Instructions to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with libraries, inference providers, notebooks, and local apps. Follow these links to get started.
- Notebooks
- Google Colab
- Kaggle
- Local Apps Settings
- llama.cpp
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with llama.cpp:
Install (macOS, Linux)
curl -LsSf https://llama.app/install.sh | sh # Start a local OpenAI-compatible server with a web UI: llama serve -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M # Run inference directly in the terminal: llama cli -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Install from WinGet (Windows)
winget install llama.cpp # Start a local OpenAI-compatible server with a web UI: llama serve -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M # Run inference directly in the terminal: llama cli -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Use pre-built binary
# Download pre-built binary from: # https://github.com/ggerganov/llama.cpp/releases # Start a local OpenAI-compatible server with a web UI: ./llama-server -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M # Run inference directly in the terminal: ./llama-cli -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Build from source code
git clone https://github.com/ggerganov/llama.cpp.git cd llama.cpp cmake -B build cmake --build build -j --target llama-server llama-cli # Start a local OpenAI-compatible server with a web UI: ./build/bin/llama-server -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M # Run inference directly in the terminal: ./build/bin/llama-cli -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Use Docker
docker model run hf.co/LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
- LM Studio
- Jan
- vLLM
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with vLLM:
Install from pip and serve model
# Install vLLM from pip: pip install vllm # Start the vLLM server: vllm serve "LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF" # Call the server using curl (OpenAI-compatible API): curl -X POST "http://localhost:8000/v1/chat/completions" \ -H "Content-Type: application/json" \ --data '{ "model": "LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF", "messages": [ { "role": "user", "content": [ { "type": "text", "text": "Describe this image in one sentence." }, { "type": "image_url", "image_url": { "url": "https://cdn.britannica.com/61/93061-050-99147DCE/Statue-of-Liberty-Island-New-York-Bay.jpg" } } ] } ] }'Use Docker
docker model run hf.co/LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
- Ollama
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with Ollama:
ollama run hf.co/LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
- Unsloth Desktop
- Pi
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with Pi:
Start the llama.cpp server
# Install llama.cpp: brew install llama.cpp # Start a local OpenAI-compatible server: llama serve -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Configure the model in Pi
# Install Pi: npm install -g @earendil-works/pi-coding-agent # Add to ~/.pi/agent/models.json: { "providers": { "llama-cpp": { "baseUrl": "http://localhost:8080/v1", "api": "openai-completions", "apiKey": "none", "models": [ { "id": "LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M" } ] } } }Run Pi
# Start Pi in your project directory: pi
- Docker Model Runner
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with Docker Model Runner:
docker model run hf.co/LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
- Lemonade
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with Lemonade:
Pull the model
# Download Lemonade from https://lemonade-server.ai/ lemonade pull LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Run and chat with the model
lemonade run user.Qwen3.8-27B-Unleashed-SSMFIX-GGUF-UD-Q4_K_M
List all available models
lemonade list
- Hermes Agent
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with Hermes Agent:
Start the llama.cpp server
# Install llama.cpp: brew install llama.cpp # Start a local OpenAI-compatible server: llama serve -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Configure Hermes
# Install Hermes: curl -fsSL https://hermes-agent.nousresearch.com/install.sh | bash hermes setup # Point Hermes at the local server: hermes config set model.provider custom hermes config set model.base_url http://127.0.0.1:8080/v1 hermes config set model.default LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Run Hermes
hermes
- Atomic Chat
- OpenClaw
How to use LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF with OpenClaw:
Start the llama.cpp server
# Install llama.cpp: brew install llama.cpp # Start a local OpenAI-compatible server: llama serve -hf LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M
Configure OpenClaw
# Install OpenClaw: npm install -g openclaw@latest # Register the local server and set it as the default model: openclaw onboard --non-interactive --mode local \ --auth-choice custom-api-key \ --custom-base-url http://127.0.0.1:8080/v1 \ --custom-model-id "LuffyTheFox/Qwen3.8-27B-Unleashed-SSMFIX-GGUF:UD-Q4_K_M" \ --custom-provider-id llama-cpp \ --custom-compatibility openai \ --custom-text-input \ --accept-risk \ --skip-health
Run OpenClaw
openclaw agent --local --agent main --message "Hello from Hugging Face"
This is Qwen3.8-27B-Unleashed-GGUF
made by outsourc-e with fixed by me scale for ssm_conv1d.weight tensors:
| Tensor | QType | α/δ/σ̄ | S_b | S_a |
|---|---|---|---|---|
| blk.52.ssm_conv1d.weight | F32 | α=0.59005 | 0.0016 | 0.0006 |
| blk.53.ssm_conv1d.weight | F32 | α=0.55484 | 0.0015 | 0.0005 |
| blk.56.ssm_conv1d.weight | F32 | α=0.54486 | 0.0015 | 0.0004 |
| blk.57.ssm_conv1d.weight | F32 | α=0.53574 | 0.0015 | 0.0004 |
| blk.58.ssm_conv1d.weight | F32 | α=0.60972 | 0.0012 | 0.0005 |
| blk.60.ssm_conv1d.weight | F32 | α=0.48136 | 0.0017 | 0.0004 |
| blk.61.ssm_conv1d.weight | F32 | α=0.65327 | 0.0010 | 0.0004 |
| blk.62.ssm_conv1d.weight | F32 | α=0.61856 | 0.0013 | 0.0005 |
α is optimal value for tensor scaling,
S_b tensor saturation before scaling,
S_a tensor saturation after scaling
Genesis SVD with Noise Gate supression can't be applied to this model, because it can process only BF16, F32, MXFP4, Q8_0 and Q4_0 tensors. NVFP4 encoding is not supported in gguf-py in llama.cpp. I can read NVFP4 weights, but can't modify them. So I fixed only 6 too loud ssm_conv1d.weight layers in this model. Everything else left unchanged.
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