Files
QuanTAlib/lib/channels/pchannel/Pchannel.Validation.Tests.cs
T
Miha Kralj 3eae9a76fe Add Standard Deviation Channel (SDCHANNEL) implementation and documentation
- Implemented Sdchannel class for calculating standard deviation channels based on linear regression.
- Added detailed documentation for SDCHANNEL, including overview, calculation methods, and interpretation.
- Updated project files to include new numerics library components in Channels and Volatility projects.
2026-01-21 14:41:31 -05:00

240 lines
7.4 KiB
C#

using Xunit.Abstractions;
namespace QuanTAlib.Tests;
public sealed class PchannelValidationTests : IDisposable
{
private readonly ValidationTestData _testData;
private readonly ITestOutputHelper _output;
private bool _disposed;
public PchannelValidationTests(ITestOutputHelper output)
{
_output = output;
_testData = new ValidationTestData();
}
public void Dispose() => Dispose(true);
private void Dispose(bool disposing)
{
if (_disposed) return;
_disposed = true;
if (disposing) _testData?.Dispose();
}
[Fact]
public void Validate_ManualCalculation_Period3()
{
var series = new TBarSeries();
var t0 = DateTime.UtcNow;
series.Add(new TBar(t0, 0, 12, 8, 10, 100));
series.Add(new TBar(t0.AddMinutes(1), 0, 14, 10, 12, 100));
series.Add(new TBar(t0.AddMinutes(2), 0, 16, 12, 14, 100));
var ind = new Pchannel(3);
var (mid, up, lo) = ind.Update(series);
Assert.Equal(16.0, up.Last.Value, 1e-10);
Assert.Equal(8.0, lo.Last.Value, 1e-10);
Assert.Equal(12.0, mid.Last.Value, 1e-10);
Assert.True(ind.IsHot);
_output.WriteLine("Pchannel manual period-3 calculation validated");
}
[Fact]
public void Validate_AllModes_Consistency()
{
int[] periods = { 5, 10, 20, 50 };
foreach (int period in periods)
{
var inst = new Pchannel(period);
var (bMid, bUp, bLo) = inst.Update(_testData.Bars);
var (sMid, sUp, sLo) = Pchannel.Batch(_testData.Bars, period);
ValidationHelper.VerifySeriesEqual(bMid, sMid);
ValidationHelper.VerifySeriesEqual(bUp, sUp);
ValidationHelper.VerifySeriesEqual(bLo, sLo);
var streaming = new Pchannel(period);
var sMidStream = new TSeries();
var sUpStream = new TSeries();
var sLoStream = new TSeries();
foreach (var bar in _testData.Bars)
{
streaming.Update(bar);
sMidStream.Add(streaming.Last);
sUpStream.Add(streaming.Upper);
sLoStream.Add(streaming.Lower);
}
ValidationHelper.VerifySeriesEqual(sMid, sMidStream);
ValidationHelper.VerifySeriesEqual(sUp, sUpStream);
ValidationHelper.VerifySeriesEqual(sLo, sLoStream);
double[] high = _testData.HighPrices.ToArray();
double[] low = _testData.LowPrices.ToArray();
double[] spanMid = new double[high.Length];
double[] spanUp = new double[high.Length];
double[] spanLo = new double[high.Length];
Pchannel.Batch(high.AsSpan(), low.AsSpan(),
spanMid.AsSpan(), spanUp.AsSpan(), spanLo.AsSpan(), period);
for (int i = 0; i < high.Length; i++)
{
Assert.Equal(sMid[i].Value, spanMid[i], 9);
Assert.Equal(sUp[i].Value, spanUp[i], 9);
Assert.Equal(sLo[i].Value, spanLo[i], 9);
}
}
_output.WriteLine("Pchannel mode consistency validated (batch/stream/span)");
}
[Fact]
public void Validate_EventingMode_MatchesBatch()
{
const int period = 20;
var pub = new TBarSeries();
var evtInd = new Pchannel(pub, period);
var evtMid = new TSeries();
var evtUp = new TSeries();
var evtLo = new TSeries();
