Files
QuanTAlib/lib/trends/trima/Trima.Validation.Tests.cs
T

144 lines
5.2 KiB
C#

using System;
using System.Collections.Generic;
using System.Linq;
using Skender.Stock.Indicators;
using TALib;
using Tulip;
using Xunit;
using Xunit.Abstractions;
namespace QuanTAlib.Tests;
public class TrimaValidationTests
{
private readonly ValidationTestData _testData;
private readonly ITestOutputHelper _output;
public TrimaValidationTests(ITestOutputHelper output)
{
_output = output;
_testData = new ValidationTestData();
}
[Fact]
public void Validate_Skender_Batch()
{
int[] periods = { 5, 10, 20, 50, 100 };
foreach (var period in periods)
{
// Calculate QuanTAlib TRIMA (batch TSeries)
var trima = new global::QuanTAlib.Trima(period);
var qResult = trima.Update(_testData.Data);
// Calculate Skender Composite TRIMA: SMA(SMA(x, p1), p2)
int p1 = period / 2 + 1;
int p2 = (period + 1) / 2;
var sma1Results = _testData.SkenderQuotes.GetSma(p1).ToList();
// Map SMA1 results to Quotes for the second pass
// Note: We use 0 for null values during warmup, which might affect early values
// but should stabilize for the verification window (last 100 records)
var quotes2 = sma1Results.Select(r => new Quote
{
Date = r.Date,
Close = (decimal)(r.Sma ?? 0)
}).ToList();
var sResult = quotes2.GetSma(p2).ToList();
// Compare last 100 records
ValidationHelper.VerifyData(qResult, sResult, x => x.Sma, tolerance: ValidationHelper.SkenderTolerance);
}
_output.WriteLine("TRIMA Batch(TSeries) validated successfully against Skender Composite SMA");
}
[Fact]
public void Validate_Talib_Batch()
{
int[] periods = { 5, 10, 20, 50, 100 };
// Prepare data for TA-Lib (double[])
double[] output = new double[_testData.RawData.Length];
foreach (var period in periods)
{
// Calculate QuanTAlib TRIMA (batch TSeries)
var trima = new global::QuanTAlib.Trima(period);
var qResult = trima.Update(_testData.Data);
// Calculate TA-Lib TRIMA
var retCode = TALib.Functions.Trima<double>(_testData.RawData.Span, 0..^0, output, out var outRange, period);
Assert.Equal(Core.RetCode.Success, retCode);
int lookback = TALib.Functions.TrimaLookback(period);
// Compare last 100 records
ValidationHelper.VerifyData(qResult, output, outRange, lookback, tolerance: ValidationHelper.TalibTolerance);
}
_output.WriteLine("TRIMA Batch(TSeries) validated successfully against TA-Lib");
}
[Fact]
public void Validate_Tulip_Batch()
{
int[] periods = { 5, 10, 20, 50, 100 };
foreach (var period in periods)
{
// Calculate QuanTAlib TRIMA (batch TSeries)
var trima = new global::QuanTAlib.Trima(period);
var qResult = trima.Update(_testData.Data);
// Calculate Tulip TRIMA
var trimaIndicator = Tulip.Indicators.trima;
double[][] inputs = { _testData.RawData.ToArray() };
double[] options = { period };
// Tulip TRIMA lookback might be different, let's calculate or infer
// Usually it's period-1 for simple averages, but TRIMA is double smoothed.
// We'll rely on the output length to align.
// Tulip.Indicators.trima.Run expects outputs to be sized correctly.
// We can try to run it with a large buffer and see what happens,
// or calculate the expected lookback.
// For TRIMA(n), lookback is roughly n-1.
int lookback = period - 1;
double[][] outputs = { new double[_testData.RawData.Length - lookback] };
trimaIndicator.Run(inputs, options, outputs);
var tResult = outputs[0];
// Compare last 100 records
ValidationHelper.VerifyData(qResult, tResult, lookback, tolerance: ValidationHelper.TulipTolerance);
}
_output.WriteLine("TRIMA Batch(TSeries) validated successfully against Tulip");
}
[Fact]
public void Validate_Talib_Span()
{
int[] periods = { 5, 10, 20, 50, 100 };
// Prepare data
double[] talibOutput = new double[_testData.RawData.Length];
foreach (var period in periods)
{
// Calculate QuanTAlib TRIMA (Span API)
double[] qOutput = new double[_testData.RawData.Length];
global::QuanTAlib.Trima.Batch(_testData.RawData.Span, qOutput.AsSpan(), period);
// Calculate TA-Lib TRIMA
var retCode = TALib.Functions.Trima<double>(_testData.RawData.Span, 0..^0, talibOutput, out var outRange, period);
Assert.Equal(Core.RetCode.Success, retCode);
int lookback = TALib.Functions.TrimaLookback(period);
// Compare last 100 records
ValidationHelper.VerifyData(qOutput, talibOutput, outRange, lookback, tolerance: ValidationHelper.TalibTolerance);
}
_output.WriteLine("TRIMA Span validated successfully against TA-Lib");
}
}