7773x

Tests for a future article. 2 x AMD EPYC 7573X 32-Core testing with a AMD DAYTONA_X (RYM1009B BIOS) and ASPEED on Ubuntu 22.04 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 2305044-NE-7773X849132
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7773x ProcessorMotherboardChipsetMemoryDiskGraphicsMonitorNetworkOSKernelDesktopDisplay ServerVulkanCompilerFile-SystemScreen Resolutionab5 a5 b5 2p a5 2p bAMD EPYC 7773X 64-Core @ 2.20GHz (64 Cores / 128 Threads)AMD DAYTONA_X (RYM1009B BIOS)AMD Starship/Matisse256GB3841GB Micron_9300_MTFDHAL3T8TDPASPEEDVE2282 x Mellanox MT27710Ubuntu 22.045.15.0-47-generic (x86_64)GNOME Shell 42.4X Server 1.21.1.31.2.204GCC 11.2.0ext41920x1080AMD EPYC 7573X 32-Core @ 2.80GHz (32 Cores / 64 Threads)2 x AMD EPYC 7573X 32-Core @ 2.80GHz (64 Cores / 128 Threads)512GBOpenBenchmarking.orgKernel Details- Transparent Huge Pages: madviseCompiler Details- --build=x86_64-linux-gnu --disable-vtable-verify --disable-werror --enable-bootstrap --enable-cet --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-serialization=2 --enable-multiarch --enable-multilib --enable-nls --enable-objc-gc=auto --enable-offload-targets=nvptx-none=/build/gcc-11-gBFGDP/gcc-11-11.2.0/debian/tmp-nvptx/usr,amdgcn-amdhsa=/build/gcc-11-gBFGDP/gcc-11-11.2.0/debian/tmp-gcn/usr --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 Processor Details- Scaling Governor: acpi-cpufreq performance (Boost: Enabled) - CPU Microcode: 0xa001229Python Details- Python 3.10.6Security Details- itlb_multihit: Not affected + l1tf: Not affected + mds: Not affected + meltdown: Not affected + mmio_stale_data: Not affected + retbleed: 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 Retpolines IBPB: conditional IBRS_FW STIBP: always-on RSB filling + srbds: Not affected + tsx_async_abort: Not affected

ab5 a5 b5 2p a5 2p bResult OverviewPhoronix Test Suite100%144%187%231%274%OpenFOAMSPECFEM3DACES DGEMMEmbreeJohn The RipperTimed LLVM CompilationOpenVKLTimed FFmpeg CompilationVVenCFFmpegSVT-AV1QuantLib

7773x petsc: Streamsopenvkl: vklBenchmark ISPCopenfoam: drivaerFastback, Medium Mesh Size - Execution Timeopenfoam: drivaerFastback, Medium Mesh Size - Mesh Timeblender: Barbershop - CPU-Onlylczero: Eigenlczero: BLASbuild-llvm: Unix Makefilesopencv: Graph APIffmpeg: libx265 - Platformffmpeg: libx265 - Platformffmpeg: libx265 - Video On Demandffmpeg: libx265 - Video On Demandncnn: CPU - FastestDetncnn: CPU - vision_transformerncnn: CPU - regnety_400mncnn: CPU - squeezenet_ssdncnn: CPU - yolov4-tinyncnn: CPU - resnet50ncnn: CPU - alexnetncnn: CPU - resnet18ncnn: CPU - vgg16ncnn: CPU - googlenetncnn: CPU - blazefacencnn: CPU - efficientnet-b0ncnn: CPU - mnasnetncnn: CPU - shufflenet-v2ncnn: CPU-v3-v3 - mobilenet-v3ncnn: CPU-v2-v2 - mobilenet-v2ncnn: CPU - mobilenetffmpeg: libx265 - Uploadffmpeg: libx265 - Uploadbuild-llvm: Ninjaopencv: Stitchingaskap: tConvolve MT - Degriddingaskap: tConvolve MT - Griddingclickhouse: 100M Rows Hits Dataset, Third Runclickhouse: 100M Rows Hits Dataset, Second Runclickhouse: 100M Rows Hits Dataset, First Run / Cold Cachevvenc: Bosphorus 4K - Fastblender: Pabellon Barcelona - CPU-Onlyopencv: Coreblender: Classroom - CPU-Onlyffmpeg: libx265 - Liveffmpeg: libx265 - Liveonednn: Recurrent Neural Network Training - f32 - CPUonednn: Recurrent Neural Network Inference - f32 - CPUjohn-the-ripper: MD5john-the-ripper: HMAC-SHA512compress-zstd: 19, Long Mode - Decompression Speedcompress-zstd: 19, Long Mode - Compression Speedvvenc: Bosphorus 4K - Fasteropenvino: Person Detection FP16 - CPUopenvino: Person Detection FP16 - CPUopenfoam: drivaerFastback, Small Mesh Size - Execution Timeopenfoam: drivaerFastback, Small Mesh Size - Mesh Timeopenvino: Person Detection FP32 - CPUopenvino: Person Detection FP32 - CPUcompress-zstd: 19 - Decompression Speedcompress-zstd: 19 - Compression Speedopenvino: Face Detection FP16 - CPUopenvino: Face Detection FP16 - CPUopenvino: Face Detection FP16-INT8 - CPUopenvino: Face Detection FP16-INT8 - CPUopenvino: Machine Translation EN To DE FP16 - CPUopenvino: Machine Translation EN To DE FP16 - CPUcompress-zstd: 3, Long Mode - Decompression Speedcompress-zstd: 3, Long Mode - Compression Speedcompress-zstd: 8, Long Mode - Decompression Speedcompress-zstd: 8, Long Mode - Compression Speedcompress-zstd: 12 - Decompression Speedcompress-zstd: 12 - Compression Speedcompress-zstd: 8 - Decompression Speedcompress-zstd: 8 - Compression Speedcompress-zstd: 3 - Decompression Speedcompress-zstd: 3 - Compression Speedopenvino: Person Vehicle Bike Detection FP16 - CPUopenvino: Person Vehicle Bike Detection FP16 - CPUopenvino: Vehicle Detection FP16-INT8 - CPUopenvino: Vehicle Detection FP16-INT8 - CPUopenvino: Vehicle Detection FP16 - CPUopenvino: Vehicle Detection FP16 - CPUopenvino: Weld Porosity Detection FP16 - CPUopenvino: Weld Porosity Detection FP16 - CPUopenvino: Weld Porosity Detection FP16-INT8 - CPUopenvino: Weld Porosity Detection FP16-INT8 - CPUopenvino: Age Gender Recognition Retail 0013 FP16 - CPUopenvino: Age Gender Recognition Retail 0013 FP16 - CPUopenvino: Age Gender Recognition Retail 0013 FP16-INT8 - CPUopenvino: Age Gender Recognition Retail 0013 FP16-INT8 - CPUopencv: DNN - Deep Neural Networkvvenc: Bosphorus 1080p - Fastblender: Fishy Cat - CPU-Onlysvt-av1: Preset 4 - Bosphorus 4Kopencv: Object Detectionspecfem3d: Layered Halfspacegromacs: MPI CPU - water_GMX50_barespecfem3d: Water-layered Halfspaceblender: BMW27 - CPU-Onlyjohn-the-ripper: WPA PSKjohn-the-ripper: bcryptjohn-the-ripper: Blowfishquantlib: svt-av1: Preset 8 - Bosphorus 4Kcompress-7zip: Decompression Ratingcompress-7zip: Compression Ratingvvenc: Bosphorus 1080p - Fasterembree: Pathtracer - Asian Dragon Objembree: Pathtracer ISPC - Asian Dragon Objespeak: Text-To-Speech Synthesismt-dgemm: Sustained Floating-Point Ratespecfem3d: Homogeneous Halfspacebuild-ffmpeg: Time To Compilesvt-av1: Preset 4 - Bosphorus 1080pspecfem3d: Tomographic Modelonednn: Deconvolution Batch shapes_1d - f32 - CPUaskap: tConvolve MPI - Griddingaskap: tConvolve MPI - Degriddingspecfem3d: Mount St. Helensembree: Pathtracer ISPC - Crownincompact3d: input.i3d 193 Cells Per Directionembree: Pathtracer - Crownonednn: IP Shapes 1D - f32 - CPUembree: Pathtracer - Asian Dragonembree: Pathtracer ISPC - Asian Dragonaskap: Hogbom Clean OpenMPcloverleaf: Lagrangian-Eulerian Hydrodynamicslulesh: svt-av1: Preset 8 - Bosphorus 1080ppennant: sedovbigdraco: Church Facadeonednn: IP Shapes 3D - f32 - CPUaskap: tConvolve OpenMP - Degriddingaskap: tConvolve OpenMP - Griddingdraco: Lionsvt-av1: Preset 12 - Bosphorus 4Ksvt-av1: Preset 13 - Bosphorus 4Konednn: Convolution Batch Shapes Auto - f32 - CPUpennant: leblancbigincompact3d: input.i3d 129 Cells Per Directiononednn: Deconvolution Batch shapes_3d - f32 - CPUsvt-av1: Preset 12 - Bosphorus 1080psvt-av1: Preset 13 - Bosphorus 1080pab5 a5 b5 2p a5 2p b47040.48165225.348583260.83246.95743.73173.2343.67173.4721.59116.93165.7076.28688.7672.45105.7847.74553400013679600011.36740.45056824.72995716.55234.774.86330.5189126617.29028.08154095027.6120138886230864602746.573.44230.00670.523864.511729.38349617.20934908216.92810.29513.86220230011.67841461663.371169.107778.475173.8446109.98457934867222.837195.924604.842552.24156185.7504469363.7359120.39337259.8751425554248.48123581043.90172.5695669443.90172.53393950619.08133.3953.5219.3223.9219.587.1310.8924.0419.098.1215.4411.7115.610.2911.317.8421.62116.80915814164.4492011608308.335493.35437.35439.07428.516.12888.737706172.02106.9847.2067748891183.63749.62255430001351650001190.89.311.3643911.978.0540.24442825.59608539278.041276.817.62608.3412.161175.0127.03230.27138.841300.8752.61434.2744.51445.9270.81390988.51277.3281916.931888.216.931889.0526.541205.1126.681198.4523.922674.291.7435737.821.6238091.463975616.37434.614.8263191030.1158997047.29927.46754027327.620295791276873602692.467.54841121339692830.11464.640928.15729.0456916.81708024617.04210.23413.5301793946.9214536827.532799.511.7533214663.364717.21184731.2610773.828806.45211.3422257.137109.7119.5636158331.2461819018.320481.24885214.933198.1350.8276225.1040784.438041213.12487601.984549.83431992.6068340428.6592117.4378408.7912381419290.53920697046.70162.1946.89161.549.25126.2626.3414.8519.9814.85.488.1221.0814.113.829.036.087.736.196.4613.722.95110.01230.3781840329611.056599.68456.30457.81437.206.406136.5868343113.31110.4945.711182.61679.6453621000960590001229.19.5411.9612881.045.4850.74590422.3373962886.125.471304.218.21935.68.23886.4117.92172.5392.611361.5854.21460.1792.11478.1289.11438.81067.81326.52856.612.771252.0512.841244.8619841.4919.45822.1918.11767.131.2625209.621.1627340.963999716.84652.684.7432773949.1361494695.02245.7094271342.5213084860192603252756.965.33724422027191831.83743.958939.194127.82617.874524.98744586720.37810.7619.0896648574.4956524990.120991.718.8621990740.240819.630500843.94921.3799648.522844.9118869.56512.0920920.487107.38214.0011157180.6259319018.317750.44760220.813199.691.146567.9740225.067564012.76234629.3571.084339427.71276117.6045297.22322.93110.14231.0916.39110.2945.7936050009492400012.0250.69975222.70639917.2534.7648.73867645444.33457433513107260152603452820.470.85631.79544.188439.223618.640325.08962279720.6410.82819.63009634219.35555309240.119943.978748.507445.1054108.364226.733196.063622.732560.565452205.4639299.384145213.682868284219.40344.31170.94271146344.97168.45694118640.45144.31100.6537.1738.180.8118.638.9433.5593.2914.6535.1238.4933.2721.2627.777.7722.38112.819760537138.71712506.77738.59461.53463.68445.185.54871.6458.5592.5254.581390.361212.846845000790020001222.99.579.5742975.1510.5433.00107922.5639462946.9710.641315.6182013.5215.86914.2434.83182.1175.481332.3808.51454.7702.81482.7283.61437.510241306.72783.712.662523.5712.762504.3619.581632.8120.061594.1418.263501.691.3739455.8614.81227.964.78425.2210067458.28523.93606599722.592594131185021185792760.962.83645399640373924.49268.692264.409127.86831.34451514.49141946915.45510.4111.22476781310.522149980.141983.39.60945386873.330110.624130281.45082.6780176.806773.9612436.68115.6742030.038107.17.65636956820.9118061664112102.54734169.112169.6580.6743364.2947312.486542941.85167540.729525.15474130.1789452203.6511899.93268213.4678167991221.78941970243.64173.5600295843.77173.05225728353.25145.49128.3535.8145.89120.2728.5551.832.81112.4324.5660.7949.4637.8928.8838.67115.6822.10114.261775562138.56528749211068.87176.41448.03467.46440.565.76871.7323644558.57107.2947.071385.331305.966683000732600001227.19.59.9062948.3910.6332.97431623.3352752952.7610.641312182020.2115.76912.4234.91180.91176.761336.5741.51445.1702.21498.9282.81441.11013.41309.52775.912.662524.0512.792498.7419.691623.8320.071592.7118.253504.151.438800.341.3340352.488713315.04427.94.8428855325.4721902918.22223.26803264122.512584571175421177712850.869.53644074039684424.26868.702264.044128.13731.76087614.41593115815.34410.49511.79752558510.368551199.141983.39.5947693573.260210.762441681.09132.8845176.628773.7779434.78315.5142551.898104.1697.79332557290.91722615662.112678.94818176.107172.5730.6693494.4180122.483869081.89859565.057546.034OpenBenchmarking.org

