view artifacts/src/main/java/org/dive4elements/river/artifacts/model/minfo/BedDiffEpochFilterFacet.java @ 6152:0587819960c3

Waterlevel differences & bed height differences: Add new model LinearInterpolated intented to unify the two very similiar calculations. The focus of the current implementation is correctness and not speed! The fact that the data sets more mostly sorted by station is not exploited. Doing so would improve performance significantly.
author Sascha L. Teichmann <teichmann@intevation.de>
date Sun, 02 Jun 2013 17:52:53 +0200
parents af13ceeba52a
children a56fe3bc6700
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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.artifacts.model.minfo;

import org.apache.log4j.Logger;

import org.dive4elements.artifactdatabase.state.Facet;
import org.dive4elements.artifacts.Artifact;
import org.dive4elements.artifacts.CallContext;
import org.dive4elements.river.artifacts.D4EArtifact;
import org.dive4elements.river.artifacts.access.RiverAccess;
import org.dive4elements.river.artifacts.context.RiverContext;
import org.dive4elements.river.artifacts.model.CalculationResult;
import org.dive4elements.river.artifacts.model.DataFacet;
import org.dive4elements.river.artifacts.math.MovingAverage;
import org.dive4elements.river.artifacts.model.ZoomScale;
import org.dive4elements.river.artifacts.states.DefaultState.ComputeType;


public class BedDiffEpochFilterFacet
extends DataFacet
{
    private static Logger logger = Logger.getLogger(BedDensityFacet.class);

    public BedDiffEpochFilterFacet() {
    }

    public BedDiffEpochFilterFacet(int idx, String name, String description,
        ComputeType type, String stateId, String hash) {
        super(idx, name, description, type, hash, stateId);
    }

    public Object getData(Artifact artifact, CallContext context) {
        logger.debug("Get data for bed density at index: " + index);

        D4EArtifact flys = (D4EArtifact) artifact;

        CalculationResult res = (CalculationResult) flys.compute(context, hash,
            stateId, type, false);

        BedDiffEpochResult[] data =
            (BedDiffEpochResult[]) res.getData(); // TODO CAST TO SPECIFIC CLASS
        Double start = (Double)context.getContextValue("startkm");
        Double end = (Double)context.getContextValue("endkm");

        if(start != null && end != null) {
            RiverContext fc = (RiverContext)context.globalContext();
            ZoomScale scales = (ZoomScale)fc.get("zoomscale");
            RiverAccess access = new RiverAccess((D4EArtifact)artifact);
            String river = access.getRiver();

            double radius = scales.getRadius(river, start, end);
            BedDiffEpochResult oldData = data[index];
            BedDiffEpochResult newData = new BedDiffEpochResult();
            newData.setStart(oldData.getStart());
            newData.setEnd(oldData.getEnd());
            double[][] diffs = MovingAverage.weighted(oldData.getDifferencesData(), radius);
            double[][] heights1 = MovingAverage.weighted(oldData.getHeights1Data(), radius);
            double[][] heights2 = MovingAverage.weighted(oldData.getHeights2Data(), radius);
            for(int j = 0; j < diffs[0].length; j++) {
                newData.addKm(diffs[0][j]);
                newData.addDifference(diffs[1][j]);
                newData.addHeight1(heights1[1][j]);
                newData.addHeight2(heights2[1][j]);
            }
            return newData;
        }
        return data != null && data.length > index ? data[index] : null;
    }

    /** Copy deeply. */
    @Override
    public Facet deepCopy() {
        BedDiffEpochFilterFacet copy = new BedDiffEpochFilterFacet();
        copy.set(this);
        copy.type = type;
        copy.hash = hash;
        copy.stateId = stateId;
        return copy;
    }
}
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