genpark-meta-muse-episodic-memory-graph-mcp
Click on "Deploy 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., "@genpark-meta-muse-episodic-memory-graph-mcpwhat were the key points from my meeting with Alex yesterday?"
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.
genpark-meta-muse-episodic-memory-graph-mcp
π GenPark MCP Hub β’ π¦ GenPark Official β’ π Documentation
π Overview & Paradigm
genpark-meta-muse-episodic-memory-graph-mcp is a deterministic, zero-dependency Python skill and native Model Context Protocol (MCP) server engineered for next-generation personal AI agents. It distills core architectural principles from Meta (ambient multimodal perception), Muse (continuous episodic memory), Instinct (zero-prompt proactive agency), and Jev (System-1 sub-millisecond typed decision cognition).
Executive Capability: Native Model Context Protocol (MCP) server fusing Meta ambient multimodal perception with Muse continuous episodic memory streams and Ebbinghaus recency decay.
β‘ Key Highlights & Value
π Zero External
pipDependencies: Runs instantaneously on standard Python 3.9+ with zero environment bloat.π Native Model Context Protocol (MCP): Plugs directly into Claude Desktop, Cursor IDE, Windsurf, and custom agent swarms.
π§ System-1 Low-Latency Cognition: Slashes unnecessary frontier LLM invocations by routing routine and reflexive decisions at up to 200x faster execution speed.
π‘οΈ Safety & Privacy Guardrails: Enforces reversible execution checkpoints, strict token budgets, and local-first memory retention.
Related MCP server: genpark-instinct-proactive-intent-reflex-skill
ποΈ Architecture & Cognitive Flow
graph LR
A[ποΈ Ambient Perception: Meta / Screen] --> B[π§ Instinct Proactive Sensor]
B --> C{β‘ Jev System-1 Decision Layer}
C -->|Fast Reflex / Cached Tool| D[π οΈ Deterministic Action]
C -->|Ambiguous / Multi-Hop Plan| E[π€ System-2 Frontier LLM]
D --> F[(π Muse Episodic Memory Stream)]
E --> F
F -->|Decayed Context Briefing| Aπ Quickstart & Usage
1. Direct Python Client Execution
python example_usage.py2. Programmatic Integration
from client import MetaMuseEpisodicMemoryGraph
client = MetaMuseEpisodicMemoryGraph()
result = client.run_benchmark_episodic_stream()
print(result)π Model Context Protocol (MCP) Setup
Connect this skill to Claude Desktop, Cursor, or any MCP-compliant client:
claude_desktop_config.json
{
"mcpServers": {
"genpark-meta-muse-episodic-memory-graph-mcp": {
"command": "python",
"args": ["/path/to/genpark-meta-muse-episodic-memory-graph-mcp/mcp_server.py"]
}
}
}Direct MCP Testing
python mcp_server.py --testπ Technical Specifications
Parameter | Type | Required | Description |
|
| Yes | Primary context, state vector, or action candidate |
|
| Yes | Standardized schema containing typed decision outputs and telemetry |
β Frequently Asked Questions (FAQ)
Q1: How does this differ from traditional LLM prompts?
Rather than sending every small interaction to heavy reasoning LLMs, this architecture implements Jev-style System-1 cognition and Instinct proactive sensing to execute fast, deterministic, schema-enforced routing and guardrails.
Q2: What are the memory retention guarantees?
Memory records utilize Muse-style Ebbinghaus forgetting curves with recency decay, contradiction resolution, and user-controlled deletion cascades.
This server cannot be deployed
Maintenance
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