PETSc

PETSc, the Portable, Extensible Toolkit for Scientific Computation, is for the scalable (parallel) solution of scientific applications modeled by partial differential equations. This test profile runs the PETSc "make streams" benchmark and records the throughput rate when all available cores are utilized for the MPI Streams build. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMB/s, More Is BetterPETSc 3.19Test: Streamsb5 a5 2p b16K32K48K64K80K56185.7531992.6174130.181. (CC) gcc options: -fPIC -O3 -O2 -lpthread -ludev -lpciaccess -lm

OpenVKL

OpenVKL is the Intel Open Volume Kernel Library that offers high-performance volume computation kernels and part of the Intel oneAPI rendering toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgItems / Sec, More Is BetterOpenVKL 1.3.1Benchmark: vklBenchmark ISPCab5 a5 b5 2p a5 2p b100200300400500SE +/- 0.33, N = 3470469340339452452MIN: 84 / MAX: 2616MIN: 84 / MAX: 2565MIN: 55 / MAX: 2309MIN: 54 / MAX: 2307MIN: 98 / MAX: 1875MIN: 99 / MAX: 2013

OpenFOAM

OpenFOAM is the leading free, open-source software for computational fluid dynamics (CFD). This test profile currently uses the drivaerFastback test case for analyzing automotive aerodynamics or alternatively the older motorBike input. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterOpenFOAM 10Input: drivaerFastback, Medium Mesh Size - Execution Timeab5 a5 b5 2p a5 2p b9018027036045040.48363.74428.66427.71205.46203.651. (CXX) g++ options: -std=c++14 -m64 -O3 -ftemplate-depth-100 -fPIC -fuse-ld=bfd -Xlinker --add-needed --no-as-needed -lfoamToVTK -ldynamicMesh -llagrangian -lgenericPatchFields -lfileFormats -lOpenFOAM -ldl -lm

OpenBenchmarking.orgSeconds, Fewer Is BetterOpenFOAM 10Input: drivaerFastback, Medium Mesh Size - Mesh Timeab5 a5 b5 2p a5 2p b30609012015025.35120.39117.44117.6099.3899.931. (CXX) g++ options: -std=c++14 -m64 -O3 -ftemplate-depth-100 -fPIC -fuse-ld=bfd -Xlinker --add-needed --no-as-needed -lfoamToVTK -ldynamicMesh -llagrangian -lgenericPatchFields -lfileFormats -lOpenFOAM -ldl -lm

Blender

Blender is an open-source 3D creation and modeling software project. This test is of Blender's Cycles performance with various sample files. GPU computing via NVIDIA OptiX and NVIDIA CUDA is currently supported as well as HIP for AMD Radeon GPUs and Intel oneAPI for Intel Graphics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterBlender 3.5Blend File: Barbershop - Compute: CPU-Onlyab5 a5 2p a5 2p b90180270360450SE +/- 0.09, N = 3260.83259.87408.79213.60213.46

LeelaChessZero

LeelaChessZero (lc0 / lczero) is a chess engine automated vian neural networks. This test profile can be used for OpenCL, CUDA + cuDNN, and BLAS (CPU-based) benchmarking. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgNodes Per Second, More Is BetterLeelaChessZero 0.28Backend: Eigenb5 a5 2p a5 2p b2K4K6K8K10K51421238828678161. (CXX) g++ options: -flto -pthread

OpenBenchmarking.orgNodes Per Second, More Is BetterLeelaChessZero 0.28Backend: BLASb5 a5 2p a5 2p b2K4K6K8K10K55541419828479911. (CXX) g++ options: -flto -pthread

