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A newer version of the Streamlit SDK is available:
1.41.1
title: DALL路E mini
emoji: 馃
colorFrom: yellow
colorTo: green
sdk: streamlit
app_file: app/streamlit/app.py
pinned: true
DALL路E Mini
Generate images from a text prompt
Our logo was generated with DALL路E mini using the prompt "logo of an armchair in the shape of an avocado".
You can create your own pictures with the demo.
How does it work?
Refer to our report.
Inference Pipeline
To generate sample predictions and understand the inference pipeline step by step, refer to tools/inference/inference_pipeline.ipynb
.
Contributing
Join the community on the DALLE-Pytorch Discord. Any contribution is welcome, from reporting issues to proposing fixes/improvements or testing the model with cool prompts!
Development
Dependencies Installation
For inference only, use pip install git+https://github.com/borisdayma/dalle-mini.git
.
For development, clone the repo and use pip install -e ".[dev]"
.
Before making a PR, check style with make style
.
Image Encoder
We use a VQGAN from taming-transformers, which can also be fine-tuned.
Use patil-suraj/vqgan-jax if you want to convert a checkpoint to JAX (does not support Gumbel).
Any image encoder that turns an image into a fixed sequence of tokens can be used.
Training of DALL路E mini
Use tools/train/train.py
.
You can also adjust the sweep configuration file if you need to perform a hyperparameter search.
FAQ
Where to find the latest models?
Trained models are on 馃 Model Hub:
- VQGAN-f16-16384 for encoding/decoding images
- DALL路E mini for generating images from a text prompt
Where does the logo come from?
The "armchair in the shape of an avocado" was used by OpenAI when releasing DALL路E to illustrate the model's capabilities. Having successful predictions on this prompt represents a big milestone to us.
Acknowledgements
- 馃 Hugging Face for organizing the FLAX/JAX community week
- Google TPU Research Cloud (TRC) program for providing computing resources
- Weights & Biases for providing the infrastructure for experiment tracking and model management
Authors & Contributors
DALL路E mini was initially developed by:
- Boris Dayma
- Suraj Patil
- Pedro Cuenca
- Khalid Saifullah
- Tanishq Abraham
- Ph煤c L锚 Kh岷痗
- Luke Melas
- Ritobrata Ghosh
Many thanks to the people who helped make it better:
- the DALLE-Pytorch and EleutherAI communities for testing and exchanging cool ideas
- Rohan Anil for adding Distributed Shampoo optimizer
- Phil Wang has provided a lot of cool implementations of transformer variants and gives interesting insights with x-transformers
- Katherine Crowson for super conditioning
Citing DALL路E mini
If you find DALL路E mini useful in your research or wish to refer, please use the following BibTeX entry.
@misc{Dayma_DALL路E_Mini_2021,
author = {Dayma, Boris and Patil, Suraj and Cuenca, Pedro and Saifullah, Khalid and Abraham, Tanishq and L锚 Kh岷痗, Ph煤c and Melas, Luke and Ghosh, Ritobrata},
doi = {10.5281/zenodo.5146400},
month = {7},
title = {DALL路E Mini},
url = {https://github.com/borisdayma/dalle-mini},
year = {2021}
}
References
Original DALL路E from "Zero-Shot Text-to-Image Generation" with image quantization from "Learning Transferable Visual Models From Natural Language Supervision".
Image encoder from "Taming Transformers for High-Resolution Image Synthesis".
Sequence to sequence model based on "BART: Denoising Sequence-to-Sequence Pre-training for Natural Language Generation, Translation, and Comprehension" with implementation of a few variants:
- "GLU Variants Improve Transformer"
- "Deepnet: Scaling Transformers to 1,000 Layers"
- "NormFormer: Improved Transformer Pretraining with Extra Normalization"
- "Swin Transformer: Hierarchical Vision Transformer using Shifted Windows"
- "CogView: Mastering Text-to-Image Generation via Transformers"
- "Root Mean Square Layer Normalization"
- "Sinkformers: Transformers with Doubly Stochastic Attention"
Main optimizer (Distributed Shampoo) from "Scalable Second Order Optimization for Deep Learning".
