added create elev image
This commit is contained in:
parent
068a5ff714
commit
526bb53b70
2 changed files with 608 additions and 0 deletions
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package btools.mapcreator;
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import java.awt.Color;
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import java.awt.image.BufferedImage;
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import java.awt.image.DataBufferInt;
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import java.io.BufferedInputStream;
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import java.io.File;
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import java.io.FileInputStream;
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import java.io.FileOutputStream;
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import java.io.InputStream;
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import java.util.HashMap;
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import java.util.Map;
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import java.util.Map.Entry;
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import java.util.TreeMap;
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import javax.imageio.ImageIO;
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public class CreateElevationRasterImage {
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final static boolean DEBUG = false;
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int[] data;
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ElevationRaster lastSrtmRaster;
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Map<String, ElevationRaster> srtmmap;
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int lastSrtmLonIdx;
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int lastSrtmLatIdx;
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String srtmdir;
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boolean missingData;
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Map<Short, Color> colorMap;
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private void createImage(double lon, double lat, String dir, String imageName, int maxX, int maxY, int downscale, String format) throws Exception {
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srtmdir = dir;
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if (format.equals("hgt")) {
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createImageFromHgt(lon, lat, dir, imageName, maxX, maxY);
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return;
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}
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srtmmap = new HashMap<>();
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lastSrtmLonIdx = -1;
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lastSrtmLatIdx = -1;
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lastSrtmRaster = null;
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NodeData n = new NodeData(1, lon, lat);
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ElevationRaster srtm = srtmForNode(n.ilon, n.ilat);
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System.out.println("srtm " + srtm.toString());
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//System.out.println("srtm elev " + srtm.getElevation(n.ilon, n.ilat));
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double[] pos = getElevationPos(srtm, n.ilon, n.ilat);
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System.out.println("srtm pos " + pos[0] + " " + pos[1]); // Arrays.toString(pos));
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short[] raster = srtm.eval_array;
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int rasterX = srtm.ncols;
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int rasterY = srtm.nrows;
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int tileSize = 1000 / downscale;
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int sizeX = (maxX);
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int sizeY = (maxY);
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int[] imgraster = new int[sizeX * sizeY];
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System.out.println("srtm target " + sizeX + " " + sizeY + " (" + rasterX + " " + rasterY + ")");
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for (int y = 0; y < sizeY; y++) {
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for (int x = 0; x < sizeX; x++) {
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//short e = getElevationXY(srtm, /*pos[0] + */(sizeY - y) * downscale, /*pos[1] +*/ (x * downscale));
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short e = get(srtm, sizeY - y, x);
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if (e == Short.MIN_VALUE) {
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imgraster[sizeY * y + x] = 0xffff;
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} else {
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//imgraster[sizeY * y + x] = getColorForHeight((short)(e/4)); //(int)(e/4.);
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imgraster[sizeY * y + x] = getColorForHeight(e);
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}
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}
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}
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if (DEBUG) {
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String out = "short ";
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for (int i = 0; i < 100; i++) {
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out += " " + get(srtm, sizeY - 0, i);
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}
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System.out.println(out);
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}
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BufferedImage argbImage = new BufferedImage(sizeX, sizeY, BufferedImage.TYPE_INT_ARGB);
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data = ((DataBufferInt) argbImage.getRaster().getDataBuffer()).getData();
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for (int y = 0; y < sizeY; y++) {
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for (int x = 0; x < sizeX; x++) {
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int v0 = imgraster[sizeX * y + x];
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int rgb;
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if (v0 != 0xffff)
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rgb = 0xff000000 | v0; //(v0 << 8);
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else
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rgb = 0xff000000;
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data[y * sizeX + x] = rgb;
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}
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}
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ImageIO.write(argbImage, "png", new FileOutputStream(imageName));
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}
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private void createImageFromHgt(double lon, double lat, String dir, String imageName, int maxX, int maxY) throws Exception {
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HgtReader rdr = new HgtReader(dir);
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short[] data = rdr.getElevationDataFromHgt(lat, lon);
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int size = (data != null ? data.length : 0);
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int rowlen = (int) Math.sqrt(size);
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System.out.println("hgt size " + rowlen);
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int sizeX = (maxX);
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int sizeY = (maxY);
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int[] imgraster = new int[sizeX * sizeY];
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for (int y = 0; y < sizeY; y++) {
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for (int x = 0; x < sizeX; x++) {
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short e = data[(rowlen * y) + x];
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if (e == HgtReader.HGT_VOID) {
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imgraster[sizeY * y + x] = 0xffff;
