ptsopenclbenchmark

Intel Core i9-13980HX testing with a MSI MS-17S1 (E17S1IMS.30D BIOS) and MSI Intel RPL-S 16GB 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 2403285-NE-PTSOPENCL91
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pts_opencl_benchmark
March 28
  2 Hours, 43 Minutes
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ptsopenclbenchmarkOpenBenchmarking.orgPhoronix Test SuiteIntel Core i9-13980HX @ 5.60GHz (24 Cores / 32 Threads)MSI MS-17S1 (E17S1IMS.30D BIOS)Intel Device 7a2732GB2048GB Micron_3400_MTFDKBA2T0TFHMSI Intel RPL-S 16GB (210/405MHz)Intel Device 7a50PA248Realtek RTL8125 2.5GbE + Intel Device 7a70Ubuntu 22.046.5.0-26-generic (x86_64)Cinnamon 5.2.7X Server 1.21.1.4NVIDIA 535.161.074.6 Mesa 23.2.1-1ubuntu3.1~22.04.2OpenCL 3.0 CUDA 12.2.1481.3.255GCC 11.4.0 + CUDA 12.2ext41920x1200ProcessorMotherboardChipsetMemoryDiskGraphicsAudioMonitorNetworkOSKernelDesktopDisplay ServerDisplay DriverOpenGLOpenCLVulkanCompilerFile-SystemScreen ResolutionPtsopenclbenchmark PerformanceSystem Logs- Transparent Huge Pages: madvise- --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-XeT9lY/gcc-11-11.4.0/debian/tmp-nvptx/usr,amdgcn-amdhsa=/build/gcc-11-XeT9lY/gcc-11-11.4.0/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 - Scaling Governor: intel_pstate powersave (EPP: balance_performance) - CPU Microcode: 0x11d - Thermald 2.4.9 - BAR1 / Visible vRAM Size: 16384 MiB - vBIOS Version: 95.03.2a.00.2a- GPU Compute Cores: 9728- Python 3.10.12- gather_data_sampling: Not affected + itlb_multihit: Not affected + l1tf: Not affected + mds: Not affected + meltdown: Not affected + mmio_stale_data: Not affected + retbleed: Not affected + spec_rstack_overflow: Not affected + spec_store_bypass: Mitigation of SSB disabled via prctl + spectre_v1: Mitigation of usercopy/swapgs barriers and __user pointer sanitization + spectre_v2: Mitigation of Enhanced / Automatic IBRS IBPB: conditional RSB filling PBRSB-eIBRS: SW sequence + srbds: Not affected + tsx_async_abort: Not affected

