Files
QuanTAlib/lib/errors/mapd/tests/Mapd.Tests.cs
T
2026-03-12 19:37:50 +00:00

364 lines
9.5 KiB
C#

namespace QuanTAlib.Tests;
public class MapdTests
{
[Fact]
public void Constructor_ValidatesInput()
{
Assert.Throws<ArgumentException>(() => new Mapd(0));
Assert.Throws<ArgumentException>(() => new Mapd(-1));
var mapd = new Mapd(10);
Assert.NotNull(mapd);
}
[Fact]
public void Properties_Accessible()
{
var mapd = new Mapd(10);
Assert.Equal(0, mapd.Last.Value);
Assert.False(mapd.IsHot);
Assert.Contains("Mapd", mapd.Name, StringComparison.Ordinal);
mapd.Update(100, 105);
Assert.NotEqual(0, mapd.Last.Value);
}
[Fact]
public void IsHot_BecomesTrueWhenBufferFull()
{
const int period = 5;
var mapd = new Mapd(period);
for (int i = 0; i < period - 1; i++)
{
Assert.False(mapd.IsHot, $"IsHot should be false at index {i}");
mapd.Update(100 + i, 105 + i);
}
mapd.Update(104, 109);
Assert.True(mapd.IsHot, "IsHot should be true after period updates");
}
[Fact]
public void Mapd_CalculatesCorrectly()
{
var mapd = new Mapd(3);
// |100 - 110| / 110 * 100 = 9.0909...%
var res1 = mapd.Update(100, 110);
Assert.Equal(100.0 * 10.0 / 110.0, res1.Value, 10);
// |200 - 220| / 220 * 100 = 9.0909...%, Mean = same
var res2 = mapd.Update(200, 220);
Assert.Equal(100.0 * 10.0 / 110.0, res2.Value, 10);
// |50 - 60| / 60 * 100 = 16.666...%
var res3 = mapd.Update(50, 60);
double expected = ((100.0 * 10 / 110) + (100.0 * 20 / 220) + (100.0 * 10 / 60)) / 3;
Assert.Equal(expected, res3.Value, 10);
}
[Fact]
public void Mapd_PerfectPrediction_ReturnsZero()
{
var mapd = new Mapd(5);
for (int i = 1; i <= 10; i++)
{
mapd.Update(i * 10, i * 10); // Perfect prediction
}
Assert.Equal(0.0, mapd.Last.Value, 10);
}
[Fact]
public void Mapd_DividesbyPredicted_NotActual()
{
var mape = new Mape(1);
var mapd = new Mapd(1);
// actual=100, predicted=200
mape.Update(100, 200);
mapd.Update(100, 200);
// MAPE: |100-200|/100 * 100 = 100%
// MAPD: |100-200|/200 * 100 = 50%
Assert.Equal(100.0, mape.Last.Value, 10);
Assert.Equal(50.0, mapd.Last.Value, 10);
}
[Fact]
public void Calc_IsNew_AcceptsParameter()
{
var mapd = new Mapd(10);
mapd.Update(100, 110, isNew: true);
double value1 = mapd.Last.Value;
mapd.Update(100, 120, isNew: true);
double value2 = mapd.Last.Value;
Assert.NotEqual(value1, value2);
}
[Fact]
public void Calc_IsNew_False_UpdatesValue()
{
var mapd = new Mapd(10);
mapd.Update(100, 110);
mapd.Update(100, 120, isNew: true);
double beforeUpdate = mapd.Last.Value;
mapd.Update(100, 130, isNew: false);
double afterUpdate = mapd.Last.Value;
Assert.NotEqual(beforeUpdate, afterUpdate);
}
[Fact]
public void IterativeCorrections_RestoreToOriginalState()
{
var mapd = new Mapd(5);
double tenthActual = 0;
double tenthPredicted = 0;
// Feed 10 updates
for (int i = 1; i <= 10; i++)
{
tenthActual = i * 10;
tenthPredicted = (i * 10) + 5;
mapd.Update(tenthActual, tenthPredicted);
}
double stateAfterTen = mapd.Last.Value;
// Apply 5 corrections with isNew=false
for (int i = 0; i < 5; i++)
{
mapd.Update(100 + i, 200 + i, isNew: false);
}
// Restore to original values
mapd.Update(tenthActual, tenthPredicted, isNew: false);
Assert.Equal(stateAfterTen, mapd.Last.Value, 10);
}
[Fact]
public void Reset_ClearsState()
{
var mapd = new Mapd(5);
for (int i = 1; i <= 10; i++)
{
mapd.Update(i * 10, (i * 10) + 5);
}
Assert.True(mapd.IsHot);
mapd.Reset();
Assert.False(mapd.IsHot);
Assert.Equal(0, mapd.Last.Value);
}
[Fact]
public void NaN_Input_UsesLastValidValue()
{
var mapd = new Mapd(5);
mapd.Update(100, 110);
mapd.Update(110, 120);
mapd.Update(120, 130);
var result = mapd.Update(double.NaN, double.NaN);
Assert.True(double.IsFinite(result.Value));
}
[Fact]
public void Infinity_Input_UsesLastValidValue()
{
var mapd = new Mapd(5);
mapd.Update(100, 110);
mapd.Update(110, 120);
var result = mapd.Update(double.PositiveInfinity, double.NegativeInfinity);
Assert.True(double.IsFinite(result.Value));
}
[Fact]
