scimark

AMD Phenom II X6 1090T testing with a Gigabyte GA-890FXA-UD5 and AMD Radeon HD 5700 1024MB on Slackware 13.37.0 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 1503094-LI-SCIMARK4392
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Result
Identifier
Performance Per
Dollar
Date
Run
  Test
  Duration
.1
March 09 2015
 
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scimarkOpenBenchmarking.orgPhoronix Test SuiteAMD Phenom II X6 1090T @ 3.20GHz (6 Cores)Gigabyte GA-890FXA-UD5AMD ATI RD890 PCI-e GFX Hydra part8192MB2 x 1000GB Western Digital WD1002FAEX-0 + 80GB Western Digital WD800JB-00JJ + 41GB Maxtor 6E040L0 + 2000GB Elements 10B8AMD Radeon HD 5700 1024MB (850/1200MHz)AMD ATI SBx00 AzaliaS22B350Realtek RTL8111/8168BSlackware 13.37.03.12.0-ck.BFS.cwl (i686)Xfce 4.6.2X Server 1.14.3radeon 7.2.02.1 Mesa 9.1.7 Gallium 0.4GCC 4.8.2xfs1920x1080ProcessorMotherboardChipsetMemoryDiskGraphicsAudioMonitorNetworkOSKernelDesktopDisplay ServerDisplay DriverOpenGLCompilerFile-SystemScreen ResolutionScimark BenchmarksSystem Logs- radeon.dpm=1- LIBGLADE_MODULE_PATH=:/usr/lib/libglade/2.0- --build=i486-slackware-linux --disable-gtktest --disable-libunwind-exceptions --enable-__cxa_atexit --enable-bootstrap --enable-checking=release --enable-java-awt=gtk --enable-java-home --enable-languages=ada,c,c++,fortran,go,java,lto,objc --enable-libssp --enable-lto --enable-objc-gc --enable-shared --enable-threads=posix --host=i486-slackware-linux --mandir=/usr/man --target=i486-slackware-linux --verbose --with-antlr-jar=/root/slackware-current/source/d/gcc/antlr-runtime-3.4.jar --with-arch-directory=i386 --with-arch=i486 --with-gnu-ld --with-python-dir=/lib/python2.7/site-packages - Scaling Governor: acpi-cpufreq ondemand

scimarkscimark2: Compositescimark2: Monte Carloscimark2: Fast Fourier Transformscimark2: Sparse Matrix Multiplyscimark2: Dense LU Matrix Factorizationscimark2: Jacobi Successive Over-Relaxation.1571.23146.2577.66676.221282.16673.86OpenBenchmarking.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: Composite.1120240360480600SE +/- 3.01, N = 4571.23

OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Monte Carlo.1306090120150SE +/- 1.68, N = 4146.25

OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Fast Fourier Transform.120406080100SE +/- 0.52, N = 477.66

OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Sparse Matrix Multiply.1150300450600750SE +/- 8.28, N = 4676.22

OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Dense LU Matrix Factorization.130060090012001500SE +/- 6.70, N = 41282.16

OpenBenchmarking.orgMflops, More Is BetterSciMark 2.0Computational Test: Jacobi Successive Over-Relaxation.1150300450600750SE +/- 18.12, N = 4673.86