Xeon Scalable Ice Lake P-State Governor

Intel Xeon Platinum 8380 Ice Lake P-State CPU frequency scaling Linux benchmarks by Michael Larabel for a future article.

Compare your own system(s) to this result file with the Phoronix Test Suite by running the command: phoronix-test-suite benchmark 2105267-IB-XEONSCALA38
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P-State powersave
May 23 2021
  15 Hours, 42 Minutes
P-State performance
May 24 2021
  11 Hours, 14 Minutes
intel_cpufreq schedutil
May 24 2021
  15 Hours, 54 Minutes
intel_cpufreq performance
May 25 2021
  13 Hours, 43 Minutes
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Xeon Scalable Ice Lake P-State GovernorOpenBenchmarking.orgPhoronix Test Suite2 x Intel Xeon Platinum 8380 @ 3.40GHz (80 Cores / 160 Threads)Intel M50CYP2SB2U (SE5C6200.86B.0022.D08.2103221623 BIOS)Intel Device 099816 x 32 GB DDR4-3200MT/s Hynix HMA84GR7CJR4N-XN800GB INTEL SSDPF21Q800GBASPEED2 x Intel X710 for 10GBASE-T + 2 x Intel E810-C for QSFPUbuntu 21.045.11.0-17-generic (x86_64)GNOME Shell 3.38.4X Server1.0.2GCC 10.3.0ext41024x768ProcessorMotherboardChipsetMemoryDiskGraphicsNetworkOSKernelDesktopDisplay ServerVulkanCompilerFile-SystemScreen ResolutionXeon Scalable Ice Lake P-State Governor BenchmarksSystem Logs- Transparent Huge Pages: madvise- --build=x86_64-linux-gnu --disable-vtable-verify --disable-werror --enable-bootstrap --enable-checking=release --enable-clocale=gnu --enable-default-pie --enable-gnu-unique-object --enable-languages=c,ada,c++,go,brig,d,fortran,objc,obj-c++,m2 --enable-libphobos-checking=release --enable-libstdcxx-debug --enable-libstdcxx-time=yes --enable-link-mutex --enable-multiarch --enable-multilib --enable-nls --enable-objc-gc=auto --enable-offload-targets=nvptx-none=/build/gcc-10-gDeRY6/gcc-10-10.3.0/debian/tmp-nvptx/usr,amdgcn-amdhsa=/build/gcc-10-gDeRY6/gcc-10-10.3.0/debian/tmp-gcn/usr,hsa --enable-plugin --enable-shared --enable-threads=posix --host=x86_64-linux-gnu --program-prefix=x86_64-linux-gnu- --target=x86_64-linux-gnu --with-abi=m64 --with-arch-32=i686 --with-build-config=bootstrap-lto-lean --with-default-libstdcxx-abi=new --with-gcc-major-version-only --with-multilib-list=m32,m64,mx32 --with-target-system-zlib=auto --with-tune=generic --without-cuda-driver -v - P-State powersave: Scaling Governor: intel_pstate powersave - CPU Microcode: 0xd000270 - P-State performance: Scaling Governor: intel_pstate performance - CPU Microcode: 0xd000270 - intel_cpufreq schedutil: Scaling Governor: intel_cpufreq schedutil - CPU Microcode: 0xd000270 - intel_cpufreq performance: Scaling Governor: intel_cpufreq performance - CPU Microcode: 0xd000270 - Python 3.9.4- itlb_multihit: Not affected + l1tf: Not affected + mds: Not affected + meltdown: Not affected + spec_store_bypass: Mitigation of SSB disabled via prctl and seccomp + spectre_v1: Mitigation of usercopy/swapgs barriers and __user pointer sanitization + spectre_v2: Mitigation of Enhanced IBRS IBPB: conditional RSB filling + srbds: Not affected + tsx_async_abort: Not affected