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} else if (e == 0) {
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imgraster[sizeY * y + x] = 0xffff;
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} else {
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imgraster[sizeY * y + x] = getColorForHeight((short) (e)); //(int)(e/4.);
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}
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}
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}
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if (DEBUG) {
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String out = "short ";
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for (int i = 0; i < 100; i++) {
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out += " " + data[i];
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}
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System.out.println(out);
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}
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BufferedImage argbImage = new BufferedImage(sizeX, sizeY, BufferedImage.TYPE_INT_ARGB);
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int[] idata = ((DataBufferInt) argbImage.getRaster().getDataBuffer()).getData();
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for (int y = 0; y < sizeY; y++) {
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for (int x = 0; x < sizeX; x++) {
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int v0 = imgraster[sizeX * y + x];
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int rgb;
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if (v0 != 0xffff)
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rgb = 0xff000000 | v0; //(v0 << 8);
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else
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rgb = 0xff000000;
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idata[y * sizeX + x] = rgb;
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}
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}
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ImageIO.write(argbImage, "png", new FileOutputStream(imageName));
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}
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public double[] getElevationPos(ElevationRaster srtm, int ilon, int ilat) {
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double lon = ilon / 1000000. - 180.;
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double lat = ilat / 1000000. - 90.;
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double dcol = (lon - srtm.xllcorner) / srtm.cellsize - 0.5;
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double drow = (lat - srtm.yllcorner) / srtm.cellsize - 0.5;
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int row = (int) drow;
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int col = (int) dcol;
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if (col < 0) col = 0;
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if (row < 0) row = 0;
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return new double[]{drow, dcol};
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}
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private short get(ElevationRaster srtm, int r, int c) {
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short e = srtm.eval_array[(srtm.nrows - 1 - r) * srtm.ncols + c];
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if (e == Short.MIN_VALUE) missingData = true;
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return e;
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}
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public short getElevationXY(ElevationRaster srtm, double drow, double dcol) {
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int row = (int) drow;
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int col = (int) dcol;
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if (col < 0) col = 0;
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if (col >= srtm.ncols - 1) col = srtm.ncols - 2;
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if (row < 0) row = 0;
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if (row >= srtm.nrows - 1) row = srtm.nrows - 2;
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double wrow = drow - row;
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double wcol = dcol - col;
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missingData = false;
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double eval = (1. - wrow) * (1. - wcol) * get(srtm, row, col)
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+ (wrow) * (1. - wcol) * get(srtm, row + 1, col)
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+ (1. - wrow) * (wcol) * get(srtm, row, col + 1)
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+ (wrow) * (wcol) * get(srtm, row + 1, col + 1);
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return missingData ? Short.MIN_VALUE : (short) (eval * 4);
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}
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int getColorForHeight(short h) {
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if (colorMap == null) {
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colorMap = new TreeMap<>();
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colorMap.put((short) 0, new Color(102, 153, 153));
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colorMap.put((short) 1, new Color(0, 102, 0));
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colorMap.put((short) 500, new Color(251, 255, 128));
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colorMap.put((short) 1200, new Color(224, 108, 31));
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colorMap.put((short) 2500, new Color(200, 55, 55));
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colorMap.put((short) 4000, new Color(215, 244, 244));
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colorMap.put((short) 8000, new Color(255, 244, 244));
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}
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Color lastColor = null;
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short lastKey = 0;
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for (Entry<Short, Color> entry : colorMap.entrySet()) {
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short key = entry.getKey();
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Color value = entry.getValue();
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if (key == h) return value.getRGB();
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if (lastColor != null && lastKey < h && key > h) {
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double between = (double) (h - lastKey) / (key - lastKey);
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return mixColors(value, lastColor, between);
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}
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lastColor = value;
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lastKey = key;
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}
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return 0;
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}
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public int mixColors(Color color1, Color color2, double percent) {
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double inverse_percent = 1.0 - percent;
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int redPart = (int) (color1.getRed() * percent + color2.getRed() * inverse_percent);
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int greenPart = (int) (color1.getGreen() * percent + color2.getGreen() * inverse_percent);
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int bluePart = (int) (color1.getBlue() * percent + color2.getBlue() * inverse_percent);
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return new Color(redPart, greenPart, bluePart).getRGB();
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}
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private ElevationRaster srtmForNode(int ilon, int ilat) throws Exception {
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int srtmLonIdx = (ilon + 5000000) / 5000000;
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int srtmLatIdx = (654999999 - ilat) / 5000000 - 100; // ugly negative rounding...
