Spaces:
Running
on
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Running
on
Zero
Roman Bachmann
commited on
Commit
•
57876e1
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Parent(s):
f742b9c
Initial commit
Browse files- README.md +5 -5
- app.py +153 -0
- examples/example_0.png +0 -0
- examples/example_1.png +0 -0
- examples/example_2.png +0 -0
- examples/example_3.png +0 -0
- examples/example_4.png +0 -0
- examples/example_5.png +0 -0
- requirements.txt +2 -0
- text_tokenizer_4m_wordpiece_30k.json +0 -0
README.md
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---
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title: 4M
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emoji:
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sdk: gradio
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sdk_version: 4.36.1
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app_file: app.py
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license: apache-2.0
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---
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Check out the configuration reference at https://huggingface.co/docs/hub/spaces-config-reference
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---
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title: 4M Demo
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emoji: ⚡
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colorFrom: purple
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colorTo: red
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sdk: gradio
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sdk_version: 4.36.1
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app_file: app.py
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license: apache-2.0
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---
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Check out the configuration reference at https://huggingface.co/docs/hub/spaces-config-reference
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app.py
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import os
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try:
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# Try to install detectron2 from source. Needed for semseg plotting functionality.
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os.system("python -m pip install 'git+https://github.com/facebookresearch/detectron2.git'")
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except Exception as e:
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print('detectron2 cannot be installed. Falling back to simple semseg visualization.')
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print(e)
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import torch
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# We recommend running this demo on an A100 GPU
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if torch.cuda.is_available():
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device = "cuda"
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gpu_type = torch.cuda.get_device_name(torch.cuda.current_device())
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power_device = f"{gpu_type} GPU"
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torch.cuda.max_memory_allocated(device=device)
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else:
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device = "cpu"
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power_device = "CPU"
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os.system("pip uninstall -y xformers") # Only use xformers on GPU
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import spaces
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import gradio as gr
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import random
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import numpy as np
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from torchvision.transforms.functional import center_crop
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from fourm.demo_4M_sampler import Demo4MSampler
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from fourm.data.modality_transforms import RGBTransform
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# The flag below controls whether to allow TF32 on matmul. This flag defaults to False in PyTorch 1.12 and later.
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torch.backends.cuda.matmul.allow_tf32 = True
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# The flag below controls whether to allow TF32 on cuDNN. This flag defaults to True.
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torch.backends.cudnn.allow_tf32 = True
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MAX_SEED = np.iinfo(np.int32).max
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FM_MODEL_ID = 'EPFL-VILAB/4M-21_B'
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MODEL_NAME = FM_MODEL_ID.split('/')[1].replace('_', ' ')
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# Human poses visualization is disabled, since it needs SMPL weights. To enable human pose prediction and rendering:
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# 1) Install via `pip install timm yacs smplx pyrender pyopengl==3.1.4`
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# You may need to follow the pyrender install instructions: https://pyrender.readthedocs.io/en/latest/install/index.html
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# 2) Download SMPL data from https://smpl.is.tue.mpg.de/. See https://github.com/shubham-goel/4D-Humans/ for an example
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# 3) Copy the required SMPL files (smpl_mean_params.npz, SMPL_to_J19.pkl, smpl/SMPL_NEUTRAL.pkl) to fourm/utils/hmr2_utils/data .
