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Erschienen in: Mathematical Models and Computer Simulations 6/2019

01.11.2019

Performance of Elbrus-8C Processor in Supercomputer CFD Simulations

verfasst von: A. V. Gorobets, M. I. Neiman-Zade, S. K. Okunev, A. A. Kalyakin, S. A. Soukov

Erschienen in: Mathematical Models and Computer Simulations | Ausgabe 6/2019

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Abstract

This work is devoted to evaluating the performance of a multicore CPU Elbrus-8C processor in supercomputer computational fluid dynamics (CFD) applications. Parallel simulation codes based on highly accurate methods on unstructured meshes for modeling the turbulent flows are considered. The main features of the Elbrus architecture are described, and the approaches for adaptating and optimizing the computing software are presented. The performance is investigated for both entire algorithms and their operations separately. The results of comparative testing with different multicore Intel and AMD CPUs are presented.

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Literatur
1.
Zurück zum Zitat J. Dongarra, “The LINPACK Benchmark: an explanation ICS 1987: Supercomputing,” Lect. Notes Comput. Sci. 297, 456–474 (1988).CrossRef J. Dongarra, “The LINPACK Benchmark: an explanation ICS 1987: Supercomputing,” Lect. Notes Comput. Sci. 297, 456–474 (1988).CrossRef
2.
Zurück zum Zitat J. Dongarra, M. A. Heroux, and P. Luszczek, “HPCG benchmark: a new metric for ranking high performance computing systems,” Technical Report (Electr. Eng. Comput. Sci. Dep., Knoxville, TN, 2015). http://www.hpcg-benchmark.org/. J. Dongarra, M. A. Heroux, and P. Luszczek, “HPCG benchmark: a new metric for ranking high performance computing systems,” Technical Report (Electr. Eng. Comput. Sci. Dep., Knoxville, TN, 2015). http://​www.​hpcg-benchmark.​org/​.​
3.
Zurück zum Zitat D. Bailey, E. Barszcz, J. T. Barton, D. S. Browning, R. L. Carter, D. Dagum, R. A. Fatoohi, P. Frederickson, T. A. Lasinski, R. Schreiber, H. Simon, V. Venkatakrishnan, and K. Weeratunga, “The NAS parallel benchmarks,” Int. J. High Perform. Comput. Appl. 5, 63–73 (1991). D. Bailey, E. Barszcz, J. T. Barton, D. S. Browning, R. L. Carter, D. Dagum, R. A. Fatoohi, P. Frederickson, T. A. Lasinski, R. Schreiber, H. Simon, V. Venkatakrishnan, and K. Weeratunga, “The NAS parallel benchmarks,” Int. J. High Perform. Comput. Appl. 5, 63–73 (1991).
4.
Zurück zum Zitat E. O. Tyutlyayeva, S. S. Konyukhov, A. A. Moskovskiy, and I. O. Odintsov, “Assessing the potential use of the Elbrus platform for high-performance computing,” in Proceedings of the Conference on Supercomputer Days in Russia,2016 (Mosk. Gos. Univ., Moscow, 2016), pp. 373-385. E. O. Tyutlyayeva, S. S. Konyukhov, A. A. Moskovskiy, and I. O. Odintsov, “Assessing the potential use of the Elbrus platform for high-performance computing,” in Proceedings of the Conference on Supercomputer Days in Russia,2016 (Mosk. Gos. Univ., Moscow, 2016), pp. 373-385.
5.
Zurück zum Zitat P. B. Bogdanov and O. Yu. Sudareva, “The KOMDIV microprocessors performance on a number of typical computational problems,” Inform. Tekhnol. Vychisl. Sist. 4, 104–111 (2017). P. B. Bogdanov and O. Yu. Sudareva, “The KOMDIV microprocessors performance on a number of typical computational problems,” Inform. Tekhnol. Vychisl. Sist. 4, 104–111 (2017).
6.
Zurück zum Zitat A. V. Gorobets, “Parallel technologies for solving CFD problems using high-accuracy algorithms,” Comput. Math. Math. Phys. 55, 638–649 (2015).MathSciNetCrossRef A. V. Gorobets, “Parallel technologies for solving CFD problems using high-accuracy algorithms,” Comput. Math. Math. Phys. 55, 638–649 (2015).MathSciNetCrossRef
7.
Zurück zum Zitat I. V. Abalakin, P. A. Bakhvalov, A. V. Gorobets, A. P. Duben’, and T. K. Kozubskaya, “Parallel research code NOISEtte for large-scale CFD and CAA simulations,” Vychisl. Metody Programmir. 13, 110–125 (2012). I. V. Abalakin, P. A. Bakhvalov, A. V. Gorobets, A. P. Duben’, and T. K. Kozubskaya, “Parallel research code NOISEtte for large-scale CFD and CAA simulations,” Vychisl. Metody Programmir. 13, 110–125 (2012).
8.