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if (srtmLonIdx == lastSrtmLonIdx && srtmLatIdx == lastSrtmLatIdx) {
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return lastSrtmRaster;
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}
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lastSrtmLonIdx = srtmLonIdx;
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lastSrtmLatIdx = srtmLatIdx;
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String slonidx = "0" + srtmLonIdx;
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String slatidx = "0" + srtmLatIdx;
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String filename = "srtm_" + slonidx.substring(slonidx.length() - 2) + "_" + slatidx.substring(slatidx.length() - 2);
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lastSrtmRaster = srtmmap.get(filename);
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if (lastSrtmRaster == null && !srtmmap.containsKey(filename)) {
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File f = new File(new File(srtmdir), filename + ".bef");
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if (f.exists()) {
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System.out.println("*** reading: " + f);
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try {
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InputStream isc = new BufferedInputStream(new FileInputStream(f));
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lastSrtmRaster = new ElevationRasterCoder().decodeRaster(isc);
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isc.close();
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} catch (Exception e) {
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System.out.println("**** ERROR reading " + f + " ****");
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}
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srtmmap.put(filename, lastSrtmRaster);
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return lastSrtmRaster;
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}
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srtmmap.put(filename, lastSrtmRaster);
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}
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return lastSrtmRaster;
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}
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public static void main(String[] args) throws Exception {
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if (args.length < 6) {
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System.out.println("usage: java CreateLidarImage <lon> <lat> <srtm-folder> <imageFileName> <maxX> <maxY> <downscale> [type]");
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System.out.println("\nwhere: type = [bef|hgt] downscale = [1|2|4|..]");
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return;
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}
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String format = args.length == 8 ? args[7] : "bef";
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new CreateElevationRasterImage().createImage(Double.parseDouble(args[0]), Double.parseDouble(args[1]), args[2], args[3],
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Integer.parseInt(args[4]), Integer.parseInt(args[5]), Integer.parseInt(args[6]), format);
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}
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}
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// License: GPL. For details, see LICENSE file.
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package btools.mapcreator;
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import java.io.BufferedInputStream;
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import java.io.File;
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import java.io.FileInputStream;
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import java.io.FileNotFoundException;
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import java.io.InputStream;
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import java.nio.ByteBuffer;
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import java.nio.ByteOrder;
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import java.nio.ShortBuffer;
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import java.nio.channels.FileChannel;
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import java.util.HashMap;
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import java.util.Map;
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import java.util.zip.ZipEntry;
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import java.util.zip.ZipInputStream;
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/**
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* adapted from https://github.com/JOSM/josm-plugins/blob/master/ElevationProfile/src/org/openstreetmap/josm/plugins/elevation/HgtReader.java
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* <p>
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* Class HgtReader reads data from SRTM HGT files. Currently this class is restricted to a resolution of 3 arc seconds.
