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import spaces |
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import argparse |
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import os |
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import json |
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import torch |
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import sys |
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import time |
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import importlib |
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import numpy as np |
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from omegaconf import OmegaConf |
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from huggingface_hub import hf_hub_download |
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from collections import OrderedDict |
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import trimesh |
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import gradio as gr |
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from typing import Any |
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proj_dir = os.path.dirname(os.path.dirname(os.path.abspath(__file__))) |
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sys.path.append(os.path.join(proj_dir)) |
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import tempfile |
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from apps.utils import * |
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_TITLE = '''CraftsMan: High-fidelity Mesh Generation with 3D Native Generation and Interactive Geometry Refiner''' |
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_DESCRIPTION = ''' |
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<div> |
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Select or upload a image, then just click 'Generate'. |
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<br> |
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By mimicking the artist/craftsman modeling workflow, we propose CraftsMan (aka ε εΏ) that uses 3D Latent Set Diffusion Model that directly generate coarse meshes, |
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then a multi-view normal enhanced image generation model is used to refine the mesh. |
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We provide the coarse 3D diffusion part here. |
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<br> |
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If you found CraftsMan is helpful, please help to β the <a href='https://github.com/wyysf-98/CraftsMan/' target='_blank'>Github Repo</a>. Thanks! |
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<a style="display:inline-block; margin-left: .5em" href='https://github.com/wyysf-98/CraftsMan/'><img src='https://img.shields.io/github/stars/wyysf-98/CraftsMan?style=social' /></a> |
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<br> |
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*If you have your own multi-view images, you can directly upload it. |
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</div> |
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''' |
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_CITE_ = r""" |
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--- |
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π **Citation** |
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If you find our work useful for your research or applications, please cite using this bibtex: |
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```bibtex |
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@article{li2024craftsman, |
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author = {Weiyu Li and Jiarui Liu and Rui Chen and Yixun Liang and Xuelin Chen and Ping Tan and Xiaoxiao Long}, |
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title = {CraftsMan: High-fidelity Mesh Generation with 3D Native Generation and Interactive Geometry Refiner}, |
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journal = {arXiv preprint arXiv:2405.14979}, |
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year = {2024}, |
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} |
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``` |
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π€ **Acknowledgements** |
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We use <a href='https://github.com/wjakob/instant-meshes' target='_blank'>Instant Meshes</a> to remesh the generated mesh to a lower face count, thanks to the authors for the great work. |
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π **License** |
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CraftsMan is under [AGPL-3.0](https://www.gnu.org/licenses/agpl-3.0.en.html), so any downstream solution and products (including cloud services) that include CraftsMan code or a trained model (both pretrained or custom trained) inside it should be open-sourced to comply with the AGPL conditions. If you have any questions about the usage of CraftsMan, please contact us first. |
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π§ **Contact** |
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If you have any questions, feel free to open a discussion or contact us at <b>[email protected]</b>. |
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""" |
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from apps.third_party.CRM.pipelines import TwoStagePipeline |
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from apps.third_party.LGM.pipeline_mvdream import MVDreamPipeline |
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model = None |
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cached_dir = None |
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stage1_config = OmegaConf.load(f"{parent_dir}/apps/third_party/CRM/configs/nf7_v3_SNR_rd_size_stroke.yaml").config |
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stage1_sampler_config = stage1_config.sampler |
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stage1_model_config = stage1_config.models |
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stage1_model_config.resume = hf_hub_download(repo_id="Zhengyi/CRM", filename="pixel-diffusion.pth", repo_type="model") |
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stage1_model_config.config = f"{parent_dir}/apps/third_party/CRM/" + stage1_model_config.config |
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crm_pipeline = None |
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sys.path.append(f"apps/third_party/LGM") |
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imgaedream_pipeline = None |
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@spaces.GPU |
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def gen_mvimg( |
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mvimg_model, image, seed, guidance_scale, step, text, neg_text, elevation, |
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): |
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if seed == 0: |
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seed = np.random.randint(1, 65535) |
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if mvimg_model == "CRM": |
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global crm_pipeline |
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crm_pipeline.set_seed(seed) |
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mv_imgs = crm_pipeline( |
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image, |
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scale=guidance_scale, |
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step=step |
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)["stage1_images"] |
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return mv_imgs[5], mv_imgs[3], mv_imgs[2], mv_imgs[0] |
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elif mvimg_model == "ImageDream": |
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global imagedream_pipeline, generator |
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image = np.array(image).astype(np.float32) / 255.0 |
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image = image[..., :3] * image[..., 3:4] + (1 - image[..., 3:4]) |
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mv_imgs = imagedream_pipeline( |
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text, |
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image, |
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negative_prompt=neg_text, |
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guidance_scale=guidance_scale, |
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num_inference_steps=step, |
