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C++ implementation of Lie Groups using Eigen.

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Sophus

2d and 3d Lie Groups for Computer Vision and Robotics

This is a c++ implementation of Lie groups commonly used for 2d and 3d geometric problems (i.e. for Computer Vision or Robotics applications). Among others, this package includes the special orthogonal groups SO(2) and SO(3) to present rotations in 2d and 3d as well as the special Euclidean group SE(2) and SE(3) to represent isometries also known as rigid body transformations (i.e. rotations and translations) in 2d and 3d.

Status

Sophus (aka Sophus 1) is in maintenance mode. As of June 2024, there is no plane to add new larger features and future PRs will likely be limited to bug fixes, small improvements and toolchain updates.

However, next incarnations of Sophus are under development:

  • sophus2 is the next c++ iteration of Sophus and is a complete rewrite. In addition to the Lie groups, it includes a more geometric concepts such unit vector, splines, image classes, camera models and more.

    It is currently hosted as part of the farm-ng-core repository and has likely only a few community users. While the code itself is in a good shape, there are no good build instructions yet. Hopefully, this will change in the near future.

  • sophus-rs is a Rust version of Sophus. Similar to sophus2, it includes a more geometric concepts such unit vector, splines, image classes, camera models and more. Also it includes an early and experimental version of non-linear least squares optimization library (similar to Ceres, g2o, etc.).

    sophus-rs has likely only a few community users so far, but should be easy to build and experiment with - of course being written in Rust.

    https://github.com/sophus-vision/sophus-rs

    https://crates.io/crates/sophus

How to build Sophus from source

Sophus requires a C++17 compiler (though older versions build with C++14).

Sophus is tested on Linux and macOS. It also worked on Windows in the past, however there is currently no CI for Windows, so it might require some smaller patches to build on Windows.

There are no comprehensive build instructions but inspecting the install scripts as well as the main.yml file should give you a good idea how to build the required dependencies.

Installing Sophus through vcpkg

You can build and install Sophus using vcpkg dependency manager::

git clone https://github.com/Microsoft/vcpkg.git
cd vcpkg
./bootstrap-vcpkg.sh
./vcpkg integrate install
./vcpkg install sophus

The Sophus port in vcpkg is kept up to date by Microsoft team members and community contributors. If the version is out of date, please create an issue or pull request on the vcpkg repository.

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C++ implementation of Lie Groups using Eigen.

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