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Training PyTorch models with differential privacy

Home Page: https://opacus.ai

License: Apache License 2.0

Shell 0.47% JavaScript 1.65% Python 39.94% CSS 2.39% Makefile 0.04% Batchfile 0.05% Jupyter Notebook 55.47%

opacus's Introduction

Opacus


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Opacus is a library that enables training PyTorch models with differential privacy. It supports training with minimal code changes required on the client, has little impact on training performance, and allows the client to online track the privacy budget expended at any given moment.

Target audience

This code release is aimed at two target audiences:

  1. ML practitioners will find this to be a gentle introduction to training a model with differential privacy as it requires minimal code changes.
  2. Differential Privacy researchers will find this easy to experiment and tinker with, allowing them to focus on what matters.

Installation

The latest release of Opacus can be installed via pip:

pip install opacus

OR, alternatively, via conda:

conda install -c conda-forge opacus

You can also install directly from the source for the latest features (along with its quirks and potentially occasional bugs):

git clone https://github.com/pytorch/opacus.git
cd opacus
pip install -e .

Getting started

To train your model with differential privacy, all you need to do is to instantiate a PrivacyEngine and pass your model, data_loader, and optimizer to the engine's make_private() method to obtain their private counterparts.

# define your components as usual
model = Net()
optimizer = SGD(model.parameters(), lr=0.05)
data_loader = torch.utils.data.DataLoader(dataset, batch_size=1024)

# enter PrivacyEngine
privacy_engine = PrivacyEngine()
model, optimizer, data_loader = privacy_engine.make_private(
    module=model,
    optimizer=optimizer,
    data_loader=data_loader,
    noise_multiplier=1.1,
    max_grad_norm=1.0,
)
# Now it's business as usual

The MNIST example shows an end-to-end run using Opacus. The examples folder contains more such examples.

Migrating to 1.0

Opacus 1.0 introduced many improvements to the library, but also some breaking changes. If you've been using Opacus 0.x and want to update to the latest release, please use this Migration Guide

Learn more

Interactive tutorials

We've built a series of IPython-based tutorials as a gentle introduction to training models with privacy and using various Opacus features.

Technical report and citation

The technical report introducing Opacus, presenting its design principles, mathematical foundations, and benchmarks can be found here.

Consider citing the report if you use Opacus in your papers, as follows:

@article{opacus,
  title={Opacus: {U}ser-Friendly Differential Privacy Library in {PyTorch}},
  author={Ashkan Yousefpour and Igor Shilov and Alexandre Sablayrolles and Davide Testuggine and Karthik Prasad and Mani Malek and John Nguyen and Sayan Ghosh and Akash Bharadwaj and Jessica Zhao and Graham Cormode and Ilya Mironov},
  journal={arXiv preprint arXiv:2109.12298},
  year={2021}
}

Blogposts and talks

If you want to learn more about DP-SGD and related topics, check out our series of blogposts and talks:

FAQ

Check out the FAQ page for answers to some of the most frequently asked questions about differential privacy and Opacus.

Contributing

See the CONTRIBUTING file for how to help out. Do also check out the README files inside the repo to learn how the code is organized.

License

This code is released under Apache 2.0, as found in the LICENSE file.

opacus's People

Contributors

karthikprasad avatar ashkan-software avatar darktex avatar anonymani avatar sayanghosh avatar johnlnguyen avatar dependabot[bot] avatar jessijzhao avatar akashb-fb avatar ilyamironov avatar touqir14 avatar zycalice avatar birdx0810 avatar lariffle avatar stanislavglebik avatar tholop avatar ftramer avatar facebook-github-bot avatar chinannyang avatar psolikov avatar romovpa avatar pierrestock avatar r-barnes avatar walterddr avatar royrin avatar sagerkudrick avatar sarthakpati avatar solosneros avatar tcbegley avatar xiaobingsuper avatar

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