126 lines
4.6 KiB
Java
126 lines
4.6 KiB
Java
import ScanGraph.ScanMatcher;
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import ScanGraph.ScanPoint;
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import Vector.Vector;
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import processing.core.PApplet;
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import java.util.ArrayList;
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public class MatcherVisualizer extends PApplet{
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public static PApplet processing;
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ScanPoint referenceScan;
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ScanPoint scanToMatch;
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ScanPoint scanBeingMatched;
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public static void main(String[] args) {
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PApplet.main("MatcherVisualizer");
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}
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public void settings(){
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processing = this;
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size(1000, 1000);
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// generate two scans rotated by 45 degrees and append them together
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Vector descriptor = new Vector(200, 200);
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ScanPoint scan1 = generateScanPoint(new Vector(500, 500), descriptor, 12);
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ScanPoint scan2 = generateScanPoint(new Vector(500, 500), descriptor.rotate2D((float) Math.PI / 4), 12);
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this.referenceScan = appendScanPoints(scan1, scan2);
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// generate two scans offset by some amount and rotated by 55 degrees and append them together
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Vector rotated = descriptor.rotate2D((float) Math.PI);
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ScanPoint scan4 = generateScanPoint(new Vector(250, 300), rotated, 12);
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ScanPoint scan5 = generateScanPoint(new Vector(250, 300), rotated.rotate2D((float) Math.PI / 4), 12);
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this.scanToMatch = appendScanPoints(scan4, scan5);
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this.scanBeingMatched = new ScanPoint(this.scanToMatch);
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}
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public void draw(){
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iterativeScanMatch();
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// background(0);
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}
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/**
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* @brief Generate a scan point from a scan description
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* @param offset The offset of the scan point from the origin
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* @param scanDescription A vector which describes the length of the line and direction of the line
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* @return A scan point with the given offset and scan description
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*/
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public static ScanPoint generateScanPoint(Vector offset, Vector scanDescription, int numPoints){
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// generate a scan point with the given offset and scan description
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ArrayList<Vector> scan = new ArrayList<>();
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// divide the scan description by the number of points to allow us to scale it back up in the loop
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Vector directionVector = scanDescription.div(numPoints-1);
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for (int i = 0; i < numPoints; i++) {
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scan.add(offset.add(directionVector.mul(i)));
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}
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return new ScanPoint(new Vector(0, 0), 0, scan);
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}
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/**
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* @brief Append two scan points together
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* @param scan1 The first scan point to append
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* @param scan2 The second scan point to append
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* @return A scan point that is the combination of the two scan points
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*/
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public static ScanPoint appendScanPoints(ScanPoint scan1, ScanPoint scan2){
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ArrayList<Vector> points = new ArrayList<>();
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points.addAll(scan1.getPoints());
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points.addAll(scan2.getPoints());
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return new ScanPoint(new Vector(0, 0), 0, points);
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}
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public void delayMillis(long millis){
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// get the current time
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long start = System.currentTimeMillis();
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long end = start + millis;
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while(System.currentTimeMillis() < end){
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// do nothing
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}
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}
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/**
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* @brief Draw a scan point to the screen
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* @param scan The scan point to draw
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* @param color The color to draw the scan point
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*/
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public void drawScan(ScanPoint scan, int[] color) {
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processing.stroke(color[0], color[1], color[2]);
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processing.fill(color[0], color[1], color[2]);
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ArrayList<Vector> points = scan.getPoints();
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for (int i = 0; i < points.size() - 1; i++) {
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Vector point = points.get(i);
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processing.ellipse(point.x, point.y, 5, 5);
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}
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}
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public void iterativeScanMatch() {
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background(0);
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int[] red = {255, 0, 0};
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int[] green = {0, 255, 0};
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int[] blue = {0, 0, 255};
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drawScan(this.referenceScan, red);
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delayMillis(10);
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drawScan(this.scanToMatch, green);
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// do a single scan match and calculate the error
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ScanMatcher matcher = new ScanMatcher();
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matcher.calculateRotationAndTranslationMatrices(this.referenceScan, this.scanBeingMatched);
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this.scanBeingMatched = matcher.applyRotationAndTranslationMatrices(this.scanBeingMatched);
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float singleScanMatchError = matcher.getError(this.referenceScan, this.scanBeingMatched);
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delayMillis(10);
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drawScan(this.scanBeingMatched, blue);
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// do an iterative scan match and calculate the error
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// ScanPoint matchedScan = matcher.iterativeScanMatch(scan1, scan2, 0.01f, 10);
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// float iterativeScanMatchError = matcher.getError(scan1, matchedScan);
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float x = 10+10;
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float y = x+10;
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}
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}
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