using TradingPlatform.BusinessLayer; namespace QuanTAlib.Tests; public class RsvIndicatorTests { [Fact] public void RsvIndicator_Constructor_SetsDefaults() { var indicator = new RsvIndicator(); Assert.Equal(20, indicator.Period); Assert.True(indicator.Annualize); Assert.Equal(252, indicator.AnnualPeriods); Assert.True(indicator.ShowColdValues); Assert.Equal("RSV - Rogers-Satchell Volatility", indicator.Name); Assert.True(indicator.SeparateWindow); Assert.True(indicator.OnBackGround); } [Fact] public void RsvIndicator_ShortName_IncludesParameters() { var indicator = new RsvIndicator { Period = 14 }; Assert.Contains("RSV", indicator.ShortName, StringComparison.Ordinal); Assert.Contains("14", indicator.ShortName, StringComparison.Ordinal); } [Fact] public void RsvIndicator_MinHistoryDepths_EqualsZero() { var indicator = new RsvIndicator(); Assert.Equal(0, RsvIndicator.MinHistoryDepths); Assert.Equal(0, ((IWatchlistIndicator)indicator).MinHistoryDepths); } [Fact] public void RsvIndicator_Initialize_CreatesInternalRsv() { var indicator = new RsvIndicator(); // Initialize should not throw indicator.Initialize(); // After init, line series should exist Assert.Single(indicator.LinesSeries); } [Fact] public void RsvIndicator_ProcessUpdate_HistoricalBar_ComputesValue() { var indicator = new RsvIndicator { Period = 10 }; indicator.Initialize(); // Add historical data with varying volatility var now = DateTime.UtcNow; for (int i = 0; i < 30; i++) { double basePrice = 100 + i; double range = 2 + (i % 5); // Varying ranges indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + range, basePrice - range, basePrice + 1, 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, "Volatility should be non-negative"); } [Fact] public void RsvIndicator_ProcessUpdate_NewBar_ComputesValue() { var indicator = new RsvIndicator { Period = 10 }; 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 with larger range indicator.HistoricalData.AddBar(now.AddMinutes(30), 120, 135, 105, 125, 1500); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.NewBar)); Assert.Equal(2, indicator.LinesSeries[0].Count); } [Fact] public void RsvIndicator_DifferentPeriods_Work() { int[] periods = { 5, 10, 14, 20 }; foreach (var period in periods) { var indicator = new RsvIndicator { Period = period }; indicator.Initialize(); var now = DateTime.UtcNow; for (int i = 0; i < 50; i++) { double basePrice = 100 + i; double range = 3 + (i % 4); indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + range, basePrice - range, basePrice + 1, 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 value"); } } [Fact] public void RsvIndicator_Period_CanBeChanged() { var indicator = new RsvIndicator(); Assert.Equal(20, indicator.Period); indicator.Period = 14; Assert.Equal(14, indicator.Period); indicator.Period = 10; Assert.Equal(10, indicator.Period); } [Fact] public void RsvIndicator_Annualize_CanBeToggled() { var indicator = new RsvIndicator(); Assert.True(indicator.Annualize); indicator.Annualize = false; Assert.False(indicator.Annualize); indicator.Annualize = true; Assert.True(indicator.Annualize); } [Fact] public void RsvIndicator_AnnualPeriods_CanBeChanged() { var indicator = new RsvIndicator(); Assert.Equal(252, indicator.AnnualPeriods); indicator.AnnualPeriods = 365; Assert.Equal(365, indicator.AnnualPeriods); indicator.AnnualPeriods = 52; Assert.Equal(52, indicator.AnnualPeriods); } [Fact] public void RsvIndicator_ShowColdValues_CanBeToggled() { var indicator = new RsvIndicator(); Assert.True(indicator.ShowColdValues); indicator.ShowColdValues = false; Assert.False(indicator.ShowColdValues); indicator.ShowColdValues = true; Assert.True(indicator.ShowColdValues); } [Fact] public void RsvIndicator_SourceCodeLink_IsValid() { var indicator = new RsvIndicator(); Assert.Contains("github.com", indicator.SourceCodeLink, StringComparison.Ordinal); Assert.Contains("Rsv.Quantower.cs", indicator.SourceCodeLink, StringComparison.Ordinal); } [Fact] public void RsvIndicator_HighVolatility_ProducesHigherValue() { var indicator1 = new RsvIndicator { Period = 10, Annualize = false }; var indicator2 = new RsvIndicator { Period = 10, Annualize = false }; indicator1.Initialize(); indicator2.Initialize(); var now = DateTime.UtcNow; // Indicator 1: low volatility (narrow range) for (int i = 0; i < 30; i++) { double basePrice = 100; indicator1.