Files
QuanTAlib/lib/statistics/linreg/LinReg.Quantower.Tests.cs
T
Miha Kralj 86fe32a682 SIMD Refactor: Merge simd-dev into dev (#55)
Co-authored-by: Claude Opus 4.5 <noreply@anthropic.com>
Co-authored-by: aider (openrouter/anthropic/claude-sonnet-4) <aider@aider.chat>
Co-authored-by: Warp <agent@warp.dev>
2026-01-18 19:02:03 -08:00

258 lines
8.0 KiB
C#

using TradingPlatform.BusinessLayer;
using QuanTAlib;
namespace QuanTAlib.Tests;
public class LinRegIndicatorTests
{
[Fact]
public void LinRegIndicator_Constructor_SetsDefaults()
{
var indicator = new LinRegIndicator();
Assert.Equal(14, indicator.Period);
Assert.Equal(0, indicator.Offset);
Assert.True(indicator.ShowColdValues);
Assert.Equal("LinReg - Linear Regression Curve", indicator.Name);
Assert.False(indicator.SeparateWindow);
Assert.True(indicator.OnBackGround);
Assert.Equal(SourceType.Close, indicator.Source);
}
[Fact]
public void LinRegIndicator_MinHistoryDepths_EqualsZero()
{
var indicator = new LinRegIndicator { Period = 20 };
Assert.Equal(0, LinRegIndicator.MinHistoryDepths);
IWatchlistIndicator watchlistIndicator = indicator;
Assert.Equal(0, watchlistIndicator.MinHistoryDepths);
}
[Fact]
public void LinRegIndicator_Initialize_CreatesInternalLinReg()
{
var indicator = new LinRegIndicator { Period = 10 };
// Initialize should not throw
indicator.Initialize();
// After init, line series should exist
Assert.Single(indicator.LinesSeries);
Assert.Equal("LinReg", indicator.LinesSeries[0].Name);
}
[Fact]
public void LinRegIndicator_ProcessUpdate_HistoricalBar_ComputesValue()
{
var indicator = new LinRegIndicator { Period = 5 };
indicator.Initialize();
// Add historical data
var now = DateTime.UtcNow;
// Need enough bars for Period
for (int i = 0; i < 20; i++)
{
indicator.HistoricalData.AddBar(now.AddMinutes(i), 100 + i, 110 + i, 90 + i, 105 + i);
// Process update for each bar to simulate history loading
var args = new UpdateArgs(UpdateReason.HistoricalBar);
indicator.ProcessUpdate(args);
}
// Line series should have a value
double linreg = indicator.LinesSeries[0].GetValue(0);
Assert.True(double.IsFinite(linreg));
}
}
public class LinRegSlopeIndicatorTests
{
[Fact]
public void LinRegSlopeIndicator_Constructor_SetsDefaults()
{
var indicator = new LinRegSlopeIndicator();
Assert.Equal(14, indicator.Period);
Assert.True(indicator.ShowColdValues);
Assert.Equal("LinReg Slope", indicator.Name);
Assert.True(indicator.SeparateWindow);
Assert.True(indicator.OnBackGround);
Assert.Equal(SourceType.Close, indicator.Source);
}
[Fact]
public void LinRegSlopeIndicator_MinHistoryDepths_EqualsZero()
{
var indicator = new LinRegSlopeIndicator { Period = 20 };
Assert.Equal(0, LinRegSlopeIndicator.MinHistoryDepths);
IWatchlistIndicator watchlistIndicator = indicator;
Assert.Equal(0, watchlistIndicator.MinHistoryDepths);
}
[Fact]
public void LinRegSlopeIndicator_Initialize_CreatesInternalLinReg()
{
var indicator = new LinRegSlopeIndicator { Period = 10 };
// Initialize should not throw
indicator.Initialize();
// After init, line series should exist
Assert.Single(indicator.LinesSeries);
Assert.Equal("Slope", indicator.LinesSeries[0].Name);
}
[Fact]
public void LinRegSlopeIndicator_ProcessUpdate_HistoricalBar_ComputesValue()
{
var indicator = new LinRegSlopeIndicator { Period = 5 };
indicator.Initialize();
// Add historical data
var now = DateTime.UtcNow;
// Need enough bars for Period
for (int i = 0; i < 20; i++)
{
indicator.HistoricalData.AddBar(now.AddMinutes(i), 100 + i, 110 + i, 90 + i, 105 + i);
// Process update for each bar to simulate history loading
var args = new UpdateArgs(UpdateReason.HistoricalBar);
