CalDAV MCP Server
Enables CRUD operations for calendar events, journal entries, and todos on any CalDAV server (like Radicale) through the Model Communication Protocol.
README
MCP CalDAV STDIO Application
A Python-based MCP (Model Communication Protocol) application that provides CRUD operations for events, journals, and todos using the caldav Python library.
Dependencies
This application requires the following Python packages:
caldav- For CalDAV protocol supportpython-dateutil- For date/time parsing and manipulation
These dependencies are automatically managed through the package configuration.
Installation with uv
This application can be installed and run using uv or uvx:
Using uvx (no installation needed)
uvx caldav-mcp
Using uv to install
uv pip install caldav-mcp
uvx caldav-mcp
From source
git clone https://github.com/example/caldav-mcp.git
cd caldav-mcp
uv pip install -e .
uvx caldav-mcp
Direct usage with uvx from GitHub
uvx github:example/caldav-mcp
Features
- MCP Protocol Support: Communicates over STDIO using the Model Communication Protocol
- CalDAV Integration: Connects to any CalDAV server (like Radicale)
- Full CRUD Operations: Create, Read, Update, and Delete for events, journals, and todos
- Standard Data Models: Well-defined models for events, journals, and todos
- Error Handling: Comprehensive error handling and logging
- Configuration Management: Flexible configuration via files and environment variables
Architecture
┌─────────────────┐ ┌──────────────────┐ ┌──────────────────┐
│ MCP Client │ │ MCP CalDAV │ │ CalDAV Server │
│ │ │ Application │ │ │
│ STDIO Input │───▶│ (this app) │───▶│ (e.g. Radicale) │
│ JSON Messages │ │ │ │ │
│ │◀───│ │◀───│ │
│ STDIO Output │ │ │ │ │
└─────────────────┘ └──────────────────┘ └──────────────────┘
Installation
- Clone or download this repository
- Install dependencies:
pip install -r requirements.txt
Configuration
The application supports configuration through:
- Environment variables
- Configuration file (
config/settings.json)
Environment Variables
CALDAV_SERVER_URL: CalDAV server URL (default:http://localhost:5232)CALDAV_USERNAME: Username for authentication (default:user)CALDAV_PASSWORD: Password for authentication (default: ``)CALDAV_USE_SSL: Whether to use SSL (default:true)LOG_LEVEL: Logging level (default:INFO)
Configuration File
Create config/settings.json:
{
"server_url": "http://localhost:5232",
"username": "user",
"password": "",
"use_ssl": true,
"log_level": "INFO"
}
Usage
Run the application:
python main.py
The application will listen on STDIO for MCP protocol messages. It supports the following methods:
Event Operations
caldav.event.create: Create a new eventcaldav.event.read: Read an existing eventcaldav.event.update: Update an existing eventcaldav.event.delete: Delete an eventcaldav.event.list: List all events
Journal Operations
caldav.journal.create: Create a new journal entrycaldav.journal.read: Read an existing journal entrycaldav.journal.update: Update an existing journal entrycaldav.journal.delete: Delete a journal entrycaldav.journal.list: List all journal entries
Todo Operations
caldav.todo.create: Create a new todo itemcaldav.todo.read: Read an existing todo itemcaldav.todo.update: Update an existing todo itemcaldav.todo.delete: Delete a todo itemcaldav.todo.list: List all todo items
Example Request
{
"jsonrpc": "2.0",
"id": "1",
"method": "caldav.event.create",
"params": {
"title": "Team Meeting",
"description": "Weekly team sync",
"start_time": "2023-10-15T10:00:00",
"end_time": "2023-10-15T11:00:00",
"location": "Conference Room A"
}
}
Example Response
{
"jsonrpc": "2.0",
"id": "1",
"result": {
"id": "event-12345",
"status": "created"
}
}
Development
Project Structure
caldav-mcp/
├── main.py # Main application entry point
├── requirements.txt # Python dependencies
├── config/ # Configuration files
│ └── settings.json # Application settings
├── src/ # Source code
│ ├── __init__.py
│ ├── caldav_client.py # CalDAV connection and operations
│ ├── models/ # Data models
│ │ ├── __init__.py
│ │ ├── event.py # Event data model
│ │ ├── journal.py # Journal data model
│ │ └── todo.py # Todo data model
│ ├── operations/ # CRUD operations
│ │ ├── __init__.py
│ │ ├── event_ops.py # Event CRUD operations
│ │ ├── journal_ops.py # Journal CRUD operations
│ │ └── todo_ops.py # Todo CRUD operations
│ ├── stdio_interface.py # MCP STDIO protocol implementation
│ ├── config_manager.py # Configuration management
│ └── error_handler.py # Error handling and logging
└── docs/ # Documentation
├── architecture.md
├── project_structure.md
├── data_models.md
└── mcp_protocol.md
License
MIT
推荐服务器
Baidu Map
百度地图核心API现已全面兼容MCP协议,是国内首家兼容MCP协议的地图服务商。
Playwright MCP Server
一个模型上下文协议服务器,它使大型语言模型能够通过结构化的可访问性快照与网页进行交互,而无需视觉模型或屏幕截图。
Magic Component Platform (MCP)
一个由人工智能驱动的工具,可以从自然语言描述生成现代化的用户界面组件,并与流行的集成开发环境(IDE)集成,从而简化用户界面开发流程。
Audiense Insights MCP Server
通过模型上下文协议启用与 Audiense Insights 账户的交互,从而促进营销洞察和受众数据的提取和分析,包括人口统计信息、行为和影响者互动。
VeyraX
一个单一的 MCP 工具,连接你所有喜爱的工具:Gmail、日历以及其他 40 多个工具。
graphlit-mcp-server
模型上下文协议 (MCP) 服务器实现了 MCP 客户端与 Graphlit 服务之间的集成。 除了网络爬取之外,还可以将任何内容(从 Slack 到 Gmail 再到播客订阅源)导入到 Graphlit 项目中,然后从 MCP 客户端检索相关内容。
Kagi MCP Server
一个 MCP 服务器,集成了 Kagi 搜索功能和 Claude AI,使 Claude 能够在回答需要最新信息的问题时执行实时网络搜索。
e2b-mcp-server
使用 MCP 通过 e2b 运行代码。
Neon MCP Server
用于与 Neon 管理 API 和数据库交互的 MCP 服务器
Exa MCP Server
模型上下文协议(MCP)服务器允许像 Claude 这样的 AI 助手使用 Exa AI 搜索 API 进行网络搜索。这种设置允许 AI 模型以安全和受控的方式获取实时的网络信息。