ptsopenclbenchmarkshoc: OpenCL - Max SP Flopsluxmark: CPU+GPU - Microphoneluxmark: GPU - Microphoneluxmark: CPU+GPU - Hotelluxmark: GPU - Hotelluxmark: CPU+GPU - Luxball HDRluxmark: GPU - Luxball HDRfluidx3d: FP32-FP32smallpt-gpu: GPU - 1920 x 1200 - Causticsmallpt-gpu: GPU - 1920 x 1200 - Caustic3smallpt-gpu: GPU - 1920 x 1200 - Cornellclpeak: Transfer Bandwidth enqueueWriteBufferclpeak: Transfer Bandwidth enqueueReadBufferfluidx3d: FP32-FP16Sfluidx3d: FP32-FP16Crodinia: OpenCL Myocyteviennacl: CPU BLAS - dGEMM-TNviennacl: CPU BLAS - dGEMM-TTviennacl: CPU BLAS - dGEMM-NTviennacl: CPU BLAS - dGEMM-NNviennacl: CPU BLAS - dGEMV-Tviennacl: CPU BLAS - dGEMV-Nviennacl: CPU BLAS - dDOTviennacl: CPU BLAS - dAXPYviennacl: CPU BLAS - dCOPYviennacl: CPU BLAS - sDOTviennacl: CPU BLAS - sAXPYviennacl: CPU BLAS - sCOPYviennacl: OpenCL BLAS - dGEMM-TTviennacl: OpenCL BLAS - dGEMM-TNviennacl: OpenCL BLAS - dGEMM-NTviennacl: OpenCL BLAS - dGEMM-NNviennacl: OpenCL BLAS - dGEMV-Tviennacl: OpenCL BLAS - dGEMV-Nviennacl: OpenCL BLAS - dDOTviennacl: OpenCL BLAS - dAXPYviennacl: OpenCL BLAS - dCOPYviennacl: OpenCL BLAS - sDOTviennacl: OpenCL BLAS - sAXPYviennacl: OpenCL BLAS - sCOPYclpeak: Double-Precision Computerodinia: OpenCL Leukocyteshoc: OpenCL - Texture Read Bandwidthcl-mem: Readcl-mem: Writecl-mem: Copyrodinia: OpenCL Particle Filterlulesh-cl: clpeak: Global Memory Bandwidthdarktable: Masskrug - OpenCLdarktable: Boat - OpenCLshoc: OpenCL - GEMM SGEMM_Ndarktable: Server Room - OpenCLshoc: OpenCL - Bus Speed Readbackshoc: OpenCL - FFT SPshoc: OpenCL - Triadshoc: OpenCL - Bus Speed Downloadshoc: OpenCL - S3Dshoc: OpenCL - Reductionclpeak: Single-Precision Computeclpeak: Integer 24-bit Computeclpeak: Integer Computedarktable: Server Rack - OpenCLshoc: OpenCL - MD5 Hashclpeak: Kernel Latencyparboil: OpenCL BFSpts_opencl_benchmark44825.1552135520117792177928204282081335717116424971711642770171164263312.0012.866780688021.446112108102.8100.792.584.483.573.459.2139135112687670644627389197523522475380441348702.622.6702491.20521.1514.8345.73.2968852.8010518.271.6991.28013385.50.68713.19191539.8312.781112.9214367.734541.91038349.9319674.4519644.880.11945.73993.66OpenBenchmarking.org

SHOC Scalable HeterOgeneous Computing

The CUDA and OpenCL version of Vetter's Scalable HeterOgeneous Computing benchmark suite. SHOC provides a number of different benchmark programs for evaluating the performance and stability of compute devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOPS, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: Max SP Flopspts_opencl_benchmark10K20K30K40K50KSE +/- 25.06, N = 344825.11. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

LuxMark

LuxMark is a multi-platform OpenGL benchmark using LuxRender. LuxMark supports targeting different OpenCL devices and has multiple scenes available for rendering. LuxMark is a fully open-source OpenCL program with real-world rendering examples. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgScore, More Is BetterLuxMark 3.1OpenCL Device: CPU+GPU - Scene: Microphonepts_opencl_benchmark12K24K36K48K60KSE +/- 151.98, N = 355213

OpenBenchmarking.orgScore, More Is BetterLuxMark 3.1OpenCL Device: GPU - Scene: Microphonepts_opencl_benchmark12K24K36K48K60KSE +/- 127.22, N = 355201

OpenBenchmarking.orgScore, More Is BetterLuxMark 3.1OpenCL Device: CPU+GPU - Scene: Hotelpts_opencl_benchmark4K8K12K16K20KSE +/- 20.33, N = 317792

OpenBenchmarking.orgScore, More Is BetterLuxMark 3.1OpenCL Device: GPU - Scene: Hotelpts_opencl_benchmark4K8K12K16K20KSE +/- 43.31, N = 317792

OpenBenchmarking.orgScore, More Is BetterLuxMark 3.1OpenCL Device: CPU+GPU - Scene: Luxball HDRpts_opencl_benchmark20K40K60K80K100KSE +/- 14.75, N = 382042

OpenBenchmarking.orgScore, More Is BetterLuxMark 3.1OpenCL Device: GPU - Scene: Luxball HDRpts_opencl_benchmark20K40K60K80K100KSE +/- 34.35, N = 382081

FluidX3D

FluidX3D is a speedy and memory efficient Boltzmann CFD (Computational Fluid Dynamics) software package implemented using OpenCL and intended for GPU acceleration. FluidX3D is developed by Moritz Lehmann and written free for non-commercial use. This is a test profile measuring the system OpenCL performance using the FluidX3D benchmark. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMLUPs/s, More Is BetterFluidX3D 2.9Test: FP32-FP32pts_opencl_benchmark7001400210028003500SE +/- 0.33, N = 33357

