OpenCV_pyrMeanShiftFiltering.java
import org.opencv.core.Core;
import org.opencv.core.Mat;
import org.opencv.core.TermCriteria;
import org.opencv.imgcodecs.Imgcodecs;
import org.opencv.imgproc.Imgproc;
import javax.swing.*;
import javax.swing.event.ChangeEvent;
import javax.swing.event.ChangeListener;
import java.awt.*;
import java.awt.image.BufferedImage;
public class OpenCV_pyrMeanShiftFiltering {
static{ System.loadLibrary(Core.NATIVE_LIBRARY_NAME); }
private JFrame frmjavaSwing;
/**
* Launch the application.
*/
public static void main(String[] args) {
EventQueue.invokeLater(new Runnable() {
public void run() {
try {
OpenCV_pyrMeanShiftFiltering window = new OpenCV_pyrMeanShiftFiltering();
window.frmjavaSwing.setVisible(true);
} catch (Exception e) {
e.printStackTrace();
}
}
});
}
/**
* Create the application.
*/
public OpenCV_pyrMeanShiftFiltering() {
initialize();
}
/**
* Initialize the contents of the frame.
*/
private void initialize() {
frmjavaSwing = new JFrame();
frmjavaSwing.setTitle("opencv ªoµe³B²z½m²ß");
frmjavaSwing.setBounds(100, 100, 565, 550);
frmjavaSwing.setDefaultCloseOperation(JFrame.EXIT_ON_CLOSE);
frmjavaSwing.getContentPane().setLayout(null);
final JLabel showSpValue = new JLabel("17");
showSpValue.setBounds(142, 20, 46, 15);
frmjavaSwing.getContentPane().add(showSpValue);
final JSlider slider_method = new JSlider();
slider_method.setMinimum(1);
slider_method.setMaximum(30);
slider_method.setValue(17);
slider_method.setBounds(26, 10, 106, 25);
frmjavaSwing.getContentPane().add(slider_method);
JLabel lblAlpha = new JLabel("SP");
lblAlpha.setBounds(10, 20, 46, 15);
frmjavaSwing.getContentPane().add(lblAlpha);
final JLabel lblNewLabel_2 = new JLabel("");
lblNewLabel_2.setBounds(10, 38, 517, 468);
frmjavaSwing.getContentPane().add(lblNewLabel_2);
JLabel lblSr = new JLabel("SR");
lblSr.setBounds(176, 20, 46, 15);
frmjavaSwing.getContentPane().add(lblSr);
final JSlider slider = new JSlider();
slider.setValue(30);
slider.setMinimum(1);
slider.setMaximum(50);
slider.setBounds(199, 10, 112, 25);
frmjavaSwing.getContentPane().add(slider);
final JLabel showSrValue = new JLabel("30");
showSrValue.setBounds(310, 20, 46, 15);
frmjavaSwing.getContentPane().add(showSrValue);
JLabel lblMaxlevel = new JLabel("maxLevel");
lblMaxlevel.setBounds(342, 20, 65, 15);
frmjavaSwing.getContentPane().add(lblMaxlevel);
final JSlider slider_maxLevel = new JSlider();
slider_maxLevel.setValue(1);
slider_maxLevel.setMinimum(1);
slider_maxLevel.setMaximum(10);
slider_maxLevel.setBounds(404, 10, 106, 25);
frmjavaSwing.getContentPane().add(slider_maxLevel);
final JLabel labelMaxLevel = new JLabel("1");
labelMaxLevel.setBounds(511, 20, 46, 15);
frmjavaSwing.getContentPane().add(labelMaxLevel);
slider_method.addChangeListener(new ChangeListener() {
public void stateChanged(ChangeEvent arg0) {
//System.out.println(slider_alpha.getValue());
showSpValue.setText(slider_method.getValue()+"");
BufferedImage newImage=matToBufferedImage(pyrMeanShiftFiltering(slider_method.getValue(),slider.getValue(),slider_maxLevel.getValue()));
lblNewLabel_2.setIcon(new ImageIcon(newImage));
}
});
slider.addChangeListener(new ChangeListener() {
public void stateChanged(ChangeEvent arg0) {
showSrValue.setText(slider.getValue()+"");
BufferedImage newImage=matToBufferedImage(pyrMeanShiftFiltering(slider_method.getValue(),slider.getValue(),slider_maxLevel.getValue()));
lblNewLabel_2.setIcon(new ImageIcon(newImage));
}
});
slider_maxLevel.addChangeListener(new ChangeListener() {
public void stateChanged(ChangeEvent e) {
labelMaxLevel.setText(slider_maxLevel.getValue()+"");
BufferedImage newImage=matToBufferedImage(pyrMeanShiftFiltering(slider_method.getValue(),slider.getValue(),slider_maxLevel.getValue()));
lblNewLabel_2.setIcon(new ImageIcon(newImage));
}
});
}
public Mat pyrMeanShiftFiltering(int sp,int sr,int maxLevel){
Mat source2 = Imgcodecs.imread("D:\\projects\\Java\\OpenCV_Samples\\resource\\imgs\\clean.jpg ");
Mat output=new Mat();
Imgproc.pyrMeanShiftFiltering(source2, output, sp, sr,maxLevel, new TermCriteria(TermCriteria.MAX_ITER| TermCriteria.EPS,50,0.001));
return output;
}
public BufferedImage matToBufferedImage(Mat matrix) {
int cols = matrix.cols();
int rows = matrix.rows();
int elemSize = (int)matrix.elemSize();
byte[] data = new byte[cols * rows * elemSize];
int type;
matrix.get(0, 0, data);
switch (matrix.channels()) {
case 1:
type = BufferedImage.TYPE_BYTE_GRAY;
break;
case 3:
type = BufferedImage.TYPE_3BYTE_BGR;
// bgr to rgb
byte b;
for(int i=0; i<data.length; i=i+3) {
b = data[i];
data[i] = data[i+2];
data[i+2] = b;
}
break;
default:
return null;
}
BufferedImage image2 = new BufferedImage(cols, rows, type);
image2.getRaster().setDataElements(0, 0, cols, rows, data);
return image2;
}
}
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