vtk-m/vtkm/worklet/testing/UnitTestPointElevation.cxx
Robert Maynard 31138293f9 Pass Fields and CoordinateSystems to Dispatcher::Invoke
Now that we can handle scheduling Fields and CoordinateSystems, do
2016-08-05 15:26:17 -04:00

112 lines
3.6 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 Sandia Corporation.
// Copyright 2014 UT-Battelle, LLC.
// Copyright 2014 Los Alamos National Security.
//
// Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation,
// 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/worklet/PointElevation.h>
#include <vtkm/worklet/DispatcherMapField.h>
#include <vtkm/cont/CellSetExplicit.h>
#include <vtkm/cont/DataSet.h>
#include <vtkm/cont/testing/Testing.h>
#include <vector>
namespace {
vtkm::cont::DataSet MakePointElevationTestDataSet()
{
vtkm::cont::DataSet dataSet;
std::vector<vtkm::Vec<vtkm::Float32,3> > coordinates;
const vtkm::Id dim = 5;
for (vtkm::Id j = 0; j < dim; ++j)
{
vtkm::Float32 z = static_cast<vtkm::Float32>(j) /
static_cast<vtkm::Float32>(dim - 1);
for (vtkm::Id i = 0; i < dim; ++i)
{
vtkm::Float32 x = static_cast<vtkm::Float32>(i) /
static_cast<vtkm::Float32>(dim - 1);
vtkm::Float32 y = (x*x + z*z)/2.0f;
coordinates.push_back(vtkm::make_Vec(x,y,z));
}
}
vtkm::Id numCells = (dim - 1) * (dim - 1);
dataSet.AddCoordinateSystem(
vtkm::cont::CoordinateSystem("coordinates", coordinates));
vtkm::cont::CellSetExplicit<> cellSet(vtkm::Id(coordinates.size()), "cells");
cellSet.PrepareToAddCells(numCells, numCells * 4);
for (vtkm::Id j = 0; j < dim - 1; ++j)
{
for (vtkm::Id i = 0; i < dim - 1; ++i)
{
cellSet.AddCell(vtkm::CELL_SHAPE_QUAD,
4,
vtkm::make_Vec<vtkm::Id>(j * dim + i,
j * dim + i + 1,
(j + 1) * dim + i + 1,
(j + 1) * dim + i));
}
}
cellSet.CompleteAddingCells();
dataSet.AddCellSet(cellSet);
return dataSet;
}
}
void TestPointElevation()
{
std::cout << "Testing PointElevation Worklet" << std::endl;
vtkm::cont::DataSet dataSet = MakePointElevationTestDataSet();
vtkm::cont::ArrayHandle<vtkm::Float32> result;
vtkm::worklet::PointElevation pointElevationWorklet;
pointElevationWorklet.SetLowPoint(vtkm::make_Vec<vtkm::Float64>(0.0, 0.0, 0.0));
pointElevationWorklet.SetHighPoint(vtkm::make_Vec<vtkm::Float64>(0.0, 1.0, 0.0));
pointElevationWorklet.SetRange(0.0, 2.0);
vtkm::worklet::DispatcherMapField<vtkm::worklet::PointElevation>
dispatcher(pointElevationWorklet);
dispatcher.Invoke(dataSet.GetCoordinateSystem(),
result);
vtkm::cont::ArrayHandle<vtkm::Vec<vtkm::Float32,3> > coordinates;
dataSet.GetCoordinateSystem().GetData().CopyTo(coordinates);
for (vtkm::Id i = 0; i < result.GetNumberOfValues(); ++i)
{
VTKM_TEST_ASSERT(
test_equal(coordinates.GetPortalConstControl().Get(i)[1] * 2.0,
result.GetPortalConstControl().Get(i)),
"Wrong result for PointElevation worklet");
}
}
int UnitTestPointElevation(int, char *[])
{
return vtkm::cont::testing::Testing::Run(TestPointElevation);
}