SmallPT GPU

SmallPT GPU is an OpenCL benchmark that's run with various PTS changes compared to upstream and multiple rendering scenes are available. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSamples/sec, More Is BetterSmallPT GPU 1.6pts1OpenCL Device: GPU - Resolution: 1920 x 1200 - Scene: Causticpts_opencl_benchmark400M800M1200M1600M2000MSE +/- 25.12, N = 317116424971. (CC) gcc options: -O3 -lm -ftree-vectorize -funroll-loops -lglut -lOpenCL -lGL

OpenBenchmarking.orgSamples/sec, More Is BetterSmallPT GPU 1.6pts1OpenCL Device: GPU - Resolution: 1920 x 1200 - Scene: Caustic3pts_opencl_benchmark400M800M1200M1600M2000MSE +/- 25.12, N = 317116427701. (CC) gcc options: -O3 -lm -ftree-vectorize -funroll-loops -lglut -lOpenCL -lGL

OpenBenchmarking.orgSamples/sec, More Is BetterSmallPT GPU 1.6pts1OpenCL Device: GPU - Resolution: 1920 x 1200 - Scene: Cornellpts_opencl_benchmark400M800M1200M1600M2000MSE +/- 24.54, N = 317116426331. (CC) gcc options: -O3 -lm -ftree-vectorize -funroll-loops -lglut -lOpenCL -lGL

clpeak

Clpeak is designed to test the peak capabilities of OpenCL devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGBPS, More Is Betterclpeak 1.1.2OpenCL Test: Transfer Bandwidth enqueueWriteBufferpts_opencl_benchmark3691215SE +/- 0.01, N = 312.001. (CXX) g++ options: -O3

OpenBenchmarking.orgGBPS, More Is Betterclpeak 1.1.2OpenCL Test: Transfer Bandwidth enqueueReadBufferpts_opencl_benchmark3691215SE +/- 0.01, N = 312.861. (CXX) g++ options: -O3

FluidX3D

FluidX3D is a speedy and memory efficient Boltzmann CFD (Computational Fluid Dynamics) software package implemented using OpenCL and intended for GPU acceleration. FluidX3D is developed by Moritz Lehmann and written free for non-commercial use. This is a test profile measuring the system OpenCL performance using the FluidX3D benchmark. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMLUPs/s, More Is BetterFluidX3D 2.9Test: FP32-FP16Spts_opencl_benchmark15003000450060007500SE +/- 0.67, N = 36780

OpenBenchmarking.orgMLUPs/s, More Is BetterFluidX3D 2.9Test: FP32-FP16Cpts_opencl_benchmark15003000450060007500SE +/- 1.53, N = 36880

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: OpenCL Myocytepts_opencl_benchmark510152025SE +/- 0.17, N = 321.451. (CXX) g++ options: -m64 -lm -lcuda -lcudart -lcudadevrt -lcudart_static -lrt -lpthread -ldl