foreach (var bar in _testData.Bars)
{
pub.Add(bar);
evtMid.Add(evtInd.Last);
evtUp.Add(evtInd.Upper);
evtLo.Add(evtInd.Lower);
}
var (bMid, bUp, bLo) = Pchannel.Batch(_testData.Bars, period);
ValidationHelper.VerifySeriesEqual(bMid, evtMid);
ValidationHelper.VerifySeriesEqual(bUp, evtUp);
ValidationHelper.VerifySeriesEqual(bLo, evtLo);
_output.WriteLine("Pchannel eventing mode validated");
}
[Fact]
public void Validate_AgainstDchannel_ExactMatch()
{
// Pchannel should produce identical results to Dchannel
int[] periods = { 10, 20, 50 };
foreach (int period in periods)
{
var (dcMid, dcUp, dcLo) = Dchannel.Batch(_testData.Bars, period);
var (pcMid, pcUp, pcLo) = Pchannel.Batch(_testData.Bars, period);
ValidationHelper.VerifySeriesEqual(dcMid, pcMid);
ValidationHelper.VerifySeriesEqual(dcUp, pcUp);
ValidationHelper.VerifySeriesEqual(dcLo, pcLo);
}
_output.WriteLine("Pchannel matches Dchannel exactly");
}
[Fact]
public void Validate_Calculate_ReturnsHotIndicator()
{
const int period = 15;
var ((mid, up, lo), ind) = Pchannel.Calculate(_testData.Bars, period);
Assert.True(ind.IsHot);
Assert.Equal(period, ind.WarmupPeriod);
Assert.Equal(mid.Last.Value, ind.Last.Value, 1e-10);
Assert.Equal(up.Last.Value, ind.Upper.Value, 1e-10);
Assert.Equal(lo.Last.Value, ind.Lower.Value, 1e-10);
var next = new TBar(DateTime.UtcNow, 0, 150, 50, 100, 1000);
ind.Update(next);
Assert.True(ind.IsHot);
_output.WriteLine("Pchannel Calculate validated");
}
[Fact]
public void Validate_Prime_MatchesBatch()
{
const int period = 25;
var (bMid, bUp, bLo) = Pchannel.Batch(_testData.Bars, period);
var primed = new Pchannel(period);
var subset = new TBarSeries();
for (int i = 0; i < 200; i++)
{
subset.Add(_testData.Bars[i]);
}
primed.Prime(subset);
for (int i = 200; i < _testData.Bars.Count; i++)
{
primed.Update(_testData.Bars[i]);
}
Assert.Equal(bMid.Last.Value, primed.Last.Value, 1e-9);
Assert.Equal(bUp.Last.Value, primed.Upper.Value, 1e-9);
Assert.Equal(bLo.Last.Value, primed.Lower.Value, 1e-9);
_output.WriteLine("Pchannel Prime validated against batch");
}
[Fact]
public void Validate_LargeDataset_FiniteOutputs()
{
var (mid, up, lo) = Pchannel.Batch(_testData.Bars, 50);
ValidationHelper.VerifyAllFinite(mid, startIndex: 0);
ValidationHelper.VerifyAllFinite(up, startIndex: 0);
ValidationHelper.VerifyAllFinite(lo, startIndex: 0);
for (int i = 50; i < mid.Count; i++)
{
Assert.True(up[i].Value >= lo[i].Value, $"Upper >= Lower at {i}");
}
_output.WriteLine("Pchannel large dataset validated");
}
[Fact]
public void Validate_StateRestoration_Iterative()
{
var ind = new Pchannel(15);
var gbm = new GBM(startPrice: 100, mu: 0.01, sigma: 0.1, seed: 42);
for (int i = 0; i < 50; i++)
{
ind.Update(gbm.Next(isNew: true), isNew: true);
}
var remembered = gbm.Next(isNew: true);
ind.Update(remembered, isNew: true);
var savedMid = ind.Last.Value;
var savedUp = ind.Upper.Value;
var savedLo = ind.Lower.Value;
for (int i = 0; i < 10; i++)
{
var corrected = gbm.Next(isNew: false);
ind.Update(corrected, isNew: false);
}
ind.Update(remembered, isNew: false);
Assert.Equal(savedMid, ind.Last.Value, 1e-10);
Assert.Equal(savedUp, ind.Upper.Value, 1e-10);
Assert.Equal(savedLo, ind.Lower.Value, 1e-10);
_output.WriteLine("Pchannel state restoration validated");
}
}