added backgroundimage transformation
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5f6b88b34c
commit
507d0065f0
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@ -62,9 +62,8 @@ void CameraMoveCallback::zoom(const bool in) {
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double scale = this->cam->GetParallelScale();
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if (in) {
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if (scale >= 0.2) {
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if (scale >= 0.2)
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scale -= 0.1;
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}
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} else {
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if (scale <= 0.9)
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scale += 0.1;
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@ -8,7 +8,7 @@ TimerCallbackCommand::TimerCallbackCommand() : dt(3600), maxTime(3600*24*365), t
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TimerCallbackCommand* TimerCallbackCommand::New(Program *program) {
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TimerCallbackCommand *cb = new TimerCallbackCommand();
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cb->setProgram(program);
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cb->setPaused(false);
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cb->setPaused(true);
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return cb;
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}
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@ -1,5 +1,7 @@
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#include "BackgroundImage.h"
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#include <vtkImageDataGeometryFilter.h>
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#include <vtkImageChangeInformation.h>
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#include <vtkImageSliceMapper.h>
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#include <vtkCamera.h>
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#include <vtkImageActor.h>
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#include <vtkImageData.h>
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@ -7,6 +9,7 @@
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#include <vtkImageReader2.h>
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#include <vtkImageShiftScale.h>
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#include <vtkMatrix4x4.h>
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#include <vtkPolyDataMapper.h>
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#include <vtkTransform.h>
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#include <vtkTransformFilter.h>
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@ -19,56 +22,62 @@ BackgroundImage::BackgroundImage(string imagePath) : imagePath(imagePath) {
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updateImage();
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}
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vtkSmartPointer<vtkMatrix4x4> BackgroundImage::getMatrix(const double x0, const double y0, const int xMax, const int yMax) {
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double eyeTransform[] = {
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2/(xMax-x0), 0, 0, -(xMax+x0)/(xMax-x0),
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0, 2/(yMax-y0), 0, -(yMax+y0)/(yMax-y0),
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0, 0, 1, 0,
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0, 0, 0, 1
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};
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auto matrix = vtkSmartPointer<vtkMatrix4x4>::New();
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matrix->DeepCopy(eyeTransform);
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return matrix;
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}
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void BackgroundImage::updateImage() {
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// read image data
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vtkSmartPointer<vtkImageReader2> imageReader;
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imageReader.TakeReference(this->readerFactory->CreateImageReader2(this->imagePath.c_str()));
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imageReader->SetFileName(this->imagePath.c_str());
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imageReader->Update();
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// translate image such that the middle is at (0,0)
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vtkNew<vtkImageChangeInformation> imageCenterer;
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imageCenterer->SetInputConnection(imageReader->GetOutputPort());
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imageCenterer->CenterImageOn();
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imageCenterer->Update();
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// get some info from the data we'll need in a second
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vtkSmartPointer<vtkImageData> imageData = imageCenterer->GetOutput();
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double origin[3];
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int extent[6];
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imageData->GetOrigin(origin);
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imageData->GetExtent(extent);
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// TODO: transform the image to the range [-1,1]
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// This will allow the backgorundImage to share a camera with our other layers.
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// Facilitating the cameraMovement callback.
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vtkNew<vtkImageActor> imageActor;
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imageActor->SetInputData(imageData);
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// map the imageData to a vtkPolydata so we can use a vtkTransform
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vtkNew<vtkImageDataGeometryFilter> imageDataGeometryFilter;
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imageDataGeometryFilter->SetInputData(imageData);
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imageDataGeometryFilter->Update();
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this->ren->AddActor(imageActor);
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// setup the vtkTransform - this is where use the data from imageData we got earlier
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vtkNew<vtkTransform> transform;
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transform->SetMatrix(getMatrix(origin[0], origin[1], extent[1]+origin[0], extent[3]+origin[1]));
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vtkSmartPointer<vtkTransformFilter> transformFilter = vtkSmartPointer<vtkTransformFilter>::New();
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transformFilter->SetTransform(transform);
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transformFilter->SetInputConnection(imageDataGeometryFilter->GetOutputPort());
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transformFilter->Update();
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// Create a mapper and actor
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vtkNew<vtkPolyDataMapper> mapper;
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mapper->SetInputConnection(transformFilter->GetOutputPort());
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// // camera stuff
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// // essentially sets the camera to the middle of the background, and points it at the background
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// // TODO: extract this to its own function, separate from the background class.