ViennaCL

ViennaCL is an open-source linear algebra library written in C++ and with support for OpenCL and OpenMP. This test profile makes use of ViennaCL's built-in benchmarks. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dGEMM-TNpts_opencl_benchmark306090120150SE +/- 1.50, N = 21121. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dGEMM-TTpts_opencl_benchmark20406080100SE +/- 0.88, N = 31081. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dGEMM-NTpts_opencl_benchmark20406080100SE +/- 1.91, N = 3102.81. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dGEMM-NNpts_opencl_benchmark20406080100SE +/- 2.16, N = 3100.71. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dGEMV-Tpts_opencl_benchmark20406080100SE +/- 1.89, N = 392.51. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dGEMV-Npts_opencl_benchmark20406080100SE +/- 4.28, N = 384.41. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dDOTpts_opencl_benchmark20406080100SE +/- 0.20, N = 383.51. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dAXPYpts_opencl_benchmark1632486480SE +/- 0.03, N = 373.41. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - dCOPYpts_opencl_benchmark1326395265SE +/- 0.07, N = 359.21. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - sDOTpts_opencl_benchmark306090120150SE +/- 11.17, N = 31391. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - sAXPYpts_opencl_benchmark306090120150SE +/- 0.33, N = 31351. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: CPU BLAS - sCOPYpts_opencl_benchmark306090120150SE +/- 0.67, N = 31121. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dGEMM-TTpts_opencl_benchmark150300450600750SE +/- 0.33, N = 36871. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dGEMM-TNpts_opencl_benchmark140280420560700SE +/- 0.33, N = 36701. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dGEMM-NTpts_opencl_benchmark140280420560700SE +/- 0.00, N = 36441. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGFLOPs/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dGEMM-NNpts_opencl_benchmark140280420560700SE +/- 0.33, N = 36271. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dGEMV-Tpts_opencl_benchmark80160240320400SE +/- 0.33, N = 33891. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dGEMV-Npts_opencl_benchmark4080120160200SE +/- 0.00, N = 31971. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dDOTpts_opencl_benchmark1102203304405505231. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dAXPYpts_opencl_benchmark110220330440550SE +/- 0.00, N = 35221. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - dCOPYpts_opencl_benchmark100200300400500SE +/- 0.33, N = 34751. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - sDOTpts_opencl_benchmark80160240320400SE +/- 0.00, N = 33801. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - sAXPYpts_opencl_benchmark100200300400500SE +/- 0.00, N = 34411. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

OpenBenchmarking.orgGB/s, More Is BetterViennaCL 1.7.1Test: OpenCL BLAS - sCOPYpts_opencl_benchmark80160240320400SE +/- 0.33, N = 33481. (CXX) g++ options: -fopenmp -O3 -rdynamic -lOpenCL

clpeak

Clpeak is designed to test the peak capabilities of OpenCL devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOPS, More Is Betterclpeak 1.1.2OpenCL Test: Double-Precision Computepts_opencl_benchmark150300450600750SE +/- 0.03, N = 3702.621. (CXX) g++ options: -O3

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: OpenCL Leukocytepts_opencl_benchmark0.60081.20161.80242.40323.004SE +/- 0.023, N = 82.6701. (CXX) g++ options: -m64 -lm -lcuda -lcudart -lcudadevrt -lcudart_static -lrt -lpthread -ldl

SHOC Scalable HeterOgeneous Computing

The CUDA and OpenCL version of Vetter's Scalable HeterOgeneous Computing benchmark suite. SHOC provides a number of different benchmark programs for evaluating the performance and stability of compute devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGB/s, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: Texture Read Bandwidthpts_opencl_benchmark5001000150020002500SE +/- 1.98, N = 32491.201. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

Xsbench OpenCL

Xsbench benchmark in OpenCL via GPUOpen. Learn more via the OpenBenchmarking.org test page.

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

cl-mem

A basic OpenCL memory benchmark. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGB/s, More Is Bettercl-mem 2017-01-13Benchmark: Readpts_opencl_benchmark110220330440550SE +/- 3.05, N = 3521.11. (CC) gcc options: -O2 -flto -lOpenCL

OpenBenchmarking.orgGB/s, More Is Bettercl-mem 2017-01-13Benchmark: Writepts_opencl_benchmark110220330440550SE +/- 0.15, N = 3514.81. (CC) gcc options: -O2 -flto -lOpenCL

OpenBenchmarking.orgGB/s, More Is Bettercl-mem 2017-01-13Benchmark: Copypts_opencl_benchmark80160240320400SE +/- 0.13, N = 3345.71. (CC) gcc options: -O2 -flto -lOpenCL

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: OpenCL Particle Filterpts_opencl_benchmark0.74161.48322.22482.96643.708SE +/- 0.011, N = 33.2961. (CXX) g++ options: -m64 -lm -lcuda -lcudart -lcudadevrt -lcudart_static -lrt -lpthread -ldl

