How to use from
OpenClaw
Start the llama.cpp server
# Install llama.cpp:
brew install llama.cpp
# Start a local OpenAI-compatible server:
llama serve -hf CISCai/gemma-4-31B-it-NVFP4-turbo-GGUF:NVFP4
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 "CISCai/gemma-4-31B-it-NVFP4-turbo-GGUF:NVFP4" \
  --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"
Quick Links

⚡ Gemma 4 31B IT NVFP4 Turbo GGUF

Requires ggml-org/llama.cpp#21971

A repackaged nvidia/Gemma-4-31B-IT-NVFP4 that is 68% smaller in GPU memory and ~2.5× faster than the base model, while retaining nearly identical quality (1-3% loss). Fits on a single RTX 5090 (🎉).

Approach

Three changes were made:

  1. Quantized all self-attention weights from BF16 → FP4 (RTN, group_size=16, matching modelopt NVFP4 format)
  2. Updated architecture to Gemma4ForCausalLM and quantization config accordingly
  3. Stripped the vision and audio encoder

Everything else is untouched — MLP layers keep NVIDIA's calibrated FP4, embed_tokens stays BF16, all norms preserved, so we retain all the nvidia/Gemma-4-31B-IT-NVFP4 optimizations.

Why RTN didn't hurt quality

RTN (Round-To-Nearest) is the simplest quantization method — no calibration data, fully reproducible. It worked here because:

  • FP4 with group_size=16 and per-group scaling preserves relative weight distributions well
  • Self-attention weights tend to be normally distributed near zero, where the FP4 grid has finest resolution (0, 0.5, 1.0, 1.5)
  • MLP layers (more sensitive to quantization) keep NVIDIA's calibrated FP4
  • embed_tokens stays BF16, preventing noise from propagating through all layers

License

Apache 2.0 — same as the base model.

Credits

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GGUF
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