Files
QuanTAlib/lib/cycles/solar/tests/Solar.Quantower.Tests.cs
Miha Kralj 060649192f docs: remove C# Implementation Considerations sections, clean up temp scripts, reorganize test files
- Remove 'C# Implementation Considerations' sections from 34 indicator .md files
- Delete 29 temp PowerShell scripts (_fix_mojibake.ps1, _hex_scan.ps1, etc.)
- Move test files into tests/ subdirectories for consistent project structure
- Add trader-focused bullet points to indicator documentation
2026-03-12 12:34:16 -07:00

263 lines
8.5 KiB
C#

using TradingPlatform.BusinessLayer;
namespace QuanTAlib.Quantower.Tests;
public class SolarIndicatorTests
{
[Fact]
public void SolarIndicator_Constructor_SetsDefaults()
{
var indicator = new SolarIndicator();
Assert.True(indicator.ShowColdValues);
Assert.Equal("SOLAR - Solar Cycle", indicator.Name);
Assert.True(indicator.SeparateWindow);
Assert.True(indicator.OnBackGround);
}
[Fact]
public void SolarIndicator_MinHistoryDepths_EqualsZero()
{
var indicator = new SolarIndicator();
Assert.Equal(0, SolarIndicator.MinHistoryDepths);
Assert.Equal(0, ((IWatchlistIndicator)indicator).MinHistoryDepths);
}
[Fact]
public void SolarIndicator_ShortName_IsSolar()
{
var indicator = new SolarIndicator();
Assert.Equal("SOLAR", indicator.ShortName);
}
[Fact]
public void SolarIndicator_Initialize_CreatesInternalSolar()
{
var indicator = new SolarIndicator();
// Initialize should not throw
indicator.Initialize();
// After init, line series should exist (Solar Cycle + 3 reference lines)
Assert.Equal(4, indicator.LinesSeries.Count);
}
[Fact]
public void SolarIndicator_ProcessUpdate_HistoricalBar_ComputesValue()
{
var indicator = new SolarIndicator();
indicator.Initialize();
// Add historical data
var now = DateTime.UtcNow;
indicator.HistoricalData.AddBar(now, 100, 105, 95, 102);
// Process update
var args = new UpdateArgs(UpdateReason.HistoricalBar);
indicator.ProcessUpdate(args);
// Line series should have a value
Assert.Equal(1, indicator.LinesSeries[0].Count);
double value = indicator.LinesSeries[0].GetValue(0);
Assert.True(double.IsFinite(value));
Assert.True(value >= -1.0 && value <= 1.0, $"Solar cycle should be -1 to 1, got {value}");
}
[Fact]
public void SolarIndicator_ProcessUpdate_NewBar_ComputesValue()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var now = DateTime.UtcNow;
indicator.HistoricalData.AddBar(now, 100, 105, 95, 102);
indicator.HistoricalData.AddBar(now.AddMinutes(1), 102, 108, 100, 106);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.NewBar));
Assert.Equal(2, indicator.LinesSeries[0].Count);
}
[Fact]
public void SolarIndicator_ProcessUpdate_NewTick_ProcessesWithoutError()
{
var indicator = new SolarIndicator();
indicator.Initialize();
// Should not throw an exception
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.NewTick));
Assert.NotNull(indicator);
}
[Fact]
public void SolarIndicator_MultipleUpdates_ProducesCorrectSequence()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var now = DateTime.UtcNow;
int barCount = 30;
for (int i = 0; i < barCount; i++)
{
indicator.HistoricalData.AddBar(now.AddDays(i), 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
}
// All values should be in valid range [-1, 1]
for (int i = 0; i < barCount; i++)
{
double value = indicator.LinesSeries[0].GetValue(barCount - 1 - i);
Assert.True(double.IsFinite(value), $"Value at index {i} should be finite");
Assert.True(value >= -1.0 && value <= 1.0, $"Value at index {i} should be -1 to 1, got {value}");
}
}
[Fact]
public void SolarIndicator_ShowColdValues_CanBeChanged()
{
var indicator = new SolarIndicator { ShowColdValues = true };
Assert.True(indicator.ShowColdValues);
indicator.ShowColdValues = false;
