# COSMOS (54D) This model is COSMOS — a 54D transformer architecture packaged as a GGUF for local runtimes. The GGUF hosted here is the patched COSMOS architecture verified on Ollama. ## Quick Links - **[Performance Profile](performance.md)** — Latency, memory, and throughput metrics - **Weights:** 1_HER_SOUL/weights/cosmos-namebind-weights.gguf (3.1 GB Q4) - **Backup:** 1_HER_SOUL/weights/cosmos-namebind-weights-BACKUP-before-replace.gguf ## Architecture COSMOS combines: - **12D CST Phase Attention** — Geometric phase-space attention - **24D Hebbian Plasticity** — Online synaptic weight adaptation during inference - **18D Chaos Oscillators** — Deterministic Lorenz dynamics to prevent collapse - **256-slot Persistent Memory** — True session continuity ## Compatibility notes - Runtime tensor layout may be qwen2-compatible; file metadata expresses COSMOS architecture. Ollama accepts this patched file. - If other runtimes fail, use the BACKUP file in the repo or re-export from checkpoints. ## Quick start (Ollama) 1. Download weights: \1_HER_SOUL/weights/cosmos-namebind-weights.gguf\ 2. Create Modelfile: \FROM .\\cosmos-namebind-weights.gguf\ 3. \ollama create cosmos -f Modelfile\ then \ollama run cosmos "Hello"\ ## Performance - **Multi-turn latency:** ~5.9 s average per response - **Memory footprint:** ~24–25 MB (CLI process peak) - **Concurrency:** Tested with 3 parallel requests, all successful See [performance.md](performance.md) for detailed benchmarks. ## Safety & Limitations - Online Hebbian plasticity is a novel feature; careful validation recommended for production use - Chaos oscillators may introduce stochasticity in edge cases - Backup original GGUF for runtime compatibility fallback --- **Status:** Tested and verified on local Ollama (Windows). Ready for broader platform deployment.