mirror of
https://github.com/mihakralj/QuanTAlib.git
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- 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
458 lines
13 KiB
C#
458 lines
13 KiB
C#
using Xunit;
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namespace QuanTAlib.Tests;
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public class PmoTests
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{
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private readonly TSeries _gbm;
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private const int TestTimePeriods = 10;
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private const int TestSmoothPeriods = 5;
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private const int TestSignalPeriods = 3;
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private const int DataPoints = 100;
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public PmoTests()
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{
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var gbm = new GBM(startPrice: 100, mu: 0.0, sigma: 0.5, seed: 42);
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var bars = gbm.Fetch(DataPoints, DateTime.UtcNow.Ticks, TimeSpan.FromMinutes(1));
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_gbm = bars.Close;
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}
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#region Constructor Tests
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[Fact]
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public void Constructor_WithValidPeriods_SetsProperties()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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Assert.Equal($"Pmo({TestTimePeriods},{TestSmoothPeriods},{TestSignalPeriods})", pmo.Name);
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Assert.Equal(TestTimePeriods + TestSmoothPeriods, pmo.WarmupPeriod);
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}
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[Fact]
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public void Constructor_DefaultParams_UsesStandardValues()
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{
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var pmo = new Pmo();
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Assert.Equal("Pmo(35,20,10)", pmo.Name);
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Assert.Equal(55, pmo.WarmupPeriod);
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}
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[Fact]
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public void Constructor_WithZeroRocPeriod_ThrowsArgumentException()
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{
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var ex = Assert.Throws<ArgumentException>(() => new Pmo(0, 5, 3));
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Assert.Equal("timePeriods", ex.ParamName);
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}
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[Fact]
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public void Constructor_WithZeroSmooth1Period_ThrowsArgumentException()
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{
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var ex = Assert.Throws<ArgumentException>(() => new Pmo(10, 0, 3));
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Assert.Equal("smoothPeriods", ex.ParamName);
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}
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[Fact]
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public void Constructor_WithZeroSmooth2Period_ThrowsArgumentException()
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{
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var ex = Assert.Throws<ArgumentException>(() => new Pmo(10, 5, 0));
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Assert.Equal("signalPeriods", ex.ParamName);
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}
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[Fact]
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public void Constructor_WithNegativePeriod_ThrowsArgumentException()
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{
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var ex = Assert.Throws<ArgumentException>(() => new Pmo(-1, 5, 3));
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Assert.Equal("timePeriods", ex.ParamName);
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}
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[Fact]
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public void Constructor_WithSource_SubscribesToEvents()
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{
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var source = new TSeries(DataPoints);
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var pmo = new Pmo(source, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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Assert.NotNull(pmo);
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}
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#endregion
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#region Basic Calculation Tests
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[Fact]
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public void Update_FirstValue_ReturnsFinite()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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var tv = pmo.Update(new TValue(DateTime.UtcNow, 100.0));
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Assert.True(double.IsFinite(tv.Value));
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}
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[Fact]
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public void Update_ConstantInput_ConvergesToZero()
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{
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var pmo = new Pmo(5, 3, 3);
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for (int i = 0; i < 50; i++)
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{
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pmo.Update(new TValue(DateTime.UtcNow.AddSeconds(i), 100.0), true);
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}
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// Constant price → ROC% = 0 → PMO → 0
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Assert.True(Math.Abs(pmo.Last.Value) < 1e-6,
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$"PMO with constant input should converge to 0, got {pmo.Last.Value}");
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}
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[Fact]
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public void Update_RisingPrices_ReturnsPositive()
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{
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var pmo = new Pmo(5, 3, 3);
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for (int i = 0; i < 30; i++)
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{
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pmo.Update(new TValue(DateTime.UtcNow.AddSeconds(i), 100.0 + i * 2.0), true);
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}
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Assert.True(pmo.Last.Value > 0,
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$"PMO should be positive with rising prices, got {pmo.Last.Value}");
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}
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[Fact]
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public void Update_FallingPrices_ReturnsNegative()
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{
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var pmo = new Pmo(5, 3, 3);
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for (int i = 0; i < 30; i++)
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{
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pmo.Update(new TValue(DateTime.UtcNow.AddSeconds(i), 200.0 - i * 2.0), true);
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}
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Assert.True(pmo.Last.Value < 0,
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$"PMO should be negative with falling prices, got {pmo.Last.Value}");
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}
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[Fact]
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public void Last_IsAccessible()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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pmo.Update(new TValue(DateTime.UtcNow, 100.0));
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Assert.True(double.IsFinite(pmo.Last.Value));
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}
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[Fact]
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public void IsHot_ReturnsFalseDuringWarmup()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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var warmup = TestTimePeriods + TestSmoothPeriods;
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for (int i = 0; i < warmup; i++)
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{
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pmo.Update(new TValue(DateTime.UtcNow.AddSeconds(i), 100.0 + i));
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Assert.False(pmo.IsHot, $"Should not be hot at bar {i}");
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}
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}
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[Fact]
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public void IsHot_ReturnsTrueAfterWarmup()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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var warmup = TestTimePeriods + TestSmoothPeriods;
