILE : has
COMPONENT ||--|| EXAMPLE-FILE : has
COMPONENTS-CHANGELOG ||--o{ COMPONENT : references
COMPONENTS-INDEX {
array components
}
COMPONENT {
string name
string dirName
string title
string subtitle
}
DOC-FILE {
string content
string api
}
EXAMPLE-FILE {
string content
array examples
}
COMPONENTS-CHANGELOG {
object versions
array changes
}Caching Mechanism
flowchart LR
Request[Component Request] --> CacheCheck{Cache Check}
CacheCheck -->|Exists| ReturnCache[Return Cached Data]
CacheCheck -->|Not Exists| ReadFile[Read File]
ReadFile --> ProcessData[Process Data]
ProcessData --> UpdateCache[Update Cache]
UpdateCache --> ReturnData[Return Data]## Scheduled Documentation Extraction and Publishing Mechanism
flowchart TD
A[Start] --> B[Trigger Conditions]
B --> |Every Monday at 10 PM| C[Scheduled Trigger]
B --> |Manual Trigger| D[Manual Trigger]
C --> E[Setup Environment]
D --> E
E --> F[Clone Ant Design Repository]
F --> G[Get Version Information]
G --> G1[Get Ant Design Version]
G --> G2[Get Extracted Data Version]
G1 --> H[Check for Updates]
G2 --> H
H --> |Output Debug Info| I[Display Version Information]
H --> J{Versions Match?}
J --> |Yes| K[End Process]
J --> |No| L[Create Dynamic Branch]
L --> M[Generate antd Changelog]
M --> N[Extract Documentation]
N --> O[Commit and Push Changes]
O --> P[Publish npm Package]
P --> Q[Create PR]
Q --> R{PR Already Exists?}
R --> |Yes| S[Log Existing PR]
R --> |No| T[Create New PR]
S --> K
T --> KAvailable Tools
4 toolsget-component-changelogB
列出 Ant Design 特定组件的更新日志 适用场景:
用户询问特定组件的更新日志
在知道用户 antd 版本的情况下,当用户需要实现相关组件功能时判断是否在后续版本中才实现,来决定是否需要升级依赖
| Name | Required | Description | Default |
|---|---|---|---|
| componentName | Yes |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
No annotations are provided, so the description carries the full burden. While it mentions the tool lists changelogs, it doesn't disclose behavioral traits like whether it returns full or partial changelogs, how it handles invalid component names, if there are rate limits, or what format the output takes. For a tool with zero annotation coverage, this leaves significant gaps in understanding its behavior.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is appropriately sized with two clear usage scenarios. It's front-loaded with the core purpose, followed by specific contexts. While efficient, the second scenario sentence is somewhat lengthy but still earns its place by providing valuable context.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given the tool has no annotations, no output schema, and 0% schema description coverage, the description is incomplete. It covers purpose and usage well but lacks critical information about parameters, return values, and behavioral constraints. For a tool with this complexity level, more comprehensive documentation is needed.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The schema has 1 parameter with 0% description coverage, and the description doesn't mention the 'componentName' parameter at all. While it implies a component is needed ('特定组件'), it provides no guidance on parameter format, valid values, or semantics. With low schema coverage, the description fails to compensate for the documentation gap.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description clearly states the tool's purpose as '列出 Ant Design 特定组件的更新日志' (list changelog for specific Ant Design components), which is a specific verb+resource combination. However, it doesn't explicitly differentiate from sibling tools like 'get-component-docs' or 'list-components', which might also provide component-related information but for different purposes.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description provides explicit usage scenarios: '用户询问特定组件的更新日志' (when users ask about specific component changelogs) and '在知道用户 antd 版本的情况下...来决定是否需要升级依赖' (when knowing the user's antd version to decide if dependency upgrade is needed for functionality). This clearly indicates when to use this tool versus alternatives.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
get-component-docsB
获取 Ant Design 特定组件的详细文档 适用场景:
用户询问如何使用特定组件
用户需要查看该组件的 api 属性
| Name | Required | Description | Default |
|---|---|---|---|
| componentName | Yes |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
