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Design and engineering of a simplified workflow execution for the MG5aMC event generator on GPUs and vector CPUs

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arxiv 2106.12631 v2 pith:LSV4WDKT submitted 2021-06-23 physics.comp-ph cs.SEhep-exhep-ph

classification physics.comp-phcs.SEhep-exhep-ph
keywords physicseventsoftwarecpusdescribedesignengineeringessential
verification ladder T0 review T1 audit T2 compute T3 formal
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Physics event generators are essential components of the data analysis software chain of high energy physics experiments, and important consumers of their CPU resources. Improving the software performance of these packages on modern hardware architectures, such as those deployed at HPC centers, is essential in view of the upcoming HL-LHC physics programme. In this paper, we describe an ongoing activity to reengineer the Madgraph5_aMC@NLO physics event generator, primarily to port it and allow its efficient execution on GPUs, but also to modernize it and optimize its performance on vector CPUs. We describe the motivation, engineering process and software architecture design of our developments, as well as the current challenges and future directions for this project. This paper is based on our submission to vCHEP2021 in March 2021,complemented with a few preliminary results that we presented during the conference. Further details and updated results will be given in later publications.

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  1. Data-parallel leading-order event generation in MadGraph5_aMC@NLO

    hep-ph 2025-07 conditional novelty 6.0 of 10

    CUDACPP gives MadGraph data-parallel helicity amplitudes, delivering linear SIMD CPU speed-ups and up to order-of-magnitude GPU speed-ups for high-multiplicity QCD event generation.

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