Citations
@misc{
title={Zero-Shot Text-to-Image Generation},
author={Aditya Ramesh and Mikhail Pavlov and Gabriel Goh and Scott Gray and Chelsea Voss and Alec Radford and Mark Chen and Ilya Sutskever},
year={2021},
eprint={2102.12092},
archivePrefix={arXiv},
primaryClass={cs.CV}
}
@misc{
title={Learning Transferable Visual Models From Natural Language Supervision},
author={Alec Radford and Jong Wook Kim and Chris Hallacy and Aditya Ramesh and Gabriel Goh and Sandhini Agarwal and Girish Sastry and Amanda Askell and Pamela Mishkin and Jack Clark and Gretchen Krueger and Ilya Sutskever},
year={2021},
eprint={2103.00020},
archivePrefix={arXiv},
primaryClass={cs.CV}
}
@misc{
title={Taming Transformers for High-Resolution Image Synthesis},
author={Patrick Esser and Robin Rombach and Bj枚rn Ommer},
year={2021},
eprint={2012.09841},
archivePrefix={arXiv},
primaryClass={cs.CV}
}
@misc{
title={BART: Denoising Sequence-to-Sequence Pre-training for Natural Language Generation, Translation, and Comprehension},
author={Mike Lewis and Yinhan Liu and Naman Goyal and Marjan Ghazvininejad and Abdelrahman Mohamed and Omer Levy and Ves Stoyanov and Luke Zettlemoyer},
year={2019},
eprint={1910.13461},
archivePrefix={arXiv},
primaryClass={cs.CL}
}
@misc{
title={Scalable Second Order Optimization for Deep Learning},
author={Rohan Anil and Vineet Gupta and Tomer Koren and Kevin Regan and Yoram Singer},
year={2021},
eprint={2002.09018},
archivePrefix={arXiv},
primaryClass={cs.LG}
}
@misc{
title={GLU Variants Improve Transformer},
author={Noam Shazeer},
year={2020},
url={https://arxiv.org/abs/2002.05202}
}
@misc{
title={DeepNet: Scaling transformers to 1,000 layers},
author={Wang, Hongyu and Ma, Shuming and Dong, Li and Huang, Shaohan and Zhang, Dongdong and Wei, Furu},
year={2022},
eprint={2203.00555}
archivePrefix={arXiv},
primaryClass={cs.LG}
}
@misc{
title={NormFormer: Improved Transformer Pretraining with Extra Normalization},
author={Sam Shleifer and Jason Weston and Myle Ott},
year={2021},
eprint={2110.09456},
archivePrefix={arXiv},
primaryClass={cs.CL}
}
@inproceedings{
title={Swin Transformer V2: Scaling Up Capacity and Resolution},
author={Ze Liu and Han Hu and Yutong Lin and Zhuliang Yao and Zhenda Xie and Yixuan Wei and Jia Ning and Yue Cao and Zheng Zhang and Li Dong and Furu Wei and Baining Guo},
booktitle={International Conference on Computer Vision and Pattern Recognition (CVPR)},
year={2022}
}
@misc{
title = {CogView: Mastering Text-to-Image Generation via Transformers},
author = {Ming Ding and Zhuoyi Yang and Wenyi Hong and Wendi Zheng and Chang Zhou and Da Yin and Junyang Lin and Xu Zou and Zhou Shao and Hongxia Yang and Jie Tang},
year = {2021},
eprint = {2105.13290},
archivePrefix = {arXiv},
primaryClass = {cs.CV}
}
@misc{
title = {Root Mean Square Layer Normalization},
author = {Biao Zhang and Rico Sennrich},
year = {2019},
eprint = {1910.07467},
archivePrefix = {arXiv},
primaryClass = {cs.LG}
}
@misc{
title = {Sinkformers: Transformers with Doubly Stochastic Attention},
url = {https://arxiv.org/abs/2110.11773},
author = {Sander, Michael E. and Ablin, Pierre and Blondel, Mathieu and Peyr茅, Gabriel},
publisher = {arXiv},
year = {2021},
}
@misc{
title = {Smooth activations and reproducibility in deep networks},
url = {https://arxiv.org/abs/2010.09931},
author = {Shamir, Gil I. and Lin, Dong and Coviello, Lorenzo},
publisher = {arXiv},
year = {2020},
}