Timed LLVM Compilation

This test times how long it takes to compile/build the LLVM compiler stack. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterTimed LLVM Compilation 16.0Build System: Unix Makefilesab5 a5 b5 2p a5 2p b60120180240300SE +/- 0.96, N = 3246.96248.48290.54297.22219.40221.79

OpenCV

This is a benchmark of the OpenCV (Computer Vision) library's built-in performance tests. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenCV 4.7Test: Graph APIb5 a5 2p b90K180K270K360K450K2358102069704197021. (CXX) g++ options: -fPIC -fsigned-char -pthread -fomit-frame-pointer -ffunction-sections -fdata-sections -msse -msse2 -msse3 -fvisibility=hidden -O3 -shared

FFmpeg

This is a benchmark of the FFmpeg multimedia framework. The FFmpeg test profile is making use of a modified version of vbench from Columbia University's Architecture and Design Lab (ARCADE) [http://arcade.cs.columbia.edu/vbench/] that is a benchmark for video-as-a-service workloads. The test profile offers the options of a range of vbench scenarios based on freely distributable video content and offers the options of using the x264 or x265 video encoders for transcoding. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFPS, More Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Platformab5 a5 2p a5 2p b1122334455SE +/- 0.02, N = 343.7343.9046.7044.3143.641. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

OpenBenchmarking.orgSeconds, Fewer Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Platformab5 a5 2p a5 2p b4080120160200SE +/- 0.08, N = 3173.23172.57162.19170.94173.561. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

OpenBenchmarking.orgFPS, More Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Video On Demandab5 a5 2p a5 2p b1122334455SE +/- 0.04, N = 343.6743.9046.8944.9743.771. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

OpenBenchmarking.orgSeconds, Fewer Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Video On Demandab5 a5 2p a5 2p b4080120160200SE +/- 0.15, N = 3173.47172.53161.54168.46173.051. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

NCNN

NCNN is a high performance neural network inference framework optimized for mobile and other platforms developed by Tencent. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: FastestDetb5 a5 2p a5 2p b122436486019.089.2540.4553.25MIN: 13.65 / MAX: 21.7MIN: 9.12 / MAX: 9.81MIN: 27.4 / MAX: 462.07MIN: 30.07 / MAX: 66.771. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: vision_transformerb5 a5 2p a5 2p b306090120150133.39126.26144.31145.49MIN: 129.7 / MAX: 252.77MIN: 125.42 / MAX: 132.03MIN: 140.5 / MAX: 157.63MIN: 141.27 / MAX: 245.341. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: regnety_400mb5 a5 2p a5 2p b30609012015053.5226.34100.65128.35MIN: 50.93 / MAX: 71.06MIN: 25.99 / MAX: 28.26MIN: 97.81 / MAX: 136.12MIN: 111.43 / MAX: 240.271. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: squeezenet_ssdb5 a5 2p a5 2p b91827364519.3214.8537.1735.81MIN: 18.86 / MAX: 22.39MIN: 14.49 / MAX: 25.32MIN: 30.62 / MAX: 51.54MIN: 29.14 / MAX: 58.451. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: yolov4-tinyb5 a5 2p a5 2p b102030405023.9219.9838.1045.89MIN: 23.17 / MAX: 30.48MIN: 19.53 / MAX: 23.19MIN: 29.08 / MAX: 101.85MIN: 34.08 / MAX: 64.661. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: resnet50b5 a5 2p a5 2p b30609012015019.5814.8080.81120.27MIN: 19.15 / MAX: 44.79MIN: 14.6 / MAX: 16.84MIN: 62.51 / MAX: 112.38MIN: 42.99 / MAX: 192.411. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: alexnetb5 a5 2p a5 2p b7142128357.135.4818.6028.55MIN: 6.97 / MAX: 7.76MIN: 5.36 / MAX: 6.34MIN: 17.59 / MAX: 34.64MIN: 12.6 / MAX: 62.181. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: resnet18b5 a5 2p a5 2p b122436486010.898.1238.9451.80MIN: 10.68 / MAX: 11.74MIN: 8.01 / MAX: 10.04MIN: 16.05 / MAX: 124.98MIN: 16.09 / MAX: 93.561. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: vgg16b5 a5 2p a5 2p b81624324024.0421.0833.5532.81MIN: 23.49 / MAX: 30.66MIN: 20.78 / MAX: 24.35MIN: 28.65 / MAX: 42.53MIN: 30.06 / MAX: 44.761. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: googlenetb5 a5 2p a5 2p b30609012015019.0914.1193.29112.43MIN: 18.77 / MAX: 25.76MIN: 13.96 / MAX: 17.22MIN: 52.46 / MAX: 137.19MIN: 29.99 / MAX: 148.591. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: blazefaceb5 a5 2p a5 2p b6121824308.123.8214.6524.56MIN: 6.94 / MAX: 11.1MIN: 3.45 / MAX: 79.74MIN: 11.34 / MAX: 73.36MIN: 20.64 / MAX: 91.21. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: efficientnet-b0b5 a5 2p a5 2p b142842567015.449.0335.1260.79MIN: 13.63 / MAX: 18.67MIN: 8.93 / MAX: 11.07MIN: 33.83 / MAX: 41.96MIN: 47.67 / MAX: 141.851. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: mnasnetb5 a5 2p a5 2p b112233445511.716.0838.4949.46MIN: 9.43 / MAX: 20.81MIN: 6.01 / MAX: 6.54MIN: 25.51 / MAX: 75.24MIN: 36.42 / MAX: 176.461. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: shufflenet-v2b5 a5 2p a5 2p b91827364515.607.7333.2737.89MIN: 12.95 / MAX: 19.73MIN: 7.58 / MAX: 9.71MIN: 29.37 / MAX: 96.69MIN: 34.63 / MAX: 113.321. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU-v3-v3 - Model: mobilenet-v3b5 a5 2p a5 2p b71421283510.296.1921.2628.88MIN: 9.51 / MAX: 11.93MIN: 6.05 / MAX: 6.93MIN: 20.79 / MAX: 28.25MIN: 23.66 / MAX: 168.431. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU-v2-v2 - Model: mobilenet-v2b5 a5 2p a5 2p b91827364511.306.4627.7038.67MIN: 9.74 / MAX: 14.96MIN: 6.35 / MAX: 8.73MIN: 23.18 / MAX: 43.54MIN: 28.02 / MAX: 119.641. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

OpenBenchmarking.orgms, Fewer Is BetterNCNN 20220729Target: CPU - Model: mobilenetb5 a5 2p a5 2p b30609012015017.8413.7077.77115.68MIN: 17.55 / MAX: 25.78MIN: 13.55 / MAX: 14.38MIN: 67.11 / MAX: 156MIN: 64.45 / MAX: 159.931. (CXX) g++ options: -O3 -rdynamic -lgomp -lpthread

FFmpeg

This is a benchmark of the FFmpeg multimedia framework. The FFmpeg test profile is making use of a modified version of vbench from Columbia University's Architecture and Design Lab (ARCADE) [http://arcade.cs.columbia.edu/vbench/] that is a benchmark for video-as-a-service workloads. The test profile offers the options of a range of vbench scenarios based on freely distributable video content and offers the options of using the x264 or x265 video encoders for transcoding. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFPS, More Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Uploadab5 a5 b5 2p a5 2p b510152025SE +/- 0.01, N = 321.5921.6222.9522.9322.3822.101. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

OpenBenchmarking.orgSeconds, Fewer Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Uploadab5 a5 b5 2p a5 2p b306090120150SE +/- 0.05, N = 3116.93116.81110.01110.14112.82114.261. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

Timed LLVM Compilation

This test times how long it takes to compile/build the LLVM compiler stack. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterTimed LLVM Compilation 16.0Build System: Ninjaab5 a5 b5 2p a5 2p b50100150200250SE +/- 0.08, N = 3165.71164.45230.38231.09138.72138.57

OpenCV

This is a benchmark of the OpenCV (Computer Vision) library's built-in performance tests. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenCV 4.7Test: Stitchingb5 a5 2p b60K120K180K240K300K2011601840322874921. (CXX) g++ options: -fPIC -fsigned-char -pthread -fomit-frame-pointer -ffunction-sections -fdata-sections -msse -msse2 -msse3 -fvisibility=hidden -O3 -shared

ASKAP

ASKAP is a set of benchmarks from the Australian SKA Pathfinder. The principal ASKAP benchmarks are the Hogbom Clean Benchmark (tHogbomClean) and Convolutional Resamping Benchmark (tConvolve) as well as some previous ASKAP benchmarks being included as well for OpenCL and CUDA execution of tConvolve. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMillion Grid Points Per Second, More Is BetterASKAP 1.0Test: tConvolve MT - Degriddingb5 a5 2p a5 2p b3K6K9K12K15K8308.339611.0512506.7011068.801. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

