| /libCEED/benchmarks/ |
| H A D | postprocess_plot.py | 102 d = [[run['degree'], run['num_elem'], 1. * run['num_unknowns'] / num_nodes / vdim, 103 run['cg_iteration_dps'] / num_nodes] 104 for index, run in 126 d = [[run['degree'], run['num_elem'], 1. * run['num_unknowns'] / num_nodes / vdim, 127 run['cg_iteration_dps'] / num_nodes] 128 for index, run in
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| H A D | benchmark.sh | 21 run="" 155 -r|--run) 156 run=on 176 -d|--dry-run) 241 [ -n "$run" ] && {
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| H A D | README.md | 13 benchmark, `-b <bp-list>` specifies a list of CEED benchmark problems to run, 32 tests will be run (the lowest degree is 1); the default value is 8.
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| /libCEED/examples/petsc/ |
| H A D | README.md | 9 To build, run `make bpsraw` 11 To run, `./bpsraw -ceed [ceed-resource] -problem bp[1-6] -degree [degree]` 21 To build, run `make bps` 23 To run, `./bps -ceed [ceed-resource] -problem bp[1-6] -degree [degree]` 32 Some run-time arguments can be passed lists, which allows a single `mpiexec` invocation to run many… 39 which will sample from the `4*4*3=48` specified combinations, each of which will run a problem-size… 46 To build, run `make multigrid` 48 To run, `./multigrid -ceed [ceed-resource] -problem bp[1-6] -degree [degree]` 70 To build, run `make area` 72 To run, `./area -problem cube -ceed [ceed-resource] -petscspace_degree [degree]`
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| /libCEED/examples/nek/ |
| H A D | README.md | 5 Nek5000 v19.0 or greater must be [installed](https://nek5000.mcs.anl.gov/getstarted/) to run these … 38 You can run the Nek5000 libCEED examples by invoking `nek-examples.sh` script. 48 -c|-ceed Ceed backend to be used for the run (optional, default: /cpu/self) 50 -n|-np Specify number of MPI ranks for the run (optional, default: 1) 59 For example, you can run bp1 as follows: 61 ./run-nek-example.sh -ceed /cpu/self -e bp1 -n 4 -b 3 65 ./run-nek-example.sh -b 3
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| H A D | nek-examples.sh | 295 function run() { function 360 run
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| /libCEED/python/tests/ |
| H A D | README.md | 8 To run the tests, first build the user QFunctions file by running 12 Then, to run the test suite use the command 19 the apropriate QFunction single source file and run
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| /libCEED/ |
| H A D | setup.py | 39 def run(self): member in libceed_build_ext 42 build_ext.run(self)
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| H A D | README.md | 13 …a for element-based discretizations, designed for performance portability, run-time flexibility, a… 92 …ipten](https://emscripten.org). For example, one can build the library and run a standalone WASM e… 132 The test suite produces [TAP](https://testanything.org) output and is run by: 197 To use, run your code with Valgrind and the Memcheck backends, e.g. `valgrind ./build/ex1 -ceed /cp… 199 This backend can be run in serial or blocked mode and defaults to running in the serial mode if `/c… 237 …, set the `MFEM_DIR`, `PETSC_DIR` (and optionally `PETSC_ARCH`), and `NEK5K_DIR` variables and run: 330 A sequence of benchmarks for all enabled backends can be run using: 344 …ing the `benchmarks` target runs a comprehensive set of benchmarks which may take some time to run. 345 Subsets of the benchmarks can be run using the scripts in the `benchmarks` folder. 351 To install libCEED, run: [all …]
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| /libCEED/examples/python/ |
| H A D | README.md | 13 To build the QFunctions into a shared library that the Python examples use, run 19 To execute the examples, run:
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| H A D | tutorial-6-shell.ipynb | 167 "Now run `ex1-volume` by running" 258 "Now run `ex2-surface` by running "
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| /libCEED/backends/magma/tuning/ |
| H A D | generate_tuning.py | 50 subprocess.run(build_cmd, cwd=f"{script_dir}/../../..") 51 subprocess.run(["make", "tuning", "OPT=-O0"], cwd=f"{script_dir}") 58 process = subprocess.run(
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| H A D | README.md | 14 A sample run to generate the tuning data for an A100 GPU, considering values of 28 Alternatively, the `tuning` program can be built and run on its own to benchmark
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| /libCEED/rust/libceed-sys/ |
| H A D | build.rs | 34 run(&mut make); in main() 93 fn run(command: &mut Command) { in run() function
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| /libCEED/examples/fluids/ |
| H A D | README.md | 18 and run with: 159 - Number of timesteps between statistics file writing (`-1` means only at end of run) 183 - View comprehensive information about run-time options 303 The advection problems can be run in both 2D and 3D, based on the DM defined for the problem. 395 For 3D advection, an example of the `rotation` mode can be run with: 407 For 2D advection, an example of the `rotation` mode can be run with: 465 This problem can be run with: 504 This problem can be run with: 722 This problem can be run with the `gaussianwave.yaml` file via: 762 To run this problem, first generate a mesh: [all …]
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| /libCEED/examples/mfem/ |
| H A D | README.md | 12 To run the executable, write:
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| /libCEED/julia/LibCEED.jl/gen/ |
| H A D | generator.jl | 19 # run generator
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| /libCEED/python/ |
| H A D | README.md | 5 To install libCEED for Python, run
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| /libCEED/examples/deal.II/ |
| H A D | README.md | 15 To run the executables, write:
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| /libCEED/examples/solids/ |
| H A D | README.md | 17 and run with: 85 The command line options just shown are the minimum requirements to run the mini-app, but additiona… 151 - View comprehensive information about run-time options 155 …f the linear elasticity formulation on a given mesh with the method of manufactured solutions, run:
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| /libCEED/julia/LibCEED.jl/ |
| H A D | README.md | 14 If you want to run libCEED on the GPU, you will have to build libCEED from source and configure Lib…
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| /libCEED/doc/sphinx/source/ |
| H A D | intro.md | 21 …y algebraic interface for matrix-free operator representation and supports run-time selection of i… 27 …ingle source code and can select the desired specialized implementation at run time. Moreover, eac…
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| H A D | precision.md | 14 Tests can be run using `make test FC=` because the Fortran tests do not support single precision at…
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| /libCEED/doc/papers/joss/ |
| H A D | paper.md | 76 `libCEED` provides portable performance via run-time selection of implementations optimized for CPU… 120 …PUs (transparently using the @NVRTCwebsite, HIPRTC, or OCCA [@OCCAwebsite] run-time compilation fe… 142 …mplates/generics) and can select the desired specialized implementation at run time. Moreover, eac… 151 …128 MB/socket) while no such drop exists for the GPU. (This experiment was run with release candid…
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| /libCEED/tests/ |
| H A D | junit_common.py | 242 proc = subprocess.run('cgnsdiff', 495 proc = subprocess.run(' '.join(run_args), 627 proc = subprocess.run(' '.join(str(arg) for arg in run_args),
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