P-State powersaveP-State performanceintel_cpufreq schedutilintel_cpufreq performanceResult OverviewPhoronix Test Suite100%148%195%243%290%AOM AV1KvazaarPostgreSQL pgbenchSVT-VP9SVT-HEVCSVT-AV1PJSIPTimed Godot Game Engine CompilationDarmstadt Automotive Parallel Heterogeneous SuiteZstd CompressionArrayFireOpenVKLlibavif avifencTimed Linux Kernel CompilationTimed Node.js CompilationRodiniaTensorFlow LiteNAS Parallel BenchmarksQuantum ESPRESSOEmbreeOSPrayBlenderTimed LLVM CompilationIntel Open Image DenoiseTimed Mesa CompilationOpenFOAMONNX RuntimeHigh Performance Conjugate GradientStockfishGROMACSLAMMPS Molecular Dynamics SimulatorLiquid-DSPXcompact3d Incompact3dRELIONNAMDWRFNWChem

P-State powersaveP-State performanceintel_cpufreq schedutilintel_cpufreq performancePer Watt Result OverviewPhoronix Test Suite100%107%113%120%126%AOM AV1NAS Parallel BenchmarksSVT-HEVCIntel Open Image DenoiseOSPrayZstd CompressionKvazaarOpenVKLSVT-AV1StockfishEmbreeArrayFireDarmstadt Automotive Parallel Heterogeneous SuitePJSIPSVT-VP9ONNX RuntimeLiquid-DSPHigh Performance Conjugate GradientLAMMPS Molecular Dynamics SimulatorGROMACSP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.MP.W.G.M