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* <p>
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* SRTM data files are available at the <a href="http://dds.cr.usgs.gov/srtm/version2_1/SRTM3">NASA SRTM site</a>
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*
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* @author Oliver Wieland <oliver.wieland@online.de>
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*/
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public class HgtReader {
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final static boolean DEBUG = false;
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private static final int SECONDS_PER_MINUTE = 60;
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public static final String HGT_EXT = ".hgt";
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public static final String ZIP_EXT = ".zip";
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// alter these values for different SRTM resolutions
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public static final int HGT3_RES = 3; // resolution in arc seconds
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public static final int HGT3_ROW_LENGTH = 1201; // number of elevation values per line
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public static final int HGT_VOID = -32768; // magic number which indicates 'void data' in HGT file
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public static final int HGT1_RES = 1; // <<- The new SRTM is 1-ARCSEC
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public static final int HGT1_ROW_LENGTH = 3601; //-- New file resolution is 3601x3601
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/**
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* The 'no elevation' data magic.
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*/
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public static double NO_ELEVATION = Double.NaN;
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private static String srtmFolder = "";
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private static final Map<String, ShortBuffer> cache = new HashMap<>();
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public HgtReader(String folder) {
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srtmFolder = folder;
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}
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public static double getElevationFromHgt(double lat, double lon) {
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try {
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String file = getHgtFileName(lat, lon);
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if (DEBUG) System.out.println("HGT buffer " + file + " for " + lat + " " + lon);
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// given area in cache?
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if (!cache.containsKey(file)) {
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// fill initial cache value. If no file is found, then
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// we use it as a marker to indicate 'file has been searched
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// but is not there'
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cache.put(file, null);
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// Try all resource directories
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//for (String location : Main.pref.getAllPossiblePreferenceDirs())
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{
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String fullPath = new File(srtmFolder, file + HGT_EXT).getPath();
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File f = new File(fullPath);
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if (f.exists()) {
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// found something: read HGT file...
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ShortBuffer data = readHgtFile(fullPath);
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// ... and store result in cache
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cache.put(file, data);
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//break;
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} else {
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fullPath = new File(srtmFolder, file + ZIP_EXT).getPath();
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f = new File(fullPath);
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if (f.exists()) {
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ZipInputStream zis = new ZipInputStream(new BufferedInputStream(new FileInputStream(f)));
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try {
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for (; ; ) {
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ZipEntry ze = zis.getNextEntry();
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if (ze == null) break;
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if (ze.getName().toLowerCase().endsWith(HGT_EXT)) {
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// System.out.println("read zip " + ze.getName());
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ShortBuffer data = readHgtStream(zis);
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// ... and store result in cache
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cache.put(file, data);
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break;
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}
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zis.closeEntry();
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}
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} finally {
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zis.close();
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}
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}
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}
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System.out.println("*** reading: " + f.getName() + " " + cache.get(file));
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}
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}
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// read elevation value
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return readElevation(lat, lon);
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} catch (FileNotFoundException e) {
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System.err.println("HGT Get elevation " + lat + ", " + lon + " failed: => " + e.getMessage());
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// no problem... file not there
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return NO_ELEVATION;
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} catch (Exception ioe) {
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// oops...
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ioe.printStackTrace(System.err);
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// fallback
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return NO_ELEVATION;
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}
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}
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public static short[] getElevationDataFromHgt(double lat, double lon) {
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try {
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if (lon < 0) lon += 1;
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if (lat < 0) lat += 1;
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String file = getHgtFileName(lat, lon);
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if (DEBUG) System.out.println("HGT buffer " + file + " for " + lat + " " + lon);
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ShortBuffer data = null;
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// Try all resource directories
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//for (String location : Main.pref.getAllPossiblePreferenceDirs())
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String fullPath = new File(srtmFolder, file + HGT_EXT).getPath();
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File f = new File(fullPath);
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if (f.exists()) {
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// found something: read HGT file...
