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using QuanTAlib.Tests;
namespace QuanTAlib.Validation;
public sealed class MapeValidationTests : IDisposable
{
private readonly ValidationTestData _data = new();
public void Dispose() => _data.Dispose();
[Fact]
public void Mape_Matches_MathNetStyle_Computation()
{
int[] periods = { 5, 10, 20, 50, 100 };
var quotes = _data.SkenderQuotes.ToList();
double[] actual = quotes.Select(q => (double)q.Close).ToArray();
double[] predicted = quotes.Select(q => (double)q.Open).ToArray();
foreach (int period in periods)
{
var mape = new Mape(period);
for (int i = 0; i < actual.Length; i++)
{
var val = mape.Update(
new TValue(quotes[i].Date, actual[i]),
new TValue(quotes[i].Date, predicted[i]));
// Validate last 100 bars
if (i >= actual.Length - 100 && i >= period - 1)
{
var windowActual = actual[(i - period + 1)..(i + 1)];
var windowPredicted = predicted[(i - period + 1)..(i + 1)];
double expected = ComputeMape(windowActual, windowPredicted);
Assert.Equal(expected, val.Value, 1e-9);
}
}
}
}
[Fact]
public void Mape_Batch_Matches_MathNetStyle_Computation()
{
int[] periods = { 5, 10, 20, 50, 100 };
var quotes = _data.SkenderQuotes.ToList();
double[] actual = quotes.Select(q => (double)q.Close).ToArray();
double[] predicted = quotes.Select(q => (double)q.Open).ToArray();
foreach (int period in periods)
{
double[] output = new double[actual.Length];
Mape.Batch(actual, predicted, output, period);
// Validate last 100 bars
for (int i = actual.Length - 100; i < actual.Length; i++)
{
if (i >= period - 1)
{
var windowActual = actual[(i - period + 1)..(i + 1)];
var windowPredicted = predicted[(i - period + 1)..(i + 1)];
double expected = ComputeMape(windowActual, windowPredicted);
Assert.Equal(expected, output[i], 1e-9);
}
}
}
}
private static double ComputeMape(ReadOnlySpan<double> actual, ReadOnlySpan<double> predicted)
{
const double epsilon = 1e-10;
double sum = 0.0;
for (int i = 0; i < actual.Length; i++)
{
double divisor = Math.Abs(actual[i]) < epsilon ? epsilon : actual[i];
sum += 100.0 * Math.Abs((actual[i] - predicted[i]) / divisor);
}
return sum / actual.Length;
}
[Fact]
public void Mape_Correction_Recomputes()
{
var ind = new Mape(20);
// Build state well past warmup (actual always > 0 so MAPE denominator is valid)
for (int i = 0; i < 50; i++)
{
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ind.Update(100.0 + (i * 0.5), 98.0 + (i * 0.5));
}
// Anchor bar
const double anchorActual = 125.0;
const double anchorPredicted = 123.0;
ind.Update(anchorActual, anchorPredicted, isNew: true);
double anchorResult = ind.Last.Value;
// MAPE is scale-invariant: ×10 on both actual and predicted leaves ratio unchanged.
// Change only predicted to dramatically alter the error percentage.
ind.Update(anchorActual, 10.0, isNew: false);
Assert.NotEqual(anchorResult, ind.Last.Value);
// Correction back to original — must exactly restore original result
ind.Update(anchorActual, anchorPredicted, isNew: false);
Assert.Equal(anchorResult, ind.Last.Value, 1e-9);
}
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}