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stevenlearns/LightWan2.2-A14B
LightWan2.2-A14B is a machine learning model from stevenlearns. Use it for the machine learning task on the model card, and read the license before you ship it in a product. It is set up for diffusers. The card lists the license as apache-2.0.
An extremely efficient Wan 2.2 14B variant: NVFP4 Quantization-Aware Step Distillation with Sparse Attention for Blackwell Architecture
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From the Hugging Face model README
An extremely efficient Wan 2.2 14B variant: NVFP4 Quantization-Aware Step Distillation with Sparse Attention for Blackwell Architecture
We strongly recommend using the official LightX2V Docker image for the cleanest environment and best reproducibility.
# 1. Pull LightX2V Docker image
docker pull lightx2v/lightx2v:26052801-cu130-5090
# 2. Run single-GPU inference
# Text-to-video
bash scripts/wan22/extreme/run_wan22_moe_t2v_extreme.sh
# Image-to-video
bash scripts/wan22/extreme/run_wan22_moe_i2v_extreme.sh
# 3. Run multi-GPU sequence-parallel inference
# Text-to-video
bash scripts/wan22/extreme/run_wan22_moe_t2v_extreme_sp_parallel.sh
# Image-to-video
bash scripts/wan22/extreme/run_wan22_moe_i2v_extreme_sp_parallel.sh
If Docker is not available, install the environment manually:
# 1. Install LightX2V
git clone https://github.com/ModelTC/LightX2V.git
cd LightX2V
uv pip install -v .
# 2. Install NVFP4 Kernel
pip install scikit_build_core uv
git clone https://github.com/NVIDIA/cutlass.git
cd lightx2v_kernel
MAX_JOBS=$(nproc) CMAKE_BUILD_PARALLEL_LEVEL=$(nproc) \
uv build --wheel \
-Cbuild-dir=build . \
-Ccmake.define.CUTLASS_PATH=/path/to/cutlass \
--verbose --color=always --no-build-isolation
pip install dist/*whl --force-reinstall --no-deps
# 3. Run single-GPU inference
# Text-to-video
bash scripts/wan22/extreme/run_wan22_moe_t2v_extreme.sh
# Image-to-video
bash scripts/wan22/extreme/run_wan22_moe_i2v_extreme.sh
# 4. Run multi-GPU sequence-parallel inference
# Text-to-video
bash scripts/wan22/extreme/run_wan22_moe_t2v_extreme_sp_parallel.sh
# Image-to-video
bash scripts/wan22/extreme/run_wan22_moe_i2v_extreme_sp_parallel.sh
Single-GPU Scripts:
Multi-GPU Scripts:
| Resolution | Wan2.2-T2V-14B | LightWan2.2-A14B |
|---|---|---|
| 480p | <video controls style="width: 260px; height: 180px; border-radius: 6px; object-fit: cover;" src="https://cdn-uploads.huggingface.co/production/uploads/658e760cccbc1e2cc78b4258/WTHhrzx7XR4S1Ys_6Kzx4.mp4"></video> | <video controls style="width: 260px; height: 180px; border-radius: 6px; object-fit: cover;" src="https://cdn-uploads.huggingface.co/production/uploads/658e760cccbc1e2cc78b4258/zorpw7gm9At0J2kCmvkDr.mp4"></video> |
| 720p | <video controls style="width: 260px; height: 180px; border-radius: 6px; object-fit: cover;" src="https://cdn-uploads.huggingface.co/production/uploads/658e760cccbc1e2cc78b4258/vkiyKj7CJA-r0yTz7TEum.mp4"></video> | <video controls style="width: 260px; height: 180px; border-radius: 6px; object-fit: cover;" src="https://cdn-uploads.huggingface.co/production/uploads/658e760cccbc1e2cc78b4258/TuECbzvW5jI9NHG6GLvIR.mp4"></video> |
Test Environment: RTX 5090 Single GPU | LightX2V Framework | End-to-End Latency
| Method | Task | GPU Number | Resolution | NFE | E2E Latency | Speedup |
|---|---|---|---|---|---|---|
| Wan2.2-T2V-14B | T2V | 1 | 480p | 40 | 734.0s | 1.0x |
| LightWan2.2-A14B | T2V | 1 | 480p | 4 | 9.1s | 80.7x |
| Wan2.2-T2V-14B | T2V | 1 | 720p | 40 | 2668.0s | 1.0x |
| LightWan2.2-A14B | T2V | 1 | 720p | 4 | 22.5s | 118.7x |
| Wan2.2-I2V-14B | I2V | 1 | 480p | 40 | 787.0s | 1.0x |
| LightWan2.2-A14B | I2V | 1 | 480p | 4 | 10.7s | 73.9x |
| Wan2.2-I2V-14B | I2V | 1 | 720p | 40 | 2685.0s | 1.0x |
| LightWan2.2-A14B | I2V | 1 | 720p | 4 | 26.7s | 100.5x |
lightx2v/lightx2v:26052801-cu130-5090.If you find this project helpful, please give us a β on GitHub
For questions or issues, please open an issue on LightX2V or contact [email protected].
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