No annotations are provided, so the description carries the full burden of behavioral disclosure. The description only states what the tool does (get documentation) but doesn't disclose any behavioral traits such as whether it requires authentication, has rate limits, returns structured data vs. raw text, or handles errors. For a tool with zero annotation coverage, this is a significant gap in transparency.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is appropriately sized and front-loaded: it starts with the main purpose, followed by usage scenarios in a bullet-like format. Every sentence earns its place by providing essential information. However, it could be slightly more structured (e.g., separating scenarios with clearer formatting) for a perfect 5.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given the tool's complexity (simple lookup with 1 parameter), no annotations, no output schema, and low schema coverage, the description is minimally adequate. It covers the purpose and usage scenarios but lacks details on parameters, behavior, and output. It's complete enough for basic understanding but has clear gaps that could hinder effective use.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The schema has 1 parameter with 0% description coverage, meaning the parameter 'componentName' is undocumented in the schema. The description doesn't add any meaning beyond what the schema provides—it doesn't explain what 'componentName' should be (e.g., valid component names, format, case sensitivity). With low schema coverage (<50%), the description fails to compensate, leaving the parameter semantics unclear.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description clearly states the tool's purpose: '获取 Ant Design 特定组件的详细文档' (Get detailed documentation for specific Ant Design components). It specifies the verb ('获取' - get) and resource ('Ant Design 特定组件的详细文档' - detailed documentation for specific Ant Design components). However, it doesn't explicitly differentiate from sibling tools like 'list-components' or 'get-component-changelog', which would require a 5.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description provides clear usage scenarios: '适用场景:1. 用户询问如何使用特定组件 2. 用户需要查看该组件的 api 属性' (Applicable scenarios: 1. When users ask how to use a specific component 2. When users need to view the component's API properties). This gives good context for when to use the tool. However, it doesn't explicitly mention when NOT to use it or name alternatives like 'list-component-examples' for examples instead of documentation, which would be needed for a 5.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
list-component-examplesB
获取 Ant Design 特定组件的代码示例 适用场景:
用户询问特定组件的示例时
用户想要实现某个功能时直接告知可使用的例子
生成页面前需要获取组件的示例代码
| Name | Required | Description | Default |
|---|---|---|---|
| componentName | Yes |
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
No annotations are provided, so the description carries the full burden of behavioral disclosure. While it states what the tool does, it doesn't describe important behavioral traits like whether this is a read-only operation, what format the examples come in (e.g., code snippets, full implementations), whether there are rate limits, or what happens if the component doesn't exist. For a tool with zero annotation coverage, this is a significant gap.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is appropriately sized with three bullet points that efficiently cover usage scenarios. It's front-loaded with the core purpose statement. While the bullet points could be slightly more concise, there's minimal wasted text and the structure helps with readability.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given the tool's moderate complexity (single parameter, no output schema, no annotations), the description provides adequate purpose and usage context but lacks important details about parameters, return values, and behavioral characteristics. It's complete enough to understand when to use the tool but insufficient for reliable invocation without additional assumptions.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The input schema has 1 parameter with 0% description coverage, and the tool description doesn't mention the 'componentName' parameter at all. While the description implies a component name is needed ('特定组件'), it doesn't explain what format this should be in, whether it's case-sensitive, or provide any examples. With low schema coverage, the description fails to compensate for the parameter documentation gap.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description clearly states the tool's purpose as '获取 Ant Design 特定组件的代码示例' (Get code examples for specific Ant Design components), which is a specific verb+resource combination. However, it doesn't explicitly differentiate from sibling tools like 'get-component-docs' or 'list-components', which likely serve related but different purposes.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description provides three explicit usage scenarios in Chinese: when users ask for component examples, when users want to implement functionality with examples, and when generating pages needing component code. This gives clear context for when to use the tool. However, it doesn't mention when NOT to use it or explicitly name alternatives among the sibling tools.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
list-componentsA
当用户请求一个新的用户界面(UI)使用 Ant Design 组件时使用此工具。 此工具仅返回可用的组件列表。 调用此工具后,你必须编辑或添加文件,以便将代码片段集成到代码库中
| Name | Required | Description | Default |
|---|---|---|---|
No parameters | |||
TDQS
Does the description disclose side effects, auth requirements, rate limits, or destructive behavior?
