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Rodinia 1.3.1
pts/rodinia-1.3.1
- 09 July 2020 -
Drop OpenMP Myocyte.
downloads.xml
<?xml version="1.0"?> <!--Phoronix Test Suite v9.8.0--> <PhoronixTestSuite> <Downloads> <Package> <URL>http://www.cs.virginia.edu/~kw5na/lava/Rodinia/Packages/Current/rodinia_3.1.tar.bz2</URL> <MD5>047d983e62107972f217921aa0027b05</MD5> <SHA256>faebac7c11ed8f8fcf6bf2d7e85c3086fc2d11f72204d6dfc28dc5b2e8f2acfd</SHA256> <FileName>rodinia_3.1.tar.bz2</FileName> <FileSize>360636246</FileSize> </Package> </Downloads> </PhoronixTestSuite>
install.sh
#!/bin/sh tar -jxvf rodinia_3.1.tar.bz2 cd ~/rodinia_3.1/openmp/cfd; make; cd ~/rodinia_3.1/openmp/lavaMD; make; cd ~/rodinia_3.1/openmp/leukocyte; make; cd ~/rodinia_3.1/openmp/myocyte; make; cd ~/rodinia_3.1/openmp/hotspot3D; make; cd ~/rodinia_3.1/openmp/streamcluster; make; echo $? > ~/install-exit-status cd ~/rodinia_3.1/opencl/lavaMD; make; cd ~/rodinia_3.1/opencl/leukocyte; make; cd ~/rodinia_3.1/opencl/heartwall; make; cd ~/rodinia_3.1/opencl/myocyte; make; cd ~/rodinia_3.1/opencl/particlefilter; make; export PATH=/usr/local/cuda/bin:$PATH cd ~/rodinia_3.1/cuda/myocyte; make; cd ~/ echo "#!/bin/sh export OMP_NUM_THREADS=\$NUM_CPU_CORES case \$@ in \"OMP_CFD\") cd ~/rodinia_3.1/openmp/cfd ./euler3d_cpu_double ../../data/cfd/missile.domn.0.2M > \$LOG_FILE ;; \"OMP_LAVAMD\") cd ~/rodinia_3.1/openmp/lavaMD ./lavaMD -cores \$NUM_CPU_CORES -boxes1d 96 > \$LOG_FILE ;; \"OMP_LEUKOCYTE\") cd ~/rodinia_3.1/openmp/leukocyte ./OpenMP/leukocyte 590 \$NUM_CPU_CORES ../../data/leukocyte/testfile.avi > \$LOG_FILE ;; \"OMP_STREAMCLUSTER\") cd ~/rodinia_3.1/openmp/streamcluster ./sc_omp 10 30 512 65536 65536 2000 none output.txt \$NUM_CPU_CORES > \$LOG_FILE ;; \"OMP_MYOCYTE\") cd ~/rodinia_3.1/openmp/myocyte ./myocyte.out 1000 200 0 \$NUM_CPU_CORES > \$LOG_FILE ;; \"OMP_HOTSPOT3D\") cd ~/rodinia_3.1/openmp/hotspot3D ./3D 512 8 10000 ../../data/hotspot3D/power_512x8 ../../data/hotspot3D/temp_512x8 output.out > \$LOG_FILE ;; \"OCL_LAVAMD\") cd ~/rodinia_3.1/opencl/lavaMD ./lavaMD -boxes1d 48 > \$LOG_FILE ;; \"OCL_LEUKOCYTE\") cd ~/rodinia_3.1/opencl/leukocyte/OpenCL ./leukocyte ../../../data/leukocyte/testfile.avi 590 > \$LOG_FILE ;; \"OCL_HEARTWALL\") cd ~/rodinia_3.1/opencl/heartwall ./heartwall 100 > \$LOG_FILE echo 0 > ~/test-exit-status ;; \"OCL_MYOCYTE\") cd ~/rodinia_3.1/opencl/myocyte ./myocyte.out -time 8000 > \$LOG_FILE ;; \"OCL_PARTICLEFILTER\") cd ~/rodinia_3.1/opencl/particlefilter ./OCL_particlefilter_double -x 128 -y 128 -z 10 -np 400000 > \$LOG_FILE ;; \"CUDA_MYOCYTE\") cd ~/rodinia_3.1/cuda/myocyte ./myocyte.out 1000 10 0 > \$LOG_FILE ;; esac echo \$? > ~/test-exit-status" > rodinia chmod +x rodinia
results-definition.xml
<?xml version="1.0"?> <!--Phoronix Test Suite v9.8.0--> <PhoronixTestSuite> <SystemMonitor> <Sensor>sys.time</Sensor> </SystemMonitor> </PhoronixTestSuite>
test-definition.xml
<?xml version="1.0"?> <!--Phoronix Test Suite v9.8.0--> <PhoronixTestSuite> <TestInformation> <Title>Rodinia</Title> <AppVersion>3.1</AppVersion> <Description>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.</Description> <ResultScale>Seconds</ResultScale> <Proportion>LIB</Proportion> <TimesToRun>3</TimesToRun> </TestInformation> <TestProfile> <Version>1.3.1</Version> <SupportedPlatforms>Linux, BSD</SupportedPlatforms> <SoftwareType>Benchmark</SoftwareType> <TestType>Processor</TestType> <License>Free</License> <Status>Verified</Status> <ExternalDependencies>build-utilities, openmpi-development, opencl</ExternalDependencies> <EnvironmentSize>1300</EnvironmentSize> <ProjectURL>http://lava.cs.virginia.edu/Rodinia/</ProjectURL> <InternalTags>SMP, OpenMP</InternalTags> <Maintainer>Michael Larabel</Maintainer> </TestProfile> <TestSettings> <Option> <DisplayName>Test</DisplayName> <Identifier>run-test</Identifier> <Menu> <Entry> <Name>OpenMP CFD Solver</Name> <Value>OMP_CFD</Value> <Message>Fluid Dynamics</Message> </Entry> <Entry> <Name>OpenMP LavaMD</Name> <Value>OMP_LAVAMD</Value> <Message>Molecular Dynamics</Message> </Entry> <Entry> <Name>OpenMP Leukocyte</Name> <Value>OMP_LEUKOCYTE</Value> <Message>Medical Imaging</Message> </Entry> <Entry> <Name>OpenMP Streamcluster</Name> <Value>OMP_STREAMCLUSTER</Value> <Message>Data Mining</Message> </Entry> <Entry> <Name>OpenMP HotSpot3D</Name> <Value>OMP_HOTSPOT3D</Value> <Message>Physics Simulation</Message> </Entry> <Entry> <Name>OpenCL Myocyte</Name> <Value>OCL_MYOCYTE</Value> <Message>Biological Simulation</Message> </Entry> <Entry> <Name>OpenCL Particle Filter</Name> <Value>OCL_PARTICLEFILTER</Value> <Message>Medical Imaging</Message> </Entry> <Entry> <Name>NVIDIA CUDA GPU Myocyte</Name> <Value>CUDA_MYOCYTE</Value> <Message>Biological Simulation</Message> </Entry> </Menu> </Option> </TestSettings> </PhoronixTestSuite>