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PlantUML is a component that allows to quickly write :
* sequence diagram,
* use case diagram,
* class diagram,
* activity diagram,
* component diagram,
* state diagram
* object diagram
/* ========================================================================
* PlantUML : a free UML diagram generator
* ========================================================================
*
* (C) Copyright 2009-2024, Arnaud Roques
*
* Project Info: https://plantuml.com
*
* If you like this project or if you find it useful, you can support us at:
*
* https://plantuml.com/patreon (only 1$ per month!)
* https://plantuml.com/paypal
*
* This file is part of PlantUML.
*
* PlantUML is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* PlantUML distributed in the hope that it will be useful, but
* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
* License for more details.
*
* You should have received a copy of the GNU General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
* USA.
*
*
* Original Author: Arnaud Roques
*
*/
package net.sourceforge.plantuml.klimt;
import java.awt.geom.Line2D;
import java.awt.geom.Rectangle2D;
import net.sourceforge.plantuml.klimt.geom.XPoint2D;
public class UClip implements UChange {
private final double x;
private final double y;
private final double width;
private final double height;
public UClip(double x, double y, double width, double height) {
this.x = x;
this.y = y;
this.width = width;
this.height = height;
}
public UClip enlarge(double delta) {
return new UClip(x - delta, y - delta, width + 2 * delta, height + 2 * delta);
}
@Override
public String toString() {
return "CLIP x=" + x + " y=" + y + " w=" + width + " h=" + height;
}
public UClip translate(double dx, double dy) {
return new UClip(x + dx, y + dy, width, height);
}
public UClip translate(UTranslate translate) {
return translate(translate.getDx(), translate.getDy());
}
public final double getX() {
return x;
}
public final double getY() {
return y;
}
public final double getWidth() {
return width;
}
public final double getHeight() {
return height;
}
public boolean isInside(XPoint2D pt) {
return isInside(pt.getX(), pt.getY());
}
public boolean isInside(double xp, double yp) {
if (xp < x) {
assert getClippedX(xp) != xp;
return false;
}
if (xp > x + width) {
assert getClippedX(xp) != xp;
return false;
}
if (yp < y) {
assert getClippedY(yp) != yp;
return false;
}
if (yp > y + height) {
assert getClippedY(yp) != yp;
return false;
}
assert getClippedX(xp) == xp;
assert getClippedY(yp) == yp;
return true;
}
// ::comment when __HAXE__
public Rectangle2D.Double getClippedRectangle(Rectangle2D.Double r) {
return (Rectangle2D.Double) r.createIntersection(new Rectangle2D.Double(x, y, width, height));
}
public Line2D.Double getClippedLine(Line2D.Double line) {
if (isInside(line.x1, line.y1) && isInside(line.x2, line.y2))
return line;
if (isInside(line.x1, line.y1) == false && isInside(line.x2, line.y2) == false) {
if (line.x1 == line.x2) {
final double newy1 = getClippedY(line.y1);
final double newy2 = getClippedY(line.y2);
if (newy1 != newy2)
return new Line2D.Double(line.x1, newy1, line.x2, newy2);
}
return null;
}
if (line.x1 != line.x2 && line.y1 != line.y2)
return null;
assert line.x1 == line.x2 || line.y1 == line.y2;
if (line.y1 == line.y2) {
final double newx1 = getClippedX(line.x1);
final double newx2 = getClippedX(line.x2);
return new Line2D.Double(newx1, line.y1, newx2, line.y2);
}
if (line.x1 == line.x2) {
final double newy1 = getClippedY(line.y1);
final double newy2 = getClippedY(line.y2);
return new Line2D.Double(line.x1, newy1, line.x2, newy2);
}
throw new IllegalStateException();
}
public boolean isInside(double x, double y, UPath shape) {
return isInside(x + shape.getMinX(), y + shape.getMinY()) && isInside(x + shape.getMaxX(), y + shape.getMaxY());
}
// ::done
private double getClippedX(double xp) {
if (xp < x)
return x;
if (xp > x + width)
return x + width;
return xp;
}
private double getClippedY(double yp) {
if (yp < y)
return y;
if (yp > y + height)
return y + height;
return yp;
}
}
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