Xeon Scalable Ice Lake P-State Governornpb: BT.Cnpb: EP.Cnpb: EP.Dnpb: FT.Cnpb: LU.Cnpb: SP.Bnpb: SP.Cnpb: IS.Dnpb: MG.Cnpb: CG.Copenfoam: Motorbike 30Mopenfoam: Motorbike 60Mwrf: conus 2.5kmincompact3d: input.i3d 193 Cells Per Directionincompact3d: X3D-benchmarking input.i3darrayfire: BLAS CPUarrayfire: Conjugate Gradient CPUhpcg: lammps: 20k Atomsnamd: ATPase Simulation - 327,506 Atomsgromacs: MPI CPU - water_GMX50_bareonnx: yolov4 - OpenMP CPUonnx: fcn-resnet101-11 - OpenMP CPUonnx: shufflenet-v2-10 - OpenMP CPUonnx: super-resolution-10 - OpenMP CPUonnx: bertsquad-10 - OpenMP CPUqe: AUSURF112daphne: OpenMP - Euclidean Clusterdaphne: OpenMP - NDT Mappingdaphne: OpenMP - Points2Imagerelion: Basic - CPUtensorflow-lite: Mobilenet Quanttensorflow-lite: Inception ResNet V2tensorflow-lite: Inception V4rodinia: OpenMP CFD Solverrodinia: OpenMP LavaMDrodinia: OpenMP Leukocyterodinia: OpenMP Streamclusterrodinia: OpenMP HotSpot3Dsvt-av1: Preset 8 - Bosphorus 4Ksvt-hevc: 7 - Bosphorus 1080psvt-hevc: 10 - Bosphorus 1080psvt-vp9: PSNR/SSIM Optimized - Bosphorus 1080psvt-vp9: VMAF Optimized - Bosphorus 1080paom-av1: Speed 9 Realtime - Bosphorus 4Kaom-av1: Speed 8 Realtime - Bosphorus 4Kaom-av1: Speed 6 Realtime - Bosphorus 4Kaom-av1: Speed 6 Two-Pass - Bosphorus 4Kcompress-zstd: 8, Long Mode - Compression Speedcompress-zstd: 19 - Compression Speedcompress-zstd: 19 - Decompression Speedcompress-zstd: 19, Long Mode - Compression Speedcompress-zstd: 19, Long Mode - Decompression Speedospray: Magnetic Reconnection - SciVisospray: XFrog Forest - SciVisospray: XFrog Forest - Path Tracerospray: NASA Streamlines - SciVisospray: NASA Streamlines - Path Tracerospray: San Miguel - SciVisospray: San Miguel - Path Tracerembree: Pathtracer ISPC - Asian Dragonembree: Pathtracer ISPC - Asian Dragon Objembree: Pathtracer ISPC - Crownoidn: RT.hdr_alb_nrm.3840x2160oidn: RT.ldr_alb_nrm.3840x2160oidn: RTLightmap.hdr.4096x4096openvkl: vklBenchmarkopenvkl: vklBenchmarkStructuredVolumeopenvkl: vklBenchmarkUnstructuredVolumeopenvkl: vklBenchmarkVdbVolumekvazaar: Bosphorus 4K - Very Fastkvazaar: Bosphorus 4K - Ultra Fastavifenc: 6, Losslessavifenc: 10avifenc: 10, Losslesspjsip: OPTIONS, Statefulpjsip: OPTIONS, Statelesspjsip: INVITEbuild-godot: Time To Compilebuild-linux-kernel: Time To Compilebuild-mesa: Time To Compilebuild-llvm: Ninjabuild-llvm: Unix Makefilesbuild-nodejs: Time To Compileliquid-dsp: 64 - 256 - 57liquid-dsp: 128 - 256 - 57liquid-dsp: 160 - 256 - 57blender: BMW27 - CPU-Onlyblender: Classroom - CPU-Onlyblender: Barbershop - CPU-Onlypgbench: 1000 - 100 - Read Writepgbench: 1000 - 100 - Read Write - Average Latencypgbench: 1000 - 100 - Read Onlypgbench: 1000 - 100 - Read Only - Average Latencypgbench: 1000 - 250 - Read Writepgbench: 1000 - 250 - Read Write - Average Latencypgbench: 1000 - 250 - Read Onlypgbench: 1000 - 250 - Read Only - Average Latencystockfish: Total Timenwchem: C240 BuckyballP-State powersaveP-State performanceintel_cpufreq schedutilintel_cpufreq performance191166.416051.908620.9790989.73174911.02114946.4691313.602999.72116754.1639485.7214.92105.039892.4211.1916566290.4111024538.694.29240.135935.4950.270938.999480196821268985091106.69831.33742.306634.58350.26641126.85720656821534.82739.81569.0497.710104.33930.546168.38258.65206.54210.9223.5917.077.383.94296.082.72563.246.72711.6111.1118.8710.3812527.7890.9110.42106.621987.209266.52512.852.871.386707197443817572692172232613.2623.0337.4695.2058.833376941421254875.61224.88118.983129.272199.398102.19730299000003270133333307393333329.7272.17107.73233834.2833933290.2562341110.7239064340.2771770311221882.3197815.317610.188920.10100543.72187300.47123544.0991817.763014.77120084.2740261.2614.79104.769885.55611.0554509290.1433314539.996.13140.647135.8250.271689.052483194839266264771178.521020.77924.8413527.238996430349.99333656.35721496637074.74639.42346.3587.816104.18556.887305.77576.99453.67460.4461.0648.6219.099.691011.986.72561.849.12677.9114.8118.8710.31142.8627.7810010.45107.630789.089574.05512.932.931.4081110605645818038402999653938.2146.3130.3454.3417.2481036242389539348.15721.48618.497127.321190.68590.85030661333333293000000308510000028.4071.27105.10630491.58812367130.081664933.7749241900.2711771314281888.2191705.026157.588634.3091970.99177878.68115501.4191642.332926.26117869.4939430.6615.07105.109889.90711.2054179290.4166974510.296.45440.065935.7920.272279.042483194833467565041156.49884.75743.017077.76349.43635239.05716326722544.71039.19963.2867.712104.18435.480193.80345.48260.25262.7821.7215.905.864.00311.781.52594.746.12693.4111.1118.8710.3112527.7890.9110.38102.704387.992767.75402.782.881.387187799762817480172359924911.3020.5331.9875.1348.486379741743254053.00122.19018.754127.688191.17391.85730031250003291466667308253333329.2572.24107.39365772.74012285700.081657263.8148853790.2851754461821880197821.887705.448938.09100763.11186973.06123176.7291830.562978.52120124.0540226.0214.49104.279875.26411.0561748289.9755864574.834.00540.831135.8490.270519.102476197838069555031175.691021.62914.7013249.678695875349.02833581.35726796774214.72939.74647.1057.727104.08856.750309.13574.88457.02464.7161.2748.9119.2010.011018.683.12609.748.32713.1112.9618.8710.31142.8627.7810010.42106.173689.490574.24202.932.931.4082110670464118096673001631838.2646.3430.0144.3407.2761040942338541648.65121.41018.517127.332191.80191.08130726000003293400000309670000028.2871.22104.51628261.59412319830.081661863.7918764620.2881786294741882.2OpenBenchmarking.org

