vtk-m/examples/cosmotools/CosmoHaloFinder.cxx

136 lines
4.2 KiB
C++

//============================================================================
// Copyright (c) Kitware, Inc.
// All rights reserved.
// See LICENSE.txt for details.
// This software is distributed WITHOUT ANY WARRANTY; without even
// the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
// PURPOSE. See the above copyright notice for more information.
//
// Copyright 2014 National Technology & Engineering Solutions of Sandia, LLC (NTESS).
// Copyright 2014 UT-Battelle, LLC.
// Copyright 2014 Los Alamos National Security.
//
// Under the terms of Contract DE-NA0003525 with NTESS,
// the U.S. Government retains certain rights in this software.
//
// Under the terms of Contract DE-AC52-06NA25396 with Los Alamos National
// Laboratory (LANL), the U.S. Government retains certain rights in
// this software.
//============================================================================
#include <vtkm/cont/ArrayHandleCast.h>
#include <vtkm/cont/DataSet.h>
#include <vtkm/cont/Initialize.h>
#include <vtkm/io/reader/VTKDataSetReader.h>
#include <vtkm/io/writer/VTKDataSetWriter.h>
#include <vtkm/worklet/CosmoTools.h>
#include <algorithm>
#include <fstream>
#include <iostream>
#include <stdexcept>
#include <string>
static const vtkm::cont::LogLevel CosmoLogLevel = vtkm::cont::LogLevel::UserFirst;
void TestCosmoHaloFinder(const char* fileName)
{
std::cout << std::endl
<< "Testing Cosmology Halo Finder and MBP Center Finder " << fileName << std::endl;
// Open the file for reading
std::ifstream inFile(fileName);
if (inFile.fail())
{
std::cout << "File does not exist " << fileName << std::endl;
return;
}
// Read in number of particles and locations
int nParticles;
inFile >> nParticles;
float* xLocation = new float[nParticles];
float* yLocation = new float[nParticles];
float* zLocation = new float[nParticles];
std::cout << "Running Halo Finder on " << nParticles << std::endl;
for (vtkm::Id p = 0; p < nParticles; p++)
{
inFile >> xLocation[p] >> yLocation[p] >> zLocation[p];
}
vtkm::cont::ArrayHandle<vtkm::Float32> xLocArray =
vtkm::cont::make_ArrayHandle<vtkm::Float32>(xLocation, nParticles);
vtkm::cont::ArrayHandle<vtkm::Float32> yLocArray =
vtkm::cont::make_ArrayHandle<vtkm::Float32>(yLocation, nParticles);
vtkm::cont::ArrayHandle<vtkm::Float32> zLocArray =
vtkm::cont::make_ArrayHandle<vtkm::Float32>(zLocation, nParticles);
// Output halo id, mbp id and min potential per particle
vtkm::cont::ArrayHandle<vtkm::Id> resultHaloId;
vtkm::cont::ArrayHandle<vtkm::Id> resultMBP;
vtkm::cont::ArrayHandle<vtkm::Float32> resultPot;
// Create the worklet and run it
vtkm::Id minHaloSize = 20;
vtkm::Float32 linkingLength = 0.2f;
vtkm::Float32 particleMass = 1.08413e+09f;
{
VTKM_LOG_SCOPE(CosmoLogLevel, "Executing HaloFinder");
vtkm::worklet::CosmoTools cosmoTools;
cosmoTools.RunHaloFinder(xLocArray,
yLocArray,
zLocArray,
nParticles,
particleMass,
minHaloSize,
linkingLength,
resultHaloId,
resultMBP,
resultPot);
}
xLocArray.ReleaseResources();
yLocArray.ReleaseResources();
zLocArray.ReleaseResources();
delete[] xLocation;
delete[] yLocation;
delete[] zLocation;
}
/////////////////////////////////////////////////////////////////////
//
// Form of the input file in ASCII
// Line 1: number of particles in the file
// Line 2+: (float) xLoc (float) yLoc (float) zLoc
//
// CosmoHaloFinder data.cosmotools
//
/////////////////////////////////////////////////////////////////////
int main(int argc, char* argv[])
{
vtkm::cont::SetLogLevelName(CosmoLogLevel, "Cosmo");
vtkm::cont::SetStderrLogLevel(CosmoLogLevel);
vtkm::cont::Initialize(argc, argv);
if (argc < 2)
{
std::cout << "Usage: " << std::endl << "$ " << argv[0] << " <input_file>" << std::endl;
return 1;
}
#ifndef VTKM_ENABLE_LOGGING
std::cout << "Warning: turn on VTKm_ENABLE_LOGGING CMake option to turn on timing." << std::endl;
#endif
TestCosmoHaloFinder(argv[1]);
return 0;
}