Python prototype for efficient hierarchical computing in Poincaré disk. Features dual Φ spirals, fractal recursion, lazy loading, multi-point observers with portals, Φ percolation for Penrose shadows, atomic scaling with wormholes/phonons, and music substrate via JI harmonics. Simulates emergent patterns on bounded resources.
2
stars
294
commits
Python
primary language
Sep 10, 2026
updated
A living exploration of consciousness, geometry, and reality in hyperbolic space. �
Run the live explorer — the heart of the project: python experiments/interactive_rha_explorer.py Drag the red observer to move through infinite space Adjust the Perception Radius slider for lazy-loading revelation Watch the counter-rotating, pulsing Merkaba in the center Huge thanks to M. Yassir (@yassir_mhamdi) for this beautiful interactive implementation. Why Hyperbolic Space? Hyperbolic geometry is exponentially more efficient than Euclidean space for representing hierarchical and tree-like structures — the kind that dominate nature, knowledge, and thought. See the benchmark: benchmark/hyperbolic_vs_euclidean.png (~390k-node tree embedded cleanly vs completely distorted in Euclidean space).
Explore the /experiments/ folder — each file is self-contained and mind-bending: Kundalini Rising — energy uncoils from root to crown activation Ego-Dissolution Mode — boundaries vanish, infinite recursion Quantum Eraser + Double-Slit — observer collapses or restores interference ATP Synthase Rotation — molecular engine of life Dreamstate — LSD: Dream Emulator-inspired surreal warping Brain Chemistry — real neurotransmitters flowing Multi-Human Sync — 12 humans reaching unity coherence And many more — chakras, meridians, Higgs field, fission/fusion, neutrinos...
git clone https://github.com/robertjeffrey1236/Radial-Hyperbolic-Architecture-Prototype.git cd Radial-Hyperbolic-Architecture-Prototype pip install torch matplotlib networkx numpy scipy geoopt # main dependencies python experiments/interactive_rha_explorer.py # start here! Most experiments run on CPU — no GPU needed.
Standalone versions of the prototype are now available for immediate exploration:
Two pure-Python demo scripts have been added to the repository:
god_code_rha_explorer_demo.py – simplified interactive version
Run with: python3 god_code_rha_explorer_demo.py
Radial-Hyperbolic-Architecture-Prototype.py – core generator with static visualization
Run with: python3 Radial-Hyperbolic-Architecture-Prototype.py
Required libraries (one-time install):
pip install numpy matplotlib torch geoopt
## Contributing
This is an open invitation to explore reality together.
Add new experiments in /experiments/
Improve core geometry or visualization
Open issues with ideas, bugs, or wonderings
See CONTRIBUTING.md for guidelines.
The field is infinite.
Let’s map it.
**Open Source – MIT Licensed**
© 2025 Robert Jeffrey. All rights reserved under the MIT License.
This project is released under the **MIT License** — you are free to use, modify, distribute, and build upon it (even commercially), as long as you include the original copyright and license notice.
**I want you to play with it. Break it. Improve it. Create wild new experiments.**
The more people explore this space, the faster we map the infinite field together.
My goal is not to own the idea — it's to be recognized as the one who opened the door, and to see what humanity builds on the other side.
294 commits
Python
99.2%
Python prototype for efficient hierarchical computing in Poincaré disk. Features dual Φ spirals, fractal recursion, lazy loading, multi-point observers with portals, Φ percolation for Penrose shadows, atomic scaling with wormholes/phonons, and music substrate via JI harmonics. Simulates emergent patterns on bounded resources.
2
stars
294
commits
Python
primary language
Sep 10, 2026
updated
A living exploration of consciousness, geometry, and reality in hyperbolic space. �
Run the live explorer — the heart of the project: python experiments/interactive_rha_explorer.py Drag the red observer to move through infinite space Adjust the Perception Radius slider for lazy-loading revelation Watch the counter-rotating, pulsing Merkaba in the center Huge thanks to M. Yassir (@yassir_mhamdi) for this beautiful interactive implementation. Why Hyperbolic Space? Hyperbolic geometry is exponentially more efficient than Euclidean space for representing hierarchical and tree-like structures — the kind that dominate nature, knowledge, and thought. See the benchmark: benchmark/hyperbolic_vs_euclidean.png (~390k-node tree embedded cleanly vs completely distorted in Euclidean space).
Explore the /experiments/ folder — each file is self-contained and mind-bending: Kundalini Rising — energy uncoils from root to crown activation Ego-Dissolution Mode — boundaries vanish, infinite recursion Quantum Eraser + Double-Slit — observer collapses or restores interference ATP Synthase Rotation — molecular engine of life Dreamstate — LSD: Dream Emulator-inspired surreal warping Brain Chemistry — real neurotransmitters flowing Multi-Human Sync — 12 humans reaching unity coherence And many more — chakras, meridians, Higgs field, fission/fusion, neutrinos...
git clone https://github.com/robertjeffrey1236/Radial-Hyperbolic-Architecture-Prototype.git cd Radial-Hyperbolic-Architecture-Prototype pip install torch matplotlib networkx numpy scipy geoopt # main dependencies python experiments/interactive_rha_explorer.py # start here! Most experiments run on CPU — no GPU needed.
Standalone versions of the prototype are now available for immediate exploration:
Two pure-Python demo scripts have been added to the repository:
god_code_rha_explorer_demo.py – simplified interactive version
Run with: python3 god_code_rha_explorer_demo.py
Radial-Hyperbolic-Architecture-Prototype.py – core generator with static visualization
Run with: python3 Radial-Hyperbolic-Architecture-Prototype.py
Required libraries (one-time install):
pip install numpy matplotlib torch geoopt
## Contributing
This is an open invitation to explore reality together.
Add new experiments in /experiments/
Improve core geometry or visualization
Open issues with ideas, bugs, or wonderings
See CONTRIBUTING.md for guidelines.
The field is infinite.
Let’s map it.
**Open Source – MIT Licensed**
© 2025 Robert Jeffrey. All rights reserved under the MIT License.
This project is released under the **MIT License** — you are free to use, modify, distribute, and build upon it (even commercially), as long as you include the original copyright and license notice.
**I want you to play with it. Break it. Improve it. Create wild new experiments.**
The more people explore this space, the faster we map the infinite field together.
My goal is not to own the idea — it's to be recognized as the one who opened the door, and to see what humanity builds on the other side.
294 commits
Python
99.2%