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package ext.plantuml.com.ctreber.acearth.projection;

import ext.plantuml.com.ctreber.acearth.util.Coordinate;
import ext.plantuml.com.ctreber.acearth.util.Point3D;

/**
 * 

Cylindrical projection. Show Earth flatly spread out on rectangle. * *

© 2002 Christian Treber, [email protected] * @author Christian Treber, [email protected] * */ public class ProjectionCyl extends Projection { /** *

All of Earth is visible. * * @param pPoint * @return */ public boolean isVisible(Point3D pPoint) { return true; } public Coordinate getLocation(int pX, int pY) { final Coordinate lRaw = new Coordinate(Math.atan(inverseFinalizeY(pY)), inverseFinalizeX(pX)); return rotateReverse(lRaw.getPoint3DRads()).getCoordinate(); } /** *

The scale is set so that a value of * 2PI gets mapped to the full image width times the magnification. * But see ProjectionOrtho.setScale(). */ protected void setScale() { // Makes 2PI come out as full image width fScale = fViewMagnification * fImageWidth / (2 * Math.PI); } /** * @return Longitude (-PI to PI), linearly on x axis. */ public double projectX(double pX, double pZ) { return Math.atan2(pX, pZ); } public double inverseProjectX(double pX) { return Math.sin(pX); } /** * @return Latitude (-PI/2 to PI/2), projected from center of Earth on * y axis with a linear scale. */ public double projectY(double pY) { return (pY >= 0.9999999999) ? 1e6 : (pY <= -0.9999999999) ? -1e6 : Math.tan(Math.asin(pY)); } public double inverseProjectY(double y) { return Math.sin(Math.atan(y)); } }





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