Breaking Down the Parallel Performance of GROMACS, a High-Performance Molecular Dynamics Software

08/29/2022
by   Måns I. Andersson, et al.
0

GROMACS is one of the most widely used HPC software packages using the Molecular Dynamics (MD) simulation technique. In this work, we quantify GROMACS parallel performance using different configurations, HPC systems, and FFT libraries (FFTW, Intel MKL FFT, and FFT PACK). We break down the cost of each GROMACS computational phase and identify non-scalable stages, such as MPI communication during the 3D FFT computation when using a large number of processes. We show that the Particle-Mesh Ewald phase and the 3D FFT calculation significantly impact the GROMACS performance. Finally, we discuss performance opportunities with a particular interest in developing GROMACS for the FFT calculations.

READ FULL TEXT
research
02/12/2020

CROFT: A scalable three-dimensional parallel Fast Fourier Transform (FFT) implementation for High Performance Clusters

The FFT of three-dimensional (3D) input data is an important computation...
research
06/04/2019

Raising the Performance of the Tinker-HP Molecular Modeling Package on Intel's HPC Architectures: a Living Review [Article v1.0]

This living paper reviews the present High Performance Computing (HPC) c...
research
06/28/2019

Parallel Performance of Molecular Dynamics Trajectory Analysis

The performance of biomolecular molecular dynamics (MD) simulations has ...
research
06/04/2019

Raising the Performance of the Tinker-HP Molecular Modeling Package [Article v1.0]

This living paper reviews the present High Performance Computing (HPC) c...
research
07/20/2023

Massively parallel quantum chemistry: PFAS on over 1 million cloud vCPUs

Accurate solutions to the electronic Schrödinger equation can provide va...
research
01/23/2018

Task-parallel Analysis of Molecular Dynamics Trajectories

Different frameworks for implementing parallel data analytics applicatio...
research
01/08/2018

Acceleration of Mean Square Distance Calculations with Floating Close Structure in Metadynamics Simulations

Molecular dynamics simulates the movements of atoms. Due to its high cos...

Please sign up or login with your details

Forgot password? Click here to reset