FastRng/FastRngTests/Float/Distributions/InverseExponentialLa10.cs

104 lines
4.5 KiB
C#

using System;
using System.Diagnostics.CodeAnalysis;
using System.Linq;
using System.Threading.Tasks;
using FastRng.Float;
using NUnit.Framework;
namespace FastRngTests.Float.Distributions
{
[ExcludeFromCodeCoverage]
public class InverseExponentialLa10
{
[Test]
[Category(TestCategories.COVER)]
[Category(TestCategories.NORMAL)]
public async Task TestExponentialDistribution01()
{
var dist = new FastRng.Float.Distributions.InverseExponentialLa10();
var fqa = new FrequencyAnalysis();
var rng = new MultiThreadedRng();
for (var n = 0; n < 100_000; n++)
fqa.CountThis(await rng.NextNumber(dist));
rng.StopProducer();
var result = fqa.NormalizeAndPlotEvents(TestContext.WriteLine);
Assert.That(result[0], Is.EqualTo(0.0000501746820562f).Within(0.0003f));
Assert.That(result[1], Is.EqualTo(0.0000554515994322f).Within(0.0003f));
Assert.That(result[2], Is.EqualTo(0.0000612834950532f).Within(0.0003f));
Assert.That(result[21], Is.EqualTo(0.00040973497898f).Within(0.00045f));
Assert.That(result[22], Is.EqualTo(0.000452827182887f).Within(0.00050f));
Assert.That(result[23], Is.EqualTo(0.000500451433441f).Within(0.00051f));
Assert.That(result[50], Is.EqualTo(0.007446583070924f).Within(0.003f));
Assert.That(result[75], Is.EqualTo(0.090717953289412f).Within(0.02f));
Assert.That(result[85], Is.EqualTo(0.246596963941606f).Within(0.05f));
Assert.That(result[90], Is.EqualTo(0.406569659740598f).Within(0.08f));
Assert.That(result[97], Is.EqualTo(0.81873075307798f).Within(0.08f));
Assert.That(result[98], Is.EqualTo(0.904837418035957f).Within(0.08f));
Assert.That(result[99], Is.EqualTo(0.999999999999999f).Within(0.08f));
}
[Test]
[Category(TestCategories.COVER)]
[Category(TestCategories.NORMAL)]
public async Task TestExponentialGeneratorWithRange01()
{
var dist = new FastRng.Float.Distributions.InverseExponentialLa10();
var rng = new MultiThreadedRng();
var samples = new float[1_000];
for (var n = 0; n < samples.Length; n++)
samples[n] = await rng.NextNumber(-1.0f, 1.0f, dist);
rng.StopProducer();
Assert.That(samples.Min(), Is.GreaterThanOrEqualTo(-1.0f), "Min out of range");
Assert.That(samples.Max(), Is.LessThanOrEqualTo(1.0f), "Max out of range");
}
[Test]
[Category(TestCategories.COVER)]
[Category(TestCategories.NORMAL)]
public async Task TestExponentialGeneratorWithRange02()
{
var dist = new FastRng.Float.Distributions.InverseExponentialLa10();
var rng = new MultiThreadedRng();
var samples = new float[1_000];
for (var n = 0; n < samples.Length; n++)
samples[n] = await rng.NextNumber(0.0f, 1.0f, dist);
rng.StopProducer();
Assert.That(samples.Min(), Is.GreaterThanOrEqualTo(0.0f), "Min is out of range");
Assert.That(samples.Max(), Is.LessThanOrEqualTo(1.0f), "Max is out of range");
}
[Test] [Category(TestCategories.COVER)] [Category(TestCategories.NORMAL)]
public async Task TestExponentialGeneratorWithRange03()
{
var rng = new MultiThreadedRng();
var dist = new FastRng.Float.Distributions.InverseExponentialLa10 { Random = rng }; // Test default parameters
var samples = new float[1_000];
for (var n = 0; n < samples.Length; n++)
samples[n] = await dist.GetDistributedValue();
rng.StopProducer();
Assert.That(samples.Min(), Is.GreaterThanOrEqualTo(0.0f), "Min is out of range");
Assert.That(samples.Max(), Is.LessThanOrEqualTo(1.0f), "Max is out of range");
}
[Test]
[Category(TestCategories.COVER)]
[Category(TestCategories.NORMAL)]
public async Task NoRandomNumberGenerator01()
{
var dist = new FastRng.Float.Distributions.InverseExponentialLa10();
Assert.DoesNotThrowAsync(async () => await dist.GetDistributedValue());
Assert.That(await dist.GetDistributedValue(), Is.NaN);
}
}
}