Files
QuanTAlib/lib/trends_IIR/zlema/Zlema.Validation.Tests.cs
T
Miha Kralj da4e56bf40 feat: Add new CodeQL extension for C# and SonarLint configuration
- Introduced a new CodeQL extension for C# in `.github/codeql/extensions/quantalib-csharp/codeql-pack.yml`.
- Added SonarLint configuration in `.sonarlint/CSharp/SonarLint.xml` and `.sonarlint/csharp.ruleset` to suppress specific rules for high-performance indicators.
- Removed outdated `.vscode/launch.json` configurations.
- Updated `.vscode/tasks.json` to streamline build and test tasks, including renaming and consolidating tasks.
- Modified `Directory.Build.props` to enhance SARIF output directory handling and integrate SonarLint rules.
- Refactored various indicator classes to improve code clarity and maintainability, including updates to method parameters for consistency.
- Added XML documentation comments to several classes and methods for better code understanding.
- Improved numerical stability in calculations by replacing direct comparisons with `double.Epsilon` checks in multiple classes.
2026-01-21 23:05:38 -06:00

138 lines
3.6 KiB
C#

using System;
namespace QuanTAlib.Tests;
public class ZlemaValidationTests
{
[Fact]
public void Zlema_Streaming_MatchesReference()
{
const int period = 20;
TSeries series = BuildSeries(300, seed: 5);
double[] reference = new double[series.Count];
ReferenceZlema(series.Values, reference, period);
var zlema = new Zlema(period);
for (int i = 0; i < series.Count; i++)
{
double actual = zlema.Update(series[i]).Value;
Assert.Equal(reference[i], actual, precision: 10);
}
}
[Fact]
public void Zlema_Batch_MatchesReference()
{
const int period = 14;
TSeries series = BuildSeries(250, seed: 9);
double[] reference = new double[series.Count];
ReferenceZlema(series.Values, reference, period);
TSeries batch = Zlema.Calculate(series, period);
for (int i = 0; i < series.Count; i++)
{
Assert.Equal(reference[i], batch[i].Value, precision: 10);
}
}
[Fact]
public void Zlema_Span_MatchesReference()
{
const int period = 30;
TSeries series = BuildSeries(200, seed: 12);
double[] values = series.Values.ToArray();
var output = new double[values.Length];
var reference = new double[values.Length];
ReferenceZlema(values, reference, period);
Zlema.Calculate(values, output, period);
for (int i = 0; i < values.Length; i++)
{
Assert.Equal(reference[i], output[i], precision: 10);
}
}
private static void ReferenceZlema(ReadOnlySpan<double> source, Span<double> output, int period)
{
double alpha = 2.0 / (period + 1);
double beta = 1.0 - alpha;
int lag = ComputeLag(period);
int bufferSize = lag + 1;
double zlemaRaw = 0.0;
double e = 1.0;
bool warmup = true;
double lastValid = double.NaN;
double[] buffer = new double[bufferSize];
int head = 0;
for (int i = 0; i < source.Length; i++)
{
double val = source[i];
if (double.IsFinite(val))
lastValid = val;
else
val = lastValid;
if (double.IsNaN(val))
{
output[i] = double.NaN;
continue;
}
buffer[head] = val;
head++;
if (head == bufferSize)
head = 0;
double lagged = buffer[head];
double signal = Math.FusedMultiplyAdd(2.0, val, -lagged);
zlemaRaw = Math.FusedMultiplyAdd(zlemaRaw, beta, alpha * signal);
if (warmup)
{
e *= beta;
if (e <= 1e-10)
{
warmup = false;
output[i] = zlemaRaw;
}
else
{
output[i] = zlemaRaw / (1.0 - e);
}
}
else
{
output[i] = zlemaRaw;
}
}
}
private static int ComputeLag(double period)
{
double lag = (period - 1.0) * 0.5;
int lagInt = (int)Math.Round(lag, MidpointRounding.AwayFromZero);
return Math.Max(1, lagInt);
}
private static TSeries BuildSeries(int count, int seed)
{
var series = new TSeries();
var gbm = new GBM(startPrice: 100.0, mu: 0.02, sigma: 0.1, seed: seed);
for (int i = 0; i < count; i++)
{
var bar = gbm.Next(isNew: true);
series.Add(bar.Time, bar.Close);
}
return series;
}
}