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Applications of Many-Core Technologies to On-line Event Reconstruction in High Energy Physics Experiments

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arxiv 1312.0917 v2 pith:2BUPHHN5 submitted 2013-12-03 physics.ins-det cs.DChep-ex

Applications of Many-Core Technologies to On-line Event Reconstruction in High Energy Physics Experiments

classification physics.ins-det cs.DChep-ex
keywords many-corearchitecturesdevicesdifferentperformanceadditionalgorithmapplied
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Interest in many-core architectures applied to real time selections is growing in High Energy Physics (HEP) experiments. In this paper we describe performance measurements of many-core devices when applied to a typical HEP online task: the selection of events based on the trajectories of charged particles. We use as benchmark a scaled-up version of the algorithm used at CDF experiment at Tevatron for online track reconstruction - the SVT algorithm - as a realistic test-case for low-latency trigger systems using new computing architectures for LHC experiment. We examine the complexity/performance trade-off in porting existing serial algorithms to many-core devices. We measure performance of different architectures (Intel Xeon Phi and AMD GPUs, in addition to NVidia GPUs) and different software environments (OpenCL, in addition to NVidia CUDA). Measurements of both data processing and data transfer latency are shown, considering different I/O strategies to/from the many-core devices.

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