/* * Copyright (C) 2011-2012 Dr. John Lindsay <jlindsay@uoguelph.ca> * * This program 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. * * This program is 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 program. If not, see <http://www.gnu.org/licenses/>. */ package plugins; import java.io.DataInputStream; import java.io.BufferedReader; import java.io.InputStreamReader; import java.util.Date; import java.io.FileInputStream; import java.io.File; import java.io.FileWriter; import java.io.BufferedWriter; import java.io.PrintWriter; import whitebox.geospatialfiles.WhiteboxRaster; import whitebox.interfaces.InteropPlugin; import whitebox.interfaces.WhiteboxPluginHost; import whitebox.interfaces.WhiteboxPlugin; import whitebox.utilities.StringUtilities; /** * This tool can be used to import a GRASS ASCII grid file to Whitebox GAT raster file format. * * @author Dr. John Lindsay email: jlindsay@uoguelph.ca */ public class ImportGRASSAsciiGrid implements WhiteboxPlugin, InteropPlugin { private WhiteboxPluginHost myHost = null; private String[] args; /** * Used to retrieve the plugin tool's name. This is a short, unique name * containing no spaces. * * @return String containing plugin name. */ @Override public String getName() { return "ImportGRASSAsciiGrid"; } /** * Used to retrieve the plugin tool's descriptive name. This can be a longer * name (containing spaces) and is used in the interface to list the tool. * * @return String containing the plugin descriptive name. */ @Override public String getDescriptiveName() { return "Import GRASS ASCII Grid"; } /** * Used to retrieve a short description of what the plugin tool does. * * @return String containing the plugin's description. */ @Override public String getToolDescription() { return "Imports a GRASS ASCII grid file (.txt)."; } /** * Used to identify which toolboxes this plugin tool should be listed in. * * @return Array of Strings. */ @Override public String[] getToolbox() { String[] ret = {"IOTools"}; return ret; } /** * Sets the WhiteboxPluginHost to which the plugin tool is tied. This is the * class that the plugin will send all feedback messages, progress updates, * and return objects. * * @param host The WhiteboxPluginHost that called the plugin tool. */ @Override public void setPluginHost(WhiteboxPluginHost host) { myHost = host; } /** * Used to communicate feedback pop-up messages between a plugin tool and * the main Whitebox user-interface. * * @param feedback String containing the text to display. */ private void showFeedback(String message) { if (myHost != null) { myHost.showFeedback(message); } else { System.out.println(message); } } /** * Used to communicate a return object from a plugin tool to the main * Whitebox user-interface. * * @return Object, such as an output WhiteboxRaster. */ private void returnData(Object ret) { if (myHost != null) { myHost.returnData(ret); } } private int previousProgress = 0; private String previousProgressLabel = ""; /** * Used to communicate a progress update between a plugin tool and the main * Whitebox user interface. * * @param progressLabel A String to use for the progress label. * @param progress Float containing the progress value (between 0 and 100). */ private void updateProgress(String progressLabel, int progress) { if (myHost != null && ((progress != previousProgress) || (!progressLabel.equals(previousProgressLabel)))) { myHost.updateProgress(progressLabel, progress); } previousProgress = progress; previousProgressLabel = progressLabel; } /** * Used to communicate a progress update between a plugin tool and the main * Whitebox user interface. * * @param progress Float containing the progress value (between 0 and 100). */ private void updateProgress(int progress) { if (myHost != null && progress != previousProgress) { myHost.updateProgress(progress); } previousProgress = progress; } /** * Sets the arguments (parameters) used by the plugin. * * @param