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mcp-integrationMCP 集成

Agent Skill

mcp-integration 用于查找、检索和筛选相关信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要根据关键词、任务场景或来源线索快速定位候选结果时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

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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

3

许可证

MIT

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:mcp-integration(MCP 集成)
来源仓库:https://github.com/anthropics/claude-plugins-official
仓库路径:skills/mcp-integration
安装命令:
npx skills add https://github.com/anthropics/claude-plugins-official --skill mcp-integration
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。不同来源提供的安装方式可能略有差异;本站展示可直接复制的安装命令,安装前请核对来源页面。

skills.shnpx skills
npx skills add https://github.com/anthropics/claude-plugins-official --skill mcp-integration

简介

通过具有四种连接类型的模型上下文协议服务器将外部服务集成到 Claude Code 插件中。

  • 支持四种服务器类型:用于本地进程的 stdio、用于启用 OAuth 的托管服务的 SSE、用于具有令牌身份验证的 REST API 的 HTTP 以及用于实时双向通信的 WebSocket
  • 在专用 .mcp.json 中配置 MCP 服务器
  • 文件或内联在plugin.json中
  • 具有环境变量扩展和自动工具发现功能
  • 工具自动命名空间和前缀;为了安全起见,在命令 frontmatter 中预先允许特定工具,而不是使用通配符
  • 自动处理 SSE 服务器的 OAuth 流;通过 HTTP 和 stdio 类型的环境变量管理令牌;包括通过 /mcp 进行调试
  • 命令和--debug
  • 旗帜

SKILL.md

MCP Integration for Claude Code Plugins

Overview

Model Context Protocol (MCP) enables Claude Code plugins to integrate with external services and APIs by providing structured tool access. Use MCP integration to expose external service capabilities as tools within Claude Code.

Key capabilities:

  • Connect to external services (databases, APIs, file systems)
  • Provide 10+ related tools from a single service
  • Handle OAuth and complex authentication flows
  • Bundle MCP servers with plugins for automatic setup

MCP Server Configuration Methods

Plugins can bundle MCP servers in two ways:

Method 1: Dedicated.mcp.json (Recommended)

Create .mcp.json at plugin root:

{
  "database-tools": {
    "command": "${CLAUDE_PLUGIN_ROOT}/servers/db-server",
    "args": ["--config", "${CLAUDE_PLUGIN_ROOT}/config.json"],
    "env": {
      "DB_URL": "${DB_URL}"
    }
  }
}

Benefits:

  • Clear separation of concerns
  • Easier to maintain
  • Better for multiple servers

Method 2: Inline in plugin.json

Add mcpServers field to plugin.json:

{
  "name": "my-plugin",
  "version": "1.0.0",
  "mcpServers": {
    "plugin-api": {
      "command": "${CLAUDE_PLUGIN_ROOT}/servers/api-server",
      "args": ["--port", "8080"]
    }
  }
}

Benefits:

  • Single configuration file
  • Good for simple single-server plugins

MCP Server Types

stdio (Local Process)

Execute local MCP servers as child processes. Best for local tools and custom servers.

Configuration:

{
  "filesystem": {
    "command": "npx",
    "args": ["-y", "@modelcontextprotocol/server-filesystem", "/allowed/path"],
    "env": {
      "LOG_LEVEL": "debug"
    }
  }
}

Use cases:

  • File system access
  • Local database connections
  • Custom MCP servers
  • NPM-packaged MCP servers

Process management:

  • Claude Code spawns and manages the process
  • Communicates via stdin/stdout
  • Terminates when Claude Code exits

SSE (Server-Sent Events)

Connect to hosted MCP servers with OAuth support. Best for cloud services.

Configuration:

{
  "asana": {
    "type": "sse",
    "url": "https://mcp.asana.com/sse"
  }
}

Use cases:

  • Official hosted MCP servers (Asana, GitHub, etc.)
  • Cloud services with MCP endpoints
  • OAuth-based authentication
  • No local installation needed

Authentication:

  • OAuth flows handled automatically
  • User prompted on first use
  • Tokens managed by Claude Code

HTTP (REST API)

Connect to RESTful MCP servers with token authentication.

Configuration:

{
  "api-service": {
    "type": "http",
    "url": "https://api.example.com/mcp",
    "headers": {
      "Authorization": "Bearer ${API_TOKEN}",
      "X-Custom-Header": "value"
    }
  }
}

Use cases:

  • REST API-based MCP servers
  • Token-based authentication
  • Custom API backends
  • Stateless interactions

WebSocket (Real-time)

Connect to WebSocket MCP servers for real-time bidirectional communication.