NAS Parallel Benchmarks

NPB, NAS Parallel Benchmarks, is a benchmark developed by NASA for high-end computer systems. This test profile currently uses the MPI version of NPB. This test profile offers selecting the different NPB tests/problems and varying problem sizes. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: BT.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave40K80K120K160K200KSE +/- 230.36, N = 4SE +/- 322.38, N = 4SE +/- 313.16, N = 4SE +/- 416.58, N = 4197821.88191705.02197815.31191166.411. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: EP.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave17003400510068008500SE +/- 128.21, N = 15SE +/- 121.94, N = 15SE +/- 165.19, N = 15SE +/- 109.82, N = 127705.446157.587610.186051.901. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: EP.Dintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave2K4K6K8K10KSE +/- 38.79, N = 4SE +/- 22.19, N = 3SE +/- 60.08, N = 13SE +/- 65.72, N = 38938.098634.308920.108620.971. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: FT.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave20K40K60K80K100KSE +/- 63.65, N = 7SE +/- 807.72, N = 7SE +/- 83.85, N = 7SE +/- 842.11, N = 7100763.1191970.99100543.7290989.731. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: LU.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave40K80K120K160K200KSE +/- 495.98, N = 4SE +/- 196.76, N = 4SE +/- 364.13, N = 4SE +/- 1423.68, N = 4186973.06177878.68187300.47174911.021. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: SP.Bintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave30K60K90K120K150KSE +/- 133.35, N = 9SE +/- 203.66, N = 8SE +/- 134.33, N = 9SE +/- 480.22, N = 8123176.72115501.41123544.09114946.461. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: SP.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave20K40K60K80K100KSE +/- 55.17, N = 4SE +/- 142.93, N = 3SE +/- 159.72, N = 4SE +/- 139.83, N = 391830.5691642.3391817.7691313.601. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: IS.Dintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave6001200180024003000SE +/- 5.86, N = 4SE +/- 32.51, N = 4SE +/- 15.07, N = 4SE +/- 29.00, N = 42978.522926.263014.772999.721. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: MG.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave30K60K90K120K150KSE +/- 209.39, N = 10SE +/- 233.06, N = 10SE +/- 89.79, N = 10SE +/- 333.81, N = 10120124.05117869.49120084.27116754.161. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenBenchmarking.orgTotal Mop/s, More Is BetterNAS Parallel Benchmarks 3.4Test / Class: CG.Cintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave9K18K27K36K45KSE +/- 69.22, N = 8SE +/- 42.28, N = 8SE +/- 113.89, N = 8SE +/- 83.38, N = 740226.0239430.6640261.2639485.721. (F9X) gfortran options: -O3 -march=native -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz 2. Open MPI 4.1.0

OpenFOAM

OpenFOAM is the leading free, open source software for computational fluid dynamics (CFD). Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterOpenFOAM 8Input: Motorbike 30Mintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave48121620SE +/- 0.01, N = 3SE +/- 0.14, N = 7SE +/- 0.15, N = 15SE +/- 0.06, N = 314.4915.0714.7914.921. (CXX) g++ options: -std=c++11 -m64 -O3 -ftemplate-depth-100 -fPIC -fuse-ld=bfd -Xlinker --add-needed --no-as-needed -ldynamicMesh -ldecompose -lgenericPatchFields -lmetisDecomp -lscotchDecomp -llagrangian -lregionModels -lOpenFOAM -ldl -lm

OpenBenchmarking.orgSeconds, Fewer Is BetterOpenFOAM 8Input: Motorbike 60Mintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave20406080100SE +/- 0.16, N = 3SE +/- 0.38, N = 3SE +/- 0.09, N = 3SE +/- 0.19, N = 3104.27105.10104.76105.031. (CXX) g++ options: -std=c++11 -m64 -O3 -ftemplate-depth-100 -fPIC -fuse-ld=bfd -Xlinker --add-needed --no-as-needed -ldynamicMesh -ldecompose -lgenericPatchFields -lmetisDecomp -lscotchDecomp -llagrangian -lregionModels -lOpenFOAM -ldl -lm