Lulesh OpenCL

Lulesh OpenCL benchmark: Livermore Unstructured Lagrangian Explicit Shock Hydrodynamics. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgz/s, More Is BetterLulesh OpenCL 2017-07-06pts_opencl_benchmark2K4K6K8K10KSE +/- 67.92, N = 38852.801. (CXX) g++ options: -std=c++11 -lOpenCL -O3 -lm

clpeak

Clpeak is designed to test the peak capabilities of OpenCL devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGBPS, More Is Betterclpeak 1.1.2OpenCL Test: Global Memory Bandwidthpts_opencl_benchmark110220330440550SE +/- 0.30, N = 3518.271. (CXX) g++ options: -O3

Darktable

Darktable is an open-source photography / workflow application this will use any system-installed Darktable program or on Windows will automatically download the pre-built binary from the project. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterDarktable 3.8.1Test: Masskrug - Acceleration: OpenCLpts_opencl_benchmark0.38230.76461.14691.52921.9115SE +/- 0.016, N = 31.699

OpenBenchmarking.orgSeconds, Fewer Is BetterDarktable 3.8.1Test: Boat - Acceleration: OpenCLpts_opencl_benchmark0.2880.5760.8641.1521.44SE +/- 0.002, N = 31.280

SHOC Scalable HeterOgeneous Computing

The CUDA and OpenCL version of Vetter's Scalable HeterOgeneous Computing benchmark suite. SHOC provides a number of different benchmark programs for evaluating the performance and stability of compute devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOPS, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: GEMM SGEMM_Npts_opencl_benchmark3K6K9K12K15KSE +/- 8.77, N = 313385.51. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

Darktable

Darktable is an open-source photography / workflow application this will use any system-installed Darktable program or on Windows will automatically download the pre-built binary from the project. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterDarktable 3.8.1Test: Server Room - Acceleration: OpenCLpts_opencl_benchmark0.15460.30920.46380.61840.773SE +/- 0.006, N = 30.687

SHOC Scalable HeterOgeneous Computing

The CUDA and OpenCL version of Vetter's Scalable HeterOgeneous Computing benchmark suite. SHOC provides a number of different benchmark programs for evaluating the performance and stability of compute devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGB/s, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: Bus Speed Readbackpts_opencl_benchmark3691215SE +/- 0.00, N = 313.191. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

OpenBenchmarking.orgGFLOPS, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: FFT SPpts_opencl_benchmark30060090012001500SE +/- 0.63, N = 31539.831. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

OpenBenchmarking.orgGB/s, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: Triadpts_opencl_benchmark3691215SE +/- 0.00, N = 312.781. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

OpenBenchmarking.orgGB/s, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: Bus Speed Downloadpts_opencl_benchmark3691215SE +/- 0.00, N = 312.921. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

OpenBenchmarking.orgGFLOPS, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: S3Dpts_opencl_benchmark80160240320400SE +/- 1.19, N = 3367.731. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

OpenBenchmarking.orgGB/s, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: Reductionpts_opencl_benchmark120240360480600SE +/- 0.39, N = 3541.911. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

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.

Test: OpenCL LavaMD

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status. E: :129:14: error: variables in the local address space can only be declared in the outermost scope of a kernel function

clpeak

Clpeak is designed to test the peak capabilities of OpenCL devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGFLOPS, More Is Betterclpeak 1.1.2OpenCL Test: Single-Precision Computepts_opencl_benchmark8K16K24K32K40KSE +/- 4.31, N = 338349.931. (CXX) g++ options: -O3

OpenBenchmarking.orgGIOPS, More Is Betterclpeak 1.1.2OpenCL Test: Integer 24-bit Computepts_opencl_benchmark4K8K12K16K20KSE +/- 2.50, N = 319674.451. (CXX) g++ options: -O3

OpenBenchmarking.orgGIOPS, More Is Betterclpeak 1.1.2OpenCL Test: Integer Computepts_opencl_benchmark4K8K12K16K20KSE +/- 3.83, N = 319644.881. (CXX) g++ options: -O3

Darktable

Darktable is an open-source photography / workflow application this will use any system-installed Darktable program or on Windows will automatically download the pre-built binary from the project. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterDarktable 3.8.1Test: Server Rack - Acceleration: OpenCLpts_opencl_benchmark0.02680.05360.08040.10720.134SE +/- 0.001, N = 30.119

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.

