view artifacts/src/main/java/org/dive4elements/river/exports/FlowVelocityExporter.java @ 8723:686d8876edf9

(issue1754) Fix Radius calculation for filtered (smoothed) facets To know the acutal extend of the Domain axis shown we need to know all data in the diagram as the acutal extend is the data point needed to calculate a Radius confusingly configured in zoom-scales we have to add all data first and then add the real filtered facets in a postprocessing step.
author Andre Heinecke <andre.heinecke@intevation.de>
date Wed, 29 Apr 2015 11:56:04 +0200
parents 594b0bbc7011
children 5e38e2924c07
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/* Copyright (C) 2011, 2012, 2013 by Bundesanstalt für Gewässerkunde
 * Software engineering by Intevation GmbH
 *
 * This file is Free Software under the GNU AGPL (>=v3)
 * and comes with ABSOLUTELY NO WARRANTY! Check out the
 * documentation coming with Dive4Elements River for details.
 */

package org.dive4elements.river.exports;

import java.io.OutputStream;
import java.text.NumberFormat;
import java.util.ArrayList;
import java.util.List;

import org.apache.log4j.Logger;

import au.com.bytecode.opencsv.CSVWriter;

import org.dive4elements.river.artifacts.D4EArtifact;
import org.dive4elements.river.artifacts.model.CalculationResult;
import org.dive4elements.river.artifacts.model.FlowVelocityData;
import org.dive4elements.river.utils.RiverUtils;
import org.dive4elements.river.utils.Formatter;


/**
 * @author <a href="mailto:ingo.weinzierl@intevation.de">Ingo Weinzierl</a>
 */
public class FlowVelocityExporter extends AbstractExporter {

    private static final Logger log =
        Logger.getLogger(FlowVelocityExporter.class);


    public static final String CSV_KM =
        "export.flow_velocity.csv.header.km";

    public static final String CSV_V_TOTAL =
        "export.flow_velocity.csv.header.v_total";

    public static final String CSV_V_MAIN =
        "export.flow_velocity.csv.header.v_main";

    public static final String CSV_TAU_MAIN =
        "export.flow_velocity.csv.header.tau_main";

    public static final String CSV_Q =
        "export.flow_velocity.csv.header.q";

    public static final String CSV_LOCATIONS =
        "export.flow_velocity.csv.header.locations";


    protected List<FlowVelocityData[]> data;

    public FlowVelocityExporter() {
        data = new ArrayList<FlowVelocityData[]>();
    }

    @Override
    protected void addData(Object d) {
        if (d instanceof CalculationResult) {
            d = ((CalculationResult) d).getData();

            if (d instanceof FlowVelocityData[]) {
                log.debug("Add new data of type FlowVelocityData");
                data.add((FlowVelocityData[]) d);
            }
        }
    }


    @Override
    protected void writeCSVData(CSVWriter writer) {
        log.info("FlowVelocityExporter.writeCSVData");
        log.debug("CSV gets " + data.size() + " FlowVelocityData objects.");

        writeCSVHeader(writer);

        for (FlowVelocityData[] d: data) {
            data2CSV(writer, d);
        }
    }


    protected void writeCSVHeader(CSVWriter writer) {
        writer.writeNext(new String[] {
            msg(CSV_KM, CSV_KM),
            msg(CSV_V_MAIN, CSV_V_MAIN),
            msg(CSV_V_TOTAL, CSV_V_TOTAL),
            msg(CSV_TAU_MAIN, CSV_TAU_MAIN),
            msg(CSV_Q, CSV_Q),
            msg(CSV_LOCATIONS, CSV_LOCATIONS)
        });
    }


    protected void data2CSV(CSVWriter writer, FlowVelocityData[] fData) {
        log.debug("Add next FlowVelocityData to CSV");

        D4EArtifact flys = (D4EArtifact) master;

        for (FlowVelocityData data: fData) {
            for (int i = 0, n = data.size(); i < n; i++) {
                NumberFormat kmF  = Formatter.getFlowVelocityKM(context);
                NumberFormat valF = Formatter.getFlowVelocityValues(context);
                NumberFormat qF   = Formatter.getFlowVelocityQ(context);

                String vMain = "";
                String vTotal = "";

                if (data.getType().equals("main") || data.getType().equals("main_total")) {
                    vMain = valF.format(data.getVMain(i));
                }
                if (data.getType().equals("total") || data.getType().equals("main_total")) {
                    vTotal = valF.format(data.getVTotal(i));
                }
                writer.writeNext(new String[] {
                    kmF.format(data.getKM(i)),
                    vMain,
                    vTotal,
                    valF.format(data.getTauMain(i)),
                    qF.format(data.getQ(i)) + "=" + data.getZone(),
                    RiverUtils.getLocationDescription(flys, data.getKM(i)),
                });
            }
        }
    }


    @Override
    protected void writePDF(OutputStream out) {
        log.error("TODO: Implement FlowVelocityExporter.writePDF");
    }
}
// vim:set ts=4 sw=4 si et sta sts=4 fenc=utf-8 :

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