WRF

WRF, the Weather Research and Forecasting Model, is a "next-generation mesoscale numerical weather prediction system designed for both atmospheric research and operational forecasting applications. It features two dynamical cores, a data assimilation system, and a software architecture supporting parallel computation and system extensibility." Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterWRF 4.2.2Input: conus 2.5kmintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave2K4K6K8K10K9875.269889.919885.569892.421. (F9X) gfortran options: -O2 -ftree-vectorize -funroll-loops -ffree-form -fconvert=big-endian -frecord-marker=4 -fallow-invalid-boz -lesmf_time -lwrfio_nf -lnetcdff -lnetcdf -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz

Xcompact3d Incompact3d

Xcompact3d Incompact3d is a Fortran-MPI based, finite difference high-performance code for solving the incompressible Navier-Stokes equation and as many as you need scalar transport equations. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterXcompact3d Incompact3d 2021-03-11Input: input.i3d 193 Cells Per Directionintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave3691215SE +/- 0.02, N = 4SE +/- 0.01, N = 4SE +/- 0.05, N = 4SE +/- 0.03, N = 411.0611.2111.0611.191. (F9X) gfortran options: -cpp -O2 -funroll-loops -floop-optimize -fcray-pointer -fbacktrace -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz

OpenBenchmarking.orgSeconds, Fewer Is BetterXcompact3d Incompact3d 2021-03-11Input: X3D-benchmarking input.i3dintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave60120180240300SE +/- 0.09, N = 3SE +/- 0.11, N = 3SE +/- 0.01, N = 3SE +/- 0.12, N = 3289.98290.42290.14290.411. (F9X) gfortran options: -cpp -O2 -funroll-loops -floop-optimize -fcray-pointer -fbacktrace -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz

ArrayFire

ArrayFire is an GPU and CPU numeric processing library, this test uses the built-in CPU and OpenCL ArrayFire benchmarks. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOPS, More Is BetterArrayFire 3.7Test: BLAS CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave10002000300040005000SE +/- 11.74, N = 4SE +/- 36.10, N = 4SE +/- 24.52, N = 4SE +/- 10.80, N = 44574.834510.294539.994538.691. (CXX) g++ options: -rdynamic

OpenBenchmarking.orgms, Fewer Is BetterArrayFire 3.7Test: Conjugate Gradient CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave246810SE +/- 0.128, N = 15SE +/- 0.088, N = 15SE +/- 0.068, N = 15SE +/- 0.067, N = 154.0056.4546.1314.2921. (CXX) g++ options: -rdynamic

High Performance Conjugate Gradient

HPCG is the High Performance Conjugate Gradient and is a new scientific benchmark from Sandia National Lans focused for super-computer testing with modern real-world workloads compared to HPCC. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOP/s, More Is BetterHigh Performance Conjugate Gradient 3.1intel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave918273645SE +/- 0.21, N = 3SE +/- 0.12, N = 3SE +/- 0.20, N = 3SE +/- 0.17, N = 340.8340.0740.6540.141. (CXX) g++ options: -O3 -ffast-math -ftree-vectorize -pthread -lmpi_cxx -lmpi

LAMMPS Molecular Dynamics Simulator

LAMMPS is a classical molecular dynamics code, and an acronym for Large-scale Atomic/Molecular Massively Parallel Simulator. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgns/day, More Is BetterLAMMPS Molecular Dynamics Simulator 29Oct2020Model: 20k Atomsintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave816243240SE +/- 0.05, N = 3SE +/- 0.04, N = 3SE +/- 0.05, N = 3SE +/- 0.06, N = 335.8535.7935.8335.501. (CXX) g++ options: -O3 -pthread -lm

NAMD

NAMD is a parallel molecular dynamics code designed for high-performance simulation of large biomolecular systems. NAMD was developed by the Theoretical and Computational Biophysics Group in the Beckman Institute for Advanced Science and Technology at the University of Illinois at Urbana-Champaign. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgdays/ns, Fewer Is BetterNAMD 2.14ATPase Simulation - 327,506 Atomsintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave0.06130.12260.18390.24520.3065SE +/- 0.00021, N = 3SE +/- 0.00043, N = 3SE +/- 0.00055, N = 3SE +/- 0.00040, N = 30.270510.272270.271680.27093

