From knights corner to landing

A case study based on a hodgkin-huxley neuron simulator

Conference Paper (2017)
Author(s)

George Chatzikonstantis (National Technical University of Athens)

Diego Jiménez (Costa Rica National High Technology Center)

Esteban Meneses (Costa Rica National High Technology Center, Instituto Tecnologico de Costa Rica)

Christos Strydis (Erasmus MC)

Harry Sidiropoulos (National Technical University of Athens)

Dimitrios Soudris (National Technical University of Athens)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1007/978-3-319-67630-2_27 Final published version
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Publication Year
2017
Language
English
Affiliation
External organisation
Pages (from-to)
363-375
Publisher
Springer
ISBN (print)
978-3-319-67629-6
ISBN (electronic)
978-3-319-67630-2
Event
32nd International Conference on High Performance Computing, ISC High Performance 2017 (2017-06-18 - 2017-06-22), Frankfurt, Germany
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Abstract

Brain modeling has been presenting significant challenges to the world of high-performance computing (HPC) over the years. The field of computational neuroscience has been developing a demand for physiologically plausible neuron models, that feature increased complexity and thus, require greater computational power. We explore Intel’s newest generation of Xeon Phi computing platforms, named Knights Landing (KNL), as a way to match the need for processing power and as an upgrade over the previous generation of Xeon Phi models, the Knights Corner (KNC). Our neuron simulator of choice features a Hodgkin-Huxley-based (HH) model which has been ported on both generations of Xeon Phi platforms and aggressively draws on both platforms’ computational assets. The application uses the OpenMP interface for efficient parallelization and the Xeon Phi’s vectorization buffers for Single-Instruction Multiple Data (SIMD) processing. In this study we offer insight into the efficiency with which the application utilizes the assets of the two Xeon Phi generations and we evaluate the merits of utilizing the KNL over its predecessor. In our case, an out-of-the-box transition on Knights Landing, offers on average 2.4x speed up while consuming 48% less energy than KNC.