args An array of string arguments. */ @Override public void setArgs(String[] args) { this.args = args.clone(); } private boolean cancelOp = false; /** * Used to communicate a cancel operation from the Whitebox GUI. * * @param cancel Set to true if the plugin should be canceled. */ @Override public void setCancelOp(boolean cancel) { cancelOp = cancel; } private void cancelOperation() { showFeedback("Operation cancelled."); updateProgress("Progress: ", 0); } private boolean amIActive = false; /** * Used by the Whitebox GUI to tell if this plugin is still running. * * @return a boolean describing whether or not the plugin is actively being * used. */ @Override public boolean isActive() { return amIActive; } /** * Used to execute this plugin tool. */ @Override public void run() { amIActive = true; String str1 = null; FileWriter fw = null; BufferedWriter bw = null; PrintWriter out = null; DataInputStream in = null; BufferedReader br = null; try { String inputFilesString = null; String grassFile = null; String whiteboxHeaderFile = null; int i = 0; int row, col, rows, cols; String[] imageFiles; int numImages = 0; int progress = 0; double cellsize = 0; double north = 0; double east = 0; double west = 0; double south = 0; double arcNoData = -9999; double whiteboxNoData = -32768d; double z = 0; String delimiter = " "; if (args.length <= 0) { showFeedback("Plugin parameters have not been set."); return; } inputFilesString = args[0]; // check to see that the inputHeader and outputHeader are not null. if ((inputFilesString == null)) { showFeedback("One or more of the input parameters have not been set properly."); return; } imageFiles = inputFilesString.split(";"); numImages = imageFiles.length; for (i = 0; i < numImages; i++) { if (numImages > 1) { progress = (int) (100f * i / (numImages - 1)); updateProgress("Loop " + (i + 1) + " of " + numImages + ":", progress); } grassFile = imageFiles[i]; // check to see if the file exists. if (!((new File(grassFile)).exists())) { showFeedback("GRASS raster file does not exist."); return; } if (grassFile.lastIndexOf(".") >= 0) { // there is an extension String extension = grassFile.substring(grassFile.lastIndexOf(".")); whiteboxHeaderFile = grassFile.replace(extension, ".dep"); } else { whiteboxHeaderFile = grassFile + ".dep"; } (new File(whiteboxHeaderFile)).delete(); (new File(whiteboxHeaderFile.replace(".dep", ".tas"))).delete(); FileInputStream fstream = new FileInputStream(grassFile); rows = 0; cols = 0; // Get the object of DataInputStream in = new DataInputStream(fstream); br = new BufferedReader(new InputStreamReader(in)); if (grassFile != null) { String line; String[] str; //Read File Line By Line, getting the header data. while ((line = br.readLine()) != null) { str = line.split(delimiter); if (str.length <= 1) { delimiter = "\t"; str = line.split(delimiter); if (str.length <= 1) { delimiter = " "; str = line.split(delimiter); if (str.length <= 1) { delimiter = ","; str = line.split(delimiter); } } } if (str[0].toLowerCase().contains("north")) { north = Double.parseDouble(str[str.length - 1]); } else if (str[0].toLowerCase().contains("south")) { south = Double.parseDouble(str[str.length - 1]); } else if (str[0].toLowerCase().contains("east")) { east = Double.parseDouble(str[str.length - 1]); } else if (str[0].toLowerCase().contains("west")) { west = Double.parseDouble(str[str.length - 1]); } else if (str[0].toLowerCase().contains("rows")) { rows = Integer.parseInt(str[str.length - 1]); } else if (str[0].toLowerCase().contains("cols")) { cols = Integer.parseInt(str[str.length - 1]); } else if (str[0].toLowerCase().contains("nodata")) { arcNoData = Double.parseDouble(str[str.length - 1]); } else { break; } } // create the whitebox header file. fw = new FileWriter(whiteboxHeaderFile, false); bw = new BufferedWriter(fw); out = new PrintWriter(bw, true); str1 = "Min:\t" + Double.toString(Integer.MAX_VALUE); out.println(str1); str1 = "Max:\t" + Double.toString(Integer.MIN_VALUE); out.println(str1); str1 = "North:\t" + Double.toString(north); out.println(str1); str1 = "South:\t" + Double.toString(south); out.println(str1); str1 = "East:\t" + Double.toString(east); out.println(str1); str1 = "West:\t" + Double.toString(west); out.println(str1); str1 = "Cols:\t" + Integer.toString(cols); out.println(str1); str1 = "Rows:\t" + Integer.toString(rows); out.println(str1); str1 = "Data Type:\t" + "float"; out.println(str1); str1 = "Z Units:\t" + "not specified"; out.println(str1); str1 = "XY Units:\t" + "not specified"; out.println(str1); str1 = "Projection:\t" + "not specified"; out.println(str1); str1 = "Data Scale:\tcontinuous"; out.println(str1); str1 = "Preferred Palette:\t" + "spectrum.pal"; out.println(str1); str1 = "NoData:\t" + whiteboxNoData; out.println(str1); if (java.nio.ByteOrder.nativeOrder() == java.nio.ByteOrder.LITTLE_ENDIAN) { str1 = "Byte Order:\t" + "LITTLE_ENDIAN"; } else { str1 = "Byte Order:\t" + "BIG_ENDIAN"; } out.println(str1); // Create the whitebox raster object. WhiteboxRaster wbr = new WhiteboxRaster(whiteboxHeaderFile, "rw"); wbr.reinitialize(whiteboxNoData); // Read File Line By Line, this time ingesting the data block // and outputing it to the whitebox raster object. delimiter = " "; row = 0; col = 0; while ((line = br.readLine()) != null) { str = line.split(delimiter); if (str.length <= 1) { delimiter = "\t"; str = line.split(delimiter); if (str.length <= 1) { delimiter = " "; str = line.split(delimiter); if (str.length <= 1) { delimiter = ","; str = line.split(delimiter); } } } if (str[0].toLowerCase().contains("north")) { // do nothing } else if (str[0].toLowerCase().contains("south")) { // do nothing } else if (str[0].toLowerCase().contains("east")) { // do nothing } else if (str[0].toLowerCase().contains("west")) { // do nothing } else if (str[0].toLowerCase().contains("rows")) { // do nothing } else if (str[0].toLowerCase().contains("cols")) { // do nothing } else if (str[0].toLowerCase().contains("nodata")) { // do nothing } else { // read the data for (i = 0; i < str.length; i++) { if (StringUtilities.isNumeric(str[i])) { z = Double.parseDouble(str[i]); if (z != arcNoData) { wbr.setValue(row, col, z); } else { wbr.setValue(row, col, whiteboxNoData); } } else { wbr.setValue(row, col, whiteboxNoData); } col++; if (col == cols) { col = 0; row++; progress = (int) (100f * row / (rows - 1)); updateProgress(progress); } } } } //Close the input stream in.close(); br.close(); wbr.addMetadataEntry("Created by the " + getDescriptiveName() + " tool."); wbr.addMetadataEntry("Created on " + new Date()); wbr.flush(); wbr.findMinAndMaxVals(); wbr.close(); returnData(whiteboxHeaderFile); } } } catch (OutOfMemoryError oe) { myHost.showFeedback("An out-of-memory error has occurred during operation."); } catch (Exception e) { myHost.showFeedback("An error has occurred during operation. See log file for details."); myHost.logException("Error in " + getDescriptiveName(), e); } finally { if (out != null || bw != null) { out.flush(); out.close(); } updateProgress("Progress: ", 0); // tells the main application that this process is completed. amIActive = false; myHost.pluginComplete(); } } /** * Used to retrieve the necessary extensions. * @return String containing the extensions. */ @Override public String[] getExtensions() { return new String[]{ "txt" }; } /** * Used to retrieve the file type name. * @return String containing the file type name. */ @Override public String getFileTypeName() { return "ArcGIS ASCII Grid"; } /** * Used to check if the file is raster format. * @return Boolean true if file is raster format. */ @Override public boolean isRasterFormat() { return true; } /** * Used to retrieve the interoperable plugin type. * @return */ @Override public InteropPlugin.InteropPluginType getInteropPluginType() { return InteropPlugin.InteropPluginType.exportPlugin; } }