Assert.False(indicator.ShowColdValues);
}
[Fact]
public void SolarIndicator_ProcessUpdate_IgnoresNonBarUpdates()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var now = DateTime.UtcNow;
indicator.HistoricalData.AddBar(now, 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.NewTick));
Assert.NotNull(indicator);
}
[Fact]
public void SolarIndicator_LineSeries_HasCorrectProperties()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var lineSeries = indicator.LinesSeries[0];
Assert.Equal("Solar Cycle", lineSeries.Name);
Assert.Equal(2, lineSeries.Width);
Assert.Equal(LineStyle.Solid, lineSeries.Style);
}
[Fact]
public void SolarIndicator_ReferenceLines_HaveCorrectValues()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var now = DateTime.UtcNow;
indicator.HistoricalData.AddBar(now, 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
// Check reference line values
Assert.Equal(1.0, indicator.LinesSeries[1].GetValue(0)); // Summer Solstice line
Assert.Equal(-1.0, indicator.LinesSeries[2].GetValue(0)); // Winter Solstice line
Assert.Equal(0.0, indicator.LinesSeries[3].GetValue(0)); // Equinox line
}
[Fact]
public void SolarIndicator_CycleVariesOverTime()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var baseDate = new DateTime(2024, 1, 1, 0, 0, 0, DateTimeKind.Utc);
// Add bars over 6 months to see significant variation
for (int i = 0; i < 180; i++)
{
indicator.HistoricalData.AddBar(baseDate.AddDays(i), 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
}
// Collect all values
var cycles = new double[180];
for (int i = 0; i < 180; i++)
{
cycles[i] = indicator.LinesSeries[0].GetValue(179 - i);
}
// Verify there's variation in cycles
double minCycle = cycles.Min();
double maxCycle = cycles.Max();
Assert.True(maxCycle - minCycle > 1.0,
$"Solar cycle should vary significantly over 6 months. Min: {minCycle}, Max: {maxCycle}");
}
[Fact]
public void SolarIndicator_ProducesValidCycle()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var testDate = new DateTime(2024, 6, 15, 12, 0, 0, DateTimeKind.Utc);
indicator.HistoricalData.AddBar(testDate, 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
double cycle = indicator.LinesSeries[0].GetValue(0);
Assert.True(cycle >= -1.0 && cycle <= 1.0, $"Cycle should be in [-1,1] range, got {cycle}");
}
[Fact]
public void SolarIndicator_CycleVariesWithDate()
{
var indicator = new SolarIndicator();
indicator.Initialize();
var date1 = new DateTime(2024, 1, 1, 12, 0, 0, DateTimeKind.Utc);
var date2 = new DateTime(2024, 7, 1, 12, 0, 0, DateTimeKind.Utc);
indicator.HistoricalData.AddBar(date1, 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar));
double cycle1 = indicator.LinesSeries[0].GetValue(0);
indicator.HistoricalData.AddBar(date2, 100, 105, 95, 102);
indicator.ProcessUpdate(new UpdateArgs(UpdateReason.NewBar));
double cycle2 = indicator.LinesSeries[0].GetValue(0);
// Cycles at opposite ends of year should differ significantly
Assert.NotEqual(cycle1, cycle2);
}
[Fact]
public void SolarIndicator_HasFourLineSeries()
{
var indicator = new SolarIndicator();
indicator.Initialize();
Assert.Equal(4, indicator.LinesSeries.Count);
Assert.Equal("Solar Cycle", indicator.LinesSeries[0].Name);
Assert.Equal("Summer Solstice", indicator.LinesSeries[1].Name);
Assert.Equal("Winter Solstice", indicator.LinesSeries[2].Name);
Assert.Equal("Equinox", indicator.LinesSeries[3].Name);
}
[Fact]
public void SolarIndicator_SourceCodeLink_IsValid()
{
var indicator = new SolarIndicator();
Assert.NotNull(indicator.SourceCodeLink);
Assert.Contains("Solar.Quantower.cs", indicator.SourceCodeLink, StringComparison.Ordinal);
Assert.Contains("github.com", indicator.SourceCodeLink, StringComparison.Ordinal);
}
}