public void MultipleNaN_ContinuesWithLastValid()
{
var mapd = new Mapd(5);
mapd.Update(100, 110);
mapd.Update(110, 120);
mapd.Update(120, 130);
var r1 = mapd.Update(double.NaN, double.NaN);
var r2 = mapd.Update(double.NaN, double.NaN);
var r3 = mapd.Update(double.NaN, double.NaN);
Assert.True(double.IsFinite(r1.Value));
Assert.True(double.IsFinite(r2.Value));
Assert.True(double.IsFinite(r3.Value));
}
[Fact]
public void Mapd_Throws_On_Single_Input()
{
var mapd = new Mapd(10);
Assert.Throws<NotSupportedException>(() => mapd.Update(new TValue(DateTime.UtcNow, 1)));
Assert.Throws<NotSupportedException>(() => mapd.Update(new TSeries()));
Assert.Throws<NotSupportedException>(() => mapd.Prime([1, 2, 3]));
}
[Fact]
public void BatchSpan_MatchesStreaming()
{
int period = 5;
int count = 100;
var gbm = new GBM(startPrice: 100, mu: 0.05, sigma: 0.2, seed: 123);
double[] actual = new double[count];
double[] predicted = new double[count];
for (int i = 0; i < count; i++)
{
var bar = gbm.Next();
actual[i] = bar.Close;
predicted[i] = (bar.Close * 1.05) + 2; // Offset prediction
}
// Streaming
var mapd = new Mapd(period);
var streamingResults = new double[count];
for (int i = 0; i < count; i++)
{
streamingResults[i] = mapd.Update(actual[i], predicted[i]).Value;
}
// Batch
double[] batchResults = new double[count];
Mapd.Batch(actual, predicted, batchResults, period);
// Compare
for (int i = 0; i < count; i++)
{
Assert.Equal(streamingResults[i], batchResults[i], 9);
}
}
[Fact]
public void BatchSpan_ValidatesInput()
{
double[] actual = [1, 2, 3, 4, 5];
double[] predicted = [1, 2, 3, 4, 5];
double[] output = new double[5];
double[] wrongSizeOutput = new double[3];
double[] wrongSizePredicted = new double[3];
// Period must be > 0
Assert.Throws<ArgumentException>(() =>
Mapd.Batch(actual.AsSpan(), predicted.AsSpan(), output.AsSpan(), 0));
Assert.Throws<ArgumentException>(() =>
Mapd.Batch(actual.AsSpan(), predicted.AsSpan(), output.AsSpan(), -1));
// Output must be same length as source
Assert.Throws<ArgumentException>(() =>
Mapd.Batch(actual.AsSpan(), predicted.AsSpan(), wrongSizeOutput.AsSpan(), 3));
// Predicted must be same length as actual
Assert.Throws<ArgumentException>(() =>
Mapd.Batch(actual.AsSpan(), wrongSizePredicted.AsSpan(), output.AsSpan(), 3));
}
[Fact]
public void Calculate_Works()
{
var actual = new TSeries();
var predicted = new TSeries();
var now = DateTime.UtcNow;
for (int i = 1; i <= 10; i++)
{
actual.Add(now.AddMinutes(i), 100);
predicted.Add(now.AddMinutes(i), 110);
}
var results = Mapd.Batch(actual, predicted, 3);
Assert.Equal(10, results.Count);
// |100-110|/110 * 100 = 9.0909...%
Assert.Equal(100.0 * 10 / 110, results.Last.Value, 10);
}
[Fact]
public void Calculate_ValidatesMismatchedLengths()
{
var actual = new TSeries();
var predicted = new TSeries();
for (int i = 0; i < 10; i++)
{
actual.Add(DateTime.UtcNow, i + 1);
}
for (int i = 0; i < 5; i++)
{
predicted.Add(DateTime.UtcNow, i + 1);
}
Assert.Throws<ArgumentException>(() => Mapd.Batch(actual, predicted, 3));
}
[Fact]
public void BatchSpan_HandlesNaN()
{
double[] actual = [100, 110, double.NaN, 130, 140];
double[] predicted = [105, 115, 125, double.NaN, 145];
double[] output = new double[5];
Mapd.Batch(actual, predicted, output, 3);
foreach (var val in output)
{
Assert.True(double.IsFinite(val), $"Expected finite value but got {val}");
}
}
[Fact]
public void Mapd_Resync_Works()
{
var mapd = new Mapd(5);
// Force many updates to trigger resync (ResyncInterval = 1000)
for (int i = 0; i < 1100; i++)
{
mapd.Update(100, 110);
}
// |100-110|/110 * 100 = 9.0909...%
Assert.Equal(100.0 * 10 / 110, mapd.Last.Value, 10);
}
[Fact]
public void Mapd_ZeroPredicted_HandlesGracefully()
{
var mapd = new Mapd(3);
mapd.Update(100, 110);
mapd.Update(100, 110);
// Zero predicted should not cause division by zero
var result = mapd.Update(10, 0);
Assert.True(double.IsFinite(result.Value));
}
}