OpenBenchmarking.orgMillion Grid Points Per Second, More Is BetterASKAP 1.0Test: tConvolve MT - Griddingb5 a5 2p a5 2p b170034005100680085005493.356599.687738.597176.411. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

ClickHouse

ClickHouse is an open-source, high performance OLAP data management system. This test profile uses ClickHouse's standard benchmark recommendations per https://clickhouse.com/docs/en/operations/performance-test/ / https://github.com/ClickHouse/ClickBench/tree/main/clickhouse with the 100 million rows web analytics dataset. The reported value is the query processing time using the geometric mean of all separate queries performed as an aggregate. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgQueries Per Minute, Geo Mean, More Is BetterClickHouse 22.12.3.5100M Rows Hits Dataset, Third Runb5 a5 2p a5 2p b100200300400500437.35456.30461.53448.03MIN: 35.59 / MAX: 5454.55MIN: 24.65 / MAX: 5454.55MIN: 41.49 / MAX: 3000MIN: 41.38 / MAX: 2608.7

OpenBenchmarking.orgQueries Per Minute, Geo Mean, More Is BetterClickHouse 22.12.3.5100M Rows Hits Dataset, Second Runb5 a5 2p a5 2p b100200300400500439.07457.81463.68467.46MIN: 35.82 / MAX: 6000MIN: 24.13 / MAX: 5454.55MIN: 41.64 / MAX: 4615.38MIN: 40.6 / MAX: 4615.38

OpenBenchmarking.orgQueries Per Minute, Geo Mean, More Is BetterClickHouse 22.12.3.5100M Rows Hits Dataset, First Run / Cold Cacheb5 a5 2p a5 2p b100200300400500428.51437.20445.18440.56MIN: 34.8 / MAX: 5454.55MIN: 24.3 / MAX: 6000MIN: 41.18 / MAX: 3157.89MIN: 40.98 / MAX: 4000

VVenC

VVenC is the Fraunhofer Versatile Video Encoder as a fast/efficient H.266/VVC encoder. The vvenc encoder makes use of SIMD Everywhere (SIMDe). The vvenc software is published under the Clear BSD License. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterVVenC 1.8Video Input: Bosphorus 4K - Video Preset: Fastab5 a5 b5 2p a5 2p b246810SE +/- 0.010, N = 36.2866.1286.4066.3905.5485.7681. (CXX) g++ options: -O3 -flto=auto -fno-fat-lto-objects

Blender

Blender is an open-source 3D creation and modeling software project. This test is of Blender's Cycles performance with various sample files. GPU computing via NVIDIA OptiX and NVIDIA CUDA is currently supported as well as HIP for AMD Radeon GPUs and Intel oneAPI for Intel Graphics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterBlender 3.5Blend File: Pabellon Barcelona - Compute: CPU-Onlyab5 a5 2p a5 2p b306090120150SE +/- 0.10, N = 388.7688.73136.5871.6471.73

OpenCV

This is a benchmark of the OpenCV (Computer Vision) library's built-in performance tests. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenCV 4.7Test: Coreb5 a5 2p b50K100K150K200K250K77061683432364451. (CXX) g++ options: -fPIC -fsigned-char -pthread -fomit-frame-pointer -ffunction-sections -fdata-sections -msse -msse2 -msse3 -fvisibility=hidden -O3 -shared

Blender

Blender is an open-source 3D creation and modeling software project. This test is of Blender's Cycles performance with various sample files. GPU computing via NVIDIA OptiX and NVIDIA CUDA is currently supported as well as HIP for AMD Radeon GPUs and Intel oneAPI for Intel Graphics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterBlender 3.5Blend File: Classroom - Compute: CPU-Onlyab5 a5 2p a5 2p b306090120150SE +/- 0.17, N = 372.4572.02113.3158.5558.57

FFmpeg

This is a benchmark of the FFmpeg multimedia framework. The FFmpeg test profile is making use of a modified version of vbench from Columbia University's Architecture and Design Lab (ARCADE) [http://arcade.cs.columbia.edu/vbench/] that is a benchmark for video-as-a-service workloads. The test profile offers the options of a range of vbench scenarios based on freely distributable video content and offers the options of using the x264 or x265 video encoders for transcoding. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFPS, More Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Liveab5 a5 b5 2p a5 2p b20406080100SE +/- 0.29, N = 3105.78106.98110.49110.2992.52107.291. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

OpenBenchmarking.orgSeconds, Fewer Is BetterFFmpeg 6.0Encoder: libx265 - Scenario: Liveab5 a5 b5 2p a5 2p b1224364860SE +/- 0.13, N = 347.7447.2145.7145.7954.5847.071. (CXX) g++ options: -O3 -rdynamic -lpthread -lrt -ldl -lnuma

oneDNN

This is a test of the Intel oneDNN as an Intel-optimized library for Deep Neural Networks and making use of its built-in benchdnn functionality. The result is the total perf time reported. Intel oneDNN was formerly known as DNNL (Deep Neural Network Library) and MKL-DNN before being rebranded as part of the Intel oneAPI toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: Recurrent Neural Network Training - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b300600900120015001183.631182.611390.361385.33MIN: 1162.73MIN: 1161.83MIN: 1287.43MIN: 1314.761. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: Recurrent Neural Network Inference - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b30060090012001500749.62679.651212.841305.96MIN: 731.75MIN: 664.64MIN: 1070.52MIN: 1060.611. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

John The Ripper

This is a benchmark of John The Ripper, which is a password cracker. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgReal C/S, More Is BetterJohn The Ripper 2023.03.14Test: MD5ab5 a5 b5 2p a5 2p b1.5M3M4.5M6M7.5MSE +/- 1000.00, N = 35534000554300036210003605000684500066830001. (CC) gcc options: -m64 -lssl -lcrypto -fopenmp -lgmp -lm -lrt -lz -ldl -lcrypt -lbz2

OpenBenchmarking.orgReal C/S, More Is BetterJohn The Ripper 2023.03.14Test: HMAC-SHA512ab5 a5 b5 2p a5 2p b30M60M90M120M150MSE +/- 266743.32, N = 3136796000135165000960590009492400079002000732600001. (CC) gcc options: -m64 -lssl -lcrypto -fopenmp -lgmp -lm -lrt -lz -ldl -lcrypt -lbz2

Zstd Compression

This test measures the time needed to compress/decompress a sample file (silesia.tar) using Zstd (Zstandard) compression with options for different compression levels / settings. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 19, Long Mode - Decompression Speedb5 a5 2p a5 2p b300600900120015001190.81229.11222.91227.11. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 19, Long Mode - Compression Speedb5 a5 2p a5 2p b36912159.309.549.579.501. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

VVenC

VVenC is the Fraunhofer Versatile Video Encoder as a fast/efficient H.266/VVC encoder. The vvenc encoder makes use of SIMD Everywhere (SIMDe). The vvenc software is published under the Clear BSD License. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterVVenC 1.8Video Input: Bosphorus 4K - Video Preset: Fasterab5 a5 b5 2p a5 2p b3691215SE +/- 0.022, N = 311.36711.36411.96112.0209.5749.9061. (CXX) g++ options: -O3 -flto=auto -fno-fat-lto-objects

OpenVINO

This is a test of the Intel OpenVINO, a toolkit around neural networks, using its built-in benchmarking support and analyzing the throughput and latency for various models. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Person Detection FP16 - Device: CPUb5 a5 2p a5 2p b80016002400320040003911.972881.042975.152948.39MIN: 3337.4 / MAX: 4451.63MIN: 1536.21 / MAX: 3142.35MIN: 2241.37 / MAX: 3616.82MIN: 1547.54 / MAX: 3537.31. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Person Detection FP16 - Device: CPUb5 a5 2p a5 2p b36912158.055.4810.5410.631. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenFOAM

OpenFOAM is the leading free, open-source software for computational fluid dynamics (CFD). This test profile currently uses the drivaerFastback test case for analyzing automotive aerodynamics or alternatively the older motorBike input. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterOpenFOAM 10Input: drivaerFastback, Small Mesh Size - Execution Timeab5 a5 b5 2p a5 2p b112233445540.4540.2450.7550.7033.0032.971. (CXX) g++ options: -std=c++14 -m64 -O3 -ftemplate-depth-100 -fPIC -fuse-ld=bfd -Xlinker --add-needed --no-as-needed -lfoamToVTK -ldynamicMesh -llagrangian -lgenericPatchFields -lfileFormats -lOpenFOAM -ldl -lm

OpenBenchmarking.orgSeconds, Fewer Is BetterOpenFOAM 10Input: drivaerFastback, Small Mesh Size - Mesh Timeab5 a5 b5 2p a5 2p b61218243024.7325.6022.3422.7122.5623.341. (CXX) g++ options: -std=c++14 -m64 -O3 -ftemplate-depth-100 -fPIC -fuse-ld=bfd -Xlinker --add-needed --no-as-needed -lfoamToVTK -ldynamicMesh -llagrangian -lgenericPatchFields -lfileFormats -lOpenFOAM -ldl -lm