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for (int i = 0; i <= warmup; i++)
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{
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pmo.Update(new TValue(DateTime.UtcNow.AddSeconds(i), 100.0 + i));
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}
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Assert.True(pmo.IsHot);
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}
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#endregion
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#region State Management Tests
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[Fact]
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public void Update_WithIsNewTrue_AdvancesState()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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var time = DateTime.UtcNow;
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for (int i = 0; i < 30; i++)
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{
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pmo.Update(new TValue(time.AddSeconds(i), 100.0 + i), true);
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}
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Assert.NotEqual(default, pmo.Last);
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}
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[Fact]
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public void Update_WithIsNewFalse_RollsBackState()
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{
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var pmo = new Pmo(5, 3, 3);
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var time = DateTime.UtcNow;
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// Build up state
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for (int i = 0; i < 20; i++)
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{
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pmo.Update(new TValue(time.AddSeconds(i), 100.0 + i * 0.5), true);
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}
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var baseline = pmo.Update(new TValue(time.AddSeconds(20), 120.0), true);
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var corrected = pmo.Update(new TValue(time.AddSeconds(20), 115.0), false);
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Assert.NotEqual(baseline.Value, corrected.Value);
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}
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[Fact]
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public void Update_IterativeCorrections_RestoresPreviousState()
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{
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var pmo = new Pmo(5, 3, 3);
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var time = DateTime.UtcNow;
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for (int i = 0; i < 20; i++)
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{
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pmo.Update(new TValue(time.AddSeconds(i), 100.0 + i * 0.5), true);
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}
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var baseline = pmo.Update(new TValue(time.AddSeconds(20), 120.0), true);
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// Several corrections
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pmo.Update(new TValue(time.AddSeconds(20), 130.0), false);
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pmo.Update(new TValue(time.AddSeconds(20), 110.0), false);
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var restored = pmo.Update(new TValue(time.AddSeconds(20), 120.0), false);
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Assert.Equal(baseline.Value, restored.Value, 10);
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}
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[Fact]
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public void Reset_ClearsState()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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for (int i = 0; i < 30; i++)
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{
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pmo.Update(new TValue(DateTime.UtcNow.AddSeconds(i), 100.0 + i));
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}
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pmo.Reset();
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Assert.Equal(default, pmo.Last);
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Assert.False(pmo.IsHot);
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}
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#endregion
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#region Robustness Tests
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[Fact]
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public void Update_WithNaN_UsesLastValidValue()
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{
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var pmo = new Pmo(5, 3, 3);
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var time = DateTime.UtcNow;
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for (int i = 0; i < 15; i++)
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{
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pmo.Update(new TValue(time.AddSeconds(i), 100.0 + i), true);
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}
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var afterNaN = pmo.Update(new TValue(time.AddSeconds(15), double.NaN), true);
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Assert.True(double.IsFinite(afterNaN.Value));
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}
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[Fact]
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public void Update_WithInfinity_UsesLastValidValue()
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{
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var pmo = new Pmo(5, 3, 3);
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var time = DateTime.UtcNow;
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for (int i = 0; i < 15; i++)
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{
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pmo.Update(new TValue(time.AddSeconds(i), 100.0 + i), true);
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}
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var afterInf = pmo.Update(new TValue(time.AddSeconds(15), double.PositiveInfinity), true);
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Assert.True(double.IsFinite(afterInf.Value));
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}
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[Fact]
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public void Update_BatchNaN_HandlesSafely()
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{
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var pmo = new Pmo(5, 3, 3);
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var time = DateTime.UtcNow;
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for (int i = 0; i < 30; i++)
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{
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var value = i % 5 == 0 ? double.NaN : 100.0 + i;
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var tv = pmo.Update(new TValue(time.AddSeconds(i), value), true);
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Assert.True(double.IsFinite(tv.Value));
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}
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}
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#endregion
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#region Consistency Tests
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[Fact]
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public void BatchTSeries_And_Streaming_ProduceSameResults()
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{
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// Mode 1: Batch via TSeries
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var batchResult = Pmo.Batch(_gbm, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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// Mode 2: Streaming
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var streamingPmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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var streamingResult = new TSeries(DataPoints);
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for (int i = 0; i < _gbm.Count; i++)
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{
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var tv = streamingPmo.Update(new TValue(_gbm[i].Time, _gbm[i].Value), true);
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streamingResult.Add(tv, true);
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}
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// Compare last 50 values (post-warmup region)
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int start = Math.Max(0, DataPoints - 50);
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for (int i = start; i < DataPoints; i++)
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{
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Assert.Equal(batchResult[i].Value, streamingResult[i].Value, 10);
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}
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}
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[Fact]
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public void SpanBatch_And_Streaming_ProduceSameResults()
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{
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// Mode 1: Span-based