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// double origin[3], spacing[3];
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// int extent[6];
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// imageData->GetOrigin(origin);
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// imageData->GetSpacing(spacing);
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// imageData->GetExtent(extent);
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//
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// printf("%lf, %lf, %lf\n", origin[0], origin[1], origin[2]);
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// printf("%lf, %lf, %lf\n", spacing[0], spacing[1], spacing[2]);
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// printf("%d, %d, %d, ", extent[0], extent[1], extent[2]);
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// printf("%d, %d, %d\n", extent[3], extent[4], extent[5]);
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//
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// vtkCamera *camera = this->ren->GetActiveCamera();
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// camera->ParallelProjectionOn();
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//
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// double xc = origin[0] + 0.5 * (extent[0] + extent[1]) * spacing[0];
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// double yc = origin[1] + 0.5 * (extent[2] + extent[3]) * spacing[1];
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// double yd = (extent[3] - extent[2] + 1) * spacing[1];
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//
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// printf("%lf, %lf, %lf\n", xc, yc, yd);
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//
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// camera->SetParallelScale(0.5 * yd); // sets to 330; should be 1 -> transform
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// camera->SetFocalPoint(xc, yc, 0.0); // sets to 0,0,0; isnice
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// camera->SetPosition(xc, yc, 1000); // sets to 0,0,1000; isnice
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vtkNew<vtkActor> actor;
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actor->SetMapper(mapper);
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this->ren->AddActor(actor);
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}
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@ -81,8 +90,3 @@ void BackgroundImage::setImagePath(string imagePath) {
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updateImage();
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}
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void BackgroundImage::setCamera(vtkCamera *cam) {
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this->getLayer()->SetActiveCamera(cam);
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// TODO: fix the camera for this layer so this intentionally empty override can be removed.
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}
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@ -16,6 +16,15 @@ private:
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*/
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void updateImage();
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/** This function returns a 4x4matrix which maps the given square of [x0,w] x [y0,h] to the range [-1,1].
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* @param x0 : x coordinate of leftmost edge of image
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* @param y0 : y coordinate of bottommost edge of image
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* @param xMax : x coordinate of rightmost edge of image
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* @param yMax : y coordinate of topmost edge of image
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* @return a 4x4 matrix which transforms the image from its original geometry to the range [-1,1]
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*/
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vtkSmartPointer<vtkMatrix4x4> getMatrix(const double x0, const double y0, const int xMax, const int yMax);
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public:
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/** Constructor.
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@ -32,9 +41,6 @@ public:
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* @param imagePath : String to the path of the new image to use.
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*/
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void setImagePath(std::string imagePath);
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void setCamera(vtkCamera *cam) override;
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};
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#endif
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@ -5,6 +5,7 @@
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#include <vtkGlyphSource2D.h>
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#include <vtkNamedColors.h>
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#include <vtkPolyDataMapper2D.h>
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#include <vtkProperty.h>
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#include <vtkProperty2D.h>
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#include <vtkVertexGlyphFilter.h>
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#include <vtkInteractorStyle.h>
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@ -50,7 +51,7 @@ LGlyphLayer::LGlyphLayer() {
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vtkNew<vtkGlyphSource2D> circleSource;
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circleSource->SetGlyphTypeToCircle();
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circleSource->SetScale(0.05);
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circleSource->SetScale(0.01);
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circleSource->Update();
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vtkNew<vtkGlyph2D> glyph2D;
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@ -65,6 +66,7 @@ LGlyphLayer::LGlyphLayer() {
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vtkNew<vtkActor> actor;
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actor->SetMapper(mapper);
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actor->GetProperty()->SetOpacity(0.8);
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this->ren->AddActor(actor);
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}
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@ -72,10 +74,16 @@ LGlyphLayer::LGlyphLayer() {
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// creates a few points so we can test the updateData function
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void LGlyphLayer::spoofPoints() {
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this->points->InsertNextPoint(-4.125, 61.375 , 0);
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this->points->InsertNextPoint(6.532949683882039, 53.24308582564463, 0); // Coordinates of Zernike
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this->points->InsertNextPoint(5.315307819255385, 60.40001057122271, 0); // Coordinates of Bergen
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this->points->InsertNextPoint( 6.646210231365825, 46.52346296009023, 0); // Coordinates of Lausanne
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this->points->InsertNextPoint(-6.553894313570932, 62.39522131195857, 0); // Coordinates of the top of the Faroe islands
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// this->points->InsertNextPoint(6.532949683882039, 53.24308582564463, 0); // Coordinates of Zernike
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// this->points->InsertNextPoint(5.315307819255385, 60.40001057122271, 0); // Coordinates of Bergen
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// this->points->InsertNextPoint( 6.646210231365825, 46.52346296009023, 0); // Coordinates of Lausanne
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// this->points->InsertNextPoint(-6.553894313570932, 62.39522131195857, 0); // Coordinates of the top of the Faroe islands
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for (int i=0; i < 330; i+=5) {
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for (int j=0; j < 330; j+=5) {
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this->points->InsertNextPoint(-15.875+(12.875+15.875)/330*j, 46.125+(62.625-46.125)/330*i, 0);
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}
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}
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this->points->Modified();
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}
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