Files
QuanTAlib/lib/trends/bilateral/Bilateral.Tests.cs
T

151 lines
4.9 KiB
C#

using System;
using Xunit;
namespace QuanTAlib;
public class BilateralTests
{
private readonly GBM _gbm;
public BilateralTests()
{
_gbm = new GBM();
}
[Fact]
public void Constructor_ValidatesInput()
{
Assert.Throws<ArgumentException>(() => new Bilateral(0));
Assert.Throws<ArgumentException>(() => new Bilateral(-1));
}
[Fact]
public void IsHot_BecomesTrueWhenBufferFull()
{
var indicator = new Bilateral(3);
indicator.Update(new TValue(DateTime.UtcNow, 1));
Assert.False(indicator.IsHot);
indicator.Update(new TValue(DateTime.UtcNow, 2));
Assert.False(indicator.IsHot);
indicator.Update(new TValue(DateTime.UtcNow, 3));
Assert.True(indicator.IsHot);
}
[Fact]
public void Update_CalculatesCorrectly_SimpleCase()
{
// Period 3, sigmaS=100 (flat spatial), sigmaR=100 (flat range) -> roughly SMA
// Actually, Bilateral with very high sigmas approaches Gaussian blur (if range is high) or just mean?
// If sigma_r is high, range weights are ~1.
// If sigma_s is high, spatial weights are ~1.
// Then it becomes a simple average.
var indicator = new Bilateral(3, sigmaSRatio: 100, sigmaRMult: 100);
indicator.Update(new TValue(DateTime.UtcNow, 1));
indicator.Update(new TValue(DateTime.UtcNow, 2));
var result = indicator.Update(new TValue(DateTime.UtcNow, 3));
// Expected: (1+2+3)/3 = 2
Assert.Equal(2.0, result.Value, 1);
}
[Fact]
public void Update_HandlesNaN()
{
var indicator = new Bilateral(3);
indicator.Update(new TValue(DateTime.UtcNow, 1));
indicator.Update(new TValue(DateTime.UtcNow, double.NaN)); // Should use 1
var result = indicator.Update(new TValue(DateTime.UtcNow, 3));
// Buffer: [1, 1, 3]
// StDev of [1, 1, 3]: Mean=1.66, Var=((1-1.66)^2 + (1-1.66)^2 + (3-1.66)^2)/3 = (0.44 + 0.44 + 1.77)/3 = 0.88. StDev ~ 0.94
// Calculation will proceed with these values.
// Just checking it doesn't crash and returns finite value.
Assert.True(double.IsFinite(result.Value));
}
[Fact]
public void Update_IsNew_False_UpdatesCorrectly()
{
var indicator = new Bilateral(3);
indicator.Update(new TValue(DateTime.UtcNow, 1));
indicator.Update(new TValue(DateTime.UtcNow, 2));
// Update with 3, isNew=true
indicator.Update(new TValue(DateTime.UtcNow, 3), isNew: true);
// Update with 4, isNew=false (correction)
var res2 = indicator.Update(new TValue(DateTime.UtcNow, 4), isNew: false);
// Verify state was updated
// If we had updated with 4 directly: [1, 2, 4]
var indicator2 = new Bilateral(3);
indicator2.Update(new TValue(DateTime.UtcNow, 1));
indicator2.Update(new TValue(DateTime.UtcNow, 2));
var resExpected = indicator2.Update(new TValue(DateTime.UtcNow, 4));
Assert.Equal(resExpected.Value, res2.Value);
}
[Fact]
public void Reset_ClearsState()
{
var indicator = new Bilateral(3);
indicator.Update(new TValue(DateTime.UtcNow, 1));
indicator.Update(new TValue(DateTime.UtcNow, 2));
indicator.Update(new TValue(DateTime.UtcNow, 3));
indicator.Reset();
Assert.False(indicator.IsHot);
Assert.Equal(1, indicator.Update(new TValue(DateTime.UtcNow, 1)).Value); // Center val 1, weights 0? No, center val is returned if weights 0.
}
[Fact]
public void AllModes_ProduceSameResult()
{
int period = 10;
var bars = _gbm.Fetch(1000, DateTime.UtcNow.Ticks, TimeSpan.FromMinutes(1));
var series = bars.Close;
// 1. Batch Mode
var batchSeries = new Bilateral(period).Update(series);
double expected = batchSeries.Last.Value;
// 2. Span Mode
var tValues = series.Values.ToArray();
var spanInput = new ReadOnlySpan<double>(tValues);
var spanOutput = new double[tValues.Length];
Bilateral.Calculate(spanInput, spanOutput, period);
double spanResult = spanOutput[^1];
// 3. Streaming Mode
var streamingInd = new Bilateral(period);
for (int i = 0; i < series.Count; i++)
{
streamingInd.Update(series[i]);
}
double streamingResult = streamingInd.Last.Value;
// 4. Eventing Mode
var pubSource = new TSeries();
var eventingInd = new Bilateral(pubSource, period);
for (int i = 0; i < series.Count; i++)
{
pubSource.Add(series[i]);
}
double eventingResult = eventingInd.Last.Value;
// Assert
Assert.Equal(expected, spanResult, 1e-9);
Assert.Equal(expected, streamingResult, 1e-9);
Assert.Equal(expected, eventingResult, 1e-9);
}
}