English

MD-Bench: A generic proxy-app toolbox for state-of-the-art molecular dynamics algorithms

Computational Physics 2022-07-28 v1 Performance

Abstract

Proxy-apps, or mini-apps, are simple self-contained benchmark codes with performance-relevant kernels extracted from real applications. Initially used to facilitate software-hardware co-design, they are a crucial ingredient for serious performance engineering, especially when dealing with large-scale production codes. MD-Bench is a new proxy-app in the area of classical short-range molecular dynamics. In contrast to existing proxy-apps in MD (e.g. miniMD and coMD) it does not resemble a single application code, but implements state-of-the art algorithms from multiple applications (currently LAMMPS and GROMACS). The MD-Bench source code is understandable, extensible and suited for teaching, benchmarking and researching MD algorithms. Primary design goals are transparency and simplicity, a developer is able to tinker with the source code down to the assembly level. This paper introduces MD-Bench, explains its design and structure, covers implemented optimization variants, and illustrates its usage on three examples.

Keywords

Cite

@article{arxiv.2207.13094,
  title  = {MD-Bench: A generic proxy-app toolbox for state-of-the-art molecular dynamics algorithms},
  author = {Rafael Ravedutti Lucio Machado and Jan Eitzinger and Harald Köstler and Gerhard Wellein},
  journal= {arXiv preprint arXiv:2207.13094},
  year   = {2022}
}

Comments

12 Pages, 2 figures, submitted to PPAM22

R2 v1 2026-06-25T01:15:03.588Z