using TradingPlatform.BusinessLayer; using QuanTAlib; namespace QuanTAlib.Tests; public class CcvIndicatorTests { [Fact] public void CcvIndicator_Constructor_SetsDefaults() { var indicator = new CcvIndicator(); Assert.Equal(20, indicator.Period); Assert.Equal(1, indicator.Method); Assert.Equal(SourceType.Close, indicator.Source); Assert.True(indicator.ShowColdValues); Assert.Equal("CCV - Close-to-Close Volatility", indicator.Name); Assert.True(indicator.SeparateWindow); Assert.True(indicator.OnBackGround); } [Fact] public void CcvIndicator_ShortName_IncludesParameters() { var indicator = new CcvIndicator { Period = 14, Method = 2 }; Assert.Contains("CCV", indicator.ShortName, StringComparison.Ordinal); Assert.Contains("14", indicator.ShortName, StringComparison.Ordinal); Assert.Contains("2", indicator.ShortName, StringComparison.Ordinal); } [Fact] public void CcvIndicator_MinHistoryDepths_EqualsZero() { var indicator = new CcvIndicator(); Assert.Equal(0, CcvIndicator.MinHistoryDepths); Assert.Equal(0, ((IWatchlistIndicator)indicator).MinHistoryDepths); } [Fact] public void CcvIndicator_Initialize_CreatesInternalCcv() { var indicator = new CcvIndicator(); // Initialize should not throw indicator.Initialize(); // After init, line series should exist Assert.Single(indicator.LinesSeries); } [Fact] public void CcvIndicator_ProcessUpdate_HistoricalBar_ComputesValue() { var indicator = new CcvIndicator { Period = 5 }; indicator.Initialize(); // Add historical data with volatility var now = DateTime.UtcNow; for (int i = 0; i < 30; i++) { double basePrice = 100 + i * 2 + (i % 2 == 0 ? 5 : -5); // Add some volatility indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 5, basePrice - 5, basePrice + 2, 1000); // 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 val = indicator.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val)); Assert.True(val >= 0); // CCV should be non-negative } [Fact] public void CcvIndicator_ProcessUpdate_NewBar_ComputesValue() { var indicator = new CcvIndicator { Period = 5 }; indicator.Initialize(); var now = DateTime.UtcNow; for (int i = 0; i < 30; i++) { double basePrice = 100 + i; indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 5, basePrice - 5, basePrice + 2, 1000); } indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); // Add new bar indicator.HistoricalData.AddBar(now.AddMinutes(30), 120, 128, 115, 125, 1500); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.NewBar)); Assert.Equal(2, indicator.LinesSeries[0].Count); } [Fact] public void CcvIndicator_DifferentPeriods_Work() { int[] periods = { 5, 10, 20, 50 }; foreach (var period in periods) { var indicator = new CcvIndicator { Period = period }; indicator.Initialize(); var now = DateTime.UtcNow; for (int i = 0; i < 60; i++) { double basePrice = 100 + i + (i % 3 == 0 ? 10 : -5); // Add volatility indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 5, basePrice - 5, basePrice + 2, 1000); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double val = indicator.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val), $"Period {period} should produce finite value"); Assert.True(val >= 0, $"Period {period} should produce non-negative CCV"); } } [Fact] public void CcvIndicator_DifferentMethods_Work() { int[] methods = { 1, 2, 3 }; // SMA, EMA, WMA foreach (var method in methods) { var indicator = new CcvIndicator { Method = method }; indicator.Initialize(); var now = DateTime.UtcNow; for (int i = 0; i < 50; i++) { double basePrice = 100 + i; indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 5, basePrice - 5, basePrice + 2, 1000); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double val = indicator.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val), $"Method {method} should produce finite value"); Assert.True(val >= 0, $"Method {method} should produce non-negative CCV"); } } [Fact] public void CcvIndicator_DifferentSourceTypes_Work() { SourceType[] sources = { SourceType.Close, SourceType.High, SourceType.Low, SourceType.HL2, SourceType.HLC3 }; foreach (var source in sources) { var indicator = new CcvIndicator { Source = source }; indicator.Initialize(); var now = DateTime.UtcNow; for (int i = 0; i < 40; i++) { double basePrice = 100 + i; indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 5, basePrice - 5, basePrice + 2, 1000); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double val = indicator.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val), $"Source {source} should produce finite value"); } } [Fact] public void CcvIndicator_Period_CanBeChanged() { var indicator = new CcvIndicator(); Assert.Equal(20, indicator.Period); indicator.Period = 14; Assert.Equal(14, indicator.Period); indicator.Period = 50; Assert.Equal(50, indicator.Period); } [Fact] public void CcvIndicator_Method_CanBeChanged() { var indicator = new CcvIndicator(); Assert.Equal(1, indicator.Method); indicator.Method = 2; Assert.Equal(2, indicator.Method); indicator.Method = 3; Assert.Equal(3, indicator.Method); } [Fact] public void CcvIndicator_ShowColdValues_CanBeToggled() { var indicator = new CcvIndicator(); Assert.True(indicator.ShowColdValues); indicator.ShowColdValues = false; Assert.False(indicator.ShowColdValues); indicator.ShowColdValues = true; Assert.True(indicator.ShowColdValues); } [Fact] public void CcvIndicator_SourceCodeLink_IsValid() { var indicator = new CcvIndicator(); Assert.Contains("github.com", indicator.SourceCodeLink, StringComparison.Ordinal); Assert.Contains("Ccv.Quantower.cs", indicator.SourceCodeLink, StringComparison.Ordinal); } }