Configuration:

{
  "realtime-service": {
    "type": "ws",
    "url": "wss://mcp.example.com/ws",
    "headers": {
      "Authorization": "Bearer ${TOKEN}"
    }
  }
}

Use cases:

  • Real-time data streaming
  • Persistent connections
  • Push notifications from server
  • Low-latency requirements

Environment Variable Expansion

All MCP configurations support environment variable substitution:

${CLAUDE_PLUGIN_ROOT} - Plugin directory (always use for portability):

{
  "command": "${CLAUDE_PLUGIN_ROOT}/servers/my-server"
}

User environment variables - From user's shell:

{
  "env": {
    "API_KEY": "${MY_API_KEY}",
    "DATABASE_URL": "${DB_URL}"
  }
}

Best practice: Document all required environment variables in plugin README.

MCP Tool Naming

When MCP servers provide tools, they're automatically prefixed:

Format: mcp__plugin_<plugin-name>_<server-name>__<tool-name>

Example:

  • Plugin: asana
  • Server: asana
  • Tool: create_task
  • Full name: mcp__plugin_asana_asana__asana_create_task

Using MCP Tools in Commands

Pre-allow specific MCP tools in command frontmatter:

---
allowed-tools: [
  "mcp__plugin_asana_asana__asana_create_task",
  "mcp__plugin_asana_asana__asana_search_tasks"
]
---

Wildcard (use sparingly):

---
allowed-tools: ["mcp__plugin_asana_asana__*"]
---

Best practice: Pre-allow specific tools, not wildcards, for security.

Lifecycle Management

Automatic startup:

  • MCP servers start when plugin enables
  • Connection established before first tool use
  • Restart required for configuration changes

Lifecycle:

  1. Plugin loads
  2. MCP configuration parsed
  3. Server process started (stdio) or connection established (SSE/HTTP/WS)
  4. Tools discovered and registered
  5. Tools available as mcp__plugin_...__...

Viewing servers: Use /mcp command to see all servers including plugin-provided ones.

Authentication Patterns

OAuth (SSE/HTTP)

OAuth handled automatically by Claude Code:

{
  "type": "sse",
  "url": "https://mcp.example.com/sse"
}

User authenticates in browser on first use. No additional configuration needed.

Token-Based (Headers)

Static or environment variable tokens:

{
  "type": "http",
  "url": "https://api.example.com",
  "headers": {
    "Authorization": "Bearer ${API_TOKEN}"
  }
}

Document required environment variables in README.

Environment Variables (stdio)

Pass configuration to MCP server:

{
  "command": "python",
  "args": ["-m", "my_mcp_server"],
  "env": {
    "DATABASE_URL": "${DB_URL}",
    "API_KEY": "${API_KEY}",
    "LOG_LEVEL": "info"
  }
}

Integration Patterns

Pattern 1: Simple Tool Wrapper

Commands use MCP tools with user interaction:

# Command: create-item.md
---
allowed-tools: ["mcp__plugin_name_server__create_item"]
---

Steps:
1. Gather item details from user
2. Use mcp__plugin_name_server__create_item
3. Confirm creation

Use for: Adding validation or preprocessing before MCP calls.

Pattern 2: Autonomous Agent

Agents use MCP tools autonomously:

# Agent: data-analyzer.md

Analysis Process:
1. Query data via mcp__plugin_db_server__query
2. Process and analyze results
3. Generate insights report

Use for: Multi-step MCP workflows without user interaction.

Pattern 3: Multi-Server Plugin

Integrate multiple MCP servers:

{
  "github": {
    "type": "sse",
    "url": "https://mcp.github.com/sse"
  },
  "jira": {
    "type": "sse",
    "url": "https://mcp.jira.com/sse"
  }
}

Use for: Workflows spanning multiple services.

Security Best Practices

Use HTTPS/WSS

Always use secure connections:

✅ "url": "https://mcp.example.com/sse"
❌ "url": "http://mcp.example.com/sse"

Token Management

DO:

  • ✅ Use environment variables for tokens
  • ✅ Document required env vars in README
  • ✅ Let OAuth flow handle authentication

DON'T:

  • ❌ Hardcode tokens in configuration
  • ❌ Commit tokens to git
  • ❌ Share tokens in documentation

Permission Scoping

Pre-allow only necessary MCP tools:

✅ allowed-tools: [
  "mcp__plugin_api_server__read_data",
  "mcp__plugin_api_server__create_item"
]

❌ allowed-tools: ["mcp__plugin_api_server__*"]

Error Handling

Connection Failures

Handle MCP server unavailability:

  • Provide fallback behavior in commands
  • Inform user of connection issues
  • Check server URL and configuration

Tool Call Errors

Handle failed MCP operations:

  • Validate inputs before calling MCP tools
  • Provide clear error messages
  • Check rate limiting and quotas

Configuration Errors

Validate MCP configuration:

  • Test server connectivity during development
  • Validate JSON syntax
  • Check required environment variables

Performance Considerations

Lazy Loading

MCP servers connect on-demand:

  • Not all servers connect at startup
  • First tool use triggers connection
  • Connection pooling managed automatically

Batching

Batch similar requests when possible:

# Good: Single query with filters
tasks = search_tasks(project="X", assignee="me", limit=50)

# Avoid: Many individual queries
for id in task_ids:
    task = get_task(id)

Testing MCP Integration

Local Testing

  1. Configure MCP server in .mcp.json
  2. Install plugin locally (.claude-plugin/)
  3. Run /mcp to verify server appears
  4. Test tool calls in commands
  5. Check claude --debug logs for connection issues

Validation Checklist

  • MCP configuration is valid JSON
  • Server URL is correct and accessible
  • Required environment variables documented
  • Tools appear in /mcp output
  • Authentication works (OAuth or tokens)
  • Tool calls succeed from commands
  • Error cases handled gracefully

Debugging

Enable Debug Logging

claude --debug

Look for:

  • MCP server connection attempts
  • Tool discovery logs
  • Authentication flows
  • Tool call errors

Common Issues

Server not connecting:

  • Check URL is correct
  • Verify server is running (stdio)
  • Check network connectivity
  • Review authentication configuration

Tools not available:

  • Verify server connected successfully
  • Check tool names match exactly
  • Run /mcp to see available tools
  • Restart Claude Code after config changes

Authentication failing:

  • Clear cached auth tokens
  • Re-authenticate
  • Check token scopes and permissions
  • Verify environment variables set

Quick Reference

MCP Server Types

TypeTransportBest ForAuth
stdioProcessLocal tools, custom serversEnv vars
SSEHTTPHosted services, cloud APIsOAuth
HTTPRESTAPI backends, token authTokens
wsWebSocketReal-time, streamingTokens

Configuration Checklist

  • Server type specified (stdio/SSE/HTTP/ws)
  • Type-specific fields complete (command or url)
  • Authentication configured
  • Environment variables documented
  • HTTPS/WSS used (not HTTP/WS)
  • ${CLAUDE_PLUGIN_ROOT} used for paths

Best Practices

DO:

  • ✅ Use ${CLAUDE_PLUGIN_ROOT} for portable paths
  • ✅ Document required environment variables
  • ✅ Use secure connections (HTTPS/WSS)
  • ✅ Pre-allow specific MCP tools in commands
  • ✅ Test MCP integration before publishing
  • ✅ Handle connection and tool errors gracefully

DON'T:

  • ❌ Hardcode absolute paths
  • ❌ Commit credentials to git
  • ❌ Use HTTP instead of HTTPS
  • ❌ Pre-allow all tools with wildcards
  • ❌ Skip error handling
  • ❌ Forget to document setup

Additional Resources

Reference Files

For detailed information, consult:

  • references/server-types.md - Deep dive on each server type
  • references/authentication.md - Authentication patterns and OAuth
  • references/tool-usage.md - Using MCP tools in commands and agents

Example Configurations

Working examples in examples/:

  • stdio-server.json - Local stdio MCP server
  • sse-server.json - Hosted SSE server with OAuth
  • http-server.json - REST API with token auth

External Resources

Implementation Workflow

To add MCP integration to a plugin:

  1. Choose MCP server type (stdio, SSE, HTTP, ws)
  2. Create .mcp.json at plugin root with configuration
  3. Use ${CLAUDE_PLUGIN_ROOT} for all file references
  4. Document required environment variables in README
  5. Test locally with /mcp command
  6. Pre-allow MCP tools in relevant commands
  7. Handle authentication (OAuth or tokens)
  8. Test error cases (connection failures, auth errors)
  9. Document MCP integration in plugin README

Focus on stdio for custom/local servers, SSE for hosted services with OAuth.

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

04

需要参考平台分布和安装热度时

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

补充不同宿主或平台的使用分布数据

能力 5

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

Claude Code

26.24%
按下载量换算4,108

Gemini CLI

21.6%
按下载量换算3,382

OpenCode

17.82%
按下载量换算2,790

Codex

13.78%
按下载量换算2,157

Antigravity

8.11%
按下载量换算1,270

Cursor

3.51%
按下载量换算550

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