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Span<double> spanOutput = stackalloc double[DataPoints];
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Pmo.Batch(_gbm.Values, spanOutput, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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// Mode 2: Streaming
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var streamingPmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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for (int i = 0; i < _gbm.Count; i++)
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{
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streamingPmo.Update(new TValue(_gbm[i].Time, _gbm[i].Value), true);
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}
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// Compare last value
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Assert.Equal(spanOutput[DataPoints - 1], streamingPmo.Last.Value, 6);
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}
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#endregion
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#region Span API Tests
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[Fact]
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public void Calculate_Span_ValidatesEmptySource()
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{
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var ex = Assert.Throws<ArgumentException>(() =>
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{
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ReadOnlySpan<double> empty = [];
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Span<double> output = stackalloc double[1];
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Pmo.Batch(empty, output, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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});
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Assert.Equal("source", ex.ParamName);
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}
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[Fact]
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public void Calculate_Span_ValidatesOutputLength()
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{
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var ex = Assert.Throws<ArgumentException>(() =>
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{
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ReadOnlySpan<double> source = stackalloc double[] { 1, 2, 3, 4, 5 };
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Span<double> output = stackalloc double[3]; // too short
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Pmo.Batch(source, output, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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});
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Assert.Equal("output", ex.ParamName);
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}
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[Fact]
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public void Calculate_Span_ValidatesPeriod()
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{
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var ex = Assert.Throws<ArgumentException>(() =>
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{
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ReadOnlySpan<double> source = stackalloc double[] { 1, 2, 3, 4, 5 };
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Span<double> output = stackalloc double[5];
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Pmo.Batch(source, output, 0, TestSmoothPeriods, TestSignalPeriods);
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});
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Assert.Equal("timePeriods", ex.ParamName);
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}
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[Fact]
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public void Calculate_Span_LargeData_NoStackOverflow()
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{
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int largeSize = 10000;
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double[] source = new double[largeSize];
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double[] output = new double[largeSize];
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for (int i = 0; i < largeSize; i++)
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{
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source[i] = 100.0 + i * 0.1;
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}
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Pmo.Batch(source, output, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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Assert.Equal(largeSize, output.Length);
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Assert.True(double.IsFinite(output[^1]));
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}
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#endregion
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#region Chainability Tests
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[Fact]
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public void Pub_FiresOnUpdate()
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{
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var pmo = new Pmo(TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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bool eventFired = false;
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pmo.Pub += (object? _, in TValueEventArgs e) => eventFired = true;
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pmo.Update(new TValue(DateTime.UtcNow, 100.0));
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Assert.True(eventFired);
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}
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[Fact]
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public void EventBasedChaining_Works()
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{
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var source = new TSeries(10);
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var pmo = new Pmo(source, 3, 2, 2);
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var results = new List<double>();
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pmo.Pub += (object? _, in TValueEventArgs e) => results.Add(e.Value.Value);
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for (int i = 0; i < 20; i++)
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{
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source.Add(new TValue(DateTime.UtcNow.AddSeconds(i), 100.0 + i), true);
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}
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Assert.Equal(20, results.Count);
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}
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#endregion
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#region Calculate Method Tests
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[Fact]
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public void Calculate_ReturnsTupleWithResultsAndIndicator()
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{
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var (results, indicator) = Pmo.Calculate(_gbm, TestTimePeriods, TestSmoothPeriods, TestSignalPeriods);
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Assert.Equal(DataPoints, results.Count);
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Assert.NotNull(indicator);
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Assert.True(indicator.IsHot);
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}
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[Fact]
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public void Prime_InitializesState()
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{
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var pmo = new Pmo(5, 3, 3);
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double[] primeData = [100, 101, 102, 103, 104, 105, 106, 107, 108, 109,
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110, 111, 112, 113, 114, 115, 116, 117, 118, 119, 120];
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pmo.Prime(primeData);
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Assert.NotEqual(default, pmo.Last);
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Assert.True(pmo.IsHot);
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}
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[Fact]
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public void Prime_SameAsSequentialUpdates()
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{
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var pmo1 = new Pmo(5, 3, 3);
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var pmo2 = new Pmo(5, 3, 3);
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double[] data = [100, 101, 102, 103, 104, 105, 106, 107, 108, 109,
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110, 111, 112, 113, 114, 115, 116, 117, 118, 119, 120];
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pmo1.Prime(data);
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foreach (var value in data)
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{
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pmo2.Update(new TValue(DateTime.MinValue, value));
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}
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Assert.Equal(pmo1.Last.Value, pmo2.Last.Value, 10);
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}
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#endregion
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}
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