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Packaging HEP Heterogeneous Mini-apps for Portable Benchmarking and Facility Evaluation on Modern HPCs

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arxiv 2505.08933 v1 pith:FVQWL6FT submitted 2025-05-13 hep-ex cs.DC

classification hep-excs.DC
keywords mini-appsfacilityhighbenchmarkingenergyevaluationexperimentsfacilities
verification ladder T0 review T1 audit T2 compute T3 formal
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High Energy Physics (HEP) experiments are making increasing use of GPUs and GPU dominated High Performance Computer facilities. Both the software and hardware of these systems are rapidly evolving, creating challenges for experiments to make informed decisions as to where they wish to devote resources. In its first phase, the High Energy Physics Center for Computational Excellence (HEP-CCE) produced portable versions of a number of heterogeneous HEP mini-apps, such as \ptor, FastCaloSim, Patatrack and the WireCell Toolkit, that exercise a broad range of GPU characteristics, enabling cross platform and facility benchmarking and evaluation. However, these mini-apps still require a significant amount of manual intervention to deploy on a new facility. We present our work in developing turn-key deployments of these mini-apps, where by means of containerization and automated configuration and build techniques such as Spack, we are able to quickly test new hardware, software, environments and entire facilities with minimal user intervention, and then track performance metrics over time.

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  1. CelloAI: Leveraging Large Language Models for HPC Software Development in High Energy Physics

    cs.SE 2025-08 conditional novelty 6.0 of 10

    A locally hosted RAG-based coding assistant improves kernel retrieval and porting coverage for HEP codebases, though no tested LLM correctly ports the hardest kernels.

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