view flys-artifacts/src/main/java/de/intevation/flys/artifacts/math/Linear.java @ 4173:7d4480c0e68e

Allow users to select the current relevant discharge table in historical discharge table calculattion. In addition to this, the discharge tables in the helper panel displayed in the client is ordered in time.
author Ingo Weinzierl <ingo.weinzierl@intevation.de>
date Thu, 18 Oct 2012 12:13:48 +0200
parents da1969b05292
children
line wrap: on
line source
package de.intevation.flys.artifacts.math;

public final class Linear
implements         Function
{
    private double m;
    private double b;

    public Linear(
        double x1, double x2,
        double y1, double y2
    ) {
        // y1 = m*x1 + b
        // y2 = m*x2 + b
        // y2 - y1 = m*(x2 - x1)
        // m = (y2 - y1)/(x2 - x1) # x2 != x1
        // b = y1 - m*x1

        if (x1 == x2) {
            m = 0;
            b = 0.5*(y1 + y2);
        }
        else {
            m = (y2 - y1)/(x2 - x1);
            b = y1 - m*x1;
        }
    }

    public static final double linear(
        double x,
        double x1, double x2,
        double y1, double y2
    ) {
        // y1 = m*x1 + b
        // y2 = m*x2 + b
        // y2 - y1 = m*(x2 - x1)
        // m = (y2 - y1)/(x2 - x1) # x2 != x1
        // b = y1 - m*x1

        if (x1 == x2) {
            return 0.5*(y1 + y2);
        }
        double m = (y2 - y1)/(x2 - x1);
        double b = y1 - m*x1;
        return x*m + b;
    }

    @Override
    public double value(double x) {
        return m*x + b;
    }

    public static final double factor(double x, double p1, double p2) {
        // 0 = m*p1 + b <=> b = -m*p1
        // 1 = m*p2 + b
        // 1 = m*(p2 - p1)
        // m = 1/(p2 - p1) # p1 != p2
        // f(x) = x/(p2-p1) - p1/(p2-p1) <=> (x-p1)/(p2-p1)

        return p1 == p2 ? 0.0 : (x-p1)/(p2-p1);
    }

    public static final double weight(double factor, double a, double b) {
        //return (1.0-factor)*a + factor*b;
        return a + factor*(b-a);
    }

    public static final void weight(
        double factor,
        double [] a, double [] b, double [] c
    ) {
        int N = Math.min(Math.min(a.length, b.length), c.length);
        for (int i = 0; i < N; ++i) {
            c[i] = weight(factor, a[i], b[i]);
        }
    }
}
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