Files
QuanTAlib/lib/volume/cmf/Cmf.Validation.Tests.cs
T
2026-02-10 21:33:16 -08:00

123 lines
3.7 KiB
C#

using Skender.Stock.Indicators;
using OoplesFinance.StockIndicators;
using OoplesFinance.StockIndicators.Models;
namespace QuanTAlib.Tests;
public class CmfValidationTests
{
private readonly ValidationTestData _data;
private const int DefaultPeriod = 20;
public CmfValidationTests()
{
_data = new ValidationTestData();
}
[Fact]
public void Cmf_Matches_Skender()
{
// Skender
var skenderResults = _data.SkenderQuotes.GetCmf(DefaultPeriod);
var skenderValues = skenderResults.Select(x => x.Cmf ?? double.NaN).ToArray();
// QuanTAlib
var cmf = new Cmf(DefaultPeriod);
var quantalibValues = new List<double>();
foreach (var bar in _data.Bars)
{
quantalibValues.Add(cmf.Update(bar).Value);
}
ValidationHelper.VerifyData(quantalibValues.ToArray(), skenderValues, 0, 100, ValidationHelper.SkenderTolerance);
}
[Fact]
public void Cmf_Matches_Talib()
{
// TA-Lib uses ADOSC (AD Oscillator) which is different from CMF
// TA-Lib does not have a direct CMF function
// We'll compare against MFI which is related but different
// Skip this test as there's no direct CMF in TA-Lib
Assert.True(true, "TA-Lib does not have a direct CMF implementation");
}
[Fact]
public void Cmf_Matches_Tulip()
{
// Tulip does not have CMF indicator
// Skip this test
Assert.True(true, "Tulip does not have a CMF implementation");
}
[Fact]
public void Cmf_Matches_Ooples()
{
// Ooples
var ooplesData = _data.SkenderQuotes.Select(q => new TickerData
{
Date = q.Date,
Open = (double)q.Open,
High = (double)q.High,
Low = (double)q.Low,
Close = (double)q.Close,
Volume = (double)q.Volume
}).ToList();
var stockData = new StockData(ooplesData);
var oResult = stockData.CalculateChaikinMoneyFlow(DefaultPeriod);
var oValues = oResult.OutputValues["Cmf"];
// QuanTAlib
var cmf = new Cmf(DefaultPeriod);
var quantalibValues = new List<double>();
foreach (var bar in _data.Bars)
{
quantalibValues.Add(cmf.Update(bar).Value);
}
ValidationHelper.VerifyData(quantalibValues.ToArray(), oValues.ToArray(), 0, 100, ValidationHelper.OoplesTolerance);
}
[Fact]
public void Cmf_Streaming_Matches_Batch()
{
// Streaming
var cmf = new Cmf(DefaultPeriod);
var streamingValues = new List<double>();
foreach (var bar in _data.Bars)
{
streamingValues.Add(cmf.Update(bar).Value);
}
// Batch
var batchResult = Cmf.Batch(_data.Bars, DefaultPeriod);
var batchValues = batchResult.Values.ToArray();
ValidationHelper.VerifyData(streamingValues.ToArray(), batchValues, 0, 100, 1e-12);
}
[Fact]
public void Cmf_Span_Matches_Streaming()
{
// Streaming
var cmf = new Cmf(DefaultPeriod);
var streamingValues = new List<double>();
foreach (var bar in _data.Bars)
{
streamingValues.Add(cmf.Update(bar).Value);
}
// Span
var high = _data.Bars.High.Values.ToArray();
var low = _data.Bars.Low.Values.ToArray();
var close = _data.Bars.Close.Values.ToArray();
var volume = _data.Bars.Volume.Values.ToArray();
var spanValues = new double[high.Length];
Cmf.Batch(high, low, close, volume, spanValues, DefaultPeriod);
ValidationHelper.VerifyData(streamingValues.ToArray(), spanValues, 0, 100, 1e-12);
}
}