GROMACS

The GROMACS (GROningen MAchine for Chemical Simulations) molecular dynamics package testing with the water_GMX50 data. This test profile allows selecting between CPU and GPU-based GROMACS builds. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgNs Per Day, More Is BetterGROMACS 2021.2Implementation: MPI CPU - Input: water_GMX50_bareintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave3691215SE +/- 0.011, N = 3SE +/- 0.035, N = 3SE +/- 0.048, N = 3SE +/- 0.038, N = 39.1029.0429.0528.9991. (CXX) g++ options: -O3 -pthread

ONNX Runtime

ONNX Runtime is developed by Microsoft and partners as a open-source, cross-platform, high performance machine learning inferencing and training accelerator. This test profile runs the ONNX Runtime with various models available from the ONNX Zoo. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgInferences Per Minute, More Is BetterONNX Runtime 1.6Model: yolov4 - Device: OpenMP CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave100200300400500SE +/- 0.73, N = 3SE +/- 5.29, N = 3SE +/- 5.43, N = 3SE +/- 2.02, N = 34764834834801. (CXX) g++ options: -fopenmp -ffunction-sections -fdata-sections -O3 -ldl -lrt

OpenBenchmarking.orgInferences Per Minute, More Is BetterONNX Runtime 1.6Model: fcn-resnet101-11 - Device: OpenMP CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave4080120160200SE +/- 0.29, N = 3SE +/- 1.89, N = 3SE +/- 0.44, N = 3SE +/- 2.36, N = 31971941941961. (CXX) g++ options: -fopenmp -ffunction-sections -fdata-sections -O3 -ldl -lrt

OpenBenchmarking.orgInferences Per Minute, More Is BetterONNX Runtime 1.6Model: shufflenet-v2-10 - Device: OpenMP CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave2K4K6K8K10KSE +/- 24.06, N = 3SE +/- 65.66, N = 3SE +/- 25.12, N = 3SE +/- 58.56, N = 1283808334839282121. (CXX) g++ options: -fopenmp -ffunction-sections -fdata-sections -O3 -ldl -lrt

OpenBenchmarking.orgInferences Per Minute, More Is BetterONNX Runtime 1.6Model: super-resolution-10 - Device: OpenMP CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave15003000450060007500SE +/- 156.45, N = 12SE +/- 210.11, N = 12SE +/- 200.91, N = 12SE +/- 205.17, N = 1269556756662668981. (CXX) g++ options: -fopenmp -ffunction-sections -fdata-sections -O3 -ldl -lrt

OpenBenchmarking.orgInferences Per Minute, More Is BetterONNX Runtime 1.6Model: bertsquad-10 - Device: OpenMP CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave110220330440550SE +/- 6.15, N = 12SE +/- 8.53, N = 12SE +/- 2.17, N = 3SE +/- 10.98, N = 95035044775091. (CXX) g++ options: -fopenmp -ffunction-sections -fdata-sections -O3 -ldl -lrt

Quantum ESPRESSO

Quantum ESPRESSO is an integrated suite of Open-Source computer codes for electronic-structure calculations and materials modeling at the nanoscale. It is based on density-functional theory, plane waves, and pseudopotentials. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterQuantum ESPRESSO 6.7Input: AUSURF112intel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave30060090012001500SE +/- 17.96, N = 9SE +/- 22.92, N = 9SE +/- 1.74, N = 3SE +/- 19.34, N = 91175.691156.491178.521106.691. (F9X) gfortran options: -lopenblas -lFoX_dom -lFoX_sax -lFoX_wxml -lFoX_common -lFoX_utils -lFoX_fsys -lfftw3 -pthread -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -ldl -levent_core -levent_pthreads -lutil -lm -lrt -lz