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elevation=elevation, |
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) |
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return mv_imgs[1], mv_imgs[2], mv_imgs[3], mv_imgs[0] |
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@spaces.GPU |
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def image2mesh(view_front: np.ndarray, |
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view_right: np.ndarray, |
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view_back: np.ndarray, |
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view_left: np.ndarray, |
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more: bool = False, |
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scheluder_name: str ="DDIMScheduler", |
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guidance_scale: int = 7.5, |
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seed: int = 4, |
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octree_depth: int = 7): |
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sample_inputs = { |
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"mvimages": [[ |
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Image.fromarray(view_front), |
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Image.fromarray(view_right), |
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Image.fromarray(view_back), |
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Image.fromarray(view_left) |
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]] |
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} |
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global model |
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latents = model.sample( |
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sample_inputs, |
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sample_times=1, |
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guidance_scale=guidance_scale, |
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return_intermediates=False, |
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seed=seed |
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)[0] |
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box_v = 1.1 |
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mesh_outputs, _ = model.shape_model.extract_geometry( |
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latents, |
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bounds=[-box_v, -box_v, -box_v, box_v, box_v, box_v], |
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octree_depth=octree_depth |
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) |
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assert len(mesh_outputs) == 1, "Only support single mesh output for gradio demo" |
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mesh = trimesh.Trimesh(mesh_outputs[0][0], mesh_outputs[0][1]) |
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filepath = tempfile.NamedTemporaryFile(suffix=f".obj", delete=False).name |
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mesh.export(filepath, include_normals=True) |
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if 'Remesh' in more: |
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remeshed_filepath = tempfile.NamedTemporaryFile(suffix=f"_remeshed.obj", delete=False).name |
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print("Remeshing with Instant Meshes...") |
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target_face_count = 2000 |
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command = f"{proj_dir}/apps/third_party/InstantMeshes {filepath} -f {target_face_count} -o {remeshed_filepath}" |
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os.system(command) |
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filepath = remeshed_filepath |
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return filepath |
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if __name__=="__main__": |
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parser = argparse.ArgumentParser() |
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parser.add_argument("--cached_dir", type=str, default="./gradio_cached_dir") |
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parser.add_argument("--device", type=int, default=0) |
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args = parser.parse_args() |
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cached_dir = args.cached_dir |
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os.makedirs(args.cached_dir, exist_ok=True) |
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device = torch.device(f"cuda:{args.device}" if torch.cuda.is_available() else "cpu") |
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print(f"using device: {device}") |
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background_choice = OrderedDict({ |
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"Alpha as Mask": "Alpha as Mask", |
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"Auto Remove Background": "Auto Remove Background", |
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"Original Image": "Original Image", |
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}) |
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mvimg_model_config_list = ["CRM", "ImageDream"] |
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crm_pipeline = TwoStagePipeline( |
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stage1_model_config, |
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stage1_sampler_config, |
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device=device, |
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dtype=torch.float16 |
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) |
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imagedream_pipeline = MVDreamPipeline.from_pretrained( |
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"ashawkey/imagedream-ipmv-diffusers", |
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torch_dtype=torch.float16, |
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trust_remote_code=True, |
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) |
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ckpt_path = hf_hub_download(repo_id="wyysf/CraftsMan", filename="image-to-shape-diffusion/clip-mvrgb-modln-l256-e64-ne8-nd16-nl6-aligned-vae/model-300k.ckpt", repo_type="model") |
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config_path = hf_hub_download(repo_id="wyysf/CraftsMan", filename="image-to-shape-diffusion/clip-mvrgb-modln-l256-e64-ne8-nd16-nl6-aligned-vae/config.yaml", repo_type="model") |
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scheluder_dict = OrderedDict({ |
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"DDIMScheduler": 'diffusers.schedulers.DDIMScheduler', |
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}) |
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custom_theme = gr.themes.Soft(primary_hue="blue").set( |
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button_secondary_background_fill="*neutral_100", |
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button_secondary_background_fill_hover="*neutral_200") |
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custom_css = '''#disp_image { |
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text-align: center; /* Horizontally center the content */ |
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}''' |
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with gr.Blocks(title=_TITLE, theme=custom_theme, css=custom_css) as demo: |
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with gr.Row(): |
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with gr.Column(scale=1): |
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gr.Markdown('# ' + _TITLE) |
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gr.Markdown(_DESCRIPTION) |
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with gr.Row(): |
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with gr.Column(scale=2): |
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with gr.Column(): |
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with gr.Row(): |
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image_input = gr.Image( |
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label="Image Input", |
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image_mode="RGBA", |
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sources="upload", |
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type="pil", |
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) |
