processor

Intel Core i7-5820K testing with a ASUS X99-A/USB 3.1 and NVIDIA Quadro K620 2048MB on SUSE LINUX 42.1 via the Phoronix Test Suite.

Compare your own system(s) to this result file with the Phoronix Test Suite by running the command: phoronix-test-suite benchmark 1601191-GA-PROCESSOR86
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scimark2 sparse matrix
January 18 2016
 
povray
January 18 2016
 
fftw
January 18 2016
 
ffte
January 18 2016
 
fhourstones
January 18 2016
 
parboil:openmp-gridding
January 18 2016
 
parboil:opencl-gridding
January 18 2016
 
parboil:opencl-gridding2
January 19 2016
 
parboil:opencl-bfs
January 19 2016
 
fttw-no-ht
January 19 2016
 
ffte-no-ht
January 19 2016
 
simark:sprse ma
January 19 2016
 
openmp+mpi gridding
January 19 2016
 
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processorProcessorMotherboardChipsetMemoryDiskGraphicsAudioNetworkOSKernelDesktopDisplay ServerDisplay DriverOpenGLCompilerFile-SystemScreen Resolutionscimark2 sparse matrixpovrayfftwfftefhourstonesparboil:openmp-griddingparboil:opencl-griddingparboil:opencl-gridding2parboil:opencl-bfsfttw-no-htffte-no-htsimark:sprse maopenmp+mpi griddingIntel Core i7-5820K @ 3.60GHz (12 Cores)ASUS X99-A/USB 3.1Intel Xeon E7 v3/Xeon32768MB1000GB Western Digital WD10EARS-00Y + 2000GB Hitachi HDS72302NVIDIA Quadro K620 2048MB (1058/900MHz)Realtek ALC1150Intel ConnectionSUSE LINUX 42.14.4.0-1-default (x86_64)KDE Frameworks 5X Server 1.17.2NVIDIA 358.164.4.0GCC 4.8.5xfs2560x1440GCC 4.8.5 + Clang 3.7.0 (SVN 246586) + LLVM 3.7.0Intel Core i7-5820K @ 3.60GHz (6 Cores)OpenBenchmarking.orgCompiler Details- scimark2 sparse matrix, povray, fftw, fhourstones, parboil:openmp-gridding, parboil:opencl-gridding, parboil:opencl-gridding2, parboil:opencl-bfs, fttw-no-ht, simark:sprse ma, openmp+mpi gridding: --build=x86_64-suse-linux --disable-libgcj --disable-libmudflap --disable-libssp --disable-libstdcxx-pch --disable-plugin --enable-__cxa_atexit --enable-checking=release --enable-languages=c,c++,objc,fortran,obj-c++,java,ada --enable-libstdcxx-allocator=new --enable-linux-futex --enable-ssp --enable-version-specific-runtime-libs --host=x86_64-suse-linux --mandir=/usr/share/man --with-arch-32=i586 --with-slibdir=/lib64 --with-tune=generic --without-system-libunwind Processor Details- Scaling Governor: intel_pstate powersaveOpenCL Details- parboil:openmp-gridding, parboil:opencl-gridding, parboil:opencl-gridding2, parboil:opencl-bfs, openmp+mpi gridding: GPU Compute Cores: 384System Details- parboil:openmp-gridding, parboil:opencl-gridding, parboil:opencl-gridding2, parboil:opencl-bfs, openmp+mpi gridding: GPU Compute Cores: 384.

processorscimark2: Sparse Matrix Multiplypovray: Total Timefftw: Stock - 2D FFT Size 256ffte: N=64, 1D Complex FFT Routinefhourstones: Complex Connect-4 Solvingparboil: OpenMP MRI Griddingparboil: OpenCL BFSscimark2 sparse matrixpovrayfftwfftefhourstonesparboil:openmp-griddingparboil:opencl-griddingparboil:opencl-gridding2parboil:opencl-bfsfttw-no-htffte-no-htsimark:sprse maopenmp+mpi gridding2429.9996.005209.025252.4712254.5760.821.375362.405381.312432.1727.34OpenBenchmarking.org

SciMark

This test runs the ANSI C version of SciMark 2.0, which is a benchmark for scientific and numerical computing developed by programmers at the National Institute of Standards and Technology. This test is made up of Fast Foruier Transform, Jacobi Successive Over-relaxation, Monte Carlo, Sparse Matrix Multiply, and dense LU matrix factorization benchmarks. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Sparse Matrix Multiplyscimark2 sparse matrixsimark:sprse ma5001000150020002500SE +/- 13.96, N = 4SE +/- 41.37, N = 82429.992432.17
OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Sparse Matrix Multiplyscimark2 sparse matrixsimark:sprse ma400800120016002000Min: 2396.32 / Avg: 2429.99 / Max: 2462.69Min: 2178.02 / Avg: 2432.17 / Max: 2502.01

