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213 lines
5.5 KiB
213 lines
5.5 KiB
/*=========================================================================
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Program: Visualization Toolkit
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Module: $RCSfile: vtkImageSinusoidSource.cxx,v $
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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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#include "vtkImageSinusoidSource.h"
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#include "vtkImageData.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 "vtkStreamingDemandDrivenPipeline.h"
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#include <math.h>
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vtkCxxRevisionMacro(vtkImageSinusoidSource, "$Revision: 1.41 $");
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vtkStandardNewMacro(vtkImageSinusoidSource);
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//----------------------------------------------------------------------------
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vtkImageSinusoidSource::vtkImageSinusoidSource()
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{
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this->Direction[0] = 1.0;
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this->Direction[1] = 0.0;
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this->Direction[2] = 0.0;
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this->Amplitude = 255.0;
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this->Phase = 0.0;
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this->Period = 20.0;
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this->WholeExtent[0] = 0; this->WholeExtent[1] = 255;
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this->WholeExtent[2] = 0; this->WholeExtent[3] = 255;
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this->WholeExtent[4] = 0; this->WholeExtent[5] = 0;
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this->SetNumberOfInputPorts(0);
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}
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void vtkImageSinusoidSource::SetDirection(double v[3])
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{
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this->SetDirection(v[0],v[1],v[2]);
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}
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void vtkImageSinusoidSource::SetDirection(double v0, double v1, double v2)
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{
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double sum;
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sum = v0*v0 + v1*v1 + v2*v2;
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if (sum == 0.0)
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{
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vtkErrorMacro("Zero direction vector");
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return;
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}
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// normalize
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sum = 1.0 / sqrt(sum);
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v0 *= sum;
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v1 *= sum;
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v2 *= sum;
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if (this->Direction[0] == v0 && this->Direction[1] == v1
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&& this->Direction[2] == v2)
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{
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return;
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}
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this->Direction[0] = v0;
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this->Direction[1] = v1;
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this->Direction[2] = v2;
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this->Modified();
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}
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//----------------------------------------------------------------------------
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void vtkImageSinusoidSource::SetWholeExtent(int xMin, int xMax,
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int yMin, int yMax,
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int zMin, int zMax)
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{
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int modified = 0;
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if (this->WholeExtent[0] != xMin)
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{
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modified = 1;
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this->WholeExtent[0] = xMin ;
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}
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if (this->WholeExtent[1] != xMax)
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{
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modified = 1;
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this->WholeExtent[1] = xMax ;
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}
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if (this->WholeExtent[2] != yMin)
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{
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modified = 1;
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this->WholeExtent[2] = yMin ;
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}
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if (this->WholeExtent[3] != yMax)
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{
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modified = 1;
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this->WholeExtent[3] = yMax ;
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}
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if (this->WholeExtent[4] != zMin)
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{
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modified = 1;
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this->WholeExtent[4] = zMin ;
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}
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if (this->WholeExtent[5] != zMax)
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{
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modified = 1;
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this->WholeExtent[5] = zMax ;
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}
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if (modified)
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{
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this->Modified();
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}
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}
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//----------------------------------------------------------------------------
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int vtkImageSinusoidSource::RequestInformation (
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vtkInformation * vtkNotUsed(request),
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vtkInformationVector** vtkNotUsed( inputVector ),
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vtkInformationVector *outputVector)
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{
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// get the info objects
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vtkInformation* outInfo = outputVector->GetInformationObject(0);
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outInfo->Set(vtkStreamingDemandDrivenPipeline::WHOLE_EXTENT(),
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this->WholeExtent,6);
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vtkDataObject::SetPointDataActiveScalarInfo(outInfo, VTK_DOUBLE, 1);
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return 1;
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}
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void vtkImageSinusoidSource::ExecuteData(vtkDataObject *output)
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{
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vtkImageData *data = this->AllocateOutputData(output);
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double *outPtr;
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int idxX, idxY, idxZ;
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int maxX, maxY, maxZ;
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vtkIdType outIncX, outIncY, outIncZ;
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int *outExt;
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double sum;
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double yContrib, zContrib, xContrib;
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unsigned long count = 0;
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unsigned long target;
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if (data->GetScalarType() != VTK_DOUBLE)
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{
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vtkErrorMacro("Execute: This source only outputs doubles");
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}
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outExt = data->GetExtent();
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// find the region to loop over
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maxX = outExt[1] - outExt[0];
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maxY = outExt[3] - outExt[2];
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maxZ = outExt[5] - outExt[4];
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// Get increments to march through data
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data->GetContinuousIncrements(outExt, outIncX, outIncY, outIncZ);
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outPtr = (double *) data->GetScalarPointer(outExt[0],outExt[2],outExt[4]);
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target = (unsigned long)((maxZ+1)*(maxY+1)/50.0);
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target++;
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// Loop through ouput pixels
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for (idxZ = 0; idxZ <= maxZ; idxZ++)
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{
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zContrib = this->Direction[2] * (idxZ + outExt[4]);
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for (idxY = 0; !this->AbortExecute && idxY <= maxY; idxY++)
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{
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if (!(count%target))
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{
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this->UpdateProgress(count/(50.0*target));
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}
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count++;
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yContrib = this->Direction[1] * (idxY + outExt[2]);
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for (idxX = 0; idxX <= maxX; idxX++)
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{
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xContrib = this->Direction[0] * (double)(idxX + outExt[0]);
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// find dot product
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sum = zContrib + yContrib + xContrib;
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*outPtr = this->Amplitude *
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cos((6.2831853 * sum / this->Period) - this->Phase);
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outPtr++;
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}
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outPtr += outIncY;
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}
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outPtr += outIncZ;
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}
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}
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void vtkImageSinusoidSource::PrintSelf(ostream& os, vtkIndent indent)
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{
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this->Superclass::PrintSelf(os,indent);
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os << indent << "Period: " << this->Period << "\n";
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os << indent << "Phase: " << this->Phase << "\n";
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os << indent << "Amplitude: " << this->Amplitude << "\n";
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os << indent << "Direction: ( "
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<< this->Direction[0] << ", "
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<< this->Direction[1] << ", "
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<< this->Direction[2] << " )\n";
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}
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