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Add quantization examples using torchao and quanto (#2)
Browse files- Add quantization examples using torchao and quanto (af6c70af3ff1bdfb8bbfaeee17aff970c52a0eb0)
- Update README.md (b431862528b050b3f0493a28b8d4a5130113c6ec)
- Update README.md (cfce540899efa9f283b23162d121355267c47683)
Co-authored-by: Aryan V S <[email protected]>
README.md
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@@ -129,8 +129,8 @@ CogVideoX is an open-source version of the video generation model originating fr
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</tr>
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<tr>
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<td style="text-align: center;">Single GPU VRAM Consumption</td>
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<td style="text-align: center;">FP16: 18GB using <a href="https://github.com/THUDM/SwissArmyTransformer">SAT</a> / <b>12.5GB* using diffusers</b><br><b>INT8: 7.8GB* using diffusers</b></td>
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<td style="text-align: center;">BF16: 26GB using <a href="https://github.com/THUDM/SwissArmyTransformer">SAT</a> / <b>20.7GB* using diffusers</b><br><b>INT8: 11.4GB* using diffusers</b></td>
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</tr>
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<td style="text-align: center;">Multi-GPU Inference VRAM Consumption</td>
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export_to_video(video, "output.mp4", fps=8)
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```
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## Explore the Model
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Welcome to our [github](https://github.com/THUDM/CogVideo), where you will find:
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</tr>
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<tr>
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<td style="text-align: center;">Single GPU VRAM Consumption</td>
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<td style="text-align: center;">FP16: 18GB using <a href="https://github.com/THUDM/SwissArmyTransformer">SAT</a> / <b>12.5GB* using diffusers</b><br><b>INT8: 7.8GB* using diffusers wtih torchao</b></td>
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<td style="text-align: center;">BF16: 26GB using <a href="https://github.com/THUDM/SwissArmyTransformer">SAT</a> / <b>20.7GB* using diffusers</b><br><b>INT8: 11.4GB* using diffusers with torchao</b></td>
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</tr>
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<tr>
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<td style="text-align: center;">Multi-GPU Inference VRAM Consumption</td>
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export_to_video(video, "output.mp4", fps=8)
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```
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## Quantized Inference
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[PytorchAO](https://github.com/pytorch/ao) and [Optimum-quanto](https://github.com/huggingface/optimum-quanto/) can be used to quantize the Text Encoder, Transformer and VAE modules to lower the memory requirement of CogVideoX. This makes it possible to run the model on free-tier T4 Colab or smaller VRAM GPUs as well! It is also worth noting that TorchAO quantization is fully compatible with `torch.compile`, which allows for much faster inference speed.
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```diff
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# To get started, PytorchAO needs to be installed from the GitHub source and PyTorch Nightly.
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# Source and nightly installation is only required until next release.
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import torch
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from diffusers import AutoencoderKLCogVideoX, CogVideoXTransformer3DModel, CogVideoXPipeline
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from diffusers.utils import export_to_video
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+ from transformers import T5EncoderModel
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+ from torchao.quantization import quantize_, int8_weight_only, int8_dynamic_activation_int8_weight
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+ quantization = int8_weight_only
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+ text_encoder = T5EncoderModel.from_pretrained("THUDM/CogVideoX-5b", subfolder="text_encoder", torch_dtype=torch.bfloat16)
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+ quantize_(text_encoder, quantization())
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+ transformer = CogVideoXTransformer3DModel.from_pretrained("THUDM/CogVideoX-5b", subfolder="transformer", torch_dtype=torch.bfloat16)
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+ quantize_(transformer, quantization())
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+
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+ vae = AutoencoderKLCogVideoX.from_pretrained("THUDM/CogVideoX-5b", subfolder="vae", torch_dtype=torch.bfloat16)
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+ quantize_(vae, quantization())
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# Create pipeline and run inference
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pipe = CogVideoXPipeline.from_pretrained(
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"THUDM/CogVideoX-5b",
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+ text_encoder=text_encoder,
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+ transformer=transformer,
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+ vae=vae,
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torch_dtype=torch.bfloat16,
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)
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pipe.enable_model_cpu_offload()
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pipe.vae.enable_tiling()
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prompt = "A panda, dressed in a small, red jacket and a tiny hat, sits on a wooden stool in a serene bamboo forest. The panda's fluffy paws strum a miniature acoustic guitar, producing soft, melodic tunes. Nearby, a few other pandas gather, watching curiously and some clapping in rhythm. Sunlight filters through the tall bamboo, casting a gentle glow on the scene. The panda's face is expressive, showing concentration and joy as it plays. The background includes a small, flowing stream and vibrant green foliage, enhancing the peaceful and magical atmosphere of this unique musical performance."
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video = pipe(
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prompt=prompt,
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num_videos_per_prompt=1,
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num_inference_steps=50,
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num_frames=49,
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guidance_scale=6,
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generator=torch.Generator(device="cuda").manual_seed(42),
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).frames[0]
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export_to_video(video, "output.mp4", fps=8)
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```
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Additionally, the models can be serialized and stored in a quantized datatype to save disk space when using PytorchAO. Find examples and benchmarks at these links:
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- [torchao](https://gist.github.com/a-r-r-o-w/4d9732d17412888c885480c6521a9897)
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- [quanto](https://gist.github.com/a-r-r-o-w/31be62828b00a9292821b85c1017effa)
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## Explore the Model
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Welcome to our [github](https://github.com/THUDM/CogVideo), where you will find:
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