mirror of
https://github.com/mihakralj/QuanTAlib.git
synced 2026-07-27 17:27:43 +00:00
387 lines
12 KiB
C#
387 lines
12 KiB
C#
using Xunit;
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using System.Security.Cryptography;
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namespace QuanTAlib.Tests;
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public class VolumeUpdateTests
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{
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private readonly RandomNumberGenerator rng = RandomNumberGenerator.Create();
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private const int RandomUpdates = 100;
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private const int precision = 8;
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private double GetRandomDouble()
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{
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byte[] bytes = new byte[8];
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rng.GetBytes(bytes);
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return ((double)BitConverter.ToUInt64(bytes, 0) / ulong.MaxValue * 200) - 100; // Range: -100 to 100
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}
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private TBar GetRandomBar(bool IsNew)
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{
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double open = GetRandomDouble();
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double high = open + Math.Abs(GetRandomDouble());
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double low = open - Math.Abs(GetRandomDouble());
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double close = low + ((high - low) * GetRandomDouble());
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double volume = Math.Abs(GetRandomDouble()) * 1000; // Random positive volume
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return new TBar(DateTime.Now, open, high, low, close, volume, IsNew);
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}
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[Fact]
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public void Adl_Update()
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{
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var indicator = new Adl();
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TBar r = GetRandomBar(true);
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// First calculation with IsNew: true
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double value1 = indicator.Calc(r);
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// Multiple recalculations with IsNew: false should not change the value
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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}
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// Final calculation with IsNew: false should match initial value
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double value2 = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(value1, value2, precision);
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// New calculation with IsNew: true should update the value
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double value3 = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: true));
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Assert.NotEqual(value1, value3, precision);
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}
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[Fact]
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public void Adosc_Update()
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{
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var indicator = new Adosc(shortPeriod: 3, longPeriod: 10);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Aobv_Update()
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{
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var indicator = new Aobv();
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TBar r = GetRandomBar(true);
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// First calculation with IsNew: true
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double value1 = indicator.Calc(r);
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// Multiple recalculations with IsNew: false should not change the value
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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}
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// Final calculation with IsNew: false should match initial value
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double value2 = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(value1, value2, precision);
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// New calculation with IsNew: true should update the value
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double value3 = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: true));
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Assert.NotEqual(value1, value3, precision);
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}
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[Fact]
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public void Cmf_Update()
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{
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var indicator = new Cmf(period: 20);
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TBar r = GetRandomBar(true);
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// Generate a sequence of bars for warmup
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var warmupBars = new List<TBar>();
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for (int i = 0; i < indicator.WarmupPeriod; i++)
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{
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var bar = GetRandomBar(IsNew: true);
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warmupBars.Add(bar);
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indicator.Calc(bar);
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}
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// Calculate initial value after warmup
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double initialValue = indicator.Calc(r);
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// Apply random updates
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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// Reset and replay the same sequence
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indicator.Init();
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foreach (var bar in warmupBars)
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{
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indicator.Calc(bar);
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Eom_Update()
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{
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var indicator = new Eom(period: 14);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Kvo_Update()
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{
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var indicator = new Kvo(shortPeriod: 34, longPeriod: 55);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Mfi_Update()
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{
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var indicator = new Mfi(period: 14);
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TBar r = GetRandomBar(true);
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// Generate a sequence of bars for warmup
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var warmupBars = new List<TBar>();
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for (int i = 0; i < indicator.WarmupPeriod; i++)
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{
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var bar = GetRandomBar(IsNew: true);
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warmupBars.Add(bar);
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indicator.Calc(bar);
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}
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// Calculate initial value after warmup
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double initialValue = indicator.Calc(r);
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// Apply random updates
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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// Reset and replay the same sequence
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indicator.Init();
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foreach (var bar in warmupBars)
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{
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indicator.Calc(bar);
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Nvi_Update()
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{
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var indicator = new Nvi();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Obv_Update()
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{
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var indicator = new Obv();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Pvi_Update()
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{
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var indicator = new Pvi();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Pvol_Update()
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{
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var indicator = new Pvol();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Pvo_Update()
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{
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var indicator = new Pvo(shortPeriod: 12, longPeriod: 26);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Pvr_Update()
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{
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var indicator = new Pvr();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Pvt_Update()
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{
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var indicator = new Pvt();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Tvi_Update()
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{
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var indicator = new Tvi(minTick: 0.5);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Vf_Update()
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{
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var indicator = new Vf(period: 13);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Vp_Update()
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{
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var indicator = new Vp(period: 14);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Vwap_Update()
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{
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var indicator = new Vwap();
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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[Fact]
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public void Vwma_Update()
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{
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var indicator = new Vwma(period: 20);
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TBar r = GetRandomBar(true);
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double initialValue = indicator.Calc(r);
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for (int i = 0; i < RandomUpdates; i++)
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{
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indicator.Calc(GetRandomBar(IsNew: false));
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}
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double finalValue = indicator.Calc(new TBar(r.Time, r.Open, r.High, r.Low, r.Close, r.Volume, IsNew: false));
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Assert.Equal(initialValue, finalValue, precision);
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}
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}
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