OpenVINO

This is a test of the Intel OpenVINO, a toolkit around neural networks, using its built-in benchmarking support and analyzing the throughput and latency for various models. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Person Detection FP32 - Device: CPUb5 a5 2p a5 2p b80016002400320040003927.002886.122946.972952.76MIN: 3402.58 / MAX: 4474.47MIN: 1694.68 / MAX: 3104.67MIN: 2004.15 / MAX: 3534.38MIN: 2193.59 / MAX: 3652.321. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Person Detection FP32 - Device: CPUb5 a5 2p a5 2p b36912158.045.4710.6410.641. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

Zstd Compression

This test measures the time needed to compress/decompress a sample file (silesia.tar) using Zstd (Zstandard) compression with options for different compression levels / settings. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 19 - Decompression Speedb5 a5 2p a5 2p b300600900120015001276.81304.21315.61312.01. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 19 - Compression Speedb5 a5 2p a5 2p b4812162017.618.218.018.01. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenVINO

This is a test of the Intel OpenVINO, a toolkit around neural networks, using its built-in benchmarking support and analyzing the throughput and latency for various models. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Face Detection FP16 - Device: CPUb5 a5 2p a5 2p b60012001800240030002608.341935.602013.522020.21MIN: 2421.38 / MAX: 2754.89MIN: 1852.05 / MAX: 1974.19MIN: 1890.96 / MAX: 2802.82MIN: 1823.96 / MAX: 3111.511. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Face Detection FP16 - Device: CPUb5 a5 2p a5 2p b4812162012.168.2315.8615.761. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Face Detection FP16-INT8 - Device: CPUb5 a5 2p a5 2p b300600900120015001175.01886.41914.24912.42MIN: 982.69 / MAX: 1202.21MIN: 851.09 / MAX: 900.44MIN: 797.83 / MAX: 966.84MIN: 878.63 / MAX: 988.741. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Face Detection FP16-INT8 - Device: CPUb5 a5 2p a5 2p b81624324027.0317.9234.8334.911. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Machine Translation EN To DE FP16 - Device: CPUb5 a5 2p a5 2p b50100150200250230.27172.53182.10180.91MIN: 166.99 / MAX: 311.89MIN: 81.35 / MAX: 207.95MIN: 117.14 / MAX: 548.18MIN: 124.49 / MAX: 288.011. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Machine Translation EN To DE FP16 - Device: CPUb5 a5 2p a5 2p b4080120160200138.8492.61175.48176.761. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

Zstd Compression

This test measures the time needed to compress/decompress a sample file (silesia.tar) using Zstd (Zstandard) compression with options for different compression levels / settings. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 3, Long Mode - Decompression Speedb5 a5 2p a5 2p b300600900120015001300.81361.51332.31336.51. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 3, Long Mode - Compression Speedb5 a5 2p a5 2p b2004006008001000752.6854.2808.5741.51. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 8, Long Mode - Decompression Speedb5 a5 2p a5 2p b300600900120015001434.21460.11454.71445.11. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 8, Long Mode - Compression Speedb5 a5 2p a5 2p b2004006008001000744.5792.1702.8702.21. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 12 - Decompression Speedb5 a5 2p a5 2p b300600900120015001445.91478.11482.71498.91. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 12 - Compression Speedb5 a5 2p a5 2p b60120180240300270.8289.1283.6282.81. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 8 - Decompression Speedb5 a5 2p a5 2p b300600900120015001390.01438.81437.51441.11. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 8 - Compression Speedb5 a5 2p a5 2p b2004006008001000988.51067.81024.01013.41. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 3 - Decompression Speedb5 a5 2p a5 2p b300600900120015001277.31326.51306.71309.51. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenBenchmarking.orgMB/s, More Is BetterZstd Compression 1.5.4Compression Level: 3 - Compression Speedb5 a5 2p a5 2p b60012001800240030002819.02856.62783.72775.91. (CC) gcc options: -O3 -pthread -lz -llzma -llz4

OpenVINO

This is a test of the Intel OpenVINO, a toolkit around neural networks, using its built-in benchmarking support and analyzing the throughput and latency for various models. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Person Vehicle Bike Detection FP16 - Device: CPUb5 a5 2p a5 2p b4812162016.9312.7712.6612.66MIN: 13.88 / MAX: 33.11MIN: 7.39 / MAX: 23.62MIN: 7.58 / MAX: 53.45MIN: 8.38 / MAX: 48.881. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Person Vehicle Bike Detection FP16 - Device: CPUb5 a5 2p a5 2p b50010001500200025001888.201252.052523.572524.051. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Vehicle Detection FP16-INT8 - Device: CPUb5 a5 2p a5 2p b4812162016.9312.8412.7612.79MIN: 10.73 / MAX: 31.24MIN: 6.96 / MAX: 23.28MIN: 7.65 / MAX: 43.58MIN: 7.68 / MAX: 43.181. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Vehicle Detection FP16-INT8 - Device: CPUb5 a5 2p a5 2p b50010001500200025001889.051244.862504.362498.741. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Vehicle Detection FP16 - Device: CPUb5 a5 2p a5 2p b61218243026.5419.0019.5819.69MIN: 14.19 / MAX: 63.19MIN: 13.62 / MAX: 32.75MIN: 11.25 / MAX: 73.87MIN: 11.03 / MAX: 75.831. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Vehicle Detection FP16 - Device: CPUb5 a5 2p a5 2p b4008001200160020001205.11841.491632.811623.831. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Weld Porosity Detection FP16 - Device: CPUb5 a5 2p a5 2p b61218243026.6819.4520.0620.07MIN: 15.32 / MAX: 46.54MIN: 11.98 / MAX: 28.4MIN: 11.41 / MAX: 47.48MIN: 13.26 / MAX: 75.831. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Weld Porosity Detection FP16 - Device: CPUb5 a5 2p a5 2p b300600900120015001198.45822.191594.141592.711. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Weld Porosity Detection FP16-INT8 - Device: CPUb5 a5 2p a5 2p b61218243023.9218.1018.2618.25MIN: 15.02 / MAX: 35.74MIN: 9.23 / MAX: 28.11MIN: 10.53 / MAX: 60.19MIN: 8.84 / MAX: 40.731. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Weld Porosity Detection FP16-INT8 - Device: CPUb5 a5 2p a5 2p b80016002400320040002674.291767.133501.693504.151. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Age Gender Recognition Retail 0013 FP16 - Device: CPUb5 a5 2p a5 2p b0.39150.7831.17451.5661.95751.741.261.371.40MIN: 0.84 / MAX: 14.57MIN: 0.69 / MAX: 12.96MIN: 0.67 / MAX: 28.86MIN: 0.68 / MAX: 42.11. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Age Gender Recognition Retail 0013 FP16 - Device: CPUb5 a5 2p a5 2p b8K16K24K32K40K35737.8225209.6239455.8638800.341. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgms, Fewer Is BetterOpenVINO 2022.3Model: Age Gender Recognition Retail 0013 FP16-INT8 - Device: CPUb5 a5 2p b0.36450.7291.09351.4581.82251.621.161.33MIN: 0.69 / MAX: 13.34MIN: 0.66 / MAX: 12.23MIN: 0.64 / MAX: 26.341. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenBenchmarking.orgFPS, More Is BetterOpenVINO 2022.3Model: Age Gender Recognition Retail 0013 FP16-INT8 - Device: CPUb5 a5 2p b9K18K27K36K45K38091.4627340.9640352.481. (CXX) g++ options: -isystem -fsigned-char -ffunction-sections -fdata-sections -msse4.1 -msse4.2 -O3 -fno-strict-overflow -fwrapv -fPIC -fvisibility=hidden -Os -std=c++11 -MD -MT -MF

OpenCV

This is a benchmark of the OpenCV (Computer Vision) library's built-in performance tests. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenCV 4.7Test: DNN - Deep Neural Networkb5 a5 2p b20K40K60K80K100K3975639997871331. (CXX) g++ options: -fPIC -fsigned-char -pthread -fomit-frame-pointer -ffunction-sections -fdata-sections -msse -msse2 -msse3 -fvisibility=hidden -O3 -shared

VVenC

VVenC is the Fraunhofer Versatile Video Encoder as a fast/efficient H.266/VVC encoder. The vvenc encoder makes use of SIMD Everywhere (SIMDe). The vvenc software is published under the Clear BSD License. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterVVenC 1.8Video Input: Bosphorus 1080p - Video Preset: Fastab5 a5 b5 2p a5 2p b48121620SE +/- 0.10, N = 316.5516.3716.8517.2514.8115.041. (CXX) g++ options: -O3 -flto=auto -fno-fat-lto-objects

