Hunyuan3D-1 / README.md
Djsmartberry's picture
Update README.md
1021fed verified
|
raw
history blame
7.91 kB
---
library_name: hunyuan3d-1.0
license: other
license_name: tencent-hunyuan-community
license_link: https://huggingface.co/tencent/Hunyuan3D-1/blob/main/LICENSE.txt
language:
- en
- zh
---
<!-- ## **Hunyuan3D-1.0** -->
<p align="center">
<img src="./assets/logo.png" height=200>
</p>
# Tencent Hunyuan3D-1.0: A Unified Framework for Text-to-3D and Image-to-3D Generation
[\[Code\]](https://github.com/tencent/Hunyuan3D-1)
[\[Huggingface\]](https://huggingface.co/tencent/Hunyuan3D-1)
[\[Report\]](https://arxiv.org/pdf/2411.02293)
## πŸ”₯πŸ”₯πŸ”₯ News!!
* Nov 5, 2024: πŸ’¬ We support demo running image_to_3d generation now. Please check the [script](#using-gradio) below.
* Nov 5, 2024: πŸ’¬ We support demo running text_to_3d generation now. Please check the [script](#using-gradio) below.
## πŸ“‘ Open-source Plan
- [x] Inference
- [x] Checkpoints
- [ ] Baking related
- [ ] Training
- [ ] ComfyUI
- [ ] Distillation Version
- [ ] TensorRT Version
## **Abstract**
<p align="center">
<img src="./assets/teaser.png" height=450>
</p>
While 3D generative models have greatly improved artists' workflows, the existing diffusion models for 3D generation suffer from slow generation and poor generalization. To address this issue, we propose a two-stage approach named Hunyuan3D-1.0 including a lite version and a standard version, that both support text- and image-conditioned generation.
In the first stage, we employ a multi-view diffusion model that efficiently generates multi-view RGB in approximately 4 seconds. These multi-view images capture rich details of the 3D asset from different viewpoints, relaxing the tasks from single-view to multi-view reconstruction. In the second stage, we introduce a feed-forward reconstruction model that rapidly and faithfully reconstructs the 3D asset given the generated multi-view images in approximately 7 seconds. The reconstruction network learns to handle noises and in-consistency introduced by the multi-view diffusion and leverages the available information from the condition image to efficiently recover the 3D structure.
Our framework involves the text-to-image model, i.e., Hunyuan-DiT, making it a unified framework to support both text- and image-conditioned 3D generation. Our standard version has 3x more parameters than our lite and other existing model. Our Hunyuan3D-1.0 achieves an impressive balance between speed and quality, significantly reducing generation time while maintaining the quality and diversity of the produced assets.
## πŸŽ‰ **Hunyuan3D-1 Architecture**
<p align="center">
<img src="./assets/overview_3.png" height=400>
</p>
## πŸ“ˆ Comparisons
We have evaluated Hunyuan3D-1.0 with other open-source 3d-generation methods, our Hunyuan3D-1.0 received the highest user preference across 5 metrics. Details in the picture on the lower left.
The lite model takes around 10 seconds to produce a 3D mesh from a single image on an NVIDIA A100 GPU, while the standard model takes roughly 25 seconds. The plot laid out in the lower right demonstrates that Hunyuan3D-1.0 achieves an optimal balance between quality and efficiency.
<p align="center">
<img src="./assets/radar.png" height=300>
<img src="./assets/runtime.png" height=300>
</p>
## Get Started
#### Begin by cloning the repository:
```shell
git clone https://github.com/tencent/Hunyuan3D-1
cd Hunyuan3D-1
```
#### Installation Guide for Linux
We provide an env_install.sh script file for setting up environment.
python3.9 and CUDA11.7+ (recommended)
```
conda create -n hunyuan3d-1-py39 python=3.9
conda activate hunyuan3d-1-py39
pip install torch==2.2.0 torchvision==0.17.0 --index-url https://download.pytorch.org/whl/cu118
bash env_install.sh
```
or python3.11 and CUDA12.1+ see [link](https://github.com/Tencent/Hunyuan3D-1/issues/9#issuecomment-2458695670)
```
conda create -n hunyuan3d-1-py311 python=3.11
conda activate hunyuan3d-1-py311
pip install torch torchvision xformers --index-url https://download.pytorch.org/whl/cu121
bash env_install.sh hi
```
#### Download Pretrained Models
The models are available at [https://huggingface.co/tencent/Hunyuan3D-1](https://huggingface.co/tencent/Hunyuan3D-1):
+ `Hunyuan3D-1/lite`, lite model for multi-view generation.
