//
// Math.NET Numerics, part of the Math.NET Project
// http://numerics.mathdotnet.com
// http://github.com/mathnet/mathnet-numerics
// http://mathnetnumerics.codeplex.com
//
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//
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// obtaining a copy of this software and associated documentation
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// copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the
// Software is furnished to do so, subject to the following
// conditions:
//
// The above copyright notice and this permission notice shall be
// included in all copies or substantial portions of the Software.
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// OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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namespace MathNet.Numerics.IntegralTransforms.Algorithms
{
using System;
///
/// Fast (FHT) Implementation of the Discrete Hartley Transform (DHT).
///
public partial class DiscreteHartleyTransform
{
///
/// Rescale FFT-the resulting vector according to the provided convention options.
///
/// Fourier Transform Convention Options.
/// Sample Vector.
private static void ForwardScaleByOptions(HartleyOptions options, double[] samples)
{
if ((options & HartleyOptions.NoScaling) == HartleyOptions.NoScaling ||
(options & HartleyOptions.AsymmetricScaling) == HartleyOptions.AsymmetricScaling)
{
return;
}
var scalingFactor = Math.Sqrt(1.0 / samples.Length);
for (int i = 0; i < samples.Length; i++)
{
samples[i] *= scalingFactor;
}
}
///
/// Rescale the iFFT-resulting vector according to the provided convention options.
///
/// Fourier Transform Convention Options.
/// Sample Vector.
private static void InverseScaleByOptions(HartleyOptions options, double[] samples)
{
if ((options & HartleyOptions.NoScaling) == HartleyOptions.NoScaling)
{
return;
}
var scalingFactor = 1.0 / samples.Length;
if ((options & HartleyOptions.AsymmetricScaling) != HartleyOptions.AsymmetricScaling)
{
scalingFactor = Math.Sqrt(scalingFactor);
}
for (int i = 0; i < samples.Length; i++)
{
samples[i] *= scalingFactor;
}
}
}
}