Blender

Blender is an open-source 3D creation and modeling software project. This test is of Blender's Cycles performance with various sample files. GPU computing via NVIDIA OptiX and NVIDIA CUDA is currently supported as well as HIP for AMD Radeon GPUs and Intel oneAPI for Intel Graphics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterBlender 3.5Blend File: Fishy Cat - Compute: CPU-Onlyab5 a5 2p a5 2p b1224364860SE +/- 0.04, N = 334.7734.6152.6827.9627.90

SVT-AV1

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 4 - Input: Bosphorus 4Kab5 a5 b5 2p a5 2p b1.09422.18843.28264.37685.471SE +/- 0.021, N = 34.8634.8264.7434.7604.7844.8421. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

OpenCV

This is a benchmark of the OpenCV (Computer Vision) library's built-in performance tests. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterOpenCV 4.7Test: Object Detectionb5 a5 2p b20K40K60K80K100K3191027739885531. (CXX) g++ options: -fPIC -fsigned-char -pthread -fomit-frame-pointer -ffunction-sections -fdata-sections -msse -msse2 -msse3 -fvisibility=hidden -O3 -shared

SPECFEM3D

simulates acoustic (fluid), elastic (solid), coupled acoustic/elastic, poroelastic or seismic wave propagation in any type of conforming mesh of hexahedra. This test profile currently relies on CPU-based execution for SPECFEM3D and using a variety of their built-in examples/models for benchmarking. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSPECFEM3D 4.0Model: Layered Halfspaceab5 a5 b5 2p a5 2p b1122334455SE +/- 0.29, N = 330.5230.1249.1448.7425.2225.471. (F9X) gfortran options: -O2 -fopenmp -std=f2003 -fimplicit-none -fmax-errors=10 -pedantic -pedantic-errors -O3 -finline-functions -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

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 2023Implementation: MPI CPU - Input: water_GMX50_bareab5 a5 2p a5 2p b246810SE +/- 0.026, N = 37.2907.2995.0228.2858.2221. (CXX) g++ options: -O3

SPECFEM3D

simulates acoustic (fluid), elastic (solid), coupled acoustic/elastic, poroelastic or seismic wave propagation in any type of conforming mesh of hexahedra. This test profile currently relies on CPU-based execution for SPECFEM3D and using a variety of their built-in examples/models for benchmarking. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSPECFEM3D 4.0Model: Water-layered Halfspaceab5 a5 b5 2p a5 2p b1020304050SE +/- 0.13, N = 328.0827.4745.7144.3323.9423.271. (F9X) gfortran options: -O2 -fopenmp -std=f2003 -fimplicit-none -fmax-errors=10 -pedantic -pedantic-errors -O3 -finline-functions -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

Blender

Blender is an open-source 3D creation and modeling software project. This test is of Blender's Cycles performance with various sample files. GPU computing via NVIDIA OptiX and NVIDIA CUDA is currently supported as well as HIP for AMD Radeon GPUs and Intel oneAPI for Intel Graphics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterBlender 3.5Blend File: BMW27 - Compute: CPU-Onlyab5 a5 2p a5 2p b1020304050SE +/- 0.03, N = 327.6127.6042.5222.5922.51

John The Ripper

This is a benchmark of John The Ripper, which is a password cracker. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgReal C/S, More Is BetterJohn The Ripper 2023.03.14Test: WPA PSKab5 a5 b5 2p a5 2p b60K120K180K240K300KSE +/- 297.59, N = 32013882029571308481310722594132584571. (CC) gcc options: -m64 -lssl -lcrypto -fopenmp -lgmp -lm -lrt -lz -ldl -lcrypt -lbz2

OpenBenchmarking.orgReal C/S, More Is BetterJohn The Ripper 2023.03.14Test: bcryptab5 a5 b5 2p a5 2p b30K60K90K120K150KSE +/- 99.80, N = 3862309127660192601521185021175421. (CC) gcc options: -m64 -lssl -lcrypto -fopenmp -lgmp -lm -lrt -lz -ldl -lcrypt -lbz2

OpenBenchmarking.orgReal C/S, More Is BetterJohn The Ripper 2023.03.14Test: Blowfishab5 a5 b5 2p a5 2p b30K60K90K120K150KSE +/- 185.66, N = 3864608736060325603451185791177711. (CC) gcc options: -m64 -lssl -lcrypto -fopenmp -lgmp -lm -lrt -lz -ldl -lcrypt -lbz2

QuantLib

QuantLib is an open-source library/framework around quantitative finance for modeling, trading and risk management scenarios. QuantLib is written in C++ with Boost and its built-in benchmark used reports the QuantLib Benchmark Index benchmark score. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMFLOPS, More Is BetterQuantLib 1.30ab5 a5 b5 2p a5 2p b6001200180024003000SE +/- 25.52, N = 32746.52692.42756.92820.42760.92850.81. (CXX) g++ options: -O3 -march=native -fPIE -pie

SVT-AV1

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 8 - Input: Bosphorus 4Kab5 a5 b5 2p a5 2p b1632486480SE +/- 0.56, N = 1273.4467.5565.3470.8662.8469.541. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

7-Zip Compression

This is a test of 7-Zip compression/decompression with its integrated benchmark feature. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMIPS, More Is Better7-Zip Compression 22.01Test: Decompression Ratingb5 a5 2p a5 2p b100K200K300K400K500K4112132442204539964407401. (CXX) g++ options: -lpthread -ldl -O2 -fPIC

OpenBenchmarking.orgMIPS, More Is Better7-Zip Compression 22.01Test: Compression Ratingb5 a5 2p a5 2p b90K180K270K360K450K3969282719184037393968441. (CXX) g++ options: -lpthread -ldl -O2 -fPIC

VVenC

VVenC is the Fraunhofer Versatile Video Encoder as a fast/efficient H.266/VVC encoder. The vvenc encoder makes use of SIMD Everywhere (SIMDe). The vvenc software is published under the Clear BSD License. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is BetterVVenC 1.8Video Input: Bosphorus 1080p - Video Preset: Fasterab5 a5 b5 2p a5 2p b714212835SE +/- 0.03, N = 330.0130.1131.8431.8024.4924.271. (CXX) g++ options: -O3 -flto=auto -fno-fat-lto-objects

Embree

OpenBenchmarking.orgFrames Per Second, More Is BetterEmbree 4.0.1Binary: Pathtracer - Model: Asian Dragon Obja5 a5 b5 2p a5 2p b1632486480SE +/- 0.08, N = 370.5243.9644.1968.6968.70MIN: 69.67 / MAX: 71.94MIN: 43.73 / MAX: 44.3MIN: 43.94 / MAX: 44.51MIN: 68.03 / MAX: 70.15MIN: 67.96 / MAX: 69.64

OpenBenchmarking.orgFrames Per Second, More Is BetterEmbree 4.0.1Binary: Pathtracer ISPC - Model: Asian Dragon Objab5 a5 b5 2p a5 2p b1428425670SE +/- 0.03, N = 364.5164.6439.1939.2264.4164.04MIN: 63.96 / MAX: 66.18MIN: 64.13 / MAX: 65.46MIN: 38.97 / MAX: 39.59MIN: 39 / MAX: 39.63MIN: 63.78 / MAX: 65.49MIN: 63.29 / MAX: 64.92

eSpeak-NG Speech Engine

This test times how long it takes the eSpeak speech synthesizer to read Project Gutenberg's The Outline of Science and output to a WAV file. This test profile is now tracking the eSpeak-NG version of eSpeak. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BettereSpeak-NG Speech Engine 20200907Text-To-Speech Synthesisb5 a5 2p a5 2p b71421283528.1627.8327.8728.141. (CC) gcc options: -O2 -std=c99

ACES DGEMM

This is a multi-threaded DGEMM benchmark. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOP/s, More Is BetterACES DGEMM 1.0Sustained Floating-Point Rateab5 a5 b5 2p a5 2p b714212835SE +/- 0.25, N = 1529.3829.0517.8718.6431.3431.761. (CC) gcc options: -O3 -march=native -fopenmp

SPECFEM3D

simulates acoustic (fluid), elastic (solid), coupled acoustic/elastic, poroelastic or seismic wave propagation in any type of conforming mesh of hexahedra. This test profile currently relies on CPU-based execution for SPECFEM3D and using a variety of their built-in examples/models for benchmarking. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSPECFEM3D 4.0Model: Homogeneous Halfspaceab5 a5 b5 2p a5 2p b612182430SE +/- 0.20, N = 317.2116.8224.9925.0914.4914.421. (F9X) gfortran options: -O2 -fopenmp -std=f2003 -fimplicit-none -fmax-errors=10 -pedantic -pedantic-errors -O3 -finline-functions -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