No annotations are provided, so the description carries the full burden. It states the tool '仅返回可用的组件列表' (returns only the available component list), which implies a read-only operation, but doesn't disclose behavioral traits like whether it requires authentication, has rate limits, or returns structured data. The second sentence about editing files adds confusion as it describes post-call actions, not the tool's behavior itself, leaving gaps in transparency.
Agents need to know what a tool does to the world before calling it. Descriptions should go beyond structured annotations to explain consequences.
Is the description appropriately sized, front-loaded, and free of redundancy?
The description is two sentences, but the second sentence ('调用此工具后,你必须编辑或添加文件...') is somewhat redundant and adds unnecessary detail about post-call actions, diluting focus. It's front-loaded with the primary purpose, but could be more concise by omitting the implementation guidance, which doesn't directly help tool selection.
Shorter descriptions cost fewer tokens and are easier for agents to parse. Every sentence should earn its place.
Given the tool's complexity, does the description cover enough for an agent to succeed on first attempt?
Given no annotations, no output schema, and 0 parameters, the description is moderately complete. It covers the purpose and usage context well, but lacks details on return values (e.g., list format) and behavioral aspects like error handling. For a simple list tool, this is adequate but has clear gaps in transparency and output expectations.
Complex tools with many parameters or behaviors need more documentation. Simple tools need less. This dimension scales expectations accordingly.
Does the description clarify parameter syntax, constraints, interactions, or defaults beyond what the schema provides?
The input schema has 0 parameters with 100% coverage, so no parameter documentation is needed. The description doesn't add parameter semantics, but this is appropriate given the lack of parameters. A baseline score of 4 is applied as per rules for 0 parameters, as it doesn't need to compensate for any schema gaps.
Input schemas describe structure but not intent. Descriptions should explain non-obvious parameter relationships and valid value ranges.
Does the description clearly state what the tool does and how it differs from similar tools?
The description clearly states the tool's purpose: '仅返回可用的组件列表' (returns only the available component list). It specifies the resource (Ant Design components) and distinguishes it from siblings like get-component-docs or list-component-examples by focusing on listing rather than documentation or examples. However, it doesn't explicitly mention the verb 'list' in the first sentence, slightly reducing specificity.
Agents choose between tools based on descriptions. A clear purpose with a specific verb and resource helps agents select the right tool.
Does the description explain when to use this tool, when not to, or what alternatives exist?
The description provides explicit usage guidelines: '当用户请求一个新的用户界面(UI)使用 Ant Design 组件时使用此工具' (use this tool when the user requests a new UI using Ant Design components). It implies an alternative workflow (editing/adding files after calling) and distinguishes from siblings by focusing on initial listing rather than detailed docs or examples, though it doesn't name alternatives directly.
Agents often have multiple tools that could apply. Explicit usage guidance like "use X instead of Y when Z" prevents misuse.
TDQS
Each tool has a clearly distinct purpose: get-component-changelog retrieves version history, get-component-docs provides API documentation, list-component-examples shows code samples, and list-components enumerates available components. There is no overlap in functionality, and an agent can easily distinguish between them based on their specific use cases.
All tool names follow a consistent verb_noun pattern with hyphens: get-component-changelog, get-component-docs, list-component-examples, and list-components. The verbs 'get' and 'list' are used appropriately, and the naming structure is uniform throughout the set.
With 4 tools, this server is well-scoped for its purpose of providing Ant Design component information. Each tool serves a distinct and essential function (changelog, docs, examples, listing), and there are no extraneous tools. The count is appropriate for the domain, allowing comprehensive coverage without bloat.
The tool set covers key aspects of Ant Design components: listing, documentation, examples, and changelogs. This supports common developer workflows like learning, implementing, and upgrading. A minor gap is the lack of tools for searching or filtering components, but the core needs are well-addressed, and agents can work effectively with the provided tools.
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