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sampler = Demo4MSampler(
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fm=FM_MODEL_ID,
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fm_sr=None,
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tok_human_poses=None,
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tok_text='./text_tokenizer_4m_wordpiece_30k.json',
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).to(device)
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def img_from_path(img_path: str):
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rgb_transform = RGBTransform(imagenet_default_mean_and_std=True)
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img_pil = rgb_transform.load(img_path)
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img_pil = rgb_transform.preprocess(img_pil)
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img_pil = center_crop(img_pil, (min(img_pil.size), min(img_pil.size))).resize((224,224))
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img = rgb_transform.postprocess(img_pil).unsqueeze(0)
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return img
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@spaces.GPU
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def infer(img_path, seed=0, randomize_seed=False, target_modalities=None, top_p=0.8, top_k=0.0):
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if randomize_seed:
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seed = None
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img = img_from_path(img_path).to(device)
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preds = sampler({'rgb@224': img}, seed=seed, target_modalities=target_modalities, top_p=top_p, top_k=top_k)
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sampler.plot_modalities(preds, ncols_max=4, use_fixed_plotting_order=True, save_path='./output.png')
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return './output.png'
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examples = [
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'examples/example_0.png', 'examples/example_1.png', 'examples/example_2.png',
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'examples/example_3.png', 'examples/example_4.png', 'examples/example_5.png',
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]
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css="""
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#col-container {
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margin: 0 auto;
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max-width: 1500px;
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}
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#col-input-container {
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margin: 0 auto;
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max-width: 400px;
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}
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#run-button {
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margin: 0 auto;
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}
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"""
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with gr.Blocks(css=css, theme=gr.themes.Base()) as demo:
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with gr.Column(elem_id="col-container"):
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gr.Markdown(f"""
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# 4M: Massively Multimodal Masked Modeling
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""")
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with gr.Row():
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with gr.Column(elem_id="col-input-container"):
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gr.Markdown(f"""
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*A framework for training any-to-any multimodal foundation models. Scalable. Open-sourced. Across tens of modalities and tasks.*
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[`Website`](https://4m.epfl.ch) | [`GitHub`](https://github.com/apple/ml-4m) <br>[`4M Paper (NeurIPS'23)`](https://arxiv.org/abs/2312.06647) | [`4M-21 Paper (arXiv'24)`](https://arxiv.org/abs/2406.09406)
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This demo predicts all modalities from a given RGB input, using [{FM_MODEL_ID}](https://huggingface.co/{FM_MODEL_ID}), running on *{power_device}*.
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For more generative examples, and to enable human pose visualizations, please see our [GitHub repo](https://github.com/apple/ml-4m).
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(Disclaimer: The demo is a work in progress. We will switch it to using 4M-21 XL when running on GPU. Until then, this space runs on CPU and takes several minutes for inference.)
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""")
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img_path = gr.Image(label='RGB input image', type='filepath')
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run_button = gr.Button(f"Predict with {MODEL_NAME}", scale=0, elem_id="run-button")
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with gr.Accordion("Advanced Settings", open=False):
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target_modalities = gr.CheckboxGroup(
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choices=[
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('CLIP-B/16', 'tok_clip@224'), ('DINOv2-B/14', 'tok_dinov2@224'), ('ImageBind-H/14', 'tok_imagebind@224'),
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('Depth', 'tok_depth@224'), ('Surface normals', 'tok_normal@224'), ('Semantic segmentation', 'tok_semseg@224'),
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('Canny edges', 'tok_canny_edge@224'), ('SAM edges', 'tok_sam_edge@224'), ('Caption', 'caption'),
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('Bounding boxes', 'det'), ('SAM instances', 'sam_instance'), ('Color palette', 'color_palette'),
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('Metadata', 'metadata'),
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],
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value=[
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'tok_clip@224', 'tok_dinov2@224', 'tok_imagebind@224',
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'tok_depth@224', 'tok_normal@224', 'tok_semseg@224',
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'tok_canny_edge@224', 'tok_sam_edge@224', 'caption',
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'det', 'sam_instance', 'color_palette', 'metadata'
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],
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label="Target modalities",
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info='Choose which modalities are predicted (in this order).'
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)
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seed = gr.Slider(label="Seed", minimum=0, maximum=MAX_SEED, step=1, value=0)
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randomize_seed = gr.Checkbox(label="Randomize seed", value=False)
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top_p = gr.Slider(label="Top-p", minimum=0.0, maximum=1.0, step=0.01, value=0.8)
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top_k = gr.Slider(label="Top-k", minimum=0.0, maximum=1.0, step=0.01, value=0.0)
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result = gr.Image(label="Predictions", show_label=False)
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gr.Examples(
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examples = examples,
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fn = infer,
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inputs = [img_path],
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outputs = [result],
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cache_examples='lazy',
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)
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run_button.click(
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fn = infer,
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inputs = [img_path, seed, randomize_seed, target_modalities, top_p, top_k],
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outputs = [result]
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)
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demo.queue(max_size=10).launch()
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examples/example_0.png
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examples/example_1.png
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examples/example_2.png
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examples/example_3.png
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examples/example_4.png
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examples/example_5.png
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requirements.txt
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fourm @ git+https://github.com/apple/ml-4m@4573d6e
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xformers>=0.0.24
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text_tokenizer_4m_wordpiece_30k.json
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