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 1, basePrice - 1, basePrice + 0.5, 1000); indicator1.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } // Indicator 2: high volatility (wide range) for (int i = 0; i < 30; i++) { double basePrice = 100; indicator2.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 10, basePrice - 10, basePrice + 2, 1000); indicator2.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double lowVol = indicator1.LinesSeries[0].GetValue(0); double highVol = indicator2.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(lowVol)); Assert.True(double.IsFinite(highVol)); Assert.True(highVol > lowVol, "Higher volatility bars should produce higher RSV value"); } [Fact] public void RsvIndicator_AnnualizedValue_IsScaled() { var indicatorRaw = new RsvIndicator { Period = 10, Annualize = false }; var indicatorAnn = new RsvIndicator { Period = 10, Annualize = true, AnnualPeriods = 252 }; indicatorRaw.Initialize(); indicatorAnn.Initialize(); var now = DateTime.UtcNow; // Same data for both for (int i = 0; i < 30; i++) { double basePrice = 100 + i * 0.5; indicatorRaw.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 3, basePrice - 3, basePrice + 1, 1000); indicatorRaw.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); indicatorAnn.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 3, basePrice - 3, basePrice + 1, 1000); indicatorAnn.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double rawValue = indicatorRaw.LinesSeries[0].GetValue(0); double annValue = indicatorAnn.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(rawValue)); Assert.True(double.IsFinite(annValue)); // Annualized should be approximately sqrt(252) times larger double expectedRatio = Math.Sqrt(252); double actualRatio = annValue / rawValue; Assert.True(Math.Abs(actualRatio - expectedRatio) < 0.01, $"Annualized value should be ~{expectedRatio:F2}× raw, got {actualRatio:F2}×"); } [Fact] public void RsvIndicator_UsesAllOhlc_SensitiveToOpenClose() { // Test that RSV uses all OHLC prices (unlike HLV which only uses H-L) var indicator1 = new RsvIndicator { Period = 10, Annualize = false }; var indicator2 = new RsvIndicator { Period = 10, Annualize = false }; indicator1.Initialize(); indicator2.Initialize(); var now = DateTime.UtcNow; // Same high/low range but different open/close for (int i = 0; i < 30; i++) { // Indicator 1: open = close (doji pattern at center) indicator1.HistoricalData.AddBar(now.AddMinutes(i), 100, 105, 95, 100, 1000); indicator1.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); // Indicator 2: open and close at extremes (strong directional move) indicator2.HistoricalData.AddBar(now.AddMinutes(i), 95.5, 105, 95, 104.5, 1000); indicator2.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double val1 = indicator1.LinesSeries[0].GetValue(0); double val2 = indicator2.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val1)); Assert.True(double.IsFinite(val2)); // RSV should be different since it uses all OHLC prices Assert.NotEqual(val1, val2, 5); // Values should differ significantly } [Fact] public void RsvIndicator_ConstantPrice_ProducesZeroVolatility() { var indicator = new RsvIndicator { Period = 10, Annualize = false }; indicator.Initialize(); var now = DateTime.UtcNow; // Constant price (no volatility) - but need small spread to avoid log(1) issues for (int i = 0; i < 30; i++) { indicator.HistoricalData.AddBar(now.AddMinutes(i), 100, 100.01, 99.99, 100, 1000); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double val = indicator.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val)); Assert.True(val < 0.01, "Near-constant price should produce near-zero volatility"); } [Fact] public void RsvIndicator_DriftAdjusted_HandlesUptrend() { // RSV is drift-adjusted, so should handle trending markets well var indicator = new RsvIndicator { Period = 10, Annualize = false }; indicator.Initialize(); var now = DateTime.UtcNow; // Strong uptrend with consistent volatility for (int i = 0; i < 30; i++) { double basePrice = 100 + i * 2; // Trending up indicator.HistoricalData.AddBar(now.AddMinutes(i), basePrice, basePrice + 3, basePrice - 2, basePrice + 1, 1000); indicator.ProcessUpdate(new UpdateArgs(UpdateReason.HistoricalBar)); } double val = indicator.LinesSeries[0].GetValue(0); Assert.True(double.IsFinite(val)); Assert.True(val > 0, "Trending market with volatility should produce positive RSV"); } }