+ `Hunyuan3D-1/std`, standard model for multi-view generation.
+ `Hunyuan3D-1/svrm`, sparse-view reconstruction model.
To download the model, first install the huggingface-cli. (Detailed instructions are available [here](https://huggingface.co/docs/huggingface_hub/guides/cli).)
```shell
python3 -m pip install "huggingface_hub[cli]"
```
Then download the model using the following commands:
```shell
mkdir weights
huggingface-cli download tencent/Hunyuan3D-1 --local-dir ./weights
mkdir weights/hunyuanDiT
huggingface-cli download Tencent-Hunyuan/HunyuanDiT-v1.1-Diffusers-Distilled --local-dir ./weights/hunyuanDiT
```
#### Inference
For text to 3d generation, we supports bilingual Chinese and English, you can use the following command to inference.
```python
python3 main.py \
--text_prompt "a lovely rabbit" \
--save_folder ./outputs/test/ \
--max_faces_num 90000 \
--do_texture_mapping \
--do_render
```
For image to 3d generation, you can use the following command to inference.
```python
python3 main.py \
--image_prompt "/path/to/your/image" \
--save_folder ./outputs/test/ \
--max_faces_num 90000 \
--do_texture_mapping \
--do_render
```
We list some more useful configurations for easy usage:
| Argument | Default | Description |
|:------------------:|:---------:|:---------------------------------------------------:|
|`--text_prompt` | None |The text prompt for 3D generation |
|`--image_prompt` | None |The image prompt for 3D generation |
|`--t2i_seed` | 0 |The random seed for generating images |
|`--t2i_steps` | 25 |The number of steps for sampling of text to image |
|`--gen_seed` | 0 |The random seed for generating 3d generation |
|`--gen_steps` | 50 |The number of steps for sampling of 3d generation |
|`--max_faces_numm` | 90000 |The limit number of faces of 3d mesh |
|`--save_memory` | False |text2image will move to cpu automatically|
|`--do_texture_mapping` | False |Change vertex shadding to texture shading |
|`--do_render` | False |render gif |
We have also prepared scripts with different configurations for reference
```bash
bash scripts/text_to_3d_demo.sh
bash scripts/text_to_3d_fast_demo.sh
bash scripts/image_to_3d_demo.sh
bash scripts/image_to_3d_fast_demo.sh
```
This example requires ~40GB VRAM to run.
#### Using Gradio
We have prepared two versions of multi-view generation, std and lite.
For better results, the std version of the running script is as follows
```shell
python3 app.py
```
For faster speed, you can use the lite version by adding the --use_lite parameter.
```shell
python3 app.py --use_lite
```
Then the demo can be accessed through http://0.0.0.0:8080. It should be noted that the 0.0.0.0 here needs to be X.X.X.X with your server IP.
## Camera Parameters
Output views are a fixed set of camera poses:
+ Azimuth (relative to input view): `+0, +60, +120, +180, +240, +300`.
## Citation
If you found this repository helpful, please cite our report:
```bibtex
@misc{yang2024tencent,
title={Tencent Hunyuan3D-1.0: A Unified Framework for Text-to-3D and Image-to-3D Generation},
author={Xianghui Yang and Huiwen Shi and Bowen Zhang and Fan Yang and Jiacheng Wang and Hongxu Zhao and Xinhai Liu and Xinzhou Wang and Qingxiang Lin and Jiaao Yu and Lifu Wang and Zhuo Chen and Sicong Liu and Yuhong Liu and Yong Yang and Di Wang and Jie Jiang and Chunchao Guo},
year={2024},
eprint={2411.02293},
archivePrefix={arXiv},
primaryClass={cs.CV}
}
```