Zurück zum Zitat P. A. Bakhvalov and T. K. Kozubskaya, “Construction of edge-based 1-exact schemes for solving the Euler equations on hybrid unstructured meshes,” Comput. Math. Math. Phys. 57, 680–697 (2017).MathSciNetCrossRef P. A. Bakhvalov and T. K. Kozubskaya, “Construction of edge-based 1-exact schemes for solving the Euler equations on hybrid unstructured meshes,” Comput. Math. Math. Phys. 57, 680–697 (2017).MathSciNetCrossRef
9.
Zurück zum Zitat H. A. van der Vorst, “A fast and smoothly converging variant of Bi-CG for the solution of nonsymmetric linear systems,” SIAM J. Sci. Stat. Comput. 13, 631–644 (1992).MathSciNetCrossRef H. A. van der Vorst, “A fast and smoothly converging variant of Bi-CG for the solution of nonsymmetric linear systems,” SIAM J. Sci. Stat. Comput. 13, 631–644 (1992).MathSciNetCrossRef
10.
Zurück zum Zitat A. Gorobets, “Parallel algorithm of the NOISEtte code for CFD and CAA simulations,” Lobachevskii J. Math. 39, 524–532 (2018).MathSciNetCrossRef A. Gorobets, “Parallel algorithm of the NOISEtte code for CFD and CAA simulations,” Lobachevskii J. Math. 39, 524–532 (2018).MathSciNetCrossRef
13.
Zurück zum Zitat A. S. Kozhin, N. Y. Polyakov, D. M. Alfonso, R. V. Demenko, P. A. Klishin, E. S. Kozhin, M. V. Slesarev, E. V. Smirnova, D. A. Smirnov, P. A. Smolyanov, V. O. Kostenko, F. A. Gruzdov, V. V. Tikhorskiy, and Y. K. Sakhin, “The 5th generation 28nm 8-core VLIW 'Elbrus-8C' processor architecture,” in Proceedins of the 2016 International Conference on Engineering and Telecommunication EnT-2016, Moscow,2016, pp. 85–89. A. S. Kozhin, N. Y. Polyakov, D. M. Alfonso, R. V. Demenko, P. A. Klishin, E. S. Kozhin, M. V. Slesarev, E. V. Smirnova, D. A. Smirnov, P. A. Smolyanov, V. O. Kostenko, F. A. Gruzdov, V. V. Tikhorskiy, and Y. K. Sakhin, “The 5th generation 28nm 8-core VLIW 'Elbrus-8C' processor architecture,” in Proceedins of the 2016 International Conference on Engineering and Telecommunication EnT-2016, Moscow,2016, pp. 85–89.
14.
Zurück zum Zitat D. M. Al’fonso, R. V. Demenko, A. S. Kozhin, E. S. Kozhin, R. E. Kolychev, V. O. Kostenko, N. Yu. Polyakov, E. V. Smirnova, D. A. Smirnov, P. A. Smol’yanov, and V. V. Tikhorskiy, “Eight-core 'El'brus-8C' processor microarchitecture,” Vopr. Radioelektron., Ser. EVT, No. 3, 6–13 (2016). D. M. Al’fonso, R. V. Demenko, A. S. Kozhin, E. S. Kozhin, R. E. Kolychev, V. O. Kostenko, N. Yu. Polyakov, E. V. Smirnova, D. A. Smirnov, P. A. Smol’yanov, and V. V. Tikhorskiy, “Eight-core 'El'brus-8C' processor microarchitecture,” Vopr. Radioelektron., Ser. EVT, No. 3, 6–13 (2016).
15.
Zurück zum Zitat A. S. Kozhin, M. I. Neyman-zade, and V. V. Tikhorskiy, “Memory subsystem impact on the 8-core 'El'brus-8C' processor performance,” Vopr. Radioelektron., Ser. EVT, No. 3, 13–21 (2017). A. S. Kozhin, M. I. Neyman-zade, and V. V. Tikhorskiy, “Memory subsystem impact on the 8-core 'El'brus-8C' processor performance,” Vopr. Radioelektron., Ser. EVT, No. 3, 13–21 (2017).
16.
Zurück zum Zitat P. L. Roe, “Approximate Riemann solvers, parameter vectors and difference schemes,” J. Comput. Phys. 43, 357–372 (1981).MathSciNetCrossRef P. L. Roe, “Approximate Riemann solvers, parameter vectors and difference schemes,” J. Comput. Phys. 43, 357–372 (1981).MathSciNetCrossRef
17.
Zurück zum Zitat A. V. Gorobets, M. I. Neiman-zade, S. K. Okunev, A. A. Kaliakin, and S. A. Sukov, “Performance of Elbrus-8C CPU in supercomputer CFD applications,” KIAM Preprint Keldysha, No. 152 (Keldysh Inst. Appl. Math., Moscow, 2018). https://doi.org/10.20948/prepr-2018-152 A. V. Gorobets, M. I. Neiman-zade, S. K. Okunev, A. A. Kaliakin, and S. A. Sukov, “Performance of Elbrus-8C CPU in supercomputer CFD applications,” KIAM Preprint Keldysha, No. 152 (Keldysh Inst. Appl. Math., Moscow, 2018). https://​doi.​org/​10.​20948/​prepr-2018-152
Metadaten
Titel
Performance of Elbrus-8C Processor in Supercomputer CFD Simulations
verfasst von
A. V. Gorobets
M. I. Neiman-Zade
S. K. Okunev
A. A. Kalyakin
S. A. Soukov
Publikationsdatum
01.11.2019
Verlag
Pleiades Publishing
Erschienen in
Mathematical Models and Computer Simulations / Ausgabe 6/2019
Print ISSN: 2070-0482
Elektronische ISSN: 2070-0490
DOI
https://doi.org/10.1134/S2070048219060073

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