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data = readHgtFile(fullPath);
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} else {
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fullPath = new File(srtmFolder, file + ZIP_EXT).getPath();
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f = new File(fullPath);
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if (f.exists()) {
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ZipInputStream zis = new ZipInputStream(new BufferedInputStream(new FileInputStream(f)));
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try {
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for (; ; ) {
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ZipEntry ze = zis.getNextEntry();
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if (ze == null) break;
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if (ze.getName().toLowerCase().endsWith(HGT_EXT)) {
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// System.out.println("read zip " + ze.getName());
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data = readHgtStream(zis);
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break;
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}
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zis.closeEntry();
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}
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} finally {
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zis.close();
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}
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}
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}
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System.out.println("*** reading: " + f.getName() + " " + (data != null ? data.limit() : -1));
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if (data != null) {
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short[] array = new short[data.limit()];
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data.get(array);
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return array;
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}
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return null;
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} catch (FileNotFoundException e) {
|
||||
System.err.println("HGT Get elevation " + lat + ", " + lon + " failed: => " + e.getMessage());
|
||||
// no problem... file not there
|
||||
return null;
|
||||
} catch (Exception ioe) {
|
||||
// oops...
|
||||
ioe.printStackTrace(System.err);
|
||||
// fallback
|
||||
return null;
|
||||
}
|
||||
}
|
||||
|
||||
@SuppressWarnings("resource")
|
||||
private static ShortBuffer readHgtFile(String file) throws Exception {
|
||||
if (file == null) throw new Exception("no hgt file " + file);
|
||||
|
||||
FileChannel fc = null;
|
||||
ShortBuffer sb = null;
|
||||
try {
|
||||
// Eclipse complains here about resource leak on 'fc' - even with 'finally' clause???
|
||||
fc = new FileInputStream(file).getChannel();
|
||||
// choose the right endianness
|
||||
|
||||
ByteBuffer bb = ByteBuffer.allocateDirect((int) fc.size());
|
||||
while (bb.remaining() > 0) fc.read(bb);
|
||||
|
||||
bb.flip();
|
||||
//sb = bb.order(ByteOrder.LITTLE_ENDIAN).asShortBuffer();
|
||||
sb = bb.order(ByteOrder.BIG_ENDIAN).asShortBuffer();
|
||||
} finally {
|
||||
if (fc != null) fc.close();
|
||||
}
|
||||
|
||||
return sb;
|
||||
}
|
||||
|
||||
// @SuppressWarnings("resource")
|
||||
private static ShortBuffer readHgtStream(InputStream zis) throws Exception {
|
||||
if (zis == null) throw new Exception("no hgt stream ");
|
||||
|
||||
ShortBuffer sb = null;
|
||||
try {
|
||||
// choose the right endianness
|
||||
|
||||
byte[] bytes = zis.readAllBytes();
|
||||
ByteBuffer bb = ByteBuffer.allocate(bytes.length);
|
||||
bb.put(bytes, 0, bytes.length);
|
||||
//while (bb.remaining() > 0) zis.read(bb, 0, size);
|
||||
|
||||
//ByteBuffer bb = ByteBuffer.allocate(zis.available());
|
||||
//Channels.newChannel(zis).read(bb);
|
||||
bb.flip();
|
||||
//sb = bb.order(ByteOrder.LITTLE_ENDIAN).asShortBuffer();
|
||||
sb = bb.order(ByteOrder.BIG_ENDIAN).asShortBuffer();
|
||||
} finally {
|
||||
|
||||
}
|
||||
|
||||
return sb;
|
||||
}
|
||||
|
||||
/**
|
||||
* Reads the elevation value for the given coordinate.