indicator.ProcessUpdate(args);
}
// Line series should have a value
double slope = indicator.LinesSeries[0].GetValue(0);
Assert.True(double.IsFinite(slope));
}
}
public class LinRegInterceptIndicatorTests
{
[Fact]
public void LinRegInterceptIndicator_Constructor_SetsDefaults()
{
var indicator = new LinRegInterceptIndicator();
Assert.Equal(14, indicator.Period);
Assert.True(indicator.ShowColdValues);
Assert.Equal("LinReg Intercept", indicator.Name);
Assert.True(indicator.SeparateWindow);
Assert.True(indicator.OnBackGround);
Assert.Equal(SourceType.Close, indicator.Source);
}
[Fact]
public void LinRegInterceptIndicator_MinHistoryDepths_EqualsZero()
{
var indicator = new LinRegInterceptIndicator { Period = 20 };
Assert.Equal(0, LinRegInterceptIndicator.MinHistoryDepths);
IWatchlistIndicator watchlistIndicator = indicator;
Assert.Equal(0, watchlistIndicator.MinHistoryDepths);
}
[Fact]
public void LinRegInterceptIndicator_Initialize_CreatesInternalLinReg()
{
var indicator = new LinRegInterceptIndicator { Period = 10 };
// Initialize should not throw
indicator.Initialize();
// After init, line series should exist
Assert.Single(indicator.LinesSeries);
Assert.Equal("Intercept", indicator.LinesSeries[0].Name);
}
[Fact]
public void LinRegInterceptIndicator_ProcessUpdate_HistoricalBar_ComputesValue()
{
var indicator = new LinRegInterceptIndicator { Period = 5 };
indicator.Initialize();
// Add historical data
var now = DateTime.UtcNow;
// Need enough bars for Period
for (int i = 0; i < 20; i++)
{
indicator.HistoricalData.AddBar(now.AddMinutes(i), 100 + i, 110 + i, 90 + i, 105 + i);
// Process update for each bar to simulate history loading
var args = new UpdateArgs(UpdateReason.HistoricalBar);
indicator.ProcessUpdate(args);
}
// Line series should have a value
double intercept = indicator.LinesSeries[0].GetValue(0);
Assert.True(double.IsFinite(intercept));
}
}
public class LinRegRSquaredIndicatorTests
{
[Fact]
public void LinRegRSquaredIndicator_Constructor_SetsDefaults()
{
var indicator = new LinRegRSquaredIndicator();
Assert.Equal(14, indicator.Period);
Assert.True(indicator.ShowColdValues);
Assert.Equal("LinReg R-Squared", indicator.Name);
Assert.True(indicator.SeparateWindow);
Assert.True(indicator.OnBackGround);
Assert.Equal(SourceType.Close, indicator.Source);
}
[Fact]
public void LinRegRSquaredIndicator_MinHistoryDepths_EqualsZero()
{
var indicator = new LinRegRSquaredIndicator { Period = 20 };
Assert.Equal(0, LinRegRSquaredIndicator.MinHistoryDepths);
IWatchlistIndicator watchlistIndicator = indicator;
Assert.Equal(0, watchlistIndicator.MinHistoryDepths);
}
[Fact]
public void LinRegRSquaredIndicator_Initialize_CreatesInternalLinReg()
{
var indicator = new LinRegRSquaredIndicator { Period = 10 };
// Initialize should not throw
indicator.Initialize();
// After init, line series should exist
Assert.Single(indicator.LinesSeries);
Assert.Equal("RSquared", indicator.LinesSeries[0].Name);
}
[Fact]
public void LinRegRSquaredIndicator_ProcessUpdate_HistoricalBar_ComputesValue()
{
var indicator = new LinRegRSquaredIndicator { Period = 5 };
indicator.Initialize();
// Add historical data
var now = DateTime.UtcNow;
// Need enough bars for Period
for (int i = 0; i < 20; i++)
{
indicator.HistoricalData.AddBar(now.AddMinutes(i), 100 + i, 110 + i, 90 + i, 105 + i);
// Process update for each bar to simulate history loading
var args = new UpdateArgs(UpdateReason.HistoricalBar);
indicator.ProcessUpdate(args);
}
// Line series should have a value
double r2 = indicator.LinesSeries[0].GetValue(0);
Assert.True(double.IsFinite(r2));
}
}