Applied Mathematics and Nonlinear Sciences
Journal license

Journal

Applied Mathematics and Nonlinear Sciences


Volume
& Issue

Volume 2, Issue 1


Published
on

June 22, 2017


Pages

201-212


DOI

Article

Parallel Solution of Hierarchical Symmetric Positive Definite Linear Systems

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Authors

José I. Aliaga Affiliation:
Dpto. de Ingeniería y Ciencia de Computadores, Universidad Jaume I Castellón, Castellón, Spain
, Rocío Carratalá-Sáez Affiliation:
Dpto. de Ingeniería y Ciencia de Computadores, Universidad Jaume I Castellón, Castellón, Spain
and Enrique S. Quintana-Ortí Affiliation:
Dpto. de Ingeniería y Ciencia de Computadores, Universidad Jaume I Castellón, Castellón, Spain


Abstract

We present a prototype task-parallel algorithm for the solution of hierarchical symmetric positive definite linear systems via the ℋ-Cholesky factorization that builds upon the parallel programming standards and associated runtimes for OpenMP and OmpSs. In contrast with previous efforts, our proposal decouples the numerical aspects of the linear algebra operation from the complexities associated with high performance computing. Our experiments make an exhaustive analysis of the efficiency attained by different parallelization approaches that exploit either task-parallelism or loop-parallelism via a runtime. Alternatively, we also evaluate a solution that leverages multi-threaded parallelism via the parallel implementation of the Basic Linear Algebra Subroutines (BLAS) in Intel MKL.


Keywords

Hierarchical matrices, hierarchical arithmetic, Cholesky factorization, high performance, multicore processors, 65F05, 68W10, 68M20


Citation

Aliaga, J. I., Carratalá-Sáez, R., & Quintana-Ortí, E. S. (2017). Parallel solution of hierarchical symmetric positive definite linear systems. Applied Mathematics and Nonlinear Sciences, 2(1), 201–212. https://doi.org/10.21042/AMNS.2017.1.00017

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