|
||||
* <p>
|
||||
* See also <a href="http://gis.stackexchange.com/questions/43743/how-to-extract-elevation-from-hgt-file">stackexchange.com</a>
|
||||
*
|
||||
* @param lat, lon the coordinate to get the elevation data for
|
||||
* @return the elevation value or <code>Double.NaN</code>, if no value is present
|
||||
*/
|
||||
public static double readElevation(double lat, double lon) {
|
||||
String tag = getHgtFileName(lat, lon);
|
||||
|
||||
ShortBuffer sb = cache.get(tag);
|
||||
|
||||
if (sb == null) {
|
||||
return NO_ELEVATION;
|
||||
}
|
||||
|
||||
if (DEBUG) System.out.println("HGT buffer size " + sb.capacity() + " limit " + sb.limit());
|
||||
try {
|
||||
int rowLength = HGT3_ROW_LENGTH;
|
||||
int resolution = HGT3_RES;
|
||||
if (sb.capacity() > (HGT3_ROW_LENGTH * HGT3_ROW_LENGTH)) {
|
||||
rowLength = HGT1_ROW_LENGTH;
|
||||
resolution = HGT1_RES;
|
||||
}
|
||||
// see http://gis.stackexchange.com/questions/43743/how-to-extract-elevation-from-hgt-file
|
||||
double fLat = frac(lat) * SECONDS_PER_MINUTE;
|
||||
double fLon = frac(lon) * SECONDS_PER_MINUTE;
|
||||
|
||||
// compute offset within HGT file
|
||||
int row = (int) Math.round((fLat) * SECONDS_PER_MINUTE / resolution);
|
||||
int col = (int) Math.round((fLon) * SECONDS_PER_MINUTE / resolution);
|
||||
if (lon < 0) col = rowLength - col - 1;
|
||||
if (lat > 0) row = rowLength - row - 1;
|
||||
|
||||
|
||||
//row = rowLength - row;
|
||||
int cell = (rowLength * (row)) + col;
|
||||
//int cell = ((rowLength * (latitude)) + longitude);
|
||||
|
||||
if (DEBUG)
|
||||
System.out.println("Read HGT elevation data from row/col/cell " + row + "," + col + ", " + cell + ", " + sb.limit());
|
||||
|
||||
// valid position in buffer?
|
||||
if (cell < sb.limit()) {
|
||||
short ele = sb.get(cell);
|
||||
// check for data voids
|
||||
if (ele == HGT_VOID) {
|
||||
return NO_ELEVATION;
|
||||
} else {
|
||||
return ele;
|
||||
}
|
||||
} else {
|
||||
return NO_ELEVATION;
|
||||
}
|
||||
} catch (Exception e) {
|
||||
System.err.println("error at " + lon + " " + lat + " ");
|
||||
e.printStackTrace();
|
||||
}
|
||||
return NO_ELEVATION;
|
||||
}
|
||||
|
||||
/**
|
||||
* Gets the associated HGT file name for the given way point. Usually the
|
||||
* format is <tt>[N|S]nn[W|E]mmm.hgt</tt> where <i>nn</i> is the integral latitude
|
||||
* without decimals and <i>mmm</i> is the longitude.
|
||||
*
|
||||
* @param llat,llon the coordinate to get the filename for
|
||||
* @return the file name of the HGT file
|
||||
*/
|
||||
public static String getHgtFileName(double llat, double llon) {
|
||||
int lat = (int) llat;
|
||||
int lon = (int) llon;
|
||||
|
||||
String latPref = "N";
|
||||
if (lat < 0) {
|
||||
latPref = "S";
|
||||
lat = -lat + 1;
|
||||
}
|
||||
String lonPref = "E";
|
||||
if (lon < 0) {
|
||||
lonPref = "W";
|
||||
lon = -lon + 1;
|
||||
}
|
||||
|
||||
return String.format("%s%02d%s%03d", latPref, lat, lonPref, lon);
|
||||
}
|
||||
|
||||
public static double frac(double d) {
|
||||
long iPart;
|
||||
double fPart;
|
||||
|
||||
// Get user input
|
||||
iPart = (long) d;
|
||||
fPart = d - iPart;
|
||||
return Math.abs(fPart);
|
||||
}
|
||||
|
||||
public static void clear() {
|
||||
if (cache != null) {
|
||||
cache.clear();
|
||||
}
|
||||
}
|
||||
|
||||
public static void main(String[] args) throws Exception {
|
||||
System.out.println("*** HGT position values and enhance elevation");
|
||||
if (args.length == 3) {
|
||||
HgtReader elevReader = new HgtReader(args[0]);
|
||||
double lon = Double.parseDouble(args[1]);
|
||||
double lat = Double.parseDouble(args[2]);
|
||||
// check hgt direct
|
||||
double elev = elevReader.getElevationFromHgt(lat, lon);
|
||||
System.out.println("-----> elv for hgt " + lat + ", " + lon + " = " + elev);
|
||||
|
||||
}
|
||||
}
|
||||
}
|
Loading…
Reference in a new issue