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run_btn = gr.Button('Generate', variant='primary', interactive=True) |
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with gr.Row(): |
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gr.Markdown('''Try a different <b>seed and MV Model</b> for better results. Good Luck :)''') |
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with gr.Row(): |
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seed = gr.Number(0, label='Seed', show_label=True) |
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mvimg_model = gr.Dropdown(value="CRM", label="MV Image Model", choices=list(mvimg_model_config_list)) |
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more = gr.CheckboxGroup(["Remesh", "Symmetry(TBD)"], label="More", show_label=False) |
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with gr.Row(): |
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text = gr.Textbox(label="Prompt (Opt.)", info="only works for ImageDream") |
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with gr.Accordion('Advanced options', open=False): |
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neg_text = gr.Textbox(label="Negative Prompt", value='ugly, blurry, pixelated obscure, unnatural colors, poor lighting, dull, unclear, cropped, lowres, low quality, artifacts, duplicate') |
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elevation = gr.Slider(label="elevation", minimum=-90, maximum=90, step=1, value=0) |
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with gr.Row(): |
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gr.Examples( |
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examples=[os.path.join("./apps/examples", i) for i in os.listdir("./apps/examples")], |
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inputs=[image_input], |
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examples_per_page=8 |
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) |
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with gr.Column(scale=4): |
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with gr.Row(): |
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output_model_obj = gr.Model3D( |
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label="Output Model (OBJ Format)", |
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camera_position=(90.0, 90.0, 3.5), |
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interactive=False, |
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) |
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with gr.Row(): |
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gr.Markdown('''*please note that the model is fliped due to the gradio viewer, please download the obj file and you will get the correct orientation.''') |
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with gr.Row(): |
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view_front = gr.Image(label="Front", interactive=True, show_label=True) |
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view_right = gr.Image(label="Right", interactive=True, show_label=True) |
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view_back = gr.Image(label="Back", interactive=True, show_label=True) |
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view_left = gr.Image(label="Left", interactive=True, show_label=True) |
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with gr.Accordion('Advanced options', open=False): |
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with gr.Row(equal_height=True): |
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run_mv_btn = gr.Button('Only Generate 2D', interactive=True) |
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run_3d_btn = gr.Button('Only Generate 3D', interactive=True) |
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with gr.Accordion('Advanced options (2D)', open=False): |
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with gr.Row(): |
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foreground_ratio = gr.Slider( |
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label="Foreground Ratio", |
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minimum=0.5, |
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maximum=1.0, |
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value=1.0, |
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step=0.05, |
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) |
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with gr.Row(): |
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background_choice = gr.Dropdown(label="Backgroud Choice", value="Auto Remove Background",choices=list(background_choice.keys())) |
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rmbg_type = gr.Dropdown(label="Backgroud Remove Type", value="rembg",choices=['sam', "rembg"]) |
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backgroud_color = gr.ColorPicker(label="Background Color", value="#FFFFFF", interactive=True) |
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with gr.Row(): |
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mvimg_guidance_scale = gr.Number(value=3.0, minimum=1, maximum=10, label="2D Guidance Scale") |
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mvimg_steps = gr.Number(value=30, minimum=20, maximum=100, label="2D Sample Steps") |
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with gr.Accordion('Advanced options (3D)', open=False): |
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with gr.Row(): |
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guidance_scale = gr.Number(label="3D Guidance Scale", value=5.0, minimum=1.0, maximum=10.0) |
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steps = gr.Number(value=50, minimum=20, maximum=100, label="3D Sample Steps") |
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with gr.Row(): |
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scheduler = gr.Dropdown(label="scheluder", value="DDIMScheduler",choices=list(scheluder_dict.keys())) |
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octree_depth = gr.Slider(label="Octree Depth", value=7, minimum=4, maximum=8, step=1) |
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gr.Markdown(_CITE_) |
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outputs = [output_model_obj] |
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rmbg = RMBG(device) |
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model = load_model(ckpt_path, config_path, device) |
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run_btn.click(fn=check_input_image, inputs=[image_input] |
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).success( |
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fn=rmbg.run, |
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inputs=[rmbg_type, image_input, foreground_ratio, background_choice, backgroud_color], |
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outputs=[image_input] |
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).success( |
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fn=gen_mvimg, |
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inputs=[mvimg_model, image_input, seed, mvimg_guidance_scale, mvimg_steps, text, neg_text, elevation], |
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outputs=[view_front, view_right, view_back, view_left] |
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).success( |
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fn=image2mesh, |
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inputs=[view_front, view_right, view_back, view_left, more, scheduler, guidance_scale, seed, octree_depth], |
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outputs=outputs, |
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api_name="generate_img2obj") |
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run_mv_btn.click(fn=gen_mvimg, |
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inputs=[mvimg_model, image_input, seed, mvimg_guidance_scale, mvimg_steps, text, neg_text, elevation], |
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outputs=[view_front, view_right, view_back, view_left] |
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) |
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run_3d_btn.click(fn=image2mesh, |
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inputs=[view_front, view_right, view_back, view_left, more, scheduler, guidance_scale, seed, octree_depth], |
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outputs=outputs, |
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api_name="generate_img2obj") |
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demo.queue().launch(share=True, allowed_paths=[args.cached_dir]) |