Timed FFmpeg Compilation

This test times how long it takes to build the FFmpeg multimedia library. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterTimed FFmpeg Compilation 6.0Time To Compileab5 a5 b5 2p a5 2p b510152025SE +/- 0.03, N = 316.9317.0420.3820.6415.4615.34

SVT-AV1

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 4 - Input: Bosphorus 1080pab5 a5 b5 2p a5 2p b3691215SE +/- 0.02, N = 310.3010.2310.7610.8310.4110.501. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

SPECFEM3D

simulates acoustic (fluid), elastic (solid), coupled acoustic/elastic, poroelastic or seismic wave propagation in any type of conforming mesh of hexahedra. This test profile currently relies on CPU-based execution for SPECFEM3D and using a variety of their built-in examples/models for benchmarking. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSPECFEM3D 4.0Model: Tomographic Modelab5 a5 b5 2p a5 2p b510152025SE +/- 0.15, N = 313.8613.5319.0919.6311.2211.801. (F9X) gfortran options: -O2 -fopenmp -std=f2003 -fimplicit-none -fmax-errors=10 -pedantic -pedantic-errors -O3 -finline-functions -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

oneDNN

This is a test of the Intel oneDNN as an Intel-optimized library for Deep Neural Networks and making use of its built-in benchdnn functionality. The result is the total perf time reported. Intel oneDNN was formerly known as DNNL (Deep Neural Network Library) and MKL-DNN before being rebranded as part of the Intel oneAPI toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: Deconvolution Batch shapes_1d - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b36912156.921454.4956510.5221010.36850MIN: 6.32MIN: 3.9MIN: 8.88MIN: 8.541. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

ASKAP

ASKAP is a set of benchmarks from the Australian SKA Pathfinder. The principal ASKAP benchmarks are the Hogbom Clean Benchmark (tHogbomClean) and Convolutional Resamping Benchmark (tConvolve) as well as some previous ASKAP benchmarks being included as well for OpenCL and CUDA execution of tConvolve. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMpix/sec, More Is BetterASKAP 1.0Test: tConvolve MPI - Griddingb5 a5 2p a5 2p b11K22K33K44K55K36827.524990.149980.151199.11. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

OpenBenchmarking.orgMpix/sec, More Is BetterASKAP 1.0Test: tConvolve MPI - Degriddingb5 a5 2p a5 2p b9K18K27K36K45K32799.520991.741983.341983.31. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

SPECFEM3D

simulates acoustic (fluid), elastic (solid), coupled acoustic/elastic, poroelastic or seismic wave propagation in any type of conforming mesh of hexahedra. This test profile currently relies on CPU-based execution for SPECFEM3D and using a variety of their built-in examples/models for benchmarking. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSPECFEM3D 4.0Model: Mount St. Helensab5 a5 b5 2p a5 2p b510152025SE +/- 0.038048290, N = 311.67841461611.75332146018.86219907019.3555530929.6094538689.5947693501. (F9X) gfortran options: -O2 -fopenmp -std=f2003 -fimplicit-none -fmax-errors=10 -pedantic -pedantic-errors -O3 -finline-functions -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

Embree

OpenBenchmarking.orgFrames Per Second, More Is BetterEmbree 4.0.1Binary: Pathtracer ISPC - Model: Crownab5 a5 b5 2p a5 2p b1632486480SE +/- 0.11, N = 363.3763.3640.2440.1273.3373.26MIN: 62.18 / MAX: 66.58MIN: 62.44 / MAX: 66.52MIN: 39.64 / MAX: 40.95MIN: 39.64 / MAX: 40.56MIN: 71.99 / MAX: 75.06MIN: 72.13 / MAX: 74.82

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 Directionb5 a5 2p a5 2p b51015202517.2119.6310.6210.761. (F9X) gfortran options: -cpp -O2 -funroll-loops -floop-optimize -fcray-pointer -fbacktrace -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

Embree

OpenBenchmarking.orgFrames Per Second, More Is BetterEmbree 4.0.1Binary: Pathtracer - Model: Crowna5 a5 b5 2p a5 2p b20406080100SE +/- 0.05, N = 369.1143.9543.9881.4581.09MIN: 68.18 / MAX: 71.75MIN: 43.49 / MAX: 44.42MIN: 43.29 / MAX: 44.67MIN: 80.49 / MAX: 83.06MIN: 80.03 / MAX: 82.56

oneDNN

This is a test of the Intel oneDNN as an Intel-optimized library for Deep Neural Networks and making use of its built-in benchdnn functionality. The result is the total perf time reported. Intel oneDNN was formerly known as DNNL (Deep Neural Network Library) and MKL-DNN before being rebranded as part of the Intel oneAPI toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: IP Shapes 1D - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b0.6491.2981.9472.5963.2451.261071.379962.678012.88451MIN: 1.06MIN: 1.25MIN: 1.89MIN: 1.791. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

Embree

OpenBenchmarking.orgFrames Per Second, More Is BetterEmbree 4.0.1Binary: Pathtracer - Model: Asian Dragona5 a5 b5 2p a5 2p b20406080100SE +/- 0.14, N = 378.4848.5248.5176.8176.63MIN: 77.64 / MAX: 80.46MIN: 48.32 / MAX: 48.91MIN: 48.29 / MAX: 48.79MIN: 76.07 / MAX: 77.73MIN: 75.97 / MAX: 78.17

OpenBenchmarking.orgFrames Per Second, More Is BetterEmbree 4.0.1Binary: Pathtracer ISPC - Model: Asian Dragonab5 a5 b5 2p a5 2p b1632486480SE +/- 0.01, N = 373.8473.8344.9145.1173.9673.78MIN: 73.31 / MAX: 75.9MIN: 73.34 / MAX: 74.66MIN: 44.68 / MAX: 45.26MIN: 44.88 / MAX: 45.48MIN: 73.12 / MAX: 75.27MIN: 72.91 / MAX: 74.82

ASKAP

ASKAP is a set of benchmarks from the Australian SKA Pathfinder. The principal ASKAP benchmarks are the Hogbom Clean Benchmark (tHogbomClean) and Convolutional Resamping Benchmark (tConvolve) as well as some previous ASKAP benchmarks being included as well for OpenCL and CUDA execution of tConvolve. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgIterations Per Second, More Is BetterASKAP 1.0Test: Hogbom Clean OpenMPb5 a5 2p a5 2p b2004006008001000806.45869.57436.68434.781. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

CloverLeaf

CloverLeaf is a Lagrangian-Eulerian hydrodynamics benchmark. This test profile currently makes use of CloverLeaf's OpenMP version and benchmarked with the clover_bm.in input file (Problem 5). Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterCloverLeafLagrangian-Eulerian Hydrodynamicsb5 a5 2p a5 2p b4812162011.3412.0915.6715.511. (F9X) gfortran options: -O3 -march=native -funroll-loops -fopenmp

LULESH

LULESH is the Livermore Unstructured Lagrangian Explicit Shock Hydrodynamics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgz/s, More Is BetterLULESH 2.0.3b5 a5 2p a5 2p b9K18K27K36K45K22257.1420920.4942030.0442551.901. (CXX) g++ options: -O3 -fopenmp -lm -lmpi_cxx -lmpi

SVT-AV1

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 8 - Input: Bosphorus 1080pab5 a5 b5 2p a5 2p b20406080100SE +/- 1.23, N = 5109.98109.71107.38108.36107.10104.171. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

Pennant

Pennant is an application focused on hydrodynamics on general unstructured meshes in 2D. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgHydro Cycle Time - Seconds, Fewer Is BetterPennant 1.0.1Test: sedovbigb5 a5 2p a5 2p b481216209.56361014.0011107.6563697.7933251. (CXX) g++ options: -fopenmp -lmpi_cxx -lmpi

Google Draco

Draco is a library developed by Google for compressing/decompressing 3D geometric meshes and point clouds. This test profile uses some Artec3D PLY models as the sample 3D model input formats for Draco compression/decompression. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterGoogle Draco 1.5.6Model: Church Facadeab5 a5 2p a5 2p b13002600390052006500SE +/- 3.21, N = 3579358335718568257291. (CXX) g++ options: -O3

oneDNN

This is a test of the Intel oneDNN as an Intel-optimized library for Deep Neural Networks and making use of its built-in benchdnn functionality. The result is the total perf time reported. Intel oneDNN was formerly known as DNNL (Deep Neural Network Library) and MKL-DNN before being rebranded as part of the Intel oneAPI toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: IP Shapes 3D - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b0.28040.56080.84121.12161.4021.2461800.6259300.9118060.917226MIN: 1.13MIN: 0.57MIN: 0.78MIN: 0.771. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

ASKAP

ASKAP is a set of benchmarks from the Australian SKA Pathfinder. The principal ASKAP benchmarks are the Hogbom Clean Benchmark (tHogbomClean) and Convolutional Resamping Benchmark (tConvolve) as well as some previous ASKAP benchmarks being included as well for OpenCL and CUDA execution of tConvolve. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMillion Grid Points Per Second, More Is BetterASKAP 1.0Test: tConvolve OpenMP - Degriddingb5 a5 2p a5 2p b4K8K12K16K20K19018.319018.316641.015662.11. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

