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World Model MCP Server

Developer ToolsModerate5.5MCP RegistryLocal
Free

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Persistent 3D/2D spatial world model for AI agents with entity tracking and simulation.

About

Persistent 3D/2D spatial world model for AI agents with entity tracking and simulation.

Security Report

5.5
Moderate5.5Moderate Risk

This is a well-structured spatial world model MCP server for AI agents with comprehensive test coverage and appropriate security practices. The codebase is clean with proper input validation, no hardcoded credentials, and permissions align with its stated purpose (filesystem for persistence, network for MCP protocol). Minor code quality observations include broad exception handling and informational logging patterns that do not pose security risks. Supply chain analysis found 3 known vulnerabilities in dependencies (0 critical, 1 high severity). Package verification found 1 issue.

4 files analyzed ยท 6 issues found

Security scores are indicators to help you make informed decisions, not guarantees. Always review permissions before connecting any MCP server.

Permissions Required

This plugin requests these system permissions. Most are normal for its category.

File System Read

Reads files on your machine. Normal for tools that analyze or process local data.

File System Write

Writes or modifies files on your machine. Check that this is expected for the tool.

HTTP Network Access

Connects to external APIs or services over the internet.

env_vars

Check that this permission is expected for this type of plugin.

database

Check that this permission is expected for this type of plugin.

How to Install

Add this to your MCP configuration file:

{
  "mcpServers": {
    "io-github-putervision-world-model-mcp": {
      "args": [
        "-y",
        "@putervision/world-model-mcp"
      ],
      "command": "npx"
    }
  }
}

Documentation

View on GitHub

From the project's GitHub README.

@putervision/world-model-mcp

npm version npm downloads CI Node TypeScript Website License: MIT

@putervision/world-model-mcp is a zero-infrastructure, deterministic Model Context Protocol (MCP) server that maintains a persistent 3D/2D spatial world model for AI agents. It bridges perception (@putervision/vision-memory-mcp) and reasoning/action (@putervision/state-memory-mcp) with durable entity tracking, object permanence with confidence decay, movement simulation with AABB collision avoidance, expected view frustum projection, and Playwright 3D game automation.

๐ŸŒ Official Documentation & Website: putervision.com


โšก Quick Start & Installation

Prerequisites: Node.js >= 18.18.0

# 1. Install globally
npm install -g @putervision/world-model-mcp

# 2. Navigate to your project directory
cd your-project

# 3. Initialize world-model-mcp
# Creates .world-model-mcp/, updates .gitignore, registers project,
# and scaffolds IDE instructions and MCP configs for Cursor, Claude, VS Code, Windsurf, etc.
world-model-mcp init

# Done! Restart your IDE or Agent Manager to activate.

Alternative Options

# Run directly via binary (after global install)
world-model-mcp run

# Launch interactive 3D WebGL Scene Visualizer
world-model-mcp view

# Display database metrics and permanence confidence stats
world-model-mcp stats

๐ŸŒŸ Key Highlights

  • ๐ŸŒ Deterministic 3D/2D Spatial Memory: Zero LLM in the loop for spatial indexing; deterministic SQLite WAL queries with FTS5 search and 3D Euclidean proximity radius lookups.
  • โšก 15 Production-Grade Consolidated MCP Tools: Full CRUD, topological spatial graphs (on, inside, contains, near), ray-AABB occlusion frustum culling, waypoint navigation, and time-travel rollback.
  • โณ Object Permanence & Decay: Entities remain in persistent memory even when out of view, with configurable exponential confidence decay ($C = C_0 \cdot e^{-\lambda t}$) and status lifecycles (active โ†’ hidden โ†’ lost).
  • ๐Ÿš€ Collision & Movement Simulation: Predicts entity displacement trajectories, detects AABB obstacle collisions, and computes obstacle-avoiding navigation waypoints before actions execute.
  • ๐ŸŽฎ Playwright Game Automation: Generates timed WASD / Arrow keyboard hold sequences (KeyW for 450ms, ArrowLeft for 290ms) and 3Dโ†”2D coordinate screen projections.
  • ๐Ÿค Multi-Agent Spatial Blackboard: Topic-based coordination with TTL, mutex locks, and collision intent alerts across parallel subagents.
  • ๐Ÿ›ก๏ธ Spatial Spec-Driven Development (Spatial SDD): Physical design contract baseline registration, live verification (clearance, bounds, containment), and cryptographic SHA-256 evidence bundles.
  • ๐ŸŽจ Interactive 3D WebGL Visualizer: Browser-based Three.js 3D viewport rendering active entities, orientation axes, frustum cones, and topological links (world-model-mcp view).
  • ๐Ÿ”’ 100% Local & Private: All spatial entities, relations, and history stay inside .world-model-mcp/ in your workspace.