POV-Ray

OpenBenchmarking.orgSeconds, Fewer Is BetterPOV-Ray 3.7.0Total Timepovray20406080100SE +/- 0.11, N = 396.001. (CXX) g++ options: -pipe -O3 -ffast-math -march=native -pthread -lSDL -lpthread -lXpm -lSM -lICE -lX11 -lIlmImf -lImath -lHalf -lIex -lIexMath -lIlmThread -ltiff -ljpeg -lpng -lz -lrt -lm -lboost_thread -lboost_system

FFTW

FFTW is a C subroutine library for computing the discrete Fourier transform (DFT) in one or more dimensions. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMflops, More Is BetterFFTW 3.3.4Build: Stock - Size: 2D FFT Size 256fftwfttw-no-ht11002200330044005500SE +/- 27.72, N = 5SE +/- 3.45, N = 55209.025362.401. (CC) gcc options: -std=gnu99 -O3 -fomit-frame-pointer -mtune=native -malign-double -fstrict-aliasing -fno-schedule-insns -ffast-math -lm
OpenBenchmarking.orgMflops, More Is BetterFFTW 3.3.4Build: Stock - Size: 2D FFT Size 256fftwfttw-no-ht9001800270036004500Min: 5122.8 / Avg: 5209.02 / Max: 5263.3Min: 5355.3 / Avg: 5362.4 / Max: 5375.61. (CC) gcc options: -std=gnu99 -O3 -fomit-frame-pointer -mtune=native -malign-double -fstrict-aliasing -fno-schedule-insns -ffast-math -lm

FFTE

FFTE is a package by Daisuke Takahashi to compute Discrete Fourier Transforms of 1-, 2- and 3- dimensional sequences of length (2^p)*(3^q)*(5^r). Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMFLOPS, More Is BetterFFTE 5.0Test: N=64, 1D Complex FFT Routineffteffte-no-ht12002400360048006000SE +/- 33.14, N = 3SE +/- 9.48, N = 35252.475381.311. (F9X) gfortran options: -O3 -fomit-frame-pointer -fopenmp -pthread -lmpi_usempi -lmpi_mpifh -lmpi
OpenBenchmarking.orgMFLOPS, More Is BetterFFTE 5.0Test: N=64, 1D Complex FFT Routineffteffte-no-ht9001800270036004500Min: 5188.39 / Avg: 5252.47 / Max: 5299.18Min: 5362.46 / Avg: 5381.31 / Max: 5392.561. (F9X) gfortran options: -O3 -fomit-frame-pointer -fopenmp -pthread -lmpi_usempi -lmpi_mpifh -lmpi

Fhourstones

OpenBenchmarking.orgKpos / sec, More Is BetterFhourstones 3.1Complex Connect-4 Solvingfhourstones3K6K9K12K15KSE +/- 72.98, N = 312254.571. (CC) gcc options: -O3

Parboil

The Parboil Benchmarks from the IMPACT Research Group at University of Illinois are a set of throughput computing applications for looking at computing architecture and compilers. Parboil test-cases support OpenMP, OpenCL, and CUDA multi-processing environments. However, at this time the test profile is just making use of the OpenMP and OpenCL test workloads. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterParboil 2.5Test: OpenMP MRI Griddingparboil:openmp-griddingopenmp+mpi gridding1428425670SE +/- 0.18, N = 3SE +/- 0.54, N = 360.8227.341. (CXX) g++ options: -lm -lpthread -lgomp -ffast-math -fopenmp
OpenBenchmarking.orgSeconds, Fewer Is BetterParboil 2.5Test: OpenMP MRI Griddingparboil:openmp-griddingopenmp+mpi gridding1224364860Min: 60.53 / Avg: 60.82 / Max: 61.16Min: 26.28 / Avg: 27.34 / Max: 27.961. (CXX) g++ options: -lm -lpthread -lgomp -ffast-math -fopenmp

OpenBenchmarking.orgSeconds, Fewer Is BetterParboil 2.5Test: OpenCL BFSparboil:opencl-bfs0.30830.61660.92491.23321.5415SE +/- 0.01, N = 31.371. (CXX) g++ options: -lm -lpthread -lgomp -ffast-math -fopenmp