---
slug: "deeplucid3d-ucpf服务器"
source_type: "readme"
source_url: "https://cdn.jsdelivr.net/gh/mushroomfleet/deeplucid3d-mcp@main/README.md"
repo: "https://github.com/mushroomfleet/deeplucid3d-mcp"
source_file: "README.md"
branch: "main"
---
# DeepLucid3D UCPF Server

A Model Context Protocol (MCP) server implementing the Unified Cognitive Processing Framework (UCPF) for advanced cognitive analysis, creative problem-solving, and structured thinking.

## What is it?

The DeepLucid3D UCPF Server is an implementation of the Unified Cognitive Processing Framework as an MCP server. It combines recursive self-awareness with dimensional knowledge categorization to provide a powerful approach to problem-solving and creative thinking.

This server extends AI capabilities by providing structured cognitive tools that help:
- Assess cognitive states
- Map knowledge dimensions
- Apply recursive self-questioning
- Generate creative perspectives
- Decompose and reintegrate complex problems

## What it does

The UCPF Server enables advanced cognitive processing through several key features:

### Core Capabilities

1. **Cognitive State Assessment**: Identifies current cognitive states (Dark Inertia, Passion, or Approaching Lucidity) to improve self-awareness during problem-solving.

2. **Knowledge Dimension Mapping**: Maps knowledge across three dimensions:
   - Awareness (Known vs. Unknown)
   - Content (Knowns vs. Unknowns)
   - Accessibility (Knowable vs. Unknowable)

3. **Recursive Self-Questioning**: Challenges initial assumptions and identifies potential cognitive biases.

4. **Creative Perspective Generation**: Produces novel viewpoints and metaphorical thinking to inspire new solutions.

5. **Problem Decomposition**: Breaks complex problems into manageable components and reintegrates them with awareness of the whole system.

6. **Optional State Management**: Maintains context between sessions for ongoing analysis.

## Setup and Installation

### Prerequisites

- Node.js (v14 or higher)
- npm (v6 or higher)
- An environment compatible with the Model Context Protocol

### Installation Steps

1. **Clone the repository**
   ```bash
   git clone https://github.com/yourusername/DeepLucid3D-UCPF-Server.git
   cd DeepLucid3D-UCPF-Server
   ```

2. **Install dependencies**
   ```bash
   npm install
   ```

3. **Build the project**
   ```bash
   npm run build
   ```

4. **Configure MCP settings**

   Add the server to your MCP settings file. For Claude/Cline, this is typically located at:
   - For Claude Desktop: `~/Library/Application Support/Claude/claude_desktop_config.json` (macOS)
   - For VSCode Cline: `~/.config/Code/User/globalStorage/saoudrizwan.claude-dev/settings/cline_mcp_settings.json` (Linux)

   Add the following configuration:
   ```json
   {
     "mcpServers": {
      "ucpf": {
      "command": "node",
      "args": ["path/to/DeepLucid3D-MCP/build/index.js"],
      "env": {},
      "disabled": false,
      "autoApprove": []
       }
     }
   }
   ```

5. **Restart your MCP-compatible application** (Claude, VSCode with Cline, etc.)

## How to Use

The server exposes three main tools and several resources that can be accessed through MCP:

### Tools

1. **analyze_problem**: Process a problem statement through the full UCPF framework
   ```
   <use_mcp_tool>
   <server_name>ucpf</server_name>
   <tool_name>analyze_problem</tool_name>
   <arguments>
   {
     "problem": "Your problem statement here",
     "session_id": "optional-session-id",
     "enable_state": false,
     "detailed": false
   }
   </arguments>
   </use_mcp_tool>
   ```

2. **creative_exploration**: Generate novel perspectives and connections for a topic
   ```
   <use_mcp_tool>
   <server_name>ucpf</server_name>
   <tool_name>creative_exploration</tool_name>
   <arguments>
   {
     "topic": "Your topic here",
     "constraints": ["Optional constraint 1", "Optional constraint 2"],
     "perspective_count": 3,
     "include_metaphors": true
   }
   </arguments>
   </use_mcp_tool>
   ```

3. **manage_state**: Control state management for UCPF processing
   ```
   <use_mcp_tool>
   <server_name>ucpf</server_name>
   <tool_name>manage_state</tool_name>
   <arguments>
   {
     "action": "enable", // or "disable", "reset", "status"
     "session_id": "optional-specific-session-id"
   }
   </arguments>
   </use_mcp_tool>
   ```

### Resources

Access framework documentation:
```
<access_mcp_resource>
<server_name>ucpf</server_name>
<uri>ucpf://framework/overview</uri>
</access_mcp_resource>
```

Available resources:
- `ucpf://framework/overview`: Overview of the UCPF framework
- `ucpf://framework/cognitive-states`: Guide to cognitive states
- `ucpf://framework/knowledge-dimensions`: Reference for knowledge dimensions
- `ucpf://session/{sessionId}/analysis`: Analysis results for a specific session

## Example Use Case: Using UCPF to Solve a Riddle

Let's solve the classic riddle: "What walks on four legs in the morning, two legs in the afternoon, and three legs in the evening?"

### Step 1: Enable state management for session persistence

```
<use_mcp_tool>
<server_name>ucpf</server_name>
<tool_name>manage_state</tool_name>
<arguments>
{
  "action": "enable"
}
</arguments>
</use_mcp_tool>
```

### Step 2: Analyze the riddle using the UCPF framework

```
<use_mcp_tool>
<server_name>ucpf</server_name>
<tool_name>analyze_problem</tool_name>
<arguments>
{
  "problem": "What walks on four legs in the morning, two legs in the afternoon, and three legs in the evening?",
  "session_id": "sphinx-riddle",
  "enable_state": true
}
</arguments>
</use_mcp_tool>
```

The analysis will provide:
- Cognitive state assessment (likely identifying potential metaphorical thinking)
- Knowledge mapping of what we know and don't know
- Recursive questions to challenge initial assumptions (e.g., "Are we assuming literal legs?")
- Structured perspectives on different interpretations

### Step 3: Explore creative perspectives to find the solution

```
<use_mcp_tool>
<server_name>ucpf</server_name>
<tool_name>creative_exploration</tool_name>
<arguments>
{
  "topic": "Walking with different numbers of legs at different times of day",
  "constraints": ["morning", "afternoon", "evening", "four", "two", "three"],
  "include_metaphors": true,
  "session_id": "sphinx-riddle"
}
</arguments>
</use_mcp_tool>
```

This exploration might reveal:
- The metaphorical interpretation of "legs" as support structures
- The metaphorical interpretation of times of day as stages of life
- Leading to the classic answer: a human, who crawls on four limbs as a baby, walks on two legs as an adult, and uses a cane (third "leg") in old age

### Step 4: Review the session analysis

```
<access_mcp_resource>
<server_name>ucpf</server_name>
<uri>ucpf://session/sphinx-riddle/analysis</uri>
</access_mcp_resource>
```

This provides the complete analysis journey, showing how the framework led to the solution through structured cognitive processing.

## Acknowledgments

This project stands on the shoulders of giants:

- The **Model Context Protocol (MCP)** team for creating the foundational protocol that enables AI systems to access external tools and resources
- The **Anthropic Claude** team for their work on advanced AI systems capable of utilizing MCP
- Contributors to the **Unified Cognitive Processing Framework** concepts that power the cognitive analysis methodology
- The open-source community whose libraries and tools make projects like this possible

## License

MIT License

## Project Structure

```
DeepLucid3D-UCPF-Server/
├── src/
│   ├── engine/
│   │   ├── ucpf-core.ts       # Core UCPF processing logic
│   │   ├── creative-patterns.ts  # Creative thinking utilities
│   │   └── state-manager.ts   # Session state management
│   ├── tools/
│   │   ├── analyze-problem.ts # Problem analysis tool
│   │   └── creative-exploration.ts  # Creative exploration tool
│   └── index.ts               # Main server implementation
├── build/                     # Compiled JavaScript files
├── package.json               # Project dependencies and scripts
└── README.md                  # This documentation
```

---

© 2025 DeepLucid3D UCPF Server

## See Also

- [TranscriptionTools-MCP](https://github.com/MushroomFleet/TranscriptionTools-MCP) — Transcript processing
- [DeepLucid3D-MCP](https://github.com/MushroomFleet/DeepLucid3D-MCP) — Cognitive processing
- [UNO-MCP](https://github.com/MushroomFleet/UNO-MCP) — Narrative enhancement
- [gitea-mcp](https://github.com/MushroomFleet/gitea-mcp) — Gitea integration
- [zero-vector-MCP](https://github.com/MushroomFleet/zero-vector-MCP) — Procedural generation