๐Ÿ› ๏ธ MCP Tool Suite

@putervision/world-model-mcp provides 15 production-grade consolidated MCP tools organized across 5 core workflow domains:

  • Spatial Memory & Search: update_entity (entity CRUD, 3D bounds, properties, confidence), query_entities (FTS5 search, proximity radius, status/tags filter, history lookup), set_relation (topological graph links: on, inside, near, contains), get_spatial_map (JSON, GeoJSON, glTF 2.0, OBJ, summary).
  • Simulation & Vision Integration: simulate_movement (displacement prediction, AABB collision checks, waypoint routing), ingest_observation (vision detection ingestion, Euclidean re-identification, frustum reconciliation), get_expected_view (observer pose, horizontal FOV cone, ray-AABB occlusion).
  • Goal & State Integration: link_to_goal (associate entities/regions with State Memory tasks, extract spatial context slices), record_outcome (record execution results, position shifts, property changes, destruction).
  • Spatial SDD & Proofs: manage_spatial_spec (register physical clearance/containment contracts, live verification scoring), create_evidence_pack (cryptographic SHA-256 evidence bundles linking spatial proofs to task nodes).
  • Multi-Agent, Replay & Automation: use_spatial_blackboard (topic board, mutex claim/release, intent conflicts), manage_snapshot (checkpoints, snapshot diffing, time-travel undo), wait_for_spatial_state (async polling for target spatial condition), generate_game_inputs (Playwright WASD hold timings, 3Dโ†”2D screen ray projection).

๐Ÿ‘‰ For complete parameter specifications, return schemas, and example payloads, see the API Reference Guide and Database Schema.


๐Ÿš€ Architecture & Spatial Memory Lifecycle

                     Perception / Vision Detection
                                  โ”‚
                                  โ–ผ
                 โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
                 โ”‚  Perception Ingestion & Re-ID   โ”‚ โ”€โ”€โ–ถ ingest_observation(reconcile: true)
                 โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜
                                  โ”‚
                                  โ–ผ
                 โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
                 โ”‚  Durable Entity & Permanence    โ”‚ โ”€โ”€โ–ถ update_entity(...)
                 โ”‚  (3D Bounding Boxes, Decay)     โ”‚ โ”€โ”€โ–ถ set_relation(relation: "on"|"inside")
                 โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜
                                  โ”‚
                                  โ–ผ
                 โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
                 โ”‚  Simulation & Waypoint Routing  โ”‚ โ”€โ”€โ–ถ simulate_movement(mode: "navigate")
                 โ”‚  (AABB Collision Avoidance)     โ”‚ โ”€โ”€โ–ถ get_expected_view(fov: 90)
                 โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜
                                  โ”‚
                                  โ–ผ
                 โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
                 โ”‚  Playwright & Action Execution  โ”‚ โ”€โ”€โ–ถ generate_game_inputs(...)
                 โ”‚  (WASD Sequences, Screen Rays)  โ”‚ โ”€โ”€โ–ถ record_outcome(action_type: "move")
                 โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜
                                  โ”‚
                                  โ–ผ
                 โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
                 โ”‚  Spatial SDD & Cryptographic    โ”‚ โ”€โ”€โ–ถ manage_spatial_spec(action: "verify")
                 โ”‚  Evidence Bundling to Tasks     โ”‚ โ”€โ”€โ–ถ create_evidence_pack(...)
                 โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”ฌโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜
                                  โ”‚
                                  โ–ผ
                 โ”Œโ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”
                 โ”‚  Persistent SQLite Engine       โ”‚ โ”€โ”€โ–ถ .world-model-mcp/world.db (WAL mode)
                 โ”‚  Append-Only History Ledger     โ”‚ โ”€โ”€โ–ถ SHA-256 Cryptographic Audit Chain
                 โ””โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”€โ”˜