Darmstadt Automotive Parallel Heterogeneous Suite

DAPHNE is the Darmstadt Automotive Parallel HeterogeNEous Benchmark Suite with OpenCL / CUDA / OpenMP test cases for these automotive benchmarks for evaluating programming models in context to vehicle autonomous driving capabilities. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgTest Cases Per Minute, More Is BetterDarmstadt Automotive Parallel Heterogeneous SuiteBackend: OpenMP - Kernel: Euclidean Clusterintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave2004006008001000SE +/- 1.25, N = 3SE +/- 9.84, N = 15SE +/- 2.39, N = 3SE +/- 7.84, N = 151021.62884.751020.77831.331. (CXX) g++ options: -O3 -std=c++11 -fopenmp

OpenBenchmarking.orgTest Cases Per Minute, More Is BetterDarmstadt Automotive Parallel Heterogeneous SuiteBackend: OpenMP - Kernel: NDT Mappingintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave2004006008001000SE +/- 4.97, N = 3SE +/- 19.99, N = 14SE +/- 4.79, N = 3SE +/- 18.61, N = 15914.70743.01924.84742.301. (CXX) g++ options: -O3 -std=c++11 -fopenmp

OpenBenchmarking.orgTest Cases Per Minute, More Is BetterDarmstadt Automotive Parallel Heterogeneous SuiteBackend: OpenMP - Kernel: Points2Imageintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave3K6K9K12K15KSE +/- 100.42, N = 15SE +/- 115.67, N = 12SE +/- 114.27, N = 15SE +/- 86.30, N = 313249.687077.7613527.246634.581. (CXX) g++ options: -O3 -std=c++11 -fopenmp

RELION

RELION - REgularised LIkelihood OptimisatioN - is a stand-alone computer program for Maximum A Posteriori refinement of (multiple) 3D reconstructions or 2D class averages in cryo-electron microscopy (cryo-EM). It is developed in the research group of Sjors Scheres at the MRC Laboratory of Molecular Biology. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterRELION 3.1.1Test: Basic - Device: CPUintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave80160240320400SE +/- 1.39, N = 3SE +/- 1.38, N = 3SE +/- 1.34, N = 3SE +/- 1.16, N = 3349.03349.44349.99350.271. (CXX) g++ options: -fopenmp -std=c++0x -O3 -rdynamic -ldl -ltiff -lfftw3f -lfftw3 -lpng -pthread -lmpi_cxx -lmpi

TensorFlow Lite

This is a benchmark of the TensorFlow Lite implementation. The current Linux support is limited to running on CPUs. This test profile is measuring the average inference time. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMicroseconds, Fewer Is BetterTensorFlow Lite 2020-08-23Model: Mobilenet Quantintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave9K18K27K36K45KSE +/- 61.65, N = 3SE +/- 352.77, N = 3SE +/- 117.93, N = 3SE +/- 711.79, N = 1233581.335239.033656.341126.8

OpenBenchmarking.orgMicroseconds, Fewer Is BetterTensorFlow Lite 2020-08-23Model: Inception ResNet V2intel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave120K240K360K480K600KSE +/- 491.89, N = 3SE +/- 1875.50, N = 3SE +/- 2262.00, N = 3SE +/- 1289.77, N = 3572679571632572149572065

OpenBenchmarking.orgMicroseconds, Fewer Is BetterTensorFlow Lite 2020-08-23Model: Inception V4intel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave150K300K450K600K750KSE +/- 6399.11, N = 3SE +/- 2013.17, N = 3SE +/- 2267.77, N = 3SE +/- 5220.61, N = 3677421672254663707682153

Rodinia

Rodinia is a suite focused upon accelerating compute-intensive applications with accelerators. CUDA, OpenMP, and OpenCL parallel models are supported by the included applications. This profile utilizes select OpenCL, NVIDIA CUDA and OpenMP test binaries at the moment. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterRodinia 3.1Test: OpenMP CFD Solverintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave1.08612.17223.25834.34445.4305SE +/- 0.019, N = 8SE +/- 0.014, N = 8SE +/- 0.036, N = 8SE +/- 0.041, N = 154.7294.7104.7464.8271. (CXX) g++ options: -O2 -lOpenCL

OpenBenchmarking.orgSeconds, Fewer Is BetterRodinia 3.1Test: OpenMP LavaMDintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave918273645SE +/- 0.47, N = 3SE +/- 0.18, N = 3SE +/- 0.13, N = 3SE +/- 0.23, N = 339.7539.2039.4239.821. (CXX) g++ options: -O2 -lOpenCL

OpenBenchmarking.orgSeconds, Fewer Is BetterRodinia 3.1Test: OpenMP Leukocyteintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave1530456075SE +/- 0.69, N = 15SE +/- 1.35, N = 15SE +/- 0.64, N = 12SE +/- 0.69, N = 647.1163.2946.3669.051. (CXX) g++ options: -O2 -lOpenCL

OpenBenchmarking.orgSeconds, Fewer Is BetterRodinia 3.1Test: OpenMP Streamclusterintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave246810SE +/- 0.076, N = 6SE +/- 0.044, N = 6SE +/- 0.078, N = 15SE +/- 0.058, N = 157.7277.7127.8167.7101. (CXX) g++ options: -O2 -lOpenCL

OpenBenchmarking.orgSeconds, Fewer Is BetterRodinia 3.1Test: OpenMP HotSpot3Dintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave20406080100SE +/- 0.52, N = 3SE +/- 0.27, N = 3SE +/- 0.01, N = 3SE +/- 0.44, N = 3104.09104.18104.19104.341. (CXX) g++ options: -O2 -lOpenCL

SVT-AV1

This is a benchmark of the SVT-AV1 open-source video encoder/decoder. SVT-AV1 was originally developed by Intel as part of their Open Visual Cloud / Scalable Video Technology (SVT). Development of SVT-AV1 has since moved to the Alliance for Open Media as part of upstream AV1 development. SVT-AV1 is a CPU-based multi-threaded video encoder for the AV1 video format with a sample YUV video file. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 0.8.7Encoder Mode: Preset 8 - Input: Bosphorus 4Kintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave1326395265SE +/- 0.31, N = 4SE +/- 0.47, N = 3SE +/- 0.24, N = 4SE +/- 0.20, N = 356.7535.4856.8930.551. (CXX) g++ options: -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq -pie

SVT-HEVC

This is a test of the Intel Open Visual Cloud Scalable Video Technology SVT-HEVC CPU-based multi-threaded video encoder for the HEVC / H.265 video format with a sample 1080p YUV video file. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-HEVC 1.5.0Tuning: 7 - Input: Bosphorus 1080pintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave70140210280350SE +/- 1.23, N = 10SE +/- 1.34, N = 15SE +/- 0.58, N = 10SE +/- 1.49, N = 8309.13193.80305.77168.381. (CC) gcc options: -fPIE -fPIC -O3 -O2 -pie -rdynamic -lpthread -lrt

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-HEVC 1.5.0Tuning: 10 - Input: Bosphorus 1080pintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave120240360480600SE +/- 1.99, N = 11SE +/- 3.58, N = 15SE +/- 0.97, N = 11SE +/- 1.12, N = 9574.88345.48576.99258.651. (CC) gcc options: -fPIE -fPIC -O3 -O2 -pie -rdynamic -lpthread -lrt

SVT-VP9

This is a test of the Intel Open Visual Cloud Scalable Video Technology SVT-VP9 CPU-based multi-threaded video encoder for the VP9 video format with a sample YUV input video file. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-VP9 0.3Tuning: PSNR/SSIM Optimized - Input: Bosphorus 1080pintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave100200300400500SE +/- 3.11, N = 13SE +/- 2.47, N = 15SE +/- 4.77, N = 15SE +/- 1.53, N = 7457.02260.25453.67206.541. (CC) gcc options: -O3 -fcommon -fPIE -fPIC -fvisibility=hidden -pie -rdynamic -lpthread -lrt -lm

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-VP9 0.3Tuning: VMAF Optimized - Input: Bosphorus 1080pintel_cpufreq performanceintel_cpufreq schedutilP-State performanceP-State powersave100200300400500SE +/- 2.50, N = 10SE +/- 2.52, N = 15SE +/- 2.03, N = 10SE +/- 1.16, N = 7464.71262.78460.44210.921. (CC) gcc options: -O3 -fcommon -fPIE -fPIC -fvisibility=hidden -pie -rdynamic -lpthread -lrt -lm