view artifacts/src/main/java/org/dive4elements/river/artifacts/model/FlowVelocityFilterFacet.java @ 8653:dbec49147f54

(issue1755) Do not create interpolated themes and disable export of non interpolatable data. Due to the fact that data can contain NaN's which will be filtered out before creating the interpolator this requires the actual check for interpolatable data when data is set in the ResultValue
author Andre Heinecke <andre.heinecke@intevation.de>
date Wed, 01 Apr 2015 17:10:03 +0200
parents e4606eae8ea5
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.artifacts.model;

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.math.MovingAverage;
import org.dive4elements.river.artifacts.states.DefaultState.ComputeType;

import org.apache.log4j.Logger;

/**
 * Facet of a FlowVelocity curve.
 */
public class FlowVelocityFilterFacet extends DataFacet {

    private static Logger log = Logger.getLogger(FlowVelocityFilterFacet.class);

    public FlowVelocityFilterFacet() {
        // required for clone operation deepCopy()
    }


    public FlowVelocityFilterFacet(
        int         idx,
        String      name,
        String      description,
        ComputeType type,
        String      stateId,
        String      hash
    ) {
        super(idx, name, description, type, hash, stateId);
        this.metaData.put("X", "chart.longitudinal.section.xaxis.label");
        this.metaData.put("Y", "chart.flow_velocity.section.yaxis.label");
    }


    public Object getData(Artifact artifact, CallContext context) {
        log.debug("Get data for flow velocity at index: " + index);

        Double start = (Double)context.getContextValue("startkm");
        Double end = (Double)context.getContextValue("endkm");
        D4EArtifact flys = (D4EArtifact) artifact;

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

        FlowVelocityData[] data = (FlowVelocityData[]) res.getData();
        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.getRiverName();

            double radius = scales.getRadius(river, start, end);
            FlowVelocityData oldData = data[index];
            FlowVelocityData newData = new FlowVelocityData();
            double[][] q = oldData.getQPoints();
            double[][] totalV = MovingAverage.weighted(oldData.getTotalChannelPoints(), radius);
            double[][] mainV = MovingAverage.weighted(oldData.getMainChannelPoints(), radius);
            double[][] tau = MovingAverage.weighted(oldData.getTauPoints(), radius);
            for(int j = 0; j < q[0].length; j++) {
                newData.addKM(q[0][j]);
                newData.addQ(q[1][j]);
                newData.addTauMain(tau[1][j]);
                newData.addVMain(mainV[1][j]);
                newData.addVTotal(totalV[1][j]);
            }
            return newData;
        }
        return data[index];
    }


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