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Enabling particle applications for exascale computing platforms

Enabling particle applications for exascale computing platforms

来源:Arxiv_logoArxiv
英文摘要

The Exascale Computing Project (ECP) is invested in co-design to assure that key applications are ready for exascale computing. Within ECP, the Co-design Center for Particle Applications (CoPA) is addressing challenges faced by particle-based applications across four sub-motifs: short-range particle-particle interactions (e.g., those which often dominate molecular dynamics (MD) and smoothed particle hydrodynamics (SPH) methods), long-range particle-particle interactions (e.g., electrostatic MD and gravitational N-body), particle-in-cell (PIC) methods, and linear-scaling electronic structure and quantum molecular dynamics (QMD) algorithms. Our crosscutting co-designed technologies fall into two categories: proxy applications (or apps) and libraries. Proxy apps are vehicles used to evaluate the viability of incorporating various types of algorithms, data structures, and architecture-specific optimizations and the associated trade-offs; examples include ExaMiniMD, CabanaMD, CabanaPIC, and ExaSP2. Libraries are modular instantiations that multiple applications can utilize or be built upon; CoPA has developed the Cabana particle library, PROGRESS/BML libraries for QMD, and the SWFFT and fftMPI parallel FFT libraries. Success is measured by identifiable lessons learned that are translated either directly into parent production application codes or into libraries, with demonstrated performance and/or productivity improvement. The libraries and their use in CoPA's ECP application partner codes are also addressed.

Susan M Mniszewski、Daniel Osei-Kuffuor、Amil Y Sharma、James Belak、Stuart R Slattery、Salman Habib、Lee Ricketson、Steven J Plimpton、Choongseok Chang、Jean-Luc Fattebert、Damien Lebrun-Grandie、Stephane Ethier、Christian FA Negre、Adrian Pope、Adetokunbo A Adedoyin、Stan G Moore、Shane Fogerty、Guangye Chen、Michael E Wall、Aaron Scheinberg、Robert F Bird、Christoph Junghans、Jamaludin Mohd-Yusof、Samuel Temple Reeve

10.1177/10943420211022829

计算技术、计算机技术物理学力学

Susan M Mniszewski,Daniel Osei-Kuffuor,Amil Y Sharma,James Belak,Stuart R Slattery,Salman Habib,Lee Ricketson,Steven J Plimpton,Choongseok Chang,Jean-Luc Fattebert,Damien Lebrun-Grandie,Stephane Ethier,Christian FA Negre,Adrian Pope,Adetokunbo A Adedoyin,Stan G Moore,Shane Fogerty,Guangye Chen,Michael E Wall,Aaron Scheinberg,Robert F Bird,Christoph Junghans,Jamaludin Mohd-Yusof,Samuel Temple Reeve.Enabling particle applications for exascale computing platforms[EB/OL].(2021-09-19)[2025-05-21].https://arxiv.org/abs/2109.09056.点此复制

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