Test: OpenCL Heartwall

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result.

SHOC Scalable HeterOgeneous Computing

The CUDA and OpenCL version of Vetter's Scalable HeterOgeneous Computing benchmark suite. SHOC provides a number of different benchmark programs for evaluating the performance and stability of compute devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgGHash/s, More Is BetterSHOC Scalable HeterOgeneous Computing 2020-04-17Target: OpenCL - Benchmark: MD5 Hashpts_opencl_benchmark1020304050SE +/- 0.15, N = 345.741. (CXX) g++ options: -O2 -lSHOCCommonMPI -lSHOCCommonOpenCL -lSHOCCommon -lOpenCL -lrt -lmpi_cxx -lmpi

LuxMark

LuxMark is a multi-platform OpenGL benchmark using LuxRender. LuxMark supports targeting different OpenCL devices and has multiple scenes available for rendering. LuxMark is a fully open-source OpenCL program with real-world rendering examples. Learn more via the OpenBenchmarking.org test page.

OpenCL Device: CPU - Scene: Hotel

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result. E: Error: RUNTIME ERROR: No OpenCL device selected or available

OpenCL Device: CPU - Scene: Microphone

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result. E: Error: RUNTIME ERROR: No OpenCL device selected or available

clpeak

Clpeak is designed to test the peak capabilities of OpenCL devices. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgus, Fewer Is Betterclpeak 1.1.2OpenCL Test: Kernel Latencypts_opencl_benchmark0.82351.6472.47053.2944.1175SE +/- 0.02, N = 33.661. (CXX) g++ options: -O3

LuxMark

LuxMark is a multi-platform OpenGL benchmark using LuxRender. LuxMark supports targeting different OpenCL devices and has multiple scenes available for rendering. LuxMark is a fully open-source OpenCL program with real-world rendering examples. Learn more via the OpenBenchmarking.org test page.

OpenCL Device: CPU - Scene: Luxball HDR

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result. E: Error: RUNTIME ERROR: No OpenCL device selected or available

OpenCL Device: Hybrid GPU - Scene: Luxball HDR

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result.

OpenCL Device: Hybrid GPU - Scene: Hotel

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result.

OpenCL Device: Hybrid GPU - Scene: Microphone

pts_opencl_benchmark: The test run did not produce a result. The test run did not produce a result. The test run did not produce a result.

MandelbulbGPU

MandelbulbGPU is an OpenCL benchmark. Learn more via the OpenBenchmarking.org test page.

OpenCL Device: GPU - Resolution: $VIDEO_WIDTH x $VIDEO_HEIGHT

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

OpenDwarfs

OpenDwarfs is a non-commercial OpenCL compute benchmark suite developed at Virginia Tech in cooperation with various organizations. Learn more via the OpenBenchmarking.org test page.

Test: Cyclic Redundancy Check

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

Test: Compressed Sparse Row

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

Test: LU Decomposition

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

MandelGPU

MandelGPU is an OpenCL benchmark and this test runs with the OpenCL rendering float4 kernel with a maximum of 4096 iterations. Learn more via the OpenBenchmarking.org test page.

OpenCL Device: GPU - Resolution: $VIDEO_WIDTH x $VIDEO_HEIGHT

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

JuliaGPU

JuliaGPU is an OpenCL benchmark with this version containing various PTS-specific enhancements. Learn more via the OpenBenchmarking.org test page.

OpenCL Device: GPU - Resolution: $VIDEO_WIDTH x $VIDEO_HEIGHT

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status.

Parboil

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

Test: OpenCL MRI Gridding

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status. E: /usr/bin/env: ‘python’: No such file or directory

Test: OpenCL TPACF

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status. E: /usr/bin/env: ‘python’: No such file or directory

Test: OpenCL Histo

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status. E: /usr/bin/env: ‘python’: No such file or directory

Test: OpenCL LBM

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status. E: /usr/bin/env: ‘python’: No such file or directory

Test: OpenCL BFS

pts_opencl_benchmark: The test quit with a non-zero exit status. The test quit with a non-zero exit status. The test quit with a non-zero exit status. E: /usr/bin/env: ‘python’: No such file or directory