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https://github.com/OpenFOAM/ThirdParty-6.git
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188 lines
5.9 KiB
C++
188 lines
5.9 KiB
C++
/*=========================================================================
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Program: Visualization Toolkit
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Module: vtkGeoSampleArcs.cxx
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Copyright (c) Ken Martin, Will Schroeder, Bill Lorensen
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All rights reserved.
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See Copyright.txt or http://www.kitware.com/Copyright.htm for details.
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This software is distributed WITHOUT ANY WARRANTY; without even
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the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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PURPOSE. See the above copyright notice for more information.
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=========================================================================*/
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/*-------------------------------------------------------------------------
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Copyright 2008 Sandia Corporation.
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Under the terms of Contract DE-AC04-94AL85000 with Sandia Corporation,
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the U.S. Government retains certain rights in this software.
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-------------------------------------------------------------------------*/
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#include "vtkGeoSampleArcs.h"
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#include "vtkCamera.h"
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#include "vtkCellArray.h"
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#include "vtkCellData.h"
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#include "vtkCoordinate.h"
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#include "vtkDoubleArray.h"
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#include "vtkFloatArray.h"
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#include "vtkGeoMath.h"
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#include "vtkGlobeSource.h"
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#include "vtkMath.h"
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#include "vtkInformation.h"
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#include "vtkInformationVector.h"
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#include "vtkObjectFactory.h"
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#include "vtkPointData.h"
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#include "vtkRenderWindow.h"
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#include "vtkRendererCollection.h"
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#include "vtkTimerLog.h"
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vtkStandardNewMacro(vtkGeoSampleArcs);
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vtkGeoSampleArcs::vtkGeoSampleArcs()
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{
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this->GlobeRadius = vtkGeoMath::EarthRadiusMeters();
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this->MaximumDistanceMeters = 100000.0;
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this->InputCoordinateSystem = RECTANGULAR;
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this->OutputCoordinateSystem = RECTANGULAR;
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}
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vtkGeoSampleArcs::~vtkGeoSampleArcs()
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{
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}
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int vtkGeoSampleArcs::RequestData(
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vtkInformation *vtkNotUsed(request),
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vtkInformationVector **inputVector,
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vtkInformationVector *outputVector)
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{
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// get the info objects
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vtkInformation *inInfo = inputVector[0]->GetInformationObject(0);
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vtkInformation *outInfo = outputVector->GetInformationObject(0);
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// get the input and output
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vtkPolyData *input = vtkPolyData::SafeDownCast(
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inInfo->Get(vtkDataObject::DATA_OBJECT()));
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vtkPolyData *output = vtkPolyData::SafeDownCast(
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outInfo->Get(vtkDataObject::DATA_OBJECT()));
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// Traverse input lines, adding a circle for each line segment.
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vtkCellArray* lines = input->GetLines();
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vtkPoints* points = input->GetPoints();
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if ( !points )
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{
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return 0;
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}
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vtkCellArray* newLines = vtkCellArray::New();
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float* pointsPtr = static_cast<float*>(points->GetVoidPointer(0));
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vtkPoints* newPoints = vtkPoints::New();
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lines->InitTraversal();
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for (vtkIdType i = 0; i < lines->GetNumberOfCells(); i++)
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{
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vtkIdType npts=0; // to remove warning
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vtkIdType* pts=0; // to remove warning
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lines->GetNextCell(npts, pts);
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double lastPoint[3];
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double curPoint[3];
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double lastPtLL[2];
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double curPtLL[2];
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if (this->InputCoordinateSystem == RECTANGULAR)
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{
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curPoint[0] = pointsPtr[3*pts[0]+0];
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curPoint[1] = pointsPtr[3*pts[0]+1];
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curPoint[2] = pointsPtr[3*pts[0]+2];
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vtkGlobeSource::ComputeLatitudeLongitude(
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curPoint, curPtLL[0], curPtLL[1]);
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}
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else // SPHERICAL
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{
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curPtLL[0] = pointsPtr[3*pts[0]+0];
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curPtLL[1] = pointsPtr[3*pts[0]+1];
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vtkGlobeSource::ComputeGlobePoint(
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curPtLL[0], curPtLL[1], this->GlobeRadius, curPoint);
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}
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for (vtkIdType p = 1; p < npts; ++p)
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{
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// Advance point
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for (int c = 0; c < 3; ++c)
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{
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lastPoint[c] = curPoint[c];
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}
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lastPtLL[0] = curPtLL[0];
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lastPtLL[1] = curPtLL[1];
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if (this->InputCoordinateSystem == RECTANGULAR)
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{
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curPoint[0] = pointsPtr[3*pts[p]+0];
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curPoint[1] = pointsPtr[3*pts[p]+1];
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curPoint[2] = pointsPtr[3*pts[p]+2];
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vtkGlobeSource::ComputeLatitudeLongitude(
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curPoint, curPtLL[0], curPtLL[1]);
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}
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else // SPHERICAL
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{
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curPtLL[0] = pointsPtr[3*pts[p]+0];
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curPtLL[1] = pointsPtr[3*pts[p]+1];
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vtkGlobeSource::ComputeGlobePoint(
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curPtLL[0], curPtLL[1], this->GlobeRadius, curPoint);
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}
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double dist = sqrt(vtkMath::Distance2BetweenPoints(lastPoint, curPoint));
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// Calculate the number of subdivisions.
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vtkIdType numDivisions = static_cast<vtkIdType>(dist / this->MaximumDistanceMeters + 0.5) + 1;
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if (numDivisions < 2)
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{
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numDivisions = 2;
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}
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// Create the new cell
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newLines->InsertNextCell(numDivisions);
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for (vtkIdType s = 0; s < numDivisions; ++s)
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{
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// Interpolate in lat-long.
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double interpPtLL[2];
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double frac = static_cast<double>(s) / (numDivisions - 1);
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for (int c = 0; c < 2; ++c)
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{
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interpPtLL[c] = frac*curPtLL[c] + (1.0 - frac)*lastPtLL[c];
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}
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if (this->OutputCoordinateSystem == RECTANGULAR)
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{
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// Convert lat-long to world;
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double interpPt[3];
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vtkGlobeSource::ComputeGlobePoint(interpPtLL[0], interpPtLL[1], this->GlobeRadius, interpPt);
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vtkIdType newPt = newPoints->InsertNextPoint(interpPt);
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newLines->InsertCellPoint(newPt);
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}
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else // SPHERICAL
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{
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vtkIdType newPt = newPoints->InsertNextPoint(interpPtLL[0], interpPtLL[1], 0.0);
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newLines->InsertCellPoint(newPt);
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}
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}
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}
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}
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// Send the data to output.
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output->SetLines(newLines);
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output->SetPoints(newPoints);
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// Clean up.
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newLines->Delete();
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newPoints->Delete();
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return 1;
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}
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void vtkGeoSampleArcs::PrintSelf(ostream& os, vtkIndent indent)
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{
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this->Superclass::PrintSelf(os,indent);
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os << indent << "GlobeRadius: " << this->GlobeRadius << endl;
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os << indent << "MaximumDistanceMeters: " << this->MaximumDistanceMeters << endl;
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os << indent << "InputCoordinateSystem: " << this->InputCoordinateSystem << endl;
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os << indent << "OutputCoordinateSystem: " << this->OutputCoordinateSystem << endl;
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}
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