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FEniCS Habrok Singularity

Scripts for building FEniCS on the Habrok

based on FEniCS and Singularity inspired from utwente wiki and harvard wiki

Prerequisites

Singularity in your HPC. To check availability, you can check by typing module avail.

BUILDING INSTRUCTIONS

First clone this repository, for example to the location $HOME.

cd $HOME
git clone https://github.com/Reidmen/LegacyFEniCSonHabrok.git

Building a SIF image

To build an singularity file, its required to provide a name (e.g. fenics-openmpi.sif), its recipe located in singularity/fenics-openmpi.recipe call the build command as described below.

cd singularity
singularity build fenics-openmpi.sif fenics-openmpi.recipe

An alternative, is to directly specifiy the source. An OpenMPI version is available in reidmen/fenics-openmpi:latest. To convert it to .sif you can directly build with the command:

cd singularity
singularity build fenics-openmpi.sif docker://reidmen/fenics-openmpi:latest

Executing demo file

In order for OpenMPI to work properly, we need to export the following:

export OMPI_MCA_btl_vader_single_copy_mechanism=none

To execute a python script, its required to start a shell session and execute the script as described below.

singularity shell fenics-openmpi.sif
python3 singularity/demo_poisson_mpi_test.py

As alternative, to execute in paralell its enough to call mpirun within the container.

mpirun -n 8 python3 singularity/demo_poisson_mpi_test.py

Submit jobs to Habrok

To submit jobs to Peregrine, you need to provide a minimal configuration using sbatch, export the variables above and activate the environment, e.g.

#!/bin/bash
#SBATCH --job-name=singularity_test
#SBATCH --nodes=1
#SBATCH --ntasks-per-node=8
#SBATCH --time=00:05:00
#SBATCH --mem=4000 

module load OpenMPI

export OMP_NUM_THREADS=6
export OMPI_MCA_btl_vader_single_copy_mechanism=none

echo "EXECUTING DEMO"
# singularity run fenics-openmpi.sif cat /etc/os-release
mpirun -n $OMP_NUM_THREADS singularity exec fenics-openmpi.sif python3 -c "from dolfin import *; print(MPI.comm_world.rank)"

If successful, the output should enumerate the threads being requested in the job.