arXiv:1612.06556·v1·High Energy Physics — Lattice
A performance evaluation of CCS QCD Benchmark on the COMA (Intel(R) Xeon Phi, KNC) system
Taisuke Boku🇯🇵 · Ken-Ichi Ishikawa🇯🇵 · Yoshinobu Kuramashi🇯🇵 · Lawrence Meadows🇺🇸 · Michael D`Mello🇺🇸 · Maurice Troute🇺🇸 · Ravi Vemuri🇺🇸
Abstract
The most computationally demanding part of Lattice QCD simulations is solving quark propagators. Quark propagators are typically obtained with a linear equation solver utilizing HPC machines. The CCS QCD Benchmark is a benchmark program solving the Wilson-Clover quark propagator, and is developed at the Center for Computational Sciences (CCS), University of Tsukuba. We optimized the benchmark program for a \Intel \XeonPhi (Knights Corner, KNC) system named "COMA (PACS-IX)" at CCS Tsukuba under the Intel Parallel Computing Center program. A single precision BiCGStab solver with the overlapped Restricted Additive Schwarz (RAS) preconditioner was implemented using SIMD intrinsics, OpenMP and MPI in the offload mode. With the reverse-offloading technique, we could reduce the communication and offloading overheads. We observed a performance of GFlops sustained for the Wilson-Clover hopping matrix multiplication on the lattice sizes larger than on a sinlge card of the COMA system. A good weak scaling perofmace was observed on the local lattice sizes larger than .
Comments: 7 pages, 6 figures, talk presented at the 34th International Symposium on Lattice Field Theory, 24-30 July 2016, University of Southampton, UK