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import os |
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import shlex |
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import spaces |
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import subprocess |
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def install_cuda_toolkit(): |
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CUDA_TOOLKIT_URL = "https://developer.download.nvidia.com/compute/cuda/12.4.0/local_installers/cuda_12.4.0_550.54.14_linux.run" |
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CUDA_TOOLKIT_FILE = "/tmp/%s" % os.path.basename(CUDA_TOOLKIT_URL) |
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subprocess.call(["wget", "-q", CUDA_TOOLKIT_URL, "-O", CUDA_TOOLKIT_FILE]) |
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subprocess.call(["chmod", "+x", CUDA_TOOLKIT_FILE]) |
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subprocess.call([CUDA_TOOLKIT_FILE, "--silent", "--toolkit"]) |
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os.environ["CUDA_HOME"] = "/usr/local/cuda" |
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os.environ["PATH"] = "%s/bin:%s" % (os.environ["CUDA_HOME"], os.environ["PATH"]) |
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os.environ["LD_LIBRARY_PATH"] = "%s/lib:%s" % ( |
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os.environ["CUDA_HOME"], |
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"" if "LD_LIBRARY_PATH" not in os.environ else os.environ["LD_LIBRARY_PATH"], |
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) |
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os.environ["TORCH_CUDA_ARCH_LIST"] = "8.0;8.6" |
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install_cuda_toolkit() |
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os.system("pip list | grep torch") |
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os.system('nvcc -V') |
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print("cd /home/user/app/step1x3d_texture/differentiable_renderer/ && python setup.py install") |
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os.system("cd /home/user/app/step1x3d_texture/differentiable_renderer/ && python setup.py install") |
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subprocess.run(shlex.split("pip install custom_rasterizer-0.1-cp310-cp310-linux_x86_64.whl"), check=True) |
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import time |
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import uuid |
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import torch |
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import trimesh |
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import argparse |
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import numpy as np |
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import gradio as gr |
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from step1x3d_geometry.models.pipelines.pipeline import Step1X3DGeometryPipeline |
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from step1x3d_texture.pipelines.step1x_3d_texture_synthesis_pipeline import ( |
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Step1X3DTexturePipeline, |
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) |
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from step1x3d_geometry.models.pipelines.pipeline_utils import reduce_face, remove_degenerate_face |
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parser = argparse.ArgumentParser() |
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parser.add_argument( |
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"--geometry_model", type=str, default="Step1X-3D-Geometry-Label-1300m" |
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) |
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parser.add_argument( |
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"--texture_model", type=str, default="Step1X-3D-Texture" |
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) |
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parser.add_argument("--cache_dir", type=str, default="cache") |
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args = parser.parse_args() |
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os.makedirs(args.cache_dir, exist_ok=True) |
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geometry_model = Step1X3DGeometryPipeline.from_pretrained( |
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"stepfun-ai/Step1X-3D", subfolder=args.geometry_model |
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).to("cuda") |
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texture_model = Step1X3DTexturePipeline.from_pretrained("stepfun-ai/Step1X-3D", subfolder=args.texture_model) |
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@spaces.GPU(duration=240) |
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def generate_func( |
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input_image_path, guidance_scale, inference_steps, max_facenum, symmetry, edge_type |
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): |
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if "Label" in args.geometry_model: |
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symmetry_values = ["x", "asymmetry"] |
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out = geometry_model( |
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input_image_path, |
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label={"symmetry": symmetry_values[int(symmetry)], "edge_type": edge_type}, |
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guidance_scale=float(guidance_scale), |
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octree_resolution=384, |
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max_facenum=int(max_facenum), |
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num_inference_steps=int(inference_steps), |
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) |
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else: |
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out = geometry_model( |
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input_image_path, |
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guidance_scale=float(guidance_scale), |
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num_inference_steps=int(inference_steps), |
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max_facenum=int(max_facenum), |
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) |
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save_name = str(uuid.uuid4()) |
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print(save_name) |
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geometry_save_path = f"{args.cache_dir}/{save_name}.glb" |
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geometry_mesh = out.mesh[0] |
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geometry_mesh.export(geometry_save_path) |
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geometry_mesh = remove_degenerate_face(geometry_mesh) |
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geometry_mesh = reduce_face(geometry_mesh) |
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textured_mesh = texture_model(input_image_path, geometry_mesh) |
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textured_save_path = f"{args.cache_dir}/{save_name}-textured.glb" |
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textured_mesh.export(textured_save_path) |
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torch.cuda.empty_cache() |
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print("Generate finish") |
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return geometry_save_path, textured_save_path |
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with gr.Blocks(title="Step1X-3D demo") as demo: |
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gr.Markdown("# Step1X-3D") |
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with gr.Row(): |
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with gr.Column(scale=2): |
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input_image = gr.Image(label="Image", type="filepath") |
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guidance_scale = gr.Number(label="Guidance Scale", value="7.5") |
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inference_steps = gr.Slider( |
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label="Inferece Steps", minimum=1, maximum=100, value=50 |
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) |
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max_facenum = gr.Number(label="Max Face Num", value="400000") |
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symmetry = gr.Radio( |
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choices=["symmetry", "asymmetry"], |
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label="Symmetry Type", |
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value="symmetry", |
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type="index", |
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) |
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edge_type = gr.Radio( |
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choices=["sharp", "normal", "smooth"], |
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label="Edge Type", |
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value="sharp", |
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type="value", |
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) |
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btn = gr.Button("Start") |
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with gr.Column(scale=4): |
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textured_preview = gr.Model3D(label="Textured", height=380) |
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geometry_preview = gr.Model3D(label="Geometry", height=380) |
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with gr.Column(scale=1): |
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gr.Examples( |
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examples=[ |
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["examples/images/000.png"], |
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["examples/images/001.png"], |
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["examples/images/004.png"], |
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["examples/images/008.png"], |
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["examples/images/028.png"], |
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["examples/images/032.png"], |
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["examples/images/061.png"], |
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["examples/images/107.png"], |
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], |
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inputs=[input_image], |
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cache_examples=False, |
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) |
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btn.click( |
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generate_func, |
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inputs=[ |
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input_image, |
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guidance_scale, |
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inference_steps, |
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max_facenum, |
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symmetry, |
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edge_type, |
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], |
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outputs=[geometry_preview, textured_preview], |
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) |
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demo.launch(ssr_mode=False) |
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