Modified to handle floating point values
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@ -1,30 +1,31 @@
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# Define scan ranges (encoded as strings)
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SCATTERING_LENGTH_RANGE="85"
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POLAR_ANGLE_RANGE="0"
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AZIMUTHAL_ANGLE_RANGE="0"
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# ----------- Define scan ranges -----------
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# Use space-separated or comma-separated floats/integers (can be bracketed)
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SCATTERING_LENGTH_RANGE="[85.0]"
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POLAR_ANGLE_RANGE="[0]"
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AZIMUTHAL_ANGLE_RANGE="[0.0]"
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NUM_ATOMS_LIST="[90000]"
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CHUNK_SIZE=1
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# Convert parameter ranges into arrays
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scatteringLengths=($(eval echo {$SCATTERING_LENGTH_RANGE}))
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polarAngles=($(eval echo {$POLAR_ANGLE_RANGE}))
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azimuthalAngles=($(eval echo {$AZIMUTHAL_ANGLE_RANGE}))
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numAtoms=($(eval echo {$NUM_ATOMS_LIST}))
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# ----------- Count total combinations for SLURM array -----------
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# Strip brackets for Bash processing (for counting only)
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scatteringLengths=($(echo "$SCATTERING_LENGTH_RANGE" | tr -d '[],'))
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polarAngles=($(echo "$POLAR_ANGLE_RANGE" | tr -d '[],'))
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azimuthalAngles=($(echo "$AZIMUTHAL_ANGLE_RANGE" | tr -d '[],'))
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numAtoms=($(echo "$NUM_ATOMS_LIST" | tr -d '[],'))
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# Calculate the total number of jobs (combinations of parameters)
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totalJobs=$((${#scatteringLengths[@]} * ${#polarAngles[@]} * ${#azimuthalAngles[@]} * ${#numAtoms[@]}))
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# Calculate the number of array jobs based on total jobs and chunk size
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numArrayJobs=$(( (totalJobs + CHUNK_SIZE - 1) / CHUNK_SIZE ))
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# Print the total number of jobs and array jobs for debugging
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echo "Total number of jobs: $totalJobs"
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echo "Number of SLURM array jobs: $numArrayJobs"
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echo "Running SLURM job array from 1 to ${numArrayJobs}"
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# ----------- Submit SLURM array job -----------
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# Create the SLURM job submission command
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sbatch --export=SCATTERING_LENGTH_RANGE="$SCATTERING_LENGTH_RANGE",POLAR_ANGLE_RANGE="$POLAR_ANGLE_RANGE",AZIMUTHAL_ANGLE_RANGE="$AZIMUTHAL_ANGLE_RANGE",NUM_ATOMS_LIST="$NUM_ATOMS_LIST",CHUNK_SIZE=$CHUNK_SIZE << EOF
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#!/bin/bash
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########### Begin SLURM header ###########
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#SBATCH --partition=gpu-single
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#SBATCH --nodes=1
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#SBATCH --ntasks-per-node=1
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@ -36,7 +37,6 @@ sbatch --export=SCATTERING_LENGTH_RANGE="$SCATTERING_LENGTH_RANGE",POLAR_ANGLE_R
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#SBATCH --error=simulation_%A_%a.err
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#SBATCH --output=simulation_%A_%a.out
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#SBATCH --array=1-${numArrayJobs}
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########### End SLURM header ##########
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echo "Working Directory: $PWD"
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echo "Running on host $HOSTNAME"
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@ -44,22 +44,18 @@ echo "Job id: $SLURM_JOB_ID"
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echo "Job name: $SLURM_JOB_NAME"
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echo "Number of nodes allocated to job: $SLURM_JOB_NUM_NODES"
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echo "Number of GPUs allocated to job: $SLURM_GPUS"
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echo "SLURM task index: \$SLURM_ARRAY_TASK_ID"
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# Load module
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# Load MATLAB
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module load math/matlab/R2023a
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echo Directory is `pwd`
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echo Directory is pwd
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echo "Initiating Job..."
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# Inside SLURM job array
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echo "Running SLURM job array from 1 to ${numArrayJobs}"
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# Start MATLAB job with the batch index
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# Run MATLAB wrapper with this batch index
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matlab -nodisplay -nosplash -r "Scripts.run_hybrid_worker_wrapper(\$SLURM_ARRAY_TASK_ID)"
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# notice for tests
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echo "Job terminated successfully"
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exit
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EOF
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EOF
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