๐Ÿ“š Documentation Directory

Explore dedicated guides and deep dives in the docs/ directory:

GuideDescription
๐Ÿ—๏ธ Architecture & Codebase DistillationHigh-signal architectural overview, module inventory, data flows, and design decisions.
๐Ÿ’ก Features & Triad OverviewPuterVision Autonomous Triad interaction, 3D WebGL scene visualizer, and evidence packs.
๐Ÿ“‹ Spatial World Model ConceptsObject Permanence ($C = C_0 \cdot e^{-\lambda t}$), Confidence Decay, Frustum Projection, and Spatial SDD.
โš™๏ธ Configuration & IDE SetupAuto-Initialization details, Environment Variables, and Editor Configs (Cursor, VS Code, Claude, Windsurf).
๐Ÿ› ๏ธ CLI Command ReferenceCLI flags (init, run, view, stats, inspect, map, export, import, doctor, snapshot, spec, blackboard).
๐Ÿงฐ Tools & API ReferenceComplete reference for all 15 Consolidated MCP Tools, legacy tool mapping, and parameter examples.
๐Ÿ—„๏ธ Database SchemaSQLite tables (entities, spatial_relations, entity_history, spatial_specs, blackboard_items, evidence_packs).
๐ŸŽฎ Interactive 3D Game Arena DemoAutonomous 3D browser arena with Three.js bridge diagnostics (window.__WORLD_MODEL_BRIDGE).
๐Ÿงญ Examples & TutorialsDeep-dive examples: Spatial Navigation, Perception Reconciliation, and Multi-Agent Blackboard.

๐Ÿ“– Agent Playbook: 5-Step Canonical Workflow

When an autonomous AI agent enters a repository with world-model-mcp:

1. Orient & Explore   โ”€โ”€โ–ถ get_spatial_map(format: "summary") + get_expected_view(fov: 90)
2. Query & Locate     โ”€โ”€โ–ถ query_entities(query: "chest", radius: 15) + query_entities(entity_id: "...")
3. Plan & Simulate    โ”€โ”€โ–ถ simulate_movement(mode: "navigate") + manage_spatial_spec(action: "verify")
4. Execute & Ingest   โ”€โ”€โ–ถ generate_game_inputs(...) + ingest_observation(reconcile: true)
5. Record & Evidence  โ”€โ”€โ–ถ record_outcome(...) + create_evidence_pack(task_id: "...")

๐Ÿงช Testing

# Run full unit, integration, and geometry stress test suite across 47 test files (206 tests)
npm test

# Run multi-Node matrix test suite across Node.js 18, 20, and 22
npm run test:matrix

# Run 3D geometry, projection, and Playwright game loop tests
npm run test:3d

โš–๏ธ License & Disclaimers

Developed and maintained by PuterVision. Released under the MIT License.

  • Local Storage Guarantee: All spatial coordinates, bounding volumes, and entity history remain 100% local in your workspace. No telemetry or project data is ever transmitted.
  • Trademarks & Non-Affiliation: Product names (Cursor, Claude Code, Gemini, Windsurf, VS Code, GitHub, SQLite, Three.js, Playwright) are property of their respective owners and used solely for compatibility identification.

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