OpenBenchmarking.orgMillion Grid Points Per Second, More Is BetterASKAP 1.0Test: tConvolve OpenMP - Griddingb5 a5 2p a5 2p b4K8K12K16K20K20481.217750.412102.512678.91. (CXX) g++ options: -O3 -fstrict-aliasing -fopenmp

Google Draco

Draco is a library developed by Google for compressing/decompressing 3D geometric meshes and point clouds. This test profile uses some Artec3D PLY models as the sample 3D model input formats for Draco compression/decompression. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetterGoogle Draco 1.5.6Model: Lionab5 a5 2p a5 2p b10002000300040005000SE +/- 7.02, N = 3486748854760473448181. (CXX) g++ options: -O3

SVT-AV1

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 12 - Input: Bosphorus 4Kab5 a5 b5 2p a5 2p b50100150200250SE +/- 0.73, N = 3222.84214.93220.81226.73169.11176.111. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 13 - Input: Bosphorus 4Kab5 a5 b5 2p a5 2p b4080120160200SE +/- 0.70, N = 3195.92198.14199.69196.06169.66172.571. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

oneDNN

This is a test of the Intel oneDNN as an Intel-optimized library for Deep Neural Networks and making use of its built-in benchdnn functionality. The result is the total perf time reported. Intel oneDNN was formerly known as DNNL (Deep Neural Network Library) and MKL-DNN before being rebranded as part of the Intel oneAPI toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: Convolution Batch Shapes Auto - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b0.2580.5160.7741.0321.290.8276221.1465600.6743360.669349MIN: 0.78MIN: 1.09MIN: 0.62MIN: 0.61. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

Pennant

Pennant is an application focused on hydrodynamics on general unstructured meshes in 2D. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgHydro Cycle Time - Seconds, Fewer Is BetterPennant 1.0.1Test: leblancbigb5 a5 2p a5 2p b2468105.1040787.9740224.2947314.4180121. (CXX) g++ options: -fopenmp -lmpi_cxx -lmpi

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 129 Cells Per Directionb5 a5 2p a5 2p b1.14022.28043.42064.56085.7014.438041215.067564012.486542942.483869081. (F9X) gfortran options: -cpp -O2 -funroll-loops -floop-optimize -fcray-pointer -fbacktrace -lmpi_usempif08 -lmpi_mpifh -lmpi -lopen-rte -lopen-pal -lhwloc -levent_core -levent_pthreads -lm -lz

oneDNN

This is a test of the Intel oneDNN as an Intel-optimized library for Deep Neural Networks and making use of its built-in benchdnn functionality. The result is the total perf time reported. Intel oneDNN was formerly known as DNNL (Deep Neural Network Library) and MKL-DNN before being rebranded as part of the Intel oneAPI toolkit. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgms, Fewer Is BetteroneDNN 3.1Harness: Deconvolution Batch shapes_3d - Data Type: f32 - Engine: CPUb5 a5 2p a5 2p b0.70311.40622.10932.81243.51553.124872.762341.851671.89859MIN: 2.06MIN: 2.59MIN: 1.61MIN: 1.581. (CXX) g++ options: -O3 -march=native -fopenmp -msse4.1 -fPIC -pie -ldl -lpthread

SVT-AV1

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 12 - Input: Bosphorus 1080pab5 a5 b5 2p a5 2p b140280420560700SE +/- 2.97, N = 3604.84601.98629.30622.73540.73565.061. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

OpenBenchmarking.orgFrames Per Second, More Is BetterSVT-AV1 1.5Encoder Mode: Preset 13 - Input: Bosphorus 1080pab5 a5 b5 2p a5 2p b120240360480600SE +/- 5.77, N = 3552.24549.83571.08560.57525.15546.031. (CXX) g++ options: -march=native -mno-avx -mavx2 -mavx512f -mavx512bw -mavx512dq

143 Results Shown

PETSc
OpenVKL
OpenFOAM:
  drivaerFastback, Medium Mesh Size - Execution Time
  drivaerFastback, Medium Mesh Size - Mesh Time
Blender
LeelaChessZero:
  Eigen
  BLAS
Timed LLVM Compilation
OpenCV
FFmpeg:
  libx265 - Platform:
    FPS
    Seconds
  libx265 - Video On Demand:
    FPS
    Seconds
NCNN:
  CPU - FastestDet
  CPU - vision_transformer
  CPU - regnety_400m
  CPU - squeezenet_ssd
  CPU - yolov4-tiny
  CPU - resnet50
  CPU - alexnet
  CPU - resnet18
  CPU - vgg16
  CPU - googlenet
  CPU - blazeface
  CPU - efficientnet-b0
  CPU - mnasnet
  CPU - shufflenet-v2
  CPU-v3-v3 - mobilenet-v3
  CPU-v2-v2 - mobilenet-v2
  CPU - mobilenet
FFmpeg:
  libx265 - Upload:
    FPS
    Seconds
Timed LLVM Compilation
OpenCV
ASKAP:
  tConvolve MT - Degridding
  tConvolve MT - Gridding
ClickHouse:
  100M Rows Hits Dataset, Third Run
  100M Rows Hits Dataset, Second Run
  100M Rows Hits Dataset, First Run / Cold Cache
VVenC
Blender
OpenCV
Blender
FFmpeg:
  libx265 - Live:
    FPS
    Seconds
oneDNN:
  Recurrent Neural Network Training - f32 - CPU
  Recurrent Neural Network Inference - f32 - CPU
John The Ripper:
  MD5
  HMAC-SHA512
Zstd Compression:
  19, Long Mode - Decompression Speed
  19, Long Mode - Compression Speed
VVenC
OpenVINO:
  Person Detection FP16 - CPU:
    ms
    FPS
OpenFOAM:
  drivaerFastback, Small Mesh Size - Execution Time
  drivaerFastback, Small Mesh Size - Mesh Time
OpenVINO:
  Person Detection FP32 - CPU:
    ms
    FPS
Zstd Compression:
  19 - Decompression Speed
  19 - Compression Speed
OpenVINO:
  Face Detection FP16 - CPU:
    ms
    FPS
  Face Detection FP16-INT8 - CPU:
    ms
    FPS
  Machine Translation EN To DE FP16 - CPU:
    ms
    FPS
Zstd Compression:
  3, Long Mode - Decompression Speed
  3, Long Mode - Compression Speed
  8, Long Mode - Decompression Speed
  8, Long Mode - Compression Speed
  12 - Decompression Speed
  12 - Compression Speed
  8 - Decompression Speed
  8 - Compression Speed
  3 - Decompression Speed
  3 - Compression Speed
OpenVINO:
  Person Vehicle Bike Detection FP16 - CPU:
    ms
    FPS
  Vehicle Detection FP16-INT8 - CPU:
    ms
    FPS
  Vehicle Detection FP16 - CPU:
    ms
    FPS
  Weld Porosity Detection FP16 - CPU:
    ms
    FPS
  Weld Porosity Detection FP16-INT8 - CPU:
    ms
    FPS
  Age Gender Recognition Retail 0013 FP16 - CPU:
    ms
    FPS
  Age Gender Recognition Retail 0013 FP16-INT8 - CPU:
    ms
    FPS
OpenCV
VVenC
Blender
SVT-AV1
OpenCV
SPECFEM3D
GROMACS
SPECFEM3D
Blender
John The Ripper:
  WPA PSK
  bcrypt
  Blowfish
QuantLib
SVT-AV1
7-Zip Compression:
  Decompression Rating
  Compression Rating
VVenC
Embree:
  Pathtracer - Asian Dragon Obj
  Pathtracer ISPC - Asian Dragon Obj
eSpeak-NG Speech Engine
ACES DGEMM
SPECFEM3D
Timed FFmpeg Compilation
SVT-AV1
SPECFEM3D
oneDNN
ASKAP:
  tConvolve MPI - Gridding
  tConvolve MPI - Degridding
SPECFEM3D
Embree
Xcompact3d Incompact3d
Embree
oneDNN
Embree:
  Pathtracer - Asian Dragon
  Pathtracer ISPC - Asian Dragon
ASKAP
CloverLeaf
LULESH
SVT-AV1
Pennant
Google Draco
oneDNN
ASKAP:
  tConvolve OpenMP - Degridding
  tConvolve OpenMP - Gridding
Google Draco
SVT-AV1:
  Preset 12 - Bosphorus 4K
  Preset 13 - Bosphorus 4K
oneDNN
Pennant
Xcompact3d Incompact3d
oneDNN
SVT-AV1:
  Preset 12 - Bosphorus 1080p
  Preset 13 - Bosphorus 1080p