view flys-aft/src/main/java/de/intevation/aft/WQDiff.java @ 4241:49cb65d5932d

Improved the historical discharge calculation. The calculation now creates new HistoricalWQKms (new subclass of WQKms). Those WQKms are used to create new facets from (new) type 'HistoricalDischargeCurveFacet'. The chart generator is improved to support those facets.
author Ingo Weinzierl <ingo.weinzierl@intevation.de>
date Wed, 24 Oct 2012 14:34:35 +0200
parents 82f5266f881b
children b195fede1c3b
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package de.intevation.aft;

import java.util.Collection;
import java.util.Set;
import java.util.TreeSet;
import java.util.Iterator;

import java.sql.ResultSet;
import java.sql.SQLException;

import de.intevation.db.ConnectedStatements;
import de.intevation.db.SymbolicStatement;

public class WQDiff
{
    protected Set<WQ> toAdd;
    protected Set<WQ> toDelete;

    public WQDiff() {
    }

    public WQDiff(Collection<WQ> a, Collection<WQ> b) {
        toAdd    = new TreeSet<WQ>(WQ.EPS_CMP);
        toDelete = new TreeSet<WQ>(WQ.EPS_CMP);
        build(a, b);
    }

    public void build(Collection<WQ> a, Collection<WQ> b) {
        toAdd.addAll(b);
        toAdd.removeAll(a);

        toDelete.addAll(a);
        toDelete.removeAll(b);
    }

    public void clear() {
        toAdd.clear();
        toDelete.clear();
    }

    public Set<WQ> getToAdd() {
        return toAdd;
    }

    public void setToAdd(Set<WQ> toAdd) {
        this.toAdd = toAdd;
    }

    public Set<WQ> getToDelete() {
        return toDelete;
    }

    public void setToDelete(Set<WQ> toDelete) {
        this.toDelete = toDelete;
    }

    public boolean hasChanges() {
        return !(toAdd.isEmpty() && toDelete.isEmpty());
    }

    public void writeChanges(
        SyncContext context, 
        int         tableId
    )
    throws SQLException
    {
        ConnectedStatements flysStatements = context.getFlysStatements();

        // Delete the old entries
        if (!toDelete.isEmpty()) {
            SymbolicStatement.Instance deleteDTV =
                flysStatements.getStatement("delete.discharge.table.value");
            for (WQ wq: toDelete) {
                deleteDTV
                    .clearParameters()
                    .setInt("id", wq.getId())
                    .execute();
            }
        }

        // Add the new entries.
        if (!toAdd.isEmpty()) {
            SymbolicStatement.Instance nextId =
                flysStatements.getStatement("next.discharge.table.values.id");

            SymbolicStatement.Instance insertDTV =
                flysStatements.getStatement("insert.discharge.table.value");

            // Recycle old ids as much as possible.
            Iterator<WQ> oldIds = toDelete.iterator();

            // Create ids for new entries.
            for (WQ wq: toAdd) {
                if (oldIds.hasNext()) {
                    wq.setId(oldIds.next().getId());
                }
                else {
                    ResultSet rs = nextId.executeQuery();
                    rs.next();
                    wq.setId(rs.getInt("discharge_table_values_id"));
                    rs.close();
                }
            }

            // Write the new entries.
            for (WQ wq: toAdd) {
                insertDTV
                    .clearParameters()
                    .setInt("id", wq.getId())
                    .setInt("table_id", tableId)
                    .setDouble("w", wq.getW())
                    .setDouble("